Fri Jun 21 02:30:05 UTC 2024 I: starting to build octave-symbolic/unstable/i386 on jenkins on '2024-06-21 02:30' Fri Jun 21 02:30:05 UTC 2024 I: The jenkins build log is/was available at https://jenkins.debian.net/userContent/reproducible/debian/build_service/i386_7/32271/console.log Fri Jun 21 02:30:05 UTC 2024 I: Downloading source for unstable/octave-symbolic=3.2.1-2 --2024-06-21 02:30:05-- http://deb.debian.org/debian/pool/main/o/octave-symbolic/octave-symbolic_3.2.1-2.dsc Connecting to 46.16.76.132:3128... connected. Proxy request sent, awaiting response... 200 OK Length: 2162 (2.1K) [text/prs.lines.tag] Saving to: ‘octave-symbolic_3.2.1-2.dsc’ 0K .. 100% 317M=0s 2024-06-21 02:30:05 (317 MB/s) - ‘octave-symbolic_3.2.1-2.dsc’ saved [2162/2162] Fri Jun 21 02:30:05 UTC 2024 I: octave-symbolic_3.2.1-2.dsc -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256 Format: 3.0 (quilt) Source: octave-symbolic Binary: octave-symbolic Architecture: all Version: 3.2.1-2 Maintainer: Debian Octave Group Uploaders: Sébastien Villemot , Rafael Laboissière Homepage: https://gnu-octave.github.io/packages/symbolic/ Standards-Version: 4.7.0 Vcs-Browser: https://salsa.debian.org/pkg-octave-team/octave-symbolic Vcs-Git: https://salsa.debian.org/pkg-octave-team/octave-symbolic.git Testsuite: autopkgtest-pkg-octave Build-Depends: debhelper-compat (= 13), debhelper (>= 12.8~), dh-sequence-octave, python3-packaging, python3-sympy Package-List: octave-symbolic deb math optional arch=all Checksums-Sha1: 27e1dbca58dd845ca4751b1b47a0c4192f076b5c 273021 octave-symbolic_3.2.1.orig.tar.gz 65c3f3b9aea12da52b0a7ae78910233f28217cf3 6592 octave-symbolic_3.2.1-2.debian.tar.xz Checksums-Sha256: d1a6ef4d12c48fc4412ceec380f398a6cd5180e518c131ba12683e9eb8f75460 273021 octave-symbolic_3.2.1.orig.tar.gz 3f07e9d3b818b6131712d36a236dbc281020cab53a1b1db2a516d57b3dd4cb1f 6592 octave-symbolic_3.2.1-2.debian.tar.xz Files: 02e0cb39d309a3a2eaf78cd85f178cf6 273021 octave-symbolic_3.2.1.orig.tar.gz cbe06584d25707206ef422d49a4c5c7d 6592 octave-symbolic_3.2.1-2.debian.tar.xz -----BEGIN PGP SIGNATURE----- iQIzBAEBCAAdFiEEP0ZDkUmP6HS9tdmPISSqGYN4XJAFAmZ0DGIACgkQISSqGYN4 XJCdfQ/9Fp2r98xhj9J57kXV8mwh/N+omGr02KDRewEUE+0GR17PvteTOupefItW WFpv4mSIgEFp8fnlUxmaj8UAwyrNXOme5GkIG5Y/eIK4oZxO1f4idQ9q3oIsyuMk F24Lnrlx3kWdPygv+ZO1CCb6rudvN21QIFOfVPmE62lvOpEj16hsLC0bJH9/fnM0 8/ZhOloimibhOyeG0c592rlevT0qU56e2nYbHr25Do3nmcFG04qbv93C9LepxS1/ gIM8WwA+m2zR+wxZVxI2J3NTMXbdJD0OQ7MsYtSQpdc+eHWiug56PWGWhWWQUgbg Ukvw3t70E9YsWjsc8rIrwBf5QNiPbWL4T4qGsMvzv9MGUkr1phvH5/kDE7lJUdz9 LhA4BHs+7FA9sW6lPRbVRI8Kq6J8G1uYRd3xI9xf5c6UPlloaiXC8DSzMcms2og6 lFRZfZDNmEK8SLxNVoYOoS6z1x2ewZAWEvw+sW9G01Wy4e3LL+12LLR2hS+D2Mit CjhkaA7FxdHU9f+nXXWzhD+JzzH3oC0FwZCxT7o55h47Nxi++L1Xy44qV+PiMWXn pLtPFTogbSALPZph3KV5KuyVjoQVgiGe0t70SLelEAU0ReolwUvpQMg6PBz6FYxN 7it101Y6QUshG6ZiJGIZSC2YGRzUiDmEuXdobMh96YTeFuCIoVI= =rM9W -----END PGP SIGNATURE----- Fri Jun 21 02:30:05 UTC 2024 I: Checking whether the package is not for us Fri Jun 21 02:30:05 UTC 2024 I: Starting 1st build on remote node ionos12-i386.debian.net. Fri Jun 21 02:30:05 UTC 2024 I: Preparing to do remote build '1' on ionos12-i386.debian.net. Fri Jun 21 02:47:28 UTC 2024 I: Deleting $TMPDIR on ionos12-i386.debian.net. I: pbuilder: network access will be disabled during build I: Current time: Thu Jun 20 14:30:07 -12 2024 I: pbuilder-time-stamp: 1718937007 I: Building the build Environment I: extracting base tarball [/var/cache/pbuilder/unstable-reproducible-base.tgz] I: copying local configuration W: --override-config is not set; not updating apt.conf Read the manpage for details. I: mounting /proc filesystem I: mounting /sys filesystem I: creating /{dev,run}/shm I: mounting /dev/pts filesystem I: redirecting /dev/ptmx to /dev/pts/ptmx I: policy-rc.d already exists I: using eatmydata during job I: Copying source file I: copying [octave-symbolic_3.2.1-2.dsc] I: copying [./octave-symbolic_3.2.1.orig.tar.gz] I: copying [./octave-symbolic_3.2.1-2.debian.tar.xz] I: Extracting source gpgv: Signature made Thu Jun 20 11:02:58 2024 gpgv: using RSA key 3F464391498FE874BDB5D98F2124AA1983785C90 gpgv: Can't check signature: No public key dpkg-source: warning: cannot verify inline signature for ./octave-symbolic_3.2.1-2.dsc: no acceptable signature found dpkg-source: info: extracting octave-symbolic in octave-symbolic-3.2.1 dpkg-source: info: unpacking octave-symbolic_3.2.1.orig.tar.gz dpkg-source: info: unpacking octave-symbolic_3.2.1-2.debian.tar.xz dpkg-source: info: using patch list from debian/patches/series dpkg-source: info: applying vpa-xtest.patch I: Not using root during the build. I: Installing the build-deps I: user script /srv/workspace/pbuilder/40094/tmp/hooks/D02_print_environment starting I: set BUILDDIR='/build/reproducible-path' BUILDUSERGECOS='first user,first room,first work-phone,first home-phone,first other' BUILDUSERNAME='pbuilder1' BUILD_ARCH='i386' DEBIAN_FRONTEND='noninteractive' DEB_BUILD_OPTIONS='buildinfo=+all reproducible=+all parallel=11 ' DISTRIBUTION='unstable' HOME='/root' HOST_ARCH='i386' IFS=' ' INVOCATION_ID='4c5bfafd35064a50a7f90735e05002b5' LANG='C' LANGUAGE='en_US:en' LC_ALL='C' LD_LIBRARY_PATH='/usr/lib/libeatmydata' LD_PRELOAD='libeatmydata.so' MAIL='/var/mail/root' OPTIND='1' PATH='/usr/sbin:/usr/bin:/sbin:/bin:/usr/games' PBCURRENTCOMMANDLINEOPERATION='build' PBUILDER_OPERATION='build' PBUILDER_PKGDATADIR='/usr/share/pbuilder' PBUILDER_PKGLIBDIR='/usr/lib/pbuilder' PBUILDER_SYSCONFDIR='/etc' PPID='40094' PS1='# ' PS2='> ' PS4='+ ' PWD='/' SHELL='/bin/bash' SHLVL='2' SUDO_COMMAND='/usr/bin/timeout -k 18.1h 18h /usr/bin/ionice -c 3 /usr/bin/nice /usr/sbin/pbuilder --build --configfile /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/pbuilderrc_TxQT --distribution unstable --hookdir /etc/pbuilder/first-build-hooks --debbuildopts -b --basetgz /var/cache/pbuilder/unstable-reproducible-base.tgz --buildresult /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/b1 --logfile b1/build.log octave-symbolic_3.2.1-2.dsc' SUDO_GID='112' SUDO_UID='107' SUDO_USER='jenkins' TERM='unknown' TZ='/usr/share/zoneinfo/Etc/GMT+12' USER='root' _='/usr/bin/systemd-run' http_proxy='http://46.16.76.132:3128' I: uname -a Linux ionos12-i386 6.1.0-21-amd64 #1 SMP PREEMPT_DYNAMIC Debian 6.1.90-1 (2024-05-03) x86_64 GNU/Linux I: ls -l /bin lrwxrwxrwx 1 root root 7 Jun 5 22:35 /bin -> usr/bin I: user script /srv/workspace/pbuilder/40094/tmp/hooks/D02_print_environment finished -> Attempting to satisfy build-dependencies -> Creating pbuilder-satisfydepends-dummy package Package: pbuilder-satisfydepends-dummy Version: 0.invalid.0 Architecture: i386 Maintainer: Debian Pbuilder Team Description: Dummy package to satisfy dependencies with aptitude - created by pbuilder This package was created automatically by pbuilder to satisfy the build-dependencies of the package being currently built. Depends: debhelper-compat (= 13), debhelper (>= 12.8~), dh-sequence-octave, python3-packaging, python3-sympy dpkg-deb: building package 'pbuilder-satisfydepends-dummy' in '/tmp/satisfydepends-aptitude/pbuilder-satisfydepends-dummy.deb'. Selecting previously unselected package pbuilder-satisfydepends-dummy. (Reading database ... 19679 files and directories currently installed.) Preparing to unpack .../pbuilder-satisfydepends-dummy.deb ... Unpacking pbuilder-satisfydepends-dummy (0.invalid.0) ... dpkg: pbuilder-satisfydepends-dummy: dependency problems, but configuring anyway as you requested: pbuilder-satisfydepends-dummy depends on debhelper-compat (= 13); however: Package debhelper-compat is not installed. pbuilder-satisfydepends-dummy depends on debhelper (>= 12.8~); however: Package debhelper is not installed. pbuilder-satisfydepends-dummy depends on dh-sequence-octave; however: Package dh-sequence-octave is not installed. pbuilder-satisfydepends-dummy depends on python3-packaging; however: Package python3-packaging is not installed. pbuilder-satisfydepends-dummy depends on python3-sympy; however: Package python3-sympy is not installed. Setting up pbuilder-satisfydepends-dummy (0.invalid.0) ... Reading package lists... Building dependency tree... Reading state information... Initializing package states... Writing extended state information... Building tag database... pbuilder-satisfydepends-dummy is already installed at the requested version (0.invalid.0) pbuilder-satisfydepends-dummy is already installed at the requested version (0.invalid.0) The following NEW packages will be installed: aglfn{a} autoconf{a} automake{a} autopoint{a} autotools-dev{a} bsdextrautils{a} ca-certificates{a} cme{a} debhelper{a} dh-autoreconf{a} dh-octave{a} dh-octave-autopkgtest{a} dh-strip-nondeterminism{a} diffstat{a} dwz{a} file{a} fontconfig{a} fontconfig-config{a} fonts-dejavu-core{a} fonts-dejavu-mono{a} fonts-freefont-otf{a} gettext{a} gettext-base{a} gfortran{a} gfortran-13{a} gfortran-13-i686-linux-gnu{a} gfortran-i686-linux-gnu{a} gnuplot-data{a} gnuplot-nox{a} gpg{a} gpgconf{a} groff-base{a} hdf5-helpers{a} intltool-debian{a} iso-codes{a} libabsl20230802{a} libaec-dev{a} libaec0{a} libalgorithm-c3-perl{a} libaliased-perl{a} libamd3{a} libaom3{a} libapp-cmd-perl{a} libapt-pkg-perl{a} libarchive-zip-perl{a} libarpack2t64{a} libarray-intspan-perl{a} libasound2-data{a} libasound2t64{a} libassuan0{a} libavahi-client3{a} libavahi-common-data{a} libavahi-common3{a} libavif16{a} libb-hooks-endofscope-perl{a} libb-hooks-op-check-perl{a} libb2-1{a} libberkeleydb-perl{a} libblas-dev{a} libblas3{a} libboolean-perl{a} libbrotli1{a} libbsd0{a} libbtf2{a} libcairo2{a} libcamd3{a} libcapture-tiny-perl{a} libcarp-assert-more-perl{a} libcbor0.10{a} libccolamd3{a} libcgi-pm-perl{a} libcholmod5{a} libclass-c3-perl{a} libclass-data-inheritable-perl{a} libclass-load-perl{a} libclass-method-modifiers-perl{a} libclass-xsaccessor-perl{a} libclone-choose-perl{a} libclone-perl{a} libcolamd3{a} libcom-err2{a} libcombblas2.0.0t64{a} libconfig-model-backend-yaml-perl{a} libconfig-model-dpkg-perl{a} libconfig-model-perl{a} libconfig-tiny-perl{a} libconst-fast-perl{a} libconvert-binhex-perl{a} libcpanel-json-xs-perl{a} libcups2t64{a} libcurl3t64-gnutls{a} libcurl4-openssl-dev{a} libcurl4t64{a} libcxsparse4{a} libdata-dpath-perl{a} libdata-messagepack-perl{a} libdata-optlist-perl{a} libdata-section-perl{a} libdata-validate-domain-perl{a} libdata-validate-ip-perl{a} libdata-validate-uri-perl{a} libdatrie1{a} libdav1d7{a} libdbus-1-3{a} libde265-0{a} libdebhelper-perl{a} libdeflate0{a} libdevel-callchecker-perl{a} libdevel-size-perl{a} libdevel-stacktrace-perl{a} libdouble-conversion3{a} libdrm-amdgpu1{a} libdrm-common{a} libdrm-intel1{a} libdrm-radeon1{a} libdrm2{a} libduktape207{a} libdynaloader-functions-perl{a} libedit2{a} libegl-mesa0{a} libegl1{a} libelf1t64{a} libemail-address-xs-perl{a} libencode-locale-perl{a} liberror-perl{a} libevdev2{a} libevent-core-2.1-7t64{a} libevent-pthreads-2.1-7t64{a} libexception-class-perl{a} libexpat1{a} libexporter-lite-perl{a} libexporter-tiny-perl{a} libfabric1{a} libfeature-compat-class-perl{a} libfeature-compat-try-perl{a} libfftw3-bin{a} libfftw3-dev{a} libfftw3-double3{a} libfftw3-long3{a} libfftw3-mpi3{a} libfftw3-quad3{a} libfftw3-single3{a} libfido2-1{a} libfile-basedir-perl{a} libfile-find-rule-perl{a} libfile-homedir-perl{a} libfile-listing-perl{a} libfile-stripnondeterminism-perl{a} libfile-which-perl{a} libflac12t64{a} libfltk-gl1.3t64{a} libfltk1.3t64{a} libfont-ttf-perl{a} libfontconfig1{a} libfreetype6{a} libfribidi0{a} libgav1-1{a} libgbm1{a} libgd3{a} libgetopt-long-descriptive-perl{a} libgfortran-13-dev{a} libgfortran5{a} libgl-dev{a} libgl1{a} libgl1-mesa-dri{a} libgl2ps1.4{a} libglapi-mesa{a} libglib2.0-0t64{a} libglpk40{a} libglu1-mesa{a} libglvnd0{a} libglx-dev{a} libglx-mesa0{a} libglx0{a} libgraphicsmagick++-q16-12t64{a} libgraphicsmagick-q16-3t64{a} libgraphite2-3{a} libgssapi-krb5-2{a} libgudev-1.0-0{a} libharfbuzz0b{a} libhash-merge-perl{a} libhdf5-103-1t64{a} libhdf5-cpp-103-1t64{a} libhdf5-dev{a} libhdf5-fortran-102t64{a} libhdf5-hl-100t64{a} libhdf5-hl-cpp-100t64{a} libhdf5-hl-fortran-100t64{a} libhdf5-openmpi-103-1t64{a} libheif-plugin-dav1d{a} libheif-plugin-libde265{a} libheif1{a} libhtml-form-perl{a} libhtml-html5-entities-perl{a} libhtml-parser-perl{a} libhtml-tagset-perl{a} libhtml-tokeparser-simple-perl{a} libhtml-tree-perl{a} libhttp-cookies-perl{a} libhttp-date-perl{a} libhttp-message-perl{a} libhttp-negotiate-perl{a} libhwloc-plugins{a} libhwloc15{a} libhwy1t64{a} libhypre-2.29.0{a} libibverbs1{a} libice6{a} libicu72{a} libimport-into-perl{a} libindirect-perl{a} libinput-bin{a} libinput10{a} libio-html-perl{a} libio-interactive-perl{a} libio-socket-ssl-perl{a} libio-string-perl{a} libio-stringy-perl{a} libio-tiecombine-perl{a} libipc-run3-perl{a} libipc-system-simple-perl{a} libiterator-perl{a} libiterator-util-perl{a} libjack-jackd2-0{a} libjbig0{a} libjpeg-dev{a} libjpeg62-turbo{a} libjpeg62-turbo-dev{a} libjson-maybexs-perl{a} libjson-perl{a} libjxl0.8{a} libk5crypto3{a} libkeyutils1{a} libklu2{a} libkrb5-3{a} libkrb5support0{a} liblapack-dev{a} liblapack3{a} liblcms2-2{a} libldap-2.5-0{a} liblerc4{a} liblist-compare-perl{a} liblist-moreutils-perl{a} liblist-moreutils-xs-perl{a} liblist-someutils-perl{a} liblist-utilsby-perl{a} libllvm17t64{a} liblog-any-adapter-screen-perl{a} liblog-any-perl{a} liblog-log4perl-perl{a} libltdl7{a} liblua5.4-0{a} liblwp-mediatypes-perl{a} liblwp-protocol-https-perl{a} liblz1{a} liblzo2-2{a} libmagic-mgc{a} libmagic1t64{a} libmailtools-perl{a} libmarkdown2{a} libmd4c0{a} libmetis5{a} libmime-tools-perl{a} libmldbm-perl{a} libmodule-implementation-perl{a} libmodule-pluggable-perl{a} libmodule-runtime-perl{a} libmoo-perl{a} libmoox-aliases-perl{a} libmouse-perl{a} libmousex-nativetraits-perl{a} libmousex-strictconstructor-perl{a} libmp3lame0{a} libmpg123-0t64{a} libmro-compat-perl{a} libmtdev1t64{a} libmumps-5.6t64{a} libnamespace-clean-perl{a} libncurses-dev{a} libncurses6{a} libnet-domain-tld-perl{a} libnet-http-perl{a} libnet-ipv6addr-perl{a} libnet-netmask-perl{a} libnet-smtp-ssl-perl{a} libnet-ssleay-perl{a} libnetaddr-ip-perl{a} libnghttp2-14{a} libnl-3-200{a} libnl-route-3-200{a} 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libsub-uplevel-perl{a} libsuitesparseconfig7{a} libsundials-ida6{a} libsundials-nvecparallel-petsc6{a} libsundials-sunlinsol3{a} libsundials-sunmatrix4{a} libsuperlu-dist8{a} libsuperlu6{a} libsyntax-keyword-try-perl{a} libsz2{a} libterm-readkey-perl{a} libtest-exception-perl{a} libtext-autoformat-perl{a} libtext-glob-perl{a} libtext-levenshtein-damerau-perl{a} libtext-levenshteinxs-perl{a} libtext-markdown-discount-perl{a} libtext-reform-perl{a} libtext-template-perl{a} libtext-unidecode-perl{a} libtext-xslate-perl{a} libthai-data{a} libthai0{a} libtiff6{a} libtime-duration-perl{a} libtime-moment-perl{a} libtimedate-perl{a} libtoml-tiny-perl{a} libtool{a} libtry-tiny-perl{a} libts0t64{a} libuchardet0{a} libumfpack6{a} libunicode-utf8-perl{a} liburi-perl{a} libvariable-magic-perl{a} libvorbis0a{a} libvorbisenc2{a} libvulkan1{a} libwacom-common{a} libwacom9{a} libwayland-client0{a} libwayland-server0{a} libwebp7{a} libwebpmux3{a} libwmflite-0.2-7{a} libwww-mechanize-perl{a} libwww-perl{a} libwww-robotrules-perl{a} libx11-6{a} libx11-data{a} libx11-dev{a} libx11-xcb1{a} libxau-dev{a} libxau6{a} libxcb-cursor0{a} libxcb-dri2-0{a} libxcb-dri3-0{a} libxcb-glx0{a} libxcb-icccm4{a} libxcb-image0{a} libxcb-keysyms1{a} libxcb-present0{a} libxcb-randr0{a} libxcb-render-util0{a} libxcb-render0{a} libxcb-shape0{a} libxcb-shm0{a} libxcb-sync1{a} libxcb-util1{a} libxcb-xfixes0{a} libxcb-xinput0{a} libxcb-xkb1{a} libxcb1{a} libxcb1-dev{a} libxcursor1{a} libxdmcp-dev{a} libxdmcp6{a} libxext6{a} libxfixes3{a} libxft2{a} libxinerama1{a} libxkbcommon-x11-0{a} libxkbcommon0{a} libxml-libxml-perl{a} libxml-namespacesupport-perl{a} libxml-sax-base-perl{a} libxml-sax-perl{a} libxml2{a} libxnvctrl0{a} libxpm4{a} libxrender1{a} libxs-parse-keyword-perl{a} libxs-parse-sublike-perl{a} libxshmfence1{a} libxxf86vm1{a} libyaml-0-2{a} libyaml-libyaml-perl{a} libyaml-pp-perl{a} libyaml-tiny-perl{a} libyuv0{a} libz3-4{a} licensecheck{a} lintian{a} lzop{a} m4{a} man-db{a} media-types{a} mpi-default-bin{a} netbase{a} ocl-icd-libopencl1{a} octave{a} octave-common{a} octave-dev{a} openmpi-bin{a} openmpi-common{a} openssh-client{a} openssl{a} patchutils{a} perl-openssl-defaults{a} plzip{a} po-debconf{a} python3{a} python3-minimal{a} python3-mpmath{a} python3-packaging{a} python3-sympy{a} python3.11{a} python3.11-minimal{a} readline-common{a} sensible-utils{a} shared-mime-info{a} t1utils{a} tex-common{a} texinfo{a} texinfo-lib{a} tzdata{a} ucf{a} unzip{a} x11-common{a} x11proto-dev{a} xkb-data{a} xorg-sgml-doctools{a} xtrans-dev{a} zlib1g-dev{a} The following packages are RECOMMENDED but will NOT be installed: alsa-topology-conf alsa-ucm-conf bash-completion curl dbus default-jre-headless epstool fonts-liberation fonts-urw-base35 ghostscript gnupg groff ibverbs-providers isympy-common krb5-locales libarchive-cpio-perl libauthen-sasl-perl libblis4 libcgi-fast-perl libclass-c3-xs-perl libconfig-model-approx-perl libconfig-model-lcdproc-perl libconfig-model-openssh-perl libconfig-model-systemd-perl libconfig-model-tkui-perl libdata-dump-perl libfreezethaw-perl libfuse-perl libglib2.0-data libgpm2 libheif-plugin-aomenc libheif-plugin-x265 libhtml-format-perl libhttp-daemon-perl libio-compress-brotli-perl libipc-shareable-perl libjson-xs-perl libldap-common liblist-someutils-xs-perl liblog-dispatch-perl libltdl-dev libmail-sendmail-perl libmath-base85-perl libopenblas0 libpackage-stash-xs-perl libqt6sql6-ibase libqt6sql6-mysql libqt6sql6-odbc libqt6sql6-psql libqt6sql6-sqlite libre-engine-re2-perl libsasl2-modules libsocket6-perl libtie-ixhash-perl libtypes-serialiser-perl libxml-sax-expat-perl libxstring-perl lynx mesa-vulkan-drivers octave-doc pstoedit publicsuffix python3-numpy python3-pil qt6-gtk-platformtheme qt6-qpa-plugins qt6-translations-l10n qt6-wayland wget xauth xdg-user-dirs 0 packages upgraded, 528 newly installed, 0 to remove and 0 not upgraded. Need to get 221 MB of archives. After unpacking 872 MB will be used. Writing extended state information... Get: 1 http://deb.debian.org/debian unstable/main i386 libpython3.11-minimal i386 3.11.9-1 [817 kB] Get: 2 http://deb.debian.org/debian unstable/main i386 libexpat1 i386 2.6.2-1 [107 kB] Get: 3 http://deb.debian.org/debian unstable/main i386 python3.11-minimal i386 3.11.9-1 [1918 kB] Get: 4 http://deb.debian.org/debian unstable/main i386 python3-minimal i386 3.11.8-1 [26.3 kB] Get: 5 http://deb.debian.org/debian unstable/main i386 media-types all 10.1.0 [26.9 kB] Get: 6 http://deb.debian.org/debian unstable/main i386 netbase all 6.4 [12.8 kB] Get: 7 http://deb.debian.org/debian unstable/main i386 tzdata all 2024a-4 [255 kB] Get: 8 http://deb.debian.org/debian unstable/main i386 readline-common all 8.2-4 [69.3 kB] Get: 9 http://deb.debian.org/debian unstable/main i386 libreadline8t64 i386 8.2-4 [171 kB] Get: 10 http://deb.debian.org/debian unstable/main i386 libpython3.11-stdlib i386 3.11.9-1 [1795 kB] Get: 11 http://deb.debian.org/debian unstable/main i386 python3.11 i386 3.11.9-1 [602 kB] Get: 12 http://deb.debian.org/debian unstable/main i386 libpython3-stdlib i386 3.11.8-1 [9336 B] Get: 13 http://deb.debian.org/debian unstable/main i386 python3 i386 3.11.8-1 [27.4 kB] Get: 14 http://deb.debian.org/debian unstable/main i386 sensible-utils all 0.0.23 [24.7 kB] Get: 15 http://deb.debian.org/debian unstable/main i386 openssl i386 3.2.2-1 [1367 kB] Get: 16 http://deb.debian.org/debian unstable/main i386 ca-certificates all 20240203 [158 kB] Get: 17 http://deb.debian.org/debian unstable/main i386 libmagic-mgc i386 1:5.45-3 [314 kB] Get: 18 http://deb.debian.org/debian unstable/main i386 libmagic1t64 i386 1:5.45-3 [114 kB] Get: 19 http://deb.debian.org/debian unstable/main i386 file i386 1:5.45-3 [42.9 kB] Get: 20 http://deb.debian.org/debian unstable/main i386 gettext-base i386 0.21-15 [162 kB] Get: 21 http://deb.debian.org/debian unstable/main i386 libuchardet0 i386 0.0.8-1+b1 [69.1 kB] Get: 22 http://deb.debian.org/debian unstable/main i386 groff-base i386 1.23.0-4 [1194 kB] Get: 23 http://deb.debian.org/debian unstable/main i386 bsdextrautils i386 2.40.1-8.1 [100 kB] Get: 24 http://deb.debian.org/debian unstable/main i386 libpipeline1 i386 1.5.7-2 [39.7 kB] Get: 25 http://deb.debian.org/debian unstable/main i386 man-db i386 2.12.1-2 [1421 kB] Get: 26 http://deb.debian.org/debian unstable/main i386 libbsd0 i386 0.12.2-1 [134 kB] Get: 27 http://deb.debian.org/debian unstable/main i386 libedit2 i386 3.1-20240517-1 [97.6 kB] Get: 28 http://deb.debian.org/debian unstable/main i386 libcbor0.10 i386 0.10.2-1.2 [30.8 kB] Get: 29 http://deb.debian.org/debian unstable/main i386 libfido2-1 i386 1.15.0-1 [88.5 kB] Get: 30 http://deb.debian.org/debian unstable/main i386 libkrb5support0 i386 1.21.2-1 [34.5 kB] Get: 31 http://deb.debian.org/debian unstable/main i386 libcom-err2 i386 1.47.1-1 [23.1 kB] Get: 32 http://deb.debian.org/debian unstable/main i386 libk5crypto3 i386 1.21.2-1 [83.2 kB] Get: 33 http://deb.debian.org/debian unstable/main i386 libkeyutils1 i386 1.6.3-3 [9432 B] Get: 34 http://deb.debian.org/debian unstable/main i386 libkrb5-3 i386 1.21.2-1 [350 kB] Get: 35 http://deb.debian.org/debian unstable/main i386 libgssapi-krb5-2 i386 1.21.2-1 [146 kB] Get: 36 http://deb.debian.org/debian unstable/main i386 openssh-client i386 1:9.7p1-5 [991 kB] Get: 37 http://deb.debian.org/debian unstable/main i386 ucf all 3.0043+nmu1 [55.2 kB] Get: 38 http://deb.debian.org/debian unstable/main i386 aglfn all 1.7+git20191031.4036a9c-2 [30.5 kB] Get: 39 http://deb.debian.org/debian unstable/main i386 m4 i386 1.4.19-4 [293 kB] Get: 40 http://deb.debian.org/debian unstable/main i386 autoconf all 2.71-3 [332 kB] Get: 41 http://deb.debian.org/debian unstable/main i386 autotools-dev all 20220109.1 [51.6 kB] Get: 42 http://deb.debian.org/debian unstable/main i386 automake all 1:1.16.5-1.3 [823 kB] Get: 43 http://deb.debian.org/debian unstable/main i386 autopoint all 0.21-15 [683 kB] Get: 44 http://deb.debian.org/debian unstable/main i386 libcapture-tiny-perl all 0.48-2 [24.6 kB] Get: 45 http://deb.debian.org/debian unstable/main i386 libparams-util-perl i386 1.102-3 [24.4 kB] Get: 46 http://deb.debian.org/debian unstable/main i386 libsub-install-perl all 0.929-1 [10.5 kB] Get: 47 http://deb.debian.org/debian unstable/main i386 libdata-optlist-perl all 0.114-1 [10.6 kB] Get: 48 http://deb.debian.org/debian unstable/main i386 libb-hooks-op-check-perl i386 0.22-3+b1 [10.7 kB] Get: 49 http://deb.debian.org/debian unstable/main i386 libdynaloader-functions-perl all 0.003-3 [12.7 kB] Get: 50 http://deb.debian.org/debian unstable/main i386 libdevel-callchecker-perl i386 0.009-1 [15.9 kB] Get: 51 http://deb.debian.org/debian unstable/main i386 libparams-classify-perl i386 0.015-2+b3 [23.1 kB] Get: 52 http://deb.debian.org/debian unstable/main i386 libmodule-runtime-perl all 0.016-2 [19.6 kB] Get: 53 http://deb.debian.org/debian unstable/main i386 libtry-tiny-perl all 0.31-2 [22.6 kB] Get: 54 http://deb.debian.org/debian unstable/main i386 libmodule-implementation-perl all 0.09-2 [12.6 kB] Get: 55 http://deb.debian.org/debian unstable/main i386 libpackage-stash-perl all 0.40-1 [22.0 kB] Get: 56 http://deb.debian.org/debian unstable/main i386 libclass-load-perl all 0.25-2 [15.3 kB] Get: 57 http://deb.debian.org/debian unstable/main i386 libio-stringy-perl all 2.111-3 [56.5 kB] Get: 58 http://deb.debian.org/debian unstable/main i386 libparams-validate-perl i386 1.31-2+b2 [64.8 kB] Get: 59 http://deb.debian.org/debian unstable/main i386 libsub-exporter-perl all 0.990-1 [50.6 kB] Get: 60 http://deb.debian.org/debian unstable/main i386 libgetopt-long-descriptive-perl all 0.111-1 [27.8 kB] Get: 61 http://deb.debian.org/debian unstable/main i386 libio-tiecombine-perl all 1.005-3 [10.8 kB] Get: 62 http://deb.debian.org/debian unstable/main i386 libmodule-pluggable-perl all 5.2-5 [23.0 kB] Get: 63 http://deb.debian.org/debian unstable/main i386 libstring-rewriteprefix-perl all 0.009-1 [7140 B] Get: 64 http://deb.debian.org/debian unstable/main i386 libapp-cmd-perl all 0.336-1 [65.8 kB] Get: 65 http://deb.debian.org/debian unstable/main i386 libboolean-perl all 0.46-3 [9924 B] Get: 66 http://deb.debian.org/debian unstable/main i386 libsub-uplevel-perl all 0.2800-3 [14.0 kB] Get: 67 http://deb.debian.org/debian unstable/main i386 libtest-exception-perl all 0.43-3 [16.9 kB] Get: 68 http://deb.debian.org/debian unstable/main i386 libcarp-assert-more-perl all 2.4.0-1 [20.2 kB] Get: 69 http://deb.debian.org/debian unstable/main i386 libfile-which-perl all 1.27-2 [15.1 kB] Get: 70 http://deb.debian.org/debian unstable/main i386 libfile-homedir-perl all 1.006-2 [42.4 kB] Get: 71 http://deb.debian.org/debian unstable/main i386 libclone-choose-perl all 0.010-2 [8676 B] Get: 72 http://deb.debian.org/debian unstable/main i386 libhash-merge-perl all 0.302-1 [14.7 kB] Get: 73 http://deb.debian.org/debian unstable/main i386 libjson-perl all 4.10000-1 [87.5 kB] Get: 74 http://deb.debian.org/debian unstable/main i386 libexporter-tiny-perl all 1.006002-1 [38.7 kB] Get: 75 http://deb.debian.org/debian unstable/main i386 liblist-moreutils-xs-perl i386 0.430-4+b1 [45.3 kB] Get: 76 http://deb.debian.org/debian unstable/main i386 liblist-moreutils-perl all 0.430-2 [46.9 kB] Get: 77 http://deb.debian.org/debian unstable/main i386 liblog-log4perl-perl all 1.57-1 [367 kB] Get: 78 http://deb.debian.org/debian unstable/main i386 libmouse-perl i386 2.5.10-1+b5 [146 kB] Get: 79 http://deb.debian.org/debian unstable/main i386 libmousex-nativetraits-perl all 1.09-3 [53.5 kB] Get: 80 http://deb.debian.org/debian unstable/main i386 libmousex-strictconstructor-perl all 0.02-3 [5304 B] Get: 81 http://deb.debian.org/debian unstable/main i386 libparse-recdescent-perl all 1.967015+dfsg-4 [147 kB] Get: 82 http://deb.debian.org/debian unstable/main i386 libpath-tiny-perl all 0.144-1 [56.4 kB] Get: 83 http://deb.debian.org/debian unstable/main i386 libpod-pom-perl all 2.01-4 [65.0 kB] Get: 84 http://deb.debian.org/debian unstable/main i386 libregexp-common-perl all 2017060201-3 [175 kB] Get: 85 http://deb.debian.org/debian unstable/main i386 libyaml-tiny-perl all 1.74-1 [30.7 kB] Get: 86 http://deb.debian.org/debian unstable/main i386 libconfig-model-perl all 2.154-1 [372 kB] Get: 87 http://deb.debian.org/debian unstable/main i386 libyaml-pp-perl all 0.38.0-1 [109 kB] Get: 88 http://deb.debian.org/debian unstable/main i386 cme all 1.040-1 [68.8 kB] Get: 89 http://deb.debian.org/debian unstable/main i386 libdebhelper-perl all 13.16 [88.6 kB] Get: 90 http://deb.debian.org/debian unstable/main i386 libtool all 2.4.7-7 [517 kB] Get: 91 http://deb.debian.org/debian unstable/main i386 dh-autoreconf all 20 [17.1 kB] Get: 92 http://deb.debian.org/debian unstable/main i386 libarchive-zip-perl all 1.68-1 [104 kB] Get: 93 http://deb.debian.org/debian unstable/main i386 libfile-stripnondeterminism-perl all 1.14.0-1 [19.5 kB] Get: 94 http://deb.debian.org/debian unstable/main i386 dh-strip-nondeterminism all 1.14.0-1 [8448 B] Get: 95 http://deb.debian.org/debian unstable/main i386 libelf1t64 i386 0.191-1+b1 [194 kB] Get: 96 http://deb.debian.org/debian unstable/main i386 dwz i386 0.15-1+b1 [116 kB] Get: 97 http://deb.debian.org/debian unstable/main i386 libicu72 i386 72.1-4+b1 [9549 kB] Get: 98 http://deb.debian.org/debian unstable/main i386 libxml2 i386 2.12.7+dfsg-3 [704 kB] Get: 99 http://deb.debian.org/debian unstable/main i386 gettext i386 0.21-15 [1310 kB] Get: 100 http://deb.debian.org/debian unstable/main i386 intltool-debian all 0.35.0+20060710.6 [22.9 kB] Get: 101 http://deb.debian.org/debian unstable/main i386 po-debconf all 1.0.21+nmu1 [248 kB] Get: 102 http://deb.debian.org/debian unstable/main i386 debhelper all 13.16 [891 kB] Get: 103 http://deb.debian.org/debian unstable/main i386 gnuplot-data all 6.0.0+dfsg1-3 [72.3 kB] Get: 104 http://deb.debian.org/debian unstable/main i386 libbrotli1 i386 1.1.0-2+b3 [314 kB] Get: 105 http://deb.debian.org/debian unstable/main i386 libpng16-16t64 i386 1.6.43-5 [286 kB] Get: 106 http://deb.debian.org/debian unstable/main i386 libfreetype6 i386 2.13.2+dfsg-1+b4 [449 kB] Get: 107 http://deb.debian.org/debian unstable/main i386 fonts-dejavu-mono all 2.37-8 [489 kB] Get: 108 http://deb.debian.org/debian unstable/main i386 fonts-dejavu-core all 2.37-8 [840 kB] Get: 109 http://deb.debian.org/debian unstable/main i386 fonts-freefont-otf all 20211204+svn4273-2 [4328 kB] Get: 110 http://deb.debian.org/debian unstable/main i386 fontconfig-config i386 2.15.0-1.1 [317 kB] Get: 111 http://deb.debian.org/debian unstable/main i386 libfontconfig1 i386 2.15.0-1.1 [401 kB] Get: 112 http://deb.debian.org/debian unstable/main i386 libpixman-1-0 i386 0.42.2-1+b1 [555 kB] Get: 113 http://deb.debian.org/debian unstable/main i386 libxau6 i386 1:1.0.9-1+b1 [18.5 kB] Get: 114 http://deb.debian.org/debian unstable/main i386 libxdmcp6 i386 1:1.1.2-3+b1 [24.8 kB] Get: 115 http://deb.debian.org/debian unstable/main i386 libxcb1 i386 1.17.0-2 [148 kB] Get: 116 http://deb.debian.org/debian unstable/main i386 libx11-data all 2:1.8.7-1 [328 kB] Get: 117 http://deb.debian.org/debian unstable/main i386 libx11-6 i386 2:1.8.7-1+b1 [822 kB] Get: 118 http://deb.debian.org/debian unstable/main i386 libxcb-render0 i386 1.17.0-2 [116 kB] Get: 119 http://deb.debian.org/debian unstable/main i386 libxcb-shm0 i386 1.17.0-2 [105 kB] Get: 120 http://deb.debian.org/debian unstable/main i386 libxext6 i386 2:1.3.4-1+b1 [55.3 kB] Get: 121 http://deb.debian.org/debian unstable/main i386 libxrender1 i386 1:0.9.10-1.1+b1 [28.8 kB] Get: 122 http://deb.debian.org/debian unstable/main i386 libcairo2 i386 1.18.0-3+b1 [588 kB] Get: 123 http://deb.debian.org/debian unstable/main i386 libaom3 i386 3.8.2-3 [1910 kB] Get: 124 http://deb.debian.org/debian unstable/main i386 libdav1d7 i386 1.4.2-1 [327 kB] Get: 125 http://deb.debian.org/debian unstable/main i386 libabsl20230802 i386 20230802.1-4 [521 kB] Get: 126 http://deb.debian.org/debian unstable/main i386 libgav1-1 i386 0.19.0-2+b1 [325 kB] Get: 127 http://deb.debian.org/debian unstable/main i386 librav1e0 i386 0.7.1-2 [650 kB] Get: 128 http://deb.debian.org/debian unstable/main i386 libsharpyuv0 i386 1.4.0-0.1 [113 kB] Get: 129 http://deb.debian.org/debian unstable/main i386 libjpeg62-turbo i386 1:2.1.5-3 [169 kB] Get: 130 http://deb.debian.org/debian unstable/main i386 libyuv0 i386 0.0.1888.20240607-1 [108 kB] Get: 131 http://deb.debian.org/debian unstable/main i386 libavif16 i386 1.0.4-3 [113 kB] Get: 132 http://deb.debian.org/debian unstable/main i386 libheif-plugin-dav1d i386 1.17.6-3+b1 [10.5 kB] Get: 133 http://deb.debian.org/debian unstable/main i386 libde265-0 i386 1.0.15-1+b1 [195 kB] Get: 134 http://deb.debian.org/debian unstable/main i386 libheif-plugin-libde265 i386 1.17.6-3+b1 [13.9 kB] Get: 135 http://deb.debian.org/debian unstable/main i386 libheif1 i386 1.17.6-3+b1 [300 kB] Get: 136 http://deb.debian.org/debian unstable/main i386 libdeflate0 i386 1.20-1 [46.9 kB] Get: 137 http://deb.debian.org/debian unstable/main i386 libjbig0 i386 2.1-6.1+b1 [31.8 kB] Get: 138 http://deb.debian.org/debian unstable/main i386 liblerc4 i386 4.0.0+ds-4+b1 [180 kB] Get: 139 http://deb.debian.org/debian unstable/main i386 libwebp7 i386 1.4.0-0.1 [318 kB] Get: 140 http://deb.debian.org/debian unstable/main i386 libtiff6 i386 4.5.1+git230720-4 [338 kB] Get: 141 http://deb.debian.org/debian unstable/main i386 libxpm4 i386 1:3.5.17-1+b1 [57.8 kB] Get: 142 http://deb.debian.org/debian unstable/main i386 libgd3 i386 2.3.3-9+b3 [129 kB] Get: 143 http://deb.debian.org/debian unstable/main i386 libglib2.0-0t64 i386 2.80.3-1 [1555 kB] Get: 144 http://deb.debian.org/debian unstable/main i386 liblua5.4-0 i386 5.4.6-3+b1 [169 kB] Get: 145 http://deb.debian.org/debian unstable/main i386 fontconfig i386 2.15.0-1.1 [462 kB] Get: 146 http://deb.debian.org/debian unstable/main i386 libfribidi0 i386 1.0.13-3+b1 [71.8 kB] Get: 147 http://deb.debian.org/debian unstable/main i386 libgraphite2-3 i386 1.3.14-2 [77.7 kB] Get: 148 http://deb.debian.org/debian unstable/main i386 libharfbuzz0b i386 8.3.0-2+b1 [2234 kB] Get: 149 http://deb.debian.org/debian unstable/main i386 libthai-data all 0.1.29-2 [168 kB] Get: 150 http://deb.debian.org/debian unstable/main i386 libdatrie1 i386 0.2.13-3 [39.5 kB] Get: 151 http://deb.debian.org/debian unstable/main i386 libthai0 i386 0.1.29-2 [50.1 kB] Get: 152 http://deb.debian.org/debian unstable/main i386 libpango-1.0-0 i386 1.54.0+ds-1 [226 kB] Get: 153 http://deb.debian.org/debian unstable/main i386 libpangoft2-1.0-0 i386 1.54.0+ds-1 [51.3 kB] Get: 154 http://deb.debian.org/debian unstable/main i386 libpangocairo-1.0-0 i386 1.54.0+ds-1 [36.0 kB] Get: 155 http://deb.debian.org/debian unstable/main i386 libwebpmux3 i386 1.4.0-0.1 [125 kB] Get: 156 http://deb.debian.org/debian unstable/main i386 gnuplot-nox i386 6.0.0+dfsg1-3 [925 kB] Get: 157 http://deb.debian.org/debian unstable/main i386 dh-octave-autopkgtest all 1.8.0 [10.0 kB] Get: 158 http://deb.debian.org/debian unstable/main i386 libapt-pkg-perl i386 0.1.40+b5 [68.8 kB] Get: 159 http://deb.debian.org/debian unstable/main i386 libarray-intspan-perl all 2.004-2 [25.7 kB] Get: 160 http://deb.debian.org/debian unstable/main i386 libyaml-0-2 i386 0.2.5-1+b1 [55.2 kB] Get: 161 http://deb.debian.org/debian unstable/main i386 libyaml-libyaml-perl i386 0.89+ds-1+b1 [35.9 kB] Get: 162 http://deb.debian.org/debian unstable/main i386 libconfig-model-backend-yaml-perl all 2.134-2 [10.8 kB] Get: 163 http://deb.debian.org/debian unstable/main i386 libexporter-lite-perl all 0.09-2 [10.7 kB] Get: 164 http://deb.debian.org/debian unstable/main i386 libencode-locale-perl all 1.05-3 [12.9 kB] Get: 165 http://deb.debian.org/debian unstable/main i386 libtimedate-perl all 2.3300-2 [39.3 kB] Get: 166 http://deb.debian.org/debian unstable/main i386 libhttp-date-perl all 6.06-1 [10.7 kB] Get: 167 http://deb.debian.org/debian unstable/main i386 libfile-listing-perl all 6.16-1 [12.4 kB] Get: 168 http://deb.debian.org/debian unstable/main i386 libhtml-tagset-perl all 3.24-1 [14.7 kB] Get: 169 http://deb.debian.org/debian unstable/main i386 liburi-perl all 5.28-1 [98.6 kB] Get: 170 http://deb.debian.org/debian unstable/main i386 libhtml-parser-perl i386 3.82-1 [100 kB] Get: 171 http://deb.debian.org/debian unstable/main i386 libhtml-tree-perl all 5.07-3 [211 kB] Get: 172 http://deb.debian.org/debian unstable/main i386 libclone-perl i386 0.46-1+b2 [13.9 kB] Get: 173 http://deb.debian.org/debian unstable/main i386 libio-html-perl all 1.004-3 [16.2 kB] Get: 174 http://deb.debian.org/debian unstable/main i386 liblwp-mediatypes-perl all 6.04-2 [20.2 kB] Get: 175 http://deb.debian.org/debian unstable/main i386 libhttp-message-perl all 6.46-1 [79.7 kB] Get: 176 http://deb.debian.org/debian unstable/main i386 libhttp-cookies-perl all 6.11-1 [19.1 kB] Get: 177 http://deb.debian.org/debian unstable/main i386 libhttp-negotiate-perl all 6.01-2 [13.1 kB] Get: 178 http://deb.debian.org/debian unstable/main i386 perl-openssl-defaults i386 7+b2 [6720 B] Get: 179 http://deb.debian.org/debian unstable/main i386 libnet-ssleay-perl i386 1.94-1+b1 [339 kB] Get: 180 http://deb.debian.org/debian unstable/main i386 libio-socket-ssl-perl all 2.085-1 [218 kB] Get: 181 http://deb.debian.org/debian unstable/main i386 libnet-http-perl all 6.23-1 [23.9 kB] Get: 182 http://deb.debian.org/debian unstable/main i386 liblwp-protocol-https-perl all 6.14-1 [10.8 kB] Get: 183 http://deb.debian.org/debian unstable/main i386 libwww-robotrules-perl all 6.02-1 [12.9 kB] Get: 184 http://deb.debian.org/debian unstable/main i386 libwww-perl all 6.77-1 [183 kB] Get: 185 http://deb.debian.org/debian unstable/main i386 liberror-perl all 0.17029-2 [29.0 kB] Get: 186 http://deb.debian.org/debian unstable/main i386 libparse-debcontrol-perl all 2.005-6 [21.6 kB] Get: 187 http://deb.debian.org/debian unstable/main i386 libsoftware-copyright-perl all 0.012-2 [18.0 kB] Get: 188 http://deb.debian.org/debian unstable/main i386 libalgorithm-c3-perl all 0.11-2 [10.8 kB] Get: 189 http://deb.debian.org/debian unstable/main i386 libclass-c3-perl all 0.35-2 [21.0 kB] Get: 190 http://deb.debian.org/debian unstable/main i386 libmro-compat-perl all 0.15-2 [11.8 kB] Get: 191 http://deb.debian.org/debian unstable/main i386 libdata-section-perl all 0.200008-1 [13.1 kB] Get: 192 http://deb.debian.org/debian unstable/main i386 libtext-template-perl all 1.61-1 [54.4 kB] Get: 193 http://deb.debian.org/debian unstable/main i386 libsoftware-license-perl all 0.104006-1 [116 kB] Get: 194 http://deb.debian.org/debian unstable/main i386 libsoftware-licensemoreutils-perl all 1.009-1 [22.0 kB] Get: 195 http://deb.debian.org/debian unstable/main i386 libsort-versions-perl all 1.62-3 [8928 B] Get: 196 http://deb.debian.org/debian unstable/main i386 libtext-reform-perl all 1.20-5 [36.0 kB] Get: 197 http://deb.debian.org/debian unstable/main i386 libtext-autoformat-perl all 1.750000-2 [35.2 kB] Get: 198 http://deb.debian.org/debian unstable/main i386 libtext-levenshtein-damerau-perl all 0.41-3 [12.3 kB] Get: 199 http://deb.debian.org/debian unstable/main i386 libtoml-tiny-perl all 0.17-1 [22.9 kB] Get: 200 http://deb.debian.org/debian unstable/main i386 libindirect-perl i386 0.39-2+b3 [28.0 kB] Get: 201 http://deb.debian.org/debian unstable/main i386 libxs-parse-keyword-perl i386 0.42-1 [61.5 kB] Get: 202 http://deb.debian.org/debian unstable/main i386 libxs-parse-sublike-perl i386 0.21-2+b2 [41.7 kB] Get: 203 http://deb.debian.org/debian unstable/main i386 libobject-pad-perl i386 0.808-1+b2 [124 kB] Get: 204 http://deb.debian.org/debian unstable/main i386 libfeature-compat-class-perl all 0.06-1 [10.7 kB] Get: 205 http://deb.debian.org/debian unstable/main i386 libsyntax-keyword-try-perl i386 0.29-2 [27.1 kB] Get: 206 http://deb.debian.org/debian unstable/main i386 libfeature-compat-try-perl all 0.05-1 [10.4 kB] Get: 207 http://deb.debian.org/debian unstable/main i386 libio-interactive-perl all 1.025-1 [11.4 kB] Get: 208 http://deb.debian.org/debian unstable/main i386 liblog-any-perl all 1.717-1 [78.9 kB] Get: 209 http://deb.debian.org/debian unstable/main i386 liblog-any-adapter-screen-perl all 0.140-2 [13.3 kB] Get: 210 http://deb.debian.org/debian unstable/main i386 libsub-exporter-progressive-perl all 0.001013-3 [7496 B] Get: 211 http://deb.debian.org/debian unstable/main i386 libvariable-magic-perl i386 0.64-1 [45.2 kB] Get: 212 http://deb.debian.org/debian unstable/main i386 libb-hooks-endofscope-perl all 0.28-1 [17.5 kB] Get: 213 http://deb.debian.org/debian unstable/main i386 libsub-identify-perl i386 0.14-3+b2 [11.2 kB] Get: 214 http://deb.debian.org/debian unstable/main i386 libsub-name-perl i386 0.27-1+b2 [12.6 kB] Get: 215 http://deb.debian.org/debian unstable/main i386 libnamespace-clean-perl all 0.27-2 [17.8 kB] Get: 216 http://deb.debian.org/debian unstable/main i386 libnumber-compare-perl all 0.03-3 [6332 B] Get: 217 http://deb.debian.org/debian unstable/main i386 libtext-glob-perl all 0.11-3 [7676 B] Get: 218 http://deb.debian.org/debian unstable/main i386 libpath-iterator-rule-perl all 1.015-2 [41.7 kB] Get: 219 http://deb.debian.org/debian unstable/main i386 libpod-parser-perl all 1.67-1 [94.1 kB] Get: 220 http://deb.debian.org/debian unstable/main i386 libpod-constants-perl all 0.19-2 [17.3 kB] Get: 221 http://deb.debian.org/debian unstable/main i386 libset-intspan-perl all 1.19-3 [25.3 kB] Get: 222 http://deb.debian.org/debian unstable/main i386 libstring-copyright-perl all 0.003014-1 [23.4 kB] Get: 223 http://deb.debian.org/debian unstable/main i386 libstring-escape-perl all 2010.002-3 [18.7 kB] Get: 224 http://deb.debian.org/debian unstable/main i386 libregexp-pattern-license-perl all 3.11.0-1 [94.8 kB] Get: 225 http://deb.debian.org/debian unstable/main i386 libregexp-pattern-perl all 0.2.14-2 [18.7 kB] Get: 226 http://deb.debian.org/debian unstable/main i386 libstring-license-perl all 0.0.9-2 [35.5 kB] Get: 227 http://deb.debian.org/debian unstable/main i386 licensecheck all 3.3.9-1 [50.1 kB] Get: 228 http://deb.debian.org/debian unstable/main i386 diffstat i386 1.66-1 [34.7 kB] Get: 229 http://deb.debian.org/debian unstable/main i386 libassuan0 i386 2.5.6-1+b1 [52.2 kB] Get: 230 http://deb.debian.org/debian unstable/main i386 gpgconf i386 2.2.43-7 [126 kB] Get: 231 http://deb.debian.org/debian unstable/main i386 gpg i386 2.2.43-7 [566 kB] Get: 232 http://deb.debian.org/debian unstable/main i386 iso-codes all 4.16.0-1 [2936 kB] Get: 233 http://deb.debian.org/debian unstable/main i386 libberkeleydb-perl i386 0.64-2+b3 [126 kB] Get: 234 http://deb.debian.org/debian unstable/main i386 libclass-xsaccessor-perl i386 1.19-4+b3 [37.7 kB] Get: 235 http://deb.debian.org/debian unstable/main i386 libconfig-tiny-perl all 2.30-1 [18.9 kB] Get: 236 http://deb.debian.org/debian unstable/main i386 libconst-fast-perl all 0.014-2 [8792 B] Get: 237 http://deb.debian.org/debian unstable/main i386 libcpanel-json-xs-perl i386 4.38-1 [133 kB] Get: 238 http://deb.debian.org/debian unstable/main i386 libaliased-perl all 0.34-3 [13.5 kB] Get: 239 http://deb.debian.org/debian unstable/main i386 libclass-data-inheritable-perl all 0.08-3 [8588 B] Get: 240 http://deb.debian.org/debian unstable/main i386 libdevel-stacktrace-perl all 2.0500-1 [26.4 kB] Get: 241 http://deb.debian.org/debian unstable/main i386 libexception-class-perl all 1.45-1 [34.6 kB] Get: 242 http://deb.debian.org/debian unstable/main i386 libiterator-perl all 0.03+ds1-2 [18.8 kB] Get: 243 http://deb.debian.org/debian unstable/main i386 libiterator-util-perl all 0.02+ds1-2 [14.0 kB] Get: 244 http://deb.debian.org/debian unstable/main i386 libdata-dpath-perl all 0.59-1 [43.6 kB] Get: 245 http://deb.debian.org/debian unstable/main i386 libnet-domain-tld-perl all 1.75-3 [31.9 kB] Get: 246 http://deb.debian.org/debian unstable/main i386 libdata-validate-domain-perl all 0.10-1.1 [11.1 kB] Get: 247 http://deb.debian.org/debian unstable/main i386 libnet-ipv6addr-perl all 1.02-1 [21.7 kB] Get: 248 http://deb.debian.org/debian unstable/main i386 libnet-netmask-perl all 2.0002-2 [28.6 kB] Get: 249 http://deb.debian.org/debian unstable/main i386 libnetaddr-ip-perl i386 4.079+dfsg-2+b3 [98.8 kB] Get: 250 http://deb.debian.org/debian unstable/main i386 libdata-validate-ip-perl all 0.31-1 [20.6 kB] Get: 251 http://deb.debian.org/debian unstable/main i386 libdata-validate-uri-perl all 0.07-3 [11.0 kB] Get: 252 http://deb.debian.org/debian unstable/main i386 libdevel-size-perl i386 0.84-1 [24.3 kB] Get: 253 http://deb.debian.org/debian unstable/main i386 libemail-address-xs-perl i386 1.05-1+b3 [30.2 kB] Get: 254 http://deb.debian.org/debian unstable/main i386 libipc-system-simple-perl all 1.30-2 [26.8 kB] Get: 255 http://deb.debian.org/debian unstable/main i386 libfile-basedir-perl all 0.09-2 [15.1 kB] Get: 256 http://deb.debian.org/debian unstable/main i386 libfile-find-rule-perl all 0.34-3 [26.6 kB] Get: 257 http://deb.debian.org/debian unstable/main i386 libio-string-perl all 1.08-4 [12.1 kB] Get: 258 http://deb.debian.org/debian unstable/main i386 libfont-ttf-perl all 1.06-2 [318 kB] Get: 259 http://deb.debian.org/debian unstable/main i386 libhtml-html5-entities-perl all 0.004-3 [21.0 kB] Get: 260 http://deb.debian.org/debian unstable/main i386 libhtml-tokeparser-simple-perl all 3.16-4 [39.1 kB] Get: 261 http://deb.debian.org/debian unstable/main i386 libipc-run3-perl all 0.049-1 [31.5 kB] Get: 262 http://deb.debian.org/debian unstable/main i386 libjson-maybexs-perl all 1.004005-1 [12.9 kB] Get: 263 http://deb.debian.org/debian unstable/main i386 liblist-compare-perl all 0.55-2 [65.7 kB] Get: 264 http://deb.debian.org/debian unstable/main i386 liblist-someutils-perl all 0.59-1 [37.1 kB] Get: 265 http://deb.debian.org/debian unstable/main i386 liblist-utilsby-perl all 0.12-2 [15.5 kB] Get: 266 http://deb.debian.org/debian unstable/main i386 libmldbm-perl all 2.05-4 [16.8 kB] Get: 267 http://deb.debian.org/debian unstable/main i386 libclass-method-modifiers-perl all 2.15-1 [18.0 kB] Get: 268 http://deb.debian.org/debian unstable/main i386 libimport-into-perl all 1.002005-2 [11.3 kB] Get: 269 http://deb.debian.org/debian unstable/main i386 librole-tiny-perl all 2.002004-1 [21.4 kB] Get: 270 http://deb.debian.org/debian unstable/main i386 libsub-quote-perl all 2.006008-1 [21.8 kB] Get: 271 http://deb.debian.org/debian unstable/main i386 libmoo-perl all 2.005005-1 [58.0 kB] Get: 272 http://deb.debian.org/debian unstable/main i386 libstrictures-perl all 2.000006-1 [18.6 kB] Get: 273 http://deb.debian.org/debian unstable/main i386 libmoox-aliases-perl all 0.001006-2 [7156 B] Get: 274 http://deb.debian.org/debian unstable/main i386 libperlio-gzip-perl i386 0.20-1+b3 [17.8 kB] Get: 275 http://deb.debian.org/debian unstable/main i386 libperlio-utf8-strict-perl i386 0.010-1+b2 [11.6 kB] Get: 276 http://deb.debian.org/debian unstable/main i386 libproc-processtable-perl i386 0.636-1+b2 [42.4 kB] Get: 277 http://deb.debian.org/debian unstable/main i386 libregexp-wildcards-perl all 1.05-3 [14.1 kB] Get: 278 http://deb.debian.org/debian unstable/main i386 libsereal-decoder-perl i386 5.004+ds-1+b2 [106 kB] Get: 279 http://deb.debian.org/debian unstable/main i386 libsereal-encoder-perl i386 5.004+ds-1+b2 [110 kB] Get: 280 http://deb.debian.org/debian unstable/main i386 libterm-readkey-perl i386 2.38-2+b3 [25.4 kB] Get: 281 http://deb.debian.org/debian unstable/main i386 libtext-levenshteinxs-perl i386 0.03-5+b3 [8628 B] Get: 282 http://deb.debian.org/debian unstable/main i386 libmarkdown2 i386 2.2.7-2+b1 [37.5 kB] Get: 283 http://deb.debian.org/debian unstable/main i386 libtext-markdown-discount-perl i386 0.16-1+b2 [13.2 kB] Get: 284 http://deb.debian.org/debian unstable/main i386 libdata-messagepack-perl i386 1.02-1+b3 [33.0 kB] Get: 285 http://deb.debian.org/debian unstable/main i386 libtext-xslate-perl i386 3.5.9-2 [177 kB] Get: 286 http://deb.debian.org/debian unstable/main i386 libtime-duration-perl all 1.21-2 [13.1 kB] Get: 287 http://deb.debian.org/debian unstable/main i386 libtime-moment-perl i386 0.44-2+b3 [79.7 kB] Get: 288 http://deb.debian.org/debian unstable/main i386 libunicode-utf8-perl i386 0.62-2+b2 [20.8 kB] Get: 289 http://deb.debian.org/debian unstable/main i386 libcgi-pm-perl all 4.65-1 [217 kB] Get: 290 http://deb.debian.org/debian unstable/main i386 libhtml-form-perl all 6.11-1 [33.1 kB] Get: 291 http://deb.debian.org/debian unstable/main i386 libwww-mechanize-perl all 2.18-1 [114 kB] Get: 292 http://deb.debian.org/debian unstable/main i386 libxml-namespacesupport-perl all 1.12-2 [15.1 kB] Get: 293 http://deb.debian.org/debian unstable/main i386 libxml-sax-base-perl all 1.09-3 [20.6 kB] Get: 294 http://deb.debian.org/debian unstable/main i386 libxml-sax-perl all 1.02+dfsg-3 [59.4 kB] Get: 295 http://deb.debian.org/debian unstable/main i386 libxml-libxml-perl i386 2.0207+dfsg+really+2.0134-3.1 [323 kB] Get: 296 http://deb.debian.org/debian unstable/main i386 liblz1 i386 1.15~pre1-1 [39.4 kB] Get: 297 http://deb.debian.org/debian unstable/main i386 plzip i386 1.11-1 [67.5 kB] Get: 298 http://deb.debian.org/debian unstable/main i386 liblzo2-2 i386 2.10-3 [57.6 kB] Get: 299 http://deb.debian.org/debian unstable/main i386 lzop i386 1.04-2 [87.8 kB] Get: 300 http://deb.debian.org/debian unstable/main i386 patchutils i386 0.4.2-1 [79.6 kB] Get: 301 http://deb.debian.org/debian unstable/main i386 t1utils i386 1.41-4 [62.3 kB] Get: 302 http://deb.debian.org/debian unstable/main i386 unzip i386 6.0-28 [166 kB] Get: 303 http://deb.debian.org/debian unstable/main i386 lintian all 2.117.0 [1052 kB] Get: 304 http://deb.debian.org/debian unstable/main i386 libconfig-model-dpkg-perl all 3.005 [173 kB] Get: 305 http://deb.debian.org/debian unstable/main i386 libconvert-binhex-perl all 1.125-3 [27.4 kB] Get: 306 http://deb.debian.org/debian unstable/main i386 libnet-smtp-ssl-perl all 1.04-2 [6548 B] Get: 307 http://deb.debian.org/debian unstable/main i386 libmailtools-perl all 2.21-3 [88.6 kB] Get: 308 http://deb.debian.org/debian unstable/main i386 libmime-tools-perl all 5.515-1 [203 kB] Get: 309 http://deb.debian.org/debian unstable/main i386 libsuitesparseconfig7 i386 1:7.7.0+dfsg-2 [22.7 kB] Get: 310 http://deb.debian.org/debian unstable/main i386 libamd3 i386 1:7.7.0+dfsg-2 [41.6 kB] Get: 311 http://deb.debian.org/debian unstable/main i386 libblas3 i386 3.12.0-3 [140 kB] Get: 312 http://deb.debian.org/debian unstable/main i386 libgfortran5 i386 14.1.0-2 [734 kB] Get: 313 http://deb.debian.org/debian unstable/main i386 liblapack3 i386 3.12.0-3 [2167 kB] Get: 314 http://deb.debian.org/debian unstable/main i386 libarpack2t64 i386 3.9.1-1.1+b1 [101 kB] Get: 315 http://deb.debian.org/debian unstable/main i386 libccolamd3 i386 1:7.7.0+dfsg-2 [42.1 kB] Get: 316 http://deb.debian.org/debian unstable/main i386 libcamd3 i386 1:7.7.0+dfsg-2 [39.5 kB] Get: 317 http://deb.debian.org/debian unstable/main i386 libcolamd3 i386 1:7.7.0+dfsg-2 [34.1 kB] Get: 318 http://deb.debian.org/debian unstable/main i386 libcholmod5 i386 1:7.7.0+dfsg-2 [714 kB] Get: 319 http://deb.debian.org/debian unstable/main i386 libsasl2-modules-db i386 2.1.28+dfsg1-6 [20.5 kB] Get: 320 http://deb.debian.org/debian unstable/main i386 libsasl2-2 i386 2.1.28+dfsg1-6 [60.6 kB] Get: 321 http://deb.debian.org/debian unstable/main i386 libldap-2.5-0 i386 2.5.18+dfsg-1 [199 kB] Get: 322 http://deb.debian.org/debian unstable/main i386 libnghttp2-14 i386 1.62.1-1 [83.7 kB] Get: 323 http://deb.debian.org/debian unstable/main i386 libpsl5t64 i386 0.21.2-1.1 [57.4 kB] Get: 324 http://deb.debian.org/debian unstable/main i386 librtmp1 i386 2.4+20151223.gitfa8646d.1-2+b4 [62.0 kB] Get: 325 http://deb.debian.org/debian unstable/main i386 libssh2-1t64 i386 1.11.0-5 [225 kB] Get: 326 http://deb.debian.org/debian unstable/main i386 libcurl3t64-gnutls i386 8.8.0-1 [469 kB] Get: 327 http://deb.debian.org/debian unstable/main i386 libcxsparse4 i386 1:7.7.0+dfsg-2 [99.3 kB] Get: 328 http://deb.debian.org/debian unstable/main i386 libfftw3-double3 i386 3.3.10-1+b2 [624 kB] Get: 329 http://deb.debian.org/debian unstable/main i386 libfftw3-single3 i386 3.3.10-1+b2 [645 kB] Get: 330 http://deb.debian.org/debian unstable/main i386 libxfixes3 i386 1:6.0.0-2+b1 [20.7 kB] Get: 331 http://deb.debian.org/debian unstable/main i386 libxcursor1 i386 1:1.2.2-1 [38.5 kB] Get: 332 http://deb.debian.org/debian unstable/main i386 libxft2 i386 2.3.6-1+b1 [55.3 kB] Get: 333 http://deb.debian.org/debian unstable/main i386 libxinerama1 i386 2:1.1.4-3+b1 [16.3 kB] Get: 334 http://deb.debian.org/debian unstable/main i386 libfltk1.3t64 i386 1.3.8-6.1 [580 kB] Get: 335 http://deb.debian.org/debian unstable/main i386 libglvnd0 i386 1.7.0-1+b1 [44.4 kB] Get: 336 http://deb.debian.org/debian unstable/main i386 libdrm-common all 2.4.121-2 [7972 B] Get: 337 http://deb.debian.org/debian unstable/main i386 libdrm2 i386 2.4.121-2 [41.5 kB] Get: 338 http://deb.debian.org/debian unstable/main i386 libglapi-mesa i386 24.1.1-2 [36.3 kB] Get: 339 http://deb.debian.org/debian unstable/main i386 libx11-xcb1 i386 2:1.8.7-1+b1 [232 kB] Get: 340 http://deb.debian.org/debian unstable/main i386 libxcb-dri2-0 i386 1.17.0-2 [107 kB] Get: 341 http://deb.debian.org/debian unstable/main i386 libxcb-dri3-0 i386 1.17.0-2 [107 kB] Get: 342 http://deb.debian.org/debian unstable/main i386 libxcb-glx0 i386 1.17.0-2 [123 kB] Get: 343 http://deb.debian.org/debian unstable/main i386 libxcb-present0 i386 1.17.0-2 [105 kB] Get: 344 http://deb.debian.org/debian unstable/main i386 libxcb-randr0 i386 1.17.0-2 [118 kB] Get: 345 http://deb.debian.org/debian unstable/main i386 libxcb-sync1 i386 1.17.0-2 [109 kB] Get: 346 http://deb.debian.org/debian unstable/main i386 libxcb-xfixes0 i386 1.17.0-2 [109 kB] Get: 347 http://deb.debian.org/debian unstable/main i386 libxshmfence1 i386 1.3-1+b1 [9028 B] Get: 348 http://deb.debian.org/debian unstable/main i386 libxxf86vm1 i386 1:1.1.4-1+b2 [21.7 kB] Get: 349 http://deb.debian.org/debian unstable/main i386 libvulkan1 i386 1.3.283.0-1 [134 kB] Get: 350 http://deb.debian.org/debian unstable/main i386 libdrm-amdgpu1 i386 2.4.121-2 [25.0 kB] Get: 351 http://deb.debian.org/debian unstable/main i386 libpciaccess0 i386 0.17-3+b1 [53.8 kB] Get: 352 http://deb.debian.org/debian unstable/main i386 libdrm-intel1 i386 2.4.121-2 [66.6 kB] Get: 353 http://deb.debian.org/debian unstable/main i386 libdrm-radeon1 i386 2.4.121-2 [23.0 kB] Get: 354 http://deb.debian.org/debian unstable/main i386 libz3-4 i386 4.8.12-3.1+b2 [7989 kB] Get: 355 http://deb.debian.org/debian unstable/main i386 libllvm17t64 i386 1:17.0.6-12 [27.7 MB] Get: 356 http://deb.debian.org/debian unstable/main i386 libsensors-config all 1:3.6.0-10 [14.6 kB] Get: 357 http://deb.debian.org/debian unstable/main i386 libsensors5 i386 1:3.6.0-10 [35.5 kB] Get: 358 http://deb.debian.org/debian unstable/main i386 libgl1-mesa-dri i386 24.1.1-2 [8854 kB] Get: 359 http://deb.debian.org/debian unstable/main i386 libglx-mesa0 i386 24.1.1-2 [159 kB] Get: 360 http://deb.debian.org/debian unstable/main i386 libglx0 i386 1.7.0-1+b1 [38.0 kB] Get: 361 http://deb.debian.org/debian unstable/main i386 libgl1 i386 1.7.0-1+b1 [82.7 kB] Get: 362 http://deb.debian.org/debian unstable/main i386 libfltk-gl1.3t64 i386 1.3.8-6.1 [62.9 kB] Get: 363 http://deb.debian.org/debian unstable/main i386 libgl2ps1.4 i386 1.4.2+dfsg1-2 [42.0 kB] Get: 364 http://deb.debian.org/debian unstable/main i386 libltdl7 i386 2.4.7-7+b1 [395 kB] Get: 365 http://deb.debian.org/debian unstable/main i386 libglpk40 i386 5.0-1+b1 [420 kB] Get: 366 http://deb.debian.org/debian unstable/main i386 libopengl0 i386 1.7.0-1+b1 [29.5 kB] Get: 367 http://deb.debian.org/debian unstable/main i386 libglu1-mesa i386 9.0.2-1.1+b1 [187 kB] Get: 368 http://deb.debian.org/debian unstable/main i386 libhwy1t64 i386 1.2.0-2 [870 kB] Get: 369 http://deb.debian.org/debian unstable/main i386 liblcms2-2 i386 2.14-2+b1 [165 kB] Get: 370 http://deb.debian.org/debian unstable/main i386 libjxl0.8 i386 0.8.2-4 [1211 kB] Get: 371 http://deb.debian.org/debian unstable/main i386 libwmflite-0.2-7 i386 0.2.13-1.1+b2 [78.7 kB] Get: 372 http://deb.debian.org/debian unstable/main i386 libgraphicsmagick-q16-3t64 i386 1.4+really1.3.43-1+b1 [1258 kB] Get: 373 http://deb.debian.org/debian unstable/main i386 libgraphicsmagick++-q16-12t64 i386 1.4+really1.3.43-1+b1 [129 kB] Get: 374 http://deb.debian.org/debian unstable/main i386 libcurl4t64 i386 8.8.0-1 [477 kB] Get: 375 http://deb.debian.org/debian unstable/main i386 libaec0 i386 1.1.3-1 [24.5 kB] Get: 376 http://deb.debian.org/debian unstable/main i386 libsz2 i386 1.1.3-1 [7824 B] Get: 377 http://deb.debian.org/debian unstable/main i386 libhdf5-103-1t64 i386 1.10.10+repack-3.3 [1178 kB] Get: 378 http://deb.debian.org/debian unstable/main i386 libasound2-data all 1.2.11-1 [20.9 kB] Get: 379 http://deb.debian.org/debian unstable/main i386 libasound2t64 i386 1.2.11-1+b1 [395 kB] Get: 380 http://deb.debian.org/debian unstable/main i386 libopus0 i386 1.4-1+b1 [197 kB] Get: 381 http://deb.debian.org/debian unstable/main i386 libsamplerate0 i386 0.2.2-4+b1 [953 kB] Get: 382 http://deb.debian.org/debian unstable/main i386 libjack-jackd2-0 i386 1.9.21~dfsg-3+b3 [316 kB] Get: 383 http://deb.debian.org/debian unstable/main i386 libportaudio2 i386 19.6.0-1.2+b2 [67.3 kB] Get: 384 http://deb.debian.org/debian unstable/main i386 libqhull-r8.0 i386 2020.2-6+b1 [256 kB] Get: 385 http://deb.debian.org/debian unstable/main i386 libqrupdate1 i386 1.1.2-4+b1 [38.1 kB] Get: 386 http://deb.debian.org/debian unstable/main i386 libqscintilla2-qt6-l10n all 2.14.1+dfsg-1 [105 kB] Get: 387 http://deb.debian.org/debian unstable/main i386 shared-mime-info i386 2.4-5 [760 kB] Get: 388 http://deb.debian.org/debian unstable/main i386 libb2-1 i386 0.98.1-1.1+b1 [45.6 kB] Get: 389 http://deb.debian.org/debian unstable/main i386 libdouble-conversion3 i386 3.3.0-1+b1 [44.9 kB] Get: 390 http://deb.debian.org/debian unstable/main i386 libpcre2-16-0 i386 10.42-4+b1 [244 kB] Get: 391 http://deb.debian.org/debian unstable/main i386 libqt6core6t64 i386 6.6.2+dfsg-8 [1844 kB] Get: 392 http://deb.debian.org/debian unstable/main i386 libwayland-server0 i386 1.22.0-2.1+b1 [34.8 kB] Get: 393 http://deb.debian.org/debian unstable/main i386 libgbm1 i386 24.1.1-2 [42.0 kB] Get: 394 http://deb.debian.org/debian unstable/main i386 libwayland-client0 i386 1.22.0-2.1+b1 [26.4 kB] Get: 395 http://deb.debian.org/debian unstable/main i386 libegl-mesa0 i386 24.1.1-2 [136 kB] Get: 396 http://deb.debian.org/debian unstable/main i386 libegl1 i386 1.7.0-1+b1 [36.2 kB] Get: 397 http://deb.debian.org/debian unstable/main i386 x11-common all 1:7.7+23 [252 kB] Get: 398 http://deb.debian.org/debian unstable/main i386 libice6 i386 2:1.0.10-1+b1 [58.6 kB] Get: 399 http://deb.debian.org/debian unstable/main i386 libevdev2 i386 1.13.2+dfsg-1 [30.6 kB] Get: 400 http://deb.debian.org/debian unstable/main i386 libmtdev1t64 i386 1.1.6-1.2 [22.6 kB] Get: 401 http://deb.debian.org/debian unstable/main i386 libgudev-1.0-0 i386 238-5 [14.9 kB] Get: 402 http://deb.debian.org/debian unstable/main i386 libwacom-common all 2.10.0-2 [62.5 kB] Get: 403 http://deb.debian.org/debian unstable/main i386 libwacom9 i386 2.10.0-2 [23.8 kB] Get: 404 http://deb.debian.org/debian unstable/main i386 libinput-bin i386 1.26.0-1 [25.5 kB] Get: 405 http://deb.debian.org/debian unstable/main i386 libinput10 i386 1.26.0-1 [146 kB] Get: 406 http://deb.debian.org/debian unstable/main i386 libmd4c0 i386 0.4.8-1+b1 [45.2 kB] Get: 407 http://deb.debian.org/debian unstable/main i386 libdbus-1-3 i386 1.14.10-4+b1 [217 kB] Get: 408 http://deb.debian.org/debian unstable/main i386 libqt6dbus6 i386 6.6.2+dfsg-8 [276 kB] Get: 409 http://deb.debian.org/debian unstable/main i386 libsm6 i386 2:1.2.3-1+b1 [33.9 kB] Get: 410 http://deb.debian.org/debian unstable/main i386 libts0t64 i386 1.22-1.1 [63.4 kB] Get: 411 http://deb.debian.org/debian unstable/main i386 libxcb-util1 i386 0.4.0-1+b1 [23.6 kB] Get: 412 http://deb.debian.org/debian unstable/main i386 libxcb-image0 i386 0.4.0-2+b1 [22.8 kB] Get: 413 http://deb.debian.org/debian unstable/main i386 libxcb-render-util0 i386 0.3.9-1+b1 [18.7 kB] Get: 414 http://deb.debian.org/debian unstable/main i386 libxcb-cursor0 i386 0.1.4-1+b1 [17.3 kB] Get: 415 http://deb.debian.org/debian unstable/main i386 libxcb-icccm4 i386 0.4.1-1.1+b1 [27.5 kB] Get: 416 http://deb.debian.org/debian unstable/main i386 libxcb-keysyms1 i386 0.4.0-1+b2 [16.7 kB] Get: 417 http://deb.debian.org/debian unstable/main i386 libxcb-shape0 i386 1.17.0-2 [105 kB] Get: 418 http://deb.debian.org/debian unstable/main i386 libxcb-xinput0 i386 1.17.0-2 [133 kB] Get: 419 http://deb.debian.org/debian unstable/main i386 libxcb-xkb1 i386 1.17.0-2 [131 kB] Get: 420 http://deb.debian.org/debian unstable/main i386 xkb-data all 2.42-1 [790 kB] Get: 421 http://deb.debian.org/debian unstable/main i386 libxkbcommon0 i386 1.6.0-1+b1 [115 kB] Get: 422 http://deb.debian.org/debian unstable/main i386 libxkbcommon-x11-0 i386 1.6.0-1+b1 [17.1 kB] Get: 423 http://deb.debian.org/debian unstable/main i386 libqt6gui6 i386 6.6.2+dfsg-8 [3222 kB] Get: 424 http://deb.debian.org/debian unstable/main i386 libavahi-common-data i386 0.8-13+b2 [112 kB] Get: 425 http://deb.debian.org/debian unstable/main i386 libavahi-common3 i386 0.8-13+b2 [45.3 kB] Get: 426 http://deb.debian.org/debian unstable/main i386 libavahi-client3 i386 0.8-13+b2 [49.3 kB] Get: 427 http://deb.debian.org/debian unstable/main i386 libcups2t64 i386 2.4.7-3 [264 kB] Get: 428 http://deb.debian.org/debian unstable/main i386 libqt6widgets6 i386 6.6.2+dfsg-8 [2782 kB] Get: 429 http://deb.debian.org/debian unstable/main i386 libqt6printsupport6 i386 6.6.2+dfsg-8 [231 kB] Get: 430 http://deb.debian.org/debian unstable/main i386 libqscintilla2-qt6-15 i386 2.14.1+dfsg-1+b3 [1203 kB] Get: 431 http://deb.debian.org/debian unstable/main i386 libqt6core5compat6 i386 6.6.2-2 [144 kB] Get: 432 http://deb.debian.org/debian unstable/main i386 libqt6sql6 i386 6.6.2+dfsg-8 [148 kB] Get: 433 http://deb.debian.org/debian unstable/main i386 libqt6help6 i386 6.6.2-3 [192 kB] Get: 434 http://deb.debian.org/debian unstable/main i386 libduktape207 i386 2.7.0-2+b1 [138 kB] Get: 435 http://deb.debian.org/debian unstable/main i386 libproxy1v5 i386 0.5.6-1 [31.6 kB] Get: 436 http://deb.debian.org/debian unstable/main i386 libqt6network6 i386 6.6.2+dfsg-8 [768 kB] Get: 437 http://deb.debian.org/debian unstable/main i386 libqt6opengl6 i386 6.6.2+dfsg-8 [437 kB] Get: 438 http://deb.debian.org/debian unstable/main i386 libqt6openglwidgets6 i386 6.6.2+dfsg-8 [50.2 kB] Get: 439 http://deb.debian.org/debian unstable/main i386 libqt6xml6 i386 6.6.2+dfsg-8 [88.4 kB] Get: 440 http://deb.debian.org/debian unstable/main i386 libogg0 i386 1.3.5-3+b1 [24.5 kB] Get: 441 http://deb.debian.org/debian unstable/main i386 libflac12t64 i386 1.4.3+ds-2.1 [206 kB] Get: 442 http://deb.debian.org/debian unstable/main i386 libmp3lame0 i386 3.100-6+b2 [362 kB] Get: 443 http://deb.debian.org/debian unstable/main i386 libmpg123-0t64 i386 1.32.6-3 [150 kB] Get: 444 http://deb.debian.org/debian unstable/main i386 libvorbis0a i386 1.3.7-2 [88.3 kB] Get: 445 http://deb.debian.org/debian unstable/main i386 libvorbisenc2 i386 1.3.7-2 [69.5 kB] Get: 446 http://deb.debian.org/debian unstable/main i386 libsndfile1 i386 1.2.2-1+b2 [222 kB] Get: 447 http://deb.debian.org/debian unstable/main i386 libspqr4 i386 1:7.7.0+dfsg-2 [159 kB] Get: 448 http://deb.debian.org/debian unstable/main i386 libsundials-ida6 i386 6.4.1+dfsg1-3+b6 [153 kB] Get: 449 http://deb.debian.org/debian unstable/main i386 libbtf2 i386 1:7.7.0+dfsg-2 [24.4 kB] Get: 450 http://deb.debian.org/debian unstable/main i386 libklu2 i386 1:7.7.0+dfsg-2 [91.5 kB] Get: 451 http://deb.debian.org/debian unstable/main i386 libfftw3-long3 i386 3.3.10-1+b2 [339 kB] Get: 452 http://deb.debian.org/debian unstable/main i386 libevent-core-2.1-7t64 i386 2.1.12-stable-10 [140 kB] Get: 453 http://deb.debian.org/debian unstable/main i386 libevent-pthreads-2.1-7t64 i386 2.1.12-stable-10 [54.1 kB] Get: 454 http://deb.debian.org/debian unstable/main i386 libnl-3-200 i386 3.7.0-0.3 [61.8 kB] Get: 455 http://deb.debian.org/debian unstable/main i386 libnl-route-3-200 i386 3.7.0-0.3 [193 kB] Get: 456 http://deb.debian.org/debian unstable/main i386 libibverbs1 i386 52.0-1 [66.5 kB] Get: 457 http://deb.debian.org/debian unstable/main i386 libpsm-infinipath1 i386 3.3+20.604758e7-6.3 [177 kB] Get: 458 http://deb.debian.org/debian unstable/main i386 librdmacm1t64 i386 52.0-1 [75.9 kB] Get: 459 http://deb.debian.org/debian unstable/main i386 libfabric1 i386 1.17.0-3+b1 [540 kB] Get: 460 http://deb.debian.org/debian unstable/main i386 libhwloc15 i386 2.10.0-1+b1 [175 kB] Get: 461 http://deb.debian.org/debian unstable/main i386 libxnvctrl0 i386 535.171.04-1 [13.7 kB] Get: 462 http://deb.debian.org/debian unstable/main i386 ocl-icd-libopencl1 i386 2.3.2-1+b1 [43.5 kB] Get: 463 http://deb.debian.org/debian unstable/main i386 libhwloc-plugins i386 2.10.0-1+b1 [18.4 kB] Get: 464 http://deb.debian.org/debian unstable/main i386 libopenmpi3t64 i386 4.1.6-13.3 [2626 kB] Get: 465 http://deb.debian.org/debian unstable/main i386 libfftw3-mpi3 i386 3.3.10-1+b2 [67.0 kB] Get: 466 http://deb.debian.org/debian unstable/main i386 libhdf5-openmpi-103-1t64 i386 1.10.10+repack-3.3 [1231 kB] Get: 467 http://deb.debian.org/debian unstable/main i386 libcombblas2.0.0t64 i386 2.0.0-3.1+b1 [283 kB] Get: 468 http://deb.debian.org/debian unstable/main i386 libmetis5 i386 5.1.0.dfsg-7+b1 [175 kB] Get: 469 http://deb.debian.org/debian unstable/main i386 libptscotch-7.0 i386 7.0.4-2 [845 kB] Get: 470 http://deb.debian.org/debian unstable/main i386 libsuperlu-dist8 i386 8.2.1+dfsg1-1+b2 [576 kB] Get: 471 http://deb.debian.org/debian unstable/main i386 libhypre-2.29.0 i386 2.29.0-2 [1474 kB] Get: 472 http://deb.debian.org/debian unstable/main i386 openmpi-common all 4.1.6-13.3 [169 kB] Get: 473 http://deb.debian.org/debian unstable/main i386 openmpi-bin i386 4.1.6-13.3 [198 kB] Get: 474 http://deb.debian.org/debian unstable/main i386 mpi-default-bin i386 1.15 [2408 B] Get: 475 http://deb.debian.org/debian unstable/main i386 libscalapack-openmpi2.2 i386 2.2.1-3.1 [1436 kB] Get: 476 http://deb.debian.org/debian unstable/main i386 libmumps-5.6t64 i386 5.6.2-2.1+b1 [1865 kB] Get: 477 http://deb.debian.org/debian unstable/main i386 libsuperlu6 i386 6.0.1+dfsg1-1+b1 [172 kB] Get: 478 http://deb.debian.org/debian unstable/main i386 libumfpack6 i386 1:7.7.0+dfsg-2 [308 kB] Get: 479 http://deb.debian.org/debian unstable/main i386 libpetsc-real3.20 i386 3.20.6+dfsg1-1 [5747 kB] Get: 480 http://deb.debian.org/debian unstable/main i386 libsundials-nvecparallel-petsc6 i386 6.4.1+dfsg1-3+b6 [60.5 kB] Get: 481 http://deb.debian.org/debian unstable/main i386 libsundials-sunmatrix4 i386 6.4.1+dfsg1-3+b6 [112 kB] Get: 482 http://deb.debian.org/debian unstable/main i386 libsundials-sunlinsol3 i386 6.4.1+dfsg1-3+b6 [213 kB] Get: 483 http://deb.debian.org/debian unstable/main i386 libtext-unidecode-perl all 1.30-3 [101 kB] Get: 484 http://deb.debian.org/debian unstable/main i386 texinfo-lib i386 7.1-3+b1 [232 kB] Get: 485 http://deb.debian.org/debian unstable/main i386 tex-common all 6.18 [32.5 kB] Get: 486 http://deb.debian.org/debian unstable/main i386 texinfo all 7.1-3 [1748 kB] Get: 487 http://deb.debian.org/debian unstable/main i386 octave-common all 9.2.0-2 [6591 kB] Get: 488 http://deb.debian.org/debian unstable/main i386 octave i386 9.2.0-2 [10.0 MB] Get: 489 http://deb.debian.org/debian unstable/main i386 libncurses6 i386 6.5-2 [111 kB] Get: 490 http://deb.debian.org/debian unstable/main i386 libncurses-dev i386 6.5-2 [380 kB] Get: 491 http://deb.debian.org/debian unstable/main i386 libreadline-dev i386 8.2-4 [164 kB] Get: 492 http://deb.debian.org/debian unstable/main i386 libhdf5-fortran-102t64 i386 1.10.10+repack-3.3 [98.2 kB] Get: 493 http://deb.debian.org/debian unstable/main i386 libhdf5-hl-100t64 i386 1.10.10+repack-3.3 [74.4 kB] Get: 494 http://deb.debian.org/debian unstable/main i386 libhdf5-hl-fortran-100t64 i386 1.10.10+repack-3.3 [41.8 kB] Get: 495 http://deb.debian.org/debian unstable/main i386 libhdf5-cpp-103-1t64 i386 1.10.10+repack-3.3 [138 kB] Get: 496 http://deb.debian.org/debian unstable/main i386 libhdf5-hl-cpp-100t64 i386 1.10.10+repack-3.3 [21.8 kB] Get: 497 http://deb.debian.org/debian unstable/main i386 zlib1g-dev i386 1:1.3.dfsg+really1.3.1-1 [915 kB] Get: 498 http://deb.debian.org/debian unstable/main i386 libjpeg62-turbo-dev i386 1:2.1.5-3 [303 kB] Get: 499 http://deb.debian.org/debian unstable/main i386 libjpeg-dev i386 1:2.1.5-3 [71.9 kB] Get: 500 http://deb.debian.org/debian unstable/main i386 libaec-dev i386 1.1.3-1 [22.4 kB] Get: 501 http://deb.debian.org/debian unstable/main i386 libcurl4-openssl-dev i386 8.8.0-1 [601 kB] Get: 502 http://deb.debian.org/debian unstable/main i386 libssl-dev i386 3.2.2-1 [2748 kB] Get: 503 http://deb.debian.org/debian unstable/main i386 hdf5-helpers i386 1.10.10+repack-3.3 [23.4 kB] Get: 504 http://deb.debian.org/debian unstable/main i386 libhdf5-dev i386 1.10.10+repack-3.3 [2772 kB] Get: 505 http://deb.debian.org/debian unstable/main i386 xorg-sgml-doctools all 1:1.11-1.1 [22.1 kB] Get: 506 http://deb.debian.org/debian unstable/main i386 x11proto-dev all 2024.1-1 [603 kB] Get: 507 http://deb.debian.org/debian unstable/main i386 libxau-dev i386 1:1.0.9-1+b1 [21.6 kB] Get: 508 http://deb.debian.org/debian unstable/main i386 libxdmcp-dev i386 1:1.1.2-3+b1 [41.5 kB] Get: 509 http://deb.debian.org/debian unstable/main i386 xtrans-dev all 1.4.0-1 [98.7 kB] Get: 510 http://deb.debian.org/debian unstable/main i386 libxcb1-dev i386 1.17.0-2 [186 kB] Get: 511 http://deb.debian.org/debian unstable/main i386 libx11-dev i386 2:1.8.7-1+b1 [904 kB] Get: 512 http://deb.debian.org/debian unstable/main i386 libglx-dev i386 1.7.0-1+b1 [15.8 kB] Get: 513 http://deb.debian.org/debian unstable/main i386 libgl-dev i386 1.7.0-1+b1 [101 kB] Get: 514 http://deb.debian.org/debian unstable/main i386 libblas-dev i386 3.12.0-3 [152 kB] Get: 515 http://deb.debian.org/debian unstable/main i386 liblapack-dev i386 3.12.0-3 [4400 kB] Get: 516 http://deb.debian.org/debian unstable/main i386 libfftw3-quad3 i386 3.3.10-1+b2 [1807 kB] Get: 517 http://deb.debian.org/debian unstable/main i386 libfftw3-bin i386 3.3.10-1+b2 [50.8 kB] Get: 518 http://deb.debian.org/debian unstable/main i386 libfftw3-dev i386 3.3.10-1+b2 [3207 kB] Get: 519 http://deb.debian.org/debian unstable/main i386 libgfortran-13-dev i386 13.3.0-1 [783 kB] Get: 520 http://deb.debian.org/debian unstable/main i386 gfortran-13-i686-linux-gnu i386 13.3.0-1 [11.2 MB] Get: 521 http://deb.debian.org/debian unstable/main i386 gfortran-13 i386 13.3.0-1 [13.2 kB] Get: 522 http://deb.debian.org/debian unstable/main i386 gfortran-i686-linux-gnu i386 4:13.2.0-7 [1280 B] Get: 523 http://deb.debian.org/debian unstable/main i386 gfortran i386 4:13.2.0-7 [1432 B] Get: 524 http://deb.debian.org/debian unstable/main i386 octave-dev i386 9.2.0-2 [1003 kB] Get: 525 http://deb.debian.org/debian unstable/main i386 dh-octave all 1.8.0 [22.7 kB] Get: 526 http://deb.debian.org/debian unstable/main i386 python3-mpmath all 1.3.0-1 [419 kB] Get: 527 http://deb.debian.org/debian unstable/main i386 python3-packaging all 24.0-1 [45.5 kB] Get: 528 http://deb.debian.org/debian unstable/main i386 python3-sympy all 1.12.1-1 [3869 kB] Fetched 221 MB in 5s (42.8 MB/s) debconf: delaying package configuration, since apt-utils is not installed Selecting previously unselected package libpython3.11-minimal:i386. (Reading database ... (Reading database ... 5% (Reading database ... 10% (Reading database ... 15% (Reading database ... 20% (Reading database ... 25% (Reading database ... 30% (Reading database ... 35% (Reading database ... 40% (Reading database ... 45% (Reading database ... 50% (Reading database ... 55% (Reading database ... 60% (Reading database ... 65% (Reading database ... 70% (Reading database ... 75% (Reading database ... 80% (Reading database ... 85% (Reading database ... 90% (Reading database ... 95% (Reading database ... 100% (Reading database ... 19679 files and directories currently installed.) Preparing to unpack .../libpython3.11-minimal_3.11.9-1_i386.deb ... Unpacking libpython3.11-minimal:i386 (3.11.9-1) ... Selecting previously unselected package libexpat1:i386. Preparing to unpack .../libexpat1_2.6.2-1_i386.deb ... Unpacking libexpat1:i386 (2.6.2-1) ... Selecting previously unselected package python3.11-minimal. 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Adding 'diversion of /lib/i386-linux-gnu/libhistory.so.8 to /lib/i386-linux-gnu/libhistory.so.8.usr-is-merged by libreadline8t64' Adding 'diversion of /lib/i386-linux-gnu/libhistory.so.8.2 to /lib/i386-linux-gnu/libhistory.so.8.2.usr-is-merged by libreadline8t64' Adding 'diversion of /lib/i386-linux-gnu/libreadline.so.8 to /lib/i386-linux-gnu/libreadline.so.8.usr-is-merged by libreadline8t64' Adding 'diversion of /lib/i386-linux-gnu/libreadline.so.8.2 to /lib/i386-linux-gnu/libreadline.so.8.2.usr-is-merged by libreadline8t64' Unpacking libreadline8t64:i386 (8.2-4) ... Selecting previously unselected package libpython3.11-stdlib:i386. Preparing to unpack .../6-libpython3.11-stdlib_3.11.9-1_i386.deb ... Unpacking libpython3.11-stdlib:i386 (3.11.9-1) ... Selecting previously unselected package python3.11. Preparing to unpack .../7-python3.11_3.11.9-1_i386.deb ... Unpacking python3.11 (3.11.9-1) ... Selecting previously unselected package libpython3-stdlib:i386. 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Preparing to unpack .../199-libb-hooks-endofscope-perl_0.28-1_all.deb ... Unpacking libb-hooks-endofscope-perl (0.28-1) ... Selecting previously unselected package libsub-identify-perl. Preparing to unpack .../200-libsub-identify-perl_0.14-3+b2_i386.deb ... Unpacking libsub-identify-perl (0.14-3+b2) ... Selecting previously unselected package libsub-name-perl:i386. Preparing to unpack .../201-libsub-name-perl_0.27-1+b2_i386.deb ... Unpacking libsub-name-perl:i386 (0.27-1+b2) ... Selecting previously unselected package libnamespace-clean-perl. Preparing to unpack .../202-libnamespace-clean-perl_0.27-2_all.deb ... Unpacking libnamespace-clean-perl (0.27-2) ... Selecting previously unselected package libnumber-compare-perl. Preparing to unpack .../203-libnumber-compare-perl_0.03-3_all.deb ... Unpacking libnumber-compare-perl (0.03-3) ... Selecting previously unselected package libtext-glob-perl. Preparing to unpack .../204-libtext-glob-perl_0.11-3_all.deb ... Unpacking libtext-glob-perl (0.11-3) ... Selecting previously unselected package libpath-iterator-rule-perl. Preparing to unpack .../205-libpath-iterator-rule-perl_1.015-2_all.deb ... Unpacking libpath-iterator-rule-perl (1.015-2) ... Selecting previously unselected package libpod-parser-perl. Preparing to unpack .../206-libpod-parser-perl_1.67-1_all.deb ... Adding 'diversion of /usr/bin/podselect to /usr/bin/podselect.bundled by libpod-parser-perl' Adding 'diversion of /usr/share/man/man1/podselect.1.gz to /usr/share/man/man1/podselect.bundled.1.gz by libpod-parser-perl' Unpacking libpod-parser-perl (1.67-1) ... Selecting previously unselected package libpod-constants-perl. Preparing to unpack .../207-libpod-constants-perl_0.19-2_all.deb ... Unpacking libpod-constants-perl (0.19-2) ... Selecting previously unselected package libset-intspan-perl. Preparing to unpack .../208-libset-intspan-perl_1.19-3_all.deb ... Unpacking libset-intspan-perl (1.19-3) ... Selecting previously unselected package libstring-copyright-perl. Preparing to unpack .../209-libstring-copyright-perl_0.003014-1_all.deb ... Unpacking libstring-copyright-perl (0.003014-1) ... Selecting previously unselected package libstring-escape-perl. Preparing to unpack .../210-libstring-escape-perl_2010.002-3_all.deb ... Unpacking libstring-escape-perl (2010.002-3) ... Selecting previously unselected package libregexp-pattern-license-perl. Preparing to unpack .../211-libregexp-pattern-license-perl_3.11.0-1_all.deb ... Unpacking libregexp-pattern-license-perl (3.11.0-1) ... Selecting previously unselected package libregexp-pattern-perl. Preparing to unpack .../212-libregexp-pattern-perl_0.2.14-2_all.deb ... Unpacking libregexp-pattern-perl (0.2.14-2) ... Selecting previously unselected package libstring-license-perl. Preparing to unpack .../213-libstring-license-perl_0.0.9-2_all.deb ... Unpacking libstring-license-perl (0.0.9-2) ... 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Setting up libclone-perl:i386 (0.46-1+b2) ... Setting up libarchive-zip-perl (1.68-1) ... Setting up libyaml-0-2:i386 (0.2.5-1+b1) ... Setting up libsub-identify-perl (0.14-3+b2) ... Setting up libcpanel-json-xs-perl:i386 (4.38-1) ... Setting up libglvnd0:i386 (1.7.0-1+b1) ... Setting up libio-stringy-perl (2.111-3) ... Setting up libhtml-tagset-perl (3.24-1) ... Setting up libts0t64:i386 (1.22-1.1) ... Setting up liblog-any-perl (1.717-1) ... Setting up libyaml-pp-perl (0.38.0-1) ... Setting up libdevel-size-perl (0.84-1) ... Setting up unzip (6.0-28) ... Setting up libdebhelper-perl (13.16) ... Setting up libbrotli1:i386 (1.1.0-2+b3) ... Setting up libjxl0.8:i386 (0.8.2-4) ... Setting up libregexp-pattern-license-perl (3.11.0-1) ... Setting up libconvert-binhex-perl (1.125-3) ... Setting up liblwp-mediatypes-perl (6.04-2) ... Setting up libmagic1t64:i386 (1:5.45-3) ... Setting up libyaml-libyaml-perl (0.89+ds-1+b1) ... Setting up fonts-freefont-otf (20211204+svn4273-2) ... Setting up libio-interactive-perl (1.025-1) ... Setting up x11-common (1:7.7+23) ... invoke-rc.d: could not determine current runlevel Setting up X socket directories... /tmp/.X11-unix /tmp/.ICE-unix. Setting up libtry-tiny-perl (0.31-2) ... Setting up libsensors-config (1:3.6.0-10) ... Setting up libpsl5t64:i386 (0.21.2-1.1) ... Setting up libnghttp2-14:i386 (1.62.1-1) ... Setting up libdeflate0:i386 (1.20-1) ... Setting up perl-openssl-defaults:i386 (7+b2) ... Setting up libmldbm-perl (2.05-4) ... Setting up libxml-namespacesupport-perl (1.12-2) ... Setting up libfftw3-long3:i386 (3.3.10-1+b2) ... Setting up gettext-base (0.21-15) ... Setting up m4 (1.4.19-4) ... Setting up libclone-choose-perl (0.010-2) ... Setting up libqhull-r8.0:i386 (2020.2-6+b1) ... Setting up xkb-data (2.42-1) ... Setting up liblzo2-2:i386 (2.10-3) ... Setting up libtime-moment-perl (0.44-2+b3) ... Setting up libencode-locale-perl (1.05-3) ... Setting up libmetis5:i386 (5.1.0.dfsg-7+b1) ... Setting up libcom-err2:i386 (1.47.1-1) ... Setting up file (1:5.45-3) ... Setting up texinfo-lib (7.1-3+b1) ... Setting up libassuan0:i386 (2.5.6-1+b1) ... Setting up libmpg123-0t64:i386 (1.32.6-3) ... Setting up libconfig-tiny-perl (2.30-1) ... Setting up libsereal-encoder-perl (5.004+ds-1+b2) ... Setting up liblist-utilsby-perl (0.12-2) ... Setting up libyaml-tiny-perl (1.74-1) ... Setting up libjbig0:i386 (2.1-6.1+b1) ... Setting up octave-common (9.2.0-2) ... Setting up libregexp-common-perl (2017060201-3) ... Setting up librav1e0:i386 (0.7.1-2) ... Setting up libpcre2-16-0:i386 (10.42-4+b1) ... Setting up libaec0:i386 (1.1.3-1) ... Setting up libnet-netmask-perl (2.0002-2) ... Setting up libopengl0:i386 (1.7.0-1+b1) ... Setting up libsub-install-perl (0.929-1) ... Setting up libelf1t64:i386 (0.191-1+b1) ... Setting up libindirect-perl (0.39-2+b3) ... Setting up libxs-parse-sublike-perl:i386 (0.21-2+b2) ... Setting up libkrb5support0:i386 (1.21.2-1) ... Setting up libnumber-compare-perl (0.03-3) ... Setting up libsasl2-modules-db:i386 (2.1.28+dfsg1-6) ... Setting up tzdata (2024a-4) ... Current default time zone: 'Etc/UTC' Local time is now: Fri Jun 21 02:31:18 UTC 2024. Universal Time is now: Fri Jun 21 02:31:18 UTC 2024. Run 'dpkg-reconfigure tzdata' if you wish to change it. Setting up liberror-perl (0.17029-2) ... Setting up libasound2-data (1.2.11-1) ... Setting up libbtf2:i386 (1:7.7.0+dfsg-2) ... Setting up libjson-maybexs-perl (1.004005-1) ... Setting up libxml-sax-base-perl (1.09-3) ... Setting up libio-string-perl (1.08-4) ... Setting up libboolean-perl (0.46-3) ... Setting up libnetaddr-ip-perl (4.079+dfsg-2+b3) ... Setting up xtrans-dev (1.4.0-1) ... Setting up autotools-dev (20220109.1) ... Setting up libz3-4:i386 (4.8.12-3.1+b2) ... Setting up libglib2.0-0t64:i386 (2.80.3-1) ... No schema files found: doing nothing. Setting up libblas3:i386 (3.12.0-3) ... update-alternatives: using /usr/lib/i386-linux-gnu/blas/libblas.so.3 to provide /usr/lib/i386-linux-gnu/libblas.so.3 (libblas.so.3-i386-linux-gnu) in auto mode Setting up libclass-data-inheritable-perl (0.08-3) ... Setting up libxs-parse-keyword-perl (0.42-1) ... Setting up libalgorithm-c3-perl (0.11-2) ... Setting up libasound2t64:i386 (1.2.11-1+b1) ... Setting up liblog-log4perl-perl (1.57-1) ... Setting up libtext-reform-perl (1.20-5) ... Setting up libjpeg62-turbo:i386 (1:2.1.5-3) ... Setting up libx11-data (2:1.8.7-1) ... Setting up libjpeg62-turbo-dev:i386 (1:2.1.5-3) ... Setting up libfile-find-rule-perl (0.34-3) ... Setting up librtmp1:i386 (2.4+20151223.gitfa8646d.1-2+b4) ... Setting up libipc-system-simple-perl (1.30-2) ... Setting up libio-tiecombine-perl (1.005-3) ... Setting up libnet-domain-tld-perl (1.75-3) ... Setting up libperlio-utf8-strict-perl (0.010-1+b2) ... Setting up aglfn (1.7+git20191031.4036a9c-2) ... Setting up libavahi-common-data:i386 (0.8-13+b2) ... Setting up libncurses6:i386 (6.5-2) ... Setting up libdbus-1-3:i386 (1.14.10-4+b1) ... Setting up libfftw3-quad3:i386 (3.3.10-1+b2) ... Setting up libfribidi0:i386 (1.0.13-3+b1) ... Setting up libopus0:i386 (1.4-1+b1) ... Setting up t1utils (1.41-4) ... Setting up diffstat (1.66-1) ... Setting up fonts-dejavu-mono (2.37-8) ... Setting up libssl-dev:i386 (3.2.2-1) ... Setting up libpng16-16t64:i386 (1.6.43-5) ... Setting up libhwloc15:i386 (2.10.0-1+b1) ... Setting up libvorbis0a:i386 (1.3.7-2) ... Setting up libvariable-magic-perl (0.64-1) ... Setting up libio-html-perl (1.004-3) ... Setting up libtext-template-perl (1.61-1) ... Setting up libpod-parser-perl (1.67-1) ... Setting up autopoint (0.21-15) ... Setting up libb-hooks-op-check-perl:i386 (0.22-3+b1) ... Setting up fonts-dejavu-core (2.37-8) ... Setting up liblist-moreutils-xs-perl (0.430-4+b1) ... Setting up libsensors5:i386 (1:3.6.0-10) ... Setting up libk5crypto3:i386 (1.21.2-1) ... Setting up libqscintilla2-qt6-l10n (2.14.1+dfsg-1) ... Setting up libltdl7:i386 (2.4.7-7+b1) ... Setting up libfftw3-double3:i386 (3.3.10-1+b2) ... Setting up libglapi-mesa:i386 (24.1.1-2) ... Setting up libparams-util-perl (1.102-3) ... Setting up libsasl2-2:i386 (2.1.28+dfsg1-6) ... Setting up libgfortran5:i386 (14.1.0-2) ... Setting up libvulkan1:i386 (1.3.283.0-1) ... Setting up libtime-duration-perl (1.21-2) ... Setting up autoconf (2.71-3) ... Setting up libtext-xslate-perl:i386 (3.5.9-2) ... Setting up libsub-exporter-progressive-perl (0.001013-3) ... Setting up libwebp7:i386 (1.4.0-0.1) ... Setting up libarray-intspan-perl (2.004-2) ... Setting up libcapture-tiny-perl (0.48-2) ... Setting up libtimedate-perl (2.3300-2) ... Setting up libexporter-lite-perl (0.09-2) ... Setting up libsub-name-perl:i386 (0.27-1+b2) ... Setting up zlib1g-dev:i386 (1:1.3.dfsg+really1.3.1-1) ... Setting up libsyntax-keyword-try-perl (0.29-2) ... Setting up dwz (0.15-1+b1) ... Setting up libdata-validate-domain-perl (0.10-1.1) ... Setting up libproc-processtable-perl:i386 (0.636-1+b2) ... Setting up libparse-recdescent-perl (1.967015+dfsg-4) ... Setting up libdav1d7:i386 (1.4.2-1) ... Setting up libmtdev1t64:i386 (1.1.6-1.2) ... Setting up sensible-utils (0.0.23) ... Setting up ocl-icd-libopencl1:i386 (2.3.2-1+b1) ... Setting up libduktape207:i386 (2.7.0-2+b1) ... Setting up libxshmfence1:i386 (1.3-1+b1) ... Setting up libtiff6:i386 (4.5.1+git230720-4) ... Setting up libpath-tiny-perl (0.144-1) ... Setting up libuchardet0:i386 (0.0.8-1+b1) ... Setting up lzop (1.04-2) ... Setting up libjson-perl (4.10000-1) ... Setting up liblog-any-adapter-screen-perl (0.140-2) ... Setting up libnl-3-200:i386 (3.7.0-0.3) ... Setting up librole-tiny-perl (2.002004-1) ... Setting up openmpi-common (4.1.6-13.3) ... Setting up libipc-run3-perl (0.049-1) ... Setting up libmd4c0:i386 (0.4.8-1+b1) ... Setting up libregexp-wildcards-perl (1.05-3) ... Setting up libmousex-strictconstructor-perl (0.02-3) ... Setting up libsub-uplevel-perl (0.2800-3) ... Setting up libsuitesparseconfig7:i386 (1:7.7.0+dfsg-2) ... Setting up liblua5.4-0:i386 (5.4.6-3+b1) ... Setting up libaliased-perl (0.34-3) ... Setting up libthai-data (0.1.29-2) ... Setting up xorg-sgml-doctools (1:1.11-1.1) ... Setting up netbase (6.4) ... Setting up libabsl20230802:i386 (20230802.1-4) ... Setting up libstrictures-perl (2.000006-1) ... Setting up libsub-quote-perl (2.006008-1) ... Setting up libdevel-stacktrace-perl (2.0500-1) ... Setting up libclass-xsaccessor-perl (1.19-4+b3) ... Setting up libtext-autoformat-perl (1.750000-2) ... Setting up libkrb5-3:i386 (1.21.2-1) ... Setting up libevent-core-2.1-7t64:i386 (2.1.12-stable-10) ... Setting up libglu1-mesa:i386 (9.0.2-1.1+b1) ... Setting up libflac12t64:i386 (1.4.3+ds-2.1) ... Setting up libtoml-tiny-perl (0.17-1) ... Setting up libpsm-infinipath1 (3.3+20.604758e7-6.3) ... update-alternatives: using /usr/lib/libpsm1/libpsm_infinipath.so.1.16 to provide /usr/lib/i386-linux-gnu/libpsm_infinipath.so.1 (libpsm_infinipath.so.1) in auto mode Setting up libsort-versions-perl (1.62-3) ... Setting up libssh2-1t64:i386 (1.11.0-5) ... Setting up libexporter-tiny-perl (1.006002-1) ... Setting up libterm-readkey-perl (2.38-2+b3) ... Setting up libfido2-1:i386 (1.15.0-1) ... Setting up libtext-unidecode-perl (1.30-3) ... Setting up libde265-0:i386 (1.0.15-1+b1) ... Setting up libfont-ttf-perl (1.06-2) ... Setting up libfile-homedir-perl (1.006-2) ... Setting up libgfortran-13-dev:i386 (13.3.0-1) ... Setting up libsamplerate0:i386 (0.2.2-4+b1) ... Setting up openssl (3.2.2-1) ... Setting up libwebpmux3:i386 (1.4.0-0.1) ... Setting up libbsd0:i386 (0.12.2-1) ... Setting up libtext-levenshteinxs-perl (0.03-5+b3) ... Setting up libperlio-gzip-perl (0.20-1+b3) ... Setting up libdrm-common (2.4.121-2) ... Setting up libyuv0:i386 (0.0.1888.20240607-1) ... Setting up libevdev2:i386 (1.13.2+dfsg-1) ... Setting up readline-common (8.2-4) ... Setting up libxml2:i386 (2.12.7+dfsg-3) ... Setting up libhtml-html5-entities-perl (0.004-3) ... Setting up libtext-levenshtein-damerau-perl (0.41-3) ... Setting up libsereal-decoder-perl (5.004+ds-1+b2) ... Setting up libmarkdown2:i386 (2.2.7-2+b1) ... Setting up liburi-perl (5.28-1) ... Setting up iso-codes (4.16.0-1) ... Setting up libnet-ipv6addr-perl (1.02-1) ... Setting up libgudev-1.0-0:i386 (238-5) ... Setting up libmp3lame0:i386 (3.100-6+b2) ... Setting up libblas-dev:i386 (3.12.0-3) ... update-alternatives: using /usr/lib/i386-linux-gnu/blas/libblas.so to provide /usr/lib/i386-linux-gnu/libblas.so (libblas.so-i386-linux-gnu) in auto mode Setting up libsz2:i386 (1.1.3-1) ... Setting up libvorbisenc2:i386 (1.3.7-2) ... Setting up libdata-validate-ip-perl (0.31-1) ... Setting up libwacom-common (2.10.0-2) ... Setting up libmousex-nativetraits-perl (1.09-3) ... Setting up libemail-address-xs-perl (1.05-1+b3) ... Setting up libxkbcommon0:i386 (1.6.0-1+b1) ... Setting up libwayland-client0:i386 (1.22.0-2.1+b1) ... Setting up libnet-ssleay-perl:i386 (1.94-1+b1) ... Setting up gfortran-13-i686-linux-gnu (13.3.0-1) ... Setting up automake (1:1.16.5-1.3) ... update-alternatives: using /usr/bin/automake-1.16 to provide /usr/bin/automake (automake) in auto mode Setting up x11proto-dev (2024.1-1) ... Setting up libfile-stripnondeterminism-perl (1.14.0-1) ... Setting up gnuplot-data (6.0.0+dfsg1-3) ... Setting up libice6:i386 (2:1.0.10-1+b1) ... Setting up libhttp-date-perl (6.06-1) ... Setting up libxdmcp6:i386 (1:1.1.2-3+b1) ... Setting up liblapack3:i386 (3.12.0-3) ... update-alternatives: using /usr/lib/i386-linux-gnu/lapack/liblapack.so.3 to provide /usr/lib/i386-linux-gnu/liblapack.so.3 (liblapack.so.3-i386-linux-gnu) in auto mode Setting up libncurses-dev:i386 (6.5-2) ... Setting up libxcb1:i386 (1.17.0-2) ... Setting up libfile-basedir-perl (0.09-2) ... Setting up gettext (0.21-15) ... Setting up libfeature-compat-try-perl (0.05-1) ... Setting up libarpack2t64:i386 (3.9.1-1.1+b1) ... Setting up libxcb-xfixes0:i386 (1.17.0-2) ... Setting up libamd3:i386 (1:7.7.0+dfsg-2) ... Setting up libfile-listing-perl (6.16-1) ... Setting up libxau-dev:i386 (1:1.0.9-1+b1) ... Setting up libxcb-xinput0:i386 (1.17.0-2) ... Setting up libtool (2.4.7-7) ... Setting up libcolamd3:i386 (1:7.7.0+dfsg-2) ... Setting up libxcb-render0:i386 (1.17.0-2) ... Setting up libfftw3-bin (3.3.10-1+b2) ... Setting up libwacom9:i386 (2.10.0-2) ... Setting up libevent-pthreads-2.1-7t64:i386 (2.1.12-stable-10) ... Setting up fontconfig-config (2.15.0-1.1) ... Setting up liblist-moreutils-perl (0.430-2) ... Setting up libxcb-glx0:i386 (1.17.0-2) ... Setting up libpod-constants-perl (0.19-2) ... Setting up libedit2:i386 (3.1-20240517-1) ... Setting up libhash-merge-perl (0.302-1) ... Setting up libxcb-keysyms1:i386 (0.4.0-1+b2) ... Setting up libsoftware-copyright-perl (0.012-2) ... Setting up libaec-dev:i386 (1.1.3-1) ... Setting up libxcb-shape0:i386 (1.17.0-2) ... Setting up libavahi-common3:i386 (0.8-13+b2) ... Setting up libcxsparse4:i386 (1:7.7.0+dfsg-2) ... Setting up libjpeg-dev:i386 (1:2.1.5-3) ... Setting up libnet-http-perl (6.23-1) ... Setting up libpath-iterator-rule-perl (1.015-2) ... Setting up libtext-markdown-discount-perl (0.16-1+b2) ... Setting up libxcb-render-util0:i386 (0.3.9-1+b1) ... Setting up libxcb-shm0:i386 (1.17.0-2) ... Setting up libexception-class-perl (1.45-1) ... Setting up libxcb-icccm4:i386 (0.4.1-1.1+b1) ... Setting up libsundials-sunmatrix4:i386 (6.4.1+dfsg1-3+b6) ... Setting up libclass-c3-perl (0.35-2) ... Setting up libsuperlu6:i386 (6.0.1+dfsg1-1+b1) ... Setting up libqrupdate1:i386 (1.1.2-4+b1) ... Setting up libdevel-callchecker-perl:i386 (0.009-1) ... Setting up libldap-2.5-0:i386 (2.5.18+dfsg-1) ... Setting up libsundials-ida6:i386 (6.4.1+dfsg1-3+b6) ... Setting up libcamd3:i386 (1:7.7.0+dfsg-2) ... Setting up libxcb-util1:i386 (0.4.0-1+b1) ... Setting up libinput-bin (1.26.0-1) ... Setting up libxcb-xkb1:i386 (1.17.0-2) ... Setting up libxcb-image0:i386 (0.4.0-2+b1) ... Setting up intltool-debian (0.35.0+20060710.6) ... Setting up libnl-route-3-200:i386 (3.7.0-0.3) ... Setting up libobject-pad-perl (0.808-1+b2) ... Setting up libxcb-present0:i386 (1.17.0-2) ... Setting up dh-autoreconf (20) ... Setting up patchutils (0.4.2-1) ... Setting up libthai0:i386 (0.1.29-2) ... Setting up ca-certificates (20240203) ... Updating certificates in /etc/ssl/certs... 146 added, 0 removed; done. Setting up libxdmcp-dev:i386 (1:1.1.2-3+b1) ... Setting up libdata-validate-uri-perl (0.07-3) ... Setting up libllvm17t64:i386 (1:17.0.6-12) ... Setting up libtest-exception-perl (0.43-3) ... Setting up libfreetype6:i386 (2.13.2+dfsg-1+b4) ... Setting up gfortran-i686-linux-gnu (4:13.2.0-7) ... Setting up libglpk40:i386 (5.0-1+b1) ... Setting up libstring-copyright-perl (0.003014-1) ... Setting up libxcb-sync1:i386 (1.17.0-2) ... Setting up gfortran-13 (13.3.0-1) ... Setting up libxcb-cursor0:i386 (0.1.4-1+b1) ... Setting up shared-mime-info (2.4-5) ... Setting up libxkbcommon-x11-0:i386 (1.6.0-1+b1) ... Setting up liblapack-dev:i386 (3.12.0-3) ... update-alternatives: using /usr/lib/i386-linux-gnu/lapack/liblapack.so to provide /usr/lib/i386-linux-gnu/liblapack.so (liblapack.so-i386-linux-gnu) in auto mode Setting up libgssapi-krb5-2:i386 (1.21.2-1) ... Setting up libdata-optlist-perl (0.114-1) ... Setting up libgav1-1:i386 (0.19.0-2+b1) ... Setting up ucf (3.0043+nmu1) ... Setting up libccolamd3:i386 (1:7.7.0+dfsg-2) ... Setting up libreadline8t64:i386 (8.2-4) ... Setting up libxcb-dri2-0:i386 (1.17.0-2) ... Setting up dh-strip-nondeterminism (1.14.0-1) ... Setting up libwww-robotrules-perl (6.02-1) ... Setting up libjack-jackd2-0:i386 (1.9.21~dfsg-3+b3) ... Setting up libdrm2:i386 (2.4.121-2) ... Setting up groff-base (1.23.0-4) ... Setting up libxcb-randr0:i386 (1.17.0-2) ... Setting up libhtml-parser-perl:i386 (3.82-1) ... Setting up gpgconf (2.2.43-7) ... Setting up libx11-6:i386 (2:1.8.7-1+b1) ... Setting up libharfbuzz0b:i386 (8.3.0-2+b1) ... Setting up libfontconfig1:i386 (2.15.0-1.1) ... Setting up libsndfile1:i386 (1.2.2-1+b2) ... Setting up libmro-compat-perl (0.15-2) ... Setting up libsm6:i386 (2:1.2.3-1+b1) ... Setting up libfftw3-dev:i386 (3.3.10-1+b2) ... Setting up libavahi-client3:i386 (0.8-13+b2) ... Setting up libio-socket-ssl-perl (2.085-1) ... Setting up gpg (2.2.43-7) ... Setting up libsub-exporter-perl (0.990-1) ... Setting up libhttp-message-perl (6.46-1) ... Setting up libdrm-amdgpu1:i386 (2.4.121-2) ... Setting up libhtml-form-perl (6.11-1) ... Setting up libiterator-perl (0.03+ds1-2) ... Setting up libxcb-dri3-0:i386 (1.17.0-2) ... Setting up libinput10:i386 (1.26.0-1) ... Setting up libportaudio2:i386 (19.6.0-1.2+b2) ... Setting up libx11-xcb1:i386 (2:1.8.7-1+b1) ... Setting up libqt6core6t64:i386 (6.6.2+dfsg-8) ... Setting up libhttp-negotiate-perl (6.01-2) ... Setting up libibverbs1:i386 (52.0-1) ... Setting up fontconfig (2.15.0-1.1) ... Regenerating fonts cache... done. Setting up libavif16:i386 (1.0.4-3) ... Setting up libcarp-assert-more-perl (2.4.0-1) ... Setting up libcholmod5:i386 (1:7.7.0+dfsg-2) ... Setting up libxcb1-dev:i386 (1.17.0-2) ... Setting up libxpm4:i386 (1:3.5.17-1+b1) ... Setting up libiterator-util-perl (0.02+ds1-2) ... Setting up libxrender1:i386 (1:0.9.10-1.1+b1) ... Setting up libcurl4t64:i386 (8.8.0-1) ... Setting up libgbm1:i386 (24.1.1-2) ... Setting up libhttp-cookies-perl (6.11-1) ... Setting up libspqr4:i386 (1:7.7.0+dfsg-2) ... Setting up libdrm-radeon1:i386 (2.4.121-2) ... Setting up openssh-client (1:9.7p1-5) ... Setting up po-debconf (1.0.21+nmu1) ... Setting up libhtml-tree-perl (5.07-3) ... Setting up libpython3.11-stdlib:i386 (3.11.9-1) ... Setting up libparams-classify-perl:i386 (0.015-2+b3) ... Setting up libpango-1.0-0:i386 (1.54.0+ds-1) ... Setting up libdrm-intel1:i386 (2.4.121-2) ... Setting up libcgi-pm-perl (4.65-1) ... Setting up libgl1-mesa-dri:i386 (24.1.1-2) ... Setting up libx11-dev:i386 (2:1.8.7-1+b1) ... Setting up libcurl3t64-gnutls:i386 (8.8.0-1) ... Setting up libxext6:i386 (2:1.3.4-1+b1) ... Setting up libreadline-dev:i386 (8.2-4) ... Setting up man-db (2.12.1-2) ... Not building database; man-db/auto-update is not 'true'. Setting up libxml-sax-perl (1.02+dfsg-3) ... update-perl-sax-parsers: Registering Perl SAX parser XML::SAX::PurePerl with priority 10... update-perl-sax-parsers: Updating overall Perl SAX parser modules info file... Creating config file /etc/perl/XML/SAX/ParserDetails.ini with new version Setting up gfortran (4:13.2.0-7) ... update-alternatives: using /usr/bin/gfortran to provide /usr/bin/f95 (f95) in auto mode update-alternatives: using /usr/bin/gfortran to provide /usr/bin/f77 (f77) in auto mode Setting up libcairo2:i386 (1.18.0-3+b1) ... Setting up libxxf86vm1:i386 (1:1.1.4-1+b2) ... Setting up libxnvctrl0:i386 (535.171.04-1) ... Setting up libfeature-compat-class-perl (0.06-1) ... Setting up tex-common (6.18) ... update-language: texlive-base not installed and configured, doing nothing! Setting up libegl-mesa0:i386 (24.1.1-2) ... Setting up libnet-smtp-ssl-perl (1.04-2) ... Setting up libqt6xml6:i386 (6.6.2+dfsg-8) ... Setting up libqt6sql6:i386 (6.6.2+dfsg-8) ... Setting up libmodule-runtime-perl (0.016-2) ... Setting up libmailtools-perl (2.21-3) ... Setting up libxfixes3:i386 (1:6.0.0-2+b1) ... Setting up libcurl4-openssl-dev:i386 (8.8.0-1) ... Setting up libklu2:i386 (1:7.7.0+dfsg-2) ... Setting up libconfig-model-perl (2.154-1) ... Setting up libxinerama1:i386 (2:1.1.4-3+b1) ... Setting up libxml-libxml-perl (2.0207+dfsg+really+2.0134-3.1) ... update-perl-sax-parsers: Registering Perl SAX parser XML::LibXML::SAX::Parser with priority 50... update-perl-sax-parsers: Registering Perl SAX parser XML::LibXML::SAX with priority 50... update-perl-sax-parsers: Updating overall Perl SAX parser modules info file... Replacing config file /etc/perl/XML/SAX/ParserDetails.ini with new version Setting up libumfpack6:i386 (1:7.7.0+dfsg-2) ... Setting up libconst-fast-perl (0.014-2) ... Setting up libdata-section-perl (0.200008-1) ... Setting up libegl1:i386 (1.7.0-1+b1) ... Setting up librdmacm1t64:i386 (52.0-1) ... Setting up libqt6core5compat6:i386 (6.6.2-2) ... Setting up libpangoft2-1.0-0:i386 (1.54.0+ds-1) ... Setting up libhdf5-103-1t64:i386 (1.10.10+repack-3.3) ... Setting up libdata-dpath-perl (0.59-1) ... Setting up libcups2t64:i386 (2.4.7-3) ... 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Setting up debhelper (13.16) ... Setting up python3 (3.11.8-1) ... Setting up libhwloc-plugins:i386 (2.10.0-1+b1) ... Setting up libmime-tools-perl (5.515-1) ... Setting up libsoftware-license-perl (0.104006-1) ... Setting up libclass-load-perl (0.25-2) ... Setting up python3-packaging (24.0-1) ... Setting up libgl1:i386 (1.7.0-1+b1) ... Setting up libqt6gui6:i386 (6.6.2+dfsg-8) ... Setting up texinfo (7.1-3) ... Setting up libopenmpi3t64:i386 (4.1.6-13.3) ... Setting up libqt6network6:i386 (6.6.2+dfsg-8) ... Setting up libglx-dev:i386 (1.7.0-1+b1) ... Setting up libmoox-aliases-perl (0.001006-2) ... Setting up python3-mpmath (1.3.0-1) ... Setting up libhdf5-hl-cpp-100t64:i386 (1.10.10+repack-3.3) ... Setting up libparams-validate-perl:i386 (1.31-2+b2) ... Setting up libb-hooks-endofscope-perl (0.28-1) ... Setting up libfltk1.3t64:i386 (1.3.8-6.1) ... Setting up libgl-dev:i386 (1.7.0-1+b1) ... Setting up openmpi-bin (4.1.6-13.3) ... update-alternatives: using /usr/bin/mpirun.openmpi to provide /usr/bin/mpirun (mpirun) in auto mode update-alternatives: using /usr/bin/mpicc.openmpi to provide /usr/bin/mpicc (mpi) in auto mode Setting up python3-sympy (1.12.1-1) ... Setting up libptscotch-7.0:i386 (7.0.4-2) ... Setting up libsoftware-licensemoreutils-perl (1.009-1) ... Setting up libqt6opengl6:i386 (6.6.2+dfsg-8) ... Setting up mpi-default-bin (1.15) ... Setting up libhdf5-hl-fortran-100t64:i386 (1.10.10+repack-3.3) ... Setting up libcombblas2.0.0t64:i386 (2.0.0-3.1+b1) ... Setting up libfftw3-mpi3:i386 (3.3.10-1+b2) ... Setting up libhdf5-openmpi-103-1t64:i386 (1.10.10+repack-3.3) ... Setting up libgl2ps1.4 (1.4.2+dfsg1-2) ... Setting up libqt6widgets6:i386 (6.6.2+dfsg-8) ... Setting up libfltk-gl1.3t64:i386 (1.3.8-6.1) ... 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Setting up lintian (2.117.0) ... Setting up libgraphicsmagick++-q16-12t64 (1.4+really1.3.43-1+b1) ... Setting up libconfig-model-dpkg-perl (3.005) ... Setting up dh-octave-autopkgtest (1.8.0) ... Setting up octave (9.2.0-2) ... Setting up octave-dev (9.2.0-2) ... Setting up dh-octave (1.8.0) ... Processing triggers for libc-bin (2.38-13) ... Processing triggers for ca-certificates (20240203) ... Updating certificates in /etc/ssl/certs... 0 added, 0 removed; done. Running hooks in /etc/ca-certificates/update.d... done. Reading package lists... Building dependency tree... Reading state information... Reading extended state information... Initializing package states... Writing extended state information... Building tag database... -> Finished parsing the build-deps I: Building the package I: Running cd /build/reproducible-path/octave-symbolic-3.2.1/ && env PATH="/usr/sbin:/usr/bin:/sbin:/bin:/usr/games" HOME="/nonexistent/first-build" dpkg-buildpackage -us -uc -b && env PATH="/usr/sbin:/usr/bin:/sbin:/bin:/usr/games" HOME="/nonexistent/first-build" dpkg-genchanges -S > ../octave-symbolic_3.2.1-2_source.changes dpkg-buildpackage: info: source package octave-symbolic dpkg-buildpackage: info: source version 3.2.1-2 dpkg-buildpackage: info: source distribution unstable dpkg-buildpackage: info: source changed by Rafael Laboissière dpkg-source --before-build . dpkg-buildpackage: info: host architecture i386 debian/rules clean dh clean --buildsystem=octave dh_auto_clean -O--buildsystem=octave dh_octave_clean make[1]: Entering directory '/build/reproducible-path/octave-symbolic-3.2.1' /bin/bash: line 1: git: command not found rm -rf "tmp" rm -f fntests.log make[1]: *** No rule to make target 'distclean'. make[1]: Leaving directory '/build/reproducible-path/octave-symbolic-3.2.1' make[1]: *** src: No such file or directory. Stop. dh_autoreconf_clean -O--buildsystem=octave dh_clean -O--buildsystem=octave debian/rules binary dh binary --buildsystem=octave dh_update_autotools_config -O--buildsystem=octave dh_autoreconf -O--buildsystem=octave dh_octave_version -O--buildsystem=octave Checking the Octave version... ok dh_auto_configure -O--buildsystem=octave dh_auto_build -O--buildsystem=octave dh_auto_test -O--buildsystem=octave create-stamp debian/debhelper-build-stamp dh_testroot -O--buildsystem=octave dh_prep -O--buildsystem=octave dh_auto_install --destdir=debian/octave-symbolic/ -O--buildsystem=octave octave --no-gui --no-history --silent --no-init-file --no-window-system /usr/share/dh-octave/install-pkg.m /build/reproducible-path/octave-symbolic-3.2.1/debian/octave-symbolic/usr/share/octave/packages /build/reproducible-path/octave-symbolic-3.2.1/debian/octave-symbolic/usr/lib/i386-linux-gnu/octave/packages For information about changes from previous versions of the symbolic package, run 'news symbolic'. dh_octave_check -O--buildsystem=octave Checking package... Run the unit tests... Checking m files ... [inst/dirac.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/dirac.m ***** assert (isinf (dirac (0))) ***** assert (dirac (1) == 0) ***** assert (isnan (dirac (nan))) ***** assert (isequaln (dirac ([-1 1 0 eps inf -inf nan]), [0 0 inf 0 0 0 nan])) ***** error dirac (1i) ***** assert (isa (dirac (single (0)), 'single')) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/laguerreL.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/laguerreL.m ***** error laguerreL (1) ***** error laguerreL (1, 2, 3) ***** assert (isequal (laguerreL (0, rand), 1)) ***** test x = rand; assert (isequal (laguerreL (1, x), 1 - x)) ***** test x=rand; y1=laguerreL(2, x); p2=[.5 -2 1]; y2=polyval(p2,x); assert(y1 - y2, 0, 10*eps); ***** test x=rand; y1=laguerreL(3, x); p3=[-1/6 9/6 -18/6 1]; y2=polyval(p3,x); assert(y1 - y2, 0, 20*eps); ***** test x=rand; y1=laguerreL(4, x); p4=[1/24 -16/24 72/24 -96/24 1]; y2=polyval(p4,x); assert(y1 - y2, 0, 30*eps) ***** error laguerreL(1.5, 10) ***** error laguerreL([0 1], [1 2 3]) ***** error laguerreL([0 1], [1; 2]) ***** test % numerically stable implementation (in n) L = laguerreL (10, 10); Lex = 1763/63; assert (L, Lex, -eps) L = laguerreL (20, 10); Lex = -177616901779/14849255421; % e.g., laguerreL(sym(20),10) assert (L, Lex, -eps) ***** test % vectorized x L = laguerreL (2, [5 6 7]); Lex = [3.5 7 11.5]; assert (L, Lex, eps) ***** test L = laguerreL (0, [4 5]); assert (L, [1 1], eps) ***** test % vector n L = laguerreL ([0 1 2 3], [4 5 6 9]); assert (L, [1 -4 7 -26], eps) ***** test % vector n, scalar x L = laguerreL ([0 1 2 3], 6); assert (L, [1 -5 7 1], eps) ***** assert (isa (laguerreL (0, single (1)), 'single')) ***** assert (isa (laguerreL (1, single ([1 2])), 'single')) ***** assert (isa (laguerreL ([1 2], single ([1 2])), 'single')) 18 tests, 18 passed, 0 known failure, 0 skipped [inst/vpasolve.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/vpasolve.m ***** test syms x vpi = vpa(sym(pi), 64); e = tan(x/4) == 1; q = vpasolve(e, x, 3.0); w = q - vpi ; assert (double(w) < 1e-30) Symbolic pkg v3.2.1: Python communication link active, SymPy v1.12.1. ***** test syms x vpi = vpa(sym(pi), 64); e = tan(x/4) == 1; q = vpasolve(e, x); w = q - vpi; assert (double(w) < 1e-30) q = vpasolve(e); w = q - vpi; assert (double(w) < 1e-30) ***** test % very accurate pi syms x e = tan(x/4) == 1; m = digits(256); q = vpasolve(e, x, 3); assert (double(abs(sin(q))) < 1e-256) digits(m); ***** test % very accurate sqrt 2 syms x e = x*x == 2; m = digits(256); q = vpasolve(e, x, 1.5); assert (double(abs(q*q - 2)) < 1e-256) digits(m); ***** test % very accurate sqrt pi % (used to fail https://github.com/sympy/sympy/issues/8564) syms x e = x*x == sym(pi); m = digits(256); q = vpasolve(e, x, 3); assert (double(abs(sin(q*q))) < 1e-256) digits(m); ***** test syms x r = vpasolve(x^2 + 2 == 0, x, 1i); assert (double (imag(r)^2 - 2), 0, 1e-32) assert (double (real(r)^2), 0, 1e-32) r = vpasolve(x^2 + 2 == 0, x, -3i + 5); assert (double (imag(r)^2 - 2), 0, 1e-32) assert (double (real(r)^2), 0, 1e-32) ***** test % system syms x y f = 3*x^2 - 2*y^2 - 1; g = x^2 - 2*x + y^2 + 2*y - 8; r = vpasolve([f; g], [x; y], sym([-1; 1])); assert (isa (r, 'sym')) assert (numel (r) == 2) ***** test % system, double guess syms x y f = 3*x^2 - 2*y^2 - 1; g = x^2 - 2*x + y^2 + 2*y - 8; r = vpasolve([f; g], [x; y], [-1.1 1.2]); ***** test % system, double guess syms x y f = 3*x^2 - 2*y^2 - 1; g = x^2 - 2*x + y^2 + 2*y - 8; r1 = vpasolve([f; g], [x; y], [-1.1]); r2 = vpasolve([f; g], [x; y], [-1.1 -1.1]); assert (isequal (r1, r2)) ***** test % system, more eqns than unknowns syms x y eqns = [x^3 - x - y == 0; y*exp(x) == 16; log(y) + x == 4*log(sym(2))]; r = vpasolve (eqns, [x; y], [1; 1]); A = subs (lhs (eqns), [x; y], r); err = A - [0; 16; 4*log(sym(2))]; assert (double (err), zeros (size (err)), 1e-31) :7: SymPyDeprecationWarning: non-Expr objects in a Matrix is deprecated. Matrix represents a mathematical matrix. To represent a container of non-numeric entities, Use a list of lists, TableForm, NumPy array, or some other data structure instead. See https://docs.sympy.org/latest/explanation/active-deprecations.html#deprecated-non-expr-in-matrix for details. This has been deprecated since SymPy version 1.9. It will be removed in a future version of SymPy. warning: test: file /build/reproducible-path/octave-symbolic-3.2.1/inst/vpasolve.m leaked file descriptors 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@logical/isAlways.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@logical/isAlways.m ***** error isAlways (true, false) ***** assert(isAlways(true)) ***** assert(~isAlways(false)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/isequaln.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isequaln.m ***** test a = sym([1 2]); b = a; assert (isequaln (a, b)) b(1) = 42; assert (~isequaln (a, b)) ***** test a = sym([1 2; 3 4]); b = a; assert (isequaln (a, b)) b(1) = 42; assert (~isequaln (a, b)) ***** test a = sym([nan; 2]); b = a; assert (isequaln (a, b)) ***** test a = sym([nan 2; 3 4]); b = a; assert (isequaln (a, b)) ***** test % more than two arrays a = sym([nan 2 3]); b = a; c = a; assert (isequaln (a, b, c)) c(1) = 42; assert (~isequaln (a, b, c)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/or.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/or.m ***** shared t, f t = sym(true); f = sym(false); ***** test % simple assert (isequal (t | f, t)) assert (isequal (t | t, t)) assert (isequal (f | f, f)) ***** test % array w = [t t f f]; z = [t f t f]; assert (isequal (w | z, [t t t f])) ***** test % output is sym even for scalar t/f assert (isa (t | f, 'sym')) ***** test % eqns syms x e = or(x == 4, x == 5); assert (isequal (subs(e, x, [3 4 5 6]), [f t t f])) ***** error or (sym(1), 2, 3) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/isequal.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isequal.m ***** test a = sym([1 2]); b = a; assert (isequal (a, b)) b(1) = 42; assert (~isequal (a, b)) ***** test a = sym([1 2; 3 4]); b = a; assert (isequal (a, b)) b(1) = 42; assert (~isequal (a, b)) ***** test a = sym([nan; 2]); b = a; assert (~isequal (a, b)) ***** test % proper nan treatment a = sym([nan 2; 3 4]); b = a; assert (~isequal (a, b)) ***** test % more than two arrays a = sym([1 2 3]); b = a; c = a; assert (isequal (a, b, c)) c(1) = 42; assert (~isequal (a, b, c)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/dirac.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/dirac.m ***** error dirac (sym(1), 2) ***** assert (isequaln (dirac (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = dirac(x); f2 = dirac(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = dirac(A); f2 = dirac(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = dirac (d); f = dirac (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/laguerreL.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/laguerreL.m ***** shared x syms x ***** assert (isequal (laguerreL(0, x), sym(1))) ***** assert (isequal (laguerreL(1, x), 1-x)) ***** assert (isequal (laguerreL(2, x), x^2/2 - 2*x + 1)) ***** error laguerreL(x) ***** error laguerreL(1, 2, x, 3) ***** shared ***** test syms x assert (isequal (laguerreL (-3, x), exp(x)*(x^2/2 + 2*x + 1))) ***** test syms x n L = laguerreL([2 n], x); expected = [laguerreL(2, x) laguerreL(n, x)]; assert (isequal (L, expected)) ***** test syms x y L = laguerreL([1; 2], [x; y]); expected = [laguerreL(1, x); laguerreL(2, y)]; assert (isequal (L, expected)) ***** test syms x n assert (isequal (laguerreL(n, 0, x), laguerreL(n, x))) ***** shared x, y, n syms x y n ***** assert (isequal (laguerreL([1 n], 0, x), laguerreL([1 n], x))) ***** test L = laguerreL([1; n], [pi; 0], [x; y]); expected = [laguerreL(1, pi, x); laguerreL(n, 0, y)]; assert (isequal (L, expected)) ***** test L = laguerreL([1 n], [pi 0], x); expected = [laguerreL(1, pi, x) laguerreL(n, 0, x)]; assert (isequal (L, expected)) ***** test L = laguerreL([1 n], pi, [x y]); expected = [laguerreL(1, pi, x) laguerreL(n, pi, y)]; assert (isequal (L, expected)) ***** test L = laguerreL(1, [pi 0], [x y]); expected = [laguerreL(1, pi, x) laguerreL(1, 0, y)]; assert (isequal (L, expected)) ***** test L = laguerreL([1 n], pi, x); expected = [laguerreL(1, pi, x) laguerreL(n, pi, x)]; assert (isequal (L, expected)) ***** test L = laguerreL(1, [pi 0], x); expected = [laguerreL(1, pi, x) laguerreL(1, 0, x)]; assert (isequal (L, expected)) ***** test L = laguerreL(1, pi, [x y]); expected = [laguerreL(1, pi, x) laguerreL(1, pi, y)]; assert (isequal (L, expected)) ***** test % round trip f = laguerreL (n, x); h = function_handle (f); A = h (1, 3.2); B = laguerreL (1, 3.2); assert (A, B) A = h ([1 2], [3.3 4.4]); B = laguerreL ([1 2], [3.3 4.4]); assert (A, B) ***** error % round trip f = laguerreL (n, y, x); h = function_handle (f); 19 tests, 19 passed, 0 known failure, 0 skipped [inst/@sym/cosd.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cosd.m ***** error cosd (sym(1), 2) ***** assert (isequaln (cosd (sym(nan)), sym(nan))) ***** test f1 = cosd (sym(1)); f2 = cosd (1); assert (double (f1), f2, -eps) ***** test D = [10 30; 110 -45]; A = sym(D); f1 = cosd (A); f2 = cosd (D); assert (double (f1), f2, -4*eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/lgamma.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/lgamma.m ***** test % tested by gammaln assert (isequal (lgamma (sym ('x')), gammaln (sym ('x')))) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/besselyn.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/besselyn.m ***** test % roundtrip syms x A = double(besselyn(sym(2), sym(10))); q = besselyn(sym(2), x); h = function_handle(q); B = h(10); assert (abs (A - B) <= eps) ***** error yn(sym('x')) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/floor.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/floor.m ***** error floor (sym(1), 2) ***** assert (isequaln (floor (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = floor(x); f2 = floor(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = floor(A); f2 = floor(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = floor (d); f = floor (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/sinhint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sinhint.m ***** error sinhint (sym(1), 2) ***** xtest assert (isequaln (sinhint (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (sinhint (sym (nan)), sym (nan))) failed ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sinhint(x); f2 = 1.057250875375728514572; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sinhint(A); f2 = 1.057250875375728514572; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sinhint (d); f = sinhint (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 4 passed, 1 known failure, 0 skipped [inst/@sym/isAlways.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isAlways.m ***** test % basics assert(isAlways(true)) assert(isAlways(1==1)) assert(isAlways(sym(1)==sym(1))) assert(isAlways(sym(1)==1)) ***** test % numbers to logic? assert (isAlways(sym(1))) assert (isAlways(sym(-1))) assert (~isAlways(sym(0))) ***** shared x syms x ***** test % in this case it is boolean expr = x - x == 0; assert (logical(expr)) assert (isAlways(expr)) % and both are logical type assert (islogical(logical(expr))) assert (islogical(isAlways(expr))) ***** test % structurally same and mathematically true % (here expr should be sym, non-boolean) expr = x == x; assert (logical(expr)) assert (isAlways(expr)) %assert (~islogical(expr)) % FIXME: Issue #56 %assert (isa(expr, 'sym)) ***** test % structurally same and mathematically true % (here expr should be sym, non-boolean) expr = 1 + x == x + 1; assert (logical(expr)) assert (isAlways(expr)) ***** test % non-zero numbers are true assert (isAlways(sym(1))) assert (isAlways(sym(-10))) assert (~isAlways(sym(0))) ***** shared x, y syms x y ***** test % structurally same and mathematically true % (here expr should be sym, non-boolean) expr = x*(1+y) == x*(y+1); assert (logical(expr)) assert (isAlways(expr)) assert (islogical(isAlways(expr))) ***** test % Now for some differences % simplest example from SymPy FAQ expr = x*(1+y) == x+x*y; assert (~logical(expr)) assert (isAlways(expr)) ***** test % more differences 1, these don't simplify in sympy (as of 2016-01) expr = (x+1)^2 == x*x + 2*x + 1; assert (~logical(expr)) assert (isAlways(expr)) ***** test % more differences 2 expr = sin(2*x) == 2*sin(x)*cos(x); assert (~logical(expr)) assert (isAlways(expr)) ***** test % more differences 3, false expr = x*(x+y) == x^2 + x*y + 1; assert (~logical(expr)) assert (~isAlways(expr)) assert (~isAlways(expr, 'unknown', 'error')) ***** test % logically not equal, math equal exprn = x*(x+y) ~= x^2 + x*y; assert (logical(exprn)) assert (~isAlways(exprn)) ***** test % logically not equal, math not equal exprn = x*(x+y) ~= x^2 + x*y + 1; assert (logical(exprn)) assert (isAlways(exprn)) ***** test % equal and not equal e1 = sin(x)^2 + cos(x)^2 == 1; e2 = sin(x)^2 + cos(x)^2 == 2; assert (~logical(e1)) assert (isAlways(e1)) assert (~logical(e2)) assert (~isAlways(e2)) assert (~isAlways(e2, 'unknown', 'error')) ***** error isAlways(x, 'unknown', 'kevin') ***** error isAlways(x, 'unknown') ***** error isAlways(x, 'kevin', 'true') ***** error a = [x*(x+y)==x^2+x*y x==y]; b = isAlways(a, 'unknown', 'error'); ***** error a = x==y; b = isAlways(a, 'unknown', 'error'); ***** test % array, unknown keyword a = [x==x x==x+1 x==y x*(x+y)==x^2+x*y cos(x)^2+sin(x)^2==2]; b = isAlways(a, 'unknown', false); c = isAlways(a, 'unknown', 'false'); expect = [true false false true false]; assert (islogical(b)) assert (isequal (b, expect)) assert (isequal (c, expect)) b = isAlways(a, 'unknown', true); c = isAlways(a, 'unknown', 'true'); expect = [true false true true false]; assert (islogical(b)) assert (isequal (b, expect)) assert (isequal (c, expect)) ***** test % ineq e = x*(x+y) <= x^2 + x*y + 1; assert (~logical(e)) assert (isAlways(e)) e = x*(x+y) <= x^2 + x*y; assert (~logical(e)) assert (isAlways(e)) 21 tests, 21 passed, 0 known failure, 0 skipped [inst/@sym/numel.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/numel.m ***** test a = sym([1 2 3]); assert(numel(a) == 3); ***** test % 2D array a = sym([1 2 3; 4 5 6]); assert(numel(a) == 6); ***** test % empty a = sym([]); assert(numel(a) == 0); 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/asec.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/asec.m ***** error asec (sym(1), 2) ***** assert (isequaln (asec (sym(nan)), sym(nan))) ***** shared x, d d = 2; x = sym('2'); ***** test f1 = asec(x); f2 = asec(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = asec(A); f2 = asec(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = asec (d); f = asec (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/disp.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/disp.m ***** test syms x s = disp(sin(x)); assert(strcmp(s, sprintf(' sin(x)\n'))) ***** test syms x s = disp(sin(x/2), 'flat'); assert(strcmp(s, sprintf(' sin(x/2)\n'))) ***** test % Examples of 2x0 and 0x2 empty matrices: a = sym([1 2; 3 4]); b2x0 = a([true true], [false false]); b0x2 = a([false false], [true true]); assert (isequal (size (b2x0), [2 0])) assert (isequal (size (b0x2), [0 2])) s = disp(b2x0); assert(strcmp(s, sprintf(' []\n'))) s = disp(b0x2); assert(strcmp(s, sprintf(' []\n'))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/acosd.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acosd.m ***** error acosd (sym(1), 2) ***** assert (isequaln (acosd (sym(nan)), sym(nan))) ***** test f1 = acosd (sym(1)/2); f2 = acosd (1/2); assert (double (f1), f2, -eps) ***** test D = [1 2; 3 4]/4; A = sym([1 2; 3 4])/4; f1 = acosd (A); f2 = acosd (D); assert (double (f1), f2, -eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/symprod.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/symprod.m ***** error symprod (sym(1), 2, 3, 4, 5) ***** test % simple syms n assert (isequal (symprod(n, n, 1, 10), factorial(sym(10)))) assert (isequal (symprod(n, n, sym(1), sym(10)), factorial(10))) ***** test % one input syms n f = symprod (n); g = factorial (n); assert (isequal (f, g)) f = symprod (2*n); g = 2^n * factorial (n); assert (isequal (f, g)) ***** test % constant input f = symprod (sym(2)); syms x g = 2^x; assert (isequal (f, g)) ***** test % two inputs syms n f = symprod (2*n, n); g = 2^n * factorial (n); assert (isequal (f, g)) ***** test % two inputs, second is range syms n f = symprod (n, [1 6]); g = 720; assert (isequal (f, g)) f = symprod (n, [sym(1) 6]); g = 720; assert (isequal (f, g)) f = symprod (2*n, [1 6]); g = sym(2)^6*720; assert (isequal (f, g)) ***** test % three inputs, last is range syms n f = symprod (2*n, n, [1 4]); g = sym(384); assert (isequal (f, g)) f = symprod (2*n, n, [sym(1) 4]); g = sym(384); assert (isequal (f, g)) f = symprod (2, n, [sym(1) 4]); g = sym(16); assert (isequal (f, g)) ***** test % three inputs, no range syms n f = symprod (2*n, 1, 4); g = sym(384); assert (isequal (f, g)) f = symprod (5, sym(1), 3); g = sym(125); assert (isequal (f, g)) ***** test % infinite product syms a n oo zoo = sym('zoo'); assert (isequal (symprod(a, n, 1, oo), a^oo)) assert (isequal (symprod(a, n, 1, inf), a^oo)) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/isempty.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isempty.m ***** shared se, a se = sym ([]); a = sym ([1 2]); ***** assert (~isempty (sym (1))) ***** assert (isempty (sym (se))) ***** assert (isempty (se == [])) ***** test ***** test se(1) = 10; ***** test assert ( isa (se, 'sym')) ***** test assert ( isequal (se, 10)) ***** shared ***** test % empty matrices A = sym('A', [3 0]); assert (isempty (A)) A = sym(ones(3,0)); assert (isempty (A)) ***** test % non-empty symbolic-size matrices syms n integer A = sym('A', [3 n]); assert (~isempty (A)) ***** xtest % empty symbolic-size matrices % FIXME: will fail until size stop lying by saying 1x1 syms n integer A = sym('A', [0 n]); assert (isempty (A)) A = sym('A', [n 0]); assert (isempty (A)) !!!!! known failure assert (isempty (A)) failed 10 tests, 9 passed, 1 known failure, 0 skipped [inst/@sym/unique.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/unique.m ***** test A = sym([1 2 3 3 5 3 2 6 5]); B = sym([1 2 3 5 6]); assert (isequal (unique(A), B)) ***** test syms x y A = [1 2 3 3 4 5 5 6 7 7 x x y y]; B = [1 2 3 4 5 6 7 x y]; assert (isequal (unique(A), B)) ***** test syms x assert (isequal (unique(x), x)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/besseljn.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/besseljn.m ***** test % roundtrip syms x A = double(besseljn(sym(2), sym(9))); q = besseljn(sym(2), x); h = function_handle(q); B = h(9); assert (abs (A - B) <= eps) ***** error jn(sym('x')) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/assumeAlso.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/assumeAlso.m ***** test syms x x = assumeAlso(x, 'positive'); a = assumptions(x); assert(strcmp(a, 'x: positive')) ***** error syms x x = assumeAlso (x, x); ***** test syms x positive x = assumeAlso(x, 'integer'); [tilde, a] = assumptions(x, 'dict'); assert(a{1}.integer) assert(a{1}.positive) ***** test % multiple assumptions syms x positive x = assumeAlso(x, 'integer', 'even'); [tilde, a] = assumptions(x, 'dict'); assert(a{1}.integer) assert(a{1}.positive) assert(a{1}.even) ***** test % multiple assumptions syms x integer x = assumeAlso (x, 'even', 'positive'); [tilde, a] = assumptions (x, 'dict'); assert (a{1}.integer) assert (a{1}.even) assert (a{1}.positive) ***** test % has output so avoids workspace syms x positive x2 = x; f = sin(x); assumeAlso(x, 'integer'); a = assumptions(x); assert(strcmp(a, 'x: positive, integer') || strcmp(a, 'x: integer, positive')) a = assumptions(x2); assert(strcmp(a, 'x: positive, integer') || strcmp(a, 'x: integer, positive')) a = assumptions(f); assert(strcmp(a, 'x: positive, integer') || strcmp(a, 'x: integer, positive')) ***** test % has no output so does workspace syms x positive x2 = x; f = sin(x); assumeAlso(x, 'integer'); a = assumptions(x); assert(strcmp(a, 'x: positive, integer') || strcmp(a, 'x: integer, positive')) a = assumptions(x2); assert(strcmp(a, 'x: positive, integer') || strcmp(a, 'x: integer, positive')) a = assumptions(f); assert(strcmp(a, 'x: positive, integer') || strcmp(a, 'x: integer, positive')) ***** error syms a assumeAlso (a > 0) ***** test syms x y assumeAlso ([x y], 'even') assert (strcmp (assumptions (x), 'x: even')) assert (strcmp (assumptions (y), 'y: even')) ***** test syms x y positive f = sin (2*x); assumeAlso ([x y], 'even') assert (strcmp (assumptions (x), 'x: even, positive') || strcmp (assumptions (x), 'x: positive, even')) assert (strcmp (assumptions (y), 'y: even, positive') || strcmp (assumptions (y), 'y: positive, even')) assert (strcmp (assumptions (f), 'x: even, positive') || strcmp (assumptions (f), 'x: positive, even')) ***** test % with output, original x and y are unchanged syms x y positive f = sin (2*x); [p, q] = assumeAlso ([x y], 'even'); assert (strcmp (assumptions (x), 'x: positive')) assert (strcmp (assumptions (y), 'y: positive')) assert (strcmp (assumptions (f), 'x: positive')) assert (strcmp (assumptions (p), 'x: even, positive') || strcmp (assumptions (p), 'x: positive, even')) assert (strcmp (assumptions (q), 'y: even, positive') || strcmp (assumptions (q), 'y: positive, even')) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/permute.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/permute.m ***** error permute (sym(1)) ***** error permute (sym(1), 2, 3) ***** test D = round(10*rand(5,3)); A = sym(D); B = permute(A, [1 2]); assert (isequal(B, A)) B = permute(A, [2 1]); assert (isequal(B, A.')) ***** test syms x A = [1 x]; B = permute(A, [2 1]); assert (isequal(B, [1; x])) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/nchoosek.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/nchoosek.m ***** assert (isequal (nchoosek(sym(5), sym(2)), sym(10))) ***** assert (isequal (nchoosek(sym(5), 2), sym(10))) ***** assert (isequal (nchoosek(5, sym(2)), sym(10))) ***** assert (isequal (nchoosek(sym(10), 0), 1)) ***** assert (isequal (nchoosek(sym(10), -1), 0)) ***** test n = sym('n', 'nonnegative', 'integer'); assert (isequal (nchoosek (n, n), sym(1))) ***** test n = sym('n', 'integer'); q = nchoosek(n, 2); w = subs(q, n, 5); assert (isequal (w, 10)) ***** test n = sym('n', 'integer'); k = sym('k', 'integer'); q = nchoosek(n, k); w = subs(q, {n k}, {5 2}); assert (isequal (w, 10)) ***** test % negative input assert (isequal (nchoosek (sym(-2), sym(5)), sym(-6))) ***** test % complex input n = sym(1 + 3i); k = sym(5); A = nchoosek (n, k); B = gamma (n + 1) / (gamma (k + 1) * gamma (n - k + 1)); assert (double (A), double (B), -2*eps) ***** test % complex input n = sym(-2 + 3i); k = sym(1 + i); A = nchoosek (n, k); B = gamma (n + 1) / (gamma (k + 1) * gamma (n - k + 1)); assert (double (A), double (B), -2*eps) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/signIm.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/signIm.m ***** assert (isequal (signIm (sym(1)), sym(0))) ***** assert (isequal (signIm (sym(1) + 2i), sym(1))) ***** assert (isequal (signIm (sym(1) - 2i), sym(-1))) ***** test % intermediate A looks bit weird, but it works syms z A = signIm (z); assert (isequal (subs(A, z, 3+sym(4i)), sym(1))) assert (isequal (subs(A, z, 3-sym(4i)), sym(-1))) ***** test % really a @sym/sign test, but that one is autogen z = 3 + sym(4i); A = sign (z); B = z / abs(z); assert (double (A), double (B), eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/tril.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/tril.m ***** test syms x assert (isequal (tril(x), x)) ***** test % with symbols syms x A = [x 2*x; 3*x 4*x]; assert (isequal (tril(A), [x 0; 3*x 4*x])) ***** test % diagonal shifts B = round(10*rand(3,4)); A = sym(B); assert (isequal (tril(A), tril(B))) assert (isequal (tril(A,0), tril(B,0))) assert (isequal (tril(A,1), tril(B,1))) assert (isequal (tril(A,-1), tril(B,-1))) ***** test % double array pass through B = round(10*rand(3,4)); assert (isequal (tril(B,sym(1)), tril(B,1))) assert (isa (tril(B,sym(1)), 'double')) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/sin.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sin.m ***** error sin (sym(1), 2) ***** assert (isequaln (sin (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sin(x); f2 = sin(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sin(A); f2 = sin(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sin (d); f = sin (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/pinv.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/pinv.m ***** test % scalar syms x assert (isequal (pinv(x), 1/x)) ***** test % 2x3 A = [1 2 3; 4 5 6]; assert (max (max (abs (double (pinv (sym (A))) - pinv(A)))) <= 10*eps) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/rewrite.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/rewrite.m ***** test syms x assert (isequal (rewrite(x, 'exp'), x)) ***** test % empty e = sym([]); assert (isequal (rewrite(e, 'sin'), e)) ***** test syms x A = [exp(x) exp(2*x)]; B = [sinh(x) + cosh(x) sinh(2*x) + cosh(2*x)]; assert (isequal (rewrite(A, 'sin'), B)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/bessely.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/bessely.m ***** test X = [1 2 3; 4 5 6]; ns = [sym(0) 1 -2; sym(1)/2 -sym(3)/2 pi]; n = double(ns); A = double(bessely(ns, X)); B = bessely(n, X); assert (all (all (abs (A - B) < 50*eps*abs(A)))) ***** test % roundtrip syms x A = bessely(2, 10); q = bessely(2, x); h = function_handle(q); B = h(10); assert (abs (A - B) <= eps*abs(A)) ***** error bessely(sym('x')) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/symreplace.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/symreplace.m ***** test % start with assumptions on x then remove them syms x positive f = x*10; symreplace(x, sym('x')) assert(isempty(assumptions(x))) ***** test % replace x with y syms x f = x*10; symreplace(x, sym('y')) assert( isequal (f, 10*sym('y'))) ***** test % gets inside cells syms x f = {x 1 2 {3 4*x}}; symreplace(x, sym('y')) syms y assert( isequal (f{1}, y)) assert( isequal (f{4}{2}, 4*y)) ***** test % gets inside structs/cells syms x my.foo = {x 1 2 {3 4*x}}; my.bar = x; g = {'ride' my 'motor' 'sicle'}; symreplace(x, sym('y')) syms y f = g{2}; assert( isequal (f.foo{1}, y)) assert( isequal (f.foo{4}{2}, 4*y)) assert( isequal (f.bar, y)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/csc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/csc.m ***** error csc (sym(1), 2) ***** assert (isequaln (csc (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = csc(x); f2 = csc(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = csc(A); f2 = csc(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = csc (d); f = csc (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/log.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/log.m ***** error log (sym(1), 2) ***** assert (isequaln (log (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = log(x); f2 = log(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = log(A); f2 = log(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = log (d); f = log (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/coeffs.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/coeffs.m ***** error coeffs (sym(1), 2, 3, 4) ***** error coeffs (sym(1), 2, 'al') ***** error coeffs (sym(1), 'al') ***** test % simple syms x [c, t] = coeffs(6*x*x + 27); assert (isequal (c, [6 27])) assert (isequal (t, [x*x 1])) ***** test % specify a variable syms x [c, t] = coeffs(6*x*x + 27, x); assert (isequal (c, [6 27])) assert (isequal (t, [x*x 1])) ***** test % specify another variable syms x y [c, t] = coeffs(6*x + 27, y); assert (isequal (c, 6*x + 27)) assert (isequal (t, 1)) ***** test % weird SMT order syms x a1 = [27 6]; a2 = [6 27]; c = coeffs(6*x*x + 27); assert (isequal (c, a1)) coeffs(6*x*x + 27); assert (isequal (ans, a1)) [c, t] = coeffs(6*x*x + 27); assert (isequal (c, a2)) ***** test % no weird order with "all" syms x c = coeffs(6*x*x + 27, 'all'); assert (isequal (c, [6 0 27])) ***** test % "all" syms x [c, t] = coeffs(6*x*x + 27, 'all'); assert (isequal (c, [6 0 27])) assert (isequal (t, [x^2 x 1])) ***** test % "All" syms x [c, t] = coeffs(6*x, 'All'); assert (isequal (c, [6 0])) assert (isequal (t, [x 1])) ***** test % multivariable array syms x y [c, t] = coeffs(6*x*x + 27*y*x + 36, [x y]); a = [6 27 36]; s = [x^2 x*y 1]; assert (isequal (c, a)) assert (isequal (t, s)) % with list [c, t] = coeffs(6*x*x + 27*y*x + 36, {x y}); assert (isequal (c, a)) assert (isequal (t, s)) ***** test % other symbols treated as part of coeffs syms x y [c, t] = coeffs(6*x*x + 27*y*x + 36, x); a = [6 27*y 36]; s = [x^2 x 1]; assert (isequal (c, a)) assert (isequal (t, s)) ***** error % TODO: multivariate all not working (https://github.com/gnu-octave/symbolic/issues/720) syms x y [c, t] = coeffs(6*x^2 + 7*y + 19, [x y], 'all'); ***** test % empty same as not specifying; maybe not SMT compatible: % https://github.com/gnu-octave/symbolic/pull/708#discussion_r94292831 syms x y [c, t] = coeffs(6*x*x + 27*y*x + 36, {}); a = [6 27 36]; assert (isequal (c, a)) [c, t] = coeffs(6*x*x + 27*y*x + 36); assert (isequal (c, a)) ***** test % no input defaults to all symbols (not symvar to get x) syms x y [c, t] = coeffs(6*x*x + 27*y*x + 36); assert (isequal (c, [6 27 36])) ***** test % non sym input syms x assert (isequal (coeffs(6, x), sym(6))) ***** test % constant input without x assert (isequal (coeffs(sym(6)), sym(6))) ***** test % constant input without x assert (isequal (coeffs (sym(6), {}), sym(6))) % irrational coefficients syms x f = x^2 + sqrt(sym(2))*x; [c1, t1] = coeffs (f); [c2, t2] = coeffs (f, x); assert (isequal (c1, c2)) assert (isequal (t1, t2)) 18 tests, 18 passed, 0 known failure, 0 skipped [inst/@sym/log10.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/log10.m ***** assert (isequal (log10 (sym (1000)), sym (3))) ***** assert (isequal (log10 (sym ([10 100])), sym ([1 2]))) ***** test % round-trip syms x f = log10 (x); h = function_handle (f); A = h (1.1); B = log10 (1.1); assert (A, B, -eps) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/sec.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sec.m ***** error sec (sym(1), 2) ***** assert (isequaln (sec (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sec(x); f2 = sec(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sec(A); f2 = sec(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sec (d); f = sec (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/cosint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cosint.m ***** error cosint (sym(1), 2) ***** xtest assert (isequaln (cosint (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (cosint (sym (nan)), sym (nan))) failed ***** shared x, d d = 1; x = sym('1'); ***** test f1 = cosint(x); f2 = 0.3374039229009681346626; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = cosint(A); f2 = 0.3374039229009681346626; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = cosint (d); f = cosint (y); h = function_handle (f); B = h (d); assert (A, B, -eps) ***** test % rewrite syms x y1 = cosint (x); y2 = rewrite (y1, 'Integral'); d1 = diff (y1, x); d2 = diff (y2, x); assert (isequal (d1, simplify(d2))) v1 = double (subs (d1, x, 2)); v2 = double (subs (d2, x, 2)); assert (v1, v2, -eps) 6 tests, 5 passed, 1 known failure, 0 skipped [inst/@sym/gt.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/gt.m ***** test % simple x = sym(1); y = sym(1); e = x > y; assert (~logical (e)) x = sym(1); y = sym(2); e = x > y; assert (~logical (e)) ***** test % array -- array syms x a = sym([1 3 3 2*x]); b = sym([2 x 3 10]); e = a > b; assert (isa (e, 'sym')) assert (~logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), 3 > x)) assert (~logical (e(3))) assert (isa (e(4), 'sym')) assert (isequal (e(4), 2*x > 10)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/rows.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/rows.m ***** test a = sym([1 2 3]); assert (rows(a) == 1) ***** test a = sym([1 2 3; 4 5 6]); assert (rows(a) == 2) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/and.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/and.m ***** shared t, f t = sym(true); f = sym(false); ***** test % simple assert (isequal (t & f, f)) assert (isequal (t & t, t)) ***** test % mix with nonsym assert (isequal (t & false, f)) assert (isequal (t & true, t)) assert (isequal (t & 0, f)) assert (isequal (t & 1, t)) assert (isa (t & false, 'sym')) assert (isa (t & 1, 'sym')) ***** test % array w = [t t f f]; z = [t f t f]; assert (isequal (w & z, [t f f f])) ***** test % number assert (isequal( sym(1) & t, t)) assert (isequal( sym(0) & t, f)) ***** test % output is sym even for scalar t/f assert (isa (t & f, 'sym')) ***** test % eqns, exclusive syms x e = (x == 3) & (x^2 == 9); assert (isequal (subs(e, x, [-3 0 3]), [f f t])) ***** error and (sym('x'), 2, 3) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/ismember.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ismember.m ***** assert (ismember (2, interval(sym(0),2))) ***** assert (~ismember (3, interval(sym(0),2))) ***** test % something in a matrix syms x A = [1 x; sym(pi) 4]; assert (ismember (sym(pi), A)) assert (ismember (x, A)) assert (~ismember (2, A)) ***** test % set syms x S = finiteset(2, sym(pi), x); assert (ismember (x, S)) ***** test % set with positive symbol syms p positive S = finiteset(2, sym(pi), p); assert (~ismember (-1, S)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/cos.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cos.m ***** error cos (sym(1), 2) ***** assert (isequaln (cos (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = cos(x); f2 = cos(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = cos(A); f2 = cos(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = cos (d); f = cos (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/sind.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sind.m ***** error sind (sym(1), 2) ***** assert (isequaln (sind (sym(nan)), sym(nan))) ***** test f1 = sind (sym(1)); f2 = sind (1); assert (double (f1), f2, -eps) ***** test D = [10 30; 110 -45]; A = sym(D); f1 = sind (A); f2 = sind (D); assert (double (f1), f2, -eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/tan.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/tan.m ***** error tan (sym(1), 2) ***** assert (isequaln (tan (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = tan(x); f2 = tan(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = tan(A); f2 = tan(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = tan (d); f = tan (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/erfi.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/erfi.m ***** error erfi (sym(1), 2) ***** assert (isequaln (erfi (sym(nan)), sym(nan))) ***** shared x, d d = 0; x = sym('0'); ***** test f1 = erfi(x); f2 = 0; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = erfi(A); f2 = 0; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = erfi (d); f = erfi (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/acsch.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acsch.m ***** error acsch (sym(1), 2) ***** assert (isequaln (acsch (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = acsch(x); f2 = acsch(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = acsch(A); f2 = acsch(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = acsch (d); f = acsch (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/equationsToMatrix.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/equationsToMatrix.m ***** test syms x y z [A, B] = equationsToMatrix ([x + y - z == 1, 3*x - 2*y + z == 3, 4*x - 2*y + z + 9 == 0], [x, y, z]); a = sym ([1 1 -1; 3 -2 1; 4 -2 1]); b = sym ([1; 3; -9]); assert (isequal (A, a)) assert (isequal (B, b)) ***** test syms x y z A = equationsToMatrix ([3*x + -3*y - 5*z == 9, 4*x - 7*y + -3*z == -1, 4*x - 9*y - 3*z + 2 == 0], [x, y, z]); a = sym ([3 -3 -5; 4 -7 -3; 4 -9 -3]); assert (isequal (A, a)) ***** test syms x y [A, B] = equationsToMatrix ([3*x + 9*y - 5 == 0, -8*x - 3*y == -2]); a = sym ([3 9; -8 -3]); b = sym ([5; -2]); assert (isequal (A, a)) assert (isequal (B, b)) ***** test % override symvar order syms x y [A, B] = equationsToMatrix ([3*x + 9*y - 5 == 0, -8*x - 3*y == -2], [y x]); a = sym ([9 3; -3 -8]); b = sym ([5; -2]); assert (isequal (A, a)) assert (isequal (B, b)) ***** test syms x y z [A, B] = equationsToMatrix ([x - 9*y + z == -5, -9*y*z == -5], [y, x]); a = sym ([[-9 1]; -9*z 0]); b = sym ([-5 - z; -5]); assert (isequal (A, a)) assert (isequal (B, b)) ***** test syms x y [A, B] = equationsToMatrix (-6*x + 4*y == 5, 4*x - 4*y - 5, x, y); a = sym ([-6 4; 4 -4]); b = sym ([5; 5]); assert (isequal (A, a)) assert (isequal (B, b)) ***** test % vertical list of equations syms x y [A, B] = equationsToMatrix ([-6*x + 4*y == 5; 4*x - 4*y - 5], [x y]); a = sym ([-6 4; 4 -4]); b = sym ([5; 5]); assert (isequal (A, a)) assert (isequal (B, b)) ***** test syms x y [A, B] = equationsToMatrix (5*x == 1, y, x - 6*y - 7, y); a = sym ([0; 1; -6]); b = sym ([1 - 5*x; 0; -x + 7]); assert (isequal (A, a)) assert (isequal (B, b)) ***** error syms x y [A, B] = equationsToMatrix (x^2 + y^2 == 1, x - y + 1, x, y); ***** test % single equation syms x [A, B] = equationsToMatrix (3*x == 2, x); a = sym (3); b = sym (2); assert (isequal (A, a)) assert (isequal (B, b)) ***** test % single equation w/ symvar syms x [A, B] = equationsToMatrix (3*x == 2); a = sym (3); b = sym (2); assert (isequal (A, a)) assert (isequal (B, b)) ***** error syms x equationsToMatrix (3*x == 2, [x x]) 12 tests, 12 passed, 0 known failure, 0 skipped [inst/@sym/airy.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/airy.m ***** test syms z a = airy(0, z); ap = airy(1, z); assert (isequal (diff (a), ap)) assert (isequal (diff (ap), z*a)) ***** test syms z b = airy(2, z); bp = airy(3, z); assert (isequal (diff (b), bp)) assert (isequal (diff (bp), z*b)) ***** test % default to k=0 syms z a = airy(0, z); a2 = airy(z); assert (isequal (a, a2)) ***** error airy(0, sym('x'), 2) ***** error airy(4, sym('z')) ***** error airy(-1, sym('z')) ***** test % symbolic k syms z b1 = airy(2, z); b2 = airy(sym(2), z); assert (isequal (b1, b2)) ***** test % doubles, relative error X = [1 2 pi; 4i 5 6+6i]; Xs = sym(X); for k = 0:3 A = double(airy(k, Xs)); B = airy(k, X); assert (all (all (abs(A - B) < 500*eps*abs(A)))) end ***** test % round-trip syms x for k = 0:3 A = airy(k, 10); q = airy(k, x); h = function_handle(q); B = h(10); assert (abs(A-B) < 500*eps*abs(A)) end 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/cumsum.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cumsum.m ***** shared x, y x = sym ('x'); y = sym ('y'); ***** error cumsum (x, 1, 2) ***** assert (isequal (cumsum ([-x; -2*x; -3*x]), [-x; -3*x; -6*x])) ***** assert (isequal (cumsum ([x + 2i*y, 2*x + i*y]), [x + 2i*y, 3*x + 3i*y])) ***** assert (isequal (cumsum ([x, 2*x; 3*x, 4*x], 1), [1*x, 2*x; 4*x, 6*x] )) ***** assert (isequal (cumsum ([x, 2*x; 3*x, 4*x], 2), [1*x, 3*x; 3*x, 7*x] )) ***** test cumsum ([x, x], [2, 1]); # ensure behaves like builtin cumsum ***** test cumsum ([x, x], [1, -2]); # ensure behaves like builtin cumsum ***** error cumsum (x, []) ***** error cumsum (x, {1}) ***** error cumsum (x, struct('a', 1)) ***** error cumsum (x, x) ***** error cumsum (x, 0) ***** error cumsum (x, -1) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/@sym/limit.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/limit.m ***** error limit (sym(1), 2, 3, 4, 5) ***** shared x, oo syms x oo = sym(inf); ***** assert (isa (limit(x, x, pi), 'sym')) ***** assert (isequal (limit(x, x, pi), sym(pi))) ***** assert (isequal (limit(sin(x)/x, x, 0), 1)) ***** test % left/right-hand limit assert (isequal (limit(1/x, x, 0, 'right'), oo)) assert (isequal (limit(1/x, x, 0), oo)) assert (isequal (limit(1/x, x, 0, 'left'), -oo)) assert (isequal (limit(1/x, x, oo), 0)) assert (isequal (limit(sign(x), x, 0, 'left'), -1)) assert (isequal (limit(sign(x), x, 0, 'right'), 1)) assert (isequal (limit(sign(x), x, 0, '-'), -1)) assert (isequal (limit(sign(x), x, 0, '+'), 1)) ***** test % matrix syms y A = [x 1/x x*y]; B = sym([3 sym(1)/3 3*y]); assert (isequal (limit(A, x, 3), B)) ***** test % omitting arguments syms a assert (isequal (limit(a), 0)) assert (isequal (limit(a*x+a+2), a+2)) assert (isequal (limit(a*x+a+2, 6), 7*a+2)) ***** test % constants assert (isequal (limit(sym(6)), 6)) assert (isequal (limit(sym(6), 7), 6)) assert (isequal (limit([sym(6) sym(2)], 7), [6 2])) ***** test % double constant, with sym limit a = limit (6, sym(0)); assert (isa (a, 'sym')) assert (isequal (a, sym(6))) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/log2.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/log2.m ***** assert (isequal (log2 (sym (1024)), sym (10))) ***** assert (isequal (log2 (sym ([2 16; 32 1])), sym ([1 4; 5 0]))) ***** test % round-trip syms x f = log2 (x); h = function_handle (f); A = h (1.1); B = log2 (1.1); assert (A, B, -5*eps) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/ellipticCPi.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticCPi.m ***** error ellipticCPi (sym (1)) ***** error ellipticCPi (sym (1), 2, 3) ***** assert (double (ellipticCPi (0, sym (1)/2)), 1.854074677, 10e-10) ***** assert (double (ellipticCPi (sym (6)/10, sym(71)/10)), 1.29469534336658, -20*eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/divergence.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/divergence.m ***** shared x,y,z syms x y z ***** test % 1D f = x^2; assert (isequal (divergence(f), diff(f,x))) assert (isequal (divergence(f,{x}), diff(f,x))) assert (isequal (divergence(f,[x]), diff(f,x))) assert (isequal (divergence(f,x), diff(f,x))) ***** test % const f = [sym(1); 2; exp(sym(3))]; assert (isequal (divergence(f,{x,y,z}), 0)) f = [sym(1); 2; exp(sym('c'))]; assert (isequal (divergence(f,{x,y,z}), 0)) ***** test % double const f = [1 2]; g = sym(0); assert (isequal (divergence(f, [x y]), g)) % should fail, calls @double: divergence(f, {x y}), g)) ***** test % 1D fcn in 2d/3d f = [x y z]; assert (isequal (divergence(f), 3)) assert (isequal (divergence(f, {x,y,z}), 3)) assert (isequal (divergence(f, [x,y,z]), 3)) ***** test % 2d fcn in 2d/3d f = sin(exp(x)*y+sinh(z)); g2 = [diff(f,x); diff(f,y)]; l2 = diff(g2(1),x) + diff(g2(2),y); g3 = [diff(f,x); diff(f,y); diff(f,z)]; l3 = diff(g3(1),x) + diff(g3(2),y) + diff(g3(3),z); assert (isequal (divergence(g2, {x,y}), l2)) assert (isequal (divergence(g3, {x,y,z}), l3)) ***** error divergence ([1 2], [sym('x')]) ***** error divergence ([1 2], sym('x'), 42) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/numden.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/numden.m ***** error numden (sym(1), 2) ***** test syms x [n, d] = numden (1/x); assert (isequal (n, sym(1)) && isequal (d, x)) ***** test syms x y n1 = [sym(1); x]; d1 = [x; y]; [n, d] = numden (n1 ./ d1); assert (isequal (n, n1) && isequal (d, d1)) ***** test [n, d] = numden (sym(2)); assert (isequal (n, 2)); assert (isequal (d, 1)); ***** test syms x y [n, d] = numden ((x + pi)/(y + 6)); assert (isequal (n, x + pi)); assert (isequal (d, y + 6)); ***** test syms x y [n, d] = numden ((x^2 + y^2)/(x*y)); assert (isequal (n, x^2 + y^2)); assert (isequal (d, x*y)); 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/max.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/max.m ***** test % simple assert (isequal (max([sym(10) sym(11)]), sym(11))) ***** test syms x y assert (isequal (children (max (x, y)), [x y])) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/latex.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/latex.m ***** test syms x y = sin(x); assert (strcmp (latex (y), '\sin{\left(x \right)}')) ***** assert (strcmp (latex (exp (sym('x'))), 'e^{x}')) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/kron.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/kron.m ***** error kron (sym (2)) ***** test syms x y A = [sin(x), sin(y); x, y]; B = ones(2); expected = sym([sin(x), sin(x), sin(y), sin(y); sin(x), sin(x), sin(y), sin(y); x, x, y, y; x, x, y, y]); assert (isequal (kron(A, B), expected)) ***** test syms x y A = [sin(x), sin(y); x, y]; B = 2; assert (isequal (kron(A, B), 2*A)) ***** test syms x y A = [sin(x), sin(y)]; B = 2; assert (isequal( kron(B, A), 2*A)) ***** test syms x y; X = [tan(x), tan(x)]; Y = [cot(x); cot(x)]; expected = sym(ones(2)); assert (isequal (simplify(kron(X, Y)), expected)) ***** test syms x y z X = [x, y, z]; Y = [y, y; x, x]; expected = [x*y, x*y, y^2, y^2, y*z, y*z; x^2, x^2, x*y, x*y, x*z, x*z]; assert (isequal (kron(X, Y), expected)) ***** test syms x y X = [x, x^2; y, y^2]; Y = [1, 0; 0, 1]; expected = [x, x^2, 0, 0; y, y^2, 0, 0; 0, 0, x, x^2; 0, 0, y, y^2]; assert (isequal (kron(Y, X), expected)) ***** test syms x y z assert (isequal (kron (x, y, z), x*y*z)) assert (isequal (kron (x, y, z, 4), 4*x*y*z)) assert (isequal (kron ([2 3], y, z), [2 3]*y*z)) assert (isequal (kron ([2 3], [4; 5], y), [8 12; 10 15]*y)) ***** test syms x y A = kron ([x y], [1, -1; -1, 1], [2 3; 4 5]); D = kron ([7 9], [1, -1; -1, 1], [2 3; 4 5]); A = double (subs (A, [x y], [7 9])); assert (isequal (A, D)) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/plus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/plus.m ***** test % basic addition syms x assert (isa (x+5, 'sym')) assert (isa (5+x, 'sym')) assert (isa (5+sym(4), 'sym')) assert (isequal (5+sym(4), sym(9))) ***** test % array addition syms x D = [0 1; 2 3]; A = [sym(0) 1; sym(2) 3]; DZ = D - D; assert( isequal ( A + D , 2*D )) assert( isequal ( D + A , 2*D )) assert( isequal ( A + A , 2*D )) assert( isequal ( A + 2 , D + 2 )) assert( isequal ( 4 + A , 4 + D )) ***** test % ensure MatrixExpr can be manipulated somewhat syms n m integer A = sym('A', [n m]); B = subs(A, [n m], [5 6]); B = B + 1; assert (isa (B, 'sym')) C = B(1, 1); % currently makes a MatrixElement C = C + 1; assert (isa (C, 'sym')) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/polylog.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/polylog.m ***** assert (isequal (polylog (sym('s'), 0), sym(0))) ***** assert (isequal (double (polylog (1, sym(-1))), -log(2))) ***** assert (isequal (double (polylog (0, sym(2))), -2)) ***** assert (isequal (double (polylog (-1, sym(2))), 2)) ***** assert (isequal (double (polylog (-2, sym(3))), -1.5)) ***** assert (isequal (double (polylog (-3, sym(2))), 26)) ***** assert (isequal (double (polylog (-4, sym(3))), -15)) ***** assert (isequal (double (polylog (1, sym(1)/2)), log(2))) ***** test % round trip syms s z f = polylog (s, z); h = function_handle (f, 'vars', [s z]); A = h (1.1, 2.2); B = polylog (1.1, 2.2); assert (A, B) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/adjoint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/adjoint.m ***** test syms x A = [x x^2; x^3 x^4]; B = [x^4 -x^2; -x^3 x]; assert( isequal( adjoint(A), B )) ***** test syms x assert( isequal( adjoint(x), 1)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/argnames.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/argnames.m ***** test % basic tests syms x f = 2*x; assert (isempty (argnames(x))) assert (isempty (argnames(f))) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/partfrac.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/partfrac.m ***** test % basic syms x y z assert(logical( partfrac(y/(x + 2)/(x + 1),x) == -y/(x + 2) + y/(x + 1) )) assert(logical( factor(partfrac(x^2/(x^2 - y^2),y)) == factor(x/(2*(x + y)) + x/(2*(x - y)) ))) assert(logical( factor(partfrac(x^2/(x^2 - y^2),x)) == factor(-y/(2*(x + y)) + y/(2*(x - y)) + 1 ))) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/ellipticF.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticF.m ***** error ellipticF (sym(1)) ***** error ellipticF (sym(1), 2, 3) ***** assert (double (ellipticF (sym (pi)/3, sym (-105)/10)), 0.6184459461, 10e-11) ***** assert (double (ellipticF (sym (pi)/4, sym (-pi))), 0.6485970495, 10e-11) ***** assert (double (ellipticF (sym (1), sym (-1))), 0.8963937895, 10e-11) ***** assert (double (ellipticF (sym (pi)/6, sym (0))), 0.5235987756, 10e-11) ***** test % compare to Maple us = vpa (ellipticF (sym(11)/10, sym(9)/4), 40); % > evalf(EllipticF(sin(11/10), sqrt(9/4)), 40); maple = vpa ('1.206444996991058996424988192917728014427', 40) - ... vpa ('0.8157358125823472313001683083685348517476j', 40); assert (abs (double (maple - us)), 0, 1e-39) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/hilb.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/hilb.m ***** test A = hilb (sym(3)); B = [sym(1) sym(1)/2 sym(1)/3; sym(1)/2 sym(1)/3 sym(1)/4; sym(1)/3 sym(1)/4 sym(1)/5]; assert (isequal (A, B)) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/jacobian.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/jacobian.m ***** error jacobian (sym(1), 2, 3) ***** error jacobian ([sym(1) 2; sym(3) 4]) ***** shared x,y,z syms x y z ***** test % 1D f = x^2; assert (isequal (jacobian(f), diff(f,x))) assert (isequal (jacobian(f,{x}), diff(f,x))) assert (isequal (jacobian(f,x), diff(f,x))) ***** test % const f = sym(1); g = sym(0); assert (isequal (jacobian(f), g)) assert (isequal (jacobian(f,x), g)) ***** test % double const f = 1; g = sym(0); assert (isequal (jacobian(f,x), g)) ***** test % diag f = [x y^2]; g = [sym(1) 0; 0 2*y]; assert (isequal (jacobian(f), g)) assert (isequal (jacobian(f, [x y]), g)) assert (isequal (jacobian(f, {x y}), g)) ***** test % anti-diag f = [y^2 x]; g = [0 2*y; sym(1) 0]; assert (isequal (jacobian(f), g)) assert (isequal (jacobian(f, {x y}), g)) ***** test % shape f = [x y^2]; assert (isequal (size(jacobian(f, {x y z})), [2 3])) assert (isequal (size(jacobian(f, [x y z])), [2 3])) assert (isequal (size(jacobian(f, [x; y; z])), [2 3])) assert (isequal (size(jacobian(f.', {x y z})), [2 3])) ***** test % scalar f f = x*y; assert (isequal (size(jacobian(f, {x y})), [1 2])) g = gradient(f, {x y}); assert (isequal (jacobian(f, {x y}), g.')) ***** test % vect f wrt 1 var f = [x x^2]; assert (isequal (size(jacobian(f, x)), [2 1])) f = f.'; % same shape output assert (isequal (size(jacobian(f, x)), [2 1])) 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@sym/sinc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sinc.m ***** error sinc (sym(1), 2) ***** assert (isequaln (sinc (sym(nan)), sym(nan))) ***** assert (isequal (sinc (sym(0)), sym(1))) ***** assert (isequal (sinc (sym(1)), sym(0))) ***** assert (isequal (sinc (-sym(1)), sym(0))) ***** assert (double (sinc (sym(pi))), sinc (pi), -10*eps) ***** test A = [-sym(1)/2 sym(1)/2 pi; -sym(7)/2 sym(71)/2 sym(101)/3]; D = double (A); assert (sinc (D), double (sinc (A)), -200*eps) ***** test A = [sym(51)/2 sym(1001)/3 sym(10001)/3 sym(100001)/3]; D = double (A); assert (sinc (D), double (sinc (A)), 1e-10) ***** test % round trip syms x A = sinc (1); f = sinc (x); h = function_handle (f); B = h (1); assert (A, B, -eps) ***** test % round trip syms x f = sinc (x); h = function_handle (f); A = sinc (1.5); B = h (1.5); assert (A, B, -eps) ***** test syms x h = function_handle (sinc (x)); A = double (sinc (sym (12)/10)); B = h (1.2); C = sinc (1.2); assert (A, B, -eps) assert (A, C, -eps) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/linspace.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/linspace.m ***** test a = linspace(sym(3), 5, 5); b = [sym(6) 7 8 9 10]/2; assert (isequal (a, b)) ***** test % non-integers A = linspace(0, sym(pi), 10); assert (length (A) == 10); assert (isequal (A(6), 5*sym(pi)/9)); ***** test % default argument for N A = linspace(1, 100); assert (length (A) == 100); ***** test % special case for just N = 1 A = linspace(sym(2), 3, 1); assert (isequal (A, 3)) A = linspace(sym(2), 3, 0); assert (isequal (A, 3)) A = linspace(sym(2), 3, sym(3)/2); assert (isequal (A, 3)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/asech.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/asech.m ***** error asech (sym(1), 2) ***** assert (isequaln (asech (sym(nan)), sym(nan))) ***** shared x, d d = 1/2; x = sym('1/2'); ***** test f1 = asech(x); f2 = asech(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = asech(A); f2 = asech(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = asech (d); f = asech (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/acos.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acos.m ***** error acos (sym(1), 2) ***** assert (isequaln (acos (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = acos(x); f2 = acos(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = acos(A); f2 = acos(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = acos (d); f = acos (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/logical.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/logical.m ***** test % basics, many others in isAlways.m assert (logical(true)) assert (~(logical(false))) ***** test % numbers to logic? assert (logical(sym(1))) assert (logical(sym(-1))) assert (~logical(sym(0))) ***** test % eqns, "structurally equivalent" syms x e = logical(x == x); assert ( islogical (e)) assert (e) e = logical(x == 1); assert ( islogical (e)) assert (~e) ***** test % eqn could have solutions but are false in general syms x e = logical(x^2 == x); assert ( islogical (e)) assert (~e) e = logical(2*x == x); assert ( islogical (e)) assert (~e) ***** test % FIXME: (not sure yet) T/F matrices should stay sym until logical() a = sym(1); e = a == a; assert (isa (e, 'sym')) assert (islogical (logical (e))) e = [a == a a == 0 a == a]; assert (isa (e, 'sym')) assert (islogical (logical (e))) ***** test % sym vectors of T/F to logical a = sym(1); e = [a == a a == 0 a == a]; w = logical(e); assert (islogical (w)) assert (isequal (w, [true false true])) e = e'; w = logical(e); assert (islogical (w)) assert (isequal (w, [true; false; true])) /usr/lib/python3/dist-packages/sympy/matrices/common.py:1989: SymPyDeprecationWarning: non-Expr objects in a Matrix is deprecated. Matrix represents a mathematical matrix. To represent a container of non-numeric entities, Use a list of lists, TableForm, NumPy array, or some other data structure instead. See https://docs.sympy.org/latest/explanation/active-deprecations.html#deprecated-non-expr-in-matrix for details. This has been deprecated since SymPy version 1.9. It will be removed in a future version of SymPy. return self._eval_applyfunc(f) ***** test % sym matrix of T/F to logical a = sym([1 2 3; 4 5 6]); b = sym([1 2 0; 4 0 6]); e = a == b; w = logical(e); assert (islogical (w)) assert (isequal (w, [true true false; true false true])) ***** error syms x logical(x); ***** error logical(sym(nan)) ***** test % but oo and zoo are non-zero so we call those true % (SMT errors on these) FIXME syms oo zoo assert (logical (oo)) % assert (logical (zoo)) ***** test % older Octave (< 4.2) didn't automatically do "if (logical(obj))" e = sym(true); if (e) assert(true); else assert(false); end ***** test % more of above e2 = sym(1) == sym(1); if (e2) assert(true); else assert(false); end e3 = sym([1 2]) == sym([1 1]); if (e3(1)) assert(true); else assert(false); end 12 tests, 12 passed, 0 known failure, 0 skipped [inst/@sym/isfinite.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isfinite.m ***** assert (isfinite(sym(1))) ***** assert (isfinite(sym(-10))) ***** assert (~isfinite(sym('oo'))) ***** assert (~isfinite(sym('-oo'))) ***** assert (~isfinite(sym(1)/0)) ***** assert (~isfinite(sym(nan))) ***** assert (isequal (isfinite (sym ([1 inf])), [true false])) ***** test % finite-by-assumption syms x finite assert (isfinite (x)) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/isinf.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isinf.m ***** shared x,zoo,oo,snan oo = sym(inf); zoo = sym('zoo'); x = sym('x'); snan = sym(nan); ***** test % various ops that give inf and nan assert (isinf(oo)) assert (isinf(zoo)) assert (isinf(oo+oo)) assert (~isinf(oo+zoo)) assert (~isinf(0*oo)) assert (~isinf(0*zoo)) assert (~isinf(snan)) assert (~isinf(oo-oo)) assert (~isinf(oo-zoo)) ***** test % arrays assert (isequal( isinf([oo zoo]), [1 1] )) assert (isequal( isinf([oo 1]), [1 0] )) assert (isequal( isinf([10 zoo]), [0 1] )) assert (isequal( isinf([x oo x]), [0 1 0] )) ***** test % Must not contain string 'symbol'; these all should make an % actual infinity. Actually a ctor test, not isinf. % IIRC, SMT in Matlab 2013b fails. oo = sym(inf); assert (isempty (strfind (sympy (oo), 'Symbol'))) oo = sym(-inf); assert (isempty (strfind (sympy (oo), 'Symbol'))) oo = sym('inf'); assert (isempty (strfind (sympy (oo), 'Symbol'))) oo = sym('-inf'); assert (isempty (strfind (sympy (oo), 'Symbol'))) oo = sym('Inf'); assert (isempty (strfind (sympy (oo), 'Symbol'))) ***** test % ops with infinity shouldn't collapse syms x oo zoo y = x + oo; assert (~isempty (strfind (lower (sympy (y)), 'add') )) y = x - oo; assert (~isempty (strfind (lower (sympy (y)), 'add') )) y = x - zoo; assert (~isempty (strfind (lower (sympy (y)), 'add') )) y = x*oo; assert (~isempty (strfind (lower (sympy (y)), 'mul') )) ***** test % ops with infinity are not necessarily infinite syms x oo zoo y = x + oo; assert(~isinf(y)) % SMT 2014a says "true", I disagree y = x - zoo; assert(~isinf(y)) y = x*oo; assert(~isinf(y)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/interval.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/interval.m ***** test a = interval(sym(1), 2); assert (isa (a, 'sym')) ***** test % some set subtraction a = interval(sym(0), 4); b = interval(sym(0), 1); c = interval(sym(1), 4, true); q = a - b; assert (isequal( q, c)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/logspace.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/logspace.m ***** test % default argument for N A = logspace(0, 2); assert (length (A) == 50); ***** test % special case: pi as end pt A = logspace(-sym(3), sym(pi), 3); assert (isequal (A(end), sym(pi))) ***** test A = logspace(-sym(4), 0, 3); B = [sym(1)/10000 sym(1)/100 sym(1)]; assert (isequal (A, B)) ***** test % vpa support, might need recent sympy for sympy issue #10063 n = 32; A = logspace(-vpa(1,n), 0, 3); B = [10^(-vpa(1,n)) 10^(-vpa(sym(1)/2,n)) vpa(1,n)]; assert (all (A == B)) assert (max(abs(double(A) - logspace(-1, 0, 3))) < 1e-15) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/columns.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/columns.m ***** test a = sym([1 2 3]); assert (columns(a) == 3) ***** test a = sym([1; 2]); assert (columns(a) == 1) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/toeplitz.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/toeplitz.m ***** test % rect R = [10 20 40]; C = [10 30]; A = sym(toeplitz(R,C)); B = toeplitz(sym(R),sym(C)); assert (isequal (A, B)) R = [10 20]; C = [10 30 50]; A = sym(toeplitz(R,C)); B = toeplitz(sym(R),sym(C)); assert (isequal (A, B)) ***** test % symbols syms x y R = [10 20 40]; C = [10 30]; Rs = [10 x 40]; Cs = [10 y]; A = toeplitz(R,C); B = toeplitz(Rs,Cs); assert (isequal (A, subs(B,[x,y],[20 30]))) ***** test % hermitian syms a b c A = [a b c; conj(b) a b; conj(c) conj(b) a]; B = toeplitz([a,b,c]); assert (isequal( A, B)) ***** warning % mismatch syms x B = toeplitz([10 x], [1 3 x]); ***** warning % scalar B = toeplitz(sym(2), 3); assert (isequal (B, sym(2))) ***** test % mismatch syms x y fprintf('\n one warning expected\n') % how to quiet this one? A = toeplitz([10 2], [1 3 5]); s = warning ('off', 'OctSymPy:toeplitz:diagconflict'); B = toeplitz([10 x], [1 3 y]); warning(s) assert (isequal (A, subs(B, [x,y], [2 5]))) one warning expected warning: toeplitz: column wins diagonal conflict warning: called from toeplitz at line 84 column 7 __test__ at line 6 column 4 test at line 682 column 11 /tmp/tmp.uzJJ9wxGHE at line 630 column 31 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/isscalar.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isscalar.m ***** assert(isscalar(sym('x'))) ***** test a = sym([1 2 3]); assert(~isscalar(a)) ***** assert(~isscalar(sym([]))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/piecewise.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/piecewise.m ***** test % basic syms x real f = piecewise (abs (x) < 1, 1); assert (isnan (subs (f, -1))); assert (isequal (subs (f, 0), 1)); assert (isnan (subs (f, 1))); ***** test % heaviside syms x real f = rewrite (heaviside (x, 1 / sym (2)), 'Piecewise'); g = piecewise (x < 0, 0, x == 0, 1 / sym (2), x > 0, 1); assert (logical (simplify (f == g))); 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/det.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/det.m ***** assert (isequal (det(sym([])), 1)) ***** test syms x y real assert (isequal (det([x 5; 7 y]), x*y-35)) ***** test syms x assert (isequal (det(x), x)) assert (isequal (det(sym(-6)), sym(-6))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/factorial.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/factorial.m ***** error factorial (sym(1), 2) ***** xtest assert (isequaln (factorial (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (factorial (sym (nan)), sym (nan))) failed ***** shared x, d d = 1; x = sym('1'); ***** test f1 = factorial(x); f2 = factorial(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = factorial(A); f2 = factorial(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = factorial (d); f = factorial (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 4 passed, 1 known failure, 0 skipped [inst/@sym/asind.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/asind.m ***** error asind (sym(1), 2) ***** assert (isequaln (asind (sym(nan)), sym(nan))) ***** test f1 = asind (sym(1)/2); f2 = asind (1/2); assert (double (f1), f2, -eps) ***** test D = [1 2; 3 4]/4; A = sym([1 2; 3 4])/4; f1 = asind (A); f2 = asind (D); assert (double (f1), f2, -eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/fortran.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fortran.m ***** shared x,y,z syms x y z ***** test % basic test f = x*sin(y) + abs(z); source = fortran(f); expected = ' x*sin(y) + abs(z)'; s1 = strrep (expected, 'abs', 'Abs'); assert (strcmp (source, expected) || strcmp (source, s1)) ***** test % output test f = x*sin(y) + abs(z); [F,H] = fortran(f, 'file', '', 'show_header', false); expected_h_code = sprintf('\ninterface\nREAL*8 function myfun(x, y, z)\nimplicit none\nREAL*8, intent(in) :: x\nREAL*8, intent(in) :: y\nREAL*8, intent(in) :: z\nend function\nend interface\n\n'); expected_f_code = sprintf('\nREAL*8 function myfun(x, y, z)\nimplicit none\nREAL*8, intent(in) :: x\nREAL*8, intent(in) :: y\nREAL*8, intent(in) :: z\n\nmyfun = x*sin(y) + abs(z)\n\nend function\n'); assert(strcmp(F.name, 'file.f90')) assert(strcmp(H.name, 'file.h')) %disp(expected_f_code); disp(F.code) s1 = strrep (expected_f_code, 'abs', 'Abs'); s2 = strrep (expected_f_code, sprintf ('\n'), sprintf ('\r\n')); s3 = strrep (s2, 'abs', 'Abs'); s4 = strrep (expected_h_code, sprintf ('\n'), sprintf ('\r\n')); assert (strcmp (F.code, expected_f_code) || strcmp (F.code, s1) || strcmp (F.code, s2) || strcmp (F.code, s3)) assert (strcmp (H.code, expected_h_code) || strcmp (H.code, s4)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/length.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/length.m ***** test a = sym([1 2 3]); assert(length(a) == 3); ***** test % 2D array a = sym([1 2 3; 4 5 6]); assert(length(a) == 3); ***** test % empty a = sym([]); assert(length(a) == 0); 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/fresnelc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fresnelc.m ***** error fresnelc (sym(1), 2) ***** test a = fresnelc(sym(0)); assert (isequal (a, sym(0))) ***** test b = fresnelc(sym('oo')); assert (isequal (b, sym(1)/2)) ***** test % values in a matrix syms x a = fresnelc([sym(0) sym('oo') x 1]); b = [sym(0) sym(1)/2 fresnelc(x) fresnelc(sym(1))]; assert (isequal (a, b)) ***** test % round trip syms x f = fresnelc (x); h = function_handle (f); A = h (1.1); B = fresnelc (1.1); assert (A, B) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/size.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/size.m ***** test a = sym([1 2 3]); [n,m] = size(a); assert (n == 1 && m == 3) ***** test a = sym([1 2 3]); n = size(a); assert (isequal (n, [1 3])) ***** test %% size, numel, length a = sym([1 2 3; 4 5 6]); assert (isa (size(a), 'double')) assert (isa (numel(a), 'double')) assert (isa (length(a), 'double')) assert (isequal (size(a), [2 3])) assert (length(a) == 3) assert (numel(a) == 6) a = sym([1; 2; 3]); assert (isequal (size(a), [3 1])) assert (length(a) == 3) assert (numel(a) == 3) ***** test %% size by dim a = sym([1 2 3; 4 5 6]); n = size(a, 1); assert (n == 2) m = size(a, 2); assert (m == 3) a = sym([1 2 3]'); n = size(a, 1); assert (n == 3) m = size(a, 2); assert (m == 1) ***** xtest % symbolic-size matrices syms n m integer A = sym('A', [n m]); d = size(A); assert (~isa(d, 'sym')) assert (isnumeric(d)) assert (isequaln (d, [NaN NaN])) !!!!! known failure assert (isequaln (d, [NaN, NaN])) failed ***** xtest % half-symbolic-size matrices % FIXME: will fail until size stop lying by saying 1x1 syms n integer A = sym('A', [n 3]); assert (isequaln (size(A), [NaN 3])) A = sym('A', [4 n]); assert (isequaln (size(A), [4 NaN])) !!!!! known failure assert (isequaln (size (A), [NaN, 3])) failed ***** xtest % half-symbolic-size empty matrices % FIXME: will fail until size stop lying by saying 1x1 syms n integer A = sym('A', [n 0]); assert (isequaln (size(A), [NaN 0])) !!!!! known failure assert (isequaln (size (A), [NaN, 0])) failed 7 tests, 4 passed, 3 known failures, 0 skipped [inst/@sym/isna.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isna.m ***** test % no sym should be NA syms x oo assert (~isna(sym(1))) assert (~isna(x)) assert (~isna(oo)) assert (~isna(sym(nan))) assert (isequal (isna (sym ([1 nan])), [false false])) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/iscolumn.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/iscolumn.m ***** assert (iscolumn (sym ([1]))) ***** assert (iscolumn (sym ([1 2 3]'))) ***** assert (~iscolumn (sym ([]))) ***** assert (~iscolumn (sym ([1 2 3]))) ***** assert (~iscolumn (sym ([1 2; 3 4]))) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/union.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/union.m ***** test A = sym([1 2 3]); B = sym([1 2 4]); C = union(A, B); D = sym([1 2 3 4]); assert (isequal (C, D)) ***** test % one nonsym A = sym([1 2 3]); B = [1 2 4]; C = union(A, B); D = sym([1 2 3 4]); assert (isequal (C, D)) ***** test % empty A = sym([1 2 3]); C = union(A, A); assert (isequal(C, A)) ***** test % empty input A = sym([1 2]); C = union(A, []); assert (isequal (C, sym([1 2]))) ***** test % scalar syms x assert (isequal (union([x 1], x), [1 x])) assert (isequal (union(x, x), x)) ***** test A = interval(sym(1), 3); B = interval(sym(2), 5); C = union(A, B); assert( isequal( C, interval(sym(1), 5))) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/fplot.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fplot.m ***** test % simple syms x f = cos (x); fplot (f); warning: using the gnuplot graphics toolkit is discouraged The gnuplot graphics toolkit is not actively maintained and has a number of limitations that are unlikely to be fixed. Communication with gnuplot uses a one-directional pipe and limited information is passed back to the Octave interpreter so most changes made interactively in the plot window will not be reflected in the graphics properties managed by Octave. For example, if the plot window is closed with a mouse click, Octave will not be notified and will not update its internal list of open figure windows. The qt toolkit is recommended instead. ***** test % constant function fplot (sym (10)); line 0: warning: iconv failed to convert degree sign |--------------------------------------------------------------------| 1 +|+ + + **** + + +-+| | + + ** + ** + +-----------------+ | #|############################*########*##########+***?***x) cos (x)+ | #|###########################*##########*########################### | #|##########################*############*########################## | 0.5 +|+########################*##############*########################+-+| #|########################*################*######################## | *|########################*################*######################## *| #|#######################*##################*#######################* | #|######################**##################**######################* | 0 +|*####################*######################*####################*-+| #|*####################*######################*####################* | #|#**#################*########################*#################**# | #|##*#################*########################*#################*## | #|###*###############*##########################*###############*### | -0.5 +|+###*#############*############################*#############*###+-+| #|####**###########*##############################*###########**#### | #|#####*##########*################################*##########*##### | #|######**#######*##################################*#######**###### | #|--------------------------------------------------------------------| -1 +-+####+###*****#####+#############+############+#####*****###+####+-+ -4 -2 0 2 4 warning: fplot: FCN is not a vectorized function which reduces performance warning: called from fplot at line 172 column 7 fplot at line 107 column 5 __test__ at line 4 column 2 test at line 682 column 11 /tmp/tmp.uzJJ9wxGHE at line 734 column 31 ***** test syms x f = cos (x); [xx, yy] = fplot (f); assert (xx(1), -5) assert (xx(end), 5) assert (min (yy), -1, 0.1) assert (max (yy), 1, 0.1) line 0: warning: iconv failed to convert degree sign |--------------------------------------------------------------------| 11 +|+ + + + + + +-+| | + + + + +------------+ | #|#####################################################+***?***x) 10+ | 10.5 +|+################################################################+-+| #|################################################################## | #|################################################################## | #|################################################################## | 10 *|********************************************************************| #|################################################################## | #|################################################################## | 9.5 +|+################################################################+-+| #|################################################################## | #|################################################################## | 9 +|+################################################################+-+| #|################################################################## | #|################################################################## | #|################################################################## | 8.5 +|+################################################################+-+| #|################################################################## | #|--------------------------------------------------------------------| 8 +-+####+#############+#############+############+#############+####+-+ -4 -2 0 2 4 ***** test syms x f = cos (x); dom = [1 3]; [xx, yy] = fplot (f, dom); assert (xx(1), dom(1)) assert (xx(end), dom(2)) ***** test syms x f = cos (x); dom = [1 3]; fplot (f, dom); assert (get (gca, 'xlim'), dom) ***** test syms x f = exp (x); dom = [1 2 3 4]; fplot (f, dom); assert (get (gca, 'xlim'), dom(1:2)) assert (get (gca, 'ylim'), dom(3:4)) line 0: warning: iconv failed to convert degree sign |--------------------------------------------------------------------| 1 +|+ + + + +-+| +| + + +-----------------++| #|################################################+***?***x) cos (x)+ | #|################################################################## | #|################################################################## | 0.5 *|**###############################################################+-+| #|##**############################################################## | #|####*****######################################################### | #|#########***###################################################### | #|############*****################################################# | 0 +|+################**##############################################+-+| #|###################*****########################################## | #|########################***####################################### | #|###########################**##################################### | #|#############################*****################################ | -0.5 +|+#################################*****##########################+-+| #|#######################################**######################### | #|#########################################*****#################### | #|##############################################********############ | +|--------------------------------------------------------------------| -1 +-+##############+#################+################+##########******* 1 1.5 2 2.5 3 ***** test % bounds as syms syms x f = cos (x); dom = [1 2 3 4]; fplot (f, sym (dom)); assert (get (gca, 'xlim'), dom(1:2)) assert (get (gca, 'ylim'), dom(3:4)) line 0: warning: iconv failed to convert degree sign |---------------------------------------------------------------------| +| + *+ + + | +| + * + + +-----------------+ | #|#######################*#########################+***?***x) exp (x)+ | #|######################*############################################ | 3.8 +|+#####################*###########################################+-+| #|#####################*############################################# | #|####################*############################################## | #|###################*############################################### | 3.6 +|+#################*###############################################+-+| #|#################*################################################# | #|################*################################################## | #|###############*################################################### | 3.4 +|+############**###################################################+-+| #|############*###################################################### | #|###########*####################################################### | #|##########*######################################################## | 3.2 +|+########*########################################################+-+| #|########*########################################################## | #|######**########################################################### | +|---------------------------------------------------------------------| 3 +-+###*#######+#############+#############+#############+###########+-+ 1 1.2 1.4 1.6 1.8 ***** test % bounds as syms, regular handle for function % fails on 6.1.0, maybe earlier too? if (compare_versions (OCTAVE_VERSION (), '6.1.0', '!=')) dom = [1 2]; fplot (@cos, sym (dom)); assert (get (gca, 'xlim'), dom(1:2)) end line 0: warning: iconv failed to convert degree sign |---------------------------------------------------------------------| +| + + + + | +| + + + +-----------------+ | #|#################################################+***?***x) cos (x)+ | #|################################################################### | 3.8 +|+#################################################################+-+| #|################################################################### | #|################################################################### | #|################################################################### | 3.6 +|+#################################################################+-+| #|################################################################### | #|################################################################### | #|################################################################### | 3.4 +|+#################################################################+-+| #|################################################################### | #|################################################################### | #|################################################################### | 3.2 +|+#################################################################+-+| #|################################################################### | #|################################################################### | +|---------------------------------------------------------------------| 3 +-+###########+#############+#############+#############+###########+-+ 1 1.2 1.4 1.6 1.8 ***** error syms x y fplot (x*y) line 0: warning: iconv failed to convert degree sign |--------------------------------------------------------------------| 0.8 +|+ + + + + +-+| +| + + + + +----------+ | 0.6 +|+######################################################+***?***cos++| *|*################################################################# | #|#*****############################################################ | 0.4 +|+#####*****######################################################+-+| #|###########**********############################################# | 0.2 +|+####################*****#######################################+-+| #|##########################*****################################### | #|###############################****############################### | 0 +|+##################################*****#########################+-+| #|########################################*****##################### | -0.2 +|+############################################*****###############+-+| #|##################################################*****########### | #|#######################################################**********# | -0.4 +|+################################################################***| #|################################################################## | -0.6 +|+################################################################+-+| #|################################################################## | +|--------------------------------------------------------------------| -0.8 +-+###########+#############+############+#############+###########+-+ 1 1.2 1.4 1.6 1.8 ***** test % N parameter does something syms x [xx, yy] = fplot (sin (x), [0 2], 5); N = length (xx); assert (N >= 5) [xx, yy] = fplot (sin (x), [0 2], 1000); N = length (xx); assert (N == 1000) ***** test % tolerance parameter does something syms x [xx, yy] = fplot (sin (exp (x/2)), [0 3], 0.1); N1 = length (xx); [xx, yy] = fplot (sin (exp (x/2)), [0 3], 0.01); N2 = length (xx); assert (N2 > N1) ***** test % fmt parameter does something syms x fplot (sin (x), [0 6], 'rx--', 'linewidth', 5); l = get (gca (), 'children'); assert (get (l, 'color'), [1 0 0]) assert (get (l, 'linewidth'), 5) f = exp (x); dom = [1 2 3 4]; fplot (f, dom); assert (get (gca, 'xlim'), dom(1:2)) assert (get (gca, 'ylim'), dom(3:4)) line 0: warning: iconv failed to convert degree sign |--------------------------------------------------------------------| 1 +|+ + BBBB*BB + + + + +-+| +| B*B BB + + +-----------------++| #|########BB############*BB#######################+***B***x) sin (x)+ | #|######*B#################B######################################## | #|#####B####################B####################################### | 0.5 +|+###B######################*B####################################+-+| #|###B#########################B#################################### | #|#*B###########################B################################### | #|B##############################B################################## | #|################################*B################################ | 0 B|+#################################B##############################+-+| #|###################################B############################## | #|####################################B############################# | #|#####################################B############################ B| #|######################################*B##########################B | -0.5 +|+#######################################B#######################*B-+| #|#########################################B#####################B## | #|##########################################B*B################BB### | #|#############################################B#############*B##### | +|--------------------------------------------------------------------| -1 +-+#########+##########+###########+##########+#####BBBB*B+########+-+ 0 1 2 3 4 5 6 ***** test close all 13 tests, 13 passed, 0 known failure, 0 skipped [inst/@sym/triu.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/triu.m ***** test % scalar syms x assert (isequal (triu(x), x)) assert (isequal (triu(x,0), x)) assert (isequal (triu(x,1), 0)) assert (isequal (triu(x,-1), 0)) ***** test % with symbols syms x A = [x 2*x; 3*x 4*x]; assert (isequal (triu(A), [x 2*x; 0 4*x])) ***** test % diagonal shifts B = round(10*rand(3,4)); A = sym(B); assert (isequal (triu(A), triu(B))) assert (isequal (triu(A,0), triu(B,0))) assert (isequal (triu(A,1), triu(B,1))) assert (isequal (triu(A,-1), triu(B,-1))) ***** test % double array pass through B = round(10*rand(3,4)); assert (isequal (triu(B,sym(1)), triu(B,1))) assert (isa (triu(B,sym(1)), 'double')) ***** test % immutable test A = sym('ImmutableDenseMatrix([[Integer(1), Integer(2)], [Integer(3), Integer(4)]])'); assert (isequal (triu (A), sym ([1 2; 0 4]))) assert (isequal (tril (A), sym ([1 0; 3 4]))) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/invhilb.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/invhilb.m ***** test A = invhilb(sym(3)); B = sym([9 -36 30;-36 192 -180;30 -180 180]); assert( isequal( A, B)) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/symsum.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/symsum.m ***** error symsum (sym(1), 2, 3, 4, 5) ***** test % finite sums syms n assert (isequal (symsum(n,n,1,10), 55)) assert(isa(symsum(n,n,1,10), 'sym')) assert (isequal (symsum(n,n,sym(1),sym(10)), 55)) assert (isequal (symsum(n,n,sym(1),sym(10)), 55)) assert (isequal (symsum(1/n,n,1,10), sym(7381)/2520)) ***** test % negative limits syms n assert (isequal (symsum(n,n,-3,3), sym(0))) assert (isequal (symsum(n,n,-3,0), sym(-6))) assert (isequal (symsum(n,n,-3,-1), sym(-6))) ***** test % one input syms n f = symsum (n); g = n^2/2 - n/2; assert (isequal (f, g)) f = symsum (2*n); g = n^2 - n; assert (isequal (f, g)) ***** test % constant input f = symsum (sym(2)); syms x g = 2*x; assert (isequal (f, g)) ***** test % two inputs syms n f = symsum (2*n, n); g = n^2 - n; assert (isequal (f, g)) ***** test % two inputs, second is range syms n f = symsum (n, [1 6]); g = 21; assert (isequal (f, g)) f = symsum (n, [sym(1) 6]); g = 21; assert (isequal (f, g)) f = symsum (2*n, [1 6]); g = 2*21; assert (isequal (f, g)) ***** test % three inputs, last is range syms n f = symsum (2*n, n, [1 4]); g = sym(20); assert (isequal (f, g)) f = symsum (2*n, n, [sym(1) 4]); g = sym(20); assert (isequal (f, g)) f = symsum (2, n, [sym(1) 4]); g = sym(8); assert (isequal (f, g)) ***** test % three inputs, no range syms n f = symsum (2*n, 1, 4); g = sym(20); assert (isequal (f, g)) f = symsum (5, sym(1), 3); g = sym(15); assert (isequal (f, g)) ***** test % ok to use double's for arguments in infinite series syms n oo assert(isequal(symsum(1/n^2,n,1,oo), sym(pi)^2/6)) assert(isequal(symsum(1/n^2,n,1,inf), sym(pi)^2/6)) ***** test % should be oo because 1 is real but seems to be % zoo/oo depending on sympy version syms n oo zoo = sym('zoo'); assert (isequal (symsum(1/n,n,1,oo), oo) || ... isequal (symsum(1/n,n,1,oo), zoo)) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/ifourier.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ifourier.m ***** error ifourier (sym(1), 2, 3, 4) ***** test % matlab SMT compat syms t r u x w Pi=sym('pi'); assert(logical( ifourier(exp(-abs(w))) == 1/(Pi*(x^2 + 1)) )) assert(logical( ifourier(exp(-abs(x))) == 1/(Pi*(t^2 + 1)) )) assert(logical( ifourier(exp(-abs(r)),u) == 1/(Pi*(u^2 + 1)) )) assert(logical( ifourier(exp(-abs(r)),r,u) == 1/(Pi*(u^2 + 1)) )) ***** test % basic syms x w Pi=sym('pi'); assert(logical( ifourier(exp(-w^2/4)) == 1/(sqrt(Pi)*exp(x^2)) )) assert(logical( ifourier(sqrt(Pi)/exp(w^2/4)) == exp(-x^2) )) ***** test % Dirac delta tests syms x w Pi=sym('pi'); assert(logical( ifourier(dirac(w-2)) == exp(2*1i*x)/(2*Pi) )) assert (logical( ifourier(sym(2), w, x) == 2*dirac(x) )) ***** test % advanced test syms x w c d Pi=sym('pi'); f=(Pi*(dirac(x-c)+dirac(x+c))+2*Pi*1i*(-dirac(x+3*d)+dirac(x-3*d))+2/(x^2+1))/(2*Pi); assert(logical( simplify(ifourier(cos(c*w)+2*sin(3*d*w)+exp(-abs(w)))-f) == 0 )) ***** xtest % Inverse Fourier transform cannot recover non-smooth functions % SymPy cannot evaluate correctly?? syms x w assert(logical( ifourier(2/(w^2 + 1)) == exp(-abs(x)) )) assert(logical( ifourier(2/(w^2 + 1)) == heaviside(x)/exp(x) + heaviside(-x)*exp(x) )) assert(logical( ifourier(-(w*4)/(w^4 + 2*w^2 + 1) )== -x*exp(-abs(x))*1i )) assert(logical( ifourier(-(w*4)/(w^4 + 2*w^2 + 1) )== -x*(heaviside(x)/exp(x) + heaviside(-x)*exp(x))*1i )) !!!!! known failure assert (logical (ifourier (2 / (w ^ 2 + 1)) == exp (-abs (x)))) failed ***** error ifourier (sym('k', 'positive')*sym('k')) ***** test % SMT compact, prefers k over symvar syms k x y assert (isequal (ifourier(y*exp(-k^2/4)), y/sqrt(sym(pi))*exp(-x^2))) 8 tests, 7 passed, 1 known failure, 0 skipped [inst/@sym/imag.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/imag.m ***** assert (isequal (imag (sym (4) + 3i),3)) ***** test syms x y real z = x + 1i*y; assert (isequal (imag (z),y)) ***** test syms x y real Z = [4 x + 1i*y; 1i*y 4 + 3i]; assert (isequal (imag (Z),[0 y; y 3])) ***** test syms x real d = exp (x*i); assert (isequal (imag (d), sin (x))) ***** test % round trip syms x d = 3 - 5i; f = imag (x); A = imag (d); h = function_handle (f); B = h (d); assert (A, B) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/times.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/times.m ***** test % scalar syms x assert (isa (x.*2, 'sym')) assert (isequal (x.*2, x*2)) assert (isequal (2.*sym(3), sym(6))) assert (isequal (sym(2).*3, sym(6))) ***** test % matrix-matrix and matrix-scalar D = [0 1; 2 3]; A = sym(D); assert (isequal ( 2.*A , 2*D )) assert (isequal ( A.*2 , 2*D )) assert (isequal ( A.*A , D.*D )) assert (isequal ( A.*D , D.*D )) assert (isequal ( D.*A , D.*D )) ***** test syms x A = [1 x]; B = [2 3]; assert (isequal (A.*B, [2 3*x])) ***** test % immutable test A = sym([1 2]); B = sym('ImmutableDenseMatrix([[Integer(1), Integer(2)]])'); assert (isequal (A.*A, B.*B)) ***** test % MatrixSymbol test A = sym([1 2; 3 4]); B = sym('ImmutableDenseMatrix([[Integer(1), Integer(2)], [Integer(3), Integer(4)]])'); C = sym('MatrixSymbol("C", 2, 2)'); assert (~ isempty (strfind (sympy (C.*C), 'Hadamard'))) assert (~ isempty (strfind (sympy (A.*C), 'Hadamard'))) assert (~ isempty (strfind (sympy (C.*A), 'Hadamard'))) assert (~ isempty (strfind (sympy (B.*C), 'Hadamard'))) assert (~ isempty (strfind (sympy (C.*B), 'Hadamard'))) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/hypot.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/hypot.m ***** assert (isequal (hypot (sym(3), 4), sym(5))) ***** test % compare to @double (note Matlab hypot only takes 2 inputs) A = hypot (hypot ([1 2 3], [4 5 6]), [7 8 9]); B = double (hypot (sym([1 2 3]), [4 5 6], [7 8 9])); assert (A, B, -eps) ***** test % compare to @double, with complex A = hypot ([1+2i 3+4i], [1 3+1i]); B = double (hypot (sym([1+2i 3+4i]), [1 3+1i])); assert (A, B, -eps) ***** test % matrices x = sym([1 -2; 0 3]); y = sym([0 0; 8 4]); A = hypot (x, y); B = sym([1 2; 8 5]); assert (isequal (A, B)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/besseli.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/besseli.m ***** test X = [1 2 3; 4 5 6]; ns = [sym(0) 1 -2; sym(1)/2 -sym(3)/2 pi]; n = double(ns); A = double(besseli(ns, X)); B = besseli(n, X); assert (all (all (abs (A - B) < 100*eps*abs(A)))) ***** test % roundtrip syms x A = besseli(2, 10); q = besseli(2, x); h = function_handle(q); B = h(10); assert (abs (A - B) <= eps*abs(A)) ***** error besseli(sym('x')) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/prevprime.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/prevprime.m ***** assert (isequal (prevprime(sym(3)), 2)); ***** assert (isequal (prevprime(sym(20)), 19)); ***** assert (isequal (prevprime(sym([3 5 10])), [2 3 7])); ***** error prevprime(sym(2)) ***** error prevprime(sym(-2)) ***** test % result is a sym p = prevprime(sym(3)); assert (isa (p, 'sym')) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/sinint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sinint.m ***** error sinint (sym(1), 2) ***** xtest assert (isequaln (sinint (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (sinint (sym (nan)), sym (nan))) failed ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sinint(x); f2 = 0.9460830703671830149414; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sinint(A); f2 = 0.9460830703671830149414; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sinint (d); f = sinint (y); h = function_handle (f); B = h (d); assert (A, B, -eps) ***** test % rewrite syms x y1 = sinint (x); y2 = rewrite (y1, 'Integral'); d1 = diff (y1, x); d2 = diff (y2, x); v1 = double (subs (d1, x, 2)); v2 = double (subs (d2, x, 2)); assert (v1, v2, -eps) 6 tests, 5 passed, 1 known failure, 0 skipped [inst/@sym/has.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/has.m ***** shared A, x, y syms x y A = [sym(pi) 2*sym(pi); x*y x+y]; ***** assert (isequal (has(A, x), [false false; true true])); ***** assert (isequal (has(A, x+y), [false false; false true])); ***** assert (isequal (has(A, 2), [false true; false false])); ***** assert (isequal (has(A, sym(pi)), [true true; false false])); 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/laplace.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/laplace.m ***** test % basic syms t s u w assert(logical( laplace(cos(3*t)) == s/(s^2+9) )) assert(logical( laplace(t^3) == 6/s^4 )) ***** test % matlab SMT compat syms t s u w z assert(logical( laplace(exp(2*t)) == 1/(s-2) )) assert(logical( laplace(exp(2*s)) == 1/(z-2) )) assert(logical( laplace(exp(2*u),w) == 1/(w-2) )) assert(logical( laplace(exp(2*u),u,w) == 1/(w-2) )) ***** test syms x s t z % matlab SMT prefers t over x assert (isequal (laplace (x*exp (t), z), x/(z - 1))) % as usual, you can just specify: assert (isequal (laplace(x*exp(t), t, z), x/(z - 1))) % SMT result assert (isequal (laplace(x*exp(t), x, z), exp(t)/z^2)) ***** test syms x a s % if no t, use symvar: take x before a assert (isequal (laplace (a*exp (x)), a/(s - 1))) ***** error laplace (sym('t')*sym('t', 'real')) ***** test % constant, issue #250 syms s f = laplace(2, s); assert (isequal (f, 2/s)) ***** test % Dirac delta and Heaviside tests syms t s assert (isequal (laplace(dirac(t-3)), exp(-3*s))) assert (isequal (laplace((t-3)*heaviside(t-3)), exp(-3*s)/s^2)) ***** xtest % Differential operator to algebraic % SymPy cannot evaluate? (Issue #170) syms s f(t) assert(logical( laplace(diff(f(t),t),t,s) == s*laplace(f(t),t,s)-f(0) )) ***** test % https://github.com/gnu-octave/symbolic/issues/1295 % fails on SymPy 1.10.* and 1.11.* if (pycall_sympy__ ('return Version(spver) >= Version("1.12")')) syms t s L = simplify (laplace (3*t*sin (4*t))); assert (isAlways (L == 24*s / (s^2 + 16)^2)) end 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/hypergeom.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/hypergeom.m ***** assert (isequal (double (hypergeom ([1, 2], [2, 3], sym(0))), 1)) ***** test % matrix input syms z a = sym([1 2]); b = sym([3 4]); A = hypergeom (a, b, [0 sym(1); 2 z]); B = [hypergeom(a,b,0) hypergeom(a,b,1); hypergeom(a,b,2) hypergeom(a,b,z)]; assert (isequal (A, B)) ***** test % scalars for a and/or b syms z assert (isequal (hypergeom(1, 2, z), hypergeom({sym(1)}, {sym(2)}, z))) assert (isequal (hypergeom([1 2], 3, z), hypergeom([1 2], {sym(3)}, z))) assert (isequal (hypergeom(1, [2 3], z), hypergeom({sym(1)}, [2 3], z))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/laplacian.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/laplacian.m ***** shared x,y,z syms x y z ***** test % 1D f = x^2; g = diff(f,x,x); assert (isequal (laplacian(f), g)) assert (isequal (laplacian(f,{x}), g)) assert (isequal (laplacian(f,[x]), g)) assert (isequal (laplacian(f,x), g)) ***** test % const f = sym(1); g = sym(0); assert (isequal (laplacian(f), g)) assert (isequal (laplacian(f,x), g)) f = sym('c'); assert (isequal (laplacian(f,x), g)) ***** test % double const f = 1; g = sym(0); assert (isequal (laplacian(f,x), g)) ***** test % 1D fcn in 2d/3d f = sin(2*y); g = -4*f; assert (isequal (laplacian(f), g)) assert (isequal (laplacian(f, {x,y}), g)) assert (isequal (laplacian(f, {x,y,z}), g)) ***** test % 2d fcn in 2d/3d f = sin(exp(x)*y); g = diff(f,x,x) + diff(f,y,y); assert (isequal (laplacian(f), g)) assert (isequal (laplacian(f, {x,y}), g)) ***** test % 2d fcn in 2d/3d f = sin(exp(x)*y+sinh(z)); gr2 = gradient(f, {x,y}); divgr2 = divergence(gr2, {x,y}); l2 = laplacian(f,{x,y}); gr3 = gradient(f, {x,y,z}); divgr3 = divergence(gr3, {x,y,z}); l3 = laplacian(f,{x,y,z}); assert (isAlways (l2 == divgr2)) assert (isAlways (l3 == divgr3)) Waiting... ***** error laplacian(sym('x'), sym('x'), 42) ***** error laplacian([sym('x'), sym('x')]) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/besselk.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/besselk.m ***** test X = [1 2 3; 4 5 6]; ns = [sym(0) 1 -2; sym(1)/2 -sym(3)/2 pi]; n = double(ns); A = double(besselk(ns, X)); B = besselk(n, X); assert (all (all (abs (A - B) < 2*eps*abs(A)))) ***** test % roundtrip syms x A = besselk(2, 10); q = besselk(2, x); h = function_handle(q); B = h(10); assert (abs (A - B) <= eps*abs(A)) ***** error besselk(sym('x')) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/igamma.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/igamma.m ***** test % mostly tested in @sym/gammainc syms x assert (isequal (igamma (2, x), gammainc(x, 2, 'upper'))) ***** test % unregularized B = double (igamma (sym(3), 1)); A = gammainc (1, 3, 'upper')*gamma (3); assert (A, B, -2*eps) ***** test % something like a round trip: no igamma() syms x a f = igamma (a, x); h = function_handle (f, 'vars', [a x]); A = h (1.1, 2.2); B = double (igamma (sym(11)/10, sym(22)/10)); C = gammainc (2.2, 1.1, 'upper')*gamma(1.1); assert (A, B, -10*eps) assert (A, C, -10*eps) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/fourier.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fourier.m ***** test % matlab SMT compatibility for arguments syms r x u w v Pi=sym('pi'); assert(logical( fourier(exp(-x^2)) == sqrt(Pi)/exp(w^2/4) )) assert(logical( fourier(exp(-w^2)) == sqrt(Pi)/exp(v^2/4) )) assert(logical( fourier(exp(-r^2),u) == sqrt(Pi)/exp(u^2/4) )) assert(logical( fourier(exp(-r^2),r,u) == sqrt(Pi)/exp(u^2/4) )) ***** test % basic tests syms x w assert(logical( fourier(exp(-abs(x))) == 2/(w^2 + 1) )) assert(logical( fourier(x*exp(-abs(x))) == -(w*4*1i)/(w^4 + 2*w^2 + 1) )) ***** test % Dirac delta tests syms x w Pi=sym('pi'); assert(logical( fourier(dirac(x-2)) == exp(-2*1i*w) )) assert (logical( fourier(sym(2), x, w) == 4*Pi*dirac(w) )) ***** test % advanced test syms x w c d Pi=sym('pi'); F=Pi*(dirac(w-c)+dirac(w+c))+2*Pi*1i*(dirac(w+3*d)-dirac(w-3*d))+2/(w^2+1); assert(logical( fourier(cos(c*x)+2*sin(3*d*x)+exp(-abs(x))) == expand(F) )) ***** xtest % Differential operator to algebraic % SymPy cannot evaluate? (Issue #170) syms x w f(x) assert(logical( fourier(diff(f(x),x),x,w) == -1i*w*fourier(f(x),x,w) )) !!!!! known failure assert (logical (fourier (diff (f (x), x), x, w) == -1i * w * fourier (f (x), x, w))) failed 5 tests, 4 passed, 1 known failure, 0 skipped [inst/@sym/symvar.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/symvar.m ***** error symvar (sym(1), 2, 3) ***** test %% some empty cases assert (isempty (symvar (sym(1)))); assert (isempty (symvar (sym(1),1))); assert (isempty (symvar (sym(1),0))); assert (isempty (symvar (sym('x'),0))); ***** shared x,y,f x=sym('x'); y=sym('y'); f=x^2+3*x*y-y^2; ***** assert (isequal (symvar (f), [x y])); ***** assert (isequal (symvar (f, 1), x)); ***** test %% closest to x syms x y a b c xx alpha = sym('alpha'); % https://www.mathworks.com/matlabcentral/newsreader/view_thread/237730 assert( isequal (symvar (b*xx*exp(alpha) + c*sin(a*y), 2), [xx y])) %% tests to match Matlab R2013b ***** shared x,y,z,a,b,c,X,Y,Z syms x y z a b c X Y Z ***** test %% X,Y,Z first if no 2nd argument s = prod([x y z a b c X Y Z]); assert (isequal( symvar (s), [X Y Z a b c x y z] )) ***** test %% uppercase have *low* priority with argument? s = prod([x y z a b c X Y Z]); assert (isequal (symvar (s,4), [x, y, z, c] )) ***** test %% closest to x s = prod([y z a b c Y Z]); assert (isequal( symvar (s,6), [ y, z, c, b, a, Y] )) s = prod([a b c Y Z]); assert (isequal( symvar (s,4), [ c, b, a, Y] )) ***** test %% upper case letters in correct order s = X*Y*Z; assert (isequal( symvar (s,3), [X Y Z] )) ***** test % diff. assumptions make diff. symbols x1 = sym('x'); x2 = sym('x', 'positive'); f = x1*x2; assert (length (symvar (f)) == 2) z = symvar (f, 1); assert (xor (isequal (z, x1), isequal (z, x2))) 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@sym/matlabFunction.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/matlabFunction.m ***** test % autodetect inputs syms x y s = warning('off', 'OctSymPy:function_handle:nocodegen'); h = matlabFunction(2*x*y, x+y); warning(s) [t1, t2] = h(3,5); assert(t1 == 30 && t2 == 8) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/atanh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/atanh.m ***** error atanh (sym(1), 2) ***** assert (isequaln (atanh (sym(nan)), sym(nan))) ***** shared x, d d = 1/2; x = sym('1/2'); ***** test f1 = atanh(x); f2 = atanh(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = atanh(A); f2 = atanh(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = atanh (d); f = atanh (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/logint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/logint.m ***** error logint (sym(1), 2) ***** xtest assert (isequaln (logint (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (logint (sym (nan)), sym (nan))) failed ***** shared x, d d = 2; x = sym('2'); ***** test f1 = logint(x); f2 = 1.045163780117492784845; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = logint(A); f2 = 1.045163780117492784845; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = logint (d); f = logint (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 4 passed, 1 known failure, 0 skipped [inst/@sym/isrow.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isrow.m ***** assert (isrow (sym ([1]))) ***** assert (isrow (sym ([1 2 3]))) ***** assert (~isrow (sym ([]))) ***** assert (~isrow (sym ([1 2 3]'))) ***** assert (~isrow (sym ([1 2; 3 4]))) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/atand.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/atand.m ***** error atand (sym(1), 2) ***** assert (isequaln (atand (sym(nan)), sym(nan))) ***** test f1 = atand (sym(1)/2); f2 = atand (1/2); assert (double (f1), f2, -eps) ***** test D = [1 2; 3 4]/4; A = sym([1 2; 3 4])/4; f1 = atand (A); f2 = atand (D); assert (double (f1), f2, -eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/asinh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/asinh.m ***** error asinh (sym(1), 2) ***** assert (isequaln (asinh (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = asinh(x); f2 = asinh(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = asinh(A); f2 = asinh(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = asinh (d); f = asinh (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/cbrt.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cbrt.m ***** error cbrt (sym(1), 2) ***** assert (isequaln (cbrt (sym(nan)), sym(nan))) ***** shared x, d d = 2; x = sym('2'); ***** test f1 = cbrt(x); f2 = 1.2599210498948731647; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = cbrt(A); f2 = 1.2599210498948731647; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); if (exist ('OCTAVE_VERSION', 'builtin')) A = cbrt (d); else % Issue #742 A = d^(1/3); end f = cbrt (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/sign.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sign.m ***** error sign (sym(1), 2) ***** assert (isequaln (sign (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sign(x); f2 = sign(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sign(A); f2 = sign(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sign (d); f = sign (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/not.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/not.m ***** shared t, f t = sym(true); f = sym(false); ***** test % simple assert (isequal( ~t, f)) assert (isequal( ~t, f)) ***** test % array w = [t t f t]; z = [f f t f]; assert (isequal( ~w, z)) ***** test % number assert (isequal( ~sym(5), f)) assert (isequal( ~sym(0), t)) ***** test % output is sym syms x e = ~(x == 4); assert (isa (e, 'sym')) assert (strncmp (sympy(e), 'Unequality', 10)) ***** test % output is sym even for scalar t/f (should match other bool fcns) assert (isa (~t, 'sym')) ***** test % symbol ineq syms x a = [t f x == 1 x ~= 2 x < 3 x <= 4 x > 5 x >= 6]; b = [f t x ~= 1 x == 2 x >= 3 x > 4 x <= 5 x < 6]; assert (isequal( ~a, b)) ***** test syms x y = ~x; s = disp(y, 'flat'); assert (strcmp (strtrim (s), '~x') || strcmpi (strtrim (s), 'Not(x)')) ***** error not (sym(1), 2) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/eq.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/eq.m ***** test % simple tests with scalar numbers assert (logical (sym(1) == sym(1))) assert (logical (sym(1) == 1)) assert (~logical (sym(1) == 0)) assert (isequal (sym(1) == sym(1), sym(true))) assert (isequal (sym(1) == 1, sym(true))) assert (isequal (sym(1) == 0, sym(false))) ***** test % Type of the output is sym or logical? % FIXME: in current version, they are sym e = sym(1) == sym(1); %assert (islogical (e)) assert (isa (e, 'sym')) ***** test % things involving a variable are usually not bool but sym. % (SMT behaviour says always, FIXME: currently we differ.) syms x e = x == 0; assert (~islogical (e)) assert (isa (e, 'sym')) ***** test % ... except of course via cancellation syms x e = x - x == 0; assert (logical (e)) assert (isequal (e, sym(true))) ***** test % array == array a = sym([1 2; 3 4]); y = a == a; assert (isequal( size(y), [2 2])) assert (isequal (y, sym([true true; true true]))) assert (all(all(y))) y = a == 1; assert (isequal( size(y), [2 2])) assert (isequal (y, sym([true false; false false]))) assert (any(any(y))) y = a == 42; assert (isequal( size(y), [2 2])) assert (isequal (y, sym([false false; false false]))) ***** test % more array == array D = [0 1; 2 3]; A = [sym(0) 1; sym(2) 3]; DZ = D - D; assert (isequal (logical(A == A), [true true; true true])) assert (isequal (logical(A == D), [true true; true true])) assert (isequal (logical(A - D == DZ), [true true; true true])) assert (all (all ( A == A ))) assert (all (all ( A == D ))) assert (all (all ( A - D == DZ ))) ***** test % logical output, right shape, etc t = true; f = false; a = sym([0 1 2; 3 4 5]); b = sym([0 1 1; 3 5 5]); e = a == b; eexp = sym(logical([1 1 0; 1 0 1])); assert (isequal (e, eexp)) a = sym([0 1 2]); b = sym([0 1 1]); e = a == b; eexp = sym(logical([1 1 0])); assert (isequal (e, eexp)) e = a' == b'; eexp = eexp.'; % is/was bug here with ' assert (isequal (e, eexp)) ***** test % empty matrices compare to correct empty size a = zeros (sym(3), 0); assert (size (a == a), [3, 0]) a = zeros (sym(0), 2); assert (size (a == a), [0, 2]) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/subsindex.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/subsindex.m ***** test i = sym(1); a = 7; assert(a(i)==a); i = sym(2); a = 2:2:10; assert(a(i)==4); ***** test i = sym([1 3 5]); a = 1:10; assert( isequal (a(i), [1 3 5])) ***** test i = sym([1 3 5]); a = sym(1:10); assert( isequal (a(i), sym([1 3 5]))); ***** test % should be an error if it doesn't convert to double syms x a = 1:10; try a(x) waserr = false; catch waserr = true; end assert(waserr) ***** test syms x assert (isequal (x(sym (true)), x)) assert (isequal (x(sym (false)), sym ([]))) ***** test x = 6; assert (isequal (x(sym (true)), 6)) assert (isequal (x(sym (false)), [])) ***** test a = sym([10 12 14]); assert (isequal (a(sym ([true false true])), a([1 3]))) assert (isequal (a(sym ([false false false])), sym (ones(1,0)))) ***** test a = [10 11; 12 13]; p = [true false; true true]; assert (isequal (a(sym (p)), a(p))) p = [false false false]; assert (isequal (a(sym (p)), a(p))) ***** error a = [10 12]; I = [sym(true) 2]; b = a(I); 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/beta.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/beta.m ***** error beta (sym(1), 2, 3) ***** assert (isequal (double (beta (sym(1), 2)), 1/2)) ***** assert (isinf (double (beta (sym(1), 0)))) ***** test % round trip syms x y f = beta (x, y); h = function_handle (f); A = h (1.1, 2.2); B = beta (1.1, 2.2); assert (A, B) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/sinh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sinh.m ***** error sinh (sym(1), 2) ***** assert (isequaln (sinh (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sinh(x); f2 = sinh(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sinh(A); f2 = sinh(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sinh (d); f = sinh (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/all.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/all.m ***** test % matrix a = [0 3; 1 2]; s = sym (a); assert (isequal (all (s), all (a))) assert (isequal (all (s,1), all (a,1))) assert (isequal (all (s,2), all (a,2))) ***** test % vector a = [1 2 3]; s = sym (a); assert (isequal (all (s), all (a))) assert (isequal (all (s,1), all (a,1))) assert (isequal (all (s,2), all (a,2))) ***** test % should fail on symbols syms x s = [1 2 x]; try all (s) waserr = false; catch waserr = true; end assert (waserr) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/round.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/round.m ***** test d = 3/2; x = sym('3/2'); f1 = round(x); f2 = round(d); assert (isequal (f1, f2)) ***** xtest % ideally rounding direction would match Octave d = 5/2; x = sym('5/2'); f1 = round(x); f2 = round(d); assert (isequal (f1, f2)) !!!!! known failure assert (isequal (f1, f2)) failed ***** test D = [1.1 4.6; -3.4 -8.9]; A = [sym(11)/10 sym(46)/10; sym(-34)/10 sym(-89)/10]; f1 = round(A); f2 = round(D); assert( isequal (f1, f2)) ***** test d = sym(-11)/10; c = -1; assert (isequal (round (d), c)) ***** test d = sym(-19)/10; c = -2; assert (isequal (round (d), c)) ***** test d = 7j/2; x = sym(7j)/2; f1 = round (x); f2 = round (d); assert (isequal (f1, f2)) ***** test d = 5/3 - 4j/7; x = sym(5)/3 - sym(4j)/7; f1 = round (x); f2 = round (d); assert (isequal (f1, f2)) 7 tests, 6 passed, 1 known failure, 0 skipped [inst/@sym/sym.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sym.m ***** test % integers x = sym ('2'); y = sym (2); assert (isa (x, 'sym')) assert (isa (y, 'sym')) assert (isequal (x, y)) ***** test % infinity for x = {'inf', '-inf', inf, -inf, 'Inf'} y = sym (x{1}); assert (isa (y, 'sym')) assert (isinf (double (y))) assert (isinf (y)) end ***** test % pi x = sym ('pi'); assert (isa (x, 'sym')) assert (isequal (sin (x), sym (0))) assert (abs (double (x) - pi) < 2*eps ) x = sym (pi); assert (isa (x, 'sym')) assert (isequal (sin (x), sym (0))) assert (abs (double (x) - pi) < 2*eps ) ***** test % rationals x = sym(1) / 3; assert (isa (x, 'sym')) assert (isequal (3*x - 1, sym (0))) x = 1 / sym (3); assert (isa (x, 'sym')) assert (isequal (3*x - 1, sym (0))) x = sym ('1/3'); assert (isa (x, 'sym')) assert (isequal (3*x - 1, sym (0))) ***** test % passing small rationals x = sym ('1/2'); assert (double (x) == 1/2 ) assert (isequal (2*x, sym (1))) ***** warning x = sym (1/2); ***** test % passing small rationals w/o quotes: despite the warning, % it should work s = warning ('off', 'OctSymPy:sym:rationalapprox'); x = sym (1/2); warning (s) assert (double (x) == 1/2 ) assert (isequal (2*x, sym (1))) ***** test assert (isa (sym (pi), 'sym')) assert (isa (sym ('beta'), 'sym')) ***** test % sym from array D = [0 1; 2 3]; A = [sym(0) 1; sym(2) 3]; assert (isa (sym (D), 'sym')) assert (isequal (size (sym (D)), size (D))) assert (isequal (sym (D), A)) ***** test % more sym from array syms x A = [x x]; assert (isequal (sym (A), A)) A = [1 x]; assert (isequal (sym (A), A)) ***** test %% assumptions and clearing them clear variables % for matlab test script x = sym('x', 'real'); f = {x {2*x}}; asm = assumptions(); assert ( ~isempty(asm)) s = warning ('off', 'OctSymPy:deprecated'); x = sym('x', 'clear'); warning (s) asm = assumptions(); assert ( isempty(asm)) ***** test %% matlab compat, syms x clear should add x to workspace x = sym('x', 'real'); f = 2*x; clear x assert (~logical(exist('x', 'var'))) s = warning ('off', 'OctSymPy:deprecated'); x = sym('x', 'clear'); warning (s) assert (logical(exist('x', 'var'))) ***** test %% assumptions should work if x is already a sym x = sym('x'); x = sym(x, 'real'); assert (~isempty(assumptions(x))) ***** test %% likewise for clear x = sym('x', 'real'); f = 2*x; s = warning ('off', 'OctSymPy:deprecated'); x = sym(x, 'clear'); warning (s) assert (isempty(assumptions(x))) assert (isempty(assumptions(f))) ***** test % bool t = sym (false); t = sym (true); assert (logical (t)) ***** test % bool vec/mat a = sym (1); t = sym ([true false]); assert (isequal (t, [a == 1 a == 0])) t = sym ([true false; false true]); assert (isequal (t, [a == 1 a == 0; a == 0 a == 1])) ***** test % symbolic matrix A = sym ('A', [2 3]); assert (isa (A, 'sym')) assert (isequal (size (A), [2 3])) A(1, 1) = 7; assert (isa (A, 'sym')) A = A + 1; assert (isa (A, 'sym')) ***** test % symbolic matrix, symbolic but Integer size A = sym ('A', sym([2 3])); assert (isa (A, 'sym')) assert (isequal (size (A), [2 3])) ***** test % symbolic matrix, subs in for size syms n m integer A = sym ('A', [n m]); B = subs (A, [n m], [5 6]); assert (isa (B, 'sym')) assert (isequal (size (B), [5 6])) ***** error sym('2*a', [2 3]) ***** error sym(2*sym('a'), [2 3]) ***** error sym('1', [2 3]) ***** error sym(1, [2 3]) ***** error % TODO: symbolic tensor, maybe supported someday sym('a', [2 3 4]) ***** test % 50 shapes of empty a = sym (ones (0, 3)); assert (isa (a, 'sym')) assert (isequal (size (a), [0 3])) a = sym (ones (2, 0)); assert (isequal (size (a), [2 0])) a = sym ([]); assert (isequal (size (a), [0 0])) ***** test % moar empty a = sym ('a', [0 3]); assert (isa (a, 'sym')) assert (isequal (size (a), [0 3])) a = sym ('a', [2 0]); assert (isa (a, 'sym')) assert (isequal (size (a), [2 0])) ***** test % embedded sympy commands, various quotes, issue #143 a = sym ('a'); a1 = sym ('Symbol("a")'); a2 = sym ('Symbol(''a'')'); assert (isequal (a, a1)) assert (isequal (a, a2)) % Octave only, and eval to hide from Matlab parser if exist ('OCTAVE_VERSION', 'builtin') eval( 'a3 = sym("Symbol(''a'')");' ); eval( 'a4 = sym("Symbol(\"a\")");' ); assert (isequal (a, a3)) assert (isequal (a, a4)) end ***** test % complex x = sym(1 + 2i); assert (isequal (x, sym(1)+sym(2)*1i)) ***** test % doubles bigger than int32 INTMAX should not fail d = 4294967295; a = sym (d); assert (isequal (double (a), d)) d = d + 123456; a = sym (d); assert (isequal (double (a), d)) ***** test % int32 integer types a = sym (100); b = sym (int32 (100)); assert (isequal (a, b)) ***** test % int32 MAXINT integers a = sym ('2147483647'); b = sym (int32 (2147483647)); assert (isequal (a, b)) a = sym ('-2147483647'); b = sym (int32 (-2147483647)); assert (isequal (a, b)) a = sym ('4294967295'); b = sym (uint32 (4294967295)); assert (isequal (a, b)) ***** test % int64 integer types a = sym ('123456789012345'); b = sym (int64(123456789012345)); c = sym (uint64(123456789012345)); assert (isequal (a, b)) assert (isequal (a, c)) ***** test % integer arrays a = int64 ([1 2 100]); s = sym (a); assert (isequal (double (a), [1 2 100])) ***** test % bigger int64 integer types q = int64 (123456789012345); w = 10000*q + 123; a = sym ('1234567890123450123'); b = sym (w); assert (isequal (a, b)) ***** test % sym(double) heuristic s = warning ('off', 'OctSymPy:sym:rationalapprox'); x = sym(2*pi/3); assert (isequal (x/sym(pi), sym(2)/3)) x = sym(22*pi); assert (isequal (x/sym(pi), sym(22))) x = sym(pi/123); assert (isequal (x/sym(pi), sym(1)/123)) warning (s) ***** test % sym(double) with 'r': no warning a = 0.1; x = sym(a, 'r'); assert (isequal (x, sym(1)/10)) ***** test % sym(double) array with 'r': no warning a = [0.1 0.2]; x = sym(a, 'r'); assert (isequal (x, [sym(a(1), 'r') sym(a(2), 'r')])) ***** test % sym(double) array with 'f': no warning a = [0.1 0.2]; x = sym(a, 'f'); assert (isequal (x, [sym(a(1), 'f') sym(a(2), 'f')])) ***** test % sym(double, 'f') a = 0.1; x = sym(a, 'f'); assert (~isequal (x, sym(1)/10)) assert (isequal (x, sym('3602879701896397')/sym('36028797018963968'))) ***** test x = sym(pi, 'f'); assert (~isequal (x, sym('pi'))) assert (isequal (x, sym('884279719003555')/sym('281474976710656'))) ***** test q = sym('3602879701896397')/sym('36028797018963968'); x = sym(1 + 0.1i, 'f'); assert (isequal (x, 1 + 1i*q)) x = sym(0.1 + 0.1i, 'f'); assert (isequal (x, q + 1i*q)) ***** test assert (isequal (sym(inf, 'f'), sym(inf))) assert (isequal (sym(-inf, 'f'), sym(-inf))) assert (isequaln (sym(nan, 'f'), sym(nan))) assert (isequal (sym(complex(inf, -inf), 'f'), sym(complex(inf, -inf)))) assert (isequaln (sym(complex(nan, inf), 'f'), sym(complex(nan, inf)))) assert (isequaln (sym(complex(-inf, nan), 'f'), sym(complex(-inf, nan)))) ***** test assert (isequal (sym (sqrt(2), 'r'), sqrt (sym (2)))) assert (isequal (sym (sqrt(12345), 'r'), sqrt (sym (12345)))) ***** test % symbols with special sympy names syms Ei Eq assert (~isempty (regexp (sympy (Eq), '^Symbol'))) assert (~isempty (regexp (sympy (Ei), '^Symbol'))) ***** test % more symbols with special sympy names x = sym('FF'); assert (~isempty (regexp (x.pickle, '^Symbol'))) x = sym('ff'); assert (~isempty (regexp (x.pickle, '^Symbol'))) ***** test % E can be a sym not just exp(sym(1)) syms E assert (~logical (E == exp(sym(1)))) ***** test % e can be a symbol, not exp(sym(1)) syms e assert (~ logical (e == exp(sym(1)))) ***** test % double e x = sym (exp (1)); y = exp (sym (1)); assert (isequal (x, y)) if (exist ('OCTAVE_VERSION', 'builtin')) x = sym (e); assert (isequal (x, y)) end ***** test x = sym (-exp (1)); y = -exp (sym (1)); assert (isequal (x, y)) ***** assert (~ isequal (sym (exp(1)), sym (exp(1), 'f'))) ***** warning sym (1e16); ***** warning sym (-1e16); ***** warning sym (10.33); ***** warning sym (-5.23); ***** warning sym (sqrt (1.4142135623731)); ***** warning sym ([1.2 1.3]); ***** error x = sym ('x', 'positive2'); ***** error x = sym ('x', 'integer', 'positive2'); ***** error x = sym ('x', 'integer2', 'positive'); ***** error x = sym ('-pi', 'positive') ***** error x = sym ('pi', 'integer') ***** test % multiple assumptions n = sym ('n', 'negative', 'even'); a = assumptions (n); assert (strcmp (a, 'n: negative, even') || strcmp (a, 'n: even, negative')) ***** error % multiple assumptions as a list % TODO: should this be allowed? n = sym ('n', {'negative', 'even'}); a = assumptions (n); assert (strcmp (a, 'n: negative, even') || strcmp (a, 'n: even, negative')) ***** error n = sym ('n', {{'negative', 'even'}}); ***** test % save/load sym objects syms x y = 2*x; a = 42; myfile = tempname (); save (myfile, 'x', 'y', 'a') clear x y a load (myfile) assert (isequal (y, 2*x)) assert (a == 42) if (exist ('OCTAVE_VERSION', 'builtin')) assert (unlink (myfile) == 0) else delete ([myfile '.mat']) end ***** test a = sym ('2.1'); b = sym (21) / 10; %% https://github.com/sympy/sympy/issues/11703 assert (pycall_sympy__ ('return _ins[0] == _ins[1] and hash(_ins[0]) == hash(_ins[1])', a, b)) ***** test % issue #706 a = sym('Float("1.23")'); assert (~ isempty (strfind (char (a), '.'))) ***** assert (isequal (sym({1 2 'a'}), [sym(1) sym(2) sym('a')])); ***** error sym({1 2 'a'}, 'positive'); ***** error sym({'a' 'b'}, 'positive'); ***** test a = sym ('--1'); b = sym ('---1'); assert (isequal (a, sym (1))) assert (isequal (b, sym (-1))) ***** test % num2cell works on sym arrays syms x C1 = num2cell ([x 2 3; 4 5 6*x]); assert (iscell (C1)) assert (isequal (size (C1), [2 3])) assert (isequal (C1{1,1}, x)) assert (isequal (C1{2,3}, 6*x)) assert (isequal (C1{1,3}, sym(3))) assert (isa (C1{1,3}, 'sym')) ***** test % function_handle f = @(x, y) y*sin(x); syms x y assert (isequal (sym (f), y*sin(x))); f = @(x) 42; assert (isequal (sym (f), sym (42))); f = @() 42; assert (isequal (sym (f), sym (42))); ***** error % function_handle f = @(x) A*sin(x); sym (f) ***** test % Issue #885 clear f x % if test not isolated (e.g., on matlab) syms x f(x) = sym('S(x)'); f(x) = sym('I(x)'); f(x) = sym('O(x)'); ***** test % sym(sympy(x) == x identity, Issue #890 syms x f = exp (1i*x); s = sympy (f); g = sym (s); assert (isequal (f, g)) ***** test % sym(sympy(x) == x identity % Don't mistake "pi" (which is "srepr(S.Pi)") for a symfun variable f = sym ('ff(pi, pi)'); s1 = sympy (f); s2 = 'FallingFactorial(pi, pi)'; assert (strcmp (s1, s2)) ***** test % sym(sympy(x) == x identity % Don't mistake "I" (which is "srepr(S.ImaginaryUnit)") for a symfun variable f = sym ('sin(I)'); g = 1i*sinh (sym (1)); assert (isequal (f, g)) s = sympy (f); assert (isempty (strfind (s, 'Function'))) ***** error % sym(sympy(x) == x identity % Don't mistake "true/false" (which is "srepr(S.true)") for a symfun variable % (Used to print as `S.true` but just `true` in sympy 1.2) sym ('E(true,false)') ***** test % some variable names that are special to sympy but should not be for us f = sym ('f(S, Q, C, O, N)'); s1 = sympy (f); s2 = 'Function(''f'')(Symbol(''S''), Symbol(''Q''), Symbol(''C''), Symbol(''O''), Symbol(''N''))'; assert (strcmp (s1, s2)) ***** test % For SMT 2014 compatibility, I and E would become ImaginaryUnit and Exp(1) % but I'm not sure this is by design. This test would need to change if % we want stricter SMT compatibility. f = sym ('f(x, I, E)'); s1 = sympy (f); s2 = 'Function(''f'')(Symbol(''x''), Symbol(''I''), Symbol(''E''))'; assert (strcmp (s1, s2)) ***** test % not the identity, force symfun f = sym ('FF(w)'); s1 = sympy (f); s2 = 'Function(''FF'')(Symbol(''w''))'; assert (strcmp (s1, s2)) ***** test % not the identity, force symfun f = sym ('FF(w, pi)'); s1 = sympy (f); s2 = 'Function(''FF'')(Symbol(''w''), pi)'; assert (strcmp (s1, s2)) ***** test % not the identity, force symfun f = sym ('ff(x, y)'); s1 = sympy (f); s2 = 'Function(''ff'')(Symbol(''x''), Symbol(''y''))'; assert (strcmp (s1, s2)) ***** test % But this one should satisfy "sym(sympy(x) == x" identity % (OOTB, SymPy has ff -> FallingFactorial) f = sym ('FallingFactorial(x, y)'); s1 = sympy (f); s2 = 'FallingFactorial(Symbol(''x''), Symbol(''y''))'; assert (strcmp (s1, s2)) ***** error % certain words cannot be used as variables if (pycall_sympy__ ('return Version(spver) >= Version("1.10.1")')) f = sym ('f(x, y, print)') else error ('use another variable') end /usr/lib/python3/dist-packages/sympy/core/function.py:827: SymPyDeprecationWarning: The string fallback in sympify() is deprecated. To explicitly convert the string form of an object, use sympify(str(obj)). To add define sympify behavior on custom objects, use sympy.core.sympify.converter or define obj._sympy_ (see the sympify() docstring). sympify() performed the string fallback resulting in the following string: '' See https://docs.sympy.org/latest/explanation/active-deprecations.html#deprecated-sympify-string-fallback for details. This has been deprecated since SymPy version 1.6. It will be removed in a future version of SymPy. args = list(map(sympify, args)) 86 tests, 86 passed, 0 known failure, 0 skipped [inst/@sym/ccode.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ccode.m ***** shared x,y,z syms x y z ***** test % basic test f = x*sin(y) + abs(z); source = ccode(f); expected = 'x*sin(y) + fabs(z)'; assert(strcmp(source, expected)) ***** test % output test f = x*sin(y) + abs(z); [C, H] = ccode(f, 'file', '', 'show_header', false); expected_c_code = sprintf('#include \"file.h\"\n#include \n\ndouble myfun(double x, double y, double z) {\n\n double myfun_result;\n myfun_result = x*sin(y) + fabs(z);\n return myfun_result;\n\n}\n'); expected_h_code = sprintf('\n#ifndef PROJECT__FILE__H\n#define PROJECT__FILE__H\n\ndouble myfun(double x, double y, double z);\n\n#endif\n\n'); assert(strcmp(C.name, 'file.c')) assert(strcmp(H.name, 'file.h')) hwin = strrep(expected_h_code, sprintf('\n'), sprintf('\r\n')); assert (strcmp (H.code, expected_h_code) || strcmp (H.code, hwin)) s1 = expected_c_code; s2 = strrep(expected_c_code, sprintf('\n'), sprintf('\r\n')); assert (strcmp (C.code, s1) || strcmp (C.code, s2)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/fresnels.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fresnels.m ***** error fresnels (sym(1), 2) ***** test a = fresnels(sym(0)); assert (isequal (a, sym(0))) ***** test b = fresnels(sym('oo')); assert (isequal (b, sym(1)/2)) ***** test % values in a matrix syms x a = fresnels([sym(0) sym('oo') x 1]); b = [sym(0) sym(1)/2 fresnels(x) fresnels(sym(1))]; assert (isequal (a, b)) ***** test % round trip syms x f = fresnels (x); h = function_handle (f); A = h (1.1); B = fresnels (1.1); assert (A, B) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/le.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/le.m ***** test % simple x = sym(1); y = sym(1); e = x <= y; assert (logical (e)) x = sym(1); y = sym(2); e = x <= y; assert (logical (e)) ***** test % array -- array syms x a = sym([1 3 3 2*x]); b = sym([2 x 3 10]); e = a <= b; assert (isa (e, 'sym')) assert (logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), 3 <= x)) assert (logical (e(3))) assert (isa (e(4), 'sym')) assert (isequal (e(4), 2*x <= 10)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/char.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/char.m ***** test % issue #91: expose as string a = sym(pi); assert (strcmp (char (a), 'pi')) ***** shared x x = sym('x'); ***** assert (strcmp (char (x), 'x')) ***** assert (strcmp (char (2*x), '2*x')) ***** assert (strcmp (char ([2*x x]), 'Matrix([[2*x, x]])')) ***** assert (strcmp (char ([2*x 2; 1 x]), 'Matrix([[2*x, 2], [1, x]])')) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/uplus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/uplus.m ***** test syms x assert (isa (+x, 'sym')) assert (isequal (+x, x)) ***** test A = sym([0 -1 inf]); assert( isequal ( +A, A)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/norm.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/norm.m ***** assert (isequal (norm(sym(-6)), 6)) ***** test % 2-norm default A = [1 2; 3 4]; n1 = norm (sym (A)); assert (isequal (n1, sqrt (sqrt (sym(221)) + 15))) assert (norm (A), double (n1), -eps) ***** test syms x y real assert (isequal (norm([x 1; 3 y], 'fro'), sqrt(x^2 + y^2 + 10))) ***** test syms x real assert (isequal (norm([x 1], 2), sqrt(x^2 + 1))) ***** test % test sym vs double ord syms x assert (isequal (norm([x 2 1], 1), abs(x) + 3)) assert (isequal (norm([x 2 1], sym(1)), abs(x) + 3)) assert (isequal (norm([sym(-3) 2 1], inf), sym(3))) assert (isequal (norm([sym(-3) 2 1], sym(inf)), sym(3))) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/taylor.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/taylor.m ***** test syms x f = exp(x); expected = 1 + x + x^2/2 + x^3/6 + x^4/24 + x^5/120; assert (isequal (taylor(f), expected)) assert (isequal (taylor(f,x), expected)) assert (isequal (taylor(f,x,0), expected)) ***** test syms x f = exp(x); expected = 1 + x + x^2/2 + x^3/6 + x^4/24; assert (isequal (taylor(f,'order',5), expected)) assert (isequal (taylor(f,x,'order',5), expected)) assert (isequal (taylor(f,x,0,'order',5), expected)) ***** test % key/value ordering doesn't matter syms x f = exp(x); g1 = taylor(f, 'expansionPoint', 1, 'order', 3); g2 = taylor(f, 'order', 3, 'expansionPoint', 1); assert (isequal (g1, g2)) ***** test syms x f = x^2; assert (isequal (taylor(f,x,0,'order',0), 0)) assert (isequal (taylor(f,x,0,'order',1), 0)) assert (isequal (taylor(f,x,0,'order',2), 0)) assert (isequal (taylor(f,x,0,'order',3), x^2)) assert (isequal (taylor(f,x,0,'order',4), x^2)) ***** test syms x y f = exp(x)+exp(y); expected = 2 + x + x^2/2 + x^3/6 + x^4/24 + y + y^2/2 + y^3/6 + y^4/24; assert (isAlways(taylor(f,[x,y],'order',5)== expected)) assert (isAlways(taylor(f,[x,y],[0,0],'order',5) == expected)) ***** test % key/value ordering doesn't matter syms x f = exp(x); g1 = taylor(f, 'expansionPoint', 1, 'order', 3); g2 = taylor(f, 'order', 3, 'expansionPoint', 1); assert (isequal (g1, g2)) ***** test syms x f = x^2; assert (isequal (taylor(f,x,0,'order',0), 0)) assert (isequal (taylor(f,x,0,'order',1), 0)) assert (isequal (taylor(f,x,0,'order',2), 0)) assert (isequal (taylor(f,x,0,'order',3), x^2)) assert (isequal (taylor(f,x,0,'order',4), x^2)) ***** test % syms for a and order syms x f = x^2; assert (isequal (taylor(f,x,sym(0),'order',sym(2)), 0)) assert (isequal (taylor(f,x,sym(0),'order',sym(4)), x^2)) ***** test syms x y f = exp (x^2 + y^2); expected = 1+ x^2 +y^2 + x^4/2 + x^2*y^2 + y^4/2; assert (isAlways(taylor(f,[x,y],'order',5)== expected)) assert (isAlways(taylor(f,[x,y],'expansionPoint', [0,0],'order',5) == expected)) ***** test syms x y f = sqrt(1+x^2+y^2); expected = 1+ x^2/2 +y^2/2 - x^4/8 - x^2*y^2/4 - y^4/8; assert (isAlways(taylor(f,[x,y],'order',6)== expected)) assert (isAlways(taylor(f,[x,y],'expansionPoint', [0,0],'order',5) == expected)) ***** test syms x y f = sin (x^2 + y^2); expected = sin(sym(1))+2*cos(sym(1))*(x-1)+(cos(sym(1))-2*sin(sym(1)))*(x-1)^2 + cos(sym(1))*y^2; assert (isAlways(taylor(f,[x,y],'expansionPoint', [1,0],'order',3) == expected)) ***** test % key/value ordering doesn't matter syms x y f = exp(x+y); g1 = taylor(f, 'expansionPoint',1, 'order', 3); g2 = taylor(f, 'order', 3, 'expansionPoint',1); assert (isAlways(g1== g2)) ***** test syms x y f = x^2 + y^2; assert (isAlways(taylor(f,[x,y],[0,0],'order',0)== sym(0) )) assert (isAlways(taylor(f,[x,y],[0,0],'order',1)== sym(0) )) assert (isAlways(taylor(f,[x,y],[0,0],'order',2)== sym(0) )) assert (isAlways(taylor(f,[x,y],[0,0],'order',3)== sym(x^2 + y^2))) assert (isAlways(taylor(f,[x,y],[0,0],'order',4)== sym(x^2 + y^2))) ***** test % expansion point syms x a f = x^2; g = taylor(f,x,2); assert (isequal (simplify(g), f)) assert (isequal (g, 4*x+(x-2)^2-4)) g = taylor(f,x,a); assert (isequal (simplify(g), f)) ***** test % wrong order-1 series with nonzero expansion pt: % upstream bug https://github.com/sympy/sympy/issues/9351 syms x g = x^2 + 2*x + 3; h = taylor (g, x, 4, 'order', 1); assert (isequal (h, 27)) ***** test syms x y z g = x^2 + 2*y + 3*z; h = taylor (g, [x,y,z], 'order', 4); assert (isAlways(h == g)) ; ***** test syms x y z g = sin(x*y*z); h = taylor (g, [x,y,z], 'order', 4); assert (isAlways(h == x*y*z)) ; ***** error syms x y taylor(0, [x, y], [1, 2, 3]); 18 tests, 18 passed, 0 known failure, 0 skipped [inst/@sym/ellipticE.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticE.m ***** error ellipticE (sym(1), 2, 3) ***** assert (double (ellipticE (sym (-105)/10)), 3.70961391, 10e-9) ***** assert (double (ellipticE (sym (-pi)/4)), 1.844349247, 10e-10) ***** assert (double (ellipticE (sym (0))), 1.570796327, 10e-10) ***** assert (double (ellipticE (sym (1))), 1, 10e-1) ***** test % compare to Maple us = vpa (ellipticE (sym(7)/6, sym(13)/7), 40); % > evalf(EllipticE(sin(7/6), sqrt(13/7)), 40); maple = vpa ('0.6263078268598504591831743625971763209496', 40) + ... vpa ('0.1775496232203171126975790989055865596501j', 40); assert (abs (double (maple - us)), 0, 2e-39) ***** test % compare to Maple us = vpa (ellipticE (sym(8)/7), 40); % > evalf(EllipticE(sqrt(8/7)), 40); maple = vpa ('0.8717182992576322508542205614105802333270', 40) + ... vpa ('0.1066754320328976949531350910798010526685j', 40); assert (abs (double (maple - us)), 0, 2e-39) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/rdivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/rdivide.m ***** test % scalar syms x assert (isa (x ./ 1, 'sym')) assert (isa (x ./ x, 'sym')) assert (isequal (x ./ 1, x)) assert (isequal (x ./ x, sym(1))) ***** test % matrix-scalar D = 2*[0 1; 2 3]; A = sym(D); assert (isequal ( A./2 , D/2 )) assert (isequal ( A./sym(2) , D/2 )) assert (isequal ( D./sym(2) , D/2 )) ***** test % matrix ./ matrix D = [1 2; 3 4]; A = sym(D); assert (isequal ( A./A , D./D )) assert (isequal ( A./D , D./D )) assert (isequal ( D./A , D./D )) ***** test % matrix ./ matrix with symbols syms x y A = [x y; x^2 2*y]; B = [y x; x y]; assert (isequal ( A./A , sym(ones(2,2)) )) assert (isequal ( A./B , [x/y y/x; x 2] )) ***** test % scalar ./ matrix D = [1 2; 3 4]; A = sym(D); assert (isequal ( 12./A , 12./D )) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/display.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/display.m ***** test assert(true) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/lhs.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/lhs.m ***** test syms x y f = x + 1 == 2*y; assert (isequal (lhs(f), x + 1)) assert (isequal (rhs(f), 2*y)) ***** test syms x y f = x + 1 < 2*y; assert (isequal (lhs(f), x + 1)) assert (isequal (rhs(f), 2*y)) ***** test syms x y f = x + 1 >= 2*y; assert (isequal (lhs(f), x + 1)) assert (isequal (rhs(f), 2*y)) ***** test syms x y A = [x == y 2*x < 2*y; 3*x > 3*y 4*x <= 4*y; 5*x >= 5*y x < 0]; L = [x 2*x; 3*x 4*x; 5*x x]; R = [y 2*y; 3*y 4*y; 5*y 0]; assert (isequal( lhs(A), L)) assert (isequal( rhs(A), R)) ***** error syms x lhs(x) ***** error lhs(sym(true)) ***** error syms x A = [1 + x == 2*x sym(6)]; lhs(A) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/lu.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/lu.m ***** test % scalar [l, u, p] = lu(sym(6)); assert (isequal (l, sym(1))) assert (isequal (u, sym(6))) assert (isequal (p, sym(1))) syms x [l, u, p] = lu(x); assert (isequal (l*u, p*x)) [l, u] = lu(x); assert (isequal (l*u, x)) ***** test % perm A = sym(fliplr(2*eye(3))); [L, U, P] = lu(A); assert (isequal (L*U, P*A)) [L, U, P] = lu(A, 'matrix'); assert (isequal (L*U, P*A)) [L, U, p] = lu(A, 'vector'); assert (isequal (L*U, A(p,:))) [L, U] = lu(A); assert (isequal (L*U, A)) ***** test % p is col vectpr A = sym([0 2; 3 4]); [L, U, p] = lu(A, 'vector'); assert(iscolumn(p)) ***** test % simple matrix A = [1 2; 3 4]; B = sym(A); [L, U, P] = lu(B); assert (isequal (L*U, P*B)) assert (isequal (U(2,1), sym(0))) % needs pivot A = [0 2; 3 4]; B = sym(A); [L, U, P] = lu(B); [Ld, Ud, Pd] = lu(A); assert (isequal (L*U, P*A)) assert (isequal (U(2,1), sym(0))) % matches regular LU assert ( max(max(double(L)-Ld)) <= 10*eps) assert ( max(max(double(U)-Ud)) <= 10*eps) assert ( isequal (P, Pd)) ***** test % rectangular A = sym([1 2; 3 4; 5 6]); [L, U] = lu (A); assert (isequal (L*U, A)) ***** test % rectangular A = sym([1 2 3; 4 5 6]); [L, U] = lu (A); assert (isequal (L*U, A)) ***** test % rectangular, repeated row A = sym([1 2 3; 2 4 6]); [L, U] = lu (A); assert (isequal (L*U, A)) ***** test % rectangular, needs permutation A = sym([0 0 0; 1 2 3]); [L, U] = lu (A); assert (isequal (L*U, A)) assert (~isequal (tril (L), L)) [L, U, P] = lu (A); assert (isequal (L*U, P*A)) assert (isequal (tril (L), L)) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/eval.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/eval.m ***** error eval (sym(1), 2) ***** assert (isnumeric (eval (sym(3)))) ***** assert (isnumeric (eval (sin (sym(3))))) ***** test syms x y f = 2*x*y; x = 3; y = 4; g = eval (f); assert (isequal (g, 24)) ***** test syms x y f = 2*x*y; clear y x = 3; g = eval (f); assert (isequal (g, 6*sym('y'))) ***** test % do not convert inputs to sym, for SMT compat nearpi = pi + 1e-14; % sym could make this pi x = sym('x'); f = 2*x; x = nearpi; d = eval (f); assert (abs (d - 2*pi) > 1e-15) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/cond.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cond.m ***** test A = [1 2; 3 4]; B = sym(A); k1 = cond(A); k2 = cond(B); k3 = double(k2); assert (k1 - k3 <= 100*eps) ***** test % matrix with symbols syms x positive A = [x 0; sym(0) 2*x]; k1 = cond(A); assert (isequal (k1, sym(2))) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/erf.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/erf.m ***** error erf (sym(1), 2) ***** assert (isequaln (erf (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = erf(x); f2 = erf(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = erf(A); f2 = erf(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = erf (d); f = erf (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/ztrans.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ztrans.m ***** test % basic Z-transform table checks % X1, ..., X4 must have inner radius of convergence 1 syms n z % trick to extract the closed form formula using the fact that inner roc = 1 closed_form = @(X) subs (X, abs (1 / z), 1 / sym (2)); % check if ztrans(f) == X check_ztrans = @(f, X) logical (simplify (closed_form (ztrans (f)) == X)); f1 = sym (1); X1 = 1 / (1 - 1 / z); assert (check_ztrans (f1, X1)); f2 = n; X2 = (1 / z) / (1 - 1 / z)^2; assert (check_ztrans (f2, X2)); f3 = n^2; X3 = (1 / z) * (1 + 1 / z) / (1 - 1 / z)^3; assert (check_ztrans (f3, X3)); f4 = n^3; X4 = (1 / z) * (1 + 4 / z + 1 / z^2) / (1 - 1 / z)^4; assert (check_ztrans (f4, X4)); % basic matrix checks A1 = ztrans ([f1 f2; f3 f4]); B1 = [ztrans(f1) ztrans(f2); ztrans(f3) ztrans(f4)]; assert (isequal (A1, B1)); A2 = ztrans ([f1 f2; f3 f4], z); B2 = [ztrans(f1, z) ztrans(f2, z); ztrans(f3, z) ztrans(f4, z)]; assert (isequal (A2, B2)); A3 = ztrans ([f1 f2; f3 f4], n, z); B3 = [ztrans(f1, n, z) ztrans(f2, n, z); ztrans(f3, n, z) ztrans(f4, n, z)]; assert (isequal (A3, B3)); ***** test % additional Z-transform table checks % X1, ..., X4 must have inner radius of convergence a syms n nonnegative integer syms m positive integer syms a syms z % trick to extract the closed form formula using the fact that inner roc = a closed_form = @(X) subs (X, abs (a / z), 1 / sym (2)); % check if ztrans(f) == X check_ztrans = @(f, X) logical (simplify (closed_form (ztrans (f)) == X)); f1 = a^n; X1 = 1 / (1 - a / z); assert (check_ztrans (f1, X1)); f2 = n * a^n; X2 = (a / z) / (1 - a / z)^2; assert (check_ztrans (f2, X2)); f3 = n^2 * a^n; X3 = (a / z) * (1 + a / z) / (1 - a / z)^3; assert (check_ztrans (f3, X3)); f4 = nchoosek(n + m - 1, m - 1) * a^n; X4 = 1 / (1 - a / z)^m; assert (check_ztrans (f4, X4)); % additional matrix checks A1 = ztrans (f1, [n m; m n], [z a; a z]); B1 = [ztrans(f1, n, z) ztrans(f1, m, a); ztrans(f1, m, a) ztrans(f1, n, z)]; assert (isequal (A1, B1)); A2 = ztrans (f1, m, [z a; a z]); B2 = [ztrans(f1, m, z) ztrans(f1, m, a); ztrans(f1, m, a) ztrans(f1, m, z)]; assert (isequal (A2, B2)); A3 = ztrans (f1, [n m; m n], a); B3 = [ztrans(f1, n, a) ztrans(f1, m, a); ztrans(f1, m, a) ztrans(f1, n, a)]; assert (isequal (A3, B3)); ***** test % Kronecker delta checks syms n n0 nonnegative integer syms z assert (isequal (ztrans (kroneckerDelta (n)), 1)); assert (isequal (ztrans (kroneckerDelta (n - n0)), 1 / z^n0)); ***** test % basic var selection checks syms n m z w assert (isequal (ztrans (1 / factorial (n)), exp (1 / z))); assert (isequal (ztrans (1 / factorial (z)), exp (1 / w))); assert (isequal (ztrans (1 / factorial (m), w), exp (1 / w))); assert (isequal (ztrans (1 / factorial (m), m, w), exp (1 / w))); ***** test % additional var selection checks syms n m z f = kroneckerDelta(m) / factorial (n); assert (isequal (ztrans (f, z), exp (1 / z) * kroneckerDelta (m))); assert (isequal (ztrans (f, n, z), exp (1 / z) * kroneckerDelta (m))); assert (isequal (ztrans (f, m, z), 1 / factorial (n))); ***** test % if no t, use symvar: take x before a syms a x z assert (isequal (ztrans (a / factorial (x)), a * exp (1 / z))); ***** error ztrans (sym ('n')^sym ('n', 'nonnegative', 'integer')) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/ge.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ge.m ***** test % simple x = sym(1); y = sym(1); e = x >= y; assert (logical (e)) x = sym(1); y = sym(2); e = x >= y; assert (~logical(e)) ***** test % array -- array syms x a = sym([1 3 3 2*x]); b = sym([2 x 3 10]); e = a >= b; assert (isa (e, 'sym')) assert (~logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), 3 >= x)) assert (logical (e(3))) assert (isa (e(4), 'sym')) assert (isequal (e(4), 2*x >= 10)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/pochhammer.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/pochhammer.m ***** error pochhammer (sym(1)) ***** error pochhammer (sym(1), 2, 3) ***** assert (isequal (pochhammer (sym(3), 4), sym(360))) ***** assert (isequal (pochhammer (sym([2 3]), 3), sym([24 60]))) ***** test % round trip syms n z f = pochhammer (z, n); h = function_handle (f, 'vars', [z n]); A = h (1.1, 2.2); B = pochhammer (1.1, 2.2); assert (A, B) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/expint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/expint.m ***** error expint (sym(1), 2, 3) ***** test f1 = expint(sym(1)); f2 = expint(1); assert( abs(double(f1) - f2) < 1e-15 ) ***** test f1 = expint(sym(1i)); f2 = expint(1i); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [1 2; 3 4]; A = sym(D); f1 = expint(A); f2 = expint(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test syms x A = expint(x); B = expint(1, x); assert (isequal (A, B)) ***** test syms x A = exp(-x)/x; B = expint(0, x); assert (isequal (A, B)) ***** test % round trip syms x A = expint (3); f = expint (x); h = function_handle (f); B = h (3); assert (A, B, -eps) ***** error % round trip syms n x f = expint (n, x); h = function_handle (f); 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/jordan.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/jordan.m ***** test % basic A = sym ([2 1 0 0; 0 2 1 0; 0 0 3 0; 0 1 -1 3]); [V, J] = jordan (A); assert (isequal (inv (V) * A * V, J)); assert (isequal (J, sym ([2 1 0 0; 0 2 0 0; 0 0 3 0; 0 0 0 3]))) % the first 2 generalized eigenvectors form a cycle assert (isequal ((A - J(1, 1) * eye (4)) * V(:, 1), zeros (4, 1))); assert (isequal ((A - J(2, 2) * eye (4)) * V(:, 2), V(:, 1))); % the last 2 generalized eigenvectors are eigenvectors assert (isequal ((A - J(3, 3) * eye (4)) * V(:, 3), zeros (4, 1))); assert (isequal ((A - J(4, 4) * eye (4)) * V(:, 4), zeros (4, 1))); ***** test % scalars assert (isequal (jordan (sym (-10)), sym (-10))); assert (isequal (jordan (sym ('x')), sym ('x'))); ***** test % diagonal matrices A = diag (sym ([6 6 7])); [V1, D] = eig (A); [V2, J] = jordan (A); assert (isequal (V1, V2)); assert (isequal (D, J)); ***** test % matrices of unknown entries A = [sym('a') sym('b'); sym('c') sym('d')]; [V, D] = eig (A); J = jordan (A); assert (isequal (simplify (D), simplify (J))); ***** test % matrices of mixed entries A = [sym('x')+9 sym('y'); sym(0) 6]; [V, D] = eig (A); J = jordan (A); assert (isequal (simplify (D), simplify (J))); 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/ilaplace.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ilaplace.m ***** error ilaplace (sym(1), 2, 3, 4) ***** test % basic SMT compact: no heaviside syms s syms t positive assert (isequal (ilaplace(1/s^2), t)) assert (isequal (ilaplace(s/(s^2+9)), cos(3*t))) assert (isequal (ilaplace(6/s^4), t^3)) ***** test % more SMT compact syms r syms u positive assert (isequal (ilaplace(1/r^2, u), u)) assert (isequal (ilaplace(1/r^2, r, u), u)) ***** test % if t specified and not positive, we expect heaviside clear s t syms s t assert (isequal (ilaplace(1/s^2, s, t), t*heaviside(t))) assert (isequal (ilaplace(s/(s^2+9), t), cos(3*t)*heaviside(t))) assert (isequal (ilaplace(6/s^4, t), t^3*heaviside(t))) ***** test % Heaviside test syms s t=sym('t', 'positive'); assert(logical( ilaplace(exp(-5*s)/s^2,t) == (t-5)*heaviside(t-5) )) ***** test % Delta dirac test syms s t = sym('t'); assert (isequal (ilaplace (sym('2'), t), 2*dirac(t))) ***** test % Delta dirac test 2 syms s t calc = ilaplace (5*exp (-3*s) - 2*exp (-2*s)/s, s, t); want = 5*dirac (t-3) - 2*heaviside (t-2); assert (isequal (calc, want)) ***** test % Delta dirac test 3, coefficient syms s t syms c positive calc = ilaplace (2*exp (-c*s), s, t); want = 2*dirac (t - c); assert (isAlways (calc == want)) ***** error ilaplace (sym('s', 'positive')*sym('s')) ***** test % SMT compact, prefers s over symvar syms s x syms t positive assert (isequal (ilaplace(x/s^4), x*t^3/6)) t = sym('t'); assert (isequal (ilaplace(x/s^4, t), x*t^3/6*heaviside(t))) ***** test % pick s even it has assumptions syms s real syms x t assert (isequal (ilaplace (x/s^2, t), x*t*heaviside(t))) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/tand.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/tand.m ***** error tand (sym(1), 2) ***** assert (isequaln (tand (sym(nan)), sym(nan))) ***** test f1 = tand (sym(1)); f2 = tand (1); assert (double (f1), f2, -eps) ***** test D = [10 30; 110 -45]; A = sym(D); f1 = tand (A); f2 = tand (D); assert (double (f1), f2, -eps) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/chol.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/chol.m ***** error chol (sym ([1 2; 3 4])); ***** error chol (sym ([1 2; 3 4; 5 6])); ***** test A = chol(hilb(sym(2))); B = [[1 0]; sym(1)/2 sqrt(sym(3))/6]; assert( isequal( A, B )) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/colon.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/colon.m ***** test a = sym(1):5; b = sym(1:5); assert(isequal(a,b)); a = 1:sym(5); b = sym(1:5); assert(isequal(a,b)); ***** test a = 2:sym(2):8; b = sym(2:2:8); assert(isequal(a,b)); ***** test a = sym(10):-2:-4; b = sym(10:-2:-4); assert(isequal(a,b)); ***** test % symbolic intervals p = sym(pi); L = 0:p/4:p; assert(isa(L,'sym')); assert(isequal(L, [0 p/4 p/2 3*p/4 p])); ***** test % mixed symbolic and double intervals p = sym(pi); s = warning ('off', 'OctSymPy:sym:rationalapprox'); L = 0.1:(sym(pi)/3):2.3; warning(s) assert(isa(L,'sym')); t = sym(1)/10; assert(isequal(L, [t p/3+t 2*p/3+t])); ***** error syms x; a = 0:x; ***** error syms x; a = 1:x; 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/trace.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/trace.m ***** test % scalar syms x assert (isequal (trace(x), x)) ***** test syms x A = [x 3; 2*x 5]; assert (isequal (trace(A), x + 5)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/conj.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/conj.m ***** test a = sym(6); b = sym(5i); assert (isequal (conj(a), a)) assert (isequal (conj(b), -b)) assert (isequal (conj(a+b), a-b)) ***** test syms x assert (isequal (conj(conj(x)), x)) ***** test syms x real assert (isequal (conj(x), x)) ***** test % array syms x A = [x 6+1i; sym(1) x+2i]; B = [conj(x) 6-1i; sym(1) conj(x)-2i]; assert (isequal (conj(A), B)) ***** test % true/false t = sym(true); f = sym(false); assert (isequal ( conj(t), t)) assert (isequal ( conj(f), f)) ***** test % round trip syms x d = 3 - 5i; f = conj (x); A = conj (d); h = function_handle (f); B = h (d); assert (A, B) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/cumprod.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cumprod.m ***** shared x, y x = sym ('x'); y = sym ('y'); ***** error cumprod (x, 1, 2) ***** assert (isequal (cumprod ([-x; -2*x; -3*x]), [-x; 2*x^2; -6*x^3])) ***** assert (isequal (expand (cumprod ([x + i, x - i])), [x + i, x^2 + 1])) ***** assert (isequal (cumprod ([1, x; y, 2], 1), [1, x; y, 2*x] )) ***** assert (isequal (cumprod ([1, x; y, 2], 2), [1, x; y, 2*y] )) ***** test cumprod ([x, x], [2, 1]); # ensure behaves like builtin cumprod ***** test cumprod ([x, x], [1, -2]); # ensure behaves like builtin cumprod ***** error cumprod (x, []) ***** error cumprod (x, {1}) ***** error cumprod (x, struct('a', 1)) ***** error cumprod (x, x) ***** error cumprod (x, 0) ***** error cumprod (x, -1) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/@sym/acosh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acosh.m ***** error acosh (sym(1), 2) ***** assert (isequaln (acosh (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = acosh(x); f2 = acosh(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = acosh(A); f2 = acosh(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = acosh (d); f = acosh (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/nextprime.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/nextprime.m ***** assert (isequal (nextprime(sym(2)), 3)); ***** assert (isequal (nextprime(sym(18)), 19)); ***** assert (isequal (nextprime(sym([1 2 3])), [2 3 5])); ***** assert (isequal (nextprime(sym([-1 0])), [2 2])); ***** test % result is a sym p = nextprime(sym(2)); assert (isa (p, 'sym')) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/vertcat.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/vertcat.m ***** test % basic syms x A = [x; x]; B = vertcat(x, x); C = vertcat(x, x, x); assert (isa (A, 'sym')) assert (isa (B, 'sym')) assert (isa (C, 'sym')) assert (isequal (size(A), [2 1])) assert (isequal (size(B), [2 1])) assert (isequal (size(C), [3 1])) ***** test % basic, part 2 syms x A = [x; 1]; B = [1; x]; C = [1; 2; x]; assert (isa (A, 'sym')) assert (isa (B, 'sym')) assert (isa (C, 'sym')) assert (isequal (size(A), [2 1])) assert (isequal (size(B), [2 1])) assert (isequal (size(C), [3 1])) ***** test % column vectors a = [sym(1); 2]; b = [sym(3); 4]; assert (isequal ( [a;b] , [1; 2; 3; 4] )) assert (isequal ( [a;b;a] , [1; 2; 3; 4; 1; 2] )) ***** test % row vectors a = [sym(1) 2]; b = [sym(3) 4]; assert (isequal ( [a;b] , [1 2; 3 4] )) assert (isequal ( [a;b;a] , [1 2; 3 4; 1 2] )) ***** test % row vector, other row a = [sym(1) 2]; assert (isequal ( [a; [sym(3) 4]] , [1 2; 3 4] )) ***** test % empty vectors v = [sym(1) sym(2)]; a = [v; []]; assert (isequal (a, v)) a = [[]; v; []]; assert (isequal (a, v)) a = [v; []; []]; assert (isequal (a, v)) ***** xtest % FIXME: is this Octave bug? worth worrying about syms x a = [x; [] []]; assert (isequal (a, x)) !!!!! known failure octave_base_value::map_value(): wrong type argument 'null_matrix' ***** test % more empty vectors v = [sym(1) sym(2)]; q = sym(ones(0, 2)); assert (isequal ([v; q], v)) ***** error v = [sym(1) sym(2)]; q = sym(ones(0, 3)); w = vertcat(v, q); ***** test % Octave 3.6 bug: should pass on 3.8.1 and matlab a = [sym(1) 2]; assert (isequal ( [a; [3 4]] , [1 2; 3 4] )) assert (isequal ( [a; sym(3) 4] , [1 2; 3 4] )) % more examples syms x [x [x x]; x x x]; [[x x] x; x x x]; [[x x] x; [x x] x]; [x x x; [x x] x]; ***** test % issue #700 A = sym ([1 2]); B = simplify (A); assert (isequal ([B; A], [A; B])) 11 tests, 10 passed, 1 known failure, 0 skipped [inst/@sym/inv.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/inv.m ***** test % scalar syms x assert (isequal (inv(x), 1/x)) ***** test % diagonal syms x A = [sym(1) 0; 0 x]; B = [sym(1) 0; 0 1/x]; assert (isequal (inv(A), B)) ***** test % 2x2 inverse A = [1 2; 3 4]; assert (max (max (abs (double (inv (sym (A))) - inv(A)))) <= 3*eps) ***** error syms a; A = [a a; a a]; inv(A) ***** error syms a; A = [a a]; inv(A) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/divisors.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/divisors.m ***** test assert( isequal( divisors(sym(150)), divisors(sym(-150)) )) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/gamma.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/gamma.m ***** error gamma (sym(1), 2) ***** assert (isequaln (gamma (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = gamma(x); f2 = gamma(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = gamma(A); f2 = gamma(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = gamma (d); f = gamma (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/cot.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cot.m ***** error cot (sym(1), 2) ***** assert (isequaln (cot (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = cot(x); f2 = cot(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = cot(A); f2 = cot(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = cot (d); f = cot (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/gammaln.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/gammaln.m ***** assert (isequal (gammaln (sym (3)), log (sym (2)))) ***** assert (isequal (gammaln (sym (10)), log (gamma (sym (10))))) ***** test % compare to Maple: evalf(lnGAMMA(Pi)); maple = vpa ('0.827694592323437101529578558452359951153502', 40); us = vpa (gammaln (sym(pi)), 40); assert (abs(double(maple-us)) < 1e-39) ***** test % compare to Maple: evalf(lnGAMMA(3+2*I)); maple = vpa ('-0.0316390593739611898037677296008797172022603', 40) + ... vpa ('2.02219319750132712401643376238334982100512j', 40); us = vpa (gammaln (sym(3) + 2i), 40); assert (abs(double(maple-us)) < 1e-39) ***** test % compare to Maple: evalf(lnGAMMA(-1.5)); % notably, @double/gammaln has zero imag part maple = vpa ('0.8600470153764810145109326816703567873271571', 40) - ... vpa ('6.2831853071795864769252867665590057683943388j', 40); us = vpa (gammaln (-sym(3)/2), 40); assert (abs(double(maple-us)) < 1e-39) ***** assert (gammaln (pi), double (gammaln (sym (pi))), -3*eps) ***** assert (gammaln (100), double (gammaln (sym (100))), -3*eps) ***** assert (gammaln (1e-3), double (gammaln (1/sym (1e3))), -100*eps) ***** test % round trip syms x f = gammaln (x); h = function_handle (f); A = h (1.1); B = gammaln (1.1); assert (A, B) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/horner.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/horner.m ***** error horner (sym(1), 2, 3) ***** assert (isAlways (horner(sym(1)) == 1)) ***** test syms x assert (isAlways (horner(x) == x)) ***** test syms x a p = a^2 + a*x + 2*a + 2*x; assert (isequal (horner (p, a), a*(a+x+2) + 2*x)) q = a^2 + 2*a + x*(a + 2); assert (isequal (horner (p, x), q)) assert (isequal (horner (p), q)) ***** test syms x p = poly2sym ([2 4 6 8], x); q = horner (p); assert (isAlways (p == q)) assert (isAlways (horner(2*x^3 + 4*x^2 + 6*x + 8) == q)) ***** test % non-sym input syms x assert (isequal (horner(6, x), sym(6))) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/atan2.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/atan2.m ***** error atan2 (1) ***** error atan2 (1, 2, 3) ***** test % some angles e = sym(1); a = atan2(0, e); assert (isequal (a, sym(0))) a = atan2(e, 0); assert (isequal (a, sym(pi)/2)) ***** test % symbols can give numerical answer syms x positive a = atan2(0, x); assert (isequal (a, sym(0))) a = atan2(x, 0); assert (isequal (a, sym(pi)/2)) a = atan2(-x, 0); assert (isequal (a, -sym(pi)/2)) ***** test % matrices x = sym([1 -2; 0 0]); y = sym([0 0; 8 -3]); a = atan2(y, x); sp = sym(pi); aex = [0 sp; sp/2 -sp/2]; assert (isequal (a, aex)) ***** test % round trip syms x y xd = -2; yd = -3; f = atan2 (x, y); A = atan2 (xd, yd); h = function_handle (f); B = h (xd, yd); assert (A, B, -eps) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/ellipticK.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticK.m ***** error ellipticK (sym(1), 2) ***** assert (isequal (ellipticK (sym (0)), sym (pi)/2)) ***** assert (isequal (ellipticK (sym (-inf)), sym (0))) ***** assert (double (ellipticK (sym (1)/2)), 1.854074677, 10e-10) ***** assert (double (ellipticK (sym (pi)/4)), 2.225253684, 10e-10) ***** assert (double (ellipticK (sym (-55)/10)), 0.9324665884, 10e-11) ***** test % compare to double ellipke m = 1/5; ms = sym(1)/5; [K, E] = ellipke (m); assert (double (ellipticK (ms)), K, -1e-15) assert (double (ellipticE (ms)), E, -1e-15) ***** test % compare to double ellipke if (exist ('OCTAVE_VERSION', 'builtin')) m = -10.3; ms = -sym(103)/10; [K, E] = ellipke (m); assert (double (ellipticK (ms)), K, -1e-15) assert (double (ellipticE (ms)), E, -1e-15) end ***** test % compare to Maple us = vpa (ellipticK (sym (7)), 40); % > evalf(EllipticK(sqrt(7)), 40); maple = vpa ('0.6168027921799632674669917683443602673441', 40) - ... vpa ('0.9114898734184488922164103102629560336918j', 40); assert (abs (double (maple - us)), 0, 1e-39) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/fix.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fix.m ***** test d = 3/2; x = sym('3/2'); f1 = fix(x); f2 = fix(d); assert (isequal (f1, f2)) ***** test D = [1.1 4.6; -3.4 -8.9]; A = [sym(11)/10 sym(46)/10; sym(-34)/10 sym(-89)/10]; f1 = fix(A); f2 = fix(D); assert( isequal (f1, f2)) ***** test d = sym(-11)/10; c = -1; assert (isequal (fix (d), c)) ***** test d = sym(-19)/10; c = -1; assert (isequal (fix (d), c)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/cat.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cat.m ***** test % mostly tested in horzcat, vertcat: one for good measure syms x assert (isequal (cat(1, x, x), [x x])) assert (isequal (cat(2, x, x), [x; x])) ***** error cat(3, sym(2), sym(3)) ***** error cat(0, sym(2), sym(3)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/subsref.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/subsref.m ***** shared a,b b = [1:4]; a = sym(b); ***** assert(isequal( a(1), b(1) )) ***** assert(isequal( a(2), b(2) )) ***** assert(isequal( a(4), b(4) )) ***** assert(isempty( a([]) )) ***** shared a,b b = [1:4]; b = [b; 3*b; 5*b]; a = sym(b); ***** assert(isequal( a(1), b(1) )) ***** assert(isequal( a(2), b(2) )) ***** assert(isequal( a(4), b(4) )) ***** assert(isequal( a(:,:), a )) ***** assert(isequal( a(1:2,1:3), a(1:2,1:3) )) ***** assert(isequal( a(1:2:3,[1 2 4]), b(1:2:3,[1 2 4]) )) ***** assert(isequal( a(1:2:3,[4 2 3 1]), b(1:2:3,[4 2 3 1]) )) ***** assert(isequal( a(1:2:3,[4 1 1 1]), b(1:2:3,[4 1 1 1]) )) ***** assert(isequal( a([],:), b([],:) )) ***** assert(isequal( size(a([],:)), [0 4] )) ***** assert(isequal( a(1:2,[]), b(1:2,[]) )) ***** assert(isequal( size(a(1:2,[])), [2 0] )) ***** assert(isempty( a(1:2,[]) )) ***** assert(isempty( a([],[]) )) ***** assert(isequal( a([],[]), sym([]) )) ***** assert(~isequal( a(1:2,[]), sym([]) )) ***** shared e e = sym([1 3 5; 2 4 6]); ***** assert(isequal( e(:), sym((1:6)') )) ***** assert(isequal( e([1 2 3]), sym([1 2 3]) )) ***** assert(isequal( e([1; 3; 4]), sym([1; 3; 4]) )) ***** assert(isempty( e([]) )) ***** assert(isempty( e('') )) ***** assert(isequal( e([]), sym([]) )) ***** shared a,b b = 1:5; a = sym(b); ***** assert(isequal( a([1 2 5]), b([1 2 5]) )) ***** assert(isequal( a([1; 2; 5]), b([1; 2; 5]) )) ***** shared x syms x ***** test % logical with empty result assert(isempty( x(false) )) a = [x x]; assert(isempty( a([false false]) )) ***** test % issue 18, scalar access assert(isequal( x(1), x )) assert(isequal( x(true), x )) ***** shared ***** test % older access tests syms x f = [x 2; 3 4*x]; % element access assert (logical( f(1,1) == x )) assert (logical( f(1,2) == 2 )) % linear access of 2d array assert (logical( f(1) == x )) assert (logical( f(2) == 3 )) % column based assert (logical( f(3) == 2 )) ***** shared a,b % effectively a random matrix a = reshape( round(50*(sin(1:20)+1)), 5,4); b = sym(a); ***** test % older array refs test assert (logical(b(1,1) == a(1,1))) assert (logical(b(3,1) == a(3,1))) assert (logical(b(1,3) == a(1,3))) assert (logical(b(4,4) == a(4,4))) ***** test % older array refs test: linear indices assert (logical(b(1) == a(1))) assert (logical(b(3) == a(3))) assert (logical(b(13) == a(13))) ***** test % older array refs test: end assert (all(all(logical( b(end,1) == a(end,1) )))) assert (all(all(logical( b(2,end) == a(2,end) )))) assert (all(all(logical( b(end,end) == a(end,end) )))) assert (all(all(logical( b(end-1,1) == a(end-1,1) )))) assert (all(all(logical( b(2,end-1) == a(2,end-1) )))) assert (all(all(logical( b(end-1,end-1) == a(end-1,end-1) )))) ***** shared ***** test % older slicing tests syms x a = [1 2 3 4 5 6]; a = [a; 3*a; 5*a; 2*a; 4*a]; b = sym(a); assert (isequal( b(:,1), a(:,1) )) assert (isequal( b(:,2), a(:,2) )) assert (isequal( b(1,:), a(1,:) )) assert (isequal( b(2,:), a(2,:) )) assert (isequal( b(:,:), a(:,:) )) assert (isequal( b(1:3,2), a(1:3,2) )) assert (isequal( b(1:4,:), a(1:4,:) )) assert (isequal( b(1:2:5,:), a(1:2:5,:) )) assert (isequal( b(1:2:4,:), a(1:2:4,:) )) assert (isequal( b(2:2:4,3), a(2:2:4,3) )) assert (isequal( b(2:2:4,3), a(2:2:4,3) )) ***** test % 2D arrays b = [1:4]; b = [b; 3*b; 5*b]; a = sym(b); I = rand(size(b)) > 0.5; assert (isequal (a(I), b(I))) I = I(:); assert (isequal (a(I), b(I))) I = I'; assert (isequal (a(I), b(I))) I = logical(zeros(size(b))); assert (isequal (a(I), b(I))) ***** test % 1D arrays, does right with despite warning r = [1:6]; ar = sym(r); c = r'; ac = sym(c); Ir = rand(size(r)) > 0.5; Ic = rand(size(c)) > 0.5; assert (isequal (ar(Ir), r(Ir))) assert (isequal (ac(Ic), c(Ic))) assert (isequal (ar(Ic), r(Ic))) assert (isequal (ac(Ir), c(Ir))) ***** test % rccross tests B = [1 2 3 4; 5 6 7 9; 10 11 12 13]; A = sym(B); assert (isequal (A([1 3],[2 3]), B([1 3], [2 3]) )) assert (isequal (A(1,[2 3]), B(1,[2 3]) )) assert (isequal (A([1 2],4), B([1 2],4) )) assert (isequal (A([2 1],[4 2]), B([2 1],[4 2]) )) assert (isequal (A([],[]), B([],[]) )) ***** error % issue #445 A = sym([10 11]); A(1.1) ***** error % issue #445 A = sym([10 11]); A(sym(4)/3) ***** error % issue #445 A = sym([1 2; 3 4]); A(1.1, 1) ***** error % issue #445 A = sym([1 2; 3 4]); A(1, sym(4)/3) ***** error A = sym([1 2; 3 4]); A(5) ***** shared a, b a = [1 2 3 5; 4 5 6 9; 7 5 3 2]; b = sym (a); ***** test c = true; assert (isequal (a(c), b(c))) c = false; assert (isequal (a(c), b(c))) ***** test c = [false true]; assert (isequal (a(c), b(c))) d = c | true; assert (isequal (a(d), b(d))) d = c & false; assert (isequal (a(d), b(d))) ***** test c = [false true false true; true false true false; false true false true]; assert (isequal (a(c), b(c))) d = c | true; assert (isequal (a(d), b(d))) d = c & false; assert (isequal (a(d), b(d))) ***** test c = [false true false true false]; assert (isequal (a(c), b(c))) d = c | true; assert (isequal (a(d), b(d))) d = c & false; assert (isequal (a(d), b(d))) ***** test c = [false; true; false; true; false]; assert (isequal (a(c), b(c))) d = c | true; assert (isequal (a(d), b(d))) d = c & false; assert (isequal (a(d), b(d))) ***** test c = [false true; false true; true false]; assert (isequal (a(c), b(c))) d = c | true; assert (isequal (a(d), b(d))) d = c & false; assert (isequal (a(d), b(d))) ***** shared ***** test % Orientation of empty results of logical indexing on row or column vectors r = [1:6]; c = r'; ar = sym(r); ac = sym(c); assert (isequal (ar(false), r(false))) assert (isequal (ac(false), c(false))) assert (isequal (ar(false (1, 6)), r(false (1, 6)))) assert (isequal (ac(false (1, 6)), c(false (1, 6)))) assert (isequal (ar(false (6, 1)), r(false (6, 1)))) assert (isequal (ac(false (6, 1)), c(false (6, 1)))) 50 tests, 50 passed, 0 known failure, 0 skipped [inst/@sym/psi.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/psi.m ***** assert (isequal (psi (sym (1)), -eulergamma)) ***** assert (isequal (psi (1, sym (1)), sym (pi)^2/6)) ***** assert (isinf (psi (sym ('inf')))) ***** test % compare to Maple: evalf(Psi(-101/100)); maple = vpa ('100.3963127058453949545769053445198842332424', 40); us = vpa (psi (sym (-101)/100), 40); assert (abs(double(maple-us)) < 1e-39) ***** test % compare to Maple: evalf(Psi(1, 3*I-2)); maple = vpa ('-0.1651414829219882371561038184133243839778799', 40) - ... vpa ('0.1960040752985823275302034466611711263617296j', 40); us = vpa (psi (1, sym (-2) + sym(3i)), 40); assert (abs(double(maple-us)) < 1e-39) ***** test % should match @double/psi if (exist ('psi','builtin')) assert (psi (pi), double (psi (sym (pi))), -3*eps) assert (psi (100), double (psi (sym (100))), -3*eps) assert (psi (1e-3), double (psi (1/sym (1e3))), -3*eps) if (exist ('OCTAVE_VERSION', 'builtin')) % 2014a doesn't support negative or complex arguments assert (psi (-1.5), double (psi (sym (-3)/2)), -3*eps) assert (psi (-8.3), double (psi (sym (-83)/10)),-4*eps) assert (psi (2i), double (psi (sym (2i))), -3*eps) assert (psi (10i+3), double (psi (sym (10i)+3)), -3*eps) end end ***** test % @double/psi loses accuracy near the poles: note higher rel tol if (exist ('psi','builtin')) if (exist ('OCTAVE_VERSION', 'builtin')) assert (psi (-1.1), double (psi (sym (-11)/10)), -6*eps) assert (psi (-1.01), double (psi (sym (-101)/100)), -50*eps) end end ***** test if (exist ('psi','builtin')) assert (psi (1, pi), double (psi (1, sym (pi))), -3*eps) assert (psi (1, 100), double (psi (1, sym (100))), -3*eps) assert (psi (1, 1e-4), double (psi (1, 1/sym (1e4))), -3*eps) end ***** test if (exist ('psi','builtin')) assert (psi (2, pi), double (psi (2, sym (pi))), -3*eps) assert (psi (2, 1000), double (psi (2, sym (1000))), -3*eps) assert (psi (2, 1e-4), double (psi (2, 1/sym (1e4))), -3*eps) end ***** test % round trip if (exist ('psi','builtin')) syms x f = psi (x); h = function_handle (f); A = h (1.1); B = psi (1.1); assert (A, B) end 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@sym/expand.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/expand.m ***** test syms x assert (logical (x^2 + 6*x + 5 == expand ((x+5)*(x+1)))) assert (isequal (x^2 + 6*x + 5, expand ((x+5)*(x+1)))) ***** test % array syms x assert (isequal (expand ([x (x+1)*x]), [x x^2+x])) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/ipermute.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ipermute.m ***** error permute (sym(1)) ***** error permute (sym(1), 2, 3) ***** test syms x A = [1 x]; perm = [2 1]; B = permute(A, perm); C = ipermute(B, perm); assert (isequal(C, A)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/min.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/min.m ***** test % scalars with dim a = min(sym(pi), [], 1); b = sym(pi); assert (isequal (a, b)); a = min(sym(pi), [], 2); assert (isequal (a, b)); a = max(sym(pi), [], 1); assert (isequal (a, b)); a = max(sym(pi), [], 2); assert (isequal (a, b)); ***** shared A, D D = [0 1 2 3]; A = sym(D); ***** test % row vectors assert (isequal (min(A), sym(min(D)))) assert (isequal (min(A), sym(0))) assert (isequal (max(A), sym(max(D)))) assert (isequal (max(A), sym(3))) ***** test % row vectors with dim assert (isequal (min(A, [], 1), sym(min(D, [], 1)))) assert (isequal (min(A, [], 2), sym(min(D, [], 2)))) assert (isequal (max(A, [], 1), sym(max(D, [], 1)))) assert (isequal (max(A, [], 2), sym(max(D, [], 2)))) ***** test % column vectors A = A.'; D = D.'; assert (isequal (min(A), sym(min(D)))) assert (isequal (min(A), sym(0))) assert (isequal (max(A), sym(max(D)))) assert (isequal (max(A), sym(3))) ***** test % row vectors with dim assert (isequal (min(A, [], 1), sym(min(D, [], 1)))) assert (isequal (min(A, [], 2), sym(min(D, [], 2)))) assert (isequal (max(A, [], 1), sym(max(D, [], 1)))) assert (isequal (max(A, [], 2), sym(max(D, [], 2)))) ***** shared ***** test % empty a = min(sym([])); assert(isempty(a)) a = max(sym([])); assert(isempty(a)) ***** test % matrix A = [1 4 6; 2 2 5]; A = sym(A); assert (isequal (min(A), sym([1 2 5]))) assert (isequal (min(A, [], 1), sym([1 2 5]))) assert (isequal (min(A, [], 2), sym([1; 2]))) assert (isequal (max(A), sym([2 4 6]))) assert (isequal (max(A, [], 1), sym([2 4 6]))) assert (isequal (max(A, [], 2), sym([6; 5]))) ***** test % index output is double not sym [m, I] = min(sym(2), [], 1); assert (strcmp(class(I), 'double')) [m, I] = max(sym(2), [], 1); assert (strcmp(class(I), 'double')) ***** test % empty rows/columns, I is double A = sym(zeros(0, 4)); [m, I] = min(A, [], 1); assert (strcmp(class(I), 'double')) [m, I] = max(A, [], 1); assert (strcmp(class(I), 'double')) A = sym(zeros(3, 0)); [m, I] = min(A, [], 2); assert (strcmp(class(I), 'double')) [m, I] = max(A, [], 2); assert (strcmp(class(I), 'double')) ***** test % index output A = [0 1 9; 10 7 4]; B = sym(A); [m1, I1] = min(A); [m2, I2] = min(B); assert (isequal (I1, I2)) assert (isequal (m1, double(m2))) [m1, I1] = max(A); [m2, I2] = max(B); assert (isequal (I1, I2)) assert (isequal (m1, double(m2))) ***** test % index output, with dim A = [0 1 9; 10 7 4]; B = sym(A); [m1, I1] = min(A, [], 1); [m2, I2] = min(B, [], 1); assert (isequal (I1, I2)) assert (isequal (m1, double(m2))) [m1, I1] = min(A, [], 2); [m2, I2] = min(B, [], 2); assert (isequal (I1, I2)) assert (isequal (m1, double(m2))) [m1, I1] = max(A, [], 1); [m2, I2] = max(B, [], 1); assert (isequal (I1, I2)) assert (isequal (m1, double(m2))) [m1, I1] = max(A, [], 2); [m2, I2] = max(B, [], 2); assert (isequal (I1, I2)) assert (isequal (m1, double(m2))) ***** test % empty columns A = sym(zeros(0, 4)); [m, I] = min(A, [], 1); assert (isequal (size(m), [0 4])) assert (isequal (size(I), [0 4])) [m, I] = max(A, [], 1); assert (isequal (size(m), [0 4])) assert (isequal (size(I), [0 4])) ***** test % empty rows A = sym(zeros(3, 0)); [m, I] = min(A, [], 2); assert (isequal (size(m), [3 0])) assert (isequal (size(I), [3 0])) [m, I] = max(A, [], 2); assert (isequal (size(m), [3 0])) assert (isequal (size(I), [3 0])) ***** test % another empty case % we differ slightly from double which gives 1x0/0x1 A = sym(zeros(3, 0)); [m, I] = min(A, [], 1); assert (isempty (m)) assert (isempty (I)) A = sym(zeros(0, 3)); [m, I] = min(A, [], 2); assert (isempty (m)) assert (isempty (I)) ***** test % empty without index output A = sym(zeros(3, 0)); assert (isempty (min (A, [], 1))) assert (isempty (max (A, [], 1))) assert (isempty (min (A, [], 2))) assert (isempty (max (A, [], 2))) A = sym(zeros(0, 3)); assert (isempty (min (A, [], 1))) assert (isempty (max (A, [], 1))) assert (isempty (min (A, [], 2))) assert (isempty (max (A, [], 2))) ***** test % binary op form, one a scalar A = sym([3 1 9]); m = min(A, sym(2)); M = max(A, sym(2)); assert (isequal (m, sym([2 1 2]))) assert (isequal (M, sym([3 2 9]))) m = min(sym(2), A); M = max(sym(2), A); assert (isequal (m, sym([2 1 2]))) assert (isequal (M, sym([3 2 9]))) ***** test % binary op form, both scalar m = min(sym(1), sym(2)); M = max(sym(2), sym(2)); assert (isequal (m, sym(1))) assert (isequal (M, sym(2))) ***** test syms x y assert (isequal (children (min (x, y)), [x y])) ***** test syms x y z A = [x 1; y z]; assert (isequal (min (A, [], 1), [min(x, y) min(1, z)])) assert (isequal (max (A, [], 1), [max(x, y) max(1, z)])) assert (isequal (min (A, [], 2), [min(x, 1); min(y, z)])) assert (isequal (max (A, [], 2), [max(x, 1); max(y, z)])) ***** test syms x y positive a = min([x 2 y -6]); assert (isequal (a, -6)) a = max([x y -6]); assert (isequal (a, max(x, y))) ***** test syms x negative a = min([x 6 10]); assert (isequal (a, x)) a = max([x -2 6]); assert (isequal (a, 6)) 21 tests, 21 passed, 0 known failure, 0 skipped [inst/@sym/reshape.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/reshape.m ***** test d = [2 4 6; 8 10 12]; a = sym(d); assert (isequal (reshape(a, [1 6]), reshape(d, [1 6]))) assert (isequal (reshape(a, 1, 6), reshape(d, 1, 6))) assert (isequal (reshape(a, 2, 3), reshape(d, 2, 3))) assert (isequal (reshape(a, 3, 2), reshape(d, 3, 2))) assert (isequal (reshape(a, 6, 1), reshape(d, 6, 1))) ***** shared x, a, d syms x a = [1 x^2 x^4; x x^3 x^5]; d = [0 2 4; 1 3 5]; ***** test b = reshape(a, [1 6]); assert (isequal (size(b), [1 6])) assert (isequal (b, x.^reshape(d,1,6))) ***** test b = reshape(a, [6 1]); assert (isequal (size(b), [6 1])) assert (isequal (b, x.^reshape(d,6,1))) b = reshape(b, size(a)); assert (isequal (size(b), [2 3])) assert (isequal (b, a)) ***** test b = a(:); assert( isequal (size(b), [6 1])) assert( isequal (b, x.^(d(:)))) ***** test % reshape scalar assert (logical( reshape(x, 1, 1) == x )) assert (logical( reshape(x, [1 1]) == x )) ***** shared a syms a ***** error reshape(a, 2, 1) ***** error reshape(a, 1, 2) ***** error reshape(a, 1, 1, 1) ***** error reshape(a, [1, 1, 1]) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/tanh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/tanh.m ***** error tanh (sym(1), 2) ***** assert (isequaln (tanh (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = tanh(x); f2 = tanh(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = tanh(A); f2 = tanh(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = tanh (d); f = tanh (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/asin.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/asin.m ***** error asin (sym(1), 2) ***** assert (isequaln (asin (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = asin(x); f2 = asin(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = asin(A); f2 = asin(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = asin (d); f = asin (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/function_handle.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/function_handle.m ***** shared x,y,z syms x y z ***** test % basic test h = function_handle(2*x); assert(isa(h, 'function_handle')) assert(h(3)==6) ***** test % autodetect inputs h = function_handle(2*x*y, x+y); [t1, t2] = h(3,5); assert(t1 == 30 && t2 == 8) ***** test % specified inputs h = function_handle(2*x*y, 'vars', [x y]); assert(h(3,5)==30) h = function_handle(2*x*y, x+y, 'vars', [x y]); [t1, t2] = h(3,5); assert(t1 == 30 && t2 == 8) ***** test % cell arrays for vars list h = function_handle(2*x*y, x+y, 'vars', {x y}); [t1, t2] = h(3,5); assert(t1 == 30 && t2 == 8) h = function_handle(2*x*y, x+y, 'vars', {'x' 'y'}); [t1, t2] = h(3,5); assert(t1 == 30 && t2 == 8) ***** test % cell arrays specify order, overriding symvar order h = function_handle(x*y, 12/y, 'vars', {y x}); [t1, t2] = h(3, 6); assert(t1 == 18 && t2 == 4) h = function_handle(x*y, 12/y, 'vars', [y x]); [t1, t2] = h(3, 6); assert(t1 == 18 && t2 == 4) ***** test % cell arrays specify order, overriding symvar order h = function_handle(x*y, 12/y, 'vars', {y x}); [t1, t2] = h(3, 6); assert(t1 == 18 && t2 == 4) h = function_handle(x*y, 12/y, 'vars', [y x]); [t1, t2] = h(3, 6); assert(t1 == 18 && t2 == 4) ***** test % Functions with different names in Sympy. f = abs(x); % becomes Abs(x) h = function_handle(f); assert(h(-10) == 10) f = ceil(x); h = function_handle(f); assert(h(10.1) == 11) ***** test % 'file' with empty filename returns handle h = function_handle(2*x*y, 'file', ''); assert(isa(h, 'function_handle')) assert(h(3,5)==30) h = function_handle(2*x*y, 'vars', {x y}, 'file', ''); assert(isa(h, 'function_handle')) assert(h(3,5)==30) ***** test % output to disk fprintf('\n') if (exist ('OCTAVE_VERSION', 'builtin')) temp_file = tempname('', 'oct_'); else temp_file = tempname(); end % allow loading function from temp_file [temp_path, ans, ans] = fileparts(temp_file); addpath(temp_path); f = function_handle(2*x*y, 2^x, 'vars', {x y z}, 'file', temp_file); assert( isa(f, 'function_handle')) addpath(temp_path); % Matlab 2014a needs this? [a,b] = f(10,20,30); assert (isnumeric (a) && isnumeric (b)) assert (a == 400) assert (b == 1024) if (exist ('OCTAVE_VERSION', 'builtin')) assert (unlink([temp_file '.m']) == 0) else delete ([temp_file '.m']) end % remove temp_path from load path rmpath(temp_path); Wrote file /tmp/oct_ap4ToP.m. ***** test % output to disk: also works with .m specified if (exist ('OCTAVE_VERSION', 'builtin')) temp_file = [tempname('', 'oct_') '.m']; else temp_file = [tempname() '.m']; end % allow loading function from temp_file [temp_path, ans, ans] = fileparts(temp_file); addpath(temp_path); f = function_handle(2*x*y, 2^x, 'vars', {x y z}, 'file', temp_file); assert( isa(f, 'function_handle')) addpath(temp_path); % Matlab 2014a needs this? [a,b] = f(10,20,30); assert (isnumeric (a) && isnumeric (b)) assert (a == 400) assert (b == 1024) if (exist ('OCTAVE_VERSION', 'builtin')) assert (unlink(temp_file) == 0) else delete (temp_file) end % remove temp_path from load path rmpath(temp_path); Wrote file /tmp/oct_4iIuq6.m. ***** test % non-scalar outputs H = [x y z]; M = [x y; z 16]; V = [x;y;z]; h = function_handle(H, M, V); [t1,t2,t3] = h(1,2,3); assert(isequal(t1, [1 2 3])) assert(isequal(t2, [1 2; 3 16])) assert(isequal(t3, [1;2;3])) ***** test % non-scalar outputs in .m files H = [x y z]; M = [x y; z 16]; V = [x;y;z]; if (exist ('OCTAVE_VERSION', 'builtin')) temp_file = tempname('', 'oct_'); else temp_file = tempname(); end % allow loading function from temp_file [temp_path, ans, ans] = fileparts(temp_file); addpath(temp_path); h = function_handle(H, M, V, 'vars', {x y z}, 'file', temp_file); assert( isa(h, 'function_handle')) addpath(temp_path); % Matlab 2014a needs this? [t1,t2,t3] = h(1,2,3); assert(isequal(t1, [1 2 3])) assert(isequal(t2, [1 2; 3 16])) assert(isequal(t3, [1;2;3])) if (exist ('OCTAVE_VERSION', 'builtin')) assert (unlink([temp_file '.m']) == 0) else delete ([temp_file '.m']) end % remove temp_path from load path rmpath(temp_path); Wrote file /tmp/oct_ZHCGLj.m. ***** test % order of outputs is lexiographic syms a A x y f = y + 10*a + 100*x + 1000*A; h = function_handle(f); assert (h(1, 2, 3, 4) == 1000 + 20 + 300 + 4) ***** test % https://github.com/gnu-octave/symbolic/issues/854 f = function_handle (x + 1i*sqrt (sym(3))); assert (f (1), complex (1, sqrt (3)), -eps) 14 tests, 14 passed, 0 known failure, 0 skipped [inst/@sym/coshint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/coshint.m ***** error coshint (sym(1), 2) ***** xtest assert (isequaln (coshint (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (coshint (sym (nan)), sym (nan))) failed ***** shared x, d d = 1; x = sym('1'); ***** test f1 = coshint(x); f2 = 0.8378669409802082408947; assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = coshint(A); f2 = 0.8378669409802082408947; f2 = [f2 f2; f2 f2]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = coshint (d); f = coshint (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 4 passed, 1 known failure, 0 skipped [inst/@sym/isconstant.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isconstant.m ***** test syms x A = [x 2 3]; B = [false true true]; assert (isequal (isconstant (A), B)) ***** test syms x A = [x 2; 3 x]; B = [false true; true false]; assert (isequal (isconstant (A), B)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/sort.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sort.m ***** error sort (sym(1), 2) ***** test f = [sym(1), sym(0)]; expected = sym([0, 1]); assert (isequal (sort(f), expected)) ***** test f = [sym(1)]; expected = sym(1); assert (isequal (sort(f), expected)) ***** test f = [sym(3), sym(2), sym(6)]; s = sort(f); expected_s = sym([2, 3, 6]); assert (isequal (s, expected_s)) ***** test f = [sym(pi), sin(sym(2)), sqrt(sym(6))]; s = sort(f); expected_s = sym([sin(sym(2)), sqrt(sym(6)), sym(pi)]); assert (isequal (s, expected_s)) ***** test f = [sym(1), sym(2); sym(2), sym(pi); sym(pi), sym(1)]; s = sort(f); expected_s = ([sym(1), sym(1); sym(2), sym(2); sym(pi), sym(pi)]); assert (isequal (s, expected_s)) ***** assert (isequal (sort(sym([])), sym([]))) ***** error sort([sym('x') 1]) ***** test % but with assumptions, symbols can be sorted p = sym('p', 'positive'); n = sym('n', 'negative'); expected_s = [n p]; s = sort ([p n]); assert (isequal (s, expected_s)) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/eig.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/eig.m ***** test % basic A = [1 2; 3 4]; B = sym(A); sd = eig(A); s = eig(B); s2 = double(s); assert (norm(sort(s2) - sort(sd)) <= 10*eps) ***** test % scalars syms x a = sym(-10); assert (isequal (eig(a), a)) assert (isequal (eig(x), x)) ***** test % diag, multiplicity A = diag([6 6 7]); B = sym(A); e = eig(B); assert (isequal (size (e), [3 1])) assert (sum(logical(e == 6)) == 2) assert (sum(logical(e == 7)) == 1) ***** test % matrix with symbols syms x y positive A = [x+9 y; sym(0) 6]; s = eig(A); s = simplify(s); assert (isequal (s, [x+9; 6]) || isequal (s, [6; x+9])) ***** test % eigenvects e = sym([5 5 5 6 7]); A = diag(e); [V, D] = eig(A); assert (isequal (diag(D), e.')) assert (isequal (V, diag(sym([1 1 1 1 1])))) ***** test % alg/geom mult, eigenvects e = sym([5 5 5 6]); A = diag(e); A(1,2) = 1; [V, D] = eig(A); assert (isequal (diag(D), e.')) assert (sum(logical(V(1,:) ~= 0)) == 2) assert (sum(logical(V(2,:) ~= 0)) == 0) assert (sum(logical(V(3,:) ~= 0)) == 1) assert (sum(logical(V(4,:) ~= 0)) == 1) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/ne.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ne.m ***** test % simple x = sym(1); y = sym(1); e = x ~= y; assert (~logical (e)) x = sym(1); y = sym(2); e = x ~= y; assert (logical(e)) ***** test % array -- array syms x a = sym([1 3 3 2*x]); b = sym([2 x 3 10]); e = a ~= b; assert (isa (e, 'sym')) assert (logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), 3 ~= x)) assert (~logical (e(3))) assert (isa (e(4), 'sym')) assert (isequal (e(4), 2*x ~= 10)) ***** test % oo syms oo x e = oo ~= x; assert (isa (e, 'sym')) s = strtrim (disp (e, 'flat')); % SymPy <= 0.7.6.x will be '!=', newer gives 'Ne', test both assert (strcmp (s, 'oo != x') || strcmp (s, 'Ne(oo, x)')) ***** test % nan syms oo x snan = sym(nan); e = snan ~= sym(0); assert (logical (e)) e = snan ~= snan; assert (logical (e)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/chebyshevT.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/chebyshevT.m ***** error chebyshevT (sym(1)) ***** error chebyshevT (sym(1), 2, 3) ***** assert (isequaln (chebyshevT (2, sym(nan)), sym(nan))) ***** shared x syms x ***** assert(isequal(chebyshevT(0, x), sym(1))) ***** assert(isequal(chebyshevT(1, x), x)) ***** assert(isequal(chebyshevT(2, x), 2*x*x - 1)) ***** assert(isequal(chebyshevT([0 1 2], x), [sym(1) x (2*x*x-1)])) ***** test % round trip syms n z f = chebyshevT (n, z); h = function_handle (f, 'vars', [n z]); A = h (1.1, 2.2); B = chebyshevT (1.1, 2.2); assert (A, B) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/svd.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/svd.m ***** test % basic A = [1 2; 3 4]; B = sym(A); sd = svd(A); s = svd(B); s2 = double(s); assert (norm(s2 - sd) <= 10*eps) ***** test % scalars syms x syms y positive a = sym(-10); assert (isequal (svd(a), sym(10))) assert (isequal (svd(x), sqrt(x*conj(x)))) assert (isequal (svd(y), y)) ***** test % matrix with symbols syms x positive A = [x+1 0; sym(0) 2*x+1]; s = svd(A); s2 = subs(s, x, 2); assert (isequal (s2, [sym(5); 3])) ***** test % matrix with symbols syms x positive A = [x+1 0; sym(0) 2*x+1]; s = svd(A); s2 = subs(s, x, 2); assert (isequal (s2, [sym(5); 3])) ***** test % matrix with symbols, nonneg sing values syms x real A = [x 0; 0 sym(-5)]; s = svd(A); assert (isequal (s, [abs(x); 5])) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/isvector.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isvector.m ***** assert(isvector(sym('x'))) ***** assert(isvector(sym([1 2 3]))) ***** assert(isvector(sym([1; 2]))) ***** assert(~isvector(sym([1 2; 3 4]))) ***** assert(~isvector(sym([]))) ***** assert(isvector(sym(ones(1,0)))) ***** assert(~isvector(sym(ones(0,3)))) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/acot.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acot.m ***** error acot (sym(1), 2) ***** assert (isequaln (acot (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = acot(x); f2 = acot(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = acot(A); f2 = acot(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = acot (d); f = acot (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/frac.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/frac.m ***** test f1 = frac(sym(11)/10); f2 = sym(1)/10; assert (isequal (f1, f2)) ***** test d = sym(-11)/10; c = sym(9)/10; assert (isequal (frac (d), c)) ***** test d = sym(-19)/10; c = sym(1)/10; assert (isequal (frac (d), c)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/charpoly.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/charpoly.m ***** error charpoly (sym (1), 1, 2) ***** error charpoly (sym ([1 2])) ***** test syms x A = sym([1 2; 3 4]); assert (isequal (charpoly(A, x), x^2 - 5*x -2)) ***** test syms x A = sym([1 2; 3 4]); B = sym([1 -5 -2]); assert (isequal (charpoly(A), B)) ***** test syms x A = sym([x x; x x]); B = sym([1 -2*x 0]); assert (isequal (charpoly(A), B)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/ezsurf.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ezsurf.m ***** error syms u v t ezsurf(u*v, 2*u*v, 3*v*t) ***** error syms u v t ezsurf(u*v, 2*u*v, u*v*t) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/euler.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/euler.m ***** error euler (sym(1), 2, 3) ***** assert (isequal (euler (sym(0)), sym(1))) ***** test m = sym([0 1 2; 8 10 888889]); A = euler (m); B = sym([1 0 -1; 1385 -50521 0]); assert (isequal (A, B)) ***** test syms x assert (isequal (euler(6, x), x^6 - 3*x^5 + 5*x^3 - 3*x)) ***** assert (isnan (euler (3, sym(nan)))) ***** test syms m x em = euler (m, x); A = subs(em, [m x], [2 sym(pi)]); assert (isequal (A, sym(pi)^2 - sym(pi))) ***** test % vectorized syms x y A = euler([1; 2], [x; y]); B = [x - sym(1)/2; y^2 - y]; assert (isequal (A, B)) ***** test % round trip syms m z f = euler (m, z); h = function_handle (f, 'vars', [m z]); A = h (2, 2.2); B = euler (2, 2.2); assert (A, B) ***** test % compare vpa to maple: Digits:=34; evalf(euler(13, exp(1)+Pi*I/13)); A = vpa('1623.14184180556920918624604530515') + ... vpa('4270.98066989140286451493108809574')*1i; z = vpa (exp(1), 32) + vpa(pi, 32)/13*1i; B = euler (13, z); relerr = abs(double(abs((B - A)/A))); assert (relerr < 20*eps); ***** xtest % as above, high-prec result broken in 1.12: https://github.com/sympy/sympy/issues/24156 A = vpa('1623.14184180556920918624604530515') + ... vpa('4270.98066989140286451493108809574')*1i; z = vpa (exp(1), 32) + vpa(pi, 32)/13*1i; B = euler (13, z); relerr = abs(double(abs((B - A)/A))); assert (relerr < 2e-31); !!!!! known failure assert (relerr < 2e-31) failed 10 tests, 9 passed, 1 known failure, 0 skipped [inst/@sym/simplify.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/simplify.m ***** shared x,p,q syms x p = x^2 + x + 1; q = horner (p); ***** assert(~isequal( p - q, 0)) ***** assert(isequal( simplify(p - q), 0)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/ellipticPi.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticPi.m ***** error ellipticPi (sym (1)) ***** error ellipticPi (sym (1), 2, 3, 4) ***** assert (double (ellipticPi (sym (-23)/10, sym (pi)/4, 0)), 0.5876852228, 10e-11) ***** assert (double (ellipticPi (sym (1)/3, sym (pi)/3, sym (1)/2)), 1.285032276, 10e-11) ***** assert (double (ellipticPi (sym (2), sym (pi)/6, sym (2))), 0.7507322117, 10e-11) ***** xtest % FIXME: search/report upstream assert (double (ellipticPi (sym (-1), 0, sym (1))), 0) !!!!! known failure ASSERT errors for: assert (double (ellipticPi (sym (-1), 0, sym (1))),0) Location | Observed | Expected | Reason () NaN 0 'NaN' mismatch ***** xtest % FIXME: this is a regression somewhere: loss of precision: Issue #1064 % compare to Maple, complete us = vpa (ellipticPi (sym(1)/6, sym(4)/3), 40); % > evalf(EllipticPi(sin(1/6), sqrt(4/3)), 40); maple = vpa ('2.019271696236161760696477679310987869058', 40) - ... vpa ('1.708165765120289929280805062355360570830j', 40); assert (abs (double (maple - us)), 0, 2e-39) !!!!! known failure ASSERT errors for: assert (abs (double (maple - us)),0,2e-39) Location | Observed | Expected | Reason () 5.7666e-32 0 Abs err 5.7666e-32 exceeds tol 2e-39 by 6e-32 ***** test % compare to Maple, complete us = vpa (ellipticPi (sym(1)/6, sym(4)/3), 40); % > evalf(EllipticPi(sin(1/6), sqrt(4/3)), 40); maple = vpa ('2.019271696236161760696477679310987869058', 40) - ... vpa ('1.708165765120289929280805062355360570830j', 40); assert (abs (double (maple - us)), 0, 2e-30) ***** test % compare to Maple, incomplete us = vpa (ellipticPi (sym(8)/7, sym(4)/3, sym(2)/7), 40); % > evalf(EllipticPi(sin(4/3), 8/7, sqrt(2/7)), 40); maple = vpa ('2.089415796799294830305265090302275542033', 40) - ... vpa ('4.798862045930802761256228043192491271947j', 40); assert (abs (double (maple - us)), 0, 6e-39) 9 tests, 7 passed, 2 known failures, 0 skipped [inst/@sym/ceil.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ceil.m ***** error ceil (sym(1), 2) ***** assert (isequaln (ceil (sym(nan)), sym(nan))) ***** shared x, d d = 3/2; x = sym('3/2'); ***** test f1 = ceil(x); f2 = ceil(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = ceil(A); f2 = ceil(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = ceil (d); f = ceil (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/expm.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/expm.m ***** test % scalar syms x assert (isequal (expm(x), exp(x))) ***** test % diagonal A = [sym(1) 0; 0 sym(3)]; B = [exp(sym(1)) 0; 0 exp(sym(3))]; assert (isequal (expm(A), B)) ***** test % diagonal w/ x syms x positive A = [sym(1) 0; 0 x+2]; B = [exp(sym(1)) 0; 0 exp(x+2)]; assert (isequal (expm(A), B)) ***** test % non-diagonal syms x positive A = [sym(1) 2; 0 x+2]; B = expm(A); C = double(subs(B, x, 4)); D = expm(double(subs(A, x, 4))); assert (max (max (abs (C - D))) <= 1e-11) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/mpower.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/mpower.m ***** test syms x assert(isequal(x^(sym(4)/5), x.^(sym(4)/5))) ***** test % integer powers of scalars syms x assert (isequal (x^2, x*x)) assert (isequal (x^sym(3), x*x*x)) ***** test % array ^ integer syms x y A = [x 2; y 4]; assert (isequal (A^2, A*A)) assert (isequal (simplify(A^3 - A*A*A), [0 0; 0 0])) ***** test % array ^ rational Ad = [1 2; 0 3]; A = sym(Ad); B = A^(sym(1)/3); Bd = Ad^(1/3); assert (max(max(abs(double(B) - Bd))) < 1e-14) ***** test % non-integer power A = sym([1 2; 0 3]); B = A^pi; C = [1 -1+3^sym(pi); 0 sym(3)^pi]; assert (isequal (B, C)) ***** test % matpow syms n A = sym([1 2; 3 4]); B = A^n; C = 10 + B + B^2; D = subs(C, n, 1); E = 10 + A + A^2; assert (isequal (simplify(D), simplify(E))) ***** test % matpow, sub in zero gives identity A = sym([1 2; 0 3]); syms n; B = A^n; C = subs(B, n, 1); assert (isequal (C, A)) C = subs(B, n, 0); assert (isequal (C, sym(eye(2)))) ***** xtest % scalar^array (e.g., defined by matrix exponential) not implemented in SymPy? % on 1.0 < SymPy <= 1.5.1, you can form the expression but still cannot eval syms x A = [1 2; 3 4]; B = x^A; assert (strcmp (regexprep (disp (B, 'flat'), '\s+', ''), 'x**Matrix([[1,2],[3,4]])')) % sub in and compare to double Bs = subs(B, x, sym(3)/2); D1 = double(Bs); D2 = (3/2)^[1 2; 3 4]; assert (max(max(abs(D1 - D2))) < 1e-14) !!!!! known failure Python exception: TypeError: unsupported operand type(s) for ** or pow(): 'Symbol' and 'MutableDenseMatrix' occurred at line 2 of the Python code block: return x**y ***** error A = sym([1 2; 3 4]); B = A^A; 9 tests, 8 passed, 1 known failure, 0 skipped [inst/@sym/diff.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/diff.m ***** shared x,y,z syms x y z ***** test % basic assert(logical( diff(sin(x)) - cos(x) == 0 )) assert(logical( diff(sin(x),x) - cos(x) == 0 )) assert(logical( diff(sin(x),x,x) + sin(x) == 0 )) ***** test % these fail when doubles are not converted to sym assert(logical( diff(sin(x),x,2) + sin(x) == 0 )) assert(logical( diff(sym(1),x) == 0 )) assert(logical( diff(1,x) == 0 )) assert(logical( diff(pi,x) == 0 )) ***** test % symbolic diff of const (w/o variable) fails in sympy, but we work around assert (isequal (diff(sym(1)), sym(0))) ***** test % nth symbolic diff of const assert (isequal (diff(sym(1), 2), sym(0))) assert (isequal (diff(sym(1), sym(1)), sym(0))) ***** test % octave's vector difference still works assert(isempty(diff(1))) assert((diff([2 6]) == 4)) ***** test % other forms f = sin(x); g = diff(f,x,2); assert (isequal (diff(f,2), g)) assert (isequal (diff(f,sym(2)), g)) g = diff(f,x); assert (isequal (diff(f), g)) assert (isequal (diff(f,1), g)) ***** test % old SMT supported (still does?) the 'n' before the 'x' % we might remove this someday, no longer seems documented in SMT f = sin(x); g = diff(f,x,2); assert (isequal (diff(f,2,x), g)) assert (isequal (diff(f,sym(2),x), g)) g = diff(f,x); assert (isequal (diff(f,1,x), g)) ***** test % matrix A = [x sin(x); x*y 10]; B = [1 cos(x); y 0]; assert(isequal(diff(A,x),B)) ***** test % bug: use symvar a = x*y; b = diff(a); assert (isequal (b, y)) ***** test % bug: symvar should be used on the matrix, not comp-by-comp a = [x y x*x]; b = diff(a); assert (~isequal (b(2), 1)) assert (isequal (b, [1 0 2*x])) b = diff(a,1); assert (~isequal (b(2), 1)) assert (isequal (b, [1 0 2*x])) 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@sym/erfinv.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/erfinv.m ***** error erfinv (sym(1), 2) ***** assert (isequaln (erfinv (sym(nan)), sym(nan))) ***** shared x, d d = 1/2; x = sym('1/2'); ***** test f1 = erfinv(x); f2 = erfinv(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = erfinv(A); f2 = erfinv(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = erfinv (d); f = erfinv (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/ei.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ei.m ***** test syms x f = ei(sym(0)); assert (double(f) == -inf) ***** test D = [1.895117816355937 4.954234356001890]; A = ei(sym([1 2])); assert (all (abs(double(A) - D) < 1e-15)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/end.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/end.m ***** test % scalar syms x y = x(1:end); assert (isequal (x, y)) ***** test % vector syms x A = [1 2 x 4]; y = A(end-1:end); assert (isequal (y, [x 4])) ***** test % subset of matrix syms x A = [1 2 x; x 3 9; 4 x*x 6]; y = A(end,1:end-1); assert (isequal (y, [4 x*x])) ***** test % linear index of matrix syms x A = [1 2 x; x 3 9]; y = A(end); assert (isequal (y, sym(9))) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/find.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/find.m ***** error find (sym (1), 2, 3, 4) ***** error [x, y, z, w] = find (sym (1)) ***** test syms x y positive assert (isequal (find ([0 x 0 y]), [2 4])) assert (isequal (find ([0 x 0 y], 1), 2)) assert (isequal (find ([0 x 0 y], 1, 'first'), 2)) assert (isequal (find ([0 x 0 y], 1, 'last'), 4)) assert (isequal (find ([0 x 0 y], 2, 'last'), [2 4])) ***** test % its enough that it could be non-zero, does not have to be syms x y assert (isequal (find ([0 x+y]), 2)) ***** test % false should not be found syms x y assert (isequal (find ([x==x x==y]), 1)) assert (isequal (find ([x==y]), [])) ***** test % and/or should be treated as boolean syms x y assert (isequal (find ([or(x==y, x==2*y) x==y x==x]), 3)) ***** test % None none = pycall_sympy__ ('return None'); assert (isequal (find ([sym(0) none sym(1)]), 3)) syms x y assert (isequal (find ([x==y none x==x]), 3)) ***** test % two output syms x y A = [x 0 0; x+y 5 0]; [i, j] = find (A); assert (isequal (i, [1; 2; 2])) assert (isequal (j, [1; 1; 2])) ***** test % three output syms x y A = [x 0 0; x+y 5 0]; [i, j, v] = find (A); assert (isequal (i, [1; 2; 2])) assert (isequal (j, [1; 1; 2])) assert (isequal (v, [x; x+y; sym(5)])) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/mldivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/mldivide.m ***** test % scalar syms x assert (isa( x\x, 'sym')) assert (isequal( x\x, sym(1))) assert (isa( 2\x, 'sym')) assert (isa( x\2, 'sym')) ***** test % scalar \ matrix: easy, no system D = 2*[0 1; 2 3]; A = sym(D); assert (isequal ( 2 \ A , D/2 )) assert (isequal ( sym(2) \ A , D/2 )) ***** test % singular matrix A = sym([1 2; 2 4]); b = sym([5; 10]); x = A \ b; syms c1 y = [-2*c1 + 5; c1]; assert (isequal (x, y)) ***** test % singular matrix, mult RHS A = sym([1 2; 2 4]); B = sym([[5; 10] [0; 2] [0; 0]]); x = A \ B; syms c1 c5 y = [-2*c1 + 5 nan -2*c5; c1 nan c5]; assert (isequaln (x, y)) ***** warning % vpa, nearly singular matrix A = sym([1 2; 2 4]); A(1,1) = vpa('1.001'); b = sym([1; 2]); x = A \ b; y = [sym(0); vpa('0.5')]; assert (isequal (x, y)) ***** warning % vpa, singular rhs A = sym([1 2; 2 4]); b = [vpa('1.01'); vpa('2')]; x = A \ b; assert (all(isnan(x))) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/ellipticCE.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticCE.m ***** error ellipticCE (sym (1), 2) ***** assert (isequal (ellipticCE (sym (0)), sym (1))) ***** assert (isequal (ellipticCE (sym (1)), sym (pi)/2)) ***** assert (double (ellipticCE (sym (pi)/4)), 1.482786927, 10e-10) ***** assert (double (ellipticCE (sym (pi)/2)), 1.775344699, 10e-10) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/ezcontour.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ezcontour.m ***** error syms x y z ezcontour (x*y*z) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/subsasgn.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/subsasgn.m ***** shared a,b b = [1:4]; a = sym(b); ***** test a(1) = 10; b(1) = 10; assert(isequal( a, b )) ***** test I = logical([1 0 1 0]); a(I) = 2; b(I) = 2; assert(isequal( a, b )) ***** test I = logical([1 0 1 0]); a(I) = [2 4]; b(I) = [2 4]; assert(isequal( a, b )) ***** test I = logical([1 0 1 0]); a(I) = [2; 4]; b(I) = [2; 4]; assert(isequal( a, b )) ***** shared ***** test b = 1:4; b = [b; 2*b; 3*b]; a = sym(b); rhs = [10 11; 12 13]; a([1:2],[1:2]) = rhs; b([1:2],[1:2]) = rhs; assert(isequal( a, b )) a(1:2,1:2) = rhs; assert(isequal( a, b )) ***** test % slice : b = 1:4; b = [b; 2*b]; a = sym(b); rhs = [10 11; 12 13]; a(:,2:3) = rhs; b(:,2:3) = rhs; assert(isequal( a, b )) ***** test % grow 2D b = 1:4; b = [b; 2*b]; a = sym(b); rhs = [10 11; 12 13]; a([1 end+1],end:end+1) = rhs; b([1 end+1],end:end+1) = rhs; assert(isequal( a, b )) ***** test % grow from nothing clear a a(3) = sym (1); b = sym ([0 0 1]); assert (isequal (a, b)) ***** test % grow from nothing, 2D clear a a(2, 3) = sym (1); b = sym ([0 0 0; 0 0 1;]); assert (isequal (a, b)) ***** test % linear indices of 2D b = 1:4; b = [b; 2*b; 3*b]; a = sym(b); b(1:4) = [10 11 12 13]; a(1:4) = [10 11 12 13]; assert(isequal( a, b )) b(1:4) = [10 11; 12 13]; a(1:4) = [10 11; 12 13]; assert(isequal( a, b )) ***** error % Wrong shape matrix RHS: Matlab/Octave don't allow this on doubles. % Matlab SMT 2013b gets it wrong. We throw an error. rhs = [10 11; 12 13]; a = sym (magic (3)); a(1:2,1:2) = rhs(:); ***** test % Issue #963: vector RHS with diff orientation from 2D indexing b = 1:4; b = [b; 2*b; 3*b]; a = sym(b); b(1:2:3, 1) = 11:2:13; a(1:2:3, 1) = sym(11:2:13); assert (isequal (a, b)) b(1:2:3, 1) = 1:2:3; a(1:2:3, 1) = 1:2:3; assert (isequal (a, b)) ***** test % Issue #963: vector RHS with diff orientation from 2D indexing a = sym (magic (3)); b = a; a(1:2:3, 2) = [14 15]; b(1:2:3, 2) = [14; 15]; assert (isequal (a, b)) a(2, 1:2:3) = [24 25]; b(2, 1:2:3) = [24; 25]; assert (isequal (a, b)) ***** test % 1D growth and 'end' g = sym([1 2 3]); g(3:4) = [67 68]; g(end:end+1) = [12 14]; assert(isequal( g, [1 2 67 12 14] )) ***** test % expanding empty and scalar syms x c = sym([]); c(1) = x; assert(isequal( c, x )) c(2) = 2*x; assert(isequal( c, [x 2*x] )) ***** shared a,b,I,J b = 1:4; b = [b; 3*b; 5*b]; a = sym(b); I = logical([1 0 1]); J = logical([1 0 1 0]); ***** assert(isequal( a(I,J), b(I,J) )) ***** test rhs = [90 91; 92 93]; b(I, J) = rhs; a(I, J) = rhs; assert(isequal( a, b )) ***** test b(I, J) = 100; a(I, J) = 100; assert(isequal( a, b )) ***** shared ***** test % logical with all false syms x y = x; y(false) = 6; assert(isequal( y, x )); a = [x x]; a([false false]) = [6 6]; assert(isequal( a, [x x] )); ***** test % issue #18, scalar access syms x x(1) = sym(6); assert(isequal( x, sym(6) )); x(1) = 6; assert(isequal( x, sym(6) )); x(true) = 88; assert(isequal( x, sym(88) )); ***** test % bug: assignment to column vector used to fail A = sym(zeros(3,1)); A(1) = 5; ***** test % symfun creation (generic function) syms x g(x) = x*x; assert(isa(g,'symfun')) ***** test % symfun creation (generic function) syms x g(x) assert(isa(g,'symfun')) ***** test % symfun creation when g already exists and is a sym/symfun syms x g = x; syms g(x) assert(isa(g,'symfun')) clear g g(x) = x; g(x) = x*x; assert(isa(g,'symfun')) ***** test % Issue #443: assignment with sym indices A = sym([10 11]); A(sym(1)) = 12; assert (isequal (A, sym([12 11]))) ***** test % Issue #443: assignment with sym indices A = sym([10 11]); A(sym(1), 1) = 12; assert (isequal (A, sym([12 11]))) A(sym(1), sym(1)) = 13; assert (isequal (A, sym([13 11]))) ***** test % Issue #443: assignment with sym indices, increase size A = sym([10 11]); A(sym(2), 1) = 12; assert (isequal (A, sym([10 11; 12 0]))) ***** error % Issue #443 A = sym([10 11]); A(2, sym('x')) = sym(12); ***** error % Issue #443 A = sym([10 11]); A(sym(2), sym('x')) = sym(12); ***** error % issue #445 A = sym([10 11]); A(1.1) = 13 ***** error % issue #445 A = sym([10 11]); A(sym(pi)) = 13 ***** error % issue #445 A = sym([1 2; 3 4]); A(1.3, 1.2) = 13 ***** test % older expansion tests syms x f = [2*x 3*x]; f(2) = 4*x; assert (isequal (f, [2*x 4*x])) f(2) = 2; assert (isequal(f, [2*x 2])) g = f; g(1,3) = x*x; assert (isequal(g, [2*x 2 x^2])) g = f; g(3) = x*x; assert (isequal(g, [2*x 2 x^2])) g = f; g(3) = 4; assert (isequal(g, [2*x 2 4])) ***** test % older slicing tests syms x f = [1 x^2 x^4]; f(1:2) = [x x]; assert (isequal( f, [x x x^4] )) f(1:2) = [1 2]; assert (isequal( f, [1 2 x^4] )) f(end-1:end) = [3 4]; assert (isequal( f, [1 3 4] )) f(3:4) = [10 11]; assert (isequal( f, [1 3 10 11] )) f(end:end+1) = [12 14]; assert (isequal( f, [1 3 10 12 14] )) ***** test % struct.str = sym, sometimes calls subsasgn d = struct(); syms x d.a = x; assert (isa (d, 'struct')) assert (isequal (d.a, x)) d.('a') = x; assert (isa (d, 'struct')) assert (isequal (d.a, x)) d = setfield(d, 'a', x); assert (isa (d, 'struct')) assert (isequal (d.a, x)) % at least on Oct 3.8, this calls sym's subsasgn d = struct(); d = setfield(d, 'a', x); assert (isa (d, 'struct')) assert (isequal (d.a, x)) ***** test % bool scalar assignments of true/false into sym syms x a = sym([1 2 x 3]); b = [1 2 10 4]; e = a == b; assert (logical (e(2))) e(2) = false; assert (~logical (e(2))) ***** test % bool vector assignments of true/false into sym syms x a = sym([1 2 x 3]); b = [1 2 10 4]; e = a == b; e(1:2) = [true true]; assert (isequal (e, [sym(1)==1 sym(2)==2 x==10 sym(3)==4])) ***** test % bool scalar promoted to vector assignments into sym syms x a = sym([1 2 x 3]); b = [1 2 10 4]; e = a == b; e(1:2) = true; assert (isequal (e, [sym(1)==1 sym(2)==2 x==10 sym(3)==4])) ***** test % grow scalar equality expression into a matrix of equalities syms a b c d e = a == b; e(2) = c == d; assert (isequal (e, [a==b c==d])) ***** shared a, b, I b = [1:4]; b = [b; 3*b; 5*b]; a = sym(b); I = mod (b, 5) > 1; ***** test A = a; A(I) = 2*b(I); B = b; B(I) = 2*b(I); assert (isequal (A, B)) ***** test % scalar RHS A = a; A(I) = 17; B = b; B(I) = 17; assert (isequal (A, B)) ***** test % nonetheless, above strange case should give right answer I = logical([1 0 1 0; 0 1 0 1; 1 0 1 0]); rhs = 2*b(I); rhs2 = reshape(rhs, 2, 3); A0 = a; A1 = a; A0(I) = rhs; A1(I) = rhs2; assert (isequal (A0, A1)) ***** shared AA, BB BB = [1 2 3; 4 5 6]; AA = sym(BB); ***** test A = AA; B = BB; B([1 6]) = [8 9]; A([1 6]) = [8 9]; assert (isequal (A, B)) ***** test % rhs scalar A = AA; B = BB; B([1 6]) = 88; A([1 6]) = 88; assert (isequal (A, B)) ***** test % If rhs is not a vector, make sure col-based access works rhs = [18 20; 19 21]; A = AA; B = BB; B([1 6]) = 88; A([1 6]) = 88; B([1 2 3 4]) = rhs; A([1 2 3 4]) = rhs; assert (isequal (A, B)) ***** test % Growth A = AA; B = BB; A(1,5) = 10; B(1,5) = 10; assert (isequal (A, B)) ***** shared ***** test % Check row deletion 1D a = sym([1; 3; 5]); b = sym([3; 5]); a(1) = []; assert( isequal( a, b)) ***** test % Check column deletion 1D a = sym([1, 4, 8]); b = sym([4, 8]); a(1) = []; assert( isequal( a, b)) ***** test % Check row deletion 2D a = sym([1, 2; 3, 4]); b = sym([3, 4]); a(1, :) = []; assert( isequal( a, b)) ***** test % Check column deletion 2D a = sym([1, 2; 3, 4]); b = sym([2; 4]); a(:, 1) = []; assert( isequal( a, b)) ***** test % General assign a = sym([1, 2; 3, 4]); b = sym([5, 5; 5, 5]); a(:) = 5; assert( isequal( a, b)) ***** test % Empty matrix a = sym([1, 2; 3, 4]); a(:) = []; assert( isequal( a, sym([]))) ***** test % Disassemble matrix a = sym([1 2; 3 4; 5 6]); b = sym([3 5 2 4 6]); a(1) = []; assert (isequal (a, b)); ***** error a = sym([1, 2; 3, 4]); a(1, 2) = []; ***** test % Issue #964 a = sym(10); a(1) = []; assert (isempty (a)) assert (isequal (a, zeros(1, 0))) ***** test % Issue #963: scalar asgn to empty part of matrix A = sym (magic (3)); B = A; A(1, []) = 42; assert (isequal (A, B)) A([], 2) = 42; assert (isequal (A, B)) A([]) = 42; assert (isequal (A, B)) A([], []) = 42; assert (isequal (A, B)) A(2:3, []) = 42; assert (isequal (A, B)) A([], 2:3) = 42; assert (isequal (A, B)) A(:, []) = 42; assert (isequal (A, B)) A([], :) = 42; assert (isequal (A, B)) ***** test % Issue #1026 a = sym(1:5); a(1:3) = []; assert (isequal (a, sym([4 5]))) ***** test % Issue #1026 B = eye(4); A = sym(B); A(1:2, :) = []; B(1:2, :) = []; assert (isequal (A, B)) ***** error % TODO: do we care what error? A = sym (magic (3)); A(2:3, []) = [66; 66]; ***** error A = sym (magic (3)); A([]) = [66; 66]; ***** error A = sym (magic (3)); A([], 1) = [66; 66]; ***** test % Issue #966: empty indexing, empty RHS, A unchanged B = magic(3); A = sym(B); A(1, []) = []; assert (isequal (A, B)) A([], 2) = []; assert (isequal (A, B)) A([], []) = []; assert (isequal (A, B)) A(2:3, []) = []; assert (isequal (A, B)) A([], 2:3) = []; assert (isequal (A, B)) A(:, []) = []; assert (isequal (A, B)) A([], :) = []; assert (isequal (A, B)) ***** test % Issue 967 B = [1 2; 3 4]; A = sym(B); A([]) = []; assert (isequal (A, B)) ***** test % Issue #965 a = sym(7); a([]) = []; assert (isequal (a, sym(7))) ***** test % Issue #965 a = sym(7); a([]) = 42; assert (isequal (a, sym(7))) ***** error % Issue #965 a = sym(7); a([]) = [42 42] ***** test b = eye (3); a = sym (b); I = [2 3; 4 5]; a(I) = -2*I; b(I) = -2*I; assert (isequal (a, sym (b))); assert (size (a), [3 3]); ***** error syms x A = [1 x; x 2]; A(5) = x; ***** test % 2D indexing with length in one dimension more than 2 a = sym ([1 2; 3 4; 5 6]); indices = [1 4; 2 5; 3 6]; b = [10 11; 12 13; 14 15]; a(indices) = b; assert (isequal (a, sym (b))); ***** test A = sym ([0 0 0]); indices = [false true false]; A(indices) = 1; assert (isequal (A, sym ([0 1 0]))); A(indices) = []; assert (isequal (A, sym ([0 0]))); indices = [false false]; A(indices) = []; assert (isequal (A, sym ([0 0]))); ***** shared a, b a = [1 2 3 5; 4 5 6 9; 7 5 3 2]; b = sym (a); ***** test A = a; B = b; A(true) = 0; B(true) = 0; assert (isequal (A, B)) ***** test A = a; B = b; A(false) = 0; B(false) = 0; assert (isequal (A, B)) ***** test c = [false true]; A = a; B = b; A(c) = 0; B(c) = 0; assert (isequal (A, B)) d = c | true; A(d) = 1; B(d) = 1; assert (isequal (A, B)) d = c & false; A(d) = 2; B(d) = 2; assert (isequal (A, B)) ***** test c = [false true false true; true false true false; false true false true]; A = a; B = b; A(c) = 0; B(c) = 0; assert (isequal (A, B)) d = c | true; A(d) = 1; B(d) = 1; assert (isequal (A, B)) d = c & false; A(d) = 2; B(d) = 2; assert (isequal (A, B)) ***** test c = [false true false true false]; A = a; B = b; A(c) = 0; B(c) = 0; assert (isequal (A, B)) d = c | true; A(d) = 1; B(d) = 1; assert (isequal (A, B)) d = c & false; A(d) = 2; B(d) = 2; assert (isequal (A, B)) ***** test c = [false; true; false; true; false]; A = a; B = b; A(c) = 0; B(c) = 0; assert (isequal (A, B)) d = c | true; A(d) = 1; B(d) = 1; assert (isequal (A, B)) d = c & false; A(d) = 2; B(d) = 2; assert (isequal (A, B)) ***** test c = [false true; false true; true false]; A = a; B = b; A(c) = 0; B(c) = 0; assert (isequal (A, B)) d = c | true; A(d) = 1; B(d) = 1; assert (isequal (A, B)) d = c & false; A(d) = 2; B(d) = 2; assert (isequal (A, B)) 77 tests, 77 passed, 0 known failure, 0 skipped [inst/@sym/lambertw.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/lambertw.m ***** test % W(x)*exp(W(x)) == x syms x T = lambertw(x)*exp(lambertw(x)); T = double (subs (T, x, 10)); assert (isequal (T, 10)); ***** test % k, x not x, k to match SMT syms x T = lambertw(2, x)*exp(lambertw(2, x)); T = double (subs (T, x, 10)); assert (abs(T - 10) < 1e-15) ***** assert (isequal (lambertw(sym(0)), sym(0))) ***** assert ( isequal (lambertw (-1/exp(sym(1))), -sym(1))) ***** assert ( isequal (lambertw (0, -1/exp(sym(1))), -sym(1))) ***** assert ( isequal (lambertw (-1, -1/exp(sym(1))), -sym(1))) ***** xtest % W(x)*exp(W(x)) == x; FIXME: a failure in SymPy? syms x T = simplify(lambertw(x)*exp(lambertw(x))); assert (isequal (T, x)) !!!!! known failure assert (isequal (T, x)) failed ***** assert (abs (lambertw(pi) - double(lambertw(sym(pi)))) < 5*eps) ***** assert (abs (lambertw(-1, 5) - double(lambertw(-1, sym(5)))) < 5*eps) ***** assert (abs (lambertw(2, 2) - double(lambertw(2, sym(2)))) < 5*eps) ***** test % round trip syms x k A = lambertw (5); f = lambertw (x); h = function_handle (f); B = h (5); assert (A, B) A = lambertw (3, 5); f = lambertw (k, x); h = function_handle (f); B = h (3, 5); assert (A, B) 11 tests, 10 passed, 1 known failure, 0 skipped [inst/@sym/resize.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/resize.m ***** test B = sym([1 0 0; 0 0 0]); assert (isequal (resize (sym(1), 2, 3), B)) assert (isequal (resize (sym(1), [2 3]), B)) ***** test B = sym([1 0; 0 0]); assert (isequal (resize (sym(1), 2), B)) ***** test A = sym([pi 2; 3 4]); assert (isequal (resize (A, 1), sym(pi))) ***** assert (isequal (size (resize (sym(1), 0, 0)), [0 0])) ***** assert (isequal (size (resize (sym(1), 6, 0)), [6 0])) ***** assert (isequal (size (resize (sym(1), 0, 3)), [0 3])) ***** error resize (sym(1)) ***** error resize (sym(1), 2, 3, 4) ***** error resize (sym(1), [2 3 4]) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/setdiff.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/setdiff.m ***** test A = sym([1 2 3]); B = sym([1 2 4]); C = setdiff(A, B); D = sym([3]); assert (isequal (C, D)) ***** test % one nonsym A = sym([1 2 3]); B = [1 2 4]; C = setdiff(A, B); D = sym([3]); assert (isequal (C, D)) ***** test % empty A = sym([1 2 3]); C = setdiff(A, A); assert (isempty (C)) ***** test % empty input A = sym([1 2]); C = setdiff(A, []); assert (isequal (C, A) || isequal (C, sym([2 1]))) ***** test % scalar syms x assert (isequal (setdiff([x 1], x), sym(1))) assert (isempty (setdiff(x, x))) ***** test A = interval(sym(1), 3); B = interval(sym(2), 5); C = setdiff(A, B); assert( isequal( C, interval(sym(1), 2, false, true))) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/ones.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ones.m ***** test y = ones(sym(2)); x = [1 1; 1 1]; assert( isequal( y, sym(x))) ***** test y = ones(sym(2), 1); x = [1; 1]; assert( isequal( y, sym(x))) ***** test y = ones(sym(1), 2); x = [1 1]; assert( isequal( y, sym(x))) ***** test y = ones (sym([2 3])); x = sym (ones ([2 3])); assert (isequal (y, x)) ***** assert( isa( ones(sym(2), 'double'), 'double')) ***** assert( isa( ones(3, sym(3), 'single') , 'single')) ***** assert( isa( ones(3, sym(3)), 'sym')) ***** assert( isa( ones(3, sym(3), 'sym'), 'sym')) ***** xtest % Issue #13 assert( isa( ones(3, 3, 'sym'), 'sym')) !!!!! known failure invalid data type specified 9 tests, 8 passed, 1 known failure, 0 skipped [inst/@sym/formula.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/formula.m ***** test syms x assert (isequal (formula(x), x)) assert (isequal (formula(2*x), 2*x)) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/besselh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/besselh.m ***** test % default to k=1 syms z a A = besselh(a, z); B = besselh(a, 1, z); assert (isequal (A, B)) ***** error besselh(sym('z')) ***** error besselh(2, 0, sym('z')) ***** error besselh(2, 3, sym('z')) ***** test % doubles, relative error X = [1 2 pi; 4i 5 6+6i]; Xs = sym(X); Alpha = [pi 3 1; 3 2 0]; Alphas = sym(Alpha); for k = 1:2 A = double(besselh(Alphas, k, Xs)); B = besselh(Alpha, k, X); assert (all (all (abs(A - B) < 10*eps*abs(A)))) end ***** test % round-trip syms x for k = 1:2 A = besselh(4, k, 10); q = besselh(4, k, x); h = function_handle(q); B = h(10); assert (abs(A - B) <= eps*abs(A)) end 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/kroneckerDelta.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/kroneckerDelta.m ***** error kroneckerDelta (sym(1), 2, 3) ***** test syms x assert (isequal (kroneckerDelta (x, x), sym(1))) ***** assert (isequal (kroneckerDelta ([sym(1) 2 3], [1 2 0]), sym([1 1 0]))) ***** test % round trip syms x y f = kroneckerDelta (x, y); h = function_handle (f); assert (h (1, 2), 0) assert (h (2, 2), 1) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/real.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/real.m ***** assert (isequal (real (sym (4) + 3i),4)) ***** test syms x y real z = x + 1i*y; assert (isequal (real (z),x)) ***** test syms x y real Z = [4 x + 1i*y; x 4 + 3i]; assert (isequal (real (Z),[4 x; x 4])) ***** test syms x real d = exp (x*i); assert (isequal (real (d), cos (x))) ***** test % round trip syms x d = 3 - 5i; f = real (x); A = real (d); h = function_handle (f); B = h (d); assert (A, B) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/chebyshevU.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/chebyshevU.m ***** error chebyshevU (sym(1)) ***** error chebyshevU (sym(1), 2, 3) ***** assert (isequaln (chebyshevU (2, sym(nan)), sym(nan))) ***** shared x syms x ***** assert(isequal(chebyshevU(0, x), sym(1))) ***** assert(isequal(chebyshevU(1, x), 2*x)) ***** assert(isequal(chebyshevU(2, x), 4*x*x - 1)) ***** assert(isequal(chebyshevU([0 1 2], x), [sym(1) 2*x (4*x*x-1)])) ***** test % round trip syms n z f = chebyshevU (n, z); h = function_handle (f, 'vars', [n z]); A = h (1.1, 2.2); B = chebyshevU (1.1, 2.2); assert (A, B) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/coth.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/coth.m ***** error coth (sym(1), 2) ***** assert (isequaln (coth (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = coth(x); f2 = coth(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = coth(A); f2 = coth(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = coth (d); f = coth (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/factor.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/factor.m ***** test % n = 152862; % [p,m] = factor(n); % only works on Octave, no Matlab as of 2014a n = 330; % so we use an output without repeated factors p = factor(n); m = ones(size(p)); [ps,ms] = factor(sym(n)); assert (isequal (p, ps)) assert (isequal (m, ms)) ***** test n = sym(2)^4*13; [p,m] = factor(n); assert (isequal (p, [2 13])) assert (isequal (m, [4 1])) ***** test syms x assert( logical (factor(x^2 + 6*x + 5) == (x+5)*(x+1))) ***** test syms x f = [ x^4/2 + 5*x^3/12 - x^2/3 x^2 - 1 10]; g = [ x^2*(2*x - 1)*(3*x + 4)/12 (x+1)*(x-1) 10]; assert (isequal (factor(f), g)) ***** test % "fragile form" works A = factor(sym(124)); B = strtrim(disp(A, 'flat')); assert (strcmp (B, '2**2*31**1')) ***** error [p, m] = factor(sym('x')); ***** error [p, m] = factor(sym(42), sym('x')); ***** test % if polynomial happens to be a constant, don't attempt integer % factorization if a variable is specified f = sym(42); q = factor(f, sym('x')); assert (isequal (f, q)); 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/orth.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/orth.m ***** test A = [1 2; 3 6]; K = orth(A); L = orth(sym(A)); assert (isequal (size(L), [2 1])) dif1 = abs (double(L) - K); dif2 = abs (double(L) + K); assert (all (dif1 < 1e-15) || all (dif2 < 1e-15)) ***** test A = [1; 3]; K = orth(A); L = orth(sym(A)); assert (isequal (size(L), [2 1])) dif1 = abs (double(L) - K); dif2 = abs (double(L) + K); assert (all (dif1 < 1e-16) || all (dif2 < 1e-16)) ***** test A = sym([1 2; 3 4]); L = orth(sym(A)); assert (isequal (size(L), [2 2])) v = L(:, 1); w = L(:, 2); assert (isAlways (v' * v == 1)) assert (isAlways (w' * w == 1)) assert (isAlways (v' * w == 0)) ***** test A = sym([1 1; 1 0; 1 0]); L = orth(sym(A)); assert (isequal (size(L), [3 2])) v = L(:, 1); w = L(:, 2); assert (isAlways (v' * v == 1)) assert (isAlways (w' * w == 1)) assert (isAlways (v' * w == 0)) % y and z components must be equal assert (isAlways (v(2) == v(3))) assert (isAlways (w(2) == w(3))) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/isNone.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isNone.m ***** test None = pycall_sympy__ ('return None'); ***** shared None None = pycall_sympy__ ('return None'); ***** assert (isNone(None)) ***** assert (~isNone(sym('x'))) ***** assert (islogical(isNone(None))) ***** test a = [1 None]; a = [None None]; a = [None; 1]; a = [None; None]; a = [None 2; 3 None]; ***** test a = sym([1 2]); a(1,2) = None; assert (isequal (a, [sym(1) None])); ***** assert (isequal (None(1), None)); ***** error None(None); ***** error x=sym('x'); x(None); ***** error x=1; x(None); ***** error None(None); ***** error 1 + None; ***** error None - 1; ***** error 6*None; ***** error 2^None; ***** error [1 2].*None; ***** error isconstant(None); ***** error nnz(None); ***** error logical(None); ***** error isAlways(None); ***** error logical([sym(true) None]); ***** error isAlways([sym(true) None]); ***** assert (isequal (children(None), None)) ***** assert (isequal (repmat(None, 1, 2), [None None])) ***** assert (isequal (fliplr(None), None)) ***** assert (isequal (flipud(None), None)) 26 tests, 26 passed, 0 known failure, 0 skipped [inst/@sym/collect.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/collect.m ***** test syms x y z f = [x*y + x - 3 + 2*x^2 - z*x^3 + x^3]; assert (logical (collect (f,x) == ((x^3)*(1 - z) + 2*(x^2) + x*(y + 1) - 3))) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/assume.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/assume.m ***** test syms x x = assume(x, 'positive'); a = assumptions(x); assert(strcmp(a, 'x: positive')) x = assume(x, 'even'); a = assumptions(x); assert(strcmp(a, 'x: even')) x = assume(x, 'odd'); a = assumptions(x); assert(strcmp(a, 'x: odd')) ***** error syms x x = assume (x, x); ***** error syms x x = assume (x/pi, 'integer') ***** test % multiple assumptions syms x x = assume(x, 'positive', 'integer'); [tilde, a] = assumptions(x, 'dict'); assert(a{1}.integer) assert(a{1}.positive) ***** test % multiple assumptions syms x x = assume(x, 'even', 'positive'); [tilde, a] = assumptions(x, 'dict'); assert(a{1}.even) assert(a{1}.positive) ***** test % has output so avoids workspace syms x positive x2 = x; f = sin(x); x = assume(x, 'negative'); a = assumptions(x); assert(strcmp(a, 'x: negative')) a = assumptions(x2); assert(strcmp(a, 'x: positive')) a = assumptions(f); assert(strcmp(a, 'x: positive')) ***** test % clear: has output so avoids workspace syms x positive f = 2*x; x2 = assume(x, 'clear'); assert (~ isempty (assumptions (f))); ***** test % has no output so does workspace syms x positive x2 = x; f = sin(x); assume(x, 'negative'); a = assumptions(x); assert(strcmp(a, 'x: negative')) a = assumptions(x2); assert(strcmp(a, 'x: negative')) a = assumptions(f); assert(strcmp(a, 'x: negative')) ***** test % clear: has not output so does workspace syms x positive f = 2*x; assume(x, 'clear'); assert (isempty (assumptions (f))); assert (isempty (assumptions ())); ***** test syms x positive assume (x, 'clear') assert (isempty (assumptions ())) ***** error syms x x2 = assume (x, 'clear', 'real'); ***** error syms a assume (a > 0) ***** test syms x y assume ([x y], 'real') assert (strcmp (assumptions (x), 'x: real')) assert (strcmp (assumptions (y), 'y: real')) ***** test syms x y assume ([x y], 'positive', 'even') assert (strcmp (assumptions (x), 'x: positive, even') || strcmp (assumptions (x), 'x: even, positive')) assert (strcmp (assumptions (y), 'y: positive, even') || strcmp (assumptions (y), 'y: even, positive')) ***** test % with output, original x and y are unchanged syms x y [p, q] = assume ([x y], 'real'); assert (isempty (assumptions (x))) assert (isempty (assumptions (y))) assert (strcmp (assumptions (p), 'x: real')) assert (strcmp (assumptions (q), 'y: real')) ***** test % matrix input syms a b c d assume ([a b; c d], 'real') assert (strcmp (assumptions (a), 'a: real')) assert (strcmp (assumptions (b), 'b: real')) assert (strcmp (assumptions (c), 'c: real')) assert (strcmp (assumptions (d), 'd: real')) 16 tests, 16 passed, 0 known failure, 0 skipped [inst/@sym/ellipticCK.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipticCK.m ***** error ellipticCK (sym (1), 2) ***** assert (double (ellipticCK (sym (1)/2)), 1.8541, 10e-5) ***** assert (double (ellipticCK (sym (101)/10)), 0.812691836806976, -3*eps) ***** assert (isequal (ellipticCK (sym (1)), sym(pi)/2)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/prod.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/prod.m ***** error prod (sym(1), 2, 3) ***** error prod (sym(1), 42) ***** shared x,y,z syms x y z ***** assert (isequal (prod (x), x)) ***** assert (isequal (prod ([x y z]), x*y*z)) ***** assert (isequal (prod ([x; y; z]), x*y*z)) ***** assert (isequal (prod ([x y z], 1), [x y z])) ***** assert (isequal (prod ([x y z], 2), x*y*z)) ***** shared a,b b = [1 2; 3 4]; a = sym(b); ***** assert (isequal (prod(a), prod(b))) ***** assert (isequal (prod(a,1), prod(b,1))) ***** assert (isequal (prod(a,2), prod(b,2))) ***** test % weird inputs a = prod('xx', sym(1)); assert (isequal (a, sym('xx'))) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/pretty.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/pretty.m ***** test % simple syms x s1 = pretty(sin(x)); s2 = sprintf(' sin(x)\n'); assert (strcmp (s1, s2)) ***** test % force ascii syms x s1 = pretty(sin(x/2), 'ascii'); s2 = sprintf(' /x\\\n sin|-|\n \\2/\n'); swin = strrep(s1, sprintf('\r\n'), sprintf('\n')); assert (strcmp (s1, s2) || strcmp (swin, s2)) ***** test % force unicode syms x s1 = pretty(sin(x/2), 'unicode'); s2 = sprintf(' ⎛x⎞\n sin⎜─⎟\n ⎝2⎠\n'); swin = strrep(s1, sprintf('\r\n'), sprintf('\n')); assert (strcmp (s1, s2) || strcmp (swin, s2)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/arg.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/arg.m ***** test syms x assert (isequal (angle (x), arg (x))); 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/findsym.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/findsym.m ***** assert (strcmp (findsym (sym(2)), '')); ***** shared x,y,f x=sym('x'); y=sym('y'); f=x^2+3*x*y-y^2; ***** assert (strcmp (findsym (f), 'x,y')); ***** assert (strcmp (findsym (f,1), 'x')); ***** test % test order of returned vars syms x y a b c xx % https://www.mathworks.com/matlabcentral/newsreader/view_thread/237730 alpha = sym('alpha'); assert (strcmp (findsym(b*xx*exp(alpha) + c*sin(a*y), 2), 'xx,y')) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/dawson.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/dawson.m ***** test if (exist ('OCTAVE_VERSION', 'builtin')) % dawson missing on Matlab, Issue #742 A = dawson([1 2]); B = double(dawson(sym([1 2]))); assert(A, B, -eps) end 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/erfc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/erfc.m ***** error erfc (sym(1), 2) ***** assert (isequaln (erfc (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = erfc(x); f2 = erfc(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = erfc(A); f2 = erfc(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = erfc (d); f = erfc (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/subs.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/subs.m ***** error subs (sym(1), 2, 3, 4) ***** shared x,y,t,f syms x y t f = x*y; ***** test assert( isequal( subs(f, x, y), y^2 )) assert( isequal( subs(f, y, sin(x)), x*sin(x) )) assert( isequal( subs(f, x, 16), 16*y )) ***** test % multiple subs w/ cells assert( isequal( subs(f, {x}, {t}), y*t )) assert( isequal( subs(f, {x y}, {t t}), t*t )) assert( isequal( subs(f, {x y}, {t 16}), 16*t )) assert( isequal( subs(f, {x y}, {16 t}), 16*t )) assert( isequal( subs(f, {x y}, {2 16}), 32 )) ***** test % multiple subs w/ vectors assert( isequal( subs(f, [x y], [t t]), t*t )) assert( isequal( subs(f, [x y], [t 16]), 16*t )) assert( isequal( subs(f, [x y], [2 16]), 32 )) ***** test % anything you can think of assert( isequal( subs(f, [x y], {t t}), t*t )) assert( isequal( subs(f, {x y}, [t t]), t*t )) assert( isequal( subs(f, {x; y}, [t; t]), t*t )) ***** test % sub in doubles gives sym (matches SMT 2013b) % FIXME: but see % http://www.mathworks.co.uk/help/symbolic/gradient.html assert( isequal( subs(f, {x y}, {2 pi}), 2*sym(pi) )) assert( ~isa(subs(f, {x y}, {2 pi}), 'double')) assert( isa(subs(f, {x y}, {2 pi}), 'sym')) assert( isa(subs(f, {x y}, {2 sym(pi)}), 'sym')) assert( isa(subs(f, {x y}, {sym(2) sym(pi)}), 'sym')) ***** shared x,y,t,f,F syms x y t f = sin(x)*y; F = [f; 2*f]; ***** test % need the simultaneous=True flag in SymPy (matches SMT 2013b) assert( isequal( subs(f, [x t], [t 6]), y*sin(t) )) assert( isequal( subs(F, [x t], [t 6]), [y*sin(t); 2*y*sin(t)] )) ***** test % swap x and y (also needs simultaneous=True assert( isequal( subs(f, [x y], [y x]), x*sin(y) )) ***** test % but of course both x and y to t still works assert( isequal( subs(f, [x y], [t t]), t*sin(t) )) ***** shared ***** test % Issue #10, subbing matrices in for scalars syms y a = sym([1 2; 3 4]); f = sin(y); g = subs(f, y, a); assert (isequal (g, sin(a))) ***** test % Issue #10, subbing matrices in for scalars syms y a = sym([1 2]); g = subs(sin(y), {y}, {a}); assert (isequal (g, sin(a))) ***** test % Issue #10, subbing matrices in for scalars syms y a = sym([1; 2]); g = subs(sin(y), {y}, a); assert (isequal (g, sin(a))) ***** test % Issue #10, subbing matrices in for scalars syms y a = [10 20 30]; f = 2*y; g = subs(f, y, a); assert (isequal (g, 2*a)) assert (isa (g, 'sym')) ***** test % Issue #10, sub matrices in for two scalars syms x y a = [10 20 30]; f = x^2*y; g = subs(f, {x y}, {a a+1}); h = a.^2.*(a+1); assert (isequal (g, h)) ***** test % Issue #10, sub matrices in for two scalars syms x y z a = [10 20 30]; f = x^2*y; g = subs(f, {x y}, {a z}); h = a.^2*z; assert (isequal (g, h)) g = subs(f, {x y}, {a 6}); h = a.^2*6; assert (isequal (g, h)) ***** error syms x y a = [10 20 30]; f = x^2*y; g = subs(f, {x y}, {[10 20 30] [10 20]}); ***** test % two inputs syms x y assert (isequal (subs (2*x, 6), sym(12))) assert (isequal (subs (2*x*y^2, 6), 12*y^2)) assert (isequal (subs (2*y, 6), sym(12))) assert (isequal (subs (sym(2), 6), sym(2))) ***** test % only two inputs, vector syms x assert (isequal (subs (2*x, [3 5]), sym([6 10]))) ***** test % SMT compat, subbing in vec/mat for nonexist x syms x y z % you might think this would be y: assert (~ isequal (subs (y, x, [1 2]), y)) % but it gives two y's: assert (isequal (subs (y, x, [1 2]), [y y])) assert (isequal (subs (sym(42), [3 5]), sym([42 42]))) assert (isequal (subs (sym(42), x, []), sym([]))) assert (isequal (subs (y, {x y}, {[1 2; 3 4], 6}), sym([6 6; 6 6]))) assert (isequal (subs (y, {x z}, {[1 2; 3 4], 6}), [y y; y y])) ***** test syms x y assert (isequal (subs (sym(42), x, y), sym(42))) assert (isequal (subs (sym(42), y), sym(42))) assert (isequal (subs (sym(42)), sym(42))) ***** test % empty lists assert (isequal (subs (sym(42), {}, {}), sym(42))) assert (isequal (subs (42, sym([]), sym([])), sym(42))) ***** test syms x y f = x*y; x = 6; y = 7; g = subs (f); assert (isequal (g, sym (42))) assert (isa (g, 'sym')) ***** test syms x y f = x*y; x = 6; g = subs (f); assert (isequal (g, 6*y)) ***** test syms x y f = x*y; xsave = x; x = 6; g = subs (f); assert (isequal (g, 6*y)) assert (isequal (f, xsave*y)) ***** test syms a x y f = a*x*y; a = 6; clear x g = subs (f); syms x assert (isequal (g, 6*x*y)) 25 tests, 25 passed, 0 known failure, 0 skipped [inst/@sym/isprime.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isprime.m ***** assert (isprime (sym(5))) ***** assert (~isprime (sym(4))) ***** assert (~isprime (sym(0))) ***** assert (~isprime (sym(1))) ***** test a = [5 7 6; 1 2 337]; assert (isequal (isprime (a), [true true false; false true true])) ***** assert (~isprime(sym(-4))) ***** assert (~isprime(sym(4i))) ***** assert (~isprime(sym(3)/5)) ***** error isprime(sym('x')); 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/isnan.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isnan.m ***** shared x,zoo,oo,snan oo = sym(inf); zoo = sym('zoo'); x = sym('x'); snan = sym(nan); ***** test % various ops that give nan assert (isnan(0*oo)) assert (isnan(0*zoo)) assert (isnan(snan)) assert (isnan(snan-snan)) assert (isnan(oo+snan)) assert (isnan(oo-oo)) assert (isnan(oo-zoo)) assert (isnan(oo+zoo)) assert (~isnan(oo)) assert (~isnan(zoo)) assert (~isnan(oo+oo)) ***** test % more ops give nan assert(isnan(x+snan)) assert(isnan(x*snan)) assert(isnan(0*snan)) assert(isnan(x+nan)) assert(isnan(x*nan)) assert(isnan(sym(0)*nan)) ***** test % array assert (isequal( isnan([oo zoo]), [0 0] )) assert (isequal( isnan([10 snan]), [0 1] )) assert (isequal( isnan([snan snan]), [1 1] )) assert (isequal( isnan([snan x]), [1 0] )) ***** test % sub in to algebraic expression gives nan y = x - oo; y = subs(y, x, oo); assert(isnan(y)) ***** test % Must not contain string 'symbol'; these all should make an % actual nan. Actually a ctor test, not isnan. y = sym(nan); assert (isempty (strfind (sympy (y), 'Symbol'))) y = sym('nan'); assert (isempty (strfind (sympy (y), 'Symbol'))) y = sym('NaN'); assert (isempty( strfind (sympy (y), 'Symbol'))) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/ldivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ldivide.m ***** test % scalar syms x assert (isa (x .\ 1, 'sym')) assert (isa (x .\ x, 'sym')) assert (isequal (x .\ 1, 1/x)) assert (isequal (x .\ x, sym(1))) ***** test % matrix-scalar D = [1 1; 2 3]; A = sym(D); assert (isequal ( A .\ 6 , D .\ 6 )) assert (isequal ( A .\ sym(6) , D .\ 6 )) assert (isequal ( D .\ sym(6) , D .\ 6 )) ***** test % matrix-matrix D = [1 2; 3 4]; A = sym(D); assert (isequal ( A .\ A , D .\ D )) assert (isequal ( A .\ D , D .\ D )) assert (isequal ( D .\ A , D .\ D )) ***** test % matrix .\ matrix with symbols syms x y A = [x y; x^2 2*y]; B = [y x; x y]; assert (isequal ( A .\ A , sym(ones(2, 2)) )) assert (isequal ( B .\ A , [x/y y/x; x 2] )) ***** test % scalar .\ matrix D = 3*[1 2; 3 4]; A = sym(D); assert (isequal ( 3 .\ A , 3 .\ D )) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/power.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/power.m ***** test % scalar .^ scalar syms x assert (isa (x.^2, 'sym')) assert (isa (2.^x, 'sym')) assert (isa (x.^x, 'sym')) assert (isequal (x.^2, x^2)) assert (isequal (2.^x, 2^x)) assert (isequal (x.^x, x^x)) ***** test % scalar .^ matrix D = [0 1; 2 3]; A = sym(D); assert (isequal ( sym(2).^D , 2.^D )) assert (isequal ( sym(2).^A , 2.^A )) assert (isequal ( 2.^D , 2.^A )) assert (isequal ( 2.^A , 2.^A )) ***** test % matrix .^ matrix syms x A = [x 2*x; 3*x 4*x]; D = [0 1; 2 3]; B = sym(D); assert (isequal ( A.^D, [1 2*x; 9*x^2 64*x^3] )) assert (isequal ( A.^B, [1 2*x; 9*x^2 64*x^3] )) ***** test % matrix .^ scalar syms x A = [x 2*x]; assert (isequal ( A.^2, [x^2 4*x^2] )) assert (isequal ( A.^sym(2), [x^2 4*x^2] )) ***** test % 1^oo % (sympy >= 0.7.5 gives NaN, SMT R2013b: gives 1) oo = sym(inf); assert (isnan (1^oo)) ***** test % 1^zoo % (1 on sympy 0.7.4--0.7.6, but nan in git (2014-12-12, a210908d4)) zoo = sym('zoo'); assert (isnan (1^zoo)) ***** test % immutable test A = sym([1 2]); B = sym('ImmutableDenseMatrix([[Integer(1), Integer(2)]])'); assert (isequal (A.^A, B.^B)) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/sech.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sech.m ***** error sech (sym(1), 2) ***** assert (isequaln (sech (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sech(x); f2 = sech(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sech(A); f2 = sech(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sech (d); f = sech (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/isallconstant.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/isallconstant.m ***** assert (isallconstant([sym(1) 2 3])) ***** test syms x assert (~isallconstant([sym(1) x 3])) ***** test syms x assert (~isallconstant([sym(1) x; sym(2) 3])) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/xor.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/xor.m ***** shared t, f t = sym(true); f = sym(false); ***** test % simple assert (isequal (xor(t, f), t)) assert (isequal (xor(t, t), f)) ***** test % array w = [t t f f]; z = [t f t f]; assert (isequal (xor(w, z), [f t t f])) ***** xtest % output is sym even for scalar t/f % ₣IXME: should match other bool fcns assert (isa (xor(t, f), 'sym')) ***** test % eqns syms x e = xor(x == 4, x == 5); assert (isequal (subs(e, x, [3 4 5 6]), [f t t f])) ***** test % eqns, exclusive syms x e = xor(x == 3, x^2 == 9); assert (isequal (subs(e, x, [-3 0 3]), [t f f])) ***** error xor (sym('x'), 1, 2) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/children.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/children.m ***** test % basics, sum syms x y f = 2*x + x*x + sin(y); assert (isempty (setxor (children(f), [2*x x*x sin(y)]))) ***** test % basics, product syms x y f = 2*x*sin(y); assert (isempty (setxor (children(f), [2 x sin(y)]))) ***** test % basics, product and powers syms x y f = 2*x^2*y^3; assert (isempty (setxor (children(f), [2 x^2 y^3]))) ***** test % eqn, ineq syms x y lhs = 2*x^2; rhs = y^3 + 7; assert (isequal (children(lhs == rhs), [lhs rhs])) assert (isequal (children(lhs < rhs), [lhs rhs])) assert (isequal (children(lhs >= rhs), [lhs rhs])) ***** test % matrix syms x y f = [4 + y 1 + x; 2 + x 3 + x]; c = children(f); ec = {[4 y], [1 x]; [2 x], [3 x]}; assert (isequal (size(c), size(ec))) for i=1:length(c) assert (isempty (setxor (c{i}, ec{i}))) end ***** test % matrix, sum/prod syms x y f = [x + y; x*sin(y); sin(x)]; ec = {[x y]; [x sin(y)]; [x]}; c = children(f); assert (isequal (size(c), size(ec))) for i=1:length(c) assert (isempty (setxor (c{i}, ec{i}))) end ***** test % scalar symbol syms x assert (isequal (children(x), x)) ***** test % scalar number x = sym(6); assert (isequal (children(x), x)) ***** test % symbolic size matrix syms n m integer A = sym('a', [n m]); C = children (A); assert (isequal (C(2), n)) assert (isequal (C(3), m)) ***** xtest % symbolic size matrix, fails on newer SymPy Issue #1089 syms n m integer A = sym('a', [n m]); assert (isequal (children (A), [sym('a') n m])) !!!!! known failure assert (isequal (children (A), [sym('a'), n, m])) failed 10 tests, 9 passed, 1 known failure, 0 skipped [inst/@sym/rhs.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/rhs.m ***** test syms x f = x + 1 == 2*x; assert (isequal (rhs(f), 2*x)) ***** error syms x rhs(x) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/besselj.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/besselj.m ***** test X = [1 2 3; 4 5 6]; ns = [sym(0) 1 -2; sym(1)/2 -sym(3)/2 pi]; n = double(ns); A = double(besselj(ns, X)); B = besselj(n, X); assert (all (all (abs (A - B) < 50*eps*abs(A)))) ***** test % roundtrip syms x A = besselj(2, 10); q = besselj(2, x); h = function_handle(q); B = h(10); assert (abs (A - B) <= eps*abs(A)) ***** error besselj(sym('x')) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/cross.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cross.m ***** error cross (sym(1), 2, 3) ***** test a = sym([1; 0; 0]); b = sym([0; 1; 0]); c = cross(a, b); assert (isequal (c, sym([0; 0; 1]))) ***** test syms x a = sym([x; 0; 0]); b = sym([0; 1; 0]); c = cross(a, b); assert (isequal (c, sym([0; 0; x]))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/fliplr.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/fliplr.m ***** test % simple syms x A = [x 2; sym(pi) x]; B = [2 x; x sym(pi)]; assert (isequal (fliplr(A), B)) ***** test % simple, odd # cols syms x A = [x 2 sym(pi); x 1 2]; B = [sym(pi) 2 x; 2 1 x]; assert (isequal (fliplr(A), B)) ***** test % scalar syms x assert (isequal (fliplr(x), x)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/int.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/int.m ***** shared x,y,a syms x y a ***** assert(logical(int(cos(x)) - sin(x) == 0)) ***** assert(logical(int(cos(x),x) - sin(x) == 0)) ***** assert(logical(int(cos(x),x,0,1) - sin(sym(1)) == 0)) ***** test %% limits might be syms assert( isequal (int(cos(x),x,sym(0),sym(1)), sin(sym(1)))) assert( isequal (int(cos(x),x,0,a), sin(a))) ***** test %% other variables present assert( isequal (int(y*cos(x),x), y*sin(x))) ***** test %% limits as array assert( isequal (int(cos(x),x,[0 1]), sin(sym(1)))) assert( isequal (int(cos(x),x,sym([0 1])), sin(sym(1)))) assert( isequal (int(cos(x),x,[0 a]), sin(a))) ***** test %% no x given assert( isequal (int(cos(x),[0 1]), sin(sym(1)))) assert( isequal (int(cos(x),sym([0 1])), sin(sym(1)))) assert( isequal (int(cos(x),[0 a]), sin(a))) assert( isequal (int(cos(x),0,a), sin(a))) ***** test %% integration of const assert( isequal (int(sym(2),y), 2*y)) assert( isequal (int(sym(2)), 2*x)) assert( isequal (int(sym(2),[0 a]), 2*a)) assert( isequal (int(sym(2),0,a), 2*a)) ***** test % componentwise int of array A = [x x*x]; assert (isequal (int(A, x), [x^2/2 x^3/3])) ***** test % NonElementaryIntegral bug % https://savannah.gnu.org/bugs/index.php?46831 f = int(exp(exp(x))); f = f + 2; g = diff(f); assert (isequal (g, exp(exp(x)))) 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@sym/bernoulli.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/bernoulli.m ***** error bernoulli (sym(1), 2, 3) ***** assert (isequal (bernoulli (sym(8)), -sym(1)/30)) ***** assert (isequal (bernoulli (sym(9)), sym(0))) ***** test syms x assert (isequal (bernoulli(3,x), x^3 - 3*x^2/2 + x/2)) ***** test % two different definitions in literature assert (isequal (abs (bernoulli (sym(1))), sym(1)/2)) ***** test % we use B_1 = 1/2 if (pycall_sympy__ ('return Version(spver) >= Version("1.12.dev")')) assert (isequal (bernoulli (sym(1)), sym(1)/2)) end ***** test m = sym([0 2; 8 888889]); A = bernoulli (m); B = [1 sym(1)/6; -sym(1)/30 0]; assert (isequal (A, B)) ***** test syms x A = bernoulli ([0; 1], x); B = [sym(1); x - sym(1)/2]; assert (isequal (A, B)) ***** test % round trip syms n x f = bernoulli (n, x); h = function_handle (f, 'vars', [n x]); A = h (2, 2.2); B = bernoulli (2, 2.2); assert (A, B) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/setxor.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/setxor.m ***** test A = sym([1 2 3]); B = sym([1 2 4]); C = setxor(A, B); D1 = sym([3 4]); D2 = sym([4 3]); assert (isequal (C, D1) || isequal (C, D2)) ***** test % one nonsym A = sym([1 2 3]); B = [1 2 4]; C = setxor(A, B); D1 = sym([3 4]); D2 = sym([4 3]); assert (isequal (C, D1) || isequal (C, D2)) ***** test % empty A = sym([1 2 3]); C = setxor(A, A); assert (isempty (C)) ***** test % empty input A = sym([1 2]); C = setxor(A, []); assert (isequal (C, A) || isequal (C, sym([2 1]))) ***** test % scalar syms x assert (isequal (setxor([x 1], x), sym(1))) assert (isempty (setxor(x, x))) ***** test A = interval(sym(1), 3); B = interval(sym(2), 5); C = setxor(A, B); D = union (interval (sym(1), 2, false, true), interval (sym(3), 5, true, false)); assert( isequal( C, D)) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/sqrt.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sqrt.m ***** error sqrt (sym(1), 2) ***** assert (isequaln (sqrt (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = sqrt(x); f2 = sqrt(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = sqrt(A); f2 = sqrt(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = sqrt (d); f = sqrt (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/cart2pol.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cart2pol.m ***** test % multiple non-scalar inputs x = sym ('x', [2 2]); assume (x, 'real'); y = sym ('y', [2 2]); assume (y, 'real'); [theta, r] = cart2pol (x, y); assert (isequal (r, sqrt (x.^2 + y.^2))); assert (isequal (tan (theta), y ./ x)); % mixing scalar inputs with non-scalar inputs syms z real [theta_2, r_2, z_2] = cart2pol (x, y, z); assert (isequal (r_2, sqrt (x.^2 + y.^2))); assert (isequal (tan (theta_2), y ./ x)); assert (isequal (z_2, z * ones (2, 2))); ***** test % column vector with 2 entries syms x y real [theta, r] = cart2pol ([x; y]); assert (isequal (r, sqrt (x.^2 + y.^2))); assert (isequal (tan (theta), y ./ x)); % column vector with 3 entries syms z real [theta_2, r_2, z_2] = cart2pol ([x; y; z]); assert (isequal (r_2, sqrt (x.^2 + y.^2))); assert (isequal (tan (theta_2), y ./ x)); assert (isequal (z_2, z)); ***** test % matrix with 2 columns syms x y u v real C = [x y; u v]; [theta, r] = cart2pol (C); assert (isequal (r, [sqrt(x.^2+y.^2); sqrt(u.^2+v.^2)])); assert (isequal (tan (theta), [y/x; v/u])); % matrix with 3 columns syms z w real C_2 = [x y z; u v w]; [theta_2, r_2, z_2] = cart2pol (C_2); assert (isequal (r, [sqrt(x.^2+y.^2); sqrt(u.^2+v.^2)])); assert (isequal (tan (theta), [y/x; v/u])); assert (isequal (z_2, [z; w])); 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/ellipke.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ellipke.m ***** error ellipke (sym(1), 2) ***** test for i = 2:10 [K E] = ellipke (sym (1)/i); [k e] = ellipke (1/i); assert (double ([K E]), [k e], 2*eps) end 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/nnz.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/nnz.m ***** assert (nnz (sym ([1])) == 1) ***** assert (nnz (sym ([0])) == 0) ***** assert (nnz (sym ([])) == 0) ***** assert (nnz (sym ([1 0; 0 3])) == 2) ***** test syms x assert (nnz ([x 0]) == 1) ***** assert (nnz (sym (true)) == 1) ***** assert (nnz (sym (false)) == 0) ***** assert (nnz (sym (inf)) == 1) ***** assert (nnz (sym (nan)) == 1) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/eye.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/eye.m ***** test y = eye(sym(2)); x = [1 0; 0 1]; assert( isequal( y, sym(x))) ***** test y = eye(sym(2), 1); x = [1; 0]; assert( isequal( y, sym(x))) ***** test y = eye(sym(1), 2); x = [1 0]; assert( isequal( y, sym(x))) ***** test y = eye (sym([2 3])); x = sym (eye ([2 3])); assert (isequal (y, x)) ***** assert( isa( eye(sym(2), 'double'), 'double')) ***** assert( isa( eye(3, sym(3), 'single') , 'single')) ***** assert( isa( eye(3, sym(3)), 'sym')) ***** assert( isa( eye(3, sym(3), 'sym'), 'sym')) ***** xtest % Issue #13 assert( isa( eye(3, 3, 'sym'), 'sym')) !!!!! known failure invalid data type specified 9 tests, 8 passed, 1 known failure, 0 skipped [inst/@sym/private_disp_name.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/private_disp_name.m ***** test syms x s = private_disp_name(x, 'x'); assert (strcmp (s, 'x')) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@sym/acsc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acsc.m ***** error acsc (sym(1), 2) ***** assert (isequaln (acsc (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = acsc(x); f2 = acsc(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = acsc(A); f2 = acsc(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = acsc (d); f = acsc (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/diag.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/diag.m ***** test % scalar syms x assert (isequal (diag(x), x)) ***** test % row,col vec input syms x r = [1 x 2]; c = [sym(1); x]; assert (isequal (diag(diag(c)), c)) assert (isequal (diag(c), [sym(1) 0; 0 x])) assert (isequal (diag(diag(r)), r.')) assert (isequal (diag(r), [sym(1) 0 0; 0 x 0; sym(0) 0 2])) ***** test % create matrix, kth diag syms x r = [1 x]; z = sym(0); assert (isequal (diag (x, 0), x)) assert (isequal (diag (x, 1), [z x; z z])) assert (isequal (diag (x, -1), [z z; x z])) assert (isequal (diag (x, 2), [z z x; z z z; z z z])) assert (isequal (diag (r, 1), [z 1 z; z z x; z z z])) ***** test % extract kth diag A = sym([1 2 3; 4 5 6]); assert (isequal (diag(A), sym([1; 5]))) assert (isequal (diag(A, 0), sym([1; 5]))) assert (isequal (diag(A, 1), sym([2; 6]))) assert (isequal (diag(A, 2), sym(3))) assert (isequal (diag(A, -1), sym(4))) assert (isempty (diag(A, -2))) assert (isempty (diag(A, 3))) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/ctranspose.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ctranspose.m ***** test x = sym(1); assert (isequal (x', x)) ***** assert (isempty (sym([])')) ***** test % conjugate does nothing to real x syms x real assert (isequal (x', x)) ***** test % complex syms x assert (isequal (x', conj(x))) ***** test % complex array syms x A = [x 2*x]; B = [conj(x); 2*conj(x)]; assert(isequal(A', B)) ***** test A = [1 2; 3 4]; assert(isequal( sym(A)' , sym(A') )) ***** test A = [1 2] + 1i; assert(isequal( sym(A)' , sym(A') )) ***** test % true/false t = sym(true); f = sym(false); assert (isequal ( t', t)) assert (isequal ( f', f)) ***** test % more true/false syms x A = [x true 1i]; B = [conj(x); true; -sym(1i)]; assert (isequal ( A', B)) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/sum.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sum.m ***** error sum (sym(1), 2, 3) ***** error sum (sym(1), 42) ***** shared x,y,z syms x y z ***** assert (isequal (sum (x), x)) ***** assert (isequal (sum ([x y z]), x+y+z)) ***** assert (isequal (sum ([x; y; z]), x+y+z)) ***** assert (isequal (sum ([x y z], 1), [x y z])) ***** assert (isequal (sum ([x y z], 2), x+y+z)) ***** shared a,b b = [1 2; 3 4]; a = sym(b); ***** assert (isequal (sum(a), sum(b))) ***** assert (isequal (sum(a,1), sum(b,1))) ***** assert (isequal (sum(a,2), sum(b,2))) ***** test % weird inputs a = sum('xx', sym(1)); assert (isequal (a, sym('xx'))) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/mrdivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/mrdivide.m ***** test % scalar syms x assert (isa( x/x, 'sym')) assert (isequal( x/x, sym(1))) assert (isa( 2/x, 'sym')) assert (isa( x/2, 'sym')) ***** test % matrix / scalar D = 2*[0 1; 2 3]; A = sym(D); assert (isequal ( A/2 , D/2 )) assert (isequal ( A/sym(2) , D/2 )) ***** test % I/A: either invert A or leave unevaluated: not bothered which A = sym([1 2; 3 4]); B = sym(eye(2)) / A; assert (isequal (B, inv(A)) || strncmpi (sympy (B), 'MatPow', 6)) ***** xtest % immutable test, upstream: TODO A = sym([1 2; 3 4]); B = sym('ImmutableDenseMatrix([[Integer(1), Integer(2)], [Integer(3), Integer(4)]])'); assert (isequal (A/A, B/B)) ***** test % A = C/B is C = A*B A = sym([1 2; 3 4]); B = sym([1 3; 4 8]); C = A*B; A2 = C / B; assert (isequal (A, A2)) ***** test A = [1 2; 3 4]; B = A / A; % assert (isequal (B, sym(eye(2)) assert (isequal (B(1,1), 1)) assert (isequal (B(2,2), 1)) assert (isequal (B(2,1), 0)) assert (isequal (B(1,2), 0)) ***** test A = sym([5 6]); B = sym([1 2; 3 4]); C = A*B; A2 = C / B; assert (isequal (A, A2)) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/acoth.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/acoth.m ***** error acoth (sym(1), 2) ***** assert (isequaln (acoth (sym(nan)), sym(nan))) ***** shared x, d d = 2; x = sym('2'); ***** test f1 = acoth(x); f2 = acoth(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = acoth(A); f2 = acoth(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = acoth (d); f = acoth (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/heaviside.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/heaviside.m ***** error heaviside (sym(1), 2, 3) ***** assert (isequal (heaviside (sym(1)), sym(1))) ***** assert (isequal (heaviside (-sym(1)), sym(0))) ***** assert (double (heaviside (1)), heaviside (1)) ***** test D = [1 -1; -10 20]; A = sym(D); assert (double (heaviside (A)), heaviside (D)) ***** test H0 = sym([1 -2 0; 3 0 pi]); A = heaviside (sym(0), H0); assert (isequal (A, H0)) ***** test A = heaviside ([-1 0 1], sym(1)/2); assert (isequal (A, [0 sym(1)/2 1])) ***** test A = heaviside ([-1 0 1], sym(1)/2); assert (isequal (A, [0 sym(1)/2 1])) ***** assert (isequaln (heaviside (sym(nan)), sym(nan))) ***** test assert (isequaln (heaviside (sym(nan), sym(nan)), sym(nan))) assert (isequaln (heaviside (0, sym(nan)), sym(nan))) assert (isequaln (heaviside (2, sym(nan)), sym(1))) assert (isequaln (heaviside (-2, sym(nan)), sym(0))) ***** test % round trip syms x A = heaviside (1); f = heaviside (x); h = function_handle (f); B = h (1); assert (A, B, -eps) ***** test % round trip syms x h0 f = heaviside (x, h0); h = function_handle (f, 'vars', {x h0}); A = heaviside (1, 1/2); B = h (1, 1/2); assert (A, B, -eps) A = heaviside (0, 1/2); B = h (0, 1/2); assert (A, B, -eps) 12 tests, 12 passed, 0 known failure, 0 skipped [inst/@sym/null.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/null.m ***** test A = sym([1 2; 3 4]); assert (isempty (null (A))) ***** assert (isempty (null (sym(4)))) ***** test A = sym([1 2 3; 3 4 5]); assert (isequal (null(A), sym([1;-2;1]))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/flipud.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/flipud.m ***** test % simple syms x A = [x 2; sym(pi) x]; B = [sym(pi) x; x 2]; assert (isequal (flipud(A), B)) ***** test % simple, odd # rows syms x A = [x 2; sym(pi) x; [1 2]]; B = [[1 2]; sym(pi) x; x 2]; assert (isequal (flipud(A), B)) ***** test % scalar syms x assert (isequal (flipud(x), x)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/sympy.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sympy.m ***** assert (strcmp (sympy (sym(pi)), 'pi')) ***** assert (strcmp (sympy (sym(1)), 'Integer(1)')) ***** assert (strcmp (sympy (sym(2)/3), 'Rational(2, 3)')) ***** assert (strcmp (sympy (sym('x')), 'Symbol(''x'')')) ***** test x = sym('x'); assert (isequal (sym(sympy(x)), x)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/dsolve.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/dsolve.m ***** error dsolve (1, sym('x')) ***** test syms y(x) de = diff(y, 2) - 4*y == 0; f = dsolve(de); syms C1 C2 g1 = C1*exp(-2*x) + C2*exp(2*x); g2 = C2*exp(-2*x) + C1*exp(2*x); assert (isequal (f, g1) || isequal (f, g2)) ***** test % Not enough initial conditions syms y(x) C1 de = diff(y, 2) + 4*y == 0; g = 3*cos(2*x) + C1*sin(2*x); try f = dsolve(de, y(0) == 3); waserr = false; catch waserr = true; expectederr = regexp (lasterr (), 'Perhaps.*under-specified'); f = 42; end assert ((waserr && expectederr) || isequal (f, g)) ***** test % Solution in implicit form syms y(x) C1 de = (2*x*y(x) - exp(-2*y(x)))*diff(y(x), x) + y(x) == 0; sol = dsolve (de); eqn = x*exp(2*y(x)) - log(y(x)) == C1; % could differ by signs sol = lhs (sol) - rhs (sol); eqn = lhs (eqn) - rhs (eqn); sol2 = subs (sol, C1, -C1); assert (isequal (sol, eqn) || isequal (sol2, eqn)) ***** test % Compute solution and classification syms y(x) C1 de = (2*x*y(x) - exp(-2*y(x)))*diff(y(x), x) + y(x) == 0; [sol, classy] = dsolve (de); assert (any (strcmp (classy, '1st_exact'))) ***** test % initial conditions (first order ode) syms y(x) de = diff(y, x) + 4*y == 0; f = dsolve(de, y(0) == 3); g = 3*exp(-4*x); assert (isequal (f, g)) ***** test % initial conditions (second order ode) syms y(x) de = diff(y, 2) + 4*y == 0; f = dsolve(de, y(0) == 3, subs(diff(y,x),x,0)==0); g = 3*cos(2*x); assert (isequal (f, g)) ***** test % Dirichlet boundary conditions (second order ode) syms y(x) de = diff(y, 2) + 4*y == 0; f = dsolve(de, y(0) == 2, y(1) == 0); g = -2*sin(2*x)/tan(sym('2'))+2*cos(2*x); assert (isequal (simplify (f - g), 0)) ***** test % Neumann boundary conditions (second order ode) syms y(x) de = diff(y, 2) + 4*y == 0; f = dsolve(de, subs(diff(y,x),x,0)==1, subs(diff(y,x),x,1)==0); g = sin(2*x)/2+cos(2*x)/(2*tan(sym('2'))); assert (isequal (simplify (f - g), 0)) ***** test % Dirichlet-Neumann boundary conditions (second order ode) syms y(x) de = diff(y, 2) + 4*y == 0; f = dsolve(de, y(0) == 3, subs(diff(y,x),x,1)==0); g = 3*sin(2*x)*tan(sym('2'))+3*cos(2*x); assert (isequal (simplify (f - g), 0)) ***** test % System of ODEs gives struct, Issue #1003. syms x(t) y(t) ode1 = diff(x(t),t) == 2*y(t); ode2 = diff(y(t),t) == 2*x(t); soln = dsolve([ode1, ode2]); assert (isstruct (soln)) assert (numfields (soln) == 2) assert (isequal (sort (fieldnames (soln)), {'x'; 'y'})) ***** test % System of ODEs syms x(t) y(t) C1 C2 ode1 = diff(x(t),t) == 2*y(t); ode2 = diff(y(t),t) == 2*x(t); soln = dsolve([ode1, ode2]); soln = [soln.x, soln.y]; g1 = [C1*exp(-2*t) + C2*exp(2*t), -C1*exp(-2*t) + C2*exp(2*t)]; g2 = [C1*exp(2*t) + C2*exp(-2*t), C1*exp(2*t) - C2*exp(-2*t)]; g3 = [-C1*exp(-2*t) + C2*exp(2*t), C1*exp(-2*t) + C2*exp(2*t)]; g4 = [C1*exp(2*t) - C2*exp(-2*t), C1*exp(2*t) + C2*exp(-2*t)]; % old SymPy <= 1.5.1 had some extra twos g5 = [2*C1*exp(-2*t) + 2*C2*exp(2*t), -2*C1*exp(-2*t) + 2*C2*exp(2*t)]; g6 = [2*C1*exp(2*t) + 2*C2*exp(-2*t), 2*C1*exp(2*t) - 2*C2*exp(-2*t)]; assert (isequal (soln, g1) || isequal (soln, g2) || ... isequal (soln, g3) || isequal (soln, g4) || ... isequal (soln, g5) || isequal (soln, g6)) ***** test % System of ODEs (initial-value problem) syms x(t) y(t) ode_1=diff(x(t),t) == 2*y(t); ode_2=diff(y(t),t) == 2*x(t); sol_ivp=dsolve([ode_1,ode_2],x(0)==1,y(0)==0); g_ivp=[exp(-2*t)/2+exp(2*t)/2,-exp(-2*t)/2+exp(2*t)/2]; assert (isequal ([sol_ivp.x, sol_ivp.y], g_ivp)) ***** test syms y(x) de = diff(y, 2) + 4*y == 0; f = dsolve(de, y(0) == 0, y(sym(pi)/4) == 1); g = sin(2*x); assert (isequal (f, g)) ***** test % Nonlinear example syms y(x) C1 e = diff(y, x) == y^2; g = -1 / (C1 + x); soln = dsolve(e); assert (isequal (soln, g)) ***** test % Nonlinear example with initial condition syms y(x) e = diff(y, x) == y^2; g = -1 / (x - 1); soln = dsolve(e, y(0) == 1); assert (isequal (soln, g)) ***** test % forcing, Issue #183, broken in older sympy if (pycall_sympy__ ('return Version(spver) >= Version("1.7.1")')) syms x(t) y(t) ode1 = diff(x) == x + sin(t) + 2; ode2 = diff(y) == y - t - 3; soln = dsolve([ode1 ode2], x(0) == 1, y(0) == 2); X = soln.x; Y = soln.y; assert (isequal (diff(X) - (X + sin(t) + 2), 0)) assert (isequal (diff(Y) - (Y - t - 3), 0)) end ***** test syms f(x) a b de = diff(f, x) == 4*f; s = dsolve(de, f(a) == b); assert (isequal (subs(s, x, a), b)) ***** test % array of ICs syms x(t) y(t) ode_1 = diff (x(t), t) == 2*y(t); ode_2 = diff (y(t), t) == 2*x(t); sol = dsolve([ode_1, ode_2], [x(0)==1 y(0)==0]); g = [exp(-2*t)/2+exp(2*t)/2, -exp(-2*t)/2+exp(2*t)/2]; assert (isequal ([sol.x, sol.y], g)) ***** test % cell-array of ICs or ODEs, but not both % Note: to support both we'd need a wrapper outside of @sym syms x(t) y(t) ode_1 = diff (x(t), t) == 2*y(t); ode_2 = diff (y(t), t) == 2*x(t); sol = dsolve([ode_1, ode_2], {x(0)==1 y(0)==0}); g = [exp(-2*t)/2+exp(2*t)/2, -exp(-2*t)/2+exp(2*t)/2]; assert (isequal ([sol.x, sol.y], g)) sol = dsolve({ode_1, ode_2}, [x(0)==1 y(0)==0]); g = [exp(-2*t)/2+exp(2*t)/2, -exp(-2*t)/2+exp(2*t)/2]; assert (isequal ([sol.x, sol.y], g)) ***** test % array of ICs, Issue #1040. if (pycall_sympy__ ('return Version(spver) >= Version("1.7.1")')) syms x(t) y(t) z(t) syms x_0 y_0 z_0 diffEqns = [diff(x, t) == -x + 1, diff(y, t) == -y, diff(z, t) == -z]; initCond = [x(0) == x_0, y(0) == y_0, z(0) == z_0]; soln = dsolve (diffEqns, initCond); soln = [soln.x, soln.y, soln.z]; exact_soln = [(x_0 - 1)*exp(-t) + 1 y_0*exp(-t) z_0*exp(-t)]; assert (isequal (soln, exact_soln)) end 21 tests, 21 passed, 0 known failure, 0 skipped [inst/@sym/degree.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/degree.m ***** error degree (sym(1), 2, 3) ***** test syms x assert (isequal (degree(x^3), 3)) assert (isequal (degree(x^3 + 6), 3)) ***** test % specify variable syms x y p = x^2 + y*x + 1; assert (isequal (degree(p), 2)) assert (isequal (degree(p, x), 2)) assert (isequal (degree(p, y), 1)) ***** test syms x a oo assert (isequal (degree(x^3, a), 0)) assert (isequal (degree(sym(1), a), 0)) assert (isequal (degree(sym(0), a), -oo)) ***** xtest % constant inputs syms oo assert (isequal (degree(sym(1)), 0)) assert (isequal (degree(sym(0)), -oo)) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/mtimes.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/mtimes.m ***** test % scalar syms x assert (isa (x*2, 'sym')) assert (isequal (2*sym(3), sym(6))) assert (isequal (sym(2)*3, sym(6))) ***** test % matrix-scalar D = [0 1; 2 3]; A = sym(D); assert (isa (2*A, 'sym')) assert (isequal ( 2*A , 2*D )) assert (isequal ( A*2 , 2*D )) ***** test % matrix-matrix D = [0 1; 2 3]; A = sym(D); assert (isa (A*A, 'sym')) assert (isequal ( A*A , D*D )) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/ezmesh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ezmesh.m ***** error syms u v t ezmesh(u*v, 2*u*v, 3*v*t) ***** error syms u v t ezmesh(u*v, 2*u*v, u*v*t) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/gammainc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/gammainc.m ***** assert (isequal (gammainc (sym(0), 1), sym(0))) ***** assert (isequal (gammainc (sym(0), 2), sym(0))) ***** assert (isequal (gammainc (sym('oo'), 1), sym(1))) ***** assert (isequal (gammainc (sym(0), 1, 'upper'), sym(1))) ***** assert (isequal (gammainc (sym(0), 2, 'upper'), sym(1))) ***** assert (isequal (gammainc (sym('oo'), 1, 'upper'), sym(0))) ***** test % default is lower syms x a assert (isequal (gammainc (x, a), gammainc(x, a, 'lower'))) ***** test % compare to double x = 5; a = 1; A = gammainc (x, a); B = double (gammainc (sym(x), a)); assert(A, B, -eps) ***** test % compare to double where gamma(a) != 1 x = 5; a = 3; A = gammainc (x, a); B = double (gammainc (sym(x), a)); assert(A, B, -eps) ***** test % compare to double x = 100; a = 1; A = gammainc (x, a); B = double (gammainc (sym(x), a)); assert(A, B, -eps) ***** test % compare to double xs = sym(1)/1000; x = 1/1000; a = 1; A = gammainc (x, a); B = double (gammainc (xs, a)); assert(A, B, -eps) ***** test % compare to double x = 5; a = 1; A = gammainc (x, a, 'upper'); B = double (gammainc (sym(x), a, 'upper')); assert(A, B, -10*eps) ***** test % compare to double x = 10; a = 1; A = gammainc (x, a, 'upper'); B = double (gammainc (sym(x), a, 'upper')); assert(A, B, -10*eps) ***** test % compare to double x = 40; a = 1; A = gammainc (x, a, 'upper'); B = double (gammainc (sym(x), a, 'upper')); assert(A, B, -10*eps) ***** test % compare to double xs = sym(1)/1000; x = 1/1000; a = 1; A = gammainc (x, a, 'upper'); B = double (gammainc (xs, a, 'upper')); assert(A, B, -eps) ***** test % vectorized P = gammainc([sym(pi) 2], [1 3]); expected = [gammainc(pi, sym(1)) gammainc(2, sym(3))]; assert (isequal (P, expected)) ***** test % vectorized P = gammainc(sym(pi), [1 3]); expected = [gammainc(sym(pi), 1) gammainc(sym(pi), 3)]; assert (isequal (P, expected)) ***** test % vectorized P = gammainc([sym(pi) 2], 1); expected = [gammainc(pi, sym(1)) gammainc(2, sym(1))]; assert (isequal (P, expected)) ***** test % round trip syms x a f = gammainc (x, a, 'upper'); h = function_handle (f, 'vars', [x a]); A = h (1.1, 2); B = gammainc (1.1, 2, 'upper'); assert (A, B) ***** test % round trip syms x a f = gammainc (x, a, 'lower'); h = function_handle (f, 'vars', [x a]); A = h (1.1, 2); B = gammainc (1.1, 2, 'lower'); assert (A, B) ***** test % round trip syms x a f = gammainc (x, a, 'upper'); h = function_handle (f, 'vars', [x a]); A = h (1.1, 2.2); B = gammainc (1.1, 2.2, 'upper'); assert (A, B) ***** test % round trip syms x a f = gammainc (x, a, 'lower'); h = function_handle (f, 'vars', [x a]); A = h (1.1, 2.2); B = gammainc (1.1, 2.2, 'lower'); assert (A, B) 22 tests, 22 passed, 0 known failure, 0 skipped [inst/@sym/potential.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/potential.m ***** error potential (sym(1), 2, 3, 4) ***** shared x,y,z syms x y z ***** test % 1D f = 3*x^2; F = x^3; assert (isequal (potential(f), F)) assert (isequal (potential(f, x), F)) assert (isequal (potential(f, x, 0), F)) assert (isequal (potential(f, x, 2), F - 8)) ***** test F = x*exp(y) + (z-1)^2; f = gradient(F); G = potential(f, [x;y;z], [0;1;1]); assert (isAlways (G == F)) ***** test F = x*exp(y); f = gradient(F); G = potential(f); assert (isAlways (G == F)) ***** test % no potential exists syms x y a = [x; x*y^2]; assert (isnan (potential (a))) ***** shared ***** xtest % fails b/c of sympy #8458 (piecewise expr that should simplify) syms x f = cos(x); assert (isequal (potential(f, x), sin(x))) !!!!! known failure assert (isequal (potential (f, x), sin (x))) failed 6 tests, 5 passed, 1 known failure, 0 skipped [inst/@sym/ssinint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ssinint.m ***** assert (isequal (ssinint(sym(0)), -sym(pi)/2)) ***** test A = ssinint (sym ([0 1])); B = [-pi/2 -0.62471325642771360426]; assert( all(all( abs(double(A)-B) < 1e-15 ))) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/minus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/minus.m ***** test % scalar syms x assert (isa (x-1, 'sym')) assert (isa (x-x, 'sym')) assert (isequal (x-x, sym(0))) ***** test % matrices D = [0 1; 2 3]; A = sym(D); DZ = D - D; assert (isequal ( A - D , DZ )) assert (isequal ( A - A , DZ )) assert (isequal ( D - A , DZ )) assert (isequal ( A - 2 , D - 2 )) assert (isequal ( 4 - A , 4 - D )) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/zeta.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/zeta.m ***** error zeta (sym(1), 2, 3) ***** assert (isequaln (zeta (sym(nan)), sym(nan))) ***** test f1 = zeta (sym(2)); f2 = pi^2/6; assert (double (f1), f2, -1e-15) ***** test A = sym([0 2; 4 6]); f1 = zeta (A); f2 = [-1/2 pi^2/6; pi^4/90 pi^6/945]; assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); f = zeta (y); h = function_handle (f); A = zeta (2); B = h (2); assert (A, B, -eps) ***** test syms x assert (isequal (zeta (0, x), zeta(x))) ***** test % ensure its the nth deriv wrt x, not the n deriv syms x n F = zeta (n, x); F = subs(F, n, 3); assert (isequal (F, diff (zeta (x), x, x, x))) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/intersect.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/intersect.m ***** test A = sym([1 2 3]); B = sym([1 2 4]); C = intersect(A, B); D = sym([1 2]); assert (isequal (C, D)) ***** test % one nonsym A = sym([1 2 3]); B = [1 2 4]; C = intersect(A, B); D = sym([1 2]); assert (isequal (C, D)) ***** test % empty A = sym([1 2 3]); C = intersect(A, A); assert (isequal (C, A)) ***** test % empty input A = sym([1 2]); C = intersect(A, []); assert (isequal (C, sym([]))) ***** test % scalar syms x assert (isequal (intersect([x 1], x), x)) assert (isequal (intersect(x, x), x)) ***** test A = interval(sym(1), 3); B = interval(sym(2), 5); C = intersect(A, B); assert( isequal( C, interval(sym(2), 3))) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@sym/harmonic.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/harmonic.m ***** error harmonic (sym(1), 2) ***** xtest assert (isequaln (harmonic (sym(nan)), sym(nan))) !!!!! known failure assert (isequaln (harmonic (sym (nan)), sym (nan))) failed ***** assert (isequal (harmonic (sym(0)), sym(0))) ***** assert (isinf (harmonic (sym(inf)))) ***** assert (isequal (harmonic (sym([9 10])), [sym(7129)/2520 sym(7381)/2520])) ***** test % round trip y = sym('y'); A = harmonic (7); f = harmonic (y); h = function_handle (f); B = h (7); assert (A, B, -eps) 6 tests, 5 passed, 1 known failure, 0 skipped [inst/@sym/hessian.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/hessian.m ***** error hessian (sym(1), 2, 3) ***** error hessian ([sym(1) sym(2)]) ***** shared x,y,z syms x y z ***** test % 1D f = x^2; assert (isequal (hessian(f), diff(f,x,x))) assert (isequal (hessian(f,{x}), diff(f,x,x))) assert (isequal (hessian(f,x), diff(f,x,x))) ***** test % const f = sym(1); g = sym(0); assert (isequal (hessian(f), g)) assert (isequal (hessian(f,x), g)) ***** test % double const f = 1; g = sym(0); assert (isequal (hessian(f,x), g)) ***** test % linear f = 42*x; g = sym(0); assert (isequal (hessian(f), g)) assert (isequal (hessian(f,x), g)) ***** test % linear f = 42*x - sym('a')*y; g = [0 0; 0 0]; assert (isequal (hessian(f, {x y}), g)) ***** test % 2d f = x*cos(y); g = [0 -sin(y); -sin(y) -f]; assert (isequal (hessian(f), g)) assert (isequal (hessian(f, {x y}), g)) ***** test % 3d f = x*cos(z); Hexp = [0 0 -sin(z); sym(0) 0 0; -sin(z) 0 -f]; H = hessian(f, {x y z}); assert (isequal (H, Hexp)) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/qr.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/qr.m ***** error qr (sym(1), 2, 3) ***** error [Q, R, P] = qr (sym(1)) ***** error qr (sym(1), 1) ***** test % scalar [q, r] = qr(sym(6)); assert (isequal (q, sym(1))) assert (isequal (r, sym(6))) ***** test syms x positive [q, r] = qr(x); assert (isequal (q*r, x)) assert (isequal (q, sym(1))) assert (isequal (r, x)) ***** test % trickier if x could be zero, fails on 1.8 <= SymPy <= 1.10.1 syms x [q, r] = qr(x); if (pycall_sympy__ ('return Version(spver) > Version("1.10.1")')) assert (isequal (q*r, x)) end ***** test A = [1 2; 3 4]; B = sym(A); [Q, R] = qr(B); assert (isequal (Q*R, B)) assert (isequal (R(2,1), sym(0))) assert (isequal (Q(:,1)'*Q(:,2), sym(0))) %[QA, RA] = qr(A) %assert ( max(max(double(Q)-QA)) <= 10*eps) %assert ( max(max(double(Q)-QA)) <= 10*eps) ***** test % non square: tall skinny A = sym([1 2; 3 4; 5 6]); [Q, R] = qr (A, 0); assert (size (Q), [3 2]) assert (size (R), [2 2]) assert (isequal (Q*R, A)) ***** test % non square: short fat A = sym([1 2 3; 4 5 6]); [Q, R] = qr (A); assert (isequal (Q*R, A)) ***** test % non square: short fat, rank deficient A = sym([1 2 3; 2 4 6]); [Q, R] = qr (A); assert (isequal (Q*R, A)) A = sym([1 2 3; 2 4 6; 0 0 0]); [Q, R] = qr (A); assert (isequal (Q*R, A)) ***** test % rank deficient A = sym([1 2 3; 2 4 6; 0 0 0]); [Q, R] = qr (A); assert (isequal (Q*R, A)) A = sym([1 2 3; 2 5 6; 0 0 0]); [Q, R] = qr (A); assert (isequal (Q*R, A)) ***** test % single return value R not Q assert (isequal (qr (sym(4)), sym(4))) 12 tests, 12 passed, 0 known failure, 0 skipped [inst/@sym/abs.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/abs.m ***** error abs (sym(1), 2) ***** assert (isequaln (abs (sym(nan)), sym(nan))) ***** shared x, d d = -1; x = sym('-1'); ***** test f1 = abs(x); f2 = abs(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = abs(A); f2 = abs(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = abs (d); f = abs (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/csch.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/csch.m ***** error csch (sym(1), 2) ***** assert (isequaln (csch (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = csch(x); f2 = csch(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = csch(A); f2 = csch(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = csch (d); f = csch (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/mod.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/mod.m ***** error mod (sym(1), 2, 3 ,4) ***** assert (isequal (mod (sym(5), 4), sym(1))) ***** assert (isequal (mod ([sym(5) 8], 4), [1 0] )) ***** assert (isequal (mod (sym(5), [2 3]), [1 2] )) ***** assert (isequal (mod ([sym(5) sym(6)], [2 3]), [1 0] )) ***** test syms x assert (isequal ( mod (5*x, 3), 2*x )) ***** test syms x a = [7*x^2 + 3*x + 3 3*x; 13*x^4 6*x]; assert (isequal ( mod (a,3), [x^2 0; x^4 0] )) ***** test % vector of polys with mix of vars: symvar on each syms x y a = [6*x 7*y]; b = mod(a, 4); c = [2*x 3*y]; assert (isequal (b, c)) ***** test % coeff has variable syms x n = sym('n', 'integer'); p = (3*n + 2)*x; q = mod(p, 3); assert (isequal (q, 2*x)) ***** test % coeff has variable syms x a p = a*x; q = mod(p, 3); q = children(q); q = q(2); % order might be fragile! w = subs(q, a, 5); assert (isequal (w, 2)) ***** test % different modulo syms x y q = mod([5*x + 10 5*y + 10], [2 3]); assert (isequal (q, [x 2*y + 1])) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/@sym/lt.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/lt.m ***** test % simple x = sym(1); y = sym(1); e = x < y; assert (~logical (e)) x = sym(1); y = sym(2); e = x < y; assert (logical (e)) ***** test % mix sym and double x = sym(1); y = 1; e = x < y; assert (~logical (e)) x = sym(1); y = 2; e = x < y; assert (logical (e)) x = 1; y = sym(1); e = x < y; assert (~logical (e)) x = 1; y = sym(2); e = x < y; assert (logical (e)) ***** test % Type of the output is sym or logical? % FIXME: in current version, they are sym x = sym(1); y = sym(1); e1 = x < y; x = sym(1); y = sym(2); e2 = x < y; %assert (islogical (e1)) %assert (islogical (e2)) assert (isa (e1, 'sym')) assert (isa (e2, 'sym')) ***** test % ineq w/ symbols syms x y e = x < y; assert (~islogical (e)) assert (isa (e, 'sym')) ***** test % array -- array syms x a = sym([1 3 3 2*x]); b = sym([2 x 3 10]); e = a < b; assert (isa (e, 'sym')) assert (logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), 3 < x)) assert (~logical (e(3))) assert (isa (e(4), 'sym')) assert (isequal (e(4), 2*x < 10)) ***** test % array -- scalar syms x oo a = sym([1 x oo]); b = sym(3); e = a < b; assert (isa (e, 'sym')) assert (logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), x < 3)) assert (~logical (e(3))) ***** test % scalar -- array syms x oo a = sym(1); b = sym([2 x -oo]); e = a < b; assert (isa (e, 'sym')) assert (logical (e(1))) assert (isa (e(2), 'sym')) assert (isequal (e(2), 1 < x)) assert (~logical (e(3))) ***** test % ineq w/ nan syms x snan = sym(nan); e = x < snan; assert (~logical (e)) e = snan < x; assert (~logical (e)) b = [sym(0) x]; e = b < snan; assert (isequal (e, [false false])) ***** test % oo syms oo x e = oo < x; assert (isa (e, 'sym')) assert (strcmp (strtrim (disp (e, 'flat')), 'oo < x')) ***** test % sympy true matrix a = sym([1 3 3]); b = sym([2 4 1]); e = a < b; %assert (~isa (e, 'sym')) %assert (islogical (e)) assert (isequal (e, [true true false])) ***** test % oo, finite real variables syms oo syms z real assumeAlso(z, 'finite') e = -oo < z; assert (isequal (e, sym(true))) e = z < oo; assert (isequal (e, sym(true))) ***** test % -oo, positive var (known failure w/ sympy 0.7.6.x) syms oo syms z positive e = -oo < z; assert (logical (e)) assert (isequal (e, sym(true))) ***** test % positive syms z positive e = -1 < z; assert (isequal (e, sym(true))) ***** test syms oo z = sym('z', 'negative'); e = z < oo; assert (isequal (e, sym(true))) 14 tests, 14 passed, 0 known failure, 0 skipped [inst/@sym/transpose.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/transpose.m ***** test x = sym(1); assert (isequal (x.', x)) ***** assert (isempty (sym([]).')) ***** test syms x; assert (isequal (x.', x)) ***** test A = [1 2; 3 4]; assert(isequal( sym(A).' , sym(A.') )) ***** test A = [1 2] + 1i; assert(isequal( sym(A).' , sym(A.') )) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/double.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/double.m ***** test % numeric scalar a = double(sym(10)); assert (a == 10) assert (isa (a, 'double')) ***** test % numeric vectors a = double(sym([10 12])); assert (isequal (a, [10 12])) assert (isa (a, 'double')) ***** test % complex a = 3 + 4i; b = sym(a); assert (isequal (double (b), a)) ***** xtest % unexpected, precisely same floating point a = 3 + 4i; b = sym(a); assert (isequal (double (b/pi), a/pi)) ***** test % floating point x = sqrt(sym(2)); assert( abs(double(x) - sqrt(2)) < 2*eps) x = sym(pi); assert( abs(double(x) - pi) < 2*eps) ***** test oo = sym(inf); assert( double(oo) == inf ) assert( double(-oo) == -inf ) assert( isnan(double(0*oo)) ) ***** test zoo = sym('zoo'); assert (double(zoo) == complex(inf, inf)) ***** test zoo = sym('zoo'); assert (double(-zoo) == double(zoo) ) assert( isnan(double(0*zoo)) ) ***** test % nan snan = sym(nan); assert( isnan(double(snan))) ***** test % don't want NaN+NaNi snan = sym(nan); assert (isreal (double (snan))) ***** test % arrays a = [1 2; 3 4]; assert( isequal( double(sym(a)), a )) assert( isequal( double(sym(a)), a )) % should fail with error for non-double ***** error syms x; double(x) ***** error syms x; double([1 2 x]) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/@sym/ismatrix.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/ismatrix.m ***** assert(ismatrix(sym('x'))) ***** assert(ismatrix(sym([1 2 3]))) ***** assert(ismatrix(sym([1; 2]))) ***** assert(ismatrix(sym([1 2; 3 4]))) ***** assert(ismatrix(sym([]))) ***** assert(ismatrix(sym(ones(1,0)))) ***** assert(ismatrix(sym(ones(0,3)))) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/zeros.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/zeros.m ***** test y = zeros(sym(2)); x = [0 0; 0 0]; assert( isequal( y, sym(x))) ***** test y = zeros(sym(2), 1); x = [0; 0]; assert( isequal( y, sym(x))) ***** test y = zeros(sym(1), 2); x = [0 0]; assert( isequal( y, sym(x))) ***** test y = zeros (sym([2 3])); x = sym (zeros ([2 3])); assert (isequal (y, x)) ***** assert( isa( zeros(sym(2), 'double'), 'double')) ***** assert( isa( zeros(3, sym(3), 'single') , 'single')) ***** assert( isa( zeros(3, sym(3)), 'sym')) ***** assert( isa( zeros(3, sym(3), 'sym'), 'sym')) ***** xtest % Issue #13 assert( isa( zeros(3, 3, 'sym'), 'sym')) !!!!! known failure invalid data type specified 9 tests, 8 passed, 1 known failure, 0 skipped [inst/@sym/sym2poly.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/sym2poly.m ***** shared x,y,a,b,c syms x y a b c ***** assert (isequal (sym2poly (x^2 + 3*x - 4), [1 3 -4])) ***** assert (isequal (sym2poly (x^6 - x^3), [1 0 0 -1 0 0 0])) ***** assert (isequal (sym2poly (x^2 + 3*x - 4, x), [1 3 -4])) ***** assert (norm (sym2poly (pi*x^2 + exp(sym(1))) - [pi 0 exp(1)]) < 10*eps) ***** assert (isa (sym2poly (x^2 + 3*x - 4), 'double')) ***** assert (isa (sym2poly (x^2 + 3*x - 4, x), 'sym')) ***** assert (isequal (sym2poly (x^2+y*x, x), [sym(1) y sym(0)])) ***** assert (isequal (sym2poly (x^2+y*x, y), [x x^2])) ***** assert (isequal (sym2poly (poly2sym ([a b c], x), x), [a b c])) ***** assert (isequal (poly2sym (sym2poly(a*x^2 + c, x), x), a*x^2 + c)) ***** assert (isequal (sym2poly (poly2sym ([1 2 3])), [1 2 3])) ***** error % too many symbols for single-input p = a*x^2 + 2; c = sym2poly (p); ***** assert (isequal (sym2poly (sym(5)), sym(5))) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/@sym/cosh.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/cosh.m ***** error cosh (sym(1), 2) ***** assert (isequaln (cosh (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = cosh(x); f2 = cosh(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = cosh(A); f2 = cosh(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = cosh (d); f = cosh (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/uminus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/uminus.m ***** test % scalar syms x assert (isa (-x, 'sym')) assert (isequal (-(-x), x)) ***** test % matrix D = [0 1; 2 3]; A = sym(D); assert( isequal( -A, -D )) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/repmat.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/repmat.m ***** test % simple syms x A = [x x x; x x x]; assert (isequal (repmat(x, 2, 3), A)) ***** test % block cf double A = [1 2 3; 4 5 6]; B = sym(A); C = repmat(A, 2, 3); D = repmat(B, 2, 3); assert (isequal (C, D)) ***** test % empty A = repmat(sym([]), 2, 3); assert (isempty(A)); assert (isequal (size(A), [0 0])) ***** test % more empties A = repmat(sym(pi), [0 0]); assert (isequal (size(A), [0 0])) A = repmat(sym(pi), [0 3]); assert (isequal (size(A), [0 3])) A = repmat(sym(pi), [2 0]); assert (isequal (size(A), [2 0])) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/solve.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/solve.m ***** test % Simple, single variable, single solution syms x d = solve(10*x == 50); assert (isequal (d, 5)) ***** test % Single variable, multiple solutions syms x d = solve(x^2 == 4); assert (length(d) == 2); assert (isequal (d, [2; -2]) || isequal (d, [-2; 2])) ***** shared x,y,eq syms x y eq = 10*x == 20*y; ***** test d = solve(eq, x); assert (isequal (d, 2*y)) ***** test d = solve(eq, y); assert (isequal (d, x/2)) ***** test d = solve(eq); assert (isequal (d, 2*y)) ***** shared x,y syms x y ***** test d = solve(2*x - 3*y == 0, x + y == 1); assert (isequal (d.x, sym(3)/5) && isequal(d.y, sym(2)/5)) ***** test d = solve(2*x - 3*y == 0, x + y == 1, x, y); assert (isequal (d.x, sym(3)/5) && isequal(d.y, sym(2)/5)) ***** test % Multiple solutions, multiple variables d = solve(x^2 == 4, x + y == 1); assert (length(d) == 2); % FIXME: SMT has d.x gives vector and d.y giving vector, what is % more intuitive? for i = 1:2 assert (isequal (d{i}.x + d{i}.y, 1)) assert (isequal ((d{i}.x)^2, 4)) end ***** test % No solutions syms x y z d = solve(x == y, z); assert (isempty (d)); ***** test % Multiple outputs with single solution [X, Y] = solve(2*x + y == 5, x + y == 3); assert (isequal (X, 2)) assert (isequal (Y, 1)) ***** test % system: vector of equations, vector of vars [X, Y] = solve([2*x + y == 5, x + y == 3], [x y]); assert (isequal (X, 2)) assert (isequal (Y, 1)) ***** test % system: vector of equations, individual vars [X, Y] = solve([2*x + y == 5, x + y == 3], x, y); assert (isequal (X, 2)) assert (isequal (Y, 1)) ***** test % system: individual equations, vector of vars [X, Y] = solve(2*x + y == 5, x + y == 3, [x y]); assert (isequal (X, 2)) assert (isequal (Y, 1)) ***** test % Multiple outputs with multiple solns [X, Y] = solve(x*x == 4, x == 2*y); assert ((isequal (X, [2; -2]) && isequal (Y, [1; -1])) || ... (isequal (X, [-2; 2]) && isequal (Y, [-1; 1]))) ***** test % Multiple outputs with multiple solns, specify vars [X, Y] = solve(x*x == 4, x == 2*y, x, y); assert ((isequal (X, [2; -2]) && isequal (Y, [1; -1])) || ... (isequal (X, [-2; 2]) && isequal (Y, [-1; 1]))) ***** error % mult outputs not allowed for scalar equation, even with mult soln (?) [s1, s2] = solve(x^2 == 4, x); ***** test % overdetermined X = solve(2*x - 10 == 0, 3*x - 15 == 0, x); assert (isequal (X, sym(5))) ***** test a = solve(2*x >= 10, 10*x <= 50); assert (isequal( a, x==sym(5))) ***** test A = solve([2*x == 4*y, 2 == 3], x); assert (isempty (A)) ***** test % Issue #850 A = solve (sym(pi)^2*x + y == 0); assert (isequal (A, -y/sym(pi)^2)) ***** test % https://github.com/sympy/sympy/issues/14632 A = solve([2*x == 4*y, sym(2) == 2], x); assert (isequal (A, 2*y)) ***** test % https://github.com/sympy/sympy/issues/14632 A = solve([2*x^2 == 32*y^2, sym(2) == 2], x); B = solve([2*x^2 == 32*y^2], x); assert (isequal (A, B) || isequal (A, flip (B))) ***** test A = solve ([x+1 0], x); assert (isequal (A, sym (-1))) ***** test A = solve (x + 1, x); assert (isequal (A, sym (-1))) A = solve (x, x); assert (isequal (A, sym (0))) 24 tests, 24 passed, 0 known failure, 0 skipped [inst/@sym/horzcat.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/horzcat.m ***** test % basic syms x A = [x x]; B = horzcat(x, x); C = horzcat(x, x, x); assert (isa (A, 'sym')) assert (isa (B, 'sym')) assert (isa (C, 'sym')) assert (isequal (size(A), [1 2])) assert (isequal (size(B), [1 2])) assert (isequal (size(C), [1 3])) ***** test % basic, part 2 syms x A = [x 1]; B = [1 x]; C = [1 2 x]; assert (isa (A, 'sym')) assert (isa (B, 'sym')) assert (isa (C, 'sym')) assert (isequal (size(A), [1 2])) assert (isequal (size(B), [1 2])) assert (isequal (size(C), [1 3])) ***** test % row vectors a = [sym(1) 2]; b = [sym(3) 4]; assert (isequal ( [a b] , [1 2 3 4] )) assert (isequal ( [a 3 4] , [1 2 3 4] )) assert (isequal ( [3 4 a] , [3 4 1 2] )) assert (isequal ( [a [3 4]] , [1 2 3 4] )) assert (isequal ( [a sym(3) 4] , [1 2 3 4] )) assert (isequal ( [a [sym(3) 4]] , [1 2 3 4] )) ***** test % col vectors a = [sym(1); 2]; b = [sym(3); 4]; assert (isequal ( [a b] , [1 3; 2 4] )) assert (isequal ( [a b a] , [1 3 1; 2 4 2] )) ***** test % empty vectors v = sym(1); a = [v []]; assert (isequal (a, v)) a = [[] v []]; assert (isequal (a, v)) a = [v [] []]; assert (isequal (a, v)) ***** test % more empty vectors v = [sym(1) sym(2)]; q = sym(ones(1, 0)); assert (isequal ([v q], v)) ***** error v = [sym(1) sym(2)]; q = sym(ones(3, 0)); w = horzcat(v, q); ***** test % issue #700 A = sym ([1 2]); B = simplify (A); assert (isequal ([B A], [A B])) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/gradient.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/gradient.m ***** shared x,y,z syms x y z ***** test % 1D f = x^2; assert (isequal (gradient(f), diff(f,x))) assert (isequal (gradient(f,{x}), diff(f,x))) assert (isequal (gradient(f,[x]), diff(f,x))) assert (isequal (gradient(f,x), diff(f,x))) ***** test % const f = sym(1); g = sym(0); assert (isequal (gradient(f), g)) assert (isequal (gradient(f,x), g)) ***** test % double const f = 1; g = sym(0); assert (isequal (gradient(f,x), g)) ***** test % 1D fcn in 2d/3d f = sin(y); assert (isequal (gradient(f), diff(f,y))) assert (isequal (gradient(f, {x,y}), [sym(0); diff(f,y)])) assert (isequal (gradient(f, [x y]), [sym(0); diff(f,y)])) assert (isequal (size (gradient(f, {x,y})), [2 1])) assert (isequal (gradient(f, {x,y,z}), [0; diff(f,y); 0])) assert (isequal (gradient(f, [x y z]), [0; diff(f,y); 0])) assert (isequal (size (gradient(f, {x,y,z})), [3 1])) ***** test % grad is column vector f = sin(y); assert (isequal (size (gradient(f, {x,y})), [2 1])) assert (isequal (size (gradient(f, {x,y,z})), [3 1])) assert (isequal (size (gradient(f, [x y])), [2 1])) assert (isequal (size (gradient(f, [x;y])), [2 1])) ***** test % 2d fcn in 2d/3d f = sin(exp(x)*y); g2 = [diff(f,x); diff(f,y)]; g3 = [diff(f,x); diff(f,y); diff(f,z)]; assert (isequal (gradient(f), g2)) assert (isequal (gradient(f, {x,y}), g2)) assert (isequal (gradient(f, {x,y,z}), g3)) ***** test % 2d fcn in 2d/3d f = sin(exp(x)*y+sinh(z)); g2 = [diff(f,x); diff(f,y)]; g3 = [diff(f,x); diff(f,y); diff(f,z)]; assert (isequal (gradient(f), g3)) assert (isequal (gradient(f, {x,y}), g2)) assert (isequal (gradient(f, {x,y,z}), g3)) ***** error gradient(sym('x'), 42, 42) ***** error gradient([sym('x') sym('x')]) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/@sym/exp.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/exp.m ***** error exp (sym(1), 2) ***** assert (isequaln (exp (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = exp(x); f2 = exp(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = exp(A); f2 = exp(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = exp (d); f = exp (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/dot.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/dot.m ***** error dot (sym(1), 2, 3) ***** test a = sym([1; 1; 0]); b = sym([1; 2; 4]); c = dot(a, b); assert (isequal (c, sym(3))) ***** test syms x a = sym([x; 0; 0]); b = sym([0; 1; 0]); c = dot(a, b); assert (isequal (c, sym(0))) ***** test assert (isequal (dot (sym([1 i]), sym([i 2])), sym(-i))) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@sym/erfcinv.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/erfcinv.m ***** error erfcinv (sym(1), 2) ***** assert (isequaln (erfcinv (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = erfcinv(x); f2 = erfcinv(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = erfcinv(A); f2 = erfcinv(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = erfcinv (d); f = erfcinv (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/any.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/any.m ***** test % matrix a = [0 0; 1 0]; s = sym(a); assert (isequal (any (s), any (a))) assert (isequal (any (s,1), any (a,1))) assert (isequal (any (s,2), any (a,2))) ***** test % vector a = [0 1 0]; s = sym(a); assert (isequal (any (s), any (a))) assert (isequal (any (s,1), any (a,1))) assert (isequal (any (s,2), any (a,2))) ***** test % should fail on symbols syms x s = [0 1 x]; try any (s) waserr = false; catch waserr = true; end assert (waserr) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@sym/angle.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/angle.m ***** test Z = [sqrt(sym(3)) + 3*sym(i), 3 + sqrt(sym(3))*sym(i); 1 + sym(i), sym(i)]; Q = [sym(pi)/3 sym(pi)/6; sym(pi)/4 sym(pi)/2]; assert( isequal( angle(Z), Q)); ***** test % roundtrip syms x A = angle (2+2i); f = angle (x); h = function_handle (f); B = h (2+2i); assert (A, B, -eps) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@sym/rank.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/rank.m ***** test A = sym([1 2; 3 4]); assert (rank(A) == 2); ***** test A = sym([1 2 3; 3 4 5]); assert (rank(A) == 2); ***** test A = sym([1 2; 1 2]); assert (rank(A) == 1); ***** test A = sym([1 2; 3 4]); assert (rank(A) == 2); ***** assert (rank(sym(1)) == 1); ***** assert (rank(sym(0)) == 0); ***** assert (rank(sym('x', 'positive')) == 1); 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@sym/atan.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/atan.m ***** error atan (sym(1), 2) ***** assert (isequaln (atan (sym(nan)), sym(nan))) ***** shared x, d d = 1; x = sym('1'); ***** test f1 = atan(x); f2 = atan(d); assert( abs(double(f1) - f2) < 1e-15 ) ***** test D = [d d; d d]; A = [x x; x x]; f1 = atan(A); f2 = atan(D); assert( all(all( abs(double(f1) - f2) < 1e-15 ))) ***** test % round trip y = sym('y'); A = atan (d); f = atan (y); h = function_handle (f); B = h (d); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/curl.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/curl.m ***** error curl([sym(1) 2 3], 42, 42) ***** shared x,y,z syms x y z ***** test % double const f = [1 2 3]; g = [sym(0); 0; 0]; assert (isequal (curl(f, [x y z]), g)) % should fail, calls @double: curl(f, {x y z}), g)) ***** test % div curl always 0 v = [exp(x); x*y; sin(z)]; g = curl(v); a = divergence(g, [x y z]); assert (isAlways (a == sym(0))) assert (isa (a, 'sym')) g = curl(v, [x y z]); a = divergence(g, [x y z]); assert (isAlways (a == sym(0))) assert (isa (a, 'sym')) ***** test % div curl always 0 v = [exp(x); erfc(x*y); sin(exp(x)*y+sinh(z))]; g = curl(v, [x y z]); a = divergence(g, [x y z]); assert (isAlways (a == sym(0))) assert (isa (a, 'sym')) ***** test % curl grad is vec zero f = sin(exp(x)*y+sinh(z)); g = curl(gradient(f, [x,y,z])); assert (isequal (g, sym([0;0;0]))) ***** test % 2d fcn in 2d/3d u = sin(exp(x)*y); v = x^2*y^3; vorticity2d = diff(v,x) - diff(u,y); omega = curl([u; v; 0], [x y z]); assert (isequal (omega, [0; 0; vorticity2d])) ***** error <3D vector> curl([sym(1) 2 3 4]) ***** error curl([sym(1) 2 3], {sym('x') sym('y') sym('z') sym('t')}) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/@sym/rref.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/rref.m ***** test A = sym([1 2; 3 4]); [r, k] = rref(A); assert (isequal (r, eye(2))) assert (isequal (k, [1 2])) ***** assert (isequal (rref(sym([2 1])), [1 sym(1)/2])) ***** assert (isequal (rref(sym([1 2; 2 4])), [1 2; 0 0])) ***** assert (isequal (rref(sym([0 0; 2 4])), [1 2; 0 0])) ***** test A = sym([1 2 3; 2 3 4]); [r, k] = rref(A); assert (isequal (r, [1 0 -1; 0 1 2])) assert (isequal (k, [1 2])); 5 tests, 5 passed, 0 known failure, 0 skipped [inst/@sym/dilog.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@sym/dilog.m ***** assert (isequal (dilog (sym(1)), sym(0))) ***** assert (isequal (dilog (sym(0)), sym(pi)^2/6)) ***** assert (isequal (dilog (sym(2)), -sym(pi)^2/12)) ***** assert (double(dilog(sym(-1))), pi^2/4 - pi*1i*log(2), eps) ***** test % round-trip syms x f = dilog (x); h = function_handle (f); A = h (1.1); B = dilog (1.1); assert (A, B, -eps) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/assumptions.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/assumptions.m ***** test syms x assert(isempty(assumptions(x))) ***** test x = sym('x', 'positive'); a = assumptions(x); assert(~isempty(strfind(a{1}, 'positive'))) ***** test syms x assert(isempty(assumptions(x))) ***** test clear variables % for matlab test script syms x positive assert(~isempty(assumptions())) clear x assert(isempty(assumptions())) ***** test % make sure we have at least these possible assumptions A = {'real' 'positive' 'negative' 'integer' 'even' 'odd' 'rational'}; B = assumptions('possible'); assert (isempty (setdiff(A, B))) ***** test A = assumptions('possible'); for i = 1:length(A) x = sym('x', A{i}); a = assumptions(x); assert(strcmp(a{1}, ['x: ' A{i}] )) s1 = sympy (x); s2 = ['Symbol(''x'', ' A{i} '=True)']; assert (strcmp (s1, s2)) end ***** test syms x positive syms y real syms z f = x*y*z; a = assumptions(f); assert(length(a) == 2) assert(~isempty(strfind(a{1}, 'positive'))) assert(~isempty(strfind(a{2}, 'real'))) ***** test % dict output syms x positive syms y real syms z f = x*y*z; [v, d] = assumptions(f, 'dict'); assert(length(v) == 2) assert(iscell(v)) assert(isa(v{1}, 'sym')) assert(isa(v{2}, 'sym')) assert(length(d) == 2) assert(iscell(d)) assert(isstruct(d{1})) assert(isstruct(d{2})) ***** test %% assumptions on just the vars in an expression clear variables % for matlab test script syms x y positive f = 2*x; assert(length(assumptions(f))==1) assert(length(assumptions())==2) ***** test %% assumptions in cell/struct clear variables % for matlab test script syms x y z w positive f = {2*x [1 2 y] {1, {z}}}; assert(length(assumptions())==4) assert(length(assumptions(f))==3) clear x y z w assert(length(assumptions())==3) assert(length(assumptions(f))==3) ***** test % multiple assumptions n = sym('n', 'negative', 'even'); assert (logical (n < 0)) assert (~(logical (n > 0))) assert (~(logical (n == -1))) ***** test % multiple assumptions: eqn neither true nor false n = sym('n', 'negative', 'even'); assert (~isequal (n, sym(true)) && ~isequal (n, sym(false))) ***** test %% TODO: rewrite later with https://github.com/gnu-octave/symbolic/issues/622 a = pycall_sympy__ ('return Symbol("a", real=False)'); assert (strcmp (assumptions (a), {'a: ~real'})) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/digits.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/digits.m ***** test orig = digits(32); % to reset later m = digits(64); p = vpa(sym(pi)); assert (abs (double (sin(p))) < 1e-64) n = digits(m); assert (n == 64) p = vpa(sym(pi)); assert (abs (double (sin(p))) < 1e-32) assert (abs (double (sin(p))) > 1e-40) digits(orig) 1 test, 1 passed, 0 known failure, 0 skipped [inst/poly2sym.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/poly2sym.m ***** shared x,y,a,b,c,p syms x y a b c p = x^3 + 2*x^2 + 3*x + 4; ***** assert(isAlways( poly2sym([1 2 3 4]) == p )) ***** assert(isAlways( poly2sym([1 2 3 4],x) == p )) ***** assert(isAlways( poly2sym([1 2 3 4],y) == subs(p,x,y) )) ***** assert(isAlways( poly2sym([1 2 3 4],5) == subs(p,x,5) )) ***** assert(isequal( poly2sym ([1]), 1 )) ***** assert(isequal( poly2sym ([]), 0 )) ***** assert(isAlways( poly2sym(sym([1 2 3 4]),x) == p )) ***** assert(isAlways( poly2sym([a b c],x) == a*x^2 + b*x + c )) ***** assert(isAlways( poly2sym([a b c]) == a*x^2 + b*x + c )) ***** assert(isequal( poly2sym(sym([])), 0 )) ***** assert(isAlways( poly2sym({sym(1) sym(2)}, x) == x + 2 )) ***** assert(isequal( poly2sym ({1}), 1 )) ***** assert(isequal( poly2sym ({}), 0 )) ***** assert(isequal( poly2sym ({1}, x), 1 )) ***** assert(isequal( poly2sym ({}, x), 0 )) ***** assert(isAlways( poly2sym([x x], x) == x^2 + x )) ***** test % mixed cell array with doubles and syms assert (isequal (poly2sym ({2.0 sym(3) int64(4)}), 2*x^2 + 3*x + 4)) ***** test % string for x p = poly2sym ([1 2], 's'); syms s assert (isequal (p, s + 2)) 18 tests, 18 passed, 0 known failure, 0 skipped [inst/finiteset.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/finiteset.m ***** test s1 = finiteset(sym(1), 2, 2); s2 = finiteset(sym(1), 2, 2, 2); assert (isequal (s1, s2)) ***** test s1 = finiteset(sym(0), 1); s2 = finiteset(sym(0), 2, 3); s = finiteset(sym(0), 1, 2, 3); assert (isequal (s1 + s2, s)) ***** test e = finiteset(); s = finiteset(sym(1)); s2 = e + s; assert (isequal (s, s2)) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/cell2sym.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/cell2sym.m ***** test A = {1 2 3; 4 5 6}; B = [1 2 3; 4 5 6]; assert (isequal (cell2sym(A), sym(B))) ***** test A = {'a' 'b'; 'c' 10}; B = [sym('a') sym('b'); sym('c') sym(10)]; assert (isequal (cell2sym(A), B)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/pycall_sympy__.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/pycall_sympy__.m ***** test % general test x = 10; y = 6; cmd = '(x,y) = _ins; return (x+y,x-y)'; [a,b] = pycall_sympy__ (cmd, x, y); assert (a == x + y && b == x - y) ***** test % bool assert (pycall_sympy__ ('return True,')) assert (~pycall_sympy__ ('return False,')) ***** test % float assert (abs(pycall_sympy__ ('return 1.0/3,') - 1/3) < 1e-15) ***** test % int r = pycall_sympy__ ('return 123456'); assert (r == 123456) assert (isinteger (r)) ***** test % string x = 'octave'; cmd = 's = _ins[0]; return s.capitalize(),'; y = pycall_sympy__ (cmd, x); assert (strcmp(y, 'Octave')) ***** test % string with escaped newlines, comes back as escaped newlines x = 'a string\nbroke off\nmy guitar\n'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % string with actual newlines, comes back as actual newlines x = sprintf('a string\nbroke off\nmy guitar\n'); y = pycall_sympy__ ('return _ins', x); y2 = strrep(y, sprintf('\n'), sprintf('\r\n')); % windows assert (strcmp(x, y) || strcmp(x, y2)) ***** test % cmd string with newlines, works with cell y = pycall_sympy__ ('return "string\nbroke",'); y2 = sprintf('string\nbroke'); y3 = strrep(y2, sprintf('\n'), sprintf('\r\n')); % windows assert (strcmp(y, y2) || strcmp(y, y3)) ***** test % string with XML escapes x = '<> >< <<>>'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) x = '&'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % strings with double quotes x = 'a\"b\"c'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) x = '\"'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % cmd has double quotes, these must be escaped by user % (of course: she is writing python code) expy = 'a"b"c'; y = pycall_sympy__ ('return "a\"b\"c",'); assert (strcmp(y, expy)) ***** test % strings with quotes x = 'a''b'; % this is a single quote y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % strings with quotes x = '\"a''b\"c''\"d'; y = pycall_sympy__ ('return _ins[0]', x); assert (strcmp(y, x)) ***** test % strings with quotes expy = '"a''b"c''"d'; y = pycall_sympy__ ('s = "\"a''b\"c''\"d"; return s'); assert (strcmp(y, expy)) ***** test % strings with printf escapes x = '% %% %%% %%%% %s %g %%s'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % cmd with printf escapes x = '% %% %%% %%%% %s %g %%s'; y = pycall_sympy__ (['return "' x '",']); assert (strcmp(y, x)) ***** test % cmd w/ backslash and \n must be escaped by user expy = 'a\b\\c\nd\'; y = pycall_sympy__ ('return "a\\b\\\\c\\nd\\",'); assert (strcmp(y, expy)) ***** test % slashes x = '/\\ // \\\\ \\/\\/\\'; z = '/\ // \\ \/\/\'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % slashes z = '/\ // \\ \/\/\'; y = pycall_sympy__ ('return "/\\ // \\\\ \\/\\/\\"'); assert (strcmp(y, z)) ***** test % strings with special chars x = '!@#$^&* you!'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) x = '~-_=+[{]}|;:,.?'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** xtest % string with backtick trouble for system -c (sysoneline) x = '`'; y = pycall_sympy__ ('return _ins', x); assert (strcmp(y, x)) ***** test % unicode s1 = '我爱你'; cmd = 'return u"\u6211\u7231\u4f60",'; s2 = pycall_sympy__ (cmd); assert (strcmp (s1, s2)) ***** test % unicode with \x s1 = '我'; cmd = 'return b"\xe6\x88\x91".decode("utf-8")'; s2 = pycall_sympy__ (cmd); assert (strcmp (s1, s2)) ***** test % unicode with \x and some escaped backslashes s1 = '\我\'; cmd = 'return b"\\\xe6\x88\x91\\".decode("utf-8")'; s2 = pycall_sympy__ (cmd); assert (strcmp (s1, s2)) ***** xtest % unicode passthru s = '我爱你'; s2 = pycall_sympy__ ('return _ins', s); assert (strcmp (s, s2)) s = '我爱你<>\&//\#%% %\我'; s2 = pycall_sympy__ ('return _ins', s); assert (strcmp (s, s2)) ***** xtest % unicode w/ slashes, escapes s = '我<>\&//\#%% %\我'; s2 = pycall_sympy__ ('return "我<>\\&//\\#%% %\\我"'); assert (strcmp (s, s2)) ***** test % list, tuple assert (isequal (pycall_sympy__ ('return [1,2,3],'), {1, 2, 3})) assert (isequal (pycall_sympy__ ('return (4,5),'), {4, 5})) assert (isequal (pycall_sympy__ ('return (6,),'), {6,})) assert (isequal (pycall_sympy__ ('return [],'), {})) ***** test % dict cmd = 'd = dict(); d["a"] = 6; d["b"] = 10; return d,'; d = pycall_sympy__ (cmd); assert (d.a == 6 && d.b == 10) ***** test r = pycall_sympy__ ('return 6'); assert (isequal (r, 6)) ***** test r = pycall_sympy__ ('return "Hi"'); assert (strcmp (r, 'Hi')) ***** test % blank lines, lines with spaces a = pycall_sympy__ ({ '', '', ' ', 'return 6', ' ', ''}); assert (isequal (a, 6)) ***** test % blank lines, strange comment lines cmd = {'a = 1', '', '#', '', '# ', ' #', 'a = a + 2', ' #', 'return a'}; a = pycall_sympy__ (cmd); assert (isequal (a, 3)) ***** test % return empty string (was https://bugs.python.org/issue25270) assert (isempty (pycall_sympy__ ('return ""'))) ***** test % return nothing (via an empty list) % note distinct from 'return [],' pycall_sympy__ ('return []') ***** test % return nothing (because no return command) pycall_sympy__ ('dummy = 1') ***** test % return nothing (because no command) pycall_sympy__ ('') ***** test % return nothing (because no command) pycall_sympy__ ({}) ***** error % python exception while passing variables to python % This tests the "INTERNAL_PYTHON_ERROR" path. % FIXME: this is a very specialized test, relies on internal octsympy % implementation details, and may need to be adjusted for changes. disp('') disp('**********************************************************************') disp('') disp(' Some deliberate AttributeError and ValueError may appear next') disp('') disp('v v v v v v v v v v v v v v v v v v v v v v v v') b = sym([], 'S.This_is_supposed_to_make_an_exception', [1 1], 'Test', 'Test', 'Test'); c = b + 1; ********************************************************************** Some deliberate AttributeError and ValueError may appear next v v v v v v v v v v v v v v v v v v v v v v v v Traceback (most recent call last): File "", line 4, in File "/usr/lib/python3/dist-packages/sympy/core/singleton.py", line 118, in __getattr__ raise AttributeError( AttributeError: Attribute 'This_is_supposed_to_make_an_exception' was not installed on SymPy registry S ***** test % ...and after the above test, the pipe should still work a = pycall_sympy__ ('return _ins[0]*2', 3); assert (isequal (a, 6)) ***** test % This command does not fail with native interface and '@pyobject' s = warning ('off', 'OctSymPy:pythonic_no_convert'); try q = pycall_sympy__ ({'return type(int)'}); catch msg = lasterror.message; assert (~ isempty (regexp (msg, '.*does not know how to.*'))) end warning (s) disp('^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^') disp(' End of deliberate errors!') disp(' You should see "46/46" or "Passes 46 out of 46 tests" below') disp('**********************************************************************') % ...and after the above test, the pipe should still work a = pycall_sympy__ ('return _ins[0]*2', 3); assert (isequal (a, 6)) Traceback (most recent call last): File "", line 2, in File "", line 12, in octoutput_drv File "", line 96, in octoutput ValueError: octoutput does not know how to export type ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ End of deliberate errors! You should see "46/46" or "Passes 46 out of 46 tests" below ********************************************************************** ***** test % complex input [A, B] = pycall_sympy__ ('z = 2*_ins[0]; return (z.real,z.imag)', 3+4i); assert (A, 6) assert (B, 8) ***** test % complex output z = pycall_sympy__ ('return 3+2j'); assert (z, 3+2i) ***** error s = char ('abc', 'defgh', '12345'); r = pycall_sympy__ ('return _ins[0]', s); ***** test r = pycall_sympy__ ('return len(_ins[0])', ''); assert (r == 0) ***** test % ensure the 0x0 matrix in octave gets mapped to the empty list in python % @sym/subsasgn currently replies on this behaviour assert (pycall_sympy__ ('return _ins[0] == []', [])); ***** test % ensure the empty string gets mapped to the empty string in python assert (pycall_sympy__ ('return _ins[0] == ""', '')); 46 tests, 46 passed, 0 known failure, 0 skipped [inst/fibonacci.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/fibonacci.m ***** assert (isequal ( fibonacci (sym(0)), 0)) ***** assert (isequal ( fibonacci (sym(14)), sym(377))) ***** assert (isequal ( fibonacci (14), 377)) ***** test syms x assert (isequal (fibonacci (5,x), x^4 + 3*x^2 + 1)) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@symfun/isequaln.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/isequaln.m ***** error isequaln (symfun('x + 1', x)) ***** test syms x y f(x) = 2*x; g(x) = 2*x; assert (isequaln (f, g)) ***** test syms x f(x) = 2*x + 1; g(x) = 2*x + 1; h(x) = 2*x + 1; assert (isequaln (f, g, h)) ***** test syms x f(x) = 2*x + 1; g(x) = 2*x + 1; h(x) = 2*x; assert (~ isequaln (f, g, h)) ***** test syms x y f(x) = 2*x; g(x, y) = 2*x; assert (~ isequaln (f, g)) ***** test syms x y f(x) = symfun(nan, x); g(x) = symfun(nan, x); assert (isequaln (f, g)) ***** test syms x y f(x) = symfun(nan, x); g(x, y) = symfun(nan, x); assert (~ isequaln (f, g)) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@symfun/isequal.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/isequal.m ***** error isequal (symfun('x + 1', x)) ***** test syms x y f(x) = 2*x; g(x) = 2*x; assert (isequal (f, g)) ***** test syms x f(x) = 2*x + 1; g(x) = 2*x + 1; h(x) = 2*x + 1; assert (isequal (f, g, h)) ***** test syms x f(x) = 2*x + 1; g(x) = 2*x + 1; h(x) = 2*x; assert (~ isequal (f, g, h)) ***** test syms x y f(x) = 2*x; g(x, y) = 2*x; assert (~ isequal (f, g)) ***** test syms x y f(x) = symfun(nan, x); g(x) = symfun(nan, x); assert (~ isequal (f, g)) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@symfun/numel.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/numel.m ***** test syms x f(x) = x^2; assert(numel(f)==1) ***** test syms x f(x) = [1 x]; assert(numel(f)==1) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/plus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/plus.m ***** test syms x f(x) = x^2; assert( isa(f + f, 'symfun')) assert( isa(f + x, 'symfun')) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@symfun/argnames.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/argnames.m ***** test % basic test syms f(x) assert (isequal (argnames (f), x)) ***** test % Multiple variables, abstract symfun syms f(t, x, y) assert (isequal (argnames (f), [t x y])) ***** test % Concrete symfun syms x y z t f(t, x, y) = x + y + z; assert (isequal (argnames (f), [t x y])) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@symfun/size.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/size.m ***** test syms x f(x) = x; d = size(f); assert (isequal (d, [1 1])) [n, m] = size(f); assert (isequal ([n m], [1 1])) assert (size(f, 1) == 1) assert (size(f, 2) == 1) ***** test syms x f(x) = [1 x]; d = size(f); assert (isequal (d, [1 1])) [n, m] = size(f); assert (isequal ([n m], [1 1])) assert (size(f, 1) == 1) assert (size(f, 2) == 1) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/times.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/times.m ***** test syms x f(x) = x^2; assert( isa(f .* f, 'symfun')) assert( isa(f .* x, 'symfun')) ***** test syms x f(x) = [x 2*x]; h = f.*[x 3]; assert( isa(h, 'symfun')) assert (isequal (formula (h), [x^2 6*x])) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/symvar.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/symvar.m ***** test % basic syms f(t, s) assert (isempty (symvar (f, 0))) assert (isequal (symvar (f, 1), t)) assert (isequal (symvar (f, 2), [t s])) assert (isequal (symvar (f, 3), [t s])) ***** test % note preference for vars of symfun, if n requested syms x f(y) assert (isequal (symvar(f*x, 1), y)) assert (isequal (symvar(f(y)*x, 1), x)) ***** test % symfun, checked smt syms x f(y) a = f*x; b = f(y)*x; assert (isequal (symvar(a), [x y])) assert (isequal (symvar(b), [x y])) ***** test % preference for the explicit variables syms a x f(t, s) h = f*a + x; assert (isequal (symvar (h, 1), t)) assert (isequal (symvar (h, 2), [t s])) assert (isequal (symvar (h, 3), [t s x])) assert (isequal (symvar (h, 4), [t s x a])) assert (isequal (symvar (h, 5), [t s x a])) assert (isequal (symvar (h), [a s t x])) ***** test % symfun dep on some vars only, matches smt w/ n syms x s t f(s) = x; g(s, t) = x*s; assert (isequal (symvar(f, 1), s)) assert (isequal (symvar(f, 2), [s x])) assert (isequal (symvar(g, 1), s)) assert (isequal (symvar(g, 2), [s t])) assert (isequal (symvar(g, 3), [s t x])) ***** test % A documented difference from SMT on symvar(symfun) w/o n syms x s t f(s) = x; g(s, t) = x*s; % SMT would have %assert (isequal (symvar(f), x)) % no s %assert (isequal (symvar(g), [s x])) % no t assert (isequal (symvar(f), [s x])) assert (isequal (symvar(g), [s t x])) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@symfun/rdivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/rdivide.m ***** test syms x f(x) = x^2; assert( isa(f./f, 'symfun')) assert( isa(f./[x x^2], 'symfun')) ***** test syms x f(x) = [x 2*x]; h = f./[x 2]; assert( isa(h, 'symfun')) assert (isequal (formula (h), [1 x])) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/subsref.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/subsref.m ***** test syms x f(x) = x^2; v = f.vars; assert(iscell(v)) assert(length(v)==1) assert(isequal(v{1},x)) ***** test %% pass through to sym properties syms x f(x) = x^2; y = x^2; % not a symfun assert(strcmp(f.flat, y.flat)) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/mpower.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/mpower.m ***** test syms x f(x) = 2*x; h = f^f; assert( isa(h, 'symfun')) assert (isequal (formula (h), (2*x)^(2*x))) h = f^sym(2); assert( isa(h, 'symfun')) assert (isequal (formula (h), 4*x^2)) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@symfun/diff.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/diff.m ***** test % concrete fcn syms x f(x) = x*x; g(x) = 2*x; assert (logical (diff(f) == g)) assert (isa (diff(f), 'symfun')) ***** test % abstract fcn syms y(x) assert (logical (diff(y) == diff(y(x)))) assert (isa (diff(y), 'symfun')) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/mldivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/mldivide.m ***** test syms x f(x) = x^2; assert( isa(f\f, 'symfun')) assert( isa(f\x, 'symfun')) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@symfun/formula.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/formula.m ***** test % simple syms x f(x) = sin(x); g = formula(f); assert (isequal (g, sin(x))); ***** test % concrete: return is a sym, not a symfun syms x f(x) = sin(x); g = formula(f); assert (~isa(g, 'symfun')); ***** test % abstract: return is a sym, not a symfun syms f(x) g = formula(f); assert (~isa(g, 'symfun')); 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@symfun/ldivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/ldivide.m ***** test syms x f(x) = x^2; assert( isa(f .\ f, 'symfun')) assert( isa(f .\ x, 'symfun')) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@symfun/power.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/power.m ***** test syms x f(x) = 2*x; h = f.^f; assert( isa(h, 'symfun')) assert (isequal (formula (h), (2*x)^(2*x))) ***** test syms x f(x) = [x 2*x]; h = f.^[x 3]; assert( isa(h, 'symfun')) assert (isequal (formula (h), [x^x 8*x^3])) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/int.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/int.m ***** test % indefinite integral of symfun gives symfun syms x f(x) = x^2; g = int(f); assert (isa(g, 'symfun')) g = int(f, x); assert (isa(g, 'symfun')) ***** test % indefinite integral of abstract symfun gives symfun syms f(x) g = int(f); assert (isa(g, 'symfun')) g = int(f, x); assert (isa(g, 'symfun')) ***** test % definite integral does not give symfun syms x f(x) = x^2; g = int(f, x, 0, 2); assert (isa(g, 'sym')) assert (~isa(g, 'symfun')) ***** test % ... even if it has a variable in it syms x t f(x) = x; g = int(f, x, 0, t); assert (isa(g, 'sym')) assert (~isa(g, 'symfun')) ***** test % ... even if the input is abstract function syms f(x) g = int(f, x, 0, 2); assert (isa(g, 'sym')) assert (~isa(g, 'symfun')) ***** test % symfun in x, integrated in y gives symfun still in x % (SMT does this too). syms f(x) y g = int(f, y); assert (isa (g, 'symfun')) assert (isequal (argnames (g), x)) ***** test % same as above, but concrete symfun syms x y f(x) = x^2; g = int(f, y); assert (isa (g, 'symfun')) assert (isequal (argnames (g), x)) assert (isequal (formula(g), x^2*y)) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@symfun/private_disp_name.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/private_disp_name.m ***** test syms f(x) s = private_disp_name(f, 'f'); assert (strcmp (s, 'f(x)')) ***** test syms x y g(y, x) = x + y; s = private_disp_name(g, 'g'); assert (strcmp (s, 'g(y, x)')) ***** test syms f(x) assert (isempty (private_disp_name(f, ''))) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@symfun/mrdivide.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/mrdivide.m ***** test syms x f(x) = x^2; assert( isa(f/f, 'symfun')) assert( isa(f/x, 'symfun')) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@symfun/mtimes.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/mtimes.m ***** test syms x f(x) = x^2; assert( isa(f * f, 'symfun')) assert( isa(f * x, 'symfun')) 1 test, 1 passed, 0 known failure, 0 skipped [inst/@symfun/minus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/minus.m ***** test syms x f(x) = x^2; assert( isa(f - f, 'symfun')) assert( isa(f - x, 'symfun')) ***** test % Octave bug #42735 fixed in 4.4.2 syms x f(x) = x^2; g = x^2; h = x - f; assert (isa (h, 'symfun') && isequal (formula (h), x - g)) h = x + f; assert (isa (h, 'symfun') && isequal (formula (h), x + g)) h = x * f; assert (isa (h, 'symfun') && isequal (formula (h), x * g)) h = x / f; assert (isa (h, 'symfun') && isequal (formula (h), x / g)) h = x ^ f; assert (isa (h, 'symfun') && isequal (formula (h), x ^ g)) h = x .* f; assert (isa (h, 'symfun') && isequal (formula (h), x .* g)) h = x ./ f; assert (isa (h, 'symfun') && isequal (formula (h), x ./ g)) h = x .^ f; assert (isa (h, 'symfun') && isequal (formula (h), x .^ g)) ***** test % different variables syms x y f(x) = 2*x; g(y) = sin(y); h = f - g(x); assert( isa(h, 'symfun')) assert( isequal (argnames (h), argnames (f))) assert (isequal (formula (h), 2*x - sin(x))) % and even if rh-sym has a dummy variable: h = f - g(y); assert( isa(h, 'symfun')) assert( isequal (argnames (h), argnames(f))) assert (isequal (formula (h), 2*x - sin(y))) ***** test % different variables, f has more syms x y f(x,y) = 2*x*y; g(y) = sin(y); h = f - g(y) + g(x); assert( isa(h, 'symfun')) assert( isequal (argnames (h), argnames (f))) assert (isequal (formula (h), 2*x*y - sin(y) + sin(x))) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/@symfun/uminus.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/uminus.m ***** test % Issue #447 syms x f(x) = x^2; assert (isa (-f, 'symfun')) ***** test syms f(x) h = -f; assert (isa (h, 'symfun')) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@symfun/symfun.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@symfun/symfun.m ***** error symfun (1, sym('x'), 3) ***** error symfun ('f', sym('x')) ***** test syms x y syms f(x) assert(isa(f,'symfun')) clear f f(x,y) = sym('f(x,y)'); assert(isa(f,'symfun')) ***** test % symfuns are syms as well syms x f(x) = 2*x; assert (isa (f, 'symfun')) assert (isa (f, 'sym')) assert (isequal (f(3), 6)) assert (isequal (f(sin(x)), 2*sin(x))) ***** test syms x y f = symfun(sym('f(x)'), {x}); assert(isa(f, 'symfun')) f = symfun(sym('f(x,y)'), [x y]); assert(isa(f, 'symfun')) f = symfun(sym('f(x,y)'), {x y}); assert(isa(f, 'symfun')) ***** test % rhs is not sym syms x f = symfun(8, x); assert (isa (f,'symfun')) assert (isequal (f(10), sym(8))) ***** test % vector symfun syms x y F(x,y) = [1; 2*x; y; y*sin(x)]; assert (isa (F, 'symfun')) assert (isa (F, 'sym')) assert (isequal (F(sym(pi)/2,4) , [sym(1); sym(pi); 4; 4] )) ***** test x = sym('x'); y = sym('y'); f(x) = sym('f(x)'); g(x,y) = sym('g(x,y)'); % make sure these don't fail f(1); g(1,2); g(x,y); diff(g, x); diff(g, y); ***** test % defining 1D symfun in terms of a 2D symfun syms x y t syms 'g(x,y)' f(t) = g(t,t); f(5); assert (length (argnames (f)) == 1) assert (isequal (argnames (f), t)) assert (isequal( formula(diff(f,x)), sym(0))) ***** test % replace g with shorter and specific fcn syms x g(x) g; g(x) = 2*x; assert( isequal (g(5), 10)) ***** test % octave <= 3.8 needs quotes on 2D symfuns, so make sure it works syms x y syms 'f(x)' syms 'g(x,y)' assert (isa (f, 'symfun')) assert (isa (g, 'symfun')) ***** test % Bug #41: Octave <= 3.8 parser fails without quotes around 2D fcn syms x y eval('syms g(x,y)') assert (isa (g, 'symfun')) ***** test % and these days it works without eval trick syms g(x,y) assert (isa (g, 'symfun')) ***** test % syms f(x) without defining x clear x syms f(x) assert(isa(f, 'symfun')) assert(isa(x, 'sym')) ***** test % SMT compat: symfun indep var overwrites existing var t = 6; syms f(t) assert (logical (t ~= 6)) ***** test % SMT compat: symfun indep var overwrites existing var, even if sym syms x t = x; syms f(t) assert (~ logical (t == x)) ***** test syms x y f(x) = x^2; g(x,y) = sym('g(x,y)'); f2 = 2*f; assert( isequal (f2(4), 32)) assert( isa(f2, 'symfun')) assert( isa(2*g, 'symfun')) assert( isa(0*g, 'symfun')) % in SMT, this is the zero symfun ***** test % syms has its own parsing code, check it works syms f(x,y) g = f; syms f(x, y) assert (isequal (f, g)) syms 'f( x, y )' assert (isequal (f, g)) ***** test % syms own parsing code should not reorder the vars syms f(y, x) v = argnames (f); assert (isequal (v(1), y) && isequal (v(2), x)) ***** test % assignment of symfun to symfun, issue #189 syms t x(t) = 2*t; y(t) = x; assert (isa (y, 'symfun')) y = symfun(x, t); assert (isa (y, 'symfun')) % others y = x; assert (isa (y, 'symfun')) y(t) = x(t); assert (isa (y, 'symfun')) ***** test % assignment of generic symfun to symfun syms t x(t) y(t) = x; assert (isa (y, 'symfun')) y = symfun(x, t); assert (isa (y, 'symfun')) ***** error % Issue #444: invalid args syms x f(x, x) = 2*x; ***** error % Issue #444: invalid args syms x y f(x, y, x) = x + y; ***** error % Issue #444: invalid args syms x y f(x, y, x) = x + y; ***** error % Issue #444: expression as arg syms x f(2*x) = 4*x; 25 tests, 25 passed, 0 known failure, 0 skipped [inst/findsymbols.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/findsymbols.m ***** test syms x b y n a arlo z = a*x + b*pi*sin (n) + exp (y) + exp (sym (1)) + arlo; s = findsymbols (z); assert (isequal ([s{:}], [a,arlo,b,n,x,y])) ***** test syms x s = findsymbols (x); assert (isequal (s{1}, x)) ***** test syms z x y a s = findsymbols ([x y; 1 a]); assert (isequal ([s{:}], [a x y])) ***** assert (isempty (findsymbols (sym (1)))) ***** assert (isempty (findsymbols (sym ([1 2])))) ***** assert (isempty (findsymbols (sym (nan)))) ***** assert (isempty (findsymbols (sym (inf)))) ***** assert (isempty (findsymbols (exp (sym (2))))) ***** test % empty sym for findsymbols, findsym, and symvar assert (isempty (findsymbols (sym([])))) assert (isempty (findsym (sym([])))) assert (isempty (symvar (sym([])))) ***** test % diff. assumptions make diff. symbols x1 = sym('x'); x2 = sym('x', 'positive'); f = x1*x2; assert (length (findsymbols (f)) == 2) ***** test % symfun or sym syms x f(y) a = f*x; b = f(y)*x; assert (isequal (findsymbols(a), {x y})) assert (isequal (findsymbols(b), {x y})) ***** test % findsymbols on symfun does not find the argnames (unless they % are on the RHS of course, this matches SMT 2014a). syms a x y f(x, y) = a; % const symfun assert (isequal (findsymbols(f), {a})) syms a x y f(x, y) = a*y; assert (isequal (findsymbols(f), {a y})) ***** test % sorts lexicographically, same as symvar *with single input* % (note symvar does something different with 2 inputs). syms A B a b x y X Y f = A*a*B*b*y*X*Y*x; assert (isequal (findsymbols(f), {A B X Y a b x y})) assert (isequal (symvar(f), [A B X Y a b x y])) ***** test % symbols in matpow syms x y syms n A = [sin(x) 2; y 1]; B = A^n; L = findsymbols(B); assert (isequal (L, {n x y})) ***** test % array of eq syms x y assert (isequal (findsymbols (2 == [2 x y]), {x y})) ***** test % array of ineq syms x y A = [x < 1 2*x < y x >= 2 3 <= x x != y]; assert (isequal (findsymbols (A), {x y})) 16 tests, 16 passed, 0 known failure, 0 skipped [inst/lambertw.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/lambertw.m ***** assert (isequal (lambertw (0), 0)) ***** assert (isequal (lambertw (0, 0), 0)) ***** assert (lambertw (-1/exp(1)), -1, 2*eps) ***** assert (lambertw (0, -1/exp(1)), -1, 2*eps) ***** assert (lambertw (-1, -1/exp(1)), -1, 2*eps) ***** test x = [1 2 3 pi 10 100 1000 12345]; W = lambertw (x); assert (W.*exp (W), x, -3*eps) ***** test x = [1 2 3 pi 10 100 1000 12345]; k = [-3 -2 -1 0 1 2 3 4]; W = lambertw (k, x); assert (W.*exp (W), x, -10*eps) ***** test % input shape preserved x = [0 1; 2 3]; b = x; W = lambertw (b, x); assert (W.*exp (W), x, -10*eps) ***** test % input shape preserved x = [0 1; 2 3]; b = 0; W = lambertw (b, x); assert (W.*exp (W), x, -10*eps) ***** test % input shape preserved x = 10; b = [0 1; 2 3]; W = lambertw (b, x); assert (W.*exp (W), x*ones (size (b)), -10*eps) ***** assert (isnan (lambertw (nan))) ***** test % limiting behaviour as z large k = 3; A = lambertw (k, 1e100); assert (abs (imag (A) - 2*pi*k) < 0.1) ***** test % limiting behaviour as z large, up imag axis k = 1; A = lambertw (k, 1e100*1i); assert (abs (imag (A) - (2*k+0.5)*pi) < 0.1) ***** test % limiting behaviour as z large, down imag axis k = -2; A = lambertw (k, -1e100*1i); assert (abs (imag (A) - (2*k-0.5)*pi) < 0.1) ***** test % limiting behaviour as z large, near branch k = 3; A = lambertw (k, -1e100); B = lambertw (k, -1e100 + 1i); C = lambertw (k, -1e100 - 1i); assert (abs (imag (A) - (2*k+1)*pi) < 0.1) assert (abs (imag (B) - (2*k+1)*pi) < 0.1) assert (abs (imag (C) - (2*k-1)*pi) < 0.1) ***** test % infinities and nan A = lambertw ([inf exp(1) -inf nan]); B = [inf 1 inf + pi*1i nan]; assert (isequaln (A, B)) ***** test % infinities and nan A = lambertw (3, [inf 1 -inf nan]); B = [inf + 2*3*pi*1i lambertw(3,1) inf + (2*3+1)*pi*1i nan]; assert (isequaln (A, B)) ***** test % infinities and nan A = lambertw ([0 1 2 0], [inf -inf nan exp(1)]); B = [inf inf+3*pi*1i nan 1]; assert (isequaln (A, B)) ***** test % scalar infinity z, vector b A = lambertw ([1 2 -3], inf); B = [lambertw(1, inf) lambertw(2, inf) lambertw(-3, inf)]; assert (isequal (A, B)) ***** test % scalar -infinity z, vector b A = lambertw ([1 2 -3], -inf); B = [lambertw(1, -inf) lambertw(2, -inf) lambertw(-3, -inf)]; assert (isequal (A, B)) ***** test % scalar z nan, vector b A = lambertw ([1 2 -3], nan); B = [nan nan nan]; assert (isequaln (A, B)) 21 tests, 21 passed, 0 known failure, 0 skipped [inst/vpa.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/vpa.m ***** test a = vpa(0, 4); b = double(a); assert(b == 0) ***** test a = vpa(pi, 4); b = sin(a); assert(abs(double(b)) < 1e-4) ***** test % vpa from double is ok, doesn't warn (c.f., sym(2.3)) a = vpa(2.3); assert(true) ***** test % vpa from double not more than 16 digits a = vpa(sqrt(pi), 32); b = sin(a^2); assert(abs(double(b)) > 1e-20) assert(abs(double(b)) < 1e-15) ***** test a = vpa(sym(pi), 32); b = sin(a); assert(abs(double(b)) < 1e-30) ***** test a = vpa(sym(pi), 256); b = sin(a); assert(abs(double(b)) < 1e-256) ***** test % pi str a = vpa('pi', 32); b = sin(a); assert(abs(double(b)) < 1e-32) ***** test % pi str a = vpa('pi', 32); b = vpa(sym('pi'), 32); assert (double (a - b) == 0) ***** test spi = sym(pi); a = vpa(spi, 10); b = double(a); assert(~isAlways(spi == a)) ***** test % matrix of sym a = [sym(pi) 0; sym(1)/2 1]; b = [pi 0; 0.5 1]; c = vpa(a, 6); assert(max(max(abs(double(c)-b))) < 1e-6) ***** test % matrix of double b = [pi 0; 0.5 1]; c = vpa(b, 6); assert(max(max(abs(double(c)-b))) < 1e-6) ***** test % integer type a = vpa(int32(6), 64); b = vpa(6, 64); assert (isequal (a, b)) ***** test % matrix of int b = int32([pi 0; 6.25 1]); c = vpa(b, 6); assert (isequal (double(c), [3 0; 6 1])) ***** test % can pass pi directly to vpa a = vpa(sym(pi), 128); b = vpa(pi, 128); assert (isequal (a, b)) ***** test % if sym does sth special for e so should vpa a = vpa(sym(exp(1)), 64); b = vpa(exp(1), 64); assert (isequal (a, b)) ***** test % can pass pi directly to vpa, even in array a = vpa(sym([2 pi]), 128); b = vpa([2 pi], 128); assert (isequal (a, b)) ***** test % can pass i directly to vpa a = vpa(sym(i)); b = vpa(i); ***** test % 'i' and 'I' just make vars a = vpa(sym(1i)); b = vpa('i'); c = vpa('I'); assert (~isequal (a, b)) assert (~isequal (a, c)) ***** test % '1i' and '1j' strings a = vpa(sym(1i)); b = vpa('1i'); c = vpa('1j'); assert (isequal (a, b)) assert (isequal (a, c)) ***** test % Issue #868, precision loss on '0.33j' a = vpa('0.33j', 40); b = vpa('0.33i', 40); assert (double (abs (imag (a)*100/33) - 1) < 1e-39) assert (isequal (a, b)) ***** test % inf/-inf do not become symbol('inf') S = {'oo', '-oo', 'inf', 'Inf', '-inf', '+inf'}; for j = 1:length(S) a = vpa(S{j}); b = vpa(sym(S{j})); assert (isequal (a, b)) end ***** test a = vpa('2.3', 20); s = strtrim(disp(a, 'flat')); assert (strcmp (s, '2.3000000000000000000')) ***** test % these should *not* be the same a = vpa(2.3, 40); b = vpa('2.3', 40); sa = sympy (a); sb = sympy (b); assert (~isequal (a, b)) assert (abs(double(a - b)) > 1e-20) assert (abs(double(a - b)) < 1e-15) assert (~strcmp(sa, sb)) ***** test % these should *not* be the same x = vpa('1/3', 32); y = vpa(sym(1)/3, 32); z = vpa(1/3, 32); assert (isequal (x, y)) assert (~isequal (x, z)) ***** test % big integers a = int64(12345678); a = a*a; b = vpa(a); c = vpa('152415765279684'); assert (isequal (b, c)) ***** test % big integers (workaround poor num2str, works in 4.0?) a = int64(1234567891); a = a*a; b = vpa(a); c = vpa('1524157877488187881'); assert (isequal (b, c)) ***** test % isequal and other comparisons a = vpa ("2/3", 32); b = vpa ("2/3", 64); assert (~ logical (a == b)) assert (~ isequal (a, b)) a = vpa ("1/3", 32); b = vpa ("1/3", 64); assert (~ logical (a == b)) assert (~ isequal (a, b)) a = vpa ("0.1", 32); b = vpa ("0.1", 64); assert (~ logical (a == b)) assert (~ isequal (a, b)) ***** test % isequal with array: Issue #1285 a = vpa ("2/3", 32); b = vpa ("2/3", 64); assert (~ isequal ([a 2*a], [b 2*b])) ***** xtest % non-equality of vpa that "might be" be integers: Issue #1285 a = vpa ("123", 32); b = vpa ("123", 64); assert (~ logical (a == b)) !!!!! known failure assert (!logical (a == b)) failed ***** xtest % non-equality of vpa that "might be" be integers: Issue #1285 if (pycall_sympy__ ('return Version(spver) >= Version("1.12.1")')) a = vpa ("123", 32); b = vpa ("123", 64); assert (~ isequal (a, b)) end !!!!! known failure assert (!isequal (a, b)) failed ***** warning vpa ('sqrt(2.0)'); ***** warning a = vpa('2**0.5'); b = vpa(sqrt(sym(2))); assert (isequal (a, b)) ***** test a = vpa('2.3e1'); b = vpa(' 2.3e+1 '); assert (isequal (a, b)) a = vpa('21e-1'); b = vpa('2.1'); assert (isequal (a, b)) ***** test % Issue #859, operations on immutable matrices x = vpa (sym ([1 2])); % If vpa no longer makes an ImmutableDenseMatrix, % may need to adjust or remove this test. assert (~ isempty (strfind (sympy (x), 'Immutable'))) y = sin(x); y2 = [sin(vpa(sym(1))) sin(vpa(sym(2)))]; assert (isequal (y, y2)) 34 tests, 32 passed, 2 known failures, 0 skipped [inst/assume.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/assume.m ***** error a = assume('a', 'real') ***** error assume positive integer ***** error assume x y ***** error assume x clear real ***** error assume a>0 ***** error assume 'x/pi' integer ***** test syms x assume x positive a = assumptions(x); assert(strcmp(a, 'x: positive')) assume x even a = assumptions(x); assert(strcmp(a, 'x: even')) ***** test % multiple assumptions syms x assume x positive integer [tilde, a] = assumptions(x, 'dict'); assert(a{1}.integer) assert(a{1}.positive) ***** test % does workspace syms x positive x2 = x; f = sin(x); assume x negative a = assumptions(x); assert(strcmp(a, 'x: negative')) a = assumptions(x2); assert(strcmp(a, 'x: negative')) a = assumptions(f); assert(strcmp(a, 'x: negative')) ***** error % does not create new variable x clear x assume x real ***** error % no explicit variable named x clear x f = 2*sym('x'); assume x real ***** test % clear does workspace syms x positive f = 2*x; assume x clear assert (isempty (assumptions (f))); assert (isempty (assumptions ())); ***** test syms x y f = sin (2*x); assume x y real assert (strcmp (assumptions (x), 'x: real')) assert (strcmp (assumptions (y), 'y: real')) assert (strcmp (assumptions (f), 'x: real')) ***** test syms x y f = sin (2*x); assume x y positive even assert (strcmp (assumptions (x), 'x: positive, even') || strcmp (assumptions (x), 'x: even, positive')) assert (strcmp (assumptions (y), 'y: positive, even') || strcmp (assumptions (y), 'y: even, positive')) assert (strcmp (assumptions (f), 'x: positive, even') || strcmp (assumptions (f), 'x: even, positive')) ***** test % works from variable names not symbols syms x y a = [x y]; assume a real assert (strcmp (assumptions (x), 'x: real')) assert (strcmp (assumptions (y), 'y: real')) ***** test % works from variable names not symbols y = sym('x'); f = 2*y; assume y real assert (strcmp (assumptions (f), 'x: real')) ***** test % matrix of symbols syms a b c d A = [a b; c d]; assume A real assert (strcmp (assumptions (a), 'a: real')) assert (strcmp (assumptions (b), 'b: real')) assert (strcmp (assumptions (c), 'c: real')) assert (strcmp (assumptions (d), 'd: real')) ***** test % assume after symfun clear x syms f(x) assume x real assert (~ isempty (assumptions (formula (f)))) assert (~ isempty (assumptions (argnames (f)))) 18 tests, 18 passed, 0 known failure, 0 skipped [inst/octsympy_tests.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/octsympy_tests.m ***** assert(true) 1 test, 1 passed, 0 known failure, 0 skipped [inst/heaviside.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/heaviside.m ***** assert (heaviside (0) == 0.5) ***** assert (isnan (heaviside (nan))) ***** assert (isequal (heaviside ([-inf -eps 0 eps inf]), [0 0 0.5 1 1])) ***** assert (isequaln (heaviside ([-1 1 nan]), [0 1 nan])) ***** assert (heaviside (0, 1) == 1) ***** error heaviside (1i) ***** assert (isa (heaviside (single (0)), 'single')) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/catalan.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/catalan.m ***** error catalan (sym(1)) ***** assert (double (catalan ()) > 0.915965594177) ***** assert (double (catalan ()) < 0.915965594178) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/eulergamma.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/eulergamma.m ***** error catalan (sym(1)) ***** assert (double (eulergamma ()) > 0.577215664901) ***** assert (double (eulergamma ()) < 0.577215664902) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/syms.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/syms.m ***** test %% assumptions syms x real x2 = sym('x', 'real'); assert (isequal (x, x2)) ***** test % assumptions and clearing them on a symbol syms x real assert (~isempty (assumptions (x))) syms x assert (isempty (assumptions (x))) ***** test % Note SMT would clear syms in existing expressions syms x real f = {x {2*x} cos(x/2)}; assert (~isempty (assumptions (f))) syms x % but we do not: this would have to toggle for pure SMT compat assert (~isempty (assumptions (f))) % assert (isempty (assumptions (f))) ***** error syms x clear ***** error syms x positive y ***** error % this sometimes catches typos or errors in assumption names % (if you need careful checking, use sym not syms) syms x positive evne ***** error syms positive integer ***** test % does not create a variable called positive syms x positive integer assert (logical(exist('x', 'var'))) assert (~logical(exist('positive', 'var'))) ***** test % Issue #885 syms S(x) I(x) O(x) ***** test % Issue #290 syms FF(x) syms ff(x) syms Eq(x) ***** test % Issue #290 syms beta(x) ***** test syms x real syms f(x) assert (~ isempty (assumptions (x))) ***** test syms x real f(x) = symfun(sym('f(x)'), x); assert (~ isempty (assumptions (x))) assert (~ isempty (assumptions (argnames (f)))) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/@double/sinhint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/sinhint.m ***** error sinhint (1, 2) ***** test x = 1.1; y = sym(11)/10; A = sinhint (x); B = double (sinhint (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = sinhint (x); B = double (sinhint (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(Shi(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 0.45769171128668800567 + 1.8332099215048436239*1i 0.60888490416819746440 + 1.2482232175376056201*1i 0.13577763724269399110e42 1.6583475942188740493*1i -0.00010000000005553888891 + 0.10000000016666111119e-5*1i -0.74701205140887967022e7 - 0.10381447401236722090e8*1i ]; B = sinhint (x); assert (A, B, -eps) ***** assert (sinhint (inf), inf) ***** assert (sinhint (-inf), -inf) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@double/cosint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/cosint.m ***** error cosint (1, 2) ***** test x = 1.1; y = sym(11)/10; A = cosint (x); B = double (cosint (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = cosint (x); B = double (cosint (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(Ci(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 2.0302963932917216378 - 0.15190715517585688438*1i 1.6153896382910774851 + 19.725754055338264980*1i -0.0051488251426104921444 1246.1144860424544147 + 1.5707963267948966192*1i -8.6330747120742332203 + 3.1315929869531280002*1i 0.069822228467306149311 - 3.1184744625477294643*1i ]; B = cosint (x); assert (A, B, -eps) ***** xtest % is it nan or -inf? SymPy says zoo. assert (isnan (cosint (0))) !!!!! known failure assert (isnan (cosint (0))) failed ***** assert (cosint (inf), 0) ***** assert (cosint (-inf), pi*1i, -eps) ***** assert (cosint (1), 0.33740392290096813466, -eps) ***** assert (cosint (-1), 0.33740392290096813466 + pi*1i, -eps) ***** assert (cosint (pi), 0.073667912046425485978, -5*eps) ***** assert (cosint (-pi), 0.07366791204642548597821 + pi*1i, -5*eps) ***** assert (cosint (300), -3.3321999185921117800e-3, -2*eps) ***** assert (cosint (1e4), -3.0551916724485212665e-5, -2*eps) ***** assert (cosint (1 + 1i), 0.8821721805559363250506+0.2872491335199559395273*1i, eps) ***** assert (cosint (1i), 0.8378669409802082408947 + pi/2*1i, -2*eps) ***** test % compare both sinint and cosint to expint x = pi; C1 = cosint (x); S1 = sinint (x); R = expint (1i*x); C2 = -real (R); S2 = imag (R) + pi/2; assert (C1, C2, -100*eps); assert (S1, S2, -100*eps); 16 tests, 15 passed, 1 known failure, 0 skipped [inst/@double/polylog.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/polylog.m ***** error polylog (1) ***** error polylog (1, 2, 3) ***** error polylog ([1 2], [1 2 3]) ***** error polylog ([1 2], [1; 2]) ***** test y = sym(11)/10; t = sym(2); x = 1.1; s = 2; A = polylog (s, x); B = double (polylog (t, y)); assert (A, B, -eps); ***** test % maple A = 2.3201804233130983964 - 3.4513922952232026614*1i; B = polylog (2, 3); assert (A, B, -eps) ***** test % maple, complex inputs A = -11.381456201167411758 + 6.2696695219721651947*1i; B = polylog (1+2i, 3+4i); assert (A, B, -eps); ***** test % maple, matrix inputs A1 = 0.47961557317612748431 - 0.52788287823025778869*1i; A2 = -0.0049750526563452645369 - 0.024579343612396884851*1i; B = polylog ([-1-2i -3], [30+40i 40i]); assert ([A1 A2], B, -eps); ***** test % x matrix, s scalar y = [1 2 sym(pi); exp(sym(1)) 5 6]; t = sym(2); x = double (y); s = 2; A = polylog (s, x); B = double (polylog (t, y)); assert (A, B, -eps); ***** test % s matrix, x scalar t = [1 2 sym(pi); exp(sym(1)) 5 6]; y = sym(2); s = double (t); x = 2; A = polylog (s, x); B = double (polylog (t, y)); assert (A, B, -eps); 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@double/adjoint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/adjoint.m ***** test M = [1 2; 3 4]; A = [4 -2; -3 1]; assert (isequal (adjoint (M), A)); ***** test assert (isequal (adjoint (42), 1)); 2 tests, 2 passed, 0 known failure, 0 skipped [inst/@double/fresnelc.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/fresnelc.m ***** error fresnelc (1, 2) ***** test x = 1.1; y = sym(11)/10; A = fresnelc (x); B = double (fresnelc (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = fresnelc (x); B = double (fresnelc (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(FresnelC(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 16.087871374125480424 - 36.225687992881650217*1i 0.47688568479874574722e12 + 0.12213736710985573216e13*1i 0.49999989867881789756 0.49989869420551572361*1i -0.000099999999999999997535 + 0.99999999999999987665e-6*1i 0.15391592966931193100e26 - 0.75738824160998910388e24*1i ]; B = fresnelc (x); assert (A, B, -eps) ***** assert (fresnelc (inf), 0.5) ***** assert (fresnelc (-inf), -0.5) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@double/sinint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/sinint.m ***** error sinint (1, 2) ***** test x = 1.1; y = sym(11)/10; A = sinint (x); B = double (sinint (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = sinint (x); B = double (sinint (y)); assert (A, B, -4*eps); ***** assert (sinint (0), 0) ***** assert (sinint (inf), pi/2) ***** assert (sinint (-inf), -pi/2) ***** assert (sinint (1), 0.9460830703671830149414, -2*eps) ***** assert (sinint (-1), -0.9460830703671830149414, -2*eps) ***** assert (sinint (pi), 1.851937051982466170361, -2*eps) ***** assert (sinint (-pi), -1.851937051982466170361, -2*eps) ***** assert (sinint (300), 1.5708810882137495193, -2*eps) ***** assert (sinint (1e4), 1.5708915453859619157, -2*eps) ***** assert (sinint (20i), 1.2807826332028294459e7*1i, -2*eps) ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(Si(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 1.6782404878293681180 + 2.0396845546022061045*1i -18.154174221650281533 + 1.6146414539230479060*1i 1.5622254668890562934 1246.1144901994233444*1i -0.000099999999944461111128 + 0.99999999833338888972e-6*1i -1.5386156269726011209 - 0.053969388020443786229*1i ]; B = sinint (x); assert (A, B, -eps) 14 tests, 14 passed, 0 known failure, 0 skipped [inst/@double/logint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/logint.m ***** error logint (1, 2) ***** test x = 1.1; y = sym(11)/10; A = logint (x); B = double (logint (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = logint (x); B = double (logint (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(Li(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 1.3876787420229375511 + 2.5087546988592328752*1i 1.6987684473874802274 + 4.5936366057115204667*1i 30.126141584079629926 3.4936715673748995398 + 5.5260023797127391973*1i 0.90264689772681592152e-5 + 3.1415953634267361942*1i -2.3996350854560916779 - 7.6971739096353664559*1i ]; B = logint (x); assert (A, B, -eps) ***** assert (logint (inf), inf) ***** assert (isnan (logint (-inf))) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@double/fresnels.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/fresnels.m ***** error fresnels (1, 2) ***** test x = 1.1; y = sym(11)/10; A = fresnels (x); B = double (fresnels (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = fresnels (x); B = double (fresnels (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(FresnelS(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 36.725464883991438430 + 15.587751104404587334*1i 0.12213736710980573217e13 - 0.47688568479924574726e12*1i 0.49681690114783755327 -0.46816997858488224040*1i -0.52344169596561937423e-12 + 0.15707439669173367248e-13*1i 0.75738824160998910399e24 + 0.15391592966931193100e26*1i ]; B = fresnels (x); assert (A, B, -eps) ***** assert (fresnels (inf), 0.5) ***** assert (fresnels (-inf), -0.5) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@double/pochhammer.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/pochhammer.m ***** error pochhammer (1) ***** error pochhammer (1, 2, 3) ***** error pochhammer ([1 2], [1 2 3]) ***** error pochhammer ([1 2], [1; 2]) ***** test y = sym(11)/10; t = sym(3); x = 1.1; s = 3; A = pochhammer (x, s); B = double (pochhammer (y, t)); assert (A, B, -2*eps); ***** test % maple A = 256.798558090310131720; B = pochhammer (18.1, 1.9); assert (A, B, -20*eps) ***** test % maple, complex inputs> A = 2.67921619474318221972 + 1.96716724764630702653*1i; B = pochhammer (12.1+3.1*i, 0.5+0.2i); assert (A, B, -4*eps); ***** test % maple, matrix inputs A = [5.61467232547723663908 20.6144884613920190965]; B = pochhammer ([0.9 0.8], [3.1 4.2]); assert (A, B, -3*eps); ***** test % x matrix, s scalar y = [1 2 sym(pi); exp(sym(1)) 5 6]; t = sym(2); x = double (y); s = 2; A = pochhammer (s, x); B = double (pochhammer (t, y)); assert (A, B, -3*eps); ***** test % s matrix, x scalar t = [1 2 sym(pi); exp(sym(1)) 5 6]; y = sym(2); s = double (t); x = 2; A = pochhammer (s, x); B = double (pochhammer (t, y)); assert (A, B, -5*eps); 10 tests, 10 passed, 0 known failure, 0 skipped [inst/@double/coshint.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/coshint.m ***** error coshint (1, 2) ***** test x = 1.1; y = sym(11)/10; A = coshint (x); B = double (coshint (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = coshint (x); B = double (coshint (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(Chi(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 0.58447599687824767874 + 1.8682915044330306402*1i -0.63131069034703116988 + 1.8986171211850702957*1i 0.13577763724269399110e42 -0.045456433004455372635 + 1.5707963267948966192*1i -8.6330747070747332203 + 3.1315929868531280002*1i 0.74701205140887966531e7 + 0.10381444259644068585e8*1i ]; B = coshint (x); assert (A, B, -eps) ***** assert (coshint (inf), inf) ***** assert (isinf (coshint (-inf))) ***** assert (imag (coshint (-inf)), pi) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/@double/chebyshevT.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/chebyshevT.m ***** error chebyshevT (1) ***** error chebyshevT (1, 2, 3) ***** error chebyshevT ([1 2], [1 2 3]) ***** error chebyshevT ([1 2], [1; 2]) ***** test y = sym(11)/10; t = sym(2); x = 1.1; s = 2; A = chebyshevT (s, x); B = double (chebyshevT (t, y)); assert (A, B, -2*eps); ***** test % maple A = -0.304681164165948269030369; B = chebyshevT (18.1, 0.9); assert (A, B, -10*eps) ***** test % maple, complex inputs % ChebyshevT(12.1+3.1*I, 0.5+0.2*I); A = 0.637229289490379273451 - 0.475324703778957991318*1i; B = chebyshevT (12.1+3.1*i, 0.5+0.2i); assert (A, B, -5*eps); ***** test % maple, matrix inputs A = [0.59523064198266880000 0.57727442996887552000]; B = chebyshevT ([16 17], [0.9 0.7]); assert (A, B, -10*eps); ***** test % x matrix, s scalar y = [1 2 sym(pi); exp(sym(1)) 5 6]; t = sym(2); x = double (y); s = 2; A = chebyshevT (s, x); B = double (chebyshevT (t, y)); assert (A, B, -eps); ***** test % s matrix, x scalar t = [1 2 sym(pi); exp(sym(1)) 5 6]; y = sym(2); s = double (t); x = 2; A = chebyshevT (s, x); B = double (chebyshevT (t, y)); assert (A, B, -eps); ***** xtest % https://github.com/fredrik-johansson/mpmath/issues/469 assert (chebyshevT (4, inf), inf) assert (chebyshevT (4, -inf), inf) assert (chebyshevT (3, inf), inf) assert (chebyshevT (3, -inf), -inf) !!!!! known failure ASSERT errors for: assert (chebyshevT (4, inf),inf) Location | Observed | Expected | Reason () 1 Inf 'Inf' mismatch 11 tests, 10 passed, 1 known failure, 0 skipped [inst/@double/euler.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/euler.m ***** error euler (1, 2, 3) ***** error euler ([1 2], [1 2 3]) ***** error euler ([1 2], [1; 2]) ***** assert (isequal (euler (0), 1)) ***** assert (isequal (euler (1), 0)) ***** assert (isequal (euler (10), -50521)) ***** test n = sym(88); m = 88; A = euler (m); B = double (euler (n)); assert (A, B, -eps); ***** test m = [0 1; 2 4]; n = sym(m); A = euler (m); B = double (euler (n)); assert (isequal (A, B)); ***** test y = sym(19)/10; n = sym(2); x = 1.9; m = 2; A = euler (m, x); B = double (euler (n, y)); assert (A, B, -eps); ***** test % correct behaviour at floating point infinity assert (isequal (euler (4, inf), inf)) assert (isequal (euler (4, -inf), inf)) assert (isequal (euler (3, inf), inf)) assert (isequal (euler (3, -inf), -inf)) ***** test assert (isnan (euler(3, nan))) assert (isnumeric (euler(3, nan))) ***** test % maple, complex input A = 113.33970046079423204 - 46.991080726974811540i; B = euler(7, 2.12345 + 1.23i); assert (A, B, -eps); ***** test % maple, complex input, large m, small x A = 0.18034673393294025238e276 + 0.27756266681280689172e276*i; B = euler (200, 0.123+0.234i); assert (A, B, -eps); ***** test % x matrix, m scalar y = [1 2 sym(pi); exp(sym(1)) 5 6]; n = sym(2); x = double (y); m = 2; A = euler (m, x); B = double (euler (n, y)); assert (A, B, -eps); ***** test % m matrix, x scalar m = [1 2 3; 4 5 6]; n = sym(m); y = sym(21)/10; x = 2.1; A = euler (m, x); B = double (euler (n, y)); assert (A, B, -3*eps); 15 tests, 15 passed, 0 known failure, 0 skipped [inst/@double/chebyshevU.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/chebyshevU.m ***** error chebyshevU (1) ***** error chebyshevU (1, 2, 3) ***** error chebyshevU ([1 2], [1 2 3]) ***** error chebyshevU ([1 2], [1; 2]) ***** test y = sym(11)/10; t = sym(2); x = 1.1; s = 2; A = chebyshevU (s, x); B = double (chebyshevU (t, y)); assert (A, B, -2*eps); ***** test % maple A = 1.661891066691338157; B = chebyshevU (18.1, 0.9); assert (A, B, -3*eps) ***** test % maple, complex inputs> % ChebyshevU(12.1+3.1*I, 0.5+0.2*I); A = 1.046959313670290818 - 0.03386773634958834846*1i; B = chebyshevU (12.1+3.1*i, 0.5+0.2i); assert (A, B, -3*eps); ***** test % maple, matrix inputs A = [2.2543638828875776000 -1.3872651600553574400]; B = chebyshevU ([16 17], [0.9 0.8]); assert (A, B, -10*eps); ***** test % x matrix, s scalar y = [1 2 sym(pi); exp(sym(1)) 5 6]; t = sym(2); x = double (y); s = 2; A = chebyshevU (s, x); B = double (chebyshevU (t, y)); assert (A, B, -eps); ***** test % s matrix, x scalar t = [1 2 sym(pi); exp(sym(1)) 5 6]; y = sym(2); s = double (t); x = 2; A = chebyshevU (s, x); B = double (chebyshevU (t, y)); assert (A, B, -2*eps); ***** xtest % https://github.com/fredrik-johansson/mpmath/issues/469 assert (chebyshevU (4, inf), inf) assert (chebyshevU (4, -inf), inf) assert (chebyshevU (3, inf), inf) assert (chebyshevU (3, -inf), -inf) !!!!! known failure ASSERT errors for: assert (chebyshevU (4, inf),inf) Location | Observed | Expected | Reason () 5 Inf 'Inf' mismatch 11 tests, 10 passed, 1 known failure, 0 skipped [inst/@double/bernoulli.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/bernoulli.m ***** error bernoulli (1, 2, 3) ***** error bernoulli ([1 2], [1 2 3]) ***** error bernoulli ([1 2], [1; 2]) ***** assert (bernoulli (0), 1) ***** assert (bernoulli (3), 0) ***** test % two different definitions in literature assert (abs (bernoulli (1)), 0.5, -eps) ***** xtest % we want to use B_1 = 1/2, possible with a version-specific filter assert (bernoulli (1), 0.5, -eps) !!!!! known failure ASSERT errors for: assert (bernoulli (1),0.5,-eps) Location | Observed | Expected | Reason () -0.5 0.5 Rel err 2 exceeds tol 2.2204e-16 by 2 ***** test n = sym(88); m = 88; A = bernoulli (m); B = double (bernoulli (n)); assert (A, B, -eps); ***** test m = [0 2; 3 4]; n = sym(m); A = bernoulli (m); B = double (bernoulli (n)); assert (isequal (A, B)); ***** test y = sym(19)/10; n = sym(2); x = 1.9; m = 2; A = bernoulli (m, x); B = double (bernoulli (n, y)); assert (A, B, -eps); ***** test assert (isequal (bernoulli (4, inf), inf)) assert (isequal (bernoulli (4, -inf), inf)) ***** xtest % still broken? assert (isequal (bernoulli (3, inf), inf)) assert (isequal (bernoulli (3, -inf), -inf)) ***** test assert (isnan (bernoulli(3, nan))) assert (isnumeric (bernoulli(3, nan))) ***** test % maple, complex input A = 34.21957245745810513 - 130.0046256649829101i; B = bernoulli(7, 2.123 + 1.234i); assert (A, B, -5*eps); ***** test % x matrix, m scalar y = [1 2 sym(pi); exp(sym(1)) 5 6]; n = sym(2); x = double (y); m = 2; A = bernoulli (m, x); B = double (bernoulli (n, y)); assert (A, B, -eps); ***** test % m matrix, x scalar m = [1 2 3; 4 5 6]; n = sym(m); y = sym(21)/10; x = 2.1; A = bernoulli (m, x); B = double (bernoulli (n, y)); assert (A, B, -3*eps); 16 tests, 15 passed, 1 known failure, 0 skipped [inst/@double/zeta.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/zeta.m ***** error zeta (1, 2, 3) ***** assert (isnan (zeta (nan))) ***** test x = 1.1; y = sym(11)/10; A = zeta (x); B = double (zeta (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = zeta (x); B = double (zeta (y)); assert (A, B, -4*eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(Zeta(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ 0.59816556976238173670 - 0.35185474521784529050*1i 0.21425967567391921717 + 0.52503846985036050707*1i 1.0 1.7564685929749629608 - 0.10151198543617116894*1i -0.49990811617645824900 - 0.91873792757763831501e-6*1i 175.09070083717643866 - 71.512541417467273425*1i ]; B = zeta (x); assert (A, B, -eps) ***** assert (zeta (inf), 1.0) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/@double/harmonic.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/harmonic.m ***** error harmonic (1, 2) ***** test x = 1.1; y = sym(11)/10; A = harmonic (x); B = double (harmonic (y)); assert (A, B, -4*eps); ***** test y = [2 3 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = harmonic (x); B = double (harmonic (y)); assert (A, B, -4*eps); 3 tests, 3 passed, 0 known failure, 0 skipped [inst/@double/dilog.m] >>>>> /build/reproducible-path/octave-symbolic-3.2.1/inst/@double/dilog.m ***** test x = 1.1; y = sym(11)/10; A = dilog (x); B = double (dilog (y)); assert (A, B, -4*eps); ***** test y = [2 2 sym(pi); exp(sym(1)) 5 6]; x = double (y); A = dilog (x); B = double (dilog (y)); assert (A, B, -eps); ***** test % maple: % > A := [1+2*I, -2 + 5*I, 100, 10*I, -1e-4 + 1e-6*I, -20 + I]; % > for a in A do evalf(dilog(a)) end do; x = [1+2i; -2+5i; 100; 10i; -1e-4 + 1e-6*1i; -20-1i]; A = [ -0.59248494924959145800 - 1.5760154034463234224*1i -1.0549087538833908441 - 3.8759788000863368495*1i -12.192421669033171348 -2.9195729380904939394 - 3.9540920181102973073*1i 1.6459519160623984119 - 0.00032335296277550987686*1i -1.5445800511775466879 + 9.4256034277816069684*1i ]; B = dilog (x); assert (A, B, -eps) ***** xtest % https://github.com/fredrik-johansson/mpmath/issues/473 assert (isinf (dilog (inf))) !!!!! known failure assert (isinf (dilog (inf))) failed ***** assert (isnan (dilog (-inf))) 5 tests, 4 passed, 1 known failure, 0 skipped Checking C++ files ... Done running the unit tests. Summary: 2426 tests, 2394 passed, 32 known failures, 0 skipped dh_installdocs -O--buildsystem=octave dh_installchangelogs -O--buildsystem=octave dh_octave_changelogs -O--buildsystem=octave dh_octave_examples -O--buildsystem=octave dh_installsystemduser -O--buildsystem=octave dh_perl -O--buildsystem=octave dh_link -O--buildsystem=octave dh_strip_nondeterminism -O--buildsystem=octave dh_compress -O--buildsystem=octave dh_fixperms -O--buildsystem=octave dh_missing -O--buildsystem=octave dh_octave_substvar -O--buildsystem=octave dh_installdeb -O--buildsystem=octave dh_gencontrol -O--buildsystem=octave dh_md5sums -O--buildsystem=octave dh_builddeb -O--buildsystem=octave dpkg-deb: building package 'octave-symbolic' in '../octave-symbolic_3.2.1-2_all.deb'. dpkg-genbuildinfo --build=binary -O../octave-symbolic_3.2.1-2_i386.buildinfo dpkg-genchanges --build=binary -O../octave-symbolic_3.2.1-2_i386.changes dpkg-genchanges: info: binary-only upload (no source code included) dpkg-source --after-build . dpkg-buildpackage: info: binary-only upload (no source included) dpkg-genchanges: info: not including original source code in upload I: copying local configuration I: unmounting dev/ptmx filesystem I: unmounting dev/pts filesystem I: unmounting dev/shm filesystem I: unmounting proc filesystem I: unmounting sys filesystem I: cleaning the build env I: removing directory /srv/workspace/pbuilder/40094 and its subdirectories I: Current time: Thu Jun 20 14:47:28 -12 2024 I: pbuilder-time-stamp: 1718938048 Fri Jun 21 02:47:29 UTC 2024 I: 1st build successful. Starting 2nd build on remote node ionos16-i386.debian.net. Fri Jun 21 02:47:29 UTC 2024 I: Preparing to do remote build '2' on ionos16-i386.debian.net. Fri Jun 21 03:02:47 UTC 2024 I: Deleting $TMPDIR on ionos16-i386.debian.net. Fri Jun 21 03:02:48 UTC 2024 I: octave-symbolic_3.2.1-2_i386.changes: Format: 1.8 Date: Thu, 20 Jun 2024 06:07:11 -0300 Source: octave-symbolic Binary: octave-symbolic Architecture: all Version: 3.2.1-2 Distribution: unstable Urgency: medium Maintainer: Debian Octave Group Changed-By: Rafael Laboissière Description: octave-symbolic - symbolic package for Octave Closes: 1073431 Changes: octave-symbolic (3.2.1-2) unstable; urgency=medium . * d/p/vpa-xtest.patch: New patch (Closes: #1073431) * d/control: Depend and build-depend on python3-packaging. This prevents FTBFS due to a failing unit test in @sym/bernoulli.m and is also releated to Bug#1073431. Checksums-Sha1: cfbe39c1bbba07b1d0f75d1ad61e1d0805ac5e01 204560 octave-symbolic_3.2.1-2_all.deb 794705fff11bcfa26d3cdcafd6eff23df7fa9cb8 21569 octave-symbolic_3.2.1-2_i386.buildinfo Checksums-Sha256: 6f518dd3df1f802f8733d426c2f58b96c61181d94a086c5e7acd851de7bbc43f 204560 octave-symbolic_3.2.1-2_all.deb 00dc9d894a79969fe81842077fecff2a802abeefbc35be81e7045c67ab92cbfc 21569 octave-symbolic_3.2.1-2_i386.buildinfo Files: dd3b37ee6b9ce6790598bf93f2cc763f 204560 math optional octave-symbolic_3.2.1-2_all.deb 4f95f665c5eb2ecd16e911fd145110e7 21569 math optional octave-symbolic_3.2.1-2_i386.buildinfo Fri Jun 21 03:02:50 UTC 2024 I: diffoscope 271 will be used to compare the two builds: Running as unit: rb-diffoscope-i386_7-32271.service # Profiling output for: /usr/bin/diffoscope --timeout 7200 --html /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/octave-symbolic_3.2.1-2.diffoscope.html --text /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/octave-symbolic_3.2.1-2.diffoscope.txt --json /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/octave-symbolic_3.2.1-2.diffoscope.json --profile=- /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/b1/octave-symbolic_3.2.1-2_i386.changes /srv/reproducible-results/rbuild-debian/r-b-build.c60SlTzy/b2/octave-symbolic_3.2.1-2_i386.changes ## command (total time: 0.000s) 0.000s 1 call cmp (internal) ## has_same_content_as (total time: 0.000s) 0.000s 1 call abc.DotChangesFile ## main (total time: 0.459s) 0.459s 2 calls outputs 0.000s 1 call cleanup ## recognizes (total time: 0.020s) 0.020s 12 calls diffoscope.comparators.binary.FilesystemFile ## specialize (total time: 0.000s) 0.000s 1 call specialize Finished with result: success Main processes terminated with: code=exited/status=0 Service runtime: 942ms CPU time consumed: 902ms Fri Jun 21 03:02:51 UTC 2024 I: diffoscope 271 found no differences in the changes files, and a .buildinfo file also exists. Fri Jun 21 03:02:51 UTC 2024 I: octave-symbolic from unstable built successfully and reproducibly on i386. Fri Jun 21 03:02:52 UTC 2024 I: Submitting .buildinfo files to external archives: Fri Jun 21 03:02:52 UTC 2024 I: Submitting 24K b1/octave-symbolic_3.2.1-2_i386.buildinfo.asc Fri Jun 21 03:02:53 UTC 2024 I: Submitting 24K b2/octave-symbolic_3.2.1-2_i386.buildinfo.asc Fri Jun 21 03:02:54 UTC 2024 I: Done submitting .buildinfo files to http://buildinfo.debian.net/api/submit. Fri Jun 21 03:02:54 UTC 2024 I: Done submitting .buildinfo files. Fri Jun 21 03:02:54 UTC 2024 I: Removing signed octave-symbolic_3.2.1-2_i386.buildinfo.asc files: removed './b1/octave-symbolic_3.2.1-2_i386.buildinfo.asc' removed './b2/octave-symbolic_3.2.1-2_i386.buildinfo.asc'