Mon Oct 21 06:25:37 UTC 2024 I: starting to build octave-signal/trixie/armhf on jenkins on '2024-10-21 06:25' Mon Oct 21 06:25:37 UTC 2024 I: The jenkins build log is/was available at https://jenkins.debian.net/userContent/reproducible/debian/build_service/armhf_24/7803/console.log Mon Oct 21 06:25:37 UTC 2024 I: Downloading source for trixie/octave-signal=1.4.6-1 --2024-10-21 06:25:37-- http://deb.debian.org/debian/pool/main/o/octave-signal/octave-signal_1.4.6-1.dsc Connecting to 46.16.76.132:3128... connected. Proxy request sent, awaiting response... 200 OK Length: 2319 (2.3K) [text/prs.lines.tag] Saving to: ‘octave-signal_1.4.6-1.dsc’ 0K .. 100% 321M=0s 2024-10-21 06:25:37 (321 MB/s) - ‘octave-signal_1.4.6-1.dsc’ saved [2319/2319] Mon Oct 21 06:25:37 UTC 2024 I: octave-signal_1.4.6-1.dsc -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256 Format: 3.0 (quilt) Source: octave-signal Binary: octave-signal Architecture: any Version: 1.4.6-1 Maintainer: Debian Octave Group Uploaders: Rafael Laboissière , Mike Miller Homepage: https://gnu-octave.github.io/packages/signal/ Standards-Version: 4.7.0 Vcs-Browser: https://salsa.debian.org/pkg-octave-team/octave-signal Vcs-Git: https://salsa.debian.org/pkg-octave-team/octave-signal.git Testsuite: autopkgtest-pkg-octave Build-Depends: debhelper-compat (= 13), dh-octave (>= 1.8.0), dh-sequence-octave, octave-control, python3 , texlive Build-Conflicts: octave-nan Package-List: octave-signal deb math optional arch=any Checksums-Sha1: c4c98565daef6558da05693007f9356a38757bdd 447403 octave-signal_1.4.6.orig.tar.gz e51bc02b0b855b2b7c03214b63971b3b0928c96b 9884 octave-signal_1.4.6-1.debian.tar.xz Checksums-Sha256: 94eef8fea78c89609f8ddf6d5ff8bfc2e0dab932b43f86ce911474a58b5c71ee 447403 octave-signal_1.4.6.orig.tar.gz 25e07ed73641971a648c6965995b7183381aba8dd33001883294b9be553b5bd4 9884 octave-signal_1.4.6-1.debian.tar.xz Files: 9ffa0d22143cec417c472c7949ff85ce 447403 octave-signal_1.4.6.orig.tar.gz 74d6eacf9dd640c1dac236900ddcfd2f 9884 octave-signal_1.4.6-1.debian.tar.xz Dgit: 93442ca2d36c46526c9e92b23de80511e8a6bad1 debian archive/debian/1.4.6-1 https://git.dgit.debian.org/octave-signal -----BEGIN PGP SIGNATURE----- iQJGBAEBCAAwFiEEP0ZDkUmP6HS9tdmPISSqGYN4XJAFAmb5YT8SHHJhZmFlbEBk ZWJpYW4ub3JnAAoJECEkqhmDeFyQxggP/1oz1vua+YiNI9A9daJ5r0ktkkrUO0gZ qoTFJfTjdWJ2xGvlJ43WBPQgfzlzmuYk4ThsFiIU6VO3blKnaCZyb7CC/M+jWdGV a8UzXfWgLsr9R2++7k1JLnjWWL8gUQUaLrVE2E6NbXgmVpo0imPtEgmGHW3oYIaV tPYt+hr25vHj2dT44ib0ROj9BC/M/ertdvKzIfbG6RSAZ0YL8ICTF8TQd6MVXRWM VISf4s2YGUQ4zdnRCWiu48GeAabitBqxotBzX81m3j15X4Zprb8bdh1L1sqmIntq 9c5mBpX4k657cHBTHG0asX3sPOQl7bqNgqXWqUMjTeGmGSfkD17566JFAq7hhg86 EVu6Lh7PssTX4EuC6f6M7MafZxo3v1W4tCJ4OC+cZjEljvoii7/zvqRs88jqDvjs R+8n+QM8HfyHXB5ryAZb/x/iaaxK8uyndTaAQen6B9XVDwjR/9IxTDvwjUwyl9vk WWhX1aWTdIabzsytp6P74D0gK/oUIclhHjqpWWTQNC2FLtDQxttNoVzTK1Wh16ad 8IGScz77wkXPxP8pCBGoLLxhN5nOiY4kATDoef0S+EOwLLzX6hleBVtgOqJN8ylw WX0/k4sfUusjtiBUiar4F17i96QDg8BQNtIN7O1QY0U9BzKkeQ1HrI5/tA46GsPT p/6G0QyntkgQ =YRYo -----END PGP SIGNATURE----- Mon Oct 21 06:25:37 UTC 2024 I: Checking whether the package is not for us Mon Oct 21 06:25:37 UTC 2024 I: Starting 1st build on remote node ff4a-armhf-rb.debian.net. Mon Oct 21 06:25:37 UTC 2024 I: Preparing to do remote build '1' on ff4a-armhf-rb.debian.net. Mon Oct 21 07:00:05 UTC 2024 I: Deleting $TMPDIR on ff4a-armhf-rb.debian.net. I: pbuilder: network access will be disabled during build I: Current time: Sun Oct 20 18:25:45 -12 2024 I: pbuilder-time-stamp: 1729491946 I: Building the build Environment I: extracting base tarball [/var/cache/pbuilder/trixie-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: Copying source file I: copying [octave-signal_1.4.6-1.dsc] I: copying [./octave-signal_1.4.6.orig.tar.gz] I: copying [./octave-signal_1.4.6-1.debian.tar.xz] I: Extracting source gpgv: Signature made Sun Sep 29 14:16:31 2024 gpgv: using RSA key 3F464391498FE874BDB5D98F2124AA1983785C90 gpgv: issuer "rafael@debian.org" gpgv: Can't check signature: No public key dpkg-source: warning: cannot verify inline signature for ./octave-signal_1.4.6-1.dsc: no acceptable signature found dpkg-source: info: extracting octave-signal in octave-signal-1.4.6 dpkg-source: info: unpacking octave-signal_1.4.6.orig.tar.gz dpkg-source: info: unpacking octave-signal_1.4.6-1.debian.tar.xz dpkg-source: info: using patch list from debian/patches/series dpkg-source: info: applying add-Makefile.patch I: Not using root during the build. I: Installing the build-deps I: user script /srv/workspace/pbuilder/1894/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='armhf' DEBIAN_FRONTEND='noninteractive' DEB_BUILD_OPTIONS='buildinfo=+all reproducible=+all parallel=3 ' DISTRIBUTION='trixie' HOME='/root' HOST_ARCH='armhf' IFS=' ' INVOCATION_ID='9019cabd23f845ddbf5ed9f09105189a' LANG='C' LANGUAGE='en_US:en' LC_ALL='C' 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='1894' 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.nfNnVHNn/pbuilderrc_pMcm --distribution trixie --hookdir /etc/pbuilder/first-build-hooks --debbuildopts -b --basetgz /var/cache/pbuilder/trixie-reproducible-base.tgz --buildresult /srv/reproducible-results/rbuild-debian/r-b-build.nfNnVHNn/b1 --logfile b1/build.log octave-signal_1.4.6-1.dsc' SUDO_GID='113' SUDO_UID='107' SUDO_USER='jenkins' TERM='unknown' TZ='/usr/share/zoneinfo/Etc/GMT+12' USER='root' _='/usr/bin/systemd-run' http_proxy='http://10.0.0.15:3142/' I: uname -a Linux ff4a 6.1.0-26-armmp-lpae #1 SMP Debian 6.1.112-1 (2024-09-30) armv7l GNU/Linux I: ls -l /bin lrwxrwxrwx 1 root root 7 Aug 4 21:30 /bin -> usr/bin I: user script /srv/workspace/pbuilder/1894/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: armhf 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), dh-octave (>= 1.8.0), dh-sequence-octave, octave-control, python3, texlive Conflicts: octave-nan dpkg-deb: building package 'pbuilder-satisfydepends-dummy' in '/tmp/satisfydepends-aptitude/pbuilder-satisfydepends-dummy.deb'. Selecting previously unselected package pbuilder-satisfydepends-dummy. (Reading database ... 19520 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 dh-octave (>= 1.8.0); however: Package dh-octave is not installed. pbuilder-satisfydepends-dummy depends on dh-sequence-octave; however: Package dh-sequence-octave is not installed. pbuilder-satisfydepends-dummy depends on octave-control; however: Package octave-control is not installed. pbuilder-satisfydepends-dummy depends on python3; however: Package python3 is not installed. pbuilder-satisfydepends-dummy depends on texlive; however: Package texlive 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} appstream{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} fonts-lmodern{a} gettext{a} gettext-base{a} gfortran{a} gfortran-14{a} gfortran-14-arm-linux-gnueabihf{a} gfortran-arm-linux-gnueabihf{a} gnuplot-data{a} gnuplot-nox{a} gpg{a} gpgconf{a} groff-base{a} hdf5-helpers{a} hwloc-nox{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} libappstream5{a} 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libssl-dev{a} libstemmer0d{a} libstrictures-perl{a} libstring-copyright-perl{a} libstring-escape-perl{a} libstring-license-perl{a} libstring-rewriteprefix-perl{a} libsub-exporter-perl{a} libsub-exporter-progressive-perl{a} libsub-identify-perl{a} libsub-install-perl{a} libsub-name-perl{a} libsub-quote-perl{a} libsub-uplevel-perl{a} libsuitesparseconfig7{a} libsundials-ida6{a} libsundials-nvecparallel-petsc6{a} libsundials-sunlinsol3{a} libsundials-sunmatrix4{a} libsuperlu-dist8{a} libsuperlu6{a} libsvtav1enc2{a} libsynctex2{a} libsyntax-keyword-try-perl{a} libsz2{a} libtasn1-6-dev{a} libteckit0{a} libterm-readkey-perl{a} libtest-exception-perl{a} libtexlua53-5{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} libtirpc-common{a} libtirpc3t64{a} libtoml-tiny-perl{a} libtool{a} libtry-tiny-perl{a} libts0t64{a} libuchardet0{a} libumfpack6{a} libunbound8{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} libxaw7{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} libxi6{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} libxmlb2{a} libxmu6{a} libxpm4{a} libxrender1{a} libxs-parse-keyword-perl{a} libxs-parse-sublike-perl{a} libxshmfence1{a} libxt6t64{a} libxxf86vm1{a} libyaml-0-2{a} libyaml-libyaml-perl{a} libyaml-pp-perl{a} libyaml-tiny-perl{a} libyuv0{a} libz3-4{a} libzstd-dev{a} libzzip-0-13t64{a} licensecheck{a} lintian{a} lzop{a} m4{a} man-db{a} media-types{a} mesa-libgallium{a} mpi-default-bin{a} mpich{a} netbase{a} nettle-dev{a} ocl-icd-libopencl1{a} octave{a} octave-common{a} octave-control{a} octave-dev{a} openssl{a} patchutils{a} perl-openssl-defaults{a} pkgconf{a} pkgconf-bin{a} plzip{a} po-debconf{a} python3{a} python3-minimal{a} python3.12{a} python3.12-minimal{a} readline-common{a} sensible-utils{a} shared-mime-info{a} t1utils{a} tex-common{a} texinfo{a} texinfo-lib{a} texlive{a} texlive-base{a} texlive-binaries{a} texlive-fonts-recommended{a} texlive-latex-base{a} texlive-latex-recommended{a} tzdata{a} ucf{a} unzip{a} x11-common{a} x11proto-dev{a} xdg-utils{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 dvisvgm epstool fonts-liberation fonts-urw-base35 ghostscript gnupg groff 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 libfile-mimeinfo-perl libfreezethaw-perl libfuse-perl libglib2.0-data libgpm2 libheif-plugin-aomenc libheif-plugin-x265 libhtml-format-perl libhttp-daemon-perl libhwloc-plugins 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 libmpich-dev libnet-dbus-perl libopenblas0 libpackage-stash-xs-perl libqt6sql6-ibase libqt6sql6-mysql libqt6sql6-odbc libqt6sql6-psql libqt6sql6-sqlite libre-engine-re2-perl libsasl2-modules libsocket6-perl libtasn1-doc libtie-ixhash-perl libtypes-serialiser-perl libx11-protocol-perl libxml-sax-expat-perl libxstring-perl lmodern lynx mesa-vulkan-drivers octave-doc pstoedit publicsuffix qt6-gtk-platformtheme qt6-qpa-plugins qt6-translations-l10n qt6-wayland tex-gyre tipa wget x11-utils x11-xserver-utils xdg-user-dirs 0 packages upgraded, 571 newly installed, 0 to remove and 0 not upgraded. Need to get 245 MB of archives. After unpacking 813 MB will be used. Writing extended state information... Get: 1 http://deb.debian.org/debian trixie/main armhf libpython3.12-minimal armhf 3.12.6-1 [800 kB] Get: 2 http://deb.debian.org/debian trixie/main armhf libexpat1 armhf 2.6.3-1 [83.2 kB] Get: 3 http://deb.debian.org/debian trixie/main armhf python3.12-minimal armhf 3.12.6-1 [1812 kB] Get: 4 http://deb.debian.org/debian trixie/main armhf python3-minimal armhf 3.12.6-1 [26.7 kB] Get: 5 http://deb.debian.org/debian trixie/main armhf media-types all 10.1.0 [26.9 kB] Get: 6 http://deb.debian.org/debian trixie/main armhf netbase all 6.4 [12.8 kB] Get: 7 http://deb.debian.org/debian trixie/main armhf tzdata all 2024a-4 [255 kB] Get: 8 http://deb.debian.org/debian trixie/main armhf libkrb5support0 armhf 1.21.3-3 [30.0 kB] Get: 9 http://deb.debian.org/debian trixie/main armhf libcom-err2 armhf 1.47.1-1 [22.1 kB] Get: 10 http://deb.debian.org/debian trixie/main armhf libk5crypto3 armhf 1.21.3-3 [75.8 kB] Get: 11 http://deb.debian.org/debian trixie/main armhf libkeyutils1 armhf 1.6.3-3 [7908 B] Get: 12 http://deb.debian.org/debian trixie/main armhf libkrb5-3 armhf 1.21.3-3 [283 kB] Get: 13 http://deb.debian.org/debian trixie/main armhf libgssapi-krb5-2 armhf 1.21.3-3 [114 kB] Get: 14 http://deb.debian.org/debian trixie/main armhf libtirpc-common all 1.3.4+ds-1.3 [10.9 kB] Get: 15 http://deb.debian.org/debian trixie/main armhf libtirpc3t64 armhf 1.3.4+ds-1.3 [71.1 kB] Get: 16 http://deb.debian.org/debian trixie/main armhf libnsl2 armhf 1.3.0-3+b2 [34.9 kB] Get: 17 http://deb.debian.org/debian trixie/main armhf readline-common all 8.2-5 [69.3 kB] Get: 18 http://deb.debian.org/debian trixie/main armhf libreadline8t64 armhf 8.2-5 [146 kB] Get: 19 http://deb.debian.org/debian trixie/main armhf libpython3.12-stdlib armhf 3.12.6-1 [1817 kB] Get: 20 http://deb.debian.org/debian trixie/main armhf python3.12 armhf 3.12.6-1 [669 kB] Get: 21 http://deb.debian.org/debian trixie/main armhf libpython3-stdlib armhf 3.12.6-1 [9692 B] Get: 22 http://deb.debian.org/debian trixie/main armhf python3 armhf 3.12.6-1 [27.8 kB] Get: 23 http://deb.debian.org/debian trixie/main armhf sensible-utils all 0.0.24 [24.8 kB] Get: 24 http://deb.debian.org/debian trixie/main armhf openssl armhf 3.3.2-1 [1348 kB] Get: 25 http://deb.debian.org/debian trixie/main armhf ca-certificates all 20240203 [158 kB] Get: 26 http://deb.debian.org/debian trixie/main armhf libmagic-mgc armhf 1:5.45-3 [314 kB] Get: 27 http://deb.debian.org/debian trixie/main armhf libmagic1t64 armhf 1:5.45-3 [98.1 kB] Get: 28 http://deb.debian.org/debian trixie/main armhf file armhf 1:5.45-3 [42.0 kB] Get: 29 http://deb.debian.org/debian trixie/main armhf gettext-base armhf 0.22.5-2 [195 kB] Get: 30 http://deb.debian.org/debian trixie/main armhf libuchardet0 armhf 0.0.8-1+b1 [65.7 kB] Get: 31 http://deb.debian.org/debian trixie/main armhf groff-base armhf 1.23.0-5 [1091 kB] Get: 32 http://deb.debian.org/debian trixie/main armhf bsdextrautils armhf 2.40.2-9 [88.8 kB] Get: 33 http://deb.debian.org/debian trixie/main armhf libpipeline1 armhf 1.5.8-1 [35.0 kB] Get: 34 http://deb.debian.org/debian trixie/main armhf man-db armhf 2.13.0-1 [1382 kB] Get: 35 http://deb.debian.org/debian trixie/main armhf ucf all 3.0043+nmu1 [55.2 kB] Get: 36 http://deb.debian.org/debian trixie/main armhf aglfn all 1.7+git20191031.4036a9c-2 [30.5 kB] Get: 37 http://deb.debian.org/debian trixie/main armhf libglib2.0-0t64 armhf 2.82.1-1 [1325 kB] Get: 38 http://deb.debian.org/debian trixie/main armhf libicu72 armhf 72.1-5 [9075 kB] Get: 39 http://deb.debian.org/debian trixie/main armhf libxml2 armhf 2.12.7+dfsg+really2.9.14-0.1 [604 kB] Get: 40 http://deb.debian.org/debian trixie/main armhf shared-mime-info armhf 2.4-5+b1 [753 kB] Get: 41 http://deb.debian.org/debian trixie/main armhf libbrotli1 armhf 1.1.0-2+b4 [293 kB] Get: 42 http://deb.debian.org/debian trixie/main armhf libsasl2-modules-db armhf 2.1.28+dfsg1-8 [18.2 kB] Get: 43 http://deb.debian.org/debian trixie/main armhf libsasl2-2 armhf 2.1.28+dfsg1-8 [50.2 kB] Get: 44 http://deb.debian.org/debian trixie/main armhf libldap-2.5-0 armhf 2.5.18+dfsg-3 [163 kB] Get: 45 http://deb.debian.org/debian trixie/main armhf libnghttp2-14 armhf 1.63.0-1 [62.9 kB] Get: 46 http://deb.debian.org/debian trixie/main armhf libnghttp3-9 armhf 1.4.0-1 [55.1 kB] Get: 47 http://deb.debian.org/debian trixie/main armhf libngtcp2-16 armhf 1.6.0-1 [118 kB] Get: 48 http://deb.debian.org/debian trixie/main armhf libngtcp2-crypto-gnutls8 armhf 1.6.0-1 [17.1 kB] Get: 49 http://deb.debian.org/debian trixie/main armhf libpsl5t64 armhf 0.21.2-1.1 [55.6 kB] Get: 50 http://deb.debian.org/debian trixie/main armhf librtmp1 armhf 2.4+20151223.gitfa8646d.1-2+b4 [53.2 kB] Get: 51 http://deb.debian.org/debian trixie/main armhf libssh2-1t64 armhf 1.11.1-1 [227 kB] Get: 52 http://deb.debian.org/debian trixie/main armhf libcurl3t64-gnutls armhf 8.10.1-2 [308 kB] Get: 53 http://deb.debian.org/debian trixie/main armhf libstemmer0d armhf 2.2.0-4+b1 [102 kB] Get: 54 http://deb.debian.org/debian trixie/main armhf libxmlb2 armhf 0.3.21-1 [53.4 kB] Get: 55 http://deb.debian.org/debian trixie/main armhf libyaml-0-2 armhf 0.2.5-1+b1 [45.5 kB] Get: 56 http://deb.debian.org/debian trixie/main armhf libappstream5 armhf 1.0.3-1 [190 kB] Get: 57 http://deb.debian.org/debian trixie/main armhf appstream armhf 1.0.3-1 [465 kB] Get: 58 http://deb.debian.org/debian trixie/main armhf m4 armhf 1.4.19-4 [264 kB] Get: 59 http://deb.debian.org/debian trixie/main armhf autoconf all 2.72-3 [493 kB] Get: 60 http://deb.debian.org/debian trixie/main armhf autotools-dev all 20220109.1 [51.6 kB] Get: 61 http://deb.debian.org/debian trixie/main armhf automake all 1:1.16.5-1.3 [823 kB] Get: 62 http://deb.debian.org/debian trixie/main armhf autopoint all 0.22.5-2 [723 kB] Get: 63 http://deb.debian.org/debian trixie/main armhf libcapture-tiny-perl all 0.48-2 [24.6 kB] Get: 64 http://deb.debian.org/debian trixie/main armhf libparams-util-perl armhf 1.102-3 [23.0 kB] Get: 65 http://deb.debian.org/debian trixie/main armhf libsub-install-perl all 0.929-1 [10.5 kB] Get: 66 http://deb.debian.org/debian trixie/main armhf libdata-optlist-perl all 0.114-1 [10.6 kB] Get: 67 http://deb.debian.org/debian trixie/main armhf libb-hooks-op-check-perl armhf 0.22-3+b1 [10.2 kB] Get: 68 http://deb.debian.org/debian trixie/main armhf libdynaloader-functions-perl all 0.004-1 [12.1 kB] Get: 69 http://deb.debian.org/debian trixie/main armhf libdevel-callchecker-perl armhf 0.009-1 [15.7 kB] Get: 70 http://deb.debian.org/debian trixie/main armhf libparams-classify-perl armhf 0.015-2+b3 [21.3 kB] Get: 71 http://deb.debian.org/debian trixie/main armhf libmodule-runtime-perl all 0.016-2 [19.6 kB] Get: 72 http://deb.debian.org/debian trixie/main armhf libtry-tiny-perl all 0.32-1 [22.9 kB] Get: 73 http://deb.debian.org/debian trixie/main armhf libmodule-implementation-perl all 0.09-2 [12.6 kB] Get: 74 http://deb.debian.org/debian trixie/main armhf libpackage-stash-perl all 0.40-1 [22.0 kB] Get: 75 http://deb.debian.org/debian trixie/main armhf libclass-load-perl all 0.25-2 [15.3 kB] Get: 76 http://deb.debian.org/debian trixie/main armhf libio-stringy-perl all 2.113-2 [48.3 kB] Get: 77 http://deb.debian.org/debian trixie/main armhf libparams-validate-perl armhf 1.31-2+b2 [62.2 kB] Get: 78 http://deb.debian.org/debian trixie/main armhf libsub-exporter-perl all 0.990-1 [50.6 kB] Get: 79 http://deb.debian.org/debian trixie/main armhf libgetopt-long-descriptive-perl all 0.111-1 [27.8 kB] Get: 80 http://deb.debian.org/debian trixie/main armhf libio-tiecombine-perl all 1.005-3 [10.8 kB] Get: 81 http://deb.debian.org/debian trixie/main armhf libmodule-pluggable-perl all 5.2-5 [23.0 kB] Get: 82 http://deb.debian.org/debian trixie/main armhf libstring-rewriteprefix-perl all 0.009-1 [7140 B] Get: 83 http://deb.debian.org/debian trixie/main armhf libapp-cmd-perl all 0.336-1 [65.8 kB] Get: 84 http://deb.debian.org/debian trixie/main armhf libboolean-perl all 0.46-3 [9924 B] Get: 85 http://deb.debian.org/debian trixie/main armhf libsub-uplevel-perl all 0.2800-3 [14.0 kB] Get: 86 http://deb.debian.org/debian trixie/main armhf libtest-exception-perl all 0.43-3 [16.9 kB] Get: 87 http://deb.debian.org/debian trixie/main armhf libcarp-assert-more-perl all 2.4.0-1 [20.2 kB] Get: 88 http://deb.debian.org/debian trixie/main armhf libfile-which-perl all 1.27-2 [15.1 kB] Get: 89 http://deb.debian.org/debian trixie/main armhf libfile-homedir-perl all 1.006-2 [42.4 kB] Get: 90 http://deb.debian.org/debian trixie/main armhf libclone-choose-perl all 0.010-2 [8676 B] Get: 91 http://deb.debian.org/debian trixie/main armhf libhash-merge-perl all 0.302-1 [14.7 kB] Get: 92 http://deb.debian.org/debian trixie/main armhf libjson-perl all 4.10000-1 [87.5 kB] Get: 93 http://deb.debian.org/debian trixie/main armhf libexporter-tiny-perl all 1.006002-1 [38.7 kB] Get: 94 http://deb.debian.org/debian trixie/main armhf liblist-moreutils-xs-perl armhf 0.430-4 [36.6 kB] Get: 95 http://deb.debian.org/debian trixie/main armhf liblist-moreutils-perl all 0.430-2 [46.9 kB] Get: 96 http://deb.debian.org/debian trixie/main armhf liblog-log4perl-perl all 1.57-1 [367 kB] Get: 97 http://deb.debian.org/debian trixie/main armhf libmouse-perl armhf 2.5.11-1 [139 kB] Get: 98 http://deb.debian.org/debian trixie/main armhf libmousex-nativetraits-perl all 1.09-3 [53.5 kB] Get: 99 http://deb.debian.org/debian trixie/main armhf libmousex-strictconstructor-perl all 0.02-3 [5304 B] Get: 100 http://deb.debian.org/debian trixie/main armhf libparse-recdescent-perl all 1.967015+dfsg-4 [147 kB] Get: 101 http://deb.debian.org/debian trixie/main armhf libpath-tiny-perl all 0.146-1 [56.2 kB] Get: 102 http://deb.debian.org/debian trixie/main armhf libpod-pom-perl all 2.01-4 [65.0 kB] Get: 103 http://deb.debian.org/debian trixie/main armhf libregexp-common-perl all 2024080801-1 [167 kB] Get: 104 http://deb.debian.org/debian trixie/main armhf libyaml-tiny-perl all 1.74-1 [30.7 kB] Get: 105 http://deb.debian.org/debian trixie/main armhf libconfig-model-perl all 2.154-1 [372 kB] Get: 106 http://deb.debian.org/debian trixie/main armhf libyaml-pp-perl all 0.38.0-1 [109 kB] Get: 107 http://deb.debian.org/debian trixie/main armhf cme all 1.040-1 [68.8 kB] Get: 108 http://deb.debian.org/debian trixie/main armhf libdebhelper-perl all 13.20 [89.7 kB] Get: 109 http://deb.debian.org/debian trixie/main armhf libtool all 2.4.7-7 [517 kB] Get: 110 http://deb.debian.org/debian trixie/main armhf dh-autoreconf all 20 [17.1 kB] Get: 111 http://deb.debian.org/debian trixie/main armhf libarchive-zip-perl all 1.68-1 [104 kB] Get: 112 http://deb.debian.org/debian trixie/main armhf libfile-stripnondeterminism-perl all 1.14.0-1 [19.5 kB] Get: 113 http://deb.debian.org/debian trixie/main armhf dh-strip-nondeterminism all 1.14.0-1 [8448 B] Get: 114 http://deb.debian.org/debian trixie/main armhf libelf1t64 armhf 0.191-2 [183 kB] Get: 115 http://deb.debian.org/debian trixie/main armhf dwz armhf 0.15-1+b2 [106 kB] Get: 116 http://deb.debian.org/debian trixie/main armhf gettext armhf 0.22.5-2 [1485 kB] Get: 117 http://deb.debian.org/debian trixie/main armhf intltool-debian all 0.35.0+20060710.6 [22.9 kB] Get: 118 http://deb.debian.org/debian trixie/main armhf po-debconf all 1.0.21+nmu1 [248 kB] Get: 119 http://deb.debian.org/debian trixie/main armhf debhelper all 13.20 [915 kB] Get: 120 http://deb.debian.org/debian trixie/main armhf gnuplot-data all 6.0.0+dfsg1-3 [72.3 kB] Get: 121 http://deb.debian.org/debian trixie/main armhf libpng16-16t64 armhf 1.6.44-2 [263 kB] Get: 122 http://deb.debian.org/debian trixie/main armhf libfreetype6 armhf 2.13.3+dfsg-1 [385 kB] Get: 123 http://deb.debian.org/debian trixie/main armhf fonts-dejavu-mono all 2.37-8 [489 kB] Get: 124 http://deb.debian.org/debian trixie/main armhf fonts-dejavu-core all 2.37-8 [840 kB] Get: 125 http://deb.debian.org/debian trixie/main armhf fonts-freefont-otf all 20211204+svn4273-2 [4328 kB] Get: 126 http://deb.debian.org/debian trixie/main armhf fontconfig-config armhf 2.15.0-1.1 [317 kB] Get: 127 http://deb.debian.org/debian trixie/main armhf libfontconfig1 armhf 2.15.0-1.1 [370 kB] Get: 128 http://deb.debian.org/debian trixie/main armhf libpixman-1-0 armhf 0.42.2-1+b1 [476 kB] Get: 129 http://deb.debian.org/debian trixie/main armhf libxau6 armhf 1:1.0.9-1+b1 [17.4 kB] Get: 130 http://deb.debian.org/debian trixie/main armhf libxdmcp6 armhf 1:1.1.2-3+b1 [23.0 kB] Get: 131 http://deb.debian.org/debian trixie/main armhf libxcb1 armhf 1.17.0-2 [140 kB] Get: 132 http://deb.debian.org/debian trixie/main armhf libx11-data all 2:1.8.7-1 [328 kB] Get: 133 http://deb.debian.org/debian trixie/main armhf libx11-6 armhf 2:1.8.7-1+b1 [739 kB] Get: 134 http://deb.debian.org/debian trixie/main armhf libxcb-render0 armhf 1.17.0-2 [114 kB] Get: 135 http://deb.debian.org/debian trixie/main armhf libxcb-shm0 armhf 1.17.0-2 [105 kB] Get: 136 http://deb.debian.org/debian trixie/main armhf libxext6 armhf 2:1.3.4-1+b2 [45.2 kB] Get: 137 http://deb.debian.org/debian trixie/main armhf libxrender1 armhf 1:0.9.10-1.1+b1 [24.9 kB] Get: 138 http://deb.debian.org/debian trixie/main armhf libcairo2 armhf 1.18.2-2 [443 kB] Get: 139 http://deb.debian.org/debian trixie/main armhf libedit2 armhf 3.1-20240808-1 [77.9 kB] Get: 140 http://deb.debian.org/debian trixie/main armhf libaom3 armhf 3.9.1-1 [1558 kB] Get: 141 http://deb.debian.org/debian trixie/main armhf libdav1d7 armhf 1.4.3-1 [256 kB] Get: 142 http://deb.debian.org/debian trixie/main armhf libabsl20230802 armhf 20230802.1-4 [432 kB] Get: 143 http://deb.debian.org/debian trixie/main armhf libgav1-1 armhf 0.19.0-2+b1 [299 kB] Get: 144 http://deb.debian.org/debian trixie/main armhf librav1e0.7 armhf 0.7.1-7+b1 [563 kB] Get: 145 http://deb.debian.org/debian trixie/main armhf libsvtav1enc2 armhf 2.2.1+dfsg-2 [937 kB] Get: 146 http://deb.debian.org/debian trixie/main armhf libjpeg62-turbo armhf 1:2.1.5-3 [143 kB] Get: 147 http://deb.debian.org/debian trixie/main armhf libyuv0 armhf 0.0.1888.20240710-3 [85.8 kB] Get: 148 http://deb.debian.org/debian trixie/main armhf libavif16 armhf 1.1.1-1 [103 kB] Get: 149 http://deb.debian.org/debian trixie/main armhf libsharpyuv0 armhf 1.4.0-0.1 [111 kB] Get: 150 http://deb.debian.org/debian trixie/main armhf libheif-plugin-dav1d armhf 1.18.2-2 [10.5 kB] Get: 151 http://deb.debian.org/debian trixie/main armhf libde265-0 armhf 1.0.15-1+b2 [145 kB] Get: 152 http://deb.debian.org/debian trixie/main armhf libheif-plugin-libde265 armhf 1.18.2-2 [13.3 kB] Get: 153 http://deb.debian.org/debian trixie/main armhf libheif1 armhf 1.18.2-2 [262 kB] Get: 154 http://deb.debian.org/debian trixie/main armhf libimagequant0 armhf 2.18.0-1+b1 [30.7 kB] Get: 155 http://deb.debian.org/debian trixie/main armhf libfribidi0 armhf 1.0.15-1 [70.0 kB] Get: 156 http://deb.debian.org/debian trixie/main armhf libgraphite2-3 armhf 1.3.14-2 [63.2 kB] Get: 157 http://deb.debian.org/debian trixie/main armhf libharfbuzz0b armhf 9.0.0-1 [417 kB] Get: 158 http://deb.debian.org/debian trixie/main armhf libraqm0 armhf 0.10.1-1+b1 [11.8 kB] Get: 159 http://deb.debian.org/debian trixie/main armhf libdeflate0 armhf 1.22-1 [36.3 kB] Get: 160 http://deb.debian.org/debian trixie/main armhf libjbig0 armhf 2.1-6.1+b1 [27.3 kB] Get: 161 http://deb.debian.org/debian trixie/main armhf liblerc4 armhf 4.0.0+ds-4+b1 [137 kB] Get: 162 http://deb.debian.org/debian trixie/main armhf libwebp7 armhf 1.4.0-0.1 [265 kB] Get: 163 http://deb.debian.org/debian trixie/main armhf libtiff6 armhf 4.5.1+git230720-5 [302 kB] Get: 164 http://deb.debian.org/debian trixie/main armhf libxpm4 armhf 1:3.5.17-1+b1 [50.0 kB] Get: 165 http://deb.debian.org/debian trixie/main armhf libgd3 armhf 2.3.3-12 [104 kB] Get: 166 http://deb.debian.org/debian trixie/main armhf liblua5.4-0 armhf 5.4.6-3+b1 [122 kB] Get: 167 http://deb.debian.org/debian trixie/main armhf fontconfig armhf 2.15.0-1.1 [461 kB] Get: 168 http://deb.debian.org/debian trixie/main armhf libthai-data all 0.1.29-2 [168 kB] Get: 169 http://deb.debian.org/debian trixie/main armhf libdatrie1 armhf 0.2.13-3 [34.4 kB] Get: 170 http://deb.debian.org/debian trixie/main armhf libthai0 armhf 0.1.29-2 [45.8 kB] Get: 171 http://deb.debian.org/debian trixie/main armhf libpango-1.0-0 armhf 1.54.0+ds-2 [198 kB] Get: 172 http://deb.debian.org/debian trixie/main armhf libpangoft2-1.0-0 armhf 1.54.0+ds-2 [47.5 kB] Get: 173 http://deb.debian.org/debian trixie/main armhf libpangocairo-1.0-0 armhf 1.54.0+ds-2 [31.1 kB] Get: 174 http://deb.debian.org/debian trixie/main armhf libwebpmux3 armhf 1.4.0-0.1 [120 kB] Get: 175 http://deb.debian.org/debian trixie/main armhf gnuplot-nox armhf 6.0.0+dfsg1-3 [838 kB] Get: 176 http://deb.debian.org/debian trixie/main armhf dh-octave-autopkgtest all 1.8.0 [10.0 kB] Get: 177 http://deb.debian.org/debian trixie/main armhf libapt-pkg-perl armhf 0.1.40+b5 [62.5 kB] Get: 178 http://deb.debian.org/debian trixie/main armhf libarray-intspan-perl all 2.004-2 [25.7 kB] Get: 179 http://deb.debian.org/debian trixie/main armhf libyaml-libyaml-perl armhf 0.902.0+ds-2 [33.1 kB] Get: 180 http://deb.debian.org/debian trixie/main armhf libconfig-model-backend-yaml-perl all 2.134-2 [10.8 kB] Get: 181 http://deb.debian.org/debian trixie/main armhf libexporter-lite-perl all 0.09-2 [10.7 kB] Get: 182 http://deb.debian.org/debian trixie/main armhf libencode-locale-perl all 1.05-3 [12.9 kB] Get: 183 http://deb.debian.org/debian trixie/main armhf libtimedate-perl all 2.3300-2 [39.3 kB] Get: 184 http://deb.debian.org/debian trixie/main armhf libhttp-date-perl all 6.06-1 [10.7 kB] Get: 185 http://deb.debian.org/debian trixie/main armhf libfile-listing-perl all 6.16-1 [12.4 kB] Get: 186 http://deb.debian.org/debian trixie/main armhf libhtml-tagset-perl all 3.24-1 [14.7 kB] Get: 187 http://deb.debian.org/debian trixie/main armhf liburi-perl all 5.30-1 [105 kB] Get: 188 http://deb.debian.org/debian trixie/main armhf libhtml-parser-perl armhf 3.83-1 [96.1 kB] Get: 189 http://deb.debian.org/debian trixie/main armhf libhtml-tree-perl all 5.07-3 [211 kB] Get: 190 http://deb.debian.org/debian trixie/main armhf libclone-perl armhf 0.47-1 [13.0 kB] Get: 191 http://deb.debian.org/debian trixie/main armhf libio-html-perl all 1.004-3 [16.2 kB] Get: 192 http://deb.debian.org/debian trixie/main armhf liblwp-mediatypes-perl all 6.04-2 [20.2 kB] Get: 193 http://deb.debian.org/debian trixie/main armhf libhttp-message-perl all 7.00-2 [79.8 kB] Get: 194 http://deb.debian.org/debian trixie/main armhf libhttp-cookies-perl all 6.11-1 [19.1 kB] Get: 195 http://deb.debian.org/debian trixie/main armhf libhttp-negotiate-perl all 6.01-2 [13.1 kB] Get: 196 http://deb.debian.org/debian trixie/main armhf perl-openssl-defaults armhf 7+b2 [6708 B] Get: 197 http://deb.debian.org/debian trixie/main armhf libnet-ssleay-perl armhf 1.94-1+b1 [319 kB] Get: 198 http://deb.debian.org/debian trixie/main armhf libio-socket-ssl-perl all 2.089-1 [223 kB] Get: 199 http://deb.debian.org/debian trixie/main armhf libnet-http-perl all 6.23-1 [23.9 kB] Get: 200 http://deb.debian.org/debian trixie/main armhf liblwp-protocol-https-perl all 6.14-1 [10.8 kB] Get: 201 http://deb.debian.org/debian trixie/main armhf libwww-robotrules-perl all 6.02-1 [12.9 kB] Get: 202 http://deb.debian.org/debian trixie/main armhf libwww-perl all 6.77-1 [183 kB] Get: 203 http://deb.debian.org/debian trixie/main armhf liberror-perl all 0.17029-2 [29.0 kB] Get: 204 http://deb.debian.org/debian trixie/main armhf libparse-debcontrol-perl all 2.005-6 [21.6 kB] Get: 205 http://deb.debian.org/debian trixie/main armhf libsoftware-copyright-perl all 0.012-2 [18.0 kB] Get: 206 http://deb.debian.org/debian trixie/main armhf libalgorithm-c3-perl all 0.11-2 [10.8 kB] Get: 207 http://deb.debian.org/debian trixie/main armhf libclass-c3-perl all 0.35-2 [21.0 kB] Get: 208 http://deb.debian.org/debian trixie/main armhf libmro-compat-perl all 0.15-2 [11.8 kB] Get: 209 http://deb.debian.org/debian trixie/main armhf libdata-section-perl all 0.200008-1 [13.1 kB] Get: 210 http://deb.debian.org/debian trixie/main armhf libtext-template-perl all 1.61-1 [54.4 kB] Get: 211 http://deb.debian.org/debian trixie/main armhf libsoftware-license-perl all 0.104006-1 [116 kB] Get: 212 http://deb.debian.org/debian trixie/main armhf libsoftware-licensemoreutils-perl all 1.009-1 [22.0 kB] Get: 213 http://deb.debian.org/debian trixie/main armhf libsort-versions-perl all 1.62-3 [8928 B] Get: 214 http://deb.debian.org/debian trixie/main armhf libtext-reform-perl all 1.20-5 [36.0 kB] Get: 215 http://deb.debian.org/debian trixie/main armhf libtext-autoformat-perl all 1.750000-2 [35.2 kB] Get: 216 http://deb.debian.org/debian trixie/main armhf libtext-levenshtein-damerau-perl all 0.41-3 [12.3 kB] Get: 217 http://deb.debian.org/debian trixie/main armhf libtoml-tiny-perl all 0.18-1 [23.0 kB] Get: 218 http://deb.debian.org/debian trixie/main armhf libclass-inspector-perl all 1.36-3 [17.5 kB] Get: 219 http://deb.debian.org/debian trixie/main armhf libfile-sharedir-perl all 1.118-3 [16.0 kB] Get: 220 http://deb.debian.org/debian trixie/main armhf libindirect-perl armhf 0.39-2+b3 [25.8 kB] Get: 221 http://deb.debian.org/debian trixie/main armhf libxs-parse-keyword-perl armhf 0.46-1 [62.0 kB] Get: 222 http://deb.debian.org/debian trixie/main armhf libxs-parse-sublike-perl armhf 0.28-1 [44.1 kB] Get: 223 http://deb.debian.org/debian trixie/main armhf libobject-pad-perl armhf 0.814-1 [114 kB] Get: 224 http://deb.debian.org/debian trixie/main armhf libfeature-compat-class-perl all 0.07-1 [11.5 kB] Get: 225 http://deb.debian.org/debian trixie/main armhf libsyntax-keyword-try-perl armhf 0.30-1 [26.2 kB] Get: 226 http://deb.debian.org/debian trixie/main armhf libfeature-compat-try-perl all 0.05-1 [10.4 kB] Get: 227 http://deb.debian.org/debian trixie/main armhf libio-interactive-perl all 1.025-1 [11.4 kB] Get: 228 http://deb.debian.org/debian trixie/main armhf liblog-any-perl all 1.717-1 [78.9 kB] Get: 229 http://deb.debian.org/debian trixie/main armhf liblog-any-adapter-screen-perl all 0.141-1 [14.0 kB] Get: 230 http://deb.debian.org/debian trixie/main armhf libsub-exporter-progressive-perl all 0.001013-3 [7496 B] Get: 231 http://deb.debian.org/debian trixie/main armhf libvariable-magic-perl armhf 0.64-1 [42.2 kB] Get: 232 http://deb.debian.org/debian trixie/main armhf libb-hooks-endofscope-perl all 0.28-1 [17.5 kB] Get: 233 http://deb.debian.org/debian trixie/main armhf libsub-identify-perl armhf 0.14-3+b2 [10.8 kB] Get: 234 http://deb.debian.org/debian trixie/main armhf libsub-name-perl armhf 0.27-1+b2 [12.0 kB] Get: 235 http://deb.debian.org/debian trixie/main armhf libnamespace-clean-perl all 0.27-2 [17.8 kB] Get: 236 http://deb.debian.org/debian trixie/main armhf libnumber-compare-perl all 0.03-3 [6332 B] Get: 237 http://deb.debian.org/debian trixie/main armhf libtext-glob-perl all 0.11-3 [7676 B] Get: 238 http://deb.debian.org/debian trixie/main armhf libpath-iterator-rule-perl all 1.015-2 [41.7 kB] Get: 239 http://deb.debian.org/debian trixie/main armhf libpod-parser-perl all 1.67-1 [94.1 kB] Get: 240 http://deb.debian.org/debian trixie/main armhf libpod-constants-perl all 0.19-2 [17.3 kB] Get: 241 http://deb.debian.org/debian trixie/main armhf libset-intspan-perl all 1.19-3 [25.3 kB] Get: 242 http://deb.debian.org/debian trixie/main armhf libstring-copyright-perl all 0.003014-1 [23.4 kB] Get: 243 http://deb.debian.org/debian trixie/main armhf libstring-escape-perl all 2010.002-3 [18.7 kB] Get: 244 http://deb.debian.org/debian trixie/main armhf libregexp-pattern-license-perl all 3.11.2-1 [94.6 kB] Get: 245 http://deb.debian.org/debian trixie/main armhf libregexp-pattern-perl all 0.2.14-2 [18.7 kB] Get: 246 http://deb.debian.org/debian trixie/main armhf libstring-license-perl all 0.0.11-1 [34.7 kB] Get: 247 http://deb.debian.org/debian trixie/main armhf licensecheck all 3.3.9-1 [50.1 kB] Get: 248 http://deb.debian.org/debian trixie/main armhf diffstat armhf 1.66-1 [32.0 kB] Get: 249 http://deb.debian.org/debian trixie/main armhf libassuan9 armhf 3.0.1-2 [53.7 kB] Get: 250 http://deb.debian.org/debian trixie/main armhf gpgconf armhf 2.2.44-1 [104 kB] Get: 251 http://deb.debian.org/debian trixie/main armhf gpg armhf 2.2.44-1 [461 kB] Get: 252 http://deb.debian.org/debian trixie/main armhf iso-codes all 4.17.0-1 [3055 kB] Get: 253 http://deb.debian.org/debian trixie/main armhf libberkeleydb-perl armhf 0.64-2+b3 [109 kB] Get: 254 http://deb.debian.org/debian trixie/main armhf libclass-xsaccessor-perl armhf 1.19-4+b3 [35.4 kB] Get: 255 http://deb.debian.org/debian trixie/main armhf libconfig-tiny-perl all 2.30-1 [18.9 kB] Get: 256 http://deb.debian.org/debian trixie/main armhf libconst-fast-perl all 0.014-2 [8792 B] Get: 257 http://deb.debian.org/debian trixie/main armhf libcpanel-json-xs-perl armhf 4.38-1 [127 kB] Get: 258 http://deb.debian.org/debian trixie/main armhf libaliased-perl all 0.34-3 [13.5 kB] Get: 259 http://deb.debian.org/debian trixie/main armhf libclass-data-inheritable-perl all 0.08-3 [8588 B] Get: 260 http://deb.debian.org/debian trixie/main armhf libdevel-stacktrace-perl all 2.0500-1 [26.4 kB] Get: 261 http://deb.debian.org/debian trixie/main armhf libexception-class-perl all 1.45-1 [34.6 kB] Get: 262 http://deb.debian.org/debian trixie/main armhf libiterator-perl all 0.03+ds1-2 [18.8 kB] Get: 263 http://deb.debian.org/debian trixie/main armhf libiterator-util-perl all 0.02+ds1-2 [14.0 kB] Get: 264 http://deb.debian.org/debian trixie/main armhf libdata-dpath-perl all 0.60-1 [41.8 kB] Get: 265 http://deb.debian.org/debian trixie/main armhf libnet-domain-tld-perl all 1.75-4 [31.5 kB] Get: 266 http://deb.debian.org/debian trixie/main armhf libdata-validate-domain-perl all 0.15-1 [11.9 kB] Get: 267 http://deb.debian.org/debian trixie/main armhf libnet-ipv6addr-perl all 1.02-1 [21.7 kB] Get: 268 http://deb.debian.org/debian trixie/main armhf libnet-netmask-perl all 2.0002-2 [28.6 kB] Get: 269 http://deb.debian.org/debian trixie/main armhf libnetaddr-ip-perl armhf 4.079+dfsg-2+b3 [96.9 kB] Get: 270 http://deb.debian.org/debian trixie/main armhf libdata-validate-ip-perl all 0.31-1 [20.6 kB] Get: 271 http://deb.debian.org/debian trixie/main armhf libdata-validate-uri-perl all 0.07-3 [11.0 kB] Get: 272 http://deb.debian.org/debian trixie/main armhf libdevel-size-perl armhf 0.84-1 [23.2 kB] Get: 273 http://deb.debian.org/debian trixie/main armhf libemail-address-xs-perl armhf 1.05-1+b3 [26.5 kB] Get: 274 http://deb.debian.org/debian trixie/main armhf libipc-system-simple-perl all 1.30-2 [26.8 kB] Get: 275 http://deb.debian.org/debian trixie/main armhf libfile-basedir-perl all 0.09-2 [15.1 kB] Get: 276 http://deb.debian.org/debian trixie/main armhf libfile-find-rule-perl all 0.34-3 [26.6 kB] Get: 277 http://deb.debian.org/debian trixie/main armhf libio-string-perl all 1.08-4 [12.1 kB] Get: 278 http://deb.debian.org/debian trixie/main armhf libfont-ttf-perl all 1.06-2 [318 kB] Get: 279 http://deb.debian.org/debian trixie/main armhf libhtml-html5-entities-perl all 0.004-3 [21.0 kB] Get: 280 http://deb.debian.org/debian trixie/main armhf libhtml-tokeparser-simple-perl all 3.16-4 [39.1 kB] Get: 281 http://deb.debian.org/debian trixie/main armhf libipc-run3-perl all 0.049-1 [31.5 kB] Get: 282 http://deb.debian.org/debian trixie/main armhf libjson-maybexs-perl all 1.004008-1 [12.9 kB] Get: 283 http://deb.debian.org/debian trixie/main armhf liblist-compare-perl all 0.55-2 [65.7 kB] Get: 284 http://deb.debian.org/debian trixie/main armhf liblist-someutils-perl all 0.59-1 [37.1 kB] Get: 285 http://deb.debian.org/debian trixie/main armhf liblist-utilsby-perl all 0.12-2 [15.5 kB] Get: 286 http://deb.debian.org/debian trixie/main armhf libmldbm-perl all 2.05-4 [16.8 kB] Get: 287 http://deb.debian.org/debian trixie/main armhf libclass-method-modifiers-perl all 2.15-1 [18.0 kB] Get: 288 http://deb.debian.org/debian trixie/main armhf libimport-into-perl all 1.002005-2 [11.3 kB] Get: 289 http://deb.debian.org/debian trixie/main armhf librole-tiny-perl all 2.002004-1 [21.4 kB] Get: 290 http://deb.debian.org/debian trixie/main armhf libsub-quote-perl all 2.006008-1 [21.8 kB] Get: 291 http://deb.debian.org/debian trixie/main armhf libmoo-perl all 2.005005-1 [58.0 kB] Get: 292 http://deb.debian.org/debian trixie/main armhf libstrictures-perl all 2.000006-1 [18.6 kB] Get: 293 http://deb.debian.org/debian trixie/main armhf libmoox-aliases-perl all 0.001006-2 [7156 B] Get: 294 http://deb.debian.org/debian trixie/main armhf libperlio-gzip-perl armhf 0.20-1+b3 [16.4 kB] Get: 295 http://deb.debian.org/debian trixie/main armhf libperlio-utf8-strict-perl armhf 0.010-1+b2 [10.9 kB] Get: 296 http://deb.debian.org/debian trixie/main armhf libproc-processtable-perl armhf 0.636-1+b2 [42.0 kB] Get: 297 http://deb.debian.org/debian trixie/main armhf libregexp-wildcards-perl all 1.05-3 [14.1 kB] Get: 298 http://deb.debian.org/debian trixie/main armhf libsereal-decoder-perl armhf 5.004+ds-1+b2 [92.5 kB] Get: 299 http://deb.debian.org/debian trixie/main armhf libsereal-encoder-perl armhf 5.004+ds-1+b2 [95.0 kB] Get: 300 http://deb.debian.org/debian trixie/main armhf libterm-readkey-perl armhf 2.38-2+b3 [23.7 kB] Get: 301 http://deb.debian.org/debian trixie/main armhf libtext-levenshteinxs-perl armhf 0.03-5+b3 [8120 B] Get: 302 http://deb.debian.org/debian trixie/main armhf libmarkdown2 armhf 2.2.7-2+b1 [28.8 kB] Get: 303 http://deb.debian.org/debian trixie/main armhf libtext-markdown-discount-perl armhf 0.16-1+b2 [12.7 kB] Get: 304 http://deb.debian.org/debian trixie/main armhf libdata-messagepack-perl armhf 1.02-1+b3 [30.6 kB] Get: 305 http://deb.debian.org/debian trixie/main armhf libtext-xslate-perl armhf 3.5.9-2 [169 kB] Get: 306 http://deb.debian.org/debian trixie/main armhf libtime-duration-perl all 1.21-2 [13.1 kB] Get: 307 http://deb.debian.org/debian trixie/main armhf libtime-moment-perl armhf 0.44-2+b3 [72.0 kB] Get: 308 http://deb.debian.org/debian trixie/main armhf libunicode-utf8-perl armhf 0.62-2+b2 [19.2 kB] Get: 309 http://deb.debian.org/debian trixie/main armhf libcgi-pm-perl all 4.66-1 [217 kB] Get: 310 http://deb.debian.org/debian trixie/main armhf libhtml-form-perl all 6.11-2 [31.4 kB] Get: 311 http://deb.debian.org/debian trixie/main armhf libwww-mechanize-perl all 2.19-1 [114 kB] Get: 312 http://deb.debian.org/debian trixie/main armhf libxml-namespacesupport-perl all 1.12-2 [15.1 kB] Get: 313 http://deb.debian.org/debian trixie/main armhf libxml-sax-base-perl all 1.09-3 [20.6 kB] Get: 314 http://deb.debian.org/debian trixie/main armhf libxml-sax-perl all 1.02+dfsg-3 [59.4 kB] Get: 315 http://deb.debian.org/debian trixie/main armhf libxml-libxml-perl armhf 2.0207+dfsg+really+2.0134-5 [298 kB] Get: 316 http://deb.debian.org/debian trixie/main armhf liblz1 armhf 1.15~pre1-1 [36.5 kB] Get: 317 http://deb.debian.org/debian trixie/main armhf plzip armhf 1.11-2 [58.0 kB] Get: 318 http://deb.debian.org/debian trixie/main armhf liblzo2-2 armhf 2.10-3 [47.6 kB] Get: 319 http://deb.debian.org/debian trixie/main armhf lzop armhf 1.04-2 [82.2 kB] Get: 320 http://deb.debian.org/debian trixie/main armhf patchutils armhf 0.4.2-1 [72.5 kB] Get: 321 http://deb.debian.org/debian trixie/main armhf t1utils armhf 1.41-4 [54.7 kB] Get: 322 http://deb.debian.org/debian trixie/main armhf unzip armhf 6.0-28 [152 kB] Get: 323 http://deb.debian.org/debian trixie/main armhf lintian all 2.119.0 [1056 kB] Get: 324 http://deb.debian.org/debian trixie/main armhf libconfig-model-dpkg-perl all 3.005 [173 kB] Get: 325 http://deb.debian.org/debian trixie/main armhf libconvert-binhex-perl all 1.125-3 [27.4 kB] Get: 326 http://deb.debian.org/debian trixie/main armhf libnet-smtp-ssl-perl all 1.04-2 [6548 B] Get: 327 http://deb.debian.org/debian trixie/main armhf libmailtools-perl all 2.21-3 [88.6 kB] Get: 328 http://deb.debian.org/debian trixie/main armhf libmime-tools-perl all 5.515-1 [203 kB] Get: 329 http://deb.debian.org/debian trixie/main armhf libsuitesparseconfig7 armhf 1:7.8.2+dfsg-2 [22.7 kB] Get: 330 http://deb.debian.org/debian trixie/main armhf libamd3 armhf 1:7.8.2+dfsg-2 [41.5 kB] Get: 331 http://deb.debian.org/debian trixie/main armhf libblas3 armhf 3.12.0-3 [108 kB] Get: 332 http://deb.debian.org/debian trixie/main armhf libgfortran5 armhf 14.2.0-6 [263 kB] Get: 333 http://deb.debian.org/debian trixie/main armhf liblapack3 armhf 3.12.0-3 [1803 kB] Get: 334 http://deb.debian.org/debian trixie/main armhf libarpack2t64 armhf 3.9.1-1.1+b1 [85.0 kB] Get: 335 http://deb.debian.org/debian trixie/main armhf libccolamd3 armhf 1:7.8.2+dfsg-2 [40.4 kB] Get: 336 http://deb.debian.org/debian trixie/main armhf libcamd3 armhf 1:7.8.2+dfsg-2 [38.6 kB] Get: 337 http://deb.debian.org/debian trixie/main armhf libcolamd3 armhf 1:7.8.2+dfsg-2 [32.9 kB] Get: 338 http://deb.debian.org/debian trixie/main armhf libcholmod5 armhf 1:7.8.2+dfsg-2 [616 kB] Get: 339 http://deb.debian.org/debian trixie/main armhf libcxsparse4 armhf 1:7.8.2+dfsg-2 [80.0 kB] Get: 340 http://deb.debian.org/debian trixie/main armhf libfftw3-double3 armhf 3.3.10-1+b3 [331 kB] Get: 341 http://deb.debian.org/debian trixie/main armhf libfftw3-single3 armhf 3.3.10-1+b3 [520 kB] Get: 342 http://deb.debian.org/debian trixie/main armhf libxfixes3 armhf 1:6.0.0-2+b1 [18.6 kB] Get: 343 http://deb.debian.org/debian trixie/main armhf libxcursor1 armhf 1:1.2.2-1 [34.1 kB] Get: 344 http://deb.debian.org/debian trixie/main armhf libxft2 armhf 2.3.6-1+b1 [46.4 kB] Get: 345 http://deb.debian.org/debian trixie/main armhf libxinerama1 armhf 2:1.1.4-3+b1 [15.6 kB] Get: 346 http://deb.debian.org/debian trixie/main armhf libfltk1.3t64 armhf 1.3.8-6.1 [492 kB] Get: 347 http://deb.debian.org/debian trixie/main armhf libglvnd0 armhf 1.7.0-1+b1 [52.2 kB] Get: 348 http://deb.debian.org/debian trixie/main armhf libdrm-common all 2.4.123-1 [8084 B] Get: 349 http://deb.debian.org/debian trixie/main armhf libdrm2 armhf 2.4.123-1 [34.1 kB] Get: 350 http://deb.debian.org/debian trixie/main armhf libglapi-mesa armhf 24.2.4-1 [44.7 kB] Get: 351 http://deb.debian.org/debian trixie/main armhf libx11-xcb1 armhf 2:1.8.7-1+b1 [232 kB] Get: 352 http://deb.debian.org/debian trixie/main armhf libxcb-dri2-0 armhf 1.17.0-2 [106 kB] Get: 353 http://deb.debian.org/debian trixie/main armhf libxcb-dri3-0 armhf 1.17.0-2 [106 kB] Get: 354 http://deb.debian.org/debian trixie/main armhf libxcb-glx0 armhf 1.17.0-2 [120 kB] Get: 355 http://deb.debian.org/debian trixie/main armhf libxcb-present0 armhf 1.17.0-2 [105 kB] Get: 356 http://deb.debian.org/debian trixie/main armhf libxcb-randr0 armhf 1.17.0-2 [115 kB] Get: 357 http://deb.debian.org/debian trixie/main armhf libxcb-sync1 armhf 1.17.0-2 [108 kB] Get: 358 http://deb.debian.org/debian trixie/main armhf libxcb-xfixes0 armhf 1.17.0-2 [109 kB] Get: 359 http://deb.debian.org/debian trixie/main armhf libxshmfence1 armhf 1.3-1+b1 [8628 B] Get: 360 http://deb.debian.org/debian trixie/main armhf libxxf86vm1 armhf 1:1.1.4-1+b3 [18.1 kB] Get: 361 http://deb.debian.org/debian trixie/main armhf libdrm-amdgpu1 armhf 2.4.123-1 [20.4 kB] Get: 362 http://deb.debian.org/debian trixie/main armhf libdrm-radeon1 armhf 2.4.123-1 [19.6 kB] Get: 363 http://deb.debian.org/debian trixie/main armhf libz3-4 armhf 4.8.12-3.1+b2 [6324 kB] Get: 364 http://deb.debian.org/debian trixie/main armhf libllvm19 armhf 1:19.1.1-1 [23.8 MB] Get: 365 http://deb.debian.org/debian trixie/main armhf libsensors-config all 1:3.6.0-10 [14.6 kB] Get: 366 http://deb.debian.org/debian trixie/main armhf libsensors5 armhf 1:3.6.0-10 [32.0 kB] Get: 367 http://deb.debian.org/debian trixie/main armhf mesa-libgallium armhf 24.2.4-1 [7085 kB] Get: 368 http://deb.debian.org/debian trixie/main armhf libvulkan1 armhf 1.3.290.0-1 [103 kB] Get: 369 http://deb.debian.org/debian trixie/main armhf libwayland-server0 armhf 1.23.0-1 [27.6 kB] Get: 370 http://deb.debian.org/debian trixie/main armhf libgbm1 armhf 24.2.4-1 [38.9 kB] Get: 371 http://deb.debian.org/debian trixie/main armhf libgl1-mesa-dri armhf 24.2.4-1 [41.0 kB] Get: 372 http://deb.debian.org/debian trixie/main armhf libglx-mesa0 armhf 24.2.4-1 [132 kB] Get: 373 http://deb.debian.org/debian trixie/main armhf libglx0 armhf 1.7.0-1+b1 [32.6 kB] Get: 374 http://deb.debian.org/debian trixie/main armhf libgl1 armhf 1.7.0-1+b1 [91.1 kB] Get: 375 http://deb.debian.org/debian trixie/main armhf libfltk-gl1.3t64 armhf 1.3.8-6.1 [56.3 kB] Get: 376 http://deb.debian.org/debian trixie/main armhf libgl2ps1.4 armhf 1.4.2+dfsg1-2 [36.5 kB] Get: 377 http://deb.debian.org/debian trixie/main armhf libltdl7 armhf 2.4.7-7+b1 [390 kB] Get: 378 http://deb.debian.org/debian trixie/main armhf libglpk40 armhf 5.0-1+b1 [330 kB] Get: 379 http://deb.debian.org/debian trixie/main armhf libopengl0 armhf 1.7.0-1+b1 [31.9 kB] Get: 380 http://deb.debian.org/debian trixie/main armhf libglu1-mesa armhf 9.0.2-1.1+b1 [139 kB] Get: 381 http://deb.debian.org/debian trixie/main armhf libgif7 armhf 5.2.2-1 [41.2 kB] Get: 382 http://deb.debian.org/debian trixie/main armhf libhwy1t64 armhf 1.2.0-2 [38.7 kB] Get: 383 http://deb.debian.org/debian trixie/main armhf liblcms2-2 armhf 2.16-2 [131 kB] Get: 384 http://deb.debian.org/debian trixie/main armhf libimath-3-1-29t64 armhf 3.1.11-2+b1 [38.2 kB] Get: 385 http://deb.debian.org/debian trixie/main armhf libopenexr-3-1-30 armhf 3.1.5-5.1+b2 [843 kB] Get: 386 http://deb.debian.org/debian trixie/main armhf libjxl0.9 armhf 0.9.2-10 [739 kB] Get: 387 http://deb.debian.org/debian trixie/main armhf libwmflite-0.2-7 armhf 0.2.13-1.1+b2 [69.3 kB] Get: 388 http://deb.debian.org/debian trixie/main armhf libgraphicsmagick-q16-3t64 armhf 1.4+really1.3.45-1 [1114 kB] Get: 389 http://deb.debian.org/debian trixie/main armhf libgraphicsmagick++-q16-12t64 armhf 1.4+really1.3.45-1 [109 kB] Get: 390 http://deb.debian.org/debian trixie/main armhf libcurl4t64 armhf 8.10.1-2 [303 kB] Get: 391 http://deb.debian.org/debian trixie/main armhf libaec0 armhf 1.1.3-1 [21.5 kB] Get: 392 http://deb.debian.org/debian trixie/main armhf libsz2 armhf 1.1.3-1 [7724 B] Get: 393 http://deb.debian.org/debian trixie/main armhf libhdf5-103-1t64 armhf 1.10.10+repack-4 [1196 kB] Get: 394 http://deb.debian.org/debian trixie/main armhf libasound2-data all 1.2.12-1 [21.0 kB] Get: 395 http://deb.debian.org/debian trixie/main armhf libasound2t64 armhf 1.2.12-1 [316 kB] Get: 396 http://deb.debian.org/debian trixie/main armhf libopus0 armhf 1.5.2-2 [2801 kB] Get: 397 http://deb.debian.org/debian trixie/main armhf libsamplerate0 armhf 0.2.2-4+b1 [947 kB] Get: 398 http://deb.debian.org/debian trixie/main armhf libjack-jackd2-0 armhf 1.9.22~dfsg-3 [239 kB] Get: 399 http://deb.debian.org/debian trixie/main armhf libportaudio2 armhf 19.6.0-1.2+b2 [56.7 kB] Get: 400 http://deb.debian.org/debian trixie/main armhf libqhull-r8.0 armhf 2020.2-6+b1 [219 kB] Get: 401 http://deb.debian.org/debian trixie/main armhf libqrupdate1 armhf 1.1.5-1 [29.6 kB] Get: 402 http://deb.debian.org/debian trixie/main armhf libqscintilla2-qt6-l10n all 2.14.1+dfsg-1 [105 kB] Get: 403 http://deb.debian.org/debian trixie/main armhf libb2-1 armhf 0.98.1-1.1+b1 [21.9 kB] Get: 404 http://deb.debian.org/debian trixie/main armhf libdouble-conversion3 armhf 3.3.0-1+b1 [38.5 kB] Get: 405 http://deb.debian.org/debian trixie/main armhf libpcre2-16-0 armhf 10.42-4+b1 [212 kB] Get: 406 http://deb.debian.org/debian trixie/main armhf libqt6core6t64 armhf 6.6.2+dfsg-12 [1512 kB] Get: 407 http://deb.debian.org/debian trixie/main armhf libwayland-client0 armhf 1.23.0-1 [20.9 kB] Get: 408 http://deb.debian.org/debian trixie/main armhf libegl-mesa0 armhf 24.2.4-1 [110 kB] Get: 409 http://deb.debian.org/debian trixie/main armhf libegl1 armhf 1.7.0-1+b1 [29.1 kB] Get: 410 http://deb.debian.org/debian trixie/main armhf x11-common all 1:7.7+23.1 [216 kB] Get: 411 http://deb.debian.org/debian trixie/main armhf libice6 armhf 2:1.0.10-1+b1 [50.1 kB] Get: 412 http://deb.debian.org/debian trixie/main armhf libevdev2 armhf 1.13.3+dfsg-1 [26.2 kB] Get: 413 http://deb.debian.org/debian trixie/main armhf libmtdev1t64 armhf 1.1.6-1.2 [21.0 kB] Get: 414 http://deb.debian.org/debian trixie/main armhf libgudev-1.0-0 armhf 238-5 [12.6 kB] Get: 415 http://deb.debian.org/debian trixie/main armhf libwacom-common all 2.13.0-1 [98.0 kB] Get: 416 http://deb.debian.org/debian trixie/main armhf libwacom9 armhf 2.13.0-1 [20.8 kB] Get: 417 http://deb.debian.org/debian trixie/main armhf libinput-bin armhf 1.26.2-1 [23.6 kB] Get: 418 http://deb.debian.org/debian trixie/main armhf libinput10 armhf 1.26.2-1 [112 kB] Get: 419 http://deb.debian.org/debian trixie/main armhf libmd4c0 armhf 0.5.2-2+b1 [43.8 kB] Get: 420 http://deb.debian.org/debian trixie/main armhf libdbus-1-3 armhf 1.14.10-4+b1 [181 kB] Get: 421 http://deb.debian.org/debian trixie/main armhf libqt6dbus6 armhf 6.6.2+dfsg-12 [226 kB] Get: 422 http://deb.debian.org/debian trixie/main armhf libsm6 armhf 2:1.2.3-1+b1 [31.7 kB] Get: 423 http://deb.debian.org/debian trixie/main armhf libts0t64 armhf 1.22-1.1 [57.6 kB] Get: 424 http://deb.debian.org/debian trixie/main armhf libxcb-util1 armhf 0.4.0-1+b2 [21.4 kB] Get: 425 http://deb.debian.org/debian trixie/main armhf libxcb-image0 armhf 0.4.0-2+b1 [21.1 kB] Get: 426 http://deb.debian.org/debian trixie/main armhf libxcb-render-util0 armhf 0.3.9-1+b2 [16.6 kB] Get: 427 http://deb.debian.org/debian trixie/main armhf libxcb-cursor0 armhf 0.1.4-1+b1 [16.2 kB] Get: 428 http://deb.debian.org/debian trixie/main armhf libxcb-icccm4 armhf 0.4.1-1.2 [25.3 kB] Get: 429 http://deb.debian.org/debian trixie/main armhf libxcb-keysyms1 armhf 0.4.0-1+b3 [15.1 kB] Get: 430 http://deb.debian.org/debian trixie/main armhf libxcb-shape0 armhf 1.17.0-2 [105 kB] Get: 431 http://deb.debian.org/debian trixie/main armhf libxcb-xinput0 armhf 1.17.0-2 [127 kB] Get: 432 http://deb.debian.org/debian trixie/main armhf libxcb-xkb1 armhf 1.17.0-2 [126 kB] Get: 433 http://deb.debian.org/debian trixie/main armhf xkb-data all 2.42-1 [790 kB] Get: 434 http://deb.debian.org/debian trixie/main armhf libxkbcommon0 armhf 1.6.0-1+b1 [96.9 kB] Get: 435 http://deb.debian.org/debian trixie/main armhf libxkbcommon-x11-0 armhf 1.6.0-1+b1 [14.5 kB] Get: 436 http://deb.debian.org/debian trixie/main armhf libqt6gui6 armhf 6.6.2+dfsg-12 [2581 kB] Get: 437 http://deb.debian.org/debian trixie/main armhf libavahi-common-data armhf 0.8-13+b2 [112 kB] Get: 438 http://deb.debian.org/debian trixie/main armhf libavahi-common3 armhf 0.8-13+b2 [40.2 kB] Get: 439 http://deb.debian.org/debian trixie/main armhf libavahi-client3 armhf 0.8-13+b2 [43.4 kB] Get: 440 http://deb.debian.org/debian trixie/main armhf libcups2t64 armhf 2.4.10-2 [216 kB] Get: 441 http://deb.debian.org/debian trixie/main armhf libqt6widgets6 armhf 6.6.2+dfsg-12 [2242 kB] Get: 442 http://deb.debian.org/debian trixie/main armhf libqt6printsupport6 armhf 6.6.2+dfsg-12 [198 kB] Get: 443 http://deb.debian.org/debian trixie/main armhf libqscintilla2-qt6-15 armhf 2.14.1+dfsg-1+b3 [965 kB] Get: 444 http://deb.debian.org/debian trixie/main armhf libqt6core5compat6 armhf 6.6.2-2 [116 kB] Get: 445 http://deb.debian.org/debian trixie/main armhf libqt6sql6 armhf 6.6.2+dfsg-12 [123 kB] Get: 446 http://deb.debian.org/debian trixie/main armhf libqt6help6 armhf 6.6.2-4 [158 kB] Get: 447 http://deb.debian.org/debian trixie/main armhf libduktape207 armhf 2.7.0-2+b1 [114 kB] Get: 448 http://deb.debian.org/debian trixie/main armhf libproxy1v5 armhf 0.5.8-1 [23.5 kB] Get: 449 http://deb.debian.org/debian trixie/main armhf libqt6network6 armhf 6.6.2+dfsg-12 [619 kB] Get: 450 http://deb.debian.org/debian trixie/main armhf libqt6opengl6 armhf 6.6.2+dfsg-12 [356 kB] Get: 451 http://deb.debian.org/debian trixie/main armhf libqt6openglwidgets6 armhf 6.6.2+dfsg-12 [46.7 kB] Get: 452 http://deb.debian.org/debian trixie/main armhf libqt6xml6 armhf 6.6.2+dfsg-12 [75.3 kB] Get: 453 http://deb.debian.org/debian trixie/main armhf libogg0 armhf 1.3.5-3+b1 [21.9 kB] Get: 454 http://deb.debian.org/debian trixie/main armhf libflac12t64 armhf 1.4.3+ds-2.1 [154 kB] Get: 455 http://deb.debian.org/debian trixie/main armhf libmp3lame0 armhf 3.100-6+b2 [344 kB] Get: 456 http://deb.debian.org/debian trixie/main armhf libmpg123-0t64 armhf 1.32.7-1 [134 kB] Get: 457 http://deb.debian.org/debian trixie/main armhf libvorbis0a armhf 1.3.7-2 [79.0 kB] Get: 458 http://deb.debian.org/debian trixie/main armhf libvorbisenc2 armhf 1.3.7-2 [69.3 kB] Get: 459 http://deb.debian.org/debian trixie/main armhf libsndfile1 armhf 1.2.2-1+b2 [181 kB] Get: 460 http://deb.debian.org/debian trixie/main armhf libspqr4 armhf 1:7.8.2+dfsg-2 [132 kB] Get: 461 http://deb.debian.org/debian trixie/main armhf libsundials-ida6 armhf 6.4.1+dfsg1-3+b7 [129 kB] Get: 462 http://deb.debian.org/debian trixie/main armhf libbtf2 armhf 1:7.8.2+dfsg-2 [25.0 kB] Get: 463 http://deb.debian.org/debian trixie/main armhf libklu2 armhf 1:7.8.2+dfsg-2 [83.8 kB] Get: 464 http://deb.debian.org/debian trixie/main armhf libfftw3-mpi3 armhf 3.3.10-1+b3 [45.0 kB] Get: 465 http://deb.debian.org/debian trixie/main armhf libhwloc15 armhf 2.11.2-1 [134 kB] Get: 466 http://deb.debian.org/debian trixie/main armhf libmpich12 armhf 4.2.0-14 [1498 kB] Get: 467 http://deb.debian.org/debian trixie/main armhf libhdf5-mpich-103-1t64 armhf 1.10.10+repack-4 [1251 kB] Get: 468 http://deb.debian.org/debian trixie/main armhf libcombblas2.0.0t64 armhf 2.0.0-3.1+b2 [256 kB] Get: 469 http://deb.debian.org/debian trixie/main armhf libmetis5 armhf 5.1.0.dfsg-7+b1 [139 kB] Get: 470 http://deb.debian.org/debian trixie/main armhf libptscotch-7.0 armhf 7.0.5-1 [647 kB] Get: 471 http://deb.debian.org/debian trixie/main armhf libsuperlu-dist8 armhf 8.2.1+dfsg1-2 [473 kB] Get: 472 http://deb.debian.org/debian trixie/main armhf libhypre-2.29.0 armhf 2.29.0-2+b1 [1218 kB] Get: 473 http://deb.debian.org/debian trixie/main armhf hwloc-nox armhf 2.11.2-1 [201 kB] Get: 474 http://deb.debian.org/debian trixie/main armhf libslurm41t64 armhf 24.05.2-1 [682 kB] Get: 475 http://deb.debian.org/debian trixie/main armhf mpich armhf 4.2.0-14 [223 kB] Get: 476 http://deb.debian.org/debian trixie/main armhf mpi-default-bin armhf 1.17 [2368 B] Get: 477 http://deb.debian.org/debian trixie/main armhf libscalapack-mpich2.2 armhf 2.2.1-5 [1258 kB] Get: 478 http://deb.debian.org/debian trixie/main armhf libmumps-5.6t64 armhf 5.6.2-2.1+b2 [1685 kB] Get: 479 http://deb.debian.org/debian trixie/main armhf libsuperlu6 armhf 6.0.1+dfsg1-1+b1 [139 kB] Get: 480 http://deb.debian.org/debian trixie/main armhf libumfpack6 armhf 1:7.8.2+dfsg-2 [274 kB] Get: 481 http://deb.debian.org/debian trixie/main armhf ocl-icd-libopencl1 armhf 2.3.2-1+b1 [37.3 kB] Get: 482 http://deb.debian.org/debian trixie/main armhf libpetsc-real3.20 armhf 3.20.6+dfsg1-3 [5700 kB] Get: 483 http://deb.debian.org/debian trixie/main armhf libsundials-nvecparallel-petsc6 armhf 6.4.1+dfsg1-3+b7 [55.8 kB] Get: 484 http://deb.debian.org/debian trixie/main armhf libsundials-sunmatrix4 armhf 6.4.1+dfsg1-3+b7 [90.7 kB] Get: 485 http://deb.debian.org/debian trixie/main armhf libsundials-sunlinsol3 armhf 6.4.1+dfsg1-3+b7 [162 kB] Get: 486 http://deb.debian.org/debian trixie/main armhf libtext-unidecode-perl all 1.30-3 [101 kB] Get: 487 http://deb.debian.org/debian trixie/main armhf texinfo-lib armhf 7.1.1-1 [209 kB] Get: 488 http://deb.debian.org/debian trixie/main armhf tex-common all 6.18 [32.5 kB] Get: 489 http://deb.debian.org/debian trixie/main armhf texinfo all 7.1.1-1 [1753 kB] Get: 490 http://deb.debian.org/debian trixie/main armhf octave-common all 9.2.0-3 [6591 kB] Get: 491 http://deb.debian.org/debian trixie/main armhf octave armhf 9.2.0-3 [8476 kB] Get: 492 http://deb.debian.org/debian trixie/main armhf libncurses6 armhf 6.5-2 [81.8 kB] Get: 493 http://deb.debian.org/debian trixie/main armhf libncurses-dev armhf 6.5-2 [309 kB] Get: 494 http://deb.debian.org/debian trixie/main armhf libreadline-dev armhf 8.2-5 [138 kB] Get: 495 http://deb.debian.org/debian trixie/main armhf libhdf5-fortran-102t64 armhf 1.10.10+repack-4 [78.5 kB] Get: 496 http://deb.debian.org/debian trixie/main armhf libhdf5-hl-100t64 armhf 1.10.10+repack-4 [62.3 kB] Get: 497 http://deb.debian.org/debian trixie/main armhf libhdf5-hl-fortran-100t64 armhf 1.10.10+repack-4 [35.1 kB] Get: 498 http://deb.debian.org/debian trixie/main armhf libhdf5-cpp-103-1t64 armhf 1.10.10+repack-4 [121 kB] Get: 499 http://deb.debian.org/debian trixie/main armhf libhdf5-hl-cpp-100t64 armhf 1.10.10+repack-4 [21.0 kB] Get: 500 http://deb.debian.org/debian trixie/main armhf zlib1g-dev armhf 1:1.3.dfsg+really1.3.1-1 [904 kB] Get: 501 http://deb.debian.org/debian trixie/main armhf libjpeg62-turbo-dev armhf 1:2.1.5-3 [260 kB] Get: 502 http://deb.debian.org/debian trixie/main armhf libjpeg-dev armhf 1:2.1.5-3 [71.9 kB] Get: 503 http://deb.debian.org/debian trixie/main armhf libaec-dev armhf 1.1.3-1 [18.8 kB] Get: 504 http://deb.debian.org/debian trixie/main armhf libbrotli-dev armhf 1.1.0-2+b4 [292 kB] Get: 505 http://deb.debian.org/debian trixie/main armhf libidn2-dev armhf 2.3.7-2 [119 kB] Get: 506 http://deb.debian.org/debian trixie/main armhf libpkgconf3 armhf 1.8.1-3 [31.7 kB] Get: 507 http://deb.debian.org/debian trixie/main armhf pkgconf-bin armhf 1.8.1-3 [29.1 kB] Get: 508 http://deb.debian.org/debian trixie/main armhf pkgconf armhf 1.8.1-3 [26.1 kB] Get: 509 http://deb.debian.org/debian trixie/main armhf libnghttp2-dev armhf 1.63.0-1 [103 kB] Get: 510 http://deb.debian.org/debian trixie/main armhf libpsl-dev armhf 0.21.2-1.1 [76.6 kB] Get: 511 http://deb.debian.org/debian trixie/main armhf libgmpxx4ldbl armhf 2:6.3.0+dfsg-2+b1 [328 kB] Get: 512 http://deb.debian.org/debian trixie/main armhf libgmp-dev armhf 2:6.3.0+dfsg-2+b1 [591 kB] Get: 513 http://deb.debian.org/debian trixie/main armhf libevent-2.1-7t64 armhf 2.1.12-stable-10 [164 kB] Get: 514 http://deb.debian.org/debian trixie/main armhf libunbound8 armhf 1.22.0-1 [539 kB] Get: 515 http://deb.debian.org/debian trixie/main armhf libgnutls-dane0t64 armhf 3.8.6-2 [432 kB] Get: 516 http://deb.debian.org/debian trixie/main armhf libgnutls-openssl27t64 armhf 3.8.6-2 [432 kB] Get: 517 http://deb.debian.org/debian trixie/main armhf libp11-kit-dev armhf 0.25.5-2 [208 kB] Get: 518 http://deb.debian.org/debian trixie/main armhf libtasn1-6-dev armhf 4.19.0-3+b2 [93.0 kB] Get: 519 http://deb.debian.org/debian trixie/main armhf nettle-dev armhf 3.10-1 [1313 kB] Get: 520 http://deb.debian.org/debian trixie/main armhf libgnutls28-dev armhf 3.8.6-2 [1319 kB] Get: 521 http://deb.debian.org/debian trixie/main armhf librtmp-dev armhf 2.4+20151223.gitfa8646d.1-2+b4 [63.5 kB] Get: 522 http://deb.debian.org/debian trixie/main armhf libssl-dev armhf 3.3.2-1 [2384 kB] Get: 523 http://deb.debian.org/debian trixie/main armhf libssh2-1-dev armhf 1.11.1-1 [378 kB] Get: 524 http://deb.debian.org/debian trixie/main armhf libzstd-dev armhf 1.5.6+dfsg-1 [326 kB] Get: 525 http://deb.debian.org/debian trixie/main armhf libcurl4-openssl-dev armhf 8.10.1-2 [423 kB] Get: 526 http://deb.debian.org/debian trixie/main armhf hdf5-helpers armhf 1.10.10+repack-4 [23.5 kB] Get: 527 http://deb.debian.org/debian trixie/main armhf libhdf5-dev armhf 1.10.10+repack-4 [2616 kB] Get: 528 http://deb.debian.org/debian trixie/main armhf xorg-sgml-doctools all 1:1.11-1.1 [22.1 kB] Get: 529 http://deb.debian.org/debian trixie/main armhf x11proto-dev all 2024.1-1 [603 kB] Get: 530 http://deb.debian.org/debian trixie/main armhf libxau-dev armhf 1:1.0.9-1+b1 [20.8 kB] Get: 531 http://deb.debian.org/debian trixie/main armhf libxdmcp-dev armhf 1:1.1.2-3+b1 [39.3 kB] Get: 532 http://deb.debian.org/debian trixie/main armhf xtrans-dev all 1.4.0-1 [98.7 kB] Get: 533 http://deb.debian.org/debian trixie/main armhf libxcb1-dev armhf 1.17.0-2 [180 kB] Get: 534 http://deb.debian.org/debian trixie/main armhf libx11-dev armhf 2:1.8.7-1+b1 [818 kB] Get: 535 http://deb.debian.org/debian trixie/main armhf libglx-dev armhf 1.7.0-1+b1 [15.8 kB] Get: 536 http://deb.debian.org/debian trixie/main armhf libgl-dev armhf 1.7.0-1+b1 [101 kB] Get: 537 http://deb.debian.org/debian trixie/main armhf libblas-dev armhf 3.12.0-3 [119 kB] Get: 538 http://deb.debian.org/debian trixie/main armhf liblapack-dev armhf 3.12.0-3 [1903 kB] Get: 539 http://deb.debian.org/debian trixie/main armhf libfftw3-bin armhf 3.3.10-1+b3 [42.0 kB] Get: 540 http://deb.debian.org/debian trixie/main armhf libfftw3-dev armhf 3.3.10-1+b3 [834 kB] Get: 541 http://deb.debian.org/debian trixie/main armhf libgfortran-14-dev armhf 14.2.0-6 [315 kB] Get: 542 http://deb.debian.org/debian trixie/main armhf gfortran-14-arm-linux-gnueabihf armhf 14.2.0-6 [8718 kB] Get: 543 http://deb.debian.org/debian trixie/main armhf gfortran-14 armhf 14.2.0-6 [11.9 kB] Get: 544 http://deb.debian.org/debian trixie/main armhf gfortran-arm-linux-gnueabihf armhf 4:14.2.0-1 [1288 B] Get: 545 http://deb.debian.org/debian trixie/main armhf gfortran armhf 4:14.2.0-1 [1428 B] Get: 546 http://deb.debian.org/debian trixie/main armhf octave-dev armhf 9.2.0-3 [995 kB] Get: 547 http://deb.debian.org/debian trixie/main armhf dh-octave all 1.8.0 [22.7 kB] Get: 548 http://deb.debian.org/debian trixie/main armhf fonts-lmodern all 2.005-1 [4540 kB] Get: 549 http://deb.debian.org/debian trixie/main armhf libkpathsea6 armhf 2024.20240313.70630+ds-4 [147 kB] Get: 550 http://deb.debian.org/debian trixie/main armhf libmpfi0 armhf 1.5.4+ds-3 [28.6 kB] Get: 551 http://deb.debian.org/debian trixie/main armhf libpaper1 armhf 1.1.29+b1 [12.2 kB] Get: 552 http://deb.debian.org/debian trixie/main armhf libpaper-utils armhf 1.1.29+b1 [8700 B] Get: 553 http://deb.debian.org/debian trixie/main armhf libpotrace0 armhf 1.16-2+b1 [22.6 kB] Get: 554 http://deb.debian.org/debian trixie/main armhf libptexenc1 armhf 2024.20240313.70630+ds-4 [44.3 kB] Get: 555 http://deb.debian.org/debian trixie/main armhf libslicot0 armhf 5.9-1 [1164 kB] Get: 556 http://deb.debian.org/debian trixie/main armhf libsynctex2 armhf 2024.20240313.70630+ds-4 [49.2 kB] Get: 557 http://deb.debian.org/debian trixie/main armhf libteckit0 armhf 2.5.12+ds1-1 [259 kB] Get: 558 http://deb.debian.org/debian trixie/main armhf libtexlua53-5 armhf 2024.20240313.70630+ds-4 [82.7 kB] Get: 559 http://deb.debian.org/debian trixie/main armhf libxt6t64 armhf 1:1.2.1-1.2 [159 kB] Get: 560 http://deb.debian.org/debian trixie/main armhf libxmu6 armhf 2:1.1.3-3+b2 [50.9 kB] Get: 561 http://deb.debian.org/debian trixie/main armhf libxaw7 armhf 2:1.0.14-1+b2 [165 kB] Get: 562 http://deb.debian.org/debian trixie/main armhf libxi6 armhf 2:1.8.2-1 [73.6 kB] Get: 563 http://deb.debian.org/debian trixie/main armhf libzzip-0-13t64 armhf 0.13.72+dfsg.1-1.2+b1 [53.0 kB] Get: 564 http://deb.debian.org/debian trixie/main armhf octave-control armhf 4.0.1-1+b1 [288 kB] Get: 565 http://deb.debian.org/debian trixie/main armhf texlive-binaries armhf 2024.20240313.70630+ds-4 [6043 kB] Get: 566 http://deb.debian.org/debian trixie/main armhf xdg-utils all 1.1.3-4.1 [75.5 kB] Get: 567 http://deb.debian.org/debian trixie/main armhf texlive-base all 2024.20240829-2 [22.7 MB] Get: 568 http://deb.debian.org/debian trixie/main armhf texlive-fonts-recommended all 2024.20240829-2 [4990 kB] Get: 569 http://deb.debian.org/debian trixie/main armhf texlive-latex-base all 2024.20240829-2 [1273 kB] Get: 570 http://deb.debian.org/debian trixie/main armhf texlive-latex-recommended all 2024.20240829-2 [8845 kB] Get: 571 http://deb.debian.org/debian trixie/main armhf texlive all 2024.20240829-2 [18.6 kB] Fetched 245 MB in 22s (11.2 MB/s) debconf: delaying package configuration, since apt-utils is not installed Selecting previously unselected package libpython3.12-minimal:armhf. (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 ... 19520 files and directories currently installed.) Preparing to unpack .../libpython3.12-minimal_3.12.6-1_armhf.deb ... Unpacking libpython3.12-minimal:armhf (3.12.6-1) ... Selecting previously unselected package libexpat1:armhf. Preparing to unpack .../libexpat1_2.6.3-1_armhf.deb ... Unpacking libexpat1:armhf (2.6.3-1) ... Selecting previously unselected package python3.12-minimal. Preparing to unpack .../python3.12-minimal_3.12.6-1_armhf.deb ... Unpacking python3.12-minimal (3.12.6-1) ... Setting up libpython3.12-minimal:armhf (3.12.6-1) ... Setting up libexpat1:armhf (2.6.3-1) ... Setting up python3.12-minimal (3.12.6-1) ... Selecting previously unselected package python3-minimal. (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 ... 19840 files and directories currently installed.) Preparing to unpack .../00-python3-minimal_3.12.6-1_armhf.deb ... Unpacking python3-minimal (3.12.6-1) ... Selecting previously unselected package media-types. Preparing to unpack .../01-media-types_10.1.0_all.deb ... Unpacking media-types (10.1.0) ... Selecting previously unselected package netbase. Preparing to unpack .../02-netbase_6.4_all.deb ... Unpacking netbase (6.4) ... Selecting previously unselected package tzdata. Preparing to unpack .../03-tzdata_2024a-4_all.deb ... Unpacking tzdata (2024a-4) ... Selecting previously unselected package libkrb5support0:armhf. Preparing to unpack .../04-libkrb5support0_1.21.3-3_armhf.deb ... Unpacking libkrb5support0:armhf (1.21.3-3) ... Selecting previously unselected package libcom-err2:armhf. Preparing to unpack .../05-libcom-err2_1.47.1-1_armhf.deb ... Unpacking libcom-err2:armhf (1.47.1-1) ... Selecting previously unselected package libk5crypto3:armhf. Preparing to unpack .../06-libk5crypto3_1.21.3-3_armhf.deb ... Unpacking libk5crypto3:armhf (1.21.3-3) ... Selecting previously unselected package libkeyutils1:armhf. Preparing to unpack .../07-libkeyutils1_1.6.3-3_armhf.deb ... Unpacking libkeyutils1:armhf (1.6.3-3) ... Selecting previously unselected package libkrb5-3:armhf. Preparing to unpack .../08-libkrb5-3_1.21.3-3_armhf.deb ... Unpacking libkrb5-3:armhf (1.21.3-3) ... Selecting previously unselected package libgssapi-krb5-2:armhf. Preparing to unpack .../09-libgssapi-krb5-2_1.21.3-3_armhf.deb ... Unpacking libgssapi-krb5-2:armhf (1.21.3-3) ... Selecting previously unselected package libtirpc-common. Preparing to unpack .../10-libtirpc-common_1.3.4+ds-1.3_all.deb ... Unpacking libtirpc-common (1.3.4+ds-1.3) ... Selecting previously unselected package libtirpc3t64:armhf. Preparing to unpack .../11-libtirpc3t64_1.3.4+ds-1.3_armhf.deb ... Adding 'diversion of /lib/arm-linux-gnueabihf/libtirpc.so.3 to /lib/arm-linux-gnueabihf/libtirpc.so.3.usr-is-merged by libtirpc3t64' Adding 'diversion of /lib/arm-linux-gnueabihf/libtirpc.so.3.0.0 to /lib/arm-linux-gnueabihf/libtirpc.so.3.0.0.usr-is-merged by libtirpc3t64' Unpacking libtirpc3t64:armhf (1.3.4+ds-1.3) ... Selecting previously unselected package libnsl2:armhf. Preparing to unpack .../12-libnsl2_1.3.0-3+b2_armhf.deb ... Unpacking libnsl2:armhf (1.3.0-3+b2) ... Selecting previously unselected package readline-common. Preparing to unpack .../13-readline-common_8.2-5_all.deb ... Unpacking readline-common (8.2-5) ... Selecting previously unselected package libreadline8t64:armhf. Preparing to unpack .../14-libreadline8t64_8.2-5_armhf.deb ... Adding 'diversion of /lib/arm-linux-gnueabihf/libhistory.so.8 to /lib/arm-linux-gnueabihf/libhistory.so.8.usr-is-merged by libreadline8t64' Adding 'diversion of /lib/arm-linux-gnueabihf/libhistory.so.8.2 to /lib/arm-linux-gnueabihf/libhistory.so.8.2.usr-is-merged by libreadline8t64' Adding 'diversion of /lib/arm-linux-gnueabihf/libreadline.so.8 to /lib/arm-linux-gnueabihf/libreadline.so.8.usr-is-merged by libreadline8t64' Adding 'diversion of /lib/arm-linux-gnueabihf/libreadline.so.8.2 to /lib/arm-linux-gnueabihf/libreadline.so.8.2.usr-is-merged by libreadline8t64' Unpacking libreadline8t64:armhf (8.2-5) ... Selecting previously unselected package libpython3.12-stdlib:armhf. Preparing to unpack .../15-libpython3.12-stdlib_3.12.6-1_armhf.deb ... Unpacking libpython3.12-stdlib:armhf (3.12.6-1) ... Selecting previously unselected package python3.12. Preparing to unpack .../16-python3.12_3.12.6-1_armhf.deb ... Unpacking python3.12 (3.12.6-1) ... Selecting previously unselected package libpython3-stdlib:armhf. Preparing to unpack .../17-libpython3-stdlib_3.12.6-1_armhf.deb ... Unpacking libpython3-stdlib:armhf (3.12.6-1) ... Setting up python3-minimal (3.12.6-1) ... Selecting previously unselected package python3. (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 ... 20912 files and directories currently installed.) Preparing to unpack .../000-python3_3.12.6-1_armhf.deb ... Unpacking python3 (3.12.6-1) ... Selecting previously unselected package sensible-utils. Preparing to unpack .../001-sensible-utils_0.0.24_all.deb ... Unpacking sensible-utils (0.0.24) ... Selecting previously unselected package openssl. Preparing to unpack .../002-openssl_3.3.2-1_armhf.deb ... Unpacking openssl (3.3.2-1) ... Selecting previously unselected package ca-certificates. Preparing to unpack .../003-ca-certificates_20240203_all.deb ... Unpacking ca-certificates (20240203) ... Selecting previously unselected package libmagic-mgc. Preparing to unpack .../004-libmagic-mgc_1%3a5.45-3_armhf.deb ... Unpacking libmagic-mgc (1:5.45-3) ... Selecting previously unselected package libmagic1t64:armhf. Preparing to unpack .../005-libmagic1t64_1%3a5.45-3_armhf.deb ... Unpacking libmagic1t64:armhf (1:5.45-3) ... Selecting previously unselected package file. Preparing to unpack .../006-file_1%3a5.45-3_armhf.deb ... Unpacking file (1:5.45-3) ... Selecting previously unselected package gettext-base. Preparing to unpack .../007-gettext-base_0.22.5-2_armhf.deb ... Unpacking gettext-base (0.22.5-2) ... Selecting previously unselected package libuchardet0:armhf. Preparing to unpack .../008-libuchardet0_0.0.8-1+b1_armhf.deb ... Unpacking libuchardet0:armhf (0.0.8-1+b1) ... Selecting previously unselected package groff-base. Preparing to unpack .../009-groff-base_1.23.0-5_armhf.deb ... Unpacking groff-base (1.23.0-5) ... Selecting previously unselected package bsdextrautils. Preparing to unpack .../010-bsdextrautils_2.40.2-9_armhf.deb ... Unpacking bsdextrautils (2.40.2-9) ... Selecting previously unselected package libpipeline1:armhf. Preparing to unpack .../011-libpipeline1_1.5.8-1_armhf.deb ... Unpacking libpipeline1:armhf (1.5.8-1) ... Selecting previously unselected package man-db. Preparing to unpack .../012-man-db_2.13.0-1_armhf.deb ... Unpacking man-db (2.13.0-1) ... Selecting previously unselected package ucf. Preparing to unpack .../013-ucf_3.0043+nmu1_all.deb ... Moving old data out of the way Unpacking ucf (3.0043+nmu1) ... Selecting previously unselected package aglfn. Preparing to unpack .../014-aglfn_1.7+git20191031.4036a9c-2_all.deb ... Unpacking aglfn (1.7+git20191031.4036a9c-2) ... Selecting previously unselected package libglib2.0-0t64:armhf. Preparing to unpack .../015-libglib2.0-0t64_2.82.1-1_armhf.deb ... Unpacking libglib2.0-0t64:armhf (2.82.1-1) ... Selecting previously unselected package libicu72:armhf. Preparing to unpack .../016-libicu72_72.1-5_armhf.deb ... Unpacking libicu72:armhf (72.1-5) ... Selecting previously unselected package libxml2:armhf. Preparing to unpack .../017-libxml2_2.12.7+dfsg+really2.9.14-0.1_armhf.deb ... Unpacking libxml2:armhf (2.12.7+dfsg+really2.9.14-0.1) ... Selecting previously unselected package shared-mime-info. Preparing to unpack .../018-shared-mime-info_2.4-5+b1_armhf.deb ... Unpacking shared-mime-info (2.4-5+b1) ... Selecting previously unselected package libbrotli1:armhf. 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Selecting previously unselected package libsyntax-keyword-try-perl. Preparing to unpack .../203-libsyntax-keyword-try-perl_0.30-1_armhf.deb ... Unpacking libsyntax-keyword-try-perl (0.30-1) ... Selecting previously unselected package libfeature-compat-try-perl. Preparing to unpack .../204-libfeature-compat-try-perl_0.05-1_all.deb ... Unpacking libfeature-compat-try-perl (0.05-1) ... Selecting previously unselected package libio-interactive-perl. Preparing to unpack .../205-libio-interactive-perl_1.025-1_all.deb ... Unpacking libio-interactive-perl (1.025-1) ... Selecting previously unselected package liblog-any-perl. Preparing to unpack .../206-liblog-any-perl_1.717-1_all.deb ... Unpacking liblog-any-perl (1.717-1) ... Selecting previously unselected package liblog-any-adapter-screen-perl. Preparing to unpack .../207-liblog-any-adapter-screen-perl_0.141-1_all.deb ... Unpacking liblog-any-adapter-screen-perl (0.141-1) ... Selecting previously unselected package libsub-exporter-progressive-perl. Preparing to unpack .../208-libsub-exporter-progressive-perl_0.001013-3_all.deb ... Unpacking libsub-exporter-progressive-perl (0.001013-3) ... Selecting previously unselected package libvariable-magic-perl. Preparing to unpack .../209-libvariable-magic-perl_0.64-1_armhf.deb ... Unpacking libvariable-magic-perl (0.64-1) ... Selecting previously unselected package libb-hooks-endofscope-perl. Preparing to unpack .../210-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 .../211-libsub-identify-perl_0.14-3+b2_armhf.deb ... Unpacking libsub-identify-perl (0.14-3+b2) ... Selecting previously unselected package libsub-name-perl:armhf. Preparing to unpack .../212-libsub-name-perl_0.27-1+b2_armhf.deb ... Unpacking libsub-name-perl:armhf (0.27-1+b2) ... Selecting previously unselected package libnamespace-clean-perl. Preparing to unpack .../213-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 .../214-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 .../215-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 .../216-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 .../217-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 .../218-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 .../219-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 .../220-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 .../221-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 .../222-libregexp-pattern-license-perl_3.11.2-1_all.deb ... Unpacking libregexp-pattern-license-perl (3.11.2-1) ... Selecting previously unselected package libregexp-pattern-perl. Preparing to unpack .../223-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 .../224-libstring-license-perl_0.0.11-1_all.deb ... Unpacking libstring-license-perl (0.0.11-1) ... Selecting previously unselected package licensecheck. Preparing to unpack .../225-licensecheck_3.3.9-1_all.deb ... Unpacking licensecheck (3.3.9-1) ... Selecting previously unselected package diffstat. Preparing to unpack .../226-diffstat_1.66-1_armhf.deb ... Unpacking diffstat (1.66-1) ... Selecting previously unselected package libassuan9:armhf. Preparing to unpack .../227-libassuan9_3.0.1-2_armhf.deb ... Unpacking libassuan9:armhf (3.0.1-2) ... Selecting previously unselected package gpgconf. Preparing to unpack .../228-gpgconf_2.2.44-1_armhf.deb ... Unpacking gpgconf (2.2.44-1) ... Selecting previously unselected package gpg. Preparing to unpack .../229-gpg_2.2.44-1_armhf.deb ... Unpacking gpg (2.2.44-1) ... Selecting previously unselected package iso-codes. Preparing to unpack .../230-iso-codes_4.17.0-1_all.deb ... Unpacking iso-codes (4.17.0-1) ... Selecting previously unselected package libberkeleydb-perl:armhf. Preparing to unpack .../231-libberkeleydb-perl_0.64-2+b3_armhf.deb ... Unpacking libberkeleydb-perl:armhf (0.64-2+b3) ... Selecting previously unselected package libclass-xsaccessor-perl. Preparing to unpack .../232-libclass-xsaccessor-perl_1.19-4+b3_armhf.deb ... Unpacking libclass-xsaccessor-perl (1.19-4+b3) ... Selecting previously unselected package libconfig-tiny-perl. Preparing to unpack .../233-libconfig-tiny-perl_2.30-1_all.deb ... 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Selecting previously unselected package libexception-class-perl. Preparing to unpack .../239-libexception-class-perl_1.45-1_all.deb ... Unpacking libexception-class-perl (1.45-1) ... Selecting previously unselected package libiterator-perl. Preparing to unpack .../240-libiterator-perl_0.03+ds1-2_all.deb ... Unpacking libiterator-perl (0.03+ds1-2) ... Selecting previously unselected package libiterator-util-perl. Preparing to unpack .../241-libiterator-util-perl_0.02+ds1-2_all.deb ... Unpacking libiterator-util-perl (0.02+ds1-2) ... Selecting previously unselected package libdata-dpath-perl. Preparing to unpack .../242-libdata-dpath-perl_0.60-1_all.deb ... Unpacking libdata-dpath-perl (0.60-1) ... Selecting previously unselected package libnet-domain-tld-perl. Preparing to unpack .../243-libnet-domain-tld-perl_1.75-4_all.deb ... Unpacking libnet-domain-tld-perl (1.75-4) ... Selecting previously unselected package libdata-validate-domain-perl. 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Unpacking texlive (2024.20240829-2) ... Setting up libapt-pkg-perl (0.1.40+b5) ... Setting up liblz1:armhf (1.15~pre1-1) ... Setting up libhwy1t64:armhf (1.2.0-2) ... Setting up media-types (10.1.0) ... Setting up libmodule-pluggable-perl (5.2-5) ... Setting up libb2-1:armhf (0.98.1-1.1+b1) ... Setting up libpipeline1:armhf (1.5.8-1) ... Setting up libgraphite2-3:armhf (1.3.14-2) ... Setting up libstring-escape-perl (2010.002-3) ... Setting up libgnutls-openssl27t64:armhf (3.8.6-2) ... Setting up liblcms2-2:armhf (2.16-2) ... Setting up libberkeleydb-perl:armhf (0.64-2+b3) ... Setting up libpixman-1-0:armhf (0.42.2-1+b1) ... Setting up plzip (1.11-2) ... update-alternatives: using /usr/bin/lzip.plzip to provide /usr/bin/lzip (lzip) in auto mode update-alternatives: using /usr/bin/lzip.plzip to provide /usr/bin/lzip-compressor (lzip-compressor) in auto mode update-alternatives: using /usr/bin/lzip.plzip to provide /usr/bin/lzip-decompressor (lzip-decompressor) in auto mode Setting up libsharpyuv0:armhf (1.4.0-0.1) ... Setting up libwayland-server0:armhf (1.23.0-1) ... Setting up libaom3:armhf (3.9.1-1) ... Setting up libfile-which-perl (1.27-2) ... Setting up libxau6:armhf (1:1.0.9-1+b1) ... Setting up libxdmcp6:armhf (1:1.1.2-3+b1) ... Setting up libdouble-conversion3:armhf (3.3.0-1+b1) ... Setting up libkeyutils1:armhf (1.6.3-3) ... Setting up libxcb1:armhf (1.17.0-2) ... Setting up libunicode-utf8-perl (0.62-2+b2) ... Setting up libfftw3-single3:armhf (3.3.10-1+b3) ... Setting up libset-intspan-perl (1.19-3) ... Setting up libicu72:armhf (72.1-5) ... Setting up libxcb-xfixes0:armhf (1.17.0-2) ... Setting up libogg0:armhf (1.3.5-3+b1) ... Setting up libmouse-perl:armhf (2.5.11-1) ... Setting up libzstd-dev:armhf (1.5.6+dfsg-1) ... Setting up liblerc4:armhf (4.0.0+ds-4+b1) ... Setting up libpod-pom-perl (2.01-4) ... Setting up bsdextrautils (2.40.2-9) ... Setting up hdf5-helpers (1.10.10+repack-4) ... Setting up libwmflite-0.2-7:armhf (0.2.13-1.1+b2) ... Setting up libregexp-pattern-perl (0.2.14-2) ... Setting up libdata-messagepack-perl (1.02-1+b3) ... Setting up libclass-inspector-perl (1.36-3) ... Setting up libxcb-xinput0:armhf (1.17.0-2) ... Setting up libdynaloader-functions-perl (0.004-1) ... Setting up libdatrie1:armhf (0.2.13-3) ... Setting up libtext-glob-perl (0.11-3) ... Setting up libclass-method-modifiers-perl (2.15-1) ... Setting up liblist-compare-perl (0.55-2) ... Setting up libmagic-mgc (1:5.45-3) ... Setting up libxcb-render0:armhf (1.17.0-2) ... Setting up libclone-perl:armhf (0.47-1) ... Setting up libarchive-zip-perl (1.68-1) ... Setting up libyaml-0-2:armhf (0.2.5-1+b1) ... Setting up libsub-identify-perl (0.14-3+b2) ... Setting up libcpanel-json-xs-perl:armhf (4.38-1) ... Setting up libglvnd0:armhf (1.7.0-1+b1) ... Setting up libio-stringy-perl (2.113-2) ... Setting up libtirpc-common (1.3.4+ds-1.3) ... Setting up libhtml-tagset-perl (3.24-1) ... Setting up libts0t64:armhf (1.22-1.1) ... Setting up liblog-any-perl (1.717-1) ... Setting up libyaml-pp-perl (0.38.0-1) ... Setting up libxcb-glx0:armhf (1.17.0-2) ... Setting up libdevel-size-perl (0.84-1) ... Setting up unzip (6.0-28) ... Setting up libdebhelper-perl (13.20) ... Setting up libbrotli1:armhf (1.1.0-2+b4) ... Setting up libedit2:armhf (3.1-20240808-1) ... Setting up libregexp-pattern-license-perl (3.11.2-1) ... Setting up libconvert-binhex-perl (1.125-3) ... Setting up liblwp-mediatypes-perl (6.04-2) ... Setting up libmagic1t64:armhf (1:5.45-3) ... Setting up libyaml-libyaml-perl (0.902.0+ds-2) ... Setting up fonts-freefont-otf (20211204+svn4273-2) ... Setting up libio-interactive-perl (1.025-1) ... Setting up libxcb-keysyms1:armhf (0.4.0-1+b3) ... Setting up libxcb-shape0:armhf (1.17.0-2) ... Setting up x11-common (1:7.7+23.1) ... invoke-rc.d: could not determine current runlevel Setting up X socket directories... /tmp/.X11-unix /tmp/.ICE-unix. Setting up libtry-tiny-perl (0.32-1) ... Setting up libsensors-config (1:3.6.0-10) ... Setting up libpsl5t64:armhf (0.21.2-1.1) ... Setting up libnghttp2-14:armhf (1.63.0-1) ... Setting up libdeflate0:armhf (1.22-1) ... Setting up perl-openssl-defaults:armhf (7+b2) ... Setting up libmldbm-perl (2.05-4) ... Setting up libxml-namespacesupport-perl (1.12-2) ... Setting up gettext-base (0.22.5-2) ... Setting up m4 (1.4.19-4) ... Setting up libevent-2.1-7t64:armhf (2.1.12-stable-10) ... Setting up libclone-choose-perl (0.010-2) ... Setting up libqhull-r8.0:armhf (2020.2-6+b1) ... Setting up libxcb-render-util0:armhf (0.3.9-1+b2) ... Setting up xkb-data (2.42-1) ... Setting up liblzo2-2:armhf (2.10-3) ... Setting up libtime-moment-perl (0.44-2+b3) ... Setting up libencode-locale-perl (1.05-3) ... Setting up libmetis5:armhf (5.1.0.dfsg-7+b1) ... Setting up libxcb-shm0:armhf (1.17.0-2) ... Setting up libxcb-icccm4:armhf (0.4.1-1.2) ... Setting up libcom-err2:armhf (1.47.1-1) ... Setting up file (1:5.45-3) ... Setting up texinfo-lib (7.1.1-1) ... Setting up libmpg123-0t64:armhf (1.32.7-1) ... 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:armhf (2.1-6.1+b1) ... Setting up octave-common (9.2.0-3) ... Setting up libregexp-common-perl (2024080801-1) ... Setting up libpcre2-16-0:armhf (10.42-4+b1) ... Setting up libaec0:armhf (1.1.3-1) ... Setting up libnet-netmask-perl (2.0002-2) ... Setting up libopengl0:armhf (1.7.0-1+b1) ... Setting up libsub-install-perl (0.929-1) ... Setting up libelf1t64:armhf (0.191-2) ... Setting up libxcb-util1:armhf (0.4.0-1+b2) ... Setting up libpsl-dev:armhf (0.21.2-1.1) ... Setting up libindirect-perl (0.39-2+b3) ... Setting up libxcb-xkb1:armhf (1.17.0-2) ... Setting up libxcb-image0:armhf (0.4.0-2+b1) ... Setting up libkrb5support0:armhf (1.21.3-3) ... Setting up libnumber-compare-perl (0.03-3) ... Setting up libsasl2-modules-db:armhf (2.1.28+dfsg1-8) ... Setting up tzdata (2024a-4) ... Current default time zone: 'Etc/UTC' Local time is now: Mon Oct 21 06:32:16 UTC 2024. Universal Time is now: Mon Oct 21 06:32:16 UTC 2024. Run 'dpkg-reconfigure tzdata' if you wish to change it. Setting up libxcb-present0:armhf (1.17.0-2) ... Setting up liberror-perl (0.17029-2) ... Setting up libasound2-data (1.2.12-1) ... Setting up libbtf2:armhf (1:7.8.2+dfsg-2) ... Setting up libjson-maybexs-perl (1.004008-1) ... 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:armhf (4.8.12-3.1+b2) ... Setting up libglib2.0-0t64:armhf (2.82.1-1) ... No schema files found: doing nothing. Setting up libblas3:armhf (3.12.0-3) ... update-alternatives: using /usr/lib/arm-linux-gnueabihf/blas/libblas.so.3 to provide /usr/lib/arm-linux-gnueabihf/libblas.so.3 (libblas.so.3-arm-linux-gnueabihf) in auto mode Setting up libclass-data-inheritable-perl (0.08-3) ... Setting up libunbound8:armhf (1.22.0-1) ... Setting up libpkgconf3:armhf (1.8.1-3) ... Setting up libgmpxx4ldbl:armhf (2:6.3.0+dfsg-2+b1) ... Setting up libalgorithm-c3-perl (0.11-2) ... Setting up libasound2t64:armhf (1.2.12-1) ... Setting up liblog-log4perl-perl (1.57-1) ... Setting up libtext-reform-perl (1.20-5) ... Setting up libjpeg62-turbo:armhf (1:2.1.5-3) ... Setting up libzzip-0-13t64:armhf (0.13.72+dfsg.1-1.2+b1) ... Setting up libgnutls-dane0t64:armhf (3.8.6-2) ... Setting up libx11-data (2:1.8.7-1) ... Setting up libsvtav1enc2:armhf (2.2.1+dfsg-2) ... Setting up libjpeg62-turbo-dev:armhf (1:2.1.5-3) ... Setting up libfile-find-rule-perl (0.34-3) ... Setting up libxcb-sync1:armhf (1.17.0-2) ... Setting up librtmp1:armhf (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 (1.75-4) ... Setting up libteckit0:armhf (2.5.12+ds1-1) ... Setting up libperlio-utf8-strict-perl (0.010-1+b2) ... Setting up aglfn (1.7+git20191031.4036a9c-2) ... Setting up libxcb-cursor0:armhf (0.1.4-1+b1) ... Setting up libavahi-common-data:armhf (0.8-13+b2) ... Setting up libncurses6:armhf (6.5-2) ... Setting up libdbus-1-3:armhf (1.14.10-4+b1) ... Setting up libfribidi0:armhf (1.0.15-1) ... Setting up libopus0:armhf (1.5.2-2) ... Setting up t1utils (1.41-4) ... Setting up libtexlua53-5:armhf (2024.20240313.70630+ds-4) ... Setting up diffstat (1.66-1) ... Setting up libimagequant0:armhf (2.18.0-1+b1) ... Setting up fonts-dejavu-mono (2.37-8) ... Setting up libssl-dev:armhf (3.3.2-1) ... Setting up libpng16-16t64:armhf (1.6.44-2) ... Setting up libhwloc15:armhf (2.11.2-1) ... Setting up libimath-3-1-29t64:armhf (3.1.11-2+b1) ... Setting up libvorbis0a:armhf (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 (0.22.5-2) ... Setting up libb-hooks-op-check-perl:armhf (0.22-3+b1) ... Setting up libmpfi0:armhf (1.5.4+ds-3) ... Setting up fonts-dejavu-core (2.37-8) ... Setting up liblist-moreutils-xs-perl (0.430-4) ... Setting up pkgconf-bin (1.8.1-3) ... Setting up libsensors5:armhf (1:3.6.0-10) ... Setting up libk5crypto3:armhf (1.21.3-3) ... Setting up libqscintilla2-qt6-l10n (2.14.1+dfsg-1) ... Setting up libltdl7:armhf (2.4.7-7+b1) ... Setting up libidn2-dev:armhf (2.3.7-2) ... Setting up libfftw3-double3:armhf (3.3.10-1+b3) ... Setting up libglapi-mesa:armhf (24.2.4-1) ... Setting up libparams-util-perl (1.102-3) ... Setting up libkpathsea6:armhf (2024.20240313.70630+ds-4) ... Setting up libsasl2-2:armhf (2.1.28+dfsg1-8) ... Setting up libgfortran5:armhf (14.2.0-6) ... Setting up libvulkan1:armhf (1.3.290.0-1) ... Setting up libtime-duration-perl (1.21-2) ... Setting up autoconf (2.72-3) ... Setting up libtext-xslate-perl:armhf (3.5.9-2) ... Setting up libnghttp3-9:armhf (1.4.0-1) ... Setting up libsub-exporter-progressive-perl (0.001013-3) ... Setting up libwebp7:armhf (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 libxcb-dri2-0:armhf (1.17.0-2) ... Setting up libsub-name-perl:armhf (0.27-1+b2) ... Setting up libgif7:armhf (5.2.2-1) ... Setting up zlib1g-dev:armhf (1:1.3.dfsg+really1.3.1-1) ... Setting up dwz (0.15-1+b2) ... Setting up libdata-validate-domain-perl (0.15-1) ... Setting up libproc-processtable-perl:armhf (0.636-1+b2) ... Setting up libparse-recdescent-perl (1.967015+dfsg-4) ... Setting up libdav1d7:armhf (1.4.3-1) ... Setting up libmpich12:armhf (4.2.0-14) ... Setting up libmtdev1t64:armhf (1.1.6-1.2) ... Setting up sensible-utils (0.0.24) ... Setting up ocl-icd-libopencl1:armhf (2.3.2-1+b1) ... Setting up libduktape207:armhf (2.7.0-2+b1) ... Setting up libxshmfence1:armhf (1.3-1+b1) ... Setting up libtiff6:armhf (4.5.1+git230720-5) ... Setting up libxcb-randr0:armhf (1.17.0-2) ... Setting up librav1e0.7:armhf (0.7.1-7+b1) ... Setting up libpath-tiny-perl (0.146-1) ... Setting up libuchardet0:armhf (0.0.8-1+b1) ... Setting up lzop (1.04-2) ... Setting up libassuan9:armhf (3.0.1-2) ... Setting up libjson-perl (4.10000-1) ... Setting up liblog-any-adapter-screen-perl (0.141-1) ... Setting up librole-tiny-perl (2.002004-1) ... Setting up libipc-run3-perl (0.049-1) ... Setting up libmd4c0:armhf (0.5.2-2+b1) ... Setting up libregexp-wildcards-perl (1.05-3) ... Setting up libmousex-strictconstructor-perl (0.02-3) ... Setting up fonts-lmodern (2.005-1) ... Setting up libfile-sharedir-perl (1.118-3) ... Setting up libsub-uplevel-perl (0.2800-3) ... Setting up libsuitesparseconfig7:armhf (1:7.8.2+dfsg-2) ... Setting up liblua5.4-0:armhf (5.4.6-3+b1) ... Setting up libx11-6:armhf (2:1.8.7-1+b1) ... Setting up libaliased-perl (0.34-3) ... Setting up libslurm41t64 (24.05.2-1) ... 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:armhf (20230802.1-4) ... Setting up libngtcp2-16:armhf (1.6.0-1) ... 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:armhf (1.21.3-3) ... Setting up libglu1-mesa:armhf (9.0.2-1.1+b1) ... Setting up libflac12t64:armhf (1.4.3+ds-2.1) ... Setting up libtoml-tiny-perl (0.18-1) ... Setting up libstemmer0d:armhf (2.2.0-4+b1) ... Setting up libsort-versions-perl (1.62-3) ... Setting up libssh2-1t64:armhf (1.11.1-1) ... Setting up libexporter-tiny-perl (1.006002-1) ... Setting up libterm-readkey-perl (2.38-2+b3) ... Setting up libtext-unidecode-perl (1.30-3) ... Setting up libde265-0:armhf (1.0.15-1+b2) ... Setting up libfont-ttf-perl (1.06-2) ... Setting up libfile-homedir-perl (1.006-2) ... Setting up libsamplerate0:armhf (0.2.2-4+b1) ... Setting up libtasn1-6-dev:armhf (4.19.0-3+b2) ... Setting up openssl (3.3.2-1) ... Setting up libwebpmux3:armhf (1.4.0-0.1) ... Setting up libtext-levenshteinxs-perl (0.03-5+b3) ... Setting up libperlio-gzip-perl (0.20-1+b3) ... Setting up libdrm-common (2.4.123-1) ... Setting up libyuv0:armhf (0.0.1888.20240710-3) ... Setting up libevdev2:armhf (1.13.3+dfsg-1) ... Setting up readline-common (8.2-5) ... Setting up libxml2:armhf (2.12.7+dfsg+really2.9.14-0.1) ... Setting up libhtml-html5-entities-perl (0.004-3) ... Setting up xdg-utils (1.1.3-4.1) ... update-alternatives: using /usr/bin/xdg-open to provide /usr/bin/open (open) in auto mode Setting up libtext-levenshtein-damerau-perl (0.41-3) ... Setting up libsereal-decoder-perl (5.004+ds-1+b2) ... Setting up libmarkdown2:armhf (2.2.7-2+b1) ... Setting up liburi-perl (5.30-1) ... Setting up iso-codes (4.17.0-1) ... Setting up libnet-ipv6addr-perl (1.02-1) ... Setting up libbrotli-dev:armhf (1.1.0-2+b4) ... Setting up libgudev-1.0-0:armhf (238-5) ... Setting up libngtcp2-crypto-gnutls8:armhf (1.6.0-1) ... Setting up libp11-kit-dev:armhf (0.25.5-2) ... Setting up libmp3lame0:armhf (3.100-6+b2) ... Setting up libblas-dev:armhf (3.12.0-3) ... update-alternatives: using /usr/lib/arm-linux-gnueabihf/blas/libblas.so to provide /usr/lib/arm-linux-gnueabihf/libblas.so (libblas.so-arm-linux-gnueabihf) in auto mode Setting up libsz2:armhf (1.1.3-1) ... Setting up libvorbisenc2:armhf (1.3.7-2) ... Setting up libsynctex2:armhf (2024.20240313.70630+ds-4) ... Setting up libdata-validate-ip-perl (0.31-1) ... Setting up libwacom-common (2.13.0-1) ... Setting up libmousex-nativetraits-perl (1.09-3) ... Setting up libemail-address-xs-perl (1.05-1+b3) ... Setting up libxkbcommon0:armhf (1.6.0-1+b1) ... Setting up libpotrace0:armhf (1.16-2+b1) ... Setting up libwayland-client0:armhf (1.23.0-1) ... Setting up libnet-ssleay-perl:armhf (1.94-1+b1) ... 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 libgfortran-14-dev:armhf (14.2.0-6) ... Setting up x11proto-dev (2024.1-1) ... Setting up libfile-stripnondeterminism-perl (1.14.0-1) ... Setting up libxcb-dri3-0:armhf (1.17.0-2) ... Setting up gnuplot-data (6.0.0+dfsg1-3) ... Setting up libllvm19:armhf (1:19.1.1-1) ... Setting up libx11-xcb1:armhf (2:1.8.7-1+b1) ... Setting up libice6:armhf (2:1.0.10-1+b1) ... Setting up libhttp-date-perl (6.06-1) ... Setting up libptscotch-7.0:armhf (7.0.5-1) ... Setting up liblapack3:armhf (3.12.0-3) ... update-alternatives: using /usr/lib/arm-linux-gnueabihf/lapack/liblapack.so.3 to provide /usr/lib/arm-linux-gnueabihf/liblapack.so.3 (liblapack.so.3-arm-linux-gnueabihf) in auto mode Setting up libncurses-dev:armhf (6.5-2) ... Setting up libfile-basedir-perl (0.09-2) ... Setting up gettext (0.22.5-2) ... Setting up libarpack2t64:armhf (3.9.1-1.1+b1) ... Setting up libgmp-dev:armhf (2:6.3.0+dfsg-2+b1) ... Setting up libamd3:armhf (1:7.8.2+dfsg-2) ... Setting up libfile-listing-perl (6.16-1) ... Setting up libxau-dev:armhf (1:1.0.9-1+b1) ... Setting up libxpm4:armhf (1:3.5.17-1+b1) ... Setting up nettle-dev:armhf (3.10-1) ... Setting up libxrender1:armhf (1:0.9.10-1.1+b1) ... Setting up libtool (2.4.7-7) ... Setting up libcolamd3:armhf (1:7.8.2+dfsg-2) ... Setting up libfftw3-bin (3.3.10-1+b3) ... Setting up libwacom9:armhf (2.13.0-1) ... Setting up fontconfig-config (2.15.0-1.1) ... Setting up liblist-moreutils-perl (0.430-2) ... Setting up libslicot0:armhf (5.9-1) ... Setting up libxmlb2:armhf (0.3.21-1) ... Setting up libpod-constants-perl (0.19-2) ... Setting up libhash-merge-perl (0.302-1) ... Setting up hwloc-nox (2.11.2-1) ... Setting up libsoftware-copyright-perl (0.012-2) ... Setting up libaec-dev:armhf (1.1.3-1) ... Setting up libavahi-common3:armhf (0.8-13+b2) ... Setting up libcxsparse4:armhf (1:7.8.2+dfsg-2) ... Setting up libjpeg-dev:armhf (1:2.1.5-3) ... Setting up libxext6:armhf (2:1.3.4-1+b2) ... 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 libcombblas2.0.0t64:armhf (2.0.0-3.1+b2) ... Setting up libfftw3-mpi3:armhf (3.3.10-1+b3) ... Setting up libexception-class-perl (1.45-1) ... Setting up libsundials-sunmatrix4:armhf (6.4.1+dfsg1-3+b7) ... Setting up libclass-c3-perl (0.35-2) ... Setting up libsuperlu6:armhf (6.0.1+dfsg1-1+b1) ... Setting up libqrupdate1:armhf (1.1.5-1) ... Setting up libdevel-callchecker-perl:armhf (0.009-1) ... Setting up libldap-2.5-0:armhf (2.5.18+dfsg-3) ... Setting up libsundials-ida6:armhf (6.4.1+dfsg1-3+b7) ... Setting up libcamd3:armhf (1:7.8.2+dfsg-2) ... Setting up pkgconf:armhf (1.8.1-3) ... Setting up libxxf86vm1:armhf (1:1.1.4-1+b3) ... Setting up libinput-bin (1.26.2-1) ... Setting up libxs-parse-sublike-perl:armhf (0.28-1) ... Setting up intltool-debian (0.35.0+20060710.6) ... Setting up dh-autoreconf (20) ... Setting up patchutils (0.4.2-1) ... Setting up libthai0:armhf (0.1.29-2) ... Setting up ca-certificates (20240203) ... Updating certificates in /etc/ssl/certs... 146 added, 0 removed; done. Setting up libxdmcp-dev:armhf (1:1.1.2-3+b1) ... Setting up libdata-validate-uri-perl (0.07-3) ... Setting up libxs-parse-keyword-perl (0.46-1) ... Setting up libptexenc1:armhf (2024.20240313.70630+ds-4) ... Setting up libtest-exception-perl (0.43-3) ... Setting up libfreetype6:armhf (2.13.3+dfsg-1) ... Setting up libglpk40:armhf (5.0-1+b1) ... Setting up libxfixes3:armhf (1:6.0.0-2+b1) ... Setting up libstring-copyright-perl (0.003014-1) ... Setting up libopenexr-3-1-30:armhf (3.1.5-5.1+b2) ... Setting up shared-mime-info (2.4-5+b1) ... Setting up libxinerama1:armhf (2:1.1.4-3+b1) ... Setting up libxkbcommon-x11-0:armhf (1.6.0-1+b1) ... Setting up liblapack-dev:armhf (3.12.0-3) ... update-alternatives: using /usr/lib/arm-linux-gnueabihf/lapack/liblapack.so to provide /usr/lib/arm-linux-gnueabihf/liblapack.so (liblapack.so-arm-linux-gnueabihf) in auto mode Setting up libgssapi-krb5-2:armhf (1.21.3-3) ... Setting up libdata-optlist-perl (0.114-1) ... Setting up libgav1-1:armhf (0.19.0-2+b1) ... Setting up ucf (3.0043+nmu1) ... Setting up libssh2-1-dev:armhf (1.11.1-1) ... Setting up libccolamd3:armhf (1:7.8.2+dfsg-2) ... Setting up libreadline8t64:armhf (8.2-5) ... Setting up dh-strip-nondeterminism (1.14.0-1) ... Setting up libwww-robotrules-perl (6.02-1) ... Setting up libsyntax-keyword-try-perl (0.30-1) ... Setting up libjack-jackd2-0:armhf (1.9.22~dfsg-3) ... Setting up libdrm2:armhf (2.4.123-1) ... Setting up groff-base (1.23.0-5) ... Setting up libhtml-parser-perl:armhf (3.83-1) ... Setting up gpgconf (2.2.44-1) ... Setting up libharfbuzz0b:armhf (9.0.0-1) ... Setting up libfontconfig1:armhf (2.15.0-1.1) ... 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Setting up libxml-libxml-perl (2.0207+dfsg+really+2.0134-5) ... 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:armhf (1:7.8.2+dfsg-2) ... Setting up libconst-fast-perl (0.014-2) ... Setting up libdata-section-perl (0.200008-1) ... Setting up libnsl2:armhf (1.3.0-3+b2) ... Setting up libqt6core5compat6:armhf (6.6.2-2) ... Setting up libpangoft2-1.0-0:armhf (1.54.0+ds-2) ... Setting up libhdf5-103-1t64:armhf (1.10.10+repack-4) ... Setting up libdata-dpath-perl (0.60-1) ... Setting up gfortran-14 (14.2.0-6) ... Setting up libhypre-2.29.0:armhf (2.29.0-2+b1) ... Setting up libfltk1.3t64:armhf (1.3.8-6.1) ... Setting up libcups2t64:armhf (2.4.10-2) ... 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Building tag database... -> Finished parsing the build-deps I: Building the package I: Running cd /build/reproducible-path/octave-signal-1.4.6/ && 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-signal_1.4.6-1_source.changes dpkg-buildpackage: info: source package octave-signal dpkg-buildpackage: info: source version 1.4.6-1 dpkg-buildpackage: info: source distribution unstable dpkg-buildpackage: info: source changed by Rafael Laboissière dpkg-source --before-build . dpkg-buildpackage: info: host architecture armhf debian/rules clean dh clean --buildsystem=octave dh_auto_clean -O--buildsystem=octave dh_octave_clean make[1]: Entering directory '/build/reproducible-path/octave-signal-1.4.6' /bin/sh: 1: hg: not found make[1]: hg: No such file or directory rm -f -f doc/signal.html rm -f -f doc/signal.qhc rm -f -f doc/signal.qch rm -f -f doc/signal.info rm -f -f doc/functions.texi rm -f -f doc/version.texi rm -rf signal-1.4.6 signal-1.4.6.tar.gz signal-html.tar.gz signal-html cd src && make clean make[2]: Entering directory '/build/reproducible-path/octave-signal-1.4.6/src' rm -f *.o *.oct PKG_* make[2]: Leaving directory '/build/reproducible-path/octave-signal-1.4.6/src' make[1]: *** No rule to make target 'distclean'. make[1]: Leaving directory '/build/reproducible-path/octave-signal-1.4.6' make[1]: Entering directory '/build/reproducible-path/octave-signal-1.4.6/src' rm -f *.o *.oct PKG_* make[1]: *** No rule to make target 'distclean'. make[1]: Leaving directory '/build/reproducible-path/octave-signal-1.4.6/src' 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 debian/rules execute_before_dh_auto_build make[1]: Entering directory '/build/reproducible-path/octave-signal-1.4.6' mkdir .hg touch .hg/dirstate chmod +x doc/mkfuncdocs.py doc/mkqhcp.py make -k doc make[2]: Entering directory '/build/reproducible-path/octave-signal-1.4.6' /bin/sh: 1: hg: not found make[2]: hg: No such file or directory cd doc && ./mkfuncdocs.py --src-dir=../inst/ --src-dir=../src/ ../INDEX | sed 's/@seealso/@xseealso/g' > functions.texi Generating doc/version.texi # extract html cd doc && SOURCE_DATE_EPOCH= makeinfo --html --css-ref=signal.css --no-headers --no-split signal.texi # try also create qch file if can cd doc && ./mkqhcp.py signal && true signal.qhcp -o signal.qhc cd doc && rm -f -f signal.qhcp signal.qhp cd doc && makeinfo signal.texi make[2]: Leaving directory '/build/reproducible-path/octave-signal-1.4.6' # Fix for makeinfo error: # "@group invalid in context where filling is enabled" sed -i -e 's/^@\(end \|\)group$//' doc/functions.texi cd doc && makeinfo --pdf --output=signal.pdf signal.texi functions.texi:110: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:120: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:244: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:428: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:438: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:446: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:574: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:589: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:615: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:641: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:2172: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:2266: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:2322: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:2493: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3324: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3360: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3431: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3470: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3481: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3659: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3919: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:3976: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4551: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4564: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4605: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4819: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4837: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4857: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4870: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:4889: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:5395: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:5462: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:5586: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:5763: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) functions.texi:5772: warning: @noindent is useless inside of a paragraph (possibly involving @xseealso) This is pdfTeX, Version 3.141592653-2.6-1.40.26 (TeX Live 2025/dev/Debian) (preloaded format=pdfetex) restricted \write18 enabled. entering extended mode (./signal.texi (/usr/share/texmf/tex/texinfo/texinfo.tex Loading texinfo [version 2023-09-19.19]: pdf, fonts, glyphs, page headings, tables, conditionals, indexing, sectioning, toc, environments, defuns, macros, cross references, insertions, localization, formatting, microtype, and turning on texinfo input format.) (/build/reproducible-path/octave-signal-1.4.6/doc/version.texi) (/build/reproducible-path/octave-signal-1.4.6/doc/macros.texi) Chapter 1 Writing index file signal.cp Chapter 2 [1{/var/lib/texmf/fonts/map/pdftex/updmap/pdftex.map}] Chapter 3 [2] (/build/reproducible-path/octave-signal-1.4.6/doc/functions.texi Writing index file signal.fn Overfull \hbox (24.7901pt too wide) in paragraph at lines 85--85 [] @texttt specgram (chirp ([0:0.001:5])); # default linear chirp of 0-100Hz in 1 sec[] [3] [4] [5] [6] Overfull \hbox (53.53354pt too wide) in paragraph at lines 314--314 [] @texttt set (gca, "ydir", "normal"); # put the ^^My^^M direction in the correct direction[] [7] [8] [9] [10] [11] [12] [13] [14] [15] [16] [17] Underfull \hbox (badness 7047) in paragraph at lines 1259--1263 []@textrm As a fur-ther op-ti-miza-tion when nfft@texttt >>@textrm length(a), the IIR fil-ter (b,a) is con- Underfull \hbox (badness 10000) in paragraph at lines 1259--1263 @textrm verted to the FIR fil-ter conv(b,fliplr(conj(a))). For fur-ther de-tai ls, see [18] [19] [20] Overfull \hbox (12.06592pt too wide) in paragraph at lines 1523--1525 []@textrm For the the-ory of op-er-a-tion, see `@texttt http://ccrma.stanford. edu/~jos/filters/residued.html[]@textrm '[] [21] Overfull \hbox (12.06592pt too wide) in paragraph at lines 1553--1555 []@textrm For the the-ory of op-er-a-tion, see `@texttt http://ccrma.stanford. edu/~jos/filters/residuez.html[]@textrm '[] [22] [23] [24] [25] [26] [27] [28] [29] [30] [31] [32] [33] [34] [35] [36] [37] Warning: unbalanced parentheses in @def... [38] [39] Overfull \hbox (36.28748pt too wide) in paragraph at lines 3066--3066 []@texttt h = cl2bp(30, 0.3*pi, 0.6*pi, [0.02, 1.02, 0.02], [-0.02, 0.98, -0.0 2], 2^11);[][] [40] Underfull \hbox (badness 10000) in paragraph at lines 3185--3187 []@textrm I. Se-lesnick, @texttt "@textrm Linear-Phase FIR Fil-ter De-sign by Least Squares,@texttt " [41] Overfull \hbox (30.53879pt too wide) in paragraph at lines 3228--3228 [] @texttt [n, w, beta, ftype] = kaiserord ([1000, 1200], [1, 0], [0.05, 0.05] , 11025);[] [42] [43] [44] [45] [46] [47] Overfull \hbox (13.29272pt too wide) in paragraph at lines 3734--3734 [] @texttt f0 = 70; Fs = 10000; # 100 Hz fundamental, 10kHz samplin g rate[] Overfull \hbox (13.29272pt too wide) in paragraph at lines 3735--3735 [] @texttt a = poly (0.985 * exp (1i * pi * [0.1, -0.1, 0.3, -0.3])); # two fo rmants[] [48] [49] [50] Warning: unbalanced parentheses in @def... [51] [52] Warning: unbalanced parentheses in @def... Overfull \hbox (3.85129pt too wide) in paragraph at lines 4148--4150 []@textrm [spectra,Pxx[]ci,freq] = pwelch(x,window,overlap,Nfft,Fs,conf, range ,plot[]type,detrend,sloppy) Overfull \hbox (45.0659pt too wide) in paragraph at lines 4151--4153 []@textrm [spectra,Pxx[]ci,freq] = pwelch(x,y,window,overlap,Nfft,Fs,conf, ran ge,plot[]type,detrend,sloppy,results) [53] [54] [55] Overfull \hbox (52.22pt too wide) in paragraph at lines 4385--4385 [] @texttt %% defaults: Nfft=min(length(x),256), Fs=2*pi, length(wind ow)=Nfft,[] Overfull \hbox (29.22525pt too wide) in paragraph at lines 4397--4397 [] @texttt %% NextPow2 is the next power of 2 greater than or equal t o the[] Overfull \hbox (23.47656pt too wide) in paragraph at lines 4398--4398 [] @texttt %% window length. "Sloppy", "conf" are not available. Def ault[] [56] Overfull \hbox (34.97394pt too wide) in paragraph at lines 4408--4408 [] @texttt %% defaults: length(window)==64, Nfft=max(256,NextPow2), F s=2*pi[] Overfull \hbox (29.22525pt too wide) in paragraph at lines 4410--4410 [] @texttt %% NextPow2 is the next power of 2 greater than or equal t o the[] [57] [58] Underfull \hbox (badness 10000) in paragraph at lines 4627--4630 []@textrm * Pe-ter Lynch, @texttt "@textrm The Dolph-Chebyshev Win-dow: A Sim- ple Op-ti-mal Fil- Underfull \hbox (badness 10000) in paragraph at lines 4627--4630 @textrm ter@texttt "@textrm , Monthly Weather Re-view, Vol. 125, pp. 655-660, April 1997. [59] Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... [60] [61] Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... [62] [63] [64] [65] [66] [67] [68] Overfull \hbox (13.29272pt too wide) in paragraph at lines 5377--5377 [] @texttt stem (t(1:4:121) * 1000, y(1:31), "-r;Decimated;"); hold off; # dec imated[] [69] [70] [71] [72] [73]) [74] ) (see the transcript file for additional information) Output written on signal.pdf (74 pages, 411451 bytes). Transcript written on signal.log. This is pdfTeX, Version 3.141592653-2.6-1.40.26 (TeX Live 2025/dev/Debian) (preloaded format=pdfetex) restricted \write18 enabled. entering extended mode (./signal.texi (/usr/share/texmf/tex/texinfo/texinfo.tex Loading texinfo [version 2023-09-19.19]: pdf, fonts, glyphs, page headings, tables, conditionals, indexing, sectioning, toc, environments, defuns, macros, cross references, insertions, localization, formatting, microtype, and turning on texinfo input format.) (/build/reproducible-path/octave-signal-1.4.6/doc/version.texi) (/build/reproducible-path/octave-signal-1.4.6/doc/macros.texi) Chapter 1 (/build/reproducible-path/octave-signal-1.4.6/doc/signal.aux) Writing index file signal.cp Chapter 2 [1{/var/lib/texmf/fonts/map/pdftex/updmap/pdftex.map}] Chapter 3 [2] (/build/reproducible-path/octave-signal-1.4.6/doc/functions.texi Writing index file signal.fn Overfull \hbox (24.7901pt too wide) in paragraph at lines 85--85 [] @texttt specgram (chirp ([0:0.001:5])); # default linear chirp of 0-100Hz in 1 sec[] [3] [4] [5] [6] Overfull \hbox (53.53354pt too wide) in paragraph at lines 314--314 [] @texttt set (gca, "ydir", "normal"); # put the ^^My^^M direction in the correct direction[] [7] [8] [9] [10] [11] [12] [13] [14] [15] [16] [17] Underfull \hbox (badness 7047) in paragraph at lines 1259--1263 []@textrm As a fur-ther op-ti-miza-tion when nfft@texttt >>@textrm length(a), the IIR fil-ter (b,a) is con- Underfull \hbox (badness 10000) in paragraph at lines 1259--1263 @textrm verted to the FIR fil-ter conv(b,fliplr(conj(a))). For fur-ther de-tai ls, see [18] [19] [20] Overfull \hbox (12.06592pt too wide) in paragraph at lines 1523--1525 []@textrm For the the-ory of op-er-a-tion, see `@texttt http://ccrma.stanford. edu/~jos/filters/residued.html[]@textrm '[] [21] Overfull \hbox (12.06592pt too wide) in paragraph at lines 1553--1555 []@textrm For the the-ory of op-er-a-tion, see `@texttt http://ccrma.stanford. edu/~jos/filters/residuez.html[]@textrm '[] [22] [23] [24] [25] [26] [27] [28] [29] [30] [31] [32] [33] [34] [35] [36] [37] Warning: unbalanced parentheses in @def... [38] [39] Overfull \hbox (36.28748pt too wide) in paragraph at lines 3066--3066 []@texttt h = cl2bp(30, 0.3*pi, 0.6*pi, [0.02, 1.02, 0.02], [-0.02, 0.98, -0.0 2], 2^11);[][] [40] Underfull \hbox (badness 10000) in paragraph at lines 3185--3187 []@textrm I. Se-lesnick, @texttt "@textrm Linear-Phase FIR Fil-ter De-sign by Least Squares,@texttt " [41] Overfull \hbox (30.53879pt too wide) in paragraph at lines 3228--3228 [] @texttt [n, w, beta, ftype] = kaiserord ([1000, 1200], [1, 0], [0.05, 0.05] , 11025);[] [42] [43] [44] [45] [46] [47] Overfull \hbox (13.29272pt too wide) in paragraph at lines 3734--3734 [] @texttt f0 = 70; Fs = 10000; # 100 Hz fundamental, 10kHz samplin g rate[] Overfull \hbox (13.29272pt too wide) in paragraph at lines 3735--3735 [] @texttt a = poly (0.985 * exp (1i * pi * [0.1, -0.1, 0.3, -0.3])); # two fo rmants[] [48] [49] [50] Warning: unbalanced parentheses in @def... [51] [52] Warning: unbalanced parentheses in @def... Overfull \hbox (3.85129pt too wide) in paragraph at lines 4148--4150 []@textrm [spectra,Pxx[]ci,freq] = pwelch(x,window,overlap,Nfft,Fs,conf, range ,plot[]type,detrend,sloppy) Overfull \hbox (45.0659pt too wide) in paragraph at lines 4151--4153 []@textrm [spectra,Pxx[]ci,freq] = pwelch(x,y,window,overlap,Nfft,Fs,conf, ran ge,plot[]type,detrend,sloppy,results) [53] [54] [55] Overfull \hbox (52.22pt too wide) in paragraph at lines 4385--4385 [] @texttt %% defaults: Nfft=min(length(x),256), Fs=2*pi, length(wind ow)=Nfft,[] Overfull \hbox (29.22525pt too wide) in paragraph at lines 4397--4397 [] @texttt %% NextPow2 is the next power of 2 greater than or equal t o the[] Overfull \hbox (23.47656pt too wide) in paragraph at lines 4398--4398 [] @texttt %% window length. "Sloppy", "conf" are not available. Def ault[] [56] Overfull \hbox (34.97394pt too wide) in paragraph at lines 4408--4408 [] @texttt %% defaults: length(window)==64, Nfft=max(256,NextPow2), F s=2*pi[] Overfull \hbox (29.22525pt too wide) in paragraph at lines 4410--4410 [] @texttt %% NextPow2 is the next power of 2 greater than or equal t o the[] [57] [58] Underfull \hbox (badness 10000) in paragraph at lines 4627--4630 []@textrm * Pe-ter Lynch, @texttt "@textrm The Dolph-Chebyshev Win-dow: A Sim- ple Op-ti-mal Fil- Underfull \hbox (badness 10000) in paragraph at lines 4627--4630 @textrm ter@texttt "@textrm , Monthly Weather Re-view, Vol. 125, pp. 655-660, April 1997. [59] Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... [60] [61] Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... Warning: unbalanced parentheses in @def... [62] [63] [64] [65] [66] [67] [68] Overfull \hbox (13.29272pt too wide) in paragraph at lines 5377--5377 [] @texttt stem (t(1:4:121) * 1000, y(1:31), "-r;Decimated;"); hold off; # dec imated[] [69] [70] [71] [72] [73]) [74] ) (see the transcript file for additional information) Output written on signal.pdf (74 pages, 411451 bytes). Transcript written on signal.log. make[1]: Leaving directory '/build/reproducible-path/octave-signal-1.4.6' 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-signal/ -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-signal-1.4.6/debian/octave-signal/usr/share/octave/packages /build/reproducible-path/octave-signal-1.4.6/debian/octave-signal/usr/lib/arm-linux-gnueabihf/octave/packages make[1]: Entering directory '/build/reproducible-path/octave-signal-1.4.6/src' /usr/bin/mkoctfile --verbose -Wall __fwht__.cc -o __fwht__.oct /usr/bin/mkoctfile --verbose -Wall __ultrwin__.cc -o __ultrwin__.oct g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall __fwht__.cc -o /tmp/oct-mHLfBs.o /usr/bin/mkoctfile --verbose -Wall -c cl2bp.cc -o cl2bp.o g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall __ultrwin__.cc -o /tmp/oct-qYCy94.o /usr/bin/mkoctfile --verbose -Wall -c cl2bp_lib.cc -o cl2bp_lib.o g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall cl2bp.cc -o cl2bp.o g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall cl2bp_lib.cc -o cl2bp_lib.o /usr/bin/mkoctfile --verbose -Wall -c firpm.cc -o firpm.o g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall firpm.cc -o firpm.o g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o __fwht__.oct /tmp/oct-mHLfBs.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro /usr/bin/mkoctfile --verbose -c mmfir.c -o mmfir.o gcc -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -fexceptions -g -O2 -Werror=implicit-function-declaration -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security mmfir.c -o mmfir.o /usr/bin/mkoctfile --verbose -Wall medfilt1.cc -o medfilt1.oct g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall medfilt1.cc -o /tmp/oct-wj6KNh.o g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o __ultrwin__.oct /tmp/oct-qYCy94.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro /usr/bin/mkoctfile --verbose -Wall remez.cc -o remez.oct g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall remez.cc -o /tmp/oct-DnfVuN.o /usr/bin/mkoctfile --verbose -Wall sosfilt.cc -o sosfilt.oct g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall sosfilt.cc -o /tmp/oct-6Kk65X.o g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o medfilt1.oct /tmp/oct-wj6KNh.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro /usr/bin/mkoctfile --verbose -Wall upfirdn.cc -o upfirdn.oct g++ -c -D_LARGEFILE_SOURCE -D_FILE_OFFSET_BITS=64 -D_TIME_BITS=64 -Wdate-time -D_FORTIFY_SOURCE=2 -fPIC -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall upfirdn.cc -o /tmp/oct-ufff5p.o g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o remez.oct /tmp/oct-DnfVuN.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o sosfilt.oct /tmp/oct-6Kk65X.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro /usr/bin/mkoctfile --verbose -Wall cl2bp.o cl2bp_lib.o -o cl2bp.oct g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o cl2bp.oct cl2bp.o cl2bp_lib.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro /usr/bin/mkoctfile --verbose -Wall firpm.o mmfir.o -o firpm.oct g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o firpm.oct firpm.o mmfir.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro g++ -I/usr/include/octave-9.2.0/octave/.. -I/usr/include/octave-9.2.0/octave -pthread -fopenmp -g -O2 -ffile-prefix-map=/build/reproducible-path/octave-signal-1.4.6=. -fstack-protector-strong -fstack-clash-protection -Wformat -Werror=format-security -Wall -o upfirdn.oct /tmp/oct-ufff5p.o -shared -Wl,-Bsymbolic -Wl,-z,relro -flto=auto -ffat-lto-objects -Wl,-z,relro make[1]: Leaving directory '/build/reproducible-path/octave-signal-1.4.6/src' copyfile /build/reproducible-path/octave-signal-1.4.6/./src/__fwht__.oct /build/reproducible-path/octave-signal-1.4.6/./src/__ultrwin__.oct /build/reproducible-path/octave-signal-1.4.6/./src/cl2bp.oct /build/reproducible-path/octave-signal-1.4.6/./src/firpm.oct /build/reproducible-path/octave-signal-1.4.6/./src/medfilt1.oct /build/reproducible-path/octave-signal-1.4.6/./src/remez.oct /build/reproducible-path/octave-signal-1.4.6/./src/sosfilt.oct /build/reproducible-path/octave-signal-1.4.6/./src/upfirdn.oct /build/reproducible-path/octave-signal-1.4.6/./src/__fwht__.cc-tst /build/reproducible-path/octave-signal-1.4.6/./src/__ultrwin__.cc-tst /build/reproducible-path/octave-signal-1.4.6/./src/cl2bp.cc-tst /build/reproducible-path/octave-signal-1.4.6/./src/firpm.cc-tst /build/reproducible-path/octave-signal-1.4.6/./src/medfilt1.cc-tst /build/reproducible-path/octave-signal-1.4.6/./src/remez.cc-tst /build/reproducible-path/octave-signal-1.4.6/./src/upfirdn.cc-tst /build/reproducible-path/octave-signal-1.4.6/./inst/arm-unknown-linux-gnueabihf-api-v59 For information about changes from previous versions of the signal package, run 'news signal'. rm: cannot remove '/build/reproducible-path/octave-signal-1.4.6/debian/octave-signal/usr/share/octave/packages/signal-1.4.6/doc': Is a directory dh_octave_check -O--buildsystem=octave Checking package... Run the unit tests... Checking m files ... [inst/fir2.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/fir2.m ***** xtest f = [0 0.6 0.6 1]; m = [1 1 0 0]; b9 = fir2 (30, f, m, 9); b16 = fir2 (30, f, m, 16); b17 = fir2 (30, f, m, 17); b32 = fir2 (30, f, m, 32); assert ( isequal (b9, b16)) assert ( isequal (b17, b32)) assert (~isequal (b16, b17)) ***** test f = [0, 0.7, 0.7, 1]; m = [0, 0, 1, 1]; b = fir2 (50, f, m); h = abs (freqz (b, 1, [0, 0.7, 1], 2)); assert (h(1) <= 3e-3) assert (h(2) <= 1/sqrt (2)) assert (h(3), 1, 2e-3) ***** test f = [0, 0.25, 0.25, 0.75, 0.75, 1]; m = [0, 0, 1, 1, 0, 0]; b = fir2 (50, f, m); h = abs (freqz (b, 1, [0, 0.25, 0.5, 0.75, 1], 2)); assert (h(1) <= 3e-3) assert (h(2) <= 1/sqrt (2)) assert (h(3), 1, 2e-3) assert (h(4) <= 1/sqrt (2)) assert (h(5) <= 3e-3) ***** test f = [0, 0.45, 0.45, 0.55, 0.55, 1]; m = [1, 1, 0, 0, 1, 1]; b = fir2 (50, f, m); h = abs (freqz (b, 1, [0, 0.45, 0.5, 0.55, 1], 2)); assert (h(1), 1, 2e-3) assert (h(2) <= 1/sqrt (2)) assert (h(3) <= 1e-1) assert (h(4) <= 1/sqrt (2)) assert (h(5), 1, 2e-3) ***** test #bug 59066 f = [0, 0.45, 0.45, 0.55, 0.55, 1]; m = [1, 1, 0, 0, 1, 1]; b = fir2 (int32(50), f, m); assert(numel(b), 51) fail ("fir2 (50.1, f, m)", "fir2: n must be a non negative integer") fail ("fir2 (-1, f, m)", "fir2: n must be a non negative integer") ***** demo f=[0, 0.3, 0.3, 0.6, 0.6, 1]; m=[0, 0, 1, 1/2, 0, 0]; [h, w] = freqz(fir2(100,f,m)); subplot(121); plot(f,m,';target response;',w/pi,abs(h),';filter response;'); subplot(122); plot(f,20*log10(m+1e-5),';target response (dB);',... w/pi,20*log10(abs(h)),';filter response (dB);'); ***** demo f=[0, 0.3, 0.3, 0.6, 0.6, 1]; m=[0, 0, 1, 1/2, 0, 0]; plot(f,20*log10(m+1e-5),';target response;'); hold on; [h, w] = freqz(fir2(50,f,m,512,0)); plot(w/pi,20*log10(abs(h)),';filter response (ramp=0);'); [h, w] = freqz(fir2(50,f,m,512,25.6)); plot(w/pi,20*log10(abs(h)),';filter response (ramp=pi/20 rad);'); [h, w] = freqz(fir2(50,f,m,512,51.2)); plot(w/pi,20*log10(abs(h)),';filter response (ramp=pi/10 rad);'); hold off; ***** demo % Classical Jakes spectrum % X represents the normalized frequency from 0 % to the maximum Doppler frequency asymptote = 2/3; X = linspace(0,asymptote-0.0001,200); Y = (1 - (X./asymptote).^2).^(-1/4); % The target frequency response is 0 after the asymptote X = [X, asymptote, 1]; Y = [Y, 0, 0]; plot(X,Y,'b;Target spectrum;'); hold on; [H,F]=freqz(fir2(20, X, Y)); plot(F/pi,abs(H),'c;Synthesized spectrum (n=20);'); [H,F]=freqz(fir2(50, X, Y)); plot(F/pi,abs(H),'r;Synthesized spectrum (n=50);'); [H,F]=freqz(fir2(200, X, Y)); plot(F/pi,abs(H),'g;Synthesized spectrum (n=200);'); hold off; title('Theoretical/Synthesized CLASS spectrum'); xlabel('Normalized frequency (Fs=2)'); ylabel('Magnitude'); 5 tests, 5 passed, 0 known failure, 0 skipped [inst/xcorr2.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/xcorr2.m ***** test # basic usage a = magic (5); b = [6 13 22; 10 18 23; 8 15 23]; c = [391 807 519 391 473 289 120 920 1318 1045 909 1133 702 278 995 1476 1338 1534 2040 1161 426 828 1045 1501 2047 2108 1101 340 571 1219 2074 2155 1896 821 234 473 1006 1643 1457 946 347 108 242 539 850 477 374 129 54]; assert (xcorr2 (a, b), c); ***** shared a, b, c, row_shift, col_shift row_shift = 18; col_shift = 20; a = randi (255, 30, 30); b = a(row_shift-10:row_shift, col_shift-7:col_shift); c = xcorr2 (a, b, "coeff"); ***** assert (nthargout ([1 2], @find, c == max (c(:))), {row_shift, col_shift}); # should return exact coordinates m = rand (size (b)) > 0.5; b(m) = b(m) * 0.95; b(!m) = b(!m) * 1.05; c = xcorr2 (a, b, "coeff"); ***** assert (nthargout ([1 2], @find, c == max (c(:))), {row_shift, col_shift}); # even with some small noise, should return exact coordinates ***** test # coeff of autocorrelation must be same as negative of correlation by additive inverse a = 10 * randn (100, 100); auto = xcorr2 (a, "coeff"); add_in = xcorr2 (a, -a, "coeff"); assert ([min(auto(:)), max(auto(:))], -[max(add_in(:)), min(add_in(:))]); 4 tests, 4 passed, 0 known failure, 0 skipped [inst/xcorr.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/xcorr.m ***** shared x, y x = 0.5.^(0:15); y = circshift(x,5); ***** error xcorr () ***** error xcorr (1) ***** error xcorr (x, 1, x) ***** error xcorr (x, 'none', x) ***** error xcorr (x, x, 'invalid') ***** error xcorr (x, 'invalid') ***** test [c,lags] = xcorr(x); # largest spike at 0 lag, where X matches itself - ie the center [m, im] = max(c); assert(m, 4/3, 1e-6) assert(im, (numel(lags)+1)/2); [c1,lags1] = xcorr(x, x); [m, im] = max(c1); assert(m, 4/3, 1e-6) assert(im, (numel(lags1)+1)/2); assert(c1, c, 2*eps); assert(lags1, lags); ***** test [c,lags] = xcorr(x,y); # largest spike at 0 lag, where X matches Y [m, im] = max(c); assert(m, 4/3, 1e-6) assert(lags(im), -5); ***** test [c0,lags0] = xcorr(x,y); [c1,lags1] = xcorr(x,y, 'none'); assert(c0, c1); assert(lags0, lags1); ***** test [c0,lags0] = xcorr(x,y); [c1,lags1] = xcorr(x,y, 'normalized'); assert(lags0, lags1); [m, im] = max(c1); # at 0 lag, should be 1 assert(m, 1, 1e-6); [c2,lags2] = xcorr(x,y, 'coeff'); assert(c1, c2); assert(lags1, lags2); ***** test [c0,lags0] = xcorr(x,y); [c1,lags1] = xcorr(x,y, 'biased'); assert(lags0, lags1); [m, im] = max(c1); assert(m, 1/12, 1e-6); [c1,lags1] = xcorr(x, 'biased'); assert(lags0, lags1); [m, im] = max(c1); assert(m, 1/12, 1e-6); ***** test [c0,lags0] = xcorr(x,y); [c1,lags1] = xcorr(x,y, 'unbiased'); assert(lags0, lags1); [m, im] = max(c1); assert(m, 1/8.25, 1e-6); ***** test [c,lags] = xcorr(x,y, 10); [m, im] = max(c); assert(lags(im), -5); assert(lags(1), -10); assert(lags(end), 10); [c,lags] = xcorr(x,10); [m, im] = max(c); assert(lags(1), -10); assert(lags(end), 10); ***** test [c0,lags0] = xcorr(x,y, 'normalized', 10); [c1,lags1] = xcorr(x,y, 10, 'normalized'); assert(c0, c1); assert(lags0, lags1); 14 tests, 14 passed, 0 known failure, 0 skipped [inst/uencode.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/uencode.m ***** test u = [-3:0.5:3]; y = uencode (u, 2); assert (y, [0 0 0 0 0 1 2 3 3 3 3 3 3]); ***** test u = [-4:0.5:4]; y = uencode (u, 3, 4); assert (y, [0 0 1 1 2 2 3 3 4 4 5 5 6 6 7 7 7]); ***** test u = [-8:0.5:8]; y = uencode(u, 4, 8, "unsigned"); assert (y, [0 0 1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 15]); ***** test u = [-8:0.5:8]; y = uencode(u, 4, 8, "signed"); assert (y, [-8 -8 -7 -7 -6 -6 -5 -5 -4 -4 -3 -3 -2 -2 -1 -1 0 0 1 1 2 2 3 3 4 4 5 5 6 6 7 7 7]); ***** error uencode () ***** error uencode (1) ***** error uencode (1, 2, 3, 4, 5) ***** error uencode (1, 100) ***** error uencode (1, 4, 0) ***** error uencode (1, 4, -1) ***** error uencode (1, 4, 2, "invalid") 11 tests, 11 passed, 0 known failure, 0 skipped [inst/triang.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/triang.m ***** assert (triang (1), 1) ***** assert (triang (2), [1; 1]/2) ***** assert (triang (3), [1; 2; 1]/2) ***** assert (triang (4), [1; 3; 3; 1]/4) ***** test x = bartlett (5); assert (triang (3), x(2:4)); ***** error triang () ***** error triang (0.5) ***** error triang (-1) ***** error triang (ones (1, 4)) ***** error triang (1, 2) ***** demo subplot(221); n=7; k=(n-1)/2; t=[-k:0.1:k]/(k+1); plot(t,1-abs(t),";continuous;",[-k:k]/(k+1),triang(n),"g*;discrete;"); axis([-1, 1, 0, 1.3]); grid("on"); title("comparison with continuous for odd n"); subplot(222); n=8; k=(n-1)/2; t=[-k:0.1:k]/(k+1/2); plot(t,1+1/n-abs(t),";continuous;",[-k:k]/(k+1/2),triang(n),"g*;discrete;"); axis([-1, 1, 0, 1.3]); grid("on"); title("note the higher peak for even n"); subplot(223); n=7; plot(0:n+1,bartlett(n+2),"g-*;bartlett;",triang(n),"r-+;triang;"); axis; grid("off"); title("n odd, triang(n)==bartlett(n+2)"); subplot(224); n=8; plot(0:n+1,bartlett(n+2),"g-*;bartlett;",triang(n),"r-+;triang;"); axis; grid("off"); title("n even, triang(n)!=bartlett(n+2)"); 10 tests, 10 passed, 0 known failure, 0 skipped [inst/expwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/expwin.m ***** test % even M; odd alpha: w=[0.0321 0.09385 0.184 0.3011 0.4386 0.5858 0.7289 0.8532 0.945 0.9938]; assert (expwin (20, 5), [w flip(w)]', 51e-6); ***** test % odd M; even alpha: w=[0.06202 0.1437 0.2443 0.3611 0.488 0.6172 0.7396 0.8464 0.9294 0.982]; assert (expwin (21, 4), [w 1 flip(w)]', 51e-6); ***** test % even M; odd alpha; canonical: w=[0.006738 0.06285 0.145 0.2583 0.3973 0.5507 0.7035 0.8384 0.9392 0.9931]; assert (expwin (20, 5, 'canonical'), [w flip(w)]', 51e-6); ***** test % odd M; even alpha; canonical: w=[0.01832 0.1047 0.2019 0.3187 0.4493 0.5851 0.7161 0.8317 0.9224 0.9801]; assert (expwin (21, 4, 'canonical'), [w 1 flip(w)]', 51e-6); ***** error expwin ***** error expwin (21.5,1) ***** error expwin (21i,1) ***** error expwin (21:22,1) ***** error expwin ({21},1) ***** error expwin (21, 4i) ***** error expwin (21, 2:3) ***** error expwin (21, {4}) ***** error expwin (21, 4, 1) ***** error expwin (21, 4, 'canonical', 1) 14 tests, 14 passed, 0 known failure, 0 skipped [inst/sgolay.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/sgolay.m ***** test N=2^12; t=[0:N-1]'/N; dt=t(2)-t(1); w = 2*pi*50; offset = 0.5; # 50 Hz carrier # exponential modulation and its derivatives d = 1+exp(-3*(t-offset)); dd = -3*exp(-3*(t-offset)); d2d = 9*exp(-3*(t-offset)); d3d = -27*exp(-3*(t-offset)); # modulated carrier and its derivatives x = d.*sin(w*t); dx = dd.*sin(w*t) + w*d.*cos(w*t); d2x = (d2d-w^2*d).*sin(w*t) + 2*w*dd.*cos(w*t); d3x = (d3d-3*w^2*dd).*sin(w*t) + (3*w*d2d-w^3*d).*cos(w*t); y = sgolayfilt(x,sgolay(8,41,0,dt)); assert(norm(y-x)/norm(x),0,5e-6); y = sgolayfilt(x,sgolay(8,41,1,dt)); assert(norm(y-dx)/norm(dx),0,5e-6); y = sgolayfilt(x,sgolay(8,41,2,dt)); assert(norm(y-d2x)/norm(d2x),0,1e-5); y = sgolayfilt(x,sgolay(8,41,3,dt)); assert(norm(y-d3x)/norm(d3x),0,1e-4); 1 test, 1 passed, 0 known failure, 0 skipped [inst/rectpuls.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/rectpuls.m ***** demo fs = 11025; # arbitrary sample rate f0 = 100; # pulse train sample rate w = 0.3/f0; # pulse width 1/10th the distance between pulses x = pulstran (0:1/fs:4/f0, 0:1/f0:4/f0, "rectpuls", w); plot ([0:length(x)-1]*1000/fs, x); xlabel ("Time (ms)"); ylabel ("Amplitude"); title ("Rectangular pulse train of 3 ms pulses at 10 ms intervals"); ***** assert (rectpuls ([]), []) ***** assert (rectpuls ([], 0.1), []) ***** assert (rectpuls (zeros (10, 1)), ones (10, 1)) ***** assert (rectpuls (-1:1), [0, 1, 0]) ***** assert (rectpuls (-5:5, 9), [0, ones(1,9), 0]) ***** assert (rectpuls (0:1/100:0.3, 0.1), rectpuls ([0:1/100:0.3]', 0.1)') ***** error rectpuls () ***** error rectpuls (1, 2, 3) ***** error rectpuls (1, 2j) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/data2fun.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/data2fun.m ***** shared t, y t = linspace (0, 1, 10); y = t.^2 - 2*t + 1; ***** test fhandle = data2fun (t, y); assert (y, fhandle (t)); ***** test unwind_protect # Change to temporary folder in case tester cannot write current folder olddir = pwd(); cd(tempdir()); [fhandle fname] = data2fun (t, y, "file", "testdata2fun"); yt = testdata2fun (t); assert (y, yt); assert (y, fhandle (t)); unwind_protect_cleanup unlink (fname); unlink ([fname(1:end-2) ".mat"]); cd(olddir) end_unwind_protect ***** test unwind_protect # Change to temporary folder in case tester cannot write current folder olddir = pwd(); cd(tempdir()); [fhandle fname] = data2fun (t, y, "file", ""); # generate commmand to execute using random file name cmd = sprintf ("yt = %s(t);", nthargout (2, @fileparts, fname)); eval (cmd); assert (y, yt); assert (y, fhandle (t)); unwind_protect_cleanup unlink (fname); unlink ([fname(1:end-2) ".mat"]); cd(olddir) end_unwind_protect ***** test unwind_protect # Change to temporary folder in case tester cannot write current folder olddir = pwd(); cd(tempdir()); [fhandle fname] = data2fun (t, y, "file", "testdata2fun", "interp", "linear"); yt = testdata2fun (t); assert (y, yt); assert (y, fhandle (t)); unwind_protect_cleanup unlink (fname); unlink ([fname(1:end-2) ".mat"]); cd(olddir) end_unwind_protect ***** error data2fun () ***** error data2fun (1) ***** error data2fun (1, 2, "file") 7 tests, 7 passed, 0 known failure, 0 skipped [inst/cheb2ord.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cheb2ord.m ***** demo fs = 44100; fpass = 4000; fstop = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_p); SYS = tf (b, a, 1 / fs); f = (0:fs/2)'; W = f * (2 * pi / fs); [H, P] = bode (SYS, 2 * pi * f); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev low-pass Typ II : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = 4000; fstop = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_s); SYS = tf (b, a, 1 / fs); f = (0:fs/2)'; W = f * (2 * pi / fs); [H, P] = bode (SYS, 2 * pi * f); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev low-pass Typ II : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = 4000; fpass = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_p, "high"); f = (0:fs/2)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev high-pass Typ II : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = 4000; fpass = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_s, "high"); f = (0:fs/2)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev high-pass Typ II : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [8500, 10052]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_p); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ II : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [8500, 10052]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_s); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ II : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [9182 12000]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_p); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ II : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [9182 12000]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_s); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ II : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [8500, 10834]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_p, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ II : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [8500, 10834]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_s, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ II : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [9182, 12000]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_p, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ II : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [9182, 12000]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby2 (n, Rstop, Wn_s, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ II : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = 4000; fstop = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_p, "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev low-pass Typ II : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = 4000; fstop = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_s, "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev low-pass Typ II : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = 4000; fpass = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_p, "high", "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev high-pass Typ II : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = 4000; fpass = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_s, "high", "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev high-pass Typ II : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_p, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ II : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_s, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ II : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9581, 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_p, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ II : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9581, 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_s, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ II : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_p, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ II : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_s, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ II : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9581 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_p, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ II : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9581 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb2ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby2 (n, Rstop, Wn_s, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ II : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = cheb2ord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9000, 10437], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [61074, 64640]); assert (round (Wn_s), [60201, 65578]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = cheb2ord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9581 12000], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [61074, 64640]); assert (round (Wn_s), [60199, 65580]); ***** test # Analog high-pass [n, Wn_p, Wn_s] = cheb2ord (2 * pi * 13584, 2 * pi * 4000, 1, 26, "s"); assert (n, 3); assert (round (Wn_p), 37832); assert (round (Wn_s), 25133); ***** test # Analog low-pass [n, Wn_p, Wn_s] = cheb2ord (2 * pi * 4000, 2 * pi * 13584, 1, 26, "s"); assert (n, 3); assert (round (Wn_p), 56700); assert (round (Wn_s), 85351); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = cheb2ord (2 * pi * [9000, 10437], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [61652, 64035]); assert (round (Wn_s), [62046, 63627]); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = cheb2ord (2 * pi * [9581, 12000], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [61651, 64036]); assert (round (Wn_s), [62046, 63627]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = cheb2ord (2 / fs * [9500, 9750], ... 2 / fs * [8500, 10052], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9344, 9908]); assert (round (Wn_s), [9203, 10052]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = cheb2ord (2 / fs * [9500, 9750], ... 2 / fs * [9182, 12000], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9344, 9908]); assert (round (Wn_s), [9182, 10073]); ***** test # Digital high-pass fs = 44100; [n, Wn_p, Wn_s] = cheb2ord (2 / fs * 10988, 2 / fs * 4000, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), 5829); assert (round (Wn_s), 4000); ***** test # Digital low-pass fs = 44100; [n, Wn_p, Wn_s] = cheb2ord (2 / fs * 4000, 2 / fs * 10988, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), 8197); assert (round (Wn_s), 10988); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = cheb2ord (2 / fs * [8500, 10834], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9804, 10198]); assert (round (Wn_s), [9875, 10127]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = cheb2ord (2 / fs * [9182 12000], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9804, 10198]); assert (round (Wn_s), [9875, 10127]); ***** error cheb2ord () ***** error cheb2ord (.1) ***** error cheb2ord (.1, .2) ***** error cheb2ord (.1, .2, 3) ***** error cheb2ord ([.1 .1], [.2 .2], 3, 4) ***** error cheb2ord ([.1 .2], [.5 .6], 3, 4) ***** error cheb2ord ([.1 .5], [.2 .6], 3, 4) 19 tests, 19 passed, 0 known failure, 0 skipped [inst/findpeaks.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/findpeaks.m ***** demo t = 2*pi*linspace(0,1,1024)'; y = sin(3.14*t) + 0.5*cos(6.09*t) + 0.1*sin(10.11*t+1/6) + 0.1*sin(15.3*t+1/3); data1 = abs(y); # Positive values [pks idx] = findpeaks(data1); data2 = y; # Double-sided [pks2 idx2] = findpeaks(data2,"DoubleSided"); [pks3 idx3] = findpeaks(data2,"DoubleSided","MinPeakHeight",0.5); subplot(1,2,1) plot(t,data1,t(idx),data1(idx),'xm') axis tight subplot(1,2,2) plot(t,data2,t(idx2),data2(idx2),"xm;>2*std;",t(idx3),data2(idx3),"or;>0.1;") axis tight legend("Location","NorthOutside","Orientation","horizontal") #---------------------------------------------------------------------------- # Finding the peaks of smooth data is not a big deal! ***** demo t = 2*pi*linspace(0,1,1024)'; y = sin(3.14*t) + 0.5*cos(6.09*t) + 0.1*sin(10.11*t+1/6) + 0.1*sin(15.3*t+1/3); data = abs(y + 0.1*randn(length(y),1)); # Positive values + noise [pks idx] = findpeaks(data,"MinPeakHeight",1); dt = t(2)-t(1); [pks2 idx2] = findpeaks(data,"MinPeakHeight",1,... "MinPeakDistance",round(0.5/dt)); subplot(1,2,1) plot(t,data,t(idx),data(idx),'or') subplot(1,2,2) plot(t,data,t(idx2),data(idx2),'or') #---------------------------------------------------------------------------- # Noisy data may need tuning of the parameters. In the 2nd example, # MinPeakDistance is used as a smoother of the peaks. ***** assert (isempty (findpeaks ([1, 1, 1]))) ***** assert (isempty (findpeaks ([1; 1; 1]))) ***** test ## Test input vector is an oversampled sinusoid with clipped peaks x = min (3, cos (2*pi*[0:8000] ./ 600) + 2.01); assert (! isempty (findpeaks (x))) ***** test x = [1 10 2 2 1 9 1]; [pks, loc] = findpeaks(x); assert (loc, [2 6]) assert (pks, [10 9]) ***** error findpeaks () ***** error findpeaks (1) ***** error findpeaks ([1, 2]) ***** test assert (findpeaks ([34 134 353 64 134 14 56 67 234 143 64 575 8657]), [353 134 234]) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/blackmanharris.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/blackmanharris.m ***** assert (blackmanharris (1), 1); ***** assert (blackmanharris (2), 0.00006 * ones (2, 1), eps); ***** assert (blackmanharris (15), flipud (blackmanharris (15)), 10*eps); ***** assert (blackmanharris (16), flipud (blackmanharris (16)), 10*eps); ***** assert (blackmanharris (15), blackmanharris (15, "symmetric")); ***** assert (blackmanharris (16)(1:15), blackmanharris (15, "periodic")); ***** error blackmanharris () ***** error blackmanharris (0.5) ***** error blackmanharris (-1) ***** error blackmanharris (ones (1, 4)) ***** error blackmanharris (1, 2) ***** error blackmanharris (1, "invalid") 12 tests, 12 passed, 0 known failure, 0 skipped [inst/filtfilt.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/filtfilt.m ***** error filtfilt (); ***** error filtfilt (1, 2, 3, 4); ***** error filtfilt ([0.28, 0.71, 0.28], 1, rand ()) ***** error filtfilt ([0.28, 0.71, 0.28], 1, rand (6, 1)) ***** test randn('state',0); r = randn(1,200); [b,a] = butter(10, [.2, .25]); yfb = filtfilt(b, a, r); assert (size(r), size(yfb)); assert (mean(abs(yfb)) < 1e3); assert (mean(abs(yfb)) < mean(abs(r))); ybf = fliplr(filtfilt(b, a, fliplr(r))); assert (mean(abs(ybf)) < 1e3); assert (mean(abs(ybf)) < mean(abs(r))); ***** test randn('state',0); r = randn(1,1000); s = 10 * sin(pi * 4e-2 * (1:length(r))); [b,a] = cheby1(2, .5, [4e-4 8e-2]); y = filtfilt(b, a, r+s); assert (size(r), size(y)); assert (mean(abs(y)) < 1e3); assert (corr(s(250:750)(:), y(250:750)(:)) > .95) [b,a] = butter(2, [4e-4 8e-2]); yb = filtfilt(b, a, r+s); assert (mean(abs(yb)) < 1e3); assert (corr(y(:), yb(:)) > .99) ***** test randn('state',0); r = randn(1,1000); s = 10 * sin(pi * 4e-2 * (1:length(r))); [b,a] = butter(2, [4e-4 8e-2]); y = filtfilt(b, a, [r.' s.']); yr = filtfilt(b, a, r); ys = filtfilt(b, a, s); assert (y, [yr.' ys.']); y2 = filtfilt(b.', a.', [r.' s.']); assert (y, y2); 7 tests, 7 passed, 0 known failure, 0 skipped [inst/filternorm.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/filternorm.m ***** demo b = [1 0]; a = [1 1]; L = filternorm (b, a) ***** demo [b, a] = butter(5, .5); L = filternorm (b, a) ## test input validation ***** error n = filternorm () ***** error n = filternorm (1) ***** error n = filternorm (1, 1, 1) ***** error n = filternorm (1, 1, 1, 1) ***** error n = filternorm (1, 1, 1, 1, 1) ***** error n = filternorm ([1:10]', 1) ***** error n = filternorm (1, [1:10]') ***** error n = filternorm ([1:10]', [1:10]') ***** error n = filternorm (1:10, 1:10, 1:10) ***** error n = filternorm (ones(3), ones(3)) ***** test [b, a] = butter (5, .5); L = filternorm (b, a); assert (L, sqrt(2)/2, 1e-8) ***** test [b, a] = butter (5, .5); Linf = filternorm (b, a, Inf); assert (Linf, 1, 1e-8); 12 tests, 12 passed, 0 known failure, 0 skipped [inst/welchwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/welchwin.m ***** demo m = 32; t = [0:m-1]; printf ("Graph: single period of "); printf ("%d-point periodic (blue) and symmetric (red) windows\n", m); xp = welchwin (m, "periodic"); xs = welchwin (m, "symmetric"); plot (t, xp, "b", t, xs, "r") ***** demo m = 32; t = [0:4*m-1]; printf ("Graph: 4 periods of "); printf ("%d-point periodic (blue) and symmetric (red) windows\n", m); xp = welchwin (m, "periodic"); xs = welchwin (m, "symmetric"); xp2 = repmat (xp, 4, 1); xs2 = repmat (xs, 4, 1); plot (t, xp2, "b", t, xs2, "r") ***** demo m = 32; n = 512; xp = welchwin (m, "periodic"); s = fftshift (max (1e-2, abs (fft (postpad (xp, n))))); f = [-0.5:1/n:0.5-1/n]; printf ("%dx null-padded, power spectrum of %d-point window\n", n/m, m); semilogy (f, s) ***** assert (welchwin (3), [0; 1; 0]); ***** assert (welchwin (15), flipud (welchwin (15))); ***** assert (welchwin (16), flipud (welchwin (16))); ***** assert (welchwin (15), welchwin (15, "symmetric")); ***** assert (welchwin (16)(1:15), welchwin (15, "periodic")); ***** error welchwin () ***** error welchwin (0.5) ***** error welchwin (-1) ***** error welchwin (ones (1, 4)) ***** error welchwin (1, 2, 3) ***** error welchwin (1, "invalid") 11 tests, 11 passed, 0 known failure, 0 skipped [inst/invimpinvar.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/invimpinvar.m ***** function err = ztoserr(bz,az,fs) # number of time steps n=100; # make sure system is realizable (no delays) bz=prepad(bz,length(az)-1,0,2); # inverse impulse invariant transform to s-domain [bs as]=invimpinvar(bz,az,fs); # create sys object of transfer function s=tf(bs,as); # calculate impulse response of continuous time system # at discrete time intervals 1/fs ys=impulse(s,(n-1)/fs,1/fs)'; # impulse response of discrete time system yz=filter(bz,az,[1 zeros(1,n-1)]); # find rms error err=sqrt(sum((yz*fs-ys).^2)/length(ys)); endfunction ***** assert(ztoserr([1],[1 -0.5],0.01),0,0.0001); ***** assert(ztoserr([1],[1 -1 0.25],0.01),0,0.0001); ***** assert(ztoserr([1 1],[1 -1 0.25],0.01),0,0.0001); ***** assert(ztoserr([1],[1 -1.5 0.75 -0.125],0.01),0,0.0001); ***** assert(ztoserr([1 1],[1 -1.5 0.75 -0.125],0.01),0,0.0001); ***** assert(ztoserr([1 1 1],[1 -1.5 0.75 -0.125],0.01),0,0.0001); ***** assert(ztoserr([1],[1 0 0.25],0.01),0,0.0001); ***** assert(ztoserr([1 1],[1 0 0.25],0.01),0,0.0001); ***** assert(ztoserr([1],[1 0 0.5 0 0.0625],0.01),0,0.0001); ***** assert(ztoserr([1 1],[1 0 0.5 0 0.0625],0.01),0,0.0001); ***** assert(ztoserr([1 1 1],[1 0 0.5 0 0.0625],0.01),0,0.0001); ***** assert(ztoserr([1 1 1 1],[1 0 0.5 0 0.0625],0.01),0,0.0001); 12 tests, 12 passed, 0 known failure, 0 skipped [inst/statelevels.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/statelevels.m ***** error l = statelevels() ***** error l = statelevels("test") ***** error l = statelevels(1) ***** error l = statelevels([1 2 3], 'test') ***** error l = statelevels([1 2 3], 3, 'test') ***** error l = statelevels([1 2 3], 3, 'mode', 1) ***** error l = statelevels([1 2 3], 3, 'mode', [1 -1]) ***** shared X t = linspace(0,2*pi*10,100); X = square(t) + cos(t); ***** test l = statelevels(X); assert(l, [-1.9795 1.9800], 1e5) ***** test [l, h] = statelevels(X); assert(l, [-1.9795 1.9800], 1e5) assert(sum(h), 100) assert(length(h), 100) ***** test [l, h, b] = statelevels(X); assert(l, [-1.9795 1.9800], 1e5) assert(sum(h), 100) assert(length(h), 100) assert(h(1), 4) assert(h(2), 2) assert(h(4), 1) assert(h(11), 0) assert(b(1), -1.9795, 1e5) assert(b(2), -1.9395, 1e5) ***** test [l, h, b] = statelevels(X, 100); assert(l, [-1.9795 1.9800], 1e5) assert(sum(h), 100) assert(length(h), 100) assert(h(1), 4) assert(h(2), 2) assert(h(4), 1) assert(h(11), 0) assert(b(1), -1.9795, 1e5) assert(b(2), -1.9395, 1e5) ***** test [l, h, b] = statelevels(X, 50); assert(l, [-1.9595 1.9600], 1e5) assert(sum(h), 100) assert(length(h), 50) assert(h(1), 6) assert(h(2), 3) assert(h(4), 2) assert(h(11), 1) assert(b(1), -1.9595, 1e5) assert(b(2), -1.8795, 1e5) ***** test [l, h, b] = statelevels(X, 100, 'mode'); assert(l, [-1.9795 1.9800], 1e5) assert(sum(h), 100) assert(length(h), 100) assert(h(1), 4) assert(h(2), 2) assert(h(4), 1) assert(h(11), 0) assert(b(1), -1.9795, 1e5) assert(b(2), -1.9395, 1e5) ***** test [l, h, b] = statelevels(X, 100, 'mean'); assert(l, [-1.0090 0.9532], 1e5) assert(sum(h), 100) assert(length(h), 100) assert(h(1), 4) assert(h(2), 2) assert(h(4), 1) assert(h(11), 0) assert(b(1), -1.9795, 1e5) assert(b(2), -1.9395, 1e5) ***** test [l, h, b] = statelevels(X, 100, 'mode', [-1.8 1.0]); assert(l, [-1.7860 0.0060], 1e5) assert(sum(h), 64) assert(length(h), 100) assert(h(1), 1) assert(h(2), 1) assert(h(3), 0) assert(b(1), -1.7860, 1e5) assert(b(2), -1.7580, 1e5) ***** demo # Generate test signal t = linspace(0,2*pi*10,100); X = square(t) + cos(t); # plot the waveform and provide the levels statelevels(X) 15 tests, 15 passed, 0 known failure, 0 skipped [inst/shiftdata.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/shiftdata.m ***** test X = [1 2 3; 4 5 6; 7 8 9]; [Y, perm, shifts] = shiftdata (X, 2); assert (Y, [1 4 7; 2 5 8; 3 6 9]); assert (perm, [2 1]); ***** test X = [27 42 11; 63 48 5; 67 74 93]; X(:, :, 2) = [15 23 81; 34 60 28; 70 54 38]; [Y, perm, shifts] = shiftdata(X, 2); T = [27 63 67; 42 48 74; 11 5 93]; T(:, :, 2) = [15 34 70; 23 60 54; 81 28 38]; assert(Y, T); assert(perm, [2 1 3]); ***** test X = fix (rand (4, 4, 4, 4) * 100); [Y, perm, shifts] = shiftdata (X, 3); T = 0; for i = 1:3 for j = 1:3 for k = 1:2 for l = 1:2 T = [T Y(k, i, j, l) - X(i, j, k ,l)]; endfor endfor endfor endfor assert (T, zeros (size (T))); ***** error shiftdata () ***** error shiftdata (1, 2, 3) ***** error shiftdata (1, 2.5) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/phasez.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/phasez.m ***** demo N = 2; b = ones (1, N)/N; a = 1; [phi, w] = phasez (b, a) ## test input validation ***** error n = phasez () ***** error n = phasez (1, 1, 1, 1, 1) ***** error n = phasez (1:10, 1:10, 1:10) ***** error n = phasez (ones (3), ones (3)) ***** test % moving average N = 2; b = ones (1, N)/N; a = 1; [phi, w] = phasez (b, a); PHI = -w * (N-1) /2; assert (phi, PHI, eps^(3/5)) ***** test % moving average N = 5; b = ones (1, N)/N; a = 1; [phi, w] = phasez (b, a); PHI = -w * (N-1) /2; assert (phi, PHI, eps^(3/5)) ***** test % Oppenheim - Example 5.6 - 2nd-Order IIR System % % 1 % H(z) = --------------------------- % 1 − 2r cos θz^−1 + r^2 z^−2 % % ang(H(e^jω)) = − arctan[ r sin(ω − θ) / (1 − r cos(ω − θ)) ] − arctan[ r sin(ω + θ) / (1 − r cos(ω + θ)) ] % r = 0.5; theta = pi/4; b = 1; a = [ 1 -2*r*cos(theta) r^2]; [phi, w] = phasez (b, a); PHI = - atan ( r*sin (w - theta) ./ (1 - r*cos (w - theta)) ) - atan ( r*sin (w + theta) ./ (1 - r*cos (w+theta)) ); assert (phi, PHI, eps^(3/5)) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/ismaxphase.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/ismaxphase.m ***** demo [b, a] = butter (1, .5); f = ismaxphase (b, a) ***** error n = ismaxphase () ***** error n = ismaxphase (1, 1, 1, 1) ***** error n = ismaxphase (1, 1, 1, 1, 1) ***** error n = ismaxphase ([1:10]', 1) ***** error n = ismaxphase (1, [1:10]') ***** error n = ismaxphase ([1:10]', [1:10]') ***** error n = ismaxphase (1:10, 1:10, 1:10) ***** error n = ismaxphase (ones (3), ones (3)) ***** test z1 = [0.9*exp(j*0.6*pi), 0.9*exp(-j*0.6*pi)]; z2 = [0.8*exp(j*0.8*pi), 0.8*exp(-j*0.8*pi)]; b = poly ([z1 z2]); a = 1; f = ismaxphase (b, a); assert (f, false) ***** test z1 = [0.9*exp(j*0.6*pi), 0.9*exp(-j*0.6*pi)]; z2 = [0.8*exp(j*0.8*pi), 0.8*exp(-j*0.8*pi)]; b = poly ([1./z1 1./z2]); a = 1; f = ismaxphase (b, a); assert (f, true) ***** test z1 = [0.9*exp(j*0.6*pi), 0.9*exp(-j*0.6*pi)]; z2 = [0.8*exp(j*0.8*pi), 0.8*exp(-j*0.8*pi)]; b = poly ([z1 1./z2]); a = 1; f = ismaxphase (b, a); assert (f, false) ***** test z1 = [0.9*exp(j*0.6*pi), 0.9*exp(-j*0.6*pi)]; z2 = [0.8*exp(j*0.8*pi), 0.8*exp(-j*0.8*pi)]; b = poly ([1./z1 z2]); a = 1; f = ismaxphase (b, a); assert (f, false) ***** test [b, a] = butter (1, .5); f = ismaxphase (b, a); assert (f, false) ***** test [b, a] = butter (8, .5); f = ismaxphase (b, a); assert (f, false) 14 tests, 14 passed, 0 known failure, 0 skipped [inst/bohmanwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/bohmanwin.m ***** assert (bohmanwin (1), 1) ***** assert (bohmanwin (2), zeros (2, 1)) ***** error bohmanwin () ***** error bohmanwin (0.5) ***** error bohmanwin (-1) ***** error bohmanwin (ones (1, 4)) ***** error bohmanwin (1, 2) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/czt.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/czt.m ***** shared x x = [1,2,4,1,2,3,5,2,3,5,6,7,8,4,3,6,3,2,5,1]; ***** assert(fft(x),czt(x),10000*eps); ***** assert(fft(x'),czt(x'),10000*eps); ***** assert(fft([x',x']),czt([x',x']),10000*eps); 3 tests, 3 passed, 0 known failure, 0 skipped [inst/resample.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/resample.m ***** test N=512; p=3; q=5; r=p/q; NN=ceil(r*N); t=0:N-1; tt=0:NN-1; err=zeros(N/2,1); for n = 0:N/2-1, phi0=2*pi*rand; f0=n/N; x=sin(2*pi*f0*t' + phi0); [y,h]=resample(x,p,q); xx=sin(2*pi*f0/r*tt' + phi0); t0=ceil((length(h)-1)/2/q); idx=t0+1:NN-t0; err(n+1)=max(abs(y(idx)-xx(idx))); endfor; rolloff=.1; rejection=10^-3; idx_inband=1:ceil((1-rolloff/2)*r*N/2)-1; assert(max(err(idx_inband))>>>> /build/reproducible-path/octave-signal-1.4.6/inst/fir1.m ***** demo freqz(fir1(40,0.3)); ***** demo freqz(fir1(15,[0.2, 0.5], 'stop')); # note the zero-crossing at 0.1 ***** demo freqz(fir1(15,[0.2, 0.5], 'stop', 'noscale')); ***** assert(fir1(2, .5, 'low', @hanning, 'scale'), [0 1 0]); ***** assert(fir1(2, .5, 'low', "hanning", 'scale'), [0 1 0]); ***** assert(fir1(2, .5, 'low', hanning(3), 'scale'), [0 1 0]); ***** assert(fir1(10,.5,'noscale'), fir1(10,.5,'low','hamming','noscale')); ***** assert(fir1(10,.5,'high'), fir1(10,.5,'high','hamming','scale')); ***** assert(fir1(10,.5,'boxcar'), fir1(10,.5,'low','boxcar','scale')); ***** assert(fir1(10,.5,'hanning','scale'), fir1(10,.5,'scale','hanning','low')); ***** assert(fir1(10,.5,'haNNing','NOscale'), fir1(10,.5,'noscale','Hanning','LOW')); ***** assert(fir1(10,.5,'boxcar',[]), fir1(10,.5,'boxcar')); ***** test b = fir1 (30, 0.3); h = abs (freqz (b, 1, [0, 0.3, 1], 2)); assert (h(1), 1, 1e-3) assert (all (h(2:3) <= [1/sqrt(2), 3e-3])) ***** test b = fir1 (30, 0.7, "high"); h = abs (freqz (b, 1, [0, 0.7, 1], 2)); assert (h(3), 1, 1e-3) assert (all (h(1:2) <= [3e-3, 1/sqrt(2)])) ***** test b = fir1 (30, [0.3, 0.7]); h = abs (freqz (b, 1, [0, 0.3, 0.5, 0.7, 1], 2)); assert (h(3), 1, 1e-3) assert (all (h([1:2, 4:5]) <= [3e-3, 1/sqrt(2), 1/sqrt(2), 3e-3])) ***** test b = fir1 (50, [0.3, 0.7], "stop"); h = abs (freqz (b, 1, [0, 0.3, 0.5, 0.7, 1], 2)); assert (h(1), 1, 1e-3) assert (h(5), 1, 1e-3) assert (all (h(2:4) <= [1/sqrt(2), 3e-3, 1/sqrt(2)])) 13 tests, 13 passed, 0 known failure, 0 skipped [inst/db2pow.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/db2pow.m ***** shared db db = [-10, 0, 10, 20, 25]; ***** assert (db2pow (db), [0.10000, 1.00000, 10.00000, 100.00000, 316.22777], 0.00001) ***** assert (db2pow (db'), [0.10000; 1.00000; 10.00000; 100.00000; 316.22777], 0.00001) ***** error db2pow () ***** error db2pow (1, 2) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/buttord.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/buttord.m ***** demo fs = 44100; Npts = fs / 2; fpass = 4000; fstop = 10987; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_p); f = 8000:12000; W = 2 * pi * f; [H, f] = freqz (b, a, Npts, fs); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth low-pass : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; Npts = fs / 2; fpass = 4000; fstop = 10987; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_s); f = 8000:12000; W = 2 * pi * f; [H, f] = freqz (b, a, Npts, fs); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth low-pass : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; Npts = fs / 2; fstop = 4000; fpass = 10987; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_p, "high"); f = 8000:12000; W = 2 * pi * f; [H, f] = freqz (b, a, Npts, fs); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth high-pass : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; Npts = fs / 2; fstop = 4000; fpass = 10987; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_s, "high"); f = 8000:12000; W = 2 * pi * f; [H, f] = freqz (b, a, Npts, fs); plot (f, 20 * log10 (abs (H))) title ("Digital Butterworth high-pass : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [8500 10051]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_p); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth band-pass : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [8500 10051]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_s); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth band-pass : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [9204 10700]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_p); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth band-pass : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [9204 10700]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_s); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth band-pass : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [8500 10833]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_p, "stop"); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth notch : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [8500 10833]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_s, "stop"); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth notch : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [9183 11000]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_p, "stop"); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth notch : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [9183 11000]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop) [b, a] = butter (n, Wn_s, "stop"); f = (8000:12000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Butterworth notch : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = 4000; fstop = 13583; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_p, "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))) title ("Analog Butterworth low-pass : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = 4000; fstop = 13583; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_s, "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Butterworth low-pass : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = 4000; fpass = 13583; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_p, "high", "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Butterworth high-pass : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = 4000; fpass = 13583; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_s, "high", "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Butterworth high-pass : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9000, 10436]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_p, "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth band-pass : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9000, 10436]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_s, "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth band-pass : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9582, 11000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_p, "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth band-pass : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9582, 11000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_s, "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth band-pass : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on; plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875 10126.5823]; fpass = [9000 10436]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_p, "stop", "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth notch : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875 10126.5823]; fpass = [9000 10436]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_s, "stop", "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth notch : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875 10126.5823]; fpass = [9582 11000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_p, "stop", "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth notch : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875 10126.5823]; fpass = [9582 11000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = buttord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = butter (n, Wn_s, "stop", "s"); f = 8000:12000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Butterworth notch : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , ... 0 , 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = buttord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9000, 10436], 1, 26, "s"); assert (n, 4); assert (round (Wn_p), [61903, 63775]); assert (round (Wn_s), [61575, 64114]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = buttord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9582, 11000], 1, 26, "s"); assert (n, 4); assert (round (Wn_p), [61903, 63775]); assert (round (Wn_s), [61575, 64115]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = buttord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9000, 10437], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [61850, 63830]); assert (round (Wn_s), [61848, 63831]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = buttord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9581, 11000], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [61850, 63830]); assert (round (Wn_s), [61847, 63832]); ***** test # Analog high-pass [n, Wn_p, Wn_s] = buttord (2 * pi * 13583, 2 * pi * 4000, 1, 26, "s"); assert (n, 4); assert (round (Wn_p), 72081); assert (round (Wn_s), 53101); ***** test # Analog high-pass [n, Wn_p, Wn_s] = buttord (2 * pi * 13584, 2 * pi * 4000, 1, 26, "s"); assert (n, 3); assert (round (Wn_p), 68140); assert (round (Wn_s), 68138); ***** test # Analog low-pass [n, Wn_p, Wn_s] = buttord (2 * pi * 4000, 2 * pi * 13583, 1, 26, "s"); assert (n, 4); assert (round (Wn_p), 29757); assert (round (Wn_s), 40394); ***** test # Analog low-pass [n, Wn_p, Wn_s] = buttord (2 * pi * 4000, 2 * pi * 13584, 1, 26, "s"); assert (n, 3); assert (round (Wn_p), 31481); assert (round (Wn_s), 31482); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = buttord (2 * pi * [9000, 10436], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 4); assert (round (Wn_p), [60607, 65138]); assert (round (Wn_s), [61184, 64524]); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = buttord (2 * pi * [9582, 11000], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 4); assert (round (Wn_p), [60606, 65139]); assert (round (Wn_s), [61184, 64524]); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = buttord (2 * pi * [9000, 10437], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [60722, 65015]); assert (round (Wn_s), [60726, 65011]); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = buttord (2 * pi * [9581, 11000], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [60721, 65016]); assert (round (Wn_s), [60726, 65011]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [9500, 9750], ... 2 / fs * [8500, 10051], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 4); assert (round (Wn_p), [9477, 9773]); assert (round (Wn_s), [9425, 9826]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [9500, 9750], ... 2 / fs * [9204, 10700], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 4); assert (round (Wn_p), [9477, 9773]); assert (round (Wn_s), [9425, 9826]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [9500, 9750], ... 2 / fs * [8500, 10052], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9469, 9782]); assert (round (Wn_s), [9468, 9782]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [9500, 9750], ... 2 / fs * [9203, 10700], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9469, 9782]); assert (round (Wn_s), [9468, 9782]); ***** test # Digital high-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * 10987, 2 / fs * 4000, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 4); assert (round (Wn_p), 9808); assert (round (Wn_s), 7780); ***** test # Digital high-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * 10988, 2 / fs * 4000, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), 9421); assert (round (Wn_s), 9421); ***** test # Digital low-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * 4000, 2 / fs * 10987, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 4); assert (round (Wn_p), 4686); assert (round (Wn_s), 6176); ***** test # Digital low-pass fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * 4000, 2 / fs * 10988, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), 4936); assert (round (Wn_s), 4936); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [8500, 10833], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 4); assert (round (Wn_p), [9369, 10640]); assert (round (Wn_s), [9605, 10400]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [9183, 11000], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 4); assert (round (Wn_p), [9370, 10640]); assert (round (Wn_s), [9605, 10400]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [8500, 10834], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9421, 10587]); assert (round (Wn_s), [9422, 10587]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = buttord (2 / fs * [9182, 11000], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9421, 10587]); assert (round (Wn_s), [9422, 10587]); ***** error buttord () ***** error buttord (.1) ***** error buttord (.1, .2) ***** error buttord (.1, .2, 3) ***** error buttord ([.1 .1], [.2 .2], 3, 4) ***** error buttord ([.1 .2], [.5 .6], 3, 4) ***** error buttord ([.1 .5], [.2 .6], 3, 4) 31 tests, 31 passed, 0 known failure, 0 skipped [inst/sos2tf.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/sos2tf.m ***** test B = [1, 1]; A = [1, 0.5]; [sos, g] = tf2sos (B, A); [Bh, Ah] = sos2tf (sos, g); assert (g, 1); assert (Bh, B, 10*eps); assert (Ah, A, 10*eps); ***** test B = [1, 0, 0, 0, 0, 1]; A = [1, 0, 0, 0, 0, 0.9]; [sos, g] = tf2sos (B, A); [Bh, Ah] = sos2tf (sos, g); assert (g, 1); assert (Bh, B, 100*eps); assert (Ah, A, 100*eps); ***** test B = [1, 1]; A = [1, 0.5]; [sos, g] = tf2sos (B, A); [Bh, Ah] = sos2tf (sos, 2); assert (g, 1); assert (Bh, 2 * B, 10*eps); assert (Ah, A, 10*eps); ***** test B = [1, 1]; A = [1, 0.5]; [sos, g] = tf2sos (B, A); [Bh, Ah] = sos2tf (sos, [2, 2, 2]); assert (g, 1); assert (Bh, 8 * B, 10*eps); assert (Ah, A, 10*eps); ***** test sos = [1, 1, 0, 0, 1, 0.5]; [Bh, Ah] = sos2tf (sos); assert (Bh, sos(1,1:3) , 10*eps); assert (Ah, sos(1,4:6), 10*eps); ***** test sos = [0, 1, 1, 1, 0.5, 0]; [Bh, Ah] = sos2tf (sos); assert (Bh, sos(1,1:3) , 10*eps); assert (Ah, sos(1,4:6), 10*eps); ***** test sos = [1, 1, 0, 1, 0.5, 0]; [Bh, Ah] = sos2tf (sos); assert (Bh, [1, 1] , 10*eps); assert (Ah, [1, 0.5], 10*eps); ***** test sos = [0, 1, 1, 1, 1, 0.5]; [Bh, Ah] = sos2tf (sos); assert (Bh, sos(1,1:3) , 10*eps); assert (Ah, sos(1,4:6), 10*eps); ***** test sos = [1, 1, 0, 0, 1, 0.5]; [Bh, Ah] = sos2tf (sos); assert (Bh, sos(1,1:3) , 10*eps); assert (Ah, sos(1,4:6), 10*eps); ***** test sos = [0, 1, 1, 0, 1, 0.5]; [Bh, Ah] = sos2tf (sos); assert (Bh, [1, 1] , 10*eps); assert (Ah, [1, 0.5], 10*eps); ***** test sos = [1, 1, 0, 1, 0.5, 0; 1, 1, 0, 1, 0.5, 0; 1, 1, 0, 1, 0.5, 0]; [Bh, Ah] = sos2tf (sos); assert (Bh, [1, 3, 3, 1] , 10*eps); assert (Ah, [1, 1.5 0.75 0.125], 10*eps); ***** test sos = [0, 1, 1, 0, 1, 0.5; 0, 1, 1, 0, 1, 0.5;0, 1, 1, 0, 1, 0.5]; [Bh, Ah] = sos2tf (sos); assert (Bh, [1, 3, 3, 1] , 10*eps); assert (Ah, [1, 1.5 0.75 0.125], 10*eps); 12 tests, 12 passed, 0 known failure, 0 skipped [inst/pei_tseng_notch.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/pei_tseng_notch.m ***** test ## 2Hz bandwidth sf = 800; sf2 = sf/2; data=[sinetone(49,sf,10,1),sinetone(50,sf,10,1),sinetone(51,sf,10,1)]; [b, a] = pei_tseng_notch ( 50 / sf2, 2 / sf2 ); filtered = filter ( b, a, data ); damp_db = 20 * log10 ( max ( filtered ( end - 1000 : end, : ) ) ); assert ( damp_db, [ -3 -251.9 -3 ], -0.1 ) ***** test ## 1Hz bandwidth sf = 800; sf2 = sf/2; data=[sinetone(49.5,sf,10,1),sinetone(50,sf,10,1),sinetone(50.5,sf,10,1)]; [b, a] = pei_tseng_notch ( 50 / sf2, 1 / sf2 ); filtered = filter ( b, a, data ); damp_db = 20 * log10 ( max ( filtered ( end - 1000 : end, : ) ) ); assert ( damp_db, [ -3 -240.4 -3 ], -0.1 ) ***** demo sf = 800; sf2 = sf/2; data=[[1;zeros(sf-1,1)],sinetone(49,sf,1,1),sinetone(50,sf,1,1),sinetone(51,sf,1,1)]; [b,a]=pei_tseng_notch ( 50 / sf2, 2/sf2 ); filtered = filter(b,a,data); clf subplot ( columns ( filtered ), 1, 1) plot(filtered(:,1),";Impulse response;") subplot ( columns ( filtered ), 1, 2 ) plot(filtered(:,2),";49Hz response;") subplot ( columns ( filtered ), 1, 3 ) plot(filtered(:,3),";50Hz response;") subplot ( columns ( filtered ), 1, 4 ) plot(filtered(:,4),";51Hz response;") 2 tests, 2 passed, 0 known failure, 0 skipped [inst/pulstran.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/pulstran.m ***** error pulstran ***** error pulstran(1,2,3,4,5,6) ***** ## parameter size and shape checking ***** shared t,d t = 0:0.01:1; d=0:0.1:1; ***** assert (isempty(pulstran([], d, 'sin'))); ***** assert (pulstran(t, [], 'sin'), zeros(size(t))); ***** assert (isempty(pulstran([], d, boxcar(5)))); ***** assert (pulstran(t, [], boxcar(5)), zeros(size(t))); ***** assert (size(pulstran(t,d,'sin')), size(t)); ***** assert (size(pulstran(t,d','sin')), size(t)); ***** assert (size(pulstran(t',d,'sin')), size(t')); ***** assert (size(pulstran(t,d','sin')), size(t)); ***** demo fs = 11025; # arbitrary sample rate f0 = 100; # pulse train sample rate w = 0.003; # pulse width of 3 milliseconds t = 0:1/fs:0.1; d=0:1/f0:0.1; # define sample times and pulse times a = hanning(length(d)); # define pulse amplitudes subplot(221); x = pulstran(t', d', 'rectpuls', w); plot([0:length(x)-1]*1000/fs, x); hold on; plot(d*1000,ones(size(d)),'g*;pulse;'); hold off; ylabel("amplitude"); xlabel("time (ms)"); title("rectpuls"); subplot(223); x = pulstran(f0*t, [f0*d', a], 'sinc'); plot([0:length(x)-1]*1000/fs, x); hold on; plot(d*1000,a,'g*;pulse;'); hold off; ylabel("amplitude"); xlabel("time (ms)"); title("sinc => band limited interpolation"); subplot(222); pulse = boxcar(30); # pulse width of 3 ms at 10 kHz x = pulstran(t, d', pulse, 10000); plot([0:length(x)-1]*1000/fs, x); hold on; plot(d*1000,ones(size(d)),'g*;pulse;'); hold off; ylabel("amplitude"); xlabel("time (ms)"); title("interpolated boxcar"); subplot(224); pulse = sin(2*pi*[0:0.0001:w]/w).*[w:-0.0001:0]; x = pulstran(t', [d', a], pulse', 10000); plot([0:length(x)-1]*1000/fs, x); hold on; plot(d*1000,a*w,'g*;pulse;'); hold off; title(""); ylabel("amplitude"); xlabel("time (ms)"); title("interpolated asymmetric sin"); %---------------------------------------------------------- % Should see (1) rectangular pulses centered on *, % (2) rectangular pulses to the right of *, % (3) smooth interpolation between the *'s, and % (4) asymmetric sines to the right of * 10 tests, 10 passed, 0 known failure, 0 skipped [inst/peak2peak.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/peak2peak.m ***** test X = [23 42 85; 62 46 65; 18 40 28]; Y = peak2peak (X); assert (Y, [44 6 57]); Y = peak2peak (X, 1); assert (Y, [44 6 57]); Y = peak2peak (X, 2); assert (Y, [62; 19; 22]); ***** test X = [71 62 33]; X(:, :, 2) = [88 36 21]; X(:, :, 3) = [83 46 85]; Y = peak2peak (X); T = [38]; T(:, :, 2) = [67]; T(:, :, 3) = [39]; assert (Y, T); ***** test X = [71 72 22; 16 22 50; 29 44 14]; X(:, :, 2) = [10 15 62; 1 94 30; 72 43 53]; X(:, :, 3) = [57 98 32; 84 95 51; 25 24 0]; Y = peak2peak (X); T = [55 50 36]; T(:, :, 2) = [71 79 32]; T(:, :, 3) = [59 74 51]; assert (Y, T); Y = peak2peak (X, 2); T = [50; 34; 30]; T(:, :, 2) = [52; 93; 29]; T(:, :, 3) = [66; 44; 25]; assert (Y, T); Y = peak2peak (X, 3); T = [61 83 40; 83 73 21; 47 20 53]; assert (Y, T); ***** test X = [60 61; 77 77]; X(:, :, 2) = [24 24; 22 74]; temp = [81 87; 88 62]; temp(:, :, 2) = [20 83; 81 18]; X(:, :, :, 2) = temp; Y = peak2peak (X); T = [17 16]; T(:, :, 2) = [2 50]; T2 = [7 25]; T2(:, :, 2) = [61 65]; T(:, :, :, 2) = T2; assert (Y, T); ***** error peak2peak () ***** error peak2peak (1, 2, 3) ***** error peak2peak (1, 1.5) ***** error peak2peak (1, 0) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/filtic.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/filtic.m ***** test ## Simple low pass filter b=[0.25 0.25]; a=[1.0 -0.5]; zf_ref=0.75; zf=filtic(b,a,[1.0],[1.0]); assert(zf,zf_ref,8*eps); ***** test ## Simple high pass filter b=[0.25 -0.25]; a=[1.0 0.5]; zf_ref = [-0.25]; zf=filtic(b,a,[0.0],[1.0]); assert(zf,zf_ref,8*eps); ***** test ## Second order cases [b,a]=butter(2,0.4); N=1000; ## Long enough for filter to settle xx=ones(1,N); [yy,zf_ref] = filter(b,a,xx); x=xx(N:-1:N-1); y=yy(N:-1:N-1); zf = filtic(b,a,y,x); assert(zf,zf_ref,8*eps); xx = cos(2*pi*linspace(0,N-1,N)/8); [yy,zf_ref] = filter(b,a,xx); x=xx(N:-1:N-1); y=yy(N:-1:N-1); zf = filtic(b,a,y,x); assert(zf,zf_ref,8*eps); ***** test ## Third order filter - takes longer to settle N=10000; [b,a]=cheby1(3,10,0.5); xx=ones(1,N); [yy,zf_ref] = filter(b,a,xx); x=xx(N:-1:N-2); y=yy(N:-1:N-2); zf = filtic(b,a,y,x); assert(zf,zf_ref,8*eps); ***** test ## Eight order high pass filter N=10000; [b,a]=butter(8,0.2); xx = cos(2*pi*linspace(0,N-1,N)/8); [yy,zf_ref] = filter(b,a,xx); x=xx(N:-1:N-7); y=yy(N:-1:N-7); zf = filtic(b,a,y,x); assert(zf,zf_ref,8*eps); ***** test ## Case with 3 args [b,a]=butter(2,0.4); N=100; xx=[ones(1,N) zeros(1,2)]; [yy,zf_ref] = filter(b,a,xx); y=[yy(N+2) yy(N+1)]; zf=filtic(b,a,y); assert(zf,zf_ref,8*eps); ***** test a = [2, -3, 1]; b = [4, -3]; y = [0; 1]; z = filtic (b, a, y); assert (z, [-0.5; 0]); 7 tests, 7 passed, 0 known failure, 0 skipped [inst/tukeywin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/tukeywin.m ***** demo m = 100; r = 1/3; w = tukeywin (m, r); title(sprintf("%d-point Tukey window, R = %d/%d", m, [p, q] = rat(r), q)); plot(w); ***** assert (tukeywin (1), 1) ***** assert (tukeywin (2), zeros (2, 1)) ***** assert (tukeywin (3), [0; 1; 0]) ***** assert (tukeywin (16, 0), rectwin (16)) ***** assert (tukeywin (16, 1), hanning (16)) ***** error tukeywin () ***** error tukeywin (0.5) ***** error tukeywin (-1) ***** error tukeywin (ones (1, 4)) ***** error tukeywin (1, 2, 3) 10 tests, 10 passed, 0 known failure, 0 skipped [inst/kaiser.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/kaiser.m ***** demo % use demo("kaiserord"); ***** assert (kaiser (1), 1) ***** error kaiser () ***** error kaiser (0.5) ***** error kaiser (-1) ***** error kaiser (ones (1, 4)) ***** error kaiser (1, 2, 3) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/cceps.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cceps.m ***** test x = randn (256, 1); c = cceps (x); assert (size (c), size (x)) ***** error cceps () ***** error cceps (1, 2, 3) ***** error cceps (ones (4)) ***** error cceps (0) ***** error cceps (zeros (10, 1)) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/taylorwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/taylorwin.m ***** test % odd M; even NBAR: w = [.2035 .272 .4013 .5717 .7626 .9644 1.1683 1.3598 1.5254 1.6541 1.7354 1.7629]; assert (taylorwin (23, 8, -40), [w w(end-1:-1:1)]', 51e-6); ***** test % even M; odd NBAR: w = [.4025 .4488 .5367 .6576 .8004 .9528 1.1028 1.2402 1.3573 1.4484 1.5105 1.5419]; assert (taylorwin (24, 3), [w flip(w)]', 51e-6); ***** error taylorwin ***** error taylorwin (0) ***** error taylorwin (30.5) ***** error taylorwin (30i) ***** error taylorwin (30:31) ***** error taylorwin ({30}) ***** error taylorwin (30, 0) ***** error taylorwin (30, 4.5) ***** error taylorwin (30, 4i) ***** error taylorwin (30, 2:3) ***** error taylorwin (30, {4}) ***** error taylorwin (30, 4, -30i) ***** error taylorwin (30, 4, -30:-20) ***** error taylorwin (30, 4, {-30}) ***** error taylorwin (30, 4, -30, 0:1) ***** error taylorwin (30, 4, -30, {}) ***** error taylorwin (30, 4, -30, 1, 0) ***** demo taylorwin (2000, 4, -35, 1); ***** demo taylorwin (2000, 5, -40, 1); ***** demo taylorwin (2000, 7, -50, 1); ***** demo taylorwin (2000, 11, -70, 1); 19 tests, 19 passed, 0 known failure, 0 skipped [inst/zp2sos.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/zp2sos.m ***** test B=[1 0 0 0 0 1]; A=[1 0 0 0 0 .9]; [z,p,k] = tf2zp(B,A); [sos,g] = zp2sos(z,p,k); [Bh,Ah] = sos2tf(sos,g); assert({Bh,Ah},{B,A},100*eps); ***** test sos = zp2sos ([]); assert (sos, [1, 0, 0, 1, 0, 0], 100*eps); ***** test sos = zp2sos ([], []); assert (sos, [1, 0, 0, 1, 0, 0], 100*eps); ***** test sos = zp2sos ([], [], 2); assert (sos, [2, 0, 0, 1, 0, 0], 100*eps); ***** test [sos, g] = zp2sos ([], [], 2); assert (sos, [1, 0, 0, 1, 0, 0], 100*eps); assert (g, 2, 100*eps); ***** test sos = zp2sos([], [0], 1); assert (sos, [0, 1, 0, 1, 0, 0], 100*eps); ***** test sos = zp2sos([0], [], 1); assert (sos, [1, 0, 0, 0, 1, 0], 100*eps); ***** test sos = zp2sos([-1-j -1+j], [-1-2j -1+2j], 10); assert (sos, [10, 20, 20, 1, 2, 5], 100*eps); 8 tests, 8 passed, 0 known failure, 0 skipped [inst/upsample.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/upsample.m ***** assert(upsample([1,3,5],2),[1,0,3,0,5,0]); ***** assert(upsample([1;3;5],2),[1;0;3;0;5;0]); ***** assert(upsample([1,2;5,6;9,10],2),[1,2;0,0;5,6;0,0;9,10;0,0]); ***** assert(upsample([2,4],2,1),[0,2,0,4]); ***** assert(upsample([3,4;7,8],2,1),[0,0;3,4;0,0;7,8]); 5 tests, 5 passed, 0 known failure, 0 skipped [inst/cheby1.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cheby1.m ***** error [a, b] = cheby1 () ***** error [a, b] = cheby1 (1) ***** error [a, b] = cheby1 (1, 2) ***** error [a, b] = cheby1 (1, 2, 3, 4, 5, 6) ***** error [a, b] = cheby1 (.5, 2, .2) ***** error [a, b] = cheby1 (3, 2, .2, "invalid") ***** test cheby1 (3, 4, .5); assert (isrow (ans)); ***** test A = cheby1 (3, 4, .5); assert (isrow (A)); ***** test [A, B] = cheby1 (3, 4, .5); assert (isrow (A)); assert (isrow (B)); ***** test [z, p, g] = cheby1 (3, 4, .5); assert (iscolumn (z)); assert (iscolumn (p)); assert (isscalar (g)); ***** test [a, b, c, d] = cheby1 (3, 4, .5); assert (ismatrix (a)); assert (iscolumn (b)); assert (isrow (c)); assert (isscalar (d)); 11 tests, 11 passed, 0 known failure, 0 skipped [inst/barthannwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/barthannwin.m ***** assert (barthannwin (1), 1) ***** assert (barthannwin (2), zeros (2, 1)) ***** error barthannwin () ***** error barthannwin (0.5) ***** error barthannwin (-1) ***** error barthannwin (ones (1, 4)) ***** error barthannwin (1, 2) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/gauspuls.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/gauspuls.m ***** demo fs = 11025; # arbitrary sample rate f0 = 100; # pulse train sample rate x = pulstran (0:1/fs:4/f0, 0:1/f0:4/f0, "gauspuls"); plot ([0:length(x)-1]*1000/fs, x); xlabel ("Time (ms)"); ylabel ("Amplitude"); title ("Gaussian pulse train at 10 ms intervals"); ***** assert (gauspuls ([]), []) ***** assert (gauspuls (zeros (10, 1)), ones (10, 1)) ***** assert (gauspuls (-1:1), [0, 1, 0]) ***** assert (gauspuls (0:1/100:0.3, 0.1), gauspuls ([0:1/100:0.3]', 0.1)') ***** error gauspuls () ***** error gauspuls (1, 2, 3, 4) ***** error gauspuls (1, -1) ***** error gauspuls (1, 2j) ***** error gauspuls (1, 1e3, 0) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/digitrevorder.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/digitrevorder.m ***** assert (digitrevorder (0, 2), 0); ***** assert (digitrevorder (0, 36), 0); ***** assert (digitrevorder (0:3, 4), 0:3); ***** assert (digitrevorder ([0:3]', 4), [0:3]'); ***** assert (digitrevorder (0:7, 2), [0 4 2 6 1 5 3 7]); ***** assert (digitrevorder ([0:7]', 2), [0 4 2 6 1 5 3 7]'); ***** assert (digitrevorder ([0:7]*i, 2), [0 4 2 6 1 5 3 7]*i); ***** assert (digitrevorder ([0:7]'*i, 2), [0 4 2 6 1 5 3 7]'*i); ***** assert (digitrevorder (0:15, 2), [0 8 4 12 2 10 6 14 1 9 5 13 3 11 7 15]); ***** assert (digitrevorder (0:15, 4), [0 4 8 12 1 5 9 13 2 6 10 14 3 7 11 15]); ***** error digitrevorder (); ***** error digitrevorder (1); ***** error digitrevorder (1, 2, 3); ***** error digitrevorder ([], 1); ***** error digitrevorder ([], 37); ***** error digitrevorder (0:3, 8); 16 tests, 16 passed, 0 known failure, 0 skipped [inst/cheby2.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cheby2.m ***** error [a, b] = cheby2 () ***** error [a, b] = cheby2 (1) ***** error [a, b] = cheby2 (1, 2) ***** error [a, b] = cheby2 (1, 2, 3, 4, 5, 6) ***** error [a, b] = cheby2 (.5, 40, .2) ***** error [a, b] = cheby2 (3, 40, .2, "invalid") ***** test cheby2 (3, 4, .5); assert (isrow (ans)); ***** test A = cheby2 (3, 4, .5); assert (isrow (A)); ***** test [A, B] = cheby2 (3, 4, .5); assert (isrow (A)); assert (isrow (B)); ***** test [z, p, g] = cheby2 (3, 4, .5); assert (iscolumn (z)); assert (iscolumn (p)); assert (isscalar (g)); ***** test [a, b, c, d] = cheby2 (3, 4, .5); assert (ismatrix (a)); assert (iscolumn (b)); assert (isrow (c)); assert (isscalar (d)); 11 tests, 11 passed, 0 known failure, 0 skipped [inst/pow2db.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/pow2db.m ***** shared pow pow = [0, 10, 20, 60, 100]; ***** assert (pow2db (pow), [-Inf, 10.000, 13.010, 17.782, 20.000], 0.01) ***** assert (pow2db (pow'), [-Inf; 10.000; 13.010; 17.782; 20.000], 0.01) ***** error pow2db () ***** error pow2db (1, 2) ***** error pow2db (-5) ***** error pow2db ([-5 7]) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/gausswin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/gausswin.m ***** assert (gausswin (1), 1) ***** assert (gausswin (2), [exp(-3.125); exp(-3.125)]) ***** assert (gausswin (3), [exp(-3.125); 1; exp(-3.125)]) ***** error gausswin () ***** error gausswin (0.5) ***** error gausswin (-1) ***** error gausswin (ones (1, 4)) ***** error gausswin (1, 2, 3) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/rms.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/rms.m ***** assert (rms (0), 0) ***** assert (rms (1), 1) ***** assert (rms ([1 2 -1]), sqrt (2)) ***** assert (rms ([1 2 -1]'), sqrt (2)) ***** assert (rms ([1 2], 3), [1 2]) ***** error rms () ***** error rms (1, 2, 3) ***** error rms (1, 1.5) ***** error rms (1, -1) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/rectwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/rectwin.m ***** assert (rectwin (1), 1) ***** assert (rectwin (2), ones (2, 1)) ***** assert (rectwin (100), ones (100, 1)) ***** error rectwin () ***** error rectwin (0.5) ***** error rectwin (-1) ***** error rectwin (ones (1, 4)) ***** error rectwin (1, 2) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/isallpass.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/isallpass.m ***** demo # H(z) = (b1 - z^-1) * (b2 - z^-1) / ((1 - b1*z^-1) * (1 - b2*z^-1)) b1 = 0.5 * (1 + i); b2 = 0.7 * (cos (pi/6) + i*sin (pi/6)); b = conv ([b1 -1], [b2 -1]); a = conv ([1 (-1)*conj(b1)],[1 (-1)*conj(b2)]); freqz (b, a); f = isallpass (b, a) ## test input validation ***** error n = isallpass () ***** error n = isallpass (1) ***** error n = isallpass (1, 1, 1) ***** error n = isallpass (1, 1, 1, 1) ***** error n = isallpass (1, 1, 1, 1, 1) ***** error n = isallpass ([1:10]', 1) ***** error n = isallpass (1, [1:10]') ***** error n = isallpass ([1:10]', [1:10]') ***** error n = isallpass (1:10, 1:10, 1:10) ***** error n = isallpass (ones (3), ones (3)) ***** test b = [(1+i)/2 -1]; a = [1 -(1-i)/2]; f = isallpass (b, a); assert (f, true) ***** test b = [(1+i)/2 -1]; a = [-1 (1-i)/2]; f = isallpass (b, a); assert (f, true) ***** test [b, a] = butter (1, 0.5); f = isallpass (b, a); assert (f, false) ***** test b1 = 0.5 * (1 + i); b2 = 0.7 * (cos (pi/6) + i*sin (pi/6)); b = conv ([b1 -1], [b2 -1]); a = conv ([1 -conj(b1)],[1, -conj(b2)]); f = isallpass (b, a); assert (f, true) 14 tests, 14 passed, 0 known failure, 0 skipped [inst/window.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/window.m ***** assert (window (@bartlett, 16), window ("bartlett", 16)) ***** assert (window (@hamming, 16), window ("hamming", 16)) ***** assert (window (@hanning, 16), window ("hanning", 16)) ***** assert (window (@triang, 16), window ("triang", 16)) ***** error window () ***** error window (1) ***** error window ("hanning") 7 tests, 7 passed, 0 known failure, 0 skipped [inst/nuttallwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/nuttallwin.m ***** assert (nuttallwin (1), 1) ***** assert (nuttallwin (2), zeros (2, 1), eps) ***** assert (nuttallwin (15), flipud (nuttallwin (15)), 10*eps); ***** assert (nuttallwin (16), flipud (nuttallwin (16)), 10*eps); ***** assert (nuttallwin (15), nuttallwin (15, "symmetric")); ***** assert (nuttallwin (16)(1:15), nuttallwin (15, "periodic")); ***** error nuttallwin () ***** error nuttallwin (0.5) ***** error nuttallwin (-1) ***** error nuttallwin (ones (1, 4)) ***** error nuttallwin (1, 2) ***** error nuttallwin (1, "invalid") 12 tests, 12 passed, 0 known failure, 0 skipped [inst/xcov.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/xcov.m ***** error xcov () ***** test x = 1:5; [c, l] = xcov(x); assert(c, [-4.0 -4.0 -1.0 4.0 10.0 4.0 -1.0 -4.0 -4.0], 2*eps) assert(l, [-4 -3 -2 -1 0 1 2 3 4]) ***** test x = 1:5; y = 1:5; [c, l] = xcov(x,y); assert(c, [-4.0 -4.0 -1.0 4.0 10.0 4.0 -1.0 -4.0 -4.0], 2*eps) assert(l, [-4 -3 -2 -1 0 1 2 3 4]) y = 1; [c, l] = xcov(x,y); assert(c, [4.0 10.0 4.0], 2*eps) assert(l, [-1 0 1]) ***** test x = 1:5; y = 1:5; # maxlag [c, l] = xcov(x,y, 2); assert(c, [-1.0 4.0 10.0 4.0 -1.0], 2*eps) assert(l, [-2 -1 0 1 2]) ***** test x = 1:5; y = 1:5; # scale [c, l] = xcov(x,y, 'none'); assert(c, [-4.0 -4.0 -1.0 4.0 10.0 4.0 -1.0 -4.0 -4.0], 2*eps) assert(l, [-4 -3 -2 -1 0 1 2 3 4]) [c, l] = xcov(x,y, 'biased'); assert(c, [-0.8 -0.8 -0.2 0.8 2.0 0.8 -0.2 -0.8 -0.8], 2*eps) assert(l, [-4 -3 -2 -1 0 1 2 3 4]) 5 tests, 5 passed, 0 known failure, 0 skipped [inst/vco.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/vco.m ***** error vco ***** error vco([1 2]) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/butter.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/butter.m ***** shared sf, sf2, off_db off_db = 0.5; ## Sampling frequency must be that high to make the low pass filters pass. sf = 6000; sf2 = sf/2; data=[sinetone(5,sf,10,1),sinetone(10,sf,10,1),sinetone(50,sf,10,1),sinetone(200,sf,10,1),sinetone(400,sf,10,1)]; ***** test ## Test low pass order 1 with 3dB @ 50Hz data=[sinetone(5,sf,10,1),sinetone(10,sf,10,1),sinetone(50,sf,10,1),sinetone(200,sf,10,1),sinetone(400,sf,10,1)]; [b, a] = butter ( 1, 50 / sf2 ); filtered = filter ( b, a, data ); damp_db = 20 * log10 ( max ( filtered ( end - sf : end, : ) ) ); assert ( [ damp_db( 4 ) - damp_db( 5 ), damp_db( 1 : 3 ) ], [ 6 0 0 -3 ], off_db ) ***** test ## Test low pass order 4 with 3dB @ 50Hz data=[sinetone(5,sf,10,1),sinetone(10,sf,10,1),sinetone(50,sf,10,1),sinetone(200,sf,10,1),sinetone(400,sf,10,1)]; [b, a] = butter ( 4, 50 / sf2 ); filtered = filter ( b, a, data ); damp_db = 20 * log10 ( max ( filtered ( end - sf : end, : ) ) ); assert ( [ damp_db( 4 ) - damp_db( 5 ), damp_db( 1 : 3 ) ], [ 24 0 0 -3 ], off_db ) ***** test ## Test high pass order 1 with 3dB @ 50Hz data=[sinetone(5,sf,10,1),sinetone(10,sf,10,1),sinetone(50,sf,10,1),sinetone(200,sf,10,1),sinetone(400,sf,10,1)]; [b, a] = butter ( 1, 50 / sf2, "high" ); filtered = filter ( b, a, data ); damp_db = 20 * log10 ( max ( filtered ( end - sf : end, : ) ) ); assert ( [ damp_db( 2 ) - damp_db( 1 ), damp_db( 3 : end ) ], [ 6 -3 0 0 ], off_db ) ***** test ## Test high pass order 4 with 3dB @ 50Hz data=[sinetone(5,sf,10,1),sinetone(10,sf,10,1),sinetone(50,sf,10,1),sinetone(200,sf,10,1),sinetone(400,sf,10,1)]; [b, a] = butter ( 4, 50 / sf2, "high" ); filtered = filter ( b, a, data ); damp_db = 20 * log10 ( max ( filtered ( end - sf : end, : ) ) ); assert ( [ damp_db( 2 ) - damp_db( 1 ), damp_db( 3 : end ) ], [ 24 -3 0 0 ], off_db ) ***** error [a, b] = butter () ***** error [a, b] = butter (1) ***** error [a, b] = butter (1, 2, 3, 4, 5) ***** error [a, b] = butter (.5, .2) ***** error [a, b] = butter (3, .2, "invalid") ***** error [a, b] = butter (9, .6, "stop") ***** error [a, b] = butter (9, .6, "bandpass") ***** error [a, b] = butter (9, .6, "s", "high") ***** test butter (9, .6); assert (isrow (ans)); ***** test A = butter (9, .6); assert (isrow (A)); ***** test [A, B] = butter (9, .6); assert (isrow (A)); assert (isrow (B)); ***** test [z, p, g] = butter (9, .6); assert (iscolumn (z)); assert (iscolumn (p)); assert (isscalar (g)); ***** test [a, b, c, d] = butter (9, .6); assert (ismatrix (a)); assert (iscolumn (b)); assert (isrow (c)); assert (isscalar (d)); ***** demo sf = 800; sf2 = sf/2; data=[[1;zeros(sf-1,1)],sinetone(25,sf,1,1),sinetone(50,sf,1,1),sinetone(100,sf,1,1)]; [b,a]=butter ( 1, 50 / sf2 ); filtered = filter(b,a,data); clf subplot ( columns ( filtered ), 1, 1) plot(filtered(:,1),";Impulse response;") subplot ( columns ( filtered ), 1, 2 ) plot(filtered(:,2),";25Hz response;") subplot ( columns ( filtered ), 1, 3 ) plot(filtered(:,3),";50Hz response;") subplot ( columns ( filtered ), 1, 4 ) plot(filtered(:,4),";100Hz response;") 17 tests, 17 passed, 0 known failure, 0 skipped [inst/boxcar.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/boxcar.m ***** assert (boxcar (1), 1) ***** assert (boxcar (2), ones (2, 1)) ***** assert (boxcar (100), ones (100, 1)) ***** error boxcar () ***** error boxcar (0.5) ***** error boxcar (-1) ***** error boxcar (ones (1, 4)) ***** error boxcar (1, 2) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/primitive.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/primitive.m ***** demo f = @(t) sin (2*pi*3*t); t = [0; sort(rand (100, 1))]; F = primitive (f, t, 0); t_true = linspace (0, 1, 1e3).'; F_true = (1 - cos (2 * pi * 3 * t_true)) / (2 * pi * 3); h = plot (t, F, "o;Numerical primitive;", t_true, F_true, "-;True primitive;"); set (h, "linewidth", 2); title ("Numerical primitive evaluated at random time points"); ***** error primitive () ***** error primitive (1) ***** error primitive (1, 2, 3, 4) 3 tests, 3 passed, 0 known failure, 0 skipped [inst/poisswin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/poisswin.m ***** test % even M; odd alpha: w=[0.3878 0.4308 0.4786 0.5318 0.5908 0.6564 0.7292 0.8102 0.9001 1]; assert (poisswin (20, 1), [w flip(w)]', 51e-6); ***** test % odd M; even alpha: w=[0.1353 0.1653 0.2019 0.2466 0.3012 0.3679 0.4493 0.5488 0.6703 0.8187]; assert (poisswin (21, 2), [w 1 flip(w)]', 51e-6); ***** error poisswin ***** error poisswin (21.5,1) ***** error poisswin (21i,1) ***** error poisswin (21:22,1) ***** error poisswin ({21},1) ***** error poisswin (21, 4i) ***** error poisswin (21, 2:3) ***** error poisswin (21, {4}) ***** error poisswin (21, 4, 1) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/flattopwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/flattopwin.m ***** assert (flattopwin (1), 1); ***** assert (flattopwin (2), 0.0042 / 4.6402 * ones (2, 1), eps); ***** assert (flattopwin (15), flipud (flattopwin (15)), 10*eps); ***** assert (flattopwin (16), flipud (flattopwin (16)), 10*eps); ***** assert (flattopwin (15), flattopwin (15, "symmetric")); ***** assert (flattopwin (16)(1:15), flattopwin (15, "periodic")); ***** error flattopwin () ***** error flattopwin (0.5) ***** error flattopwin (-1) ***** error flattopwin (ones (1, 4)) ***** error flattopwin (1, 2) ***** error flattopwin (1, 2, 3) ***** error flattopwin (1, "invalid") 13 tests, 13 passed, 0 known failure, 0 skipped [inst/isstable.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/isstable.m ***** test b = [1 2 3 4 5 5 1 2]; a = []; assert (isstable (b,a), true) ***** test b = [1 2 3 4 5 5 1 2]; a = [4 5 6 7 9 10 4 6]; assert (isstable (b,a), false) ***** test b = [1 2 3 4 5 5 1 2]; a = [4 5 6 7 9 10 4 6]; a = polystab(a); assert (isstable (b,a), true) ***** test [z,p,g] = butter(6,0.7,'high'); sos = zp2sos(z,p,g); assert (isstable(sos) , true) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/rceps.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/rceps.m ***** test ## accepts matrices x = randn (32, 3); [y, xm] = rceps (x); ## check the mag-phase response of the reproduction hx = fft (x); hxm = fft (xm); assert (abs (hx), abs (hxm), 200*eps); # good magnitude response match ## FIXME: test for minimum phase? Stop using random datasets! #assert (arg (hx) != arg (hxm)); # phase mismatch ***** test ## accepts column and row vectors x = randn (256, 1); [y, xm] = rceps (x); [yt, xmt] = rceps (x.'); assert (yt.', y, 1e-14); assert (xmt.', xm, 1e-14); ***** test x = randn (33, 4); [y, xm] = rceps (x); assert (size (y), size (x)); assert (size (xm), size (x)); ***** error rceps ***** error rceps (1, 2) ***** error rceps (0) ***** error rceps (zeros (10, 1)) ***** demo f0 = 70; Fs = 10000; # 100 Hz fundamental, 10 kHz sampling rate a = real (poly (0.985 * exp (1i * pi * [0.1, -0.1, 0.3, -0.3]))); # two formants s = 0.05 * randn (1024, 1); # Noise excitation signal s(floor (1:Fs/f0:length (s))) = 1; # Impulse glottal wave x = filter (1, a, s); # Speech signal in x [y, xm] = rceps (x); # cepstrum and minimum phase x [hx, w] = freqz (x, 1, [], Fs); hxm = freqz (xm); figure (1); subplot (311); len = 1000 * fix (min (length (x), length (xm)) / 1000); plot ([0:len-1] * 1000 / Fs, x(1:len), "b;signal;", ... [0:len-1] * 1000 / Fs, xm(1:len), "g;reconstruction;"); ylabel ("Amplitude"); xlabel ("Time (ms)"); subplot (312); axis ("ticy"); plot (w, log (abs (hx)), ";magnitude;", ... w, log (abs (hxm)), ";reconstruction;"); xlabel ("Frequency (Hz)"); subplot (313); axis ("on"); plot (w, unwrap (arg (hx)) / (2 * pi), ";phase;", ... w, unwrap (arg (hxm)) / (2 * pi), ";reconstruction;"); xlabel ("Frequency (Hz)"); len = 1000 * fix (length (y) / 1000); figure (2); plot ([0:len-1] * 1000 / Fs, y(1:len), ";cepstrum;"); ylabel ("Amplitude"); xlabel ("Quefrency (ms)"); %------------------------------------------------------------- % confirm the magnitude spectrum is identical in the signal % and the reconstruction and that there are peaks in the % cepstrum at 14 ms intervals corresponding to an F0 of 70 Hz. 7 tests, 7 passed, 0 known failure, 0 skipped [inst/gaussian.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/gaussian.m ***** assert (gaussian (1), 1) ***** error gaussian () ***** error gaussian (0.5) ***** error gaussian (-1) ***** error gaussian (ones (1, 4)) ***** error gaussian (1, 2, 3) 6 tests, 6 passed, 0 known failure, 0 skipped [inst/cheb1ord.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cheb1ord.m ***** demo fs = 44100; fpass = 4000; fstop = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_p); SYS = tf (b, a, 1 / fs); f = (0:fs/2)'; W = f * (2 * pi / fs); [H, P] = bode (SYS, 2 * pi * f); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev low-pass Typ I : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = 4000; fstop = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_s); SYS = tf (b, a, 1 / fs); f = (0:fs/2)'; W = f * (2 * pi / fs); [H, P] = bode (SYS, 2 * pi * f); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev low-pass Typ I : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = 4000; fpass = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_p, "high"); f = (0:fs/2)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev high-pass Typ I : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = 4000; fpass = 10988; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_s, "high"); f = (0:fs/2)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev high-pass Typ I : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [8500, 10052]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_p); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ I : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [8500, 10052]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_s); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ I : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [9182 12000]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_p); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ I : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fpass = [9500 9750]; fstop = [9182 12000]; Rpass = 1; Rstop = 26; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_s); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev band-pass Typ I : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [8500, 10834]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_p, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ I : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [8500, 10834]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_s, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ I : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [9182, 12000]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_p, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ I : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fs = 44100; fstop = [9875, 10126.5823]; fpass = [9182, 12000]; Rpass = 0.5; Rstop = 40; Wpass = 2 / fs * fpass; Wstop = 2 / fs * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop) [b, a] = cheby1 (n, Rpass, Wn_s, "stop"); f = (6000:14000)'; W = f * (2 * pi / fs); H = freqz (b, a, W); Ampl = abs (H); plot (f, 20 * log10 (abs (H))); title ("Digital Chebyshev notch Typ I : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on; plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = 4000; fstop = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_p, "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev low-pass Typ I : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = 4000; fstop = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_s, "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev low-pass Typ I : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on; plot (outline_lp_pass_x, outline_lp_pass_y, "m"); plot (outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = 4000; fpass = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_p, "high", "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev high-pass Typ I : matching pass band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = 4000; fpass = 13584; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_s, "high", "s"); f = 1000:10:100000; W = 2 * pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))); title ("Analog Chebyshev high-pass Typ I : matching stop band"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on; plot (outline_hp_pass_x, outline_hp_pass_y, "m"); plot (outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_p, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ I : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_s, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ I : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9581, 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_p, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ I : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fpass = [9875, 10126.5823]; fstop = [9581, 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_s, "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev band-pass Typ I : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , ... -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m"); plot (outline_bp_stop_x, outline_bp_stop_y, "m"); grid on; ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_p, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ I : matching pass band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9000, 10437]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_s, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ I : matching stop band, limit on upper freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9581 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_p, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ I : matching pass band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** demo fstop = [9875, 10126.5823]; fpass = [9581 12000]; Rpass = 1; Rstop = 26; Wpass = 2 * pi * fpass; Wstop = 2 * pi * fstop; [n, Wn_p, Wn_s] = cheb1ord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = cheby1 (n, Rpass, Wn_s, "stop", "s"); f = 6000:14000; W = 2 * pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))); title ("Analog Chebyshev notch Typ I : matching stop band, limit on lower freq"); xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); grid on; outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), ... fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0, 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m"); plot (outline_notch_pass_x_b, outline_notch_pass_y_b, "m"); plot (outline_notch_stop_x, outline_notch_stop_y, "m"); ylim ([-80, 0]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = cheb1ord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9000, 10437], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [62046, 63627]); assert (round (Wn_s), [61652, 64035]); ***** test # Analog band-pass [n, Wn_p, Wn_s] = cheb1ord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9581 12000], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [62046, 63627]); assert (round (Wn_s), [61651, 64036]); ***** test # Analog high-pass [n, Wn_p, Wn_s] = cheb1ord (2 * pi * 13584, 2 * pi * 4000, 1, 26, "s"); assert (n, 3); assert (round (Wn_p), 85351); assert (round (Wn_s), 56700); ***** test # Analog low-pass [n, Wn_p, Wn_s] = cheb1ord (2 * pi * 4000, 2 * pi * 13584, 1, 26, "s"); assert (n, 3); assert (round (Wn_p), 25133); assert (round (Wn_s), 37832); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = cheb1ord (2 * pi * [9000, 10437], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [60201, 65578]); assert (round (Wn_s), [61074, 64640]); ***** test # Analog notch (narrow band-stop) [n, Wn_p, Wn_s] = cheb1ord (2 * pi * [9581, 12000], ... 2 * pi * [9875, 10126.5823], 1, 26, "s"); assert (n, 3); assert (round (Wn_p), [60199, 65580]); assert (round (Wn_s), [61074, 64640]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = cheb1ord (2 / fs * [9500, 9750], ... 2 / fs * [8500, 10052], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9500, 9750]); assert (round (Wn_s), [9437, 9814]); ***** test # Digital band-pass fs = 44100; [n, Wn_p, Wn_s] = cheb1ord (2 / fs * [9500, 9750], ... 2 / fs * [9182, 12000], 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9500, 9750]); assert (round (Wn_s), [9428, 9823]); ***** test # Digital high-pass fs = 44100; [n, Wn_p, Wn_s] = cheb1ord (2 / fs * 10988, 2 / fs * 4000, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), 10988); assert (round (Wn_s), 8197); ***** test # Digital low-pass fs = 44100; [n, Wn_p, Wn_s] = cheb1ord (2 / fs * 4000, 2 / fs * 10988, 1, 26); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), 4000); assert (round (Wn_s), 5829); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = cheb1ord (2 / fs * [8500, 10834], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9182, 10834]); assert (round (Wn_s), [9475, 10532]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn_p, Wn_s] = cheb1ord (2 / fs * [9182 12000], ... 2 / fs * [9875, 10126.5823], 0.5, 40); Wn_p = Wn_p * fs / 2; Wn_s = Wn_s * fs / 2; assert (n, 3); assert (round (Wn_p), [9182, 10834]); assert (round (Wn_s), [9475, 10532]); ***** error cheb1ord () ***** error cheb1ord (.1) ***** error cheb1ord (.1, .2) ***** error cheb1ord (.1, .2, 3) ***** error cheb1ord ([.1 .1], [.2 .2], 3, 4) ***** error cheb1ord ([.1 .2], [.5 .6], 3, 4) ***** error cheb1ord ([.1 .5], [.2 .6], 3, 4) 19 tests, 19 passed, 0 known failure, 0 skipped [inst/upsamplefill.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/upsamplefill.m ***** assert(upsamplefill([1,3,5],2),[1,2,3,2,5,2]); ***** assert(upsamplefill([1;3;5],2),[1;2;3;2;5;2]); ***** assert(upsamplefill([1,2,5],[2 -2]),[1,2,-2,2,2,-2,5,2,-2]); ***** assert(upsamplefill(eye(2),2,true),[1,0;1,0;1,0;0,1;0,1;0,1]); ***** assert(upsamplefill([1,3,5],2,true),[1,1,1,3,3,3,5,5,5]); ***** assert(upsamplefill([1;3;5],2,true),[1;1;1;3;3;3;;5;5;5]); 6 tests, 6 passed, 0 known failure, 0 skipped [inst/ifwht.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/ifwht.m ***** assert (isempty (ifwht ([]))); ***** assert (ifwht (zeros (16)), zeros (16)); ***** assert (ifwht ([1; (zeros (15, 1))]), ones (16, 1)); ***** assert (ifwht (zeros (17, 1)), zeros (32, 1)); ***** assert (ifwht ([0 0 0 0 0 0 0 1]), [1 -1 1 -1 1 -1 1 -1]); ***** error ifwht (); ***** error ifwht (1, 2, 3, 4); ***** error ifwht (0, 0); ***** error ifwht (0, 5); ***** error ifwht (0, [], "invalid"); 10 tests, 10 passed, 0 known failure, 0 skipped [inst/convmtx.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/convmtx.m ***** assert(convmtx([3,4,5],3),[3,4,5,0,0;0,3,4,5,0;0,0,3,4,5]) ***** assert(convmtx([3;4;5],3),[3,0,0;4,3,0;5,4,3;0,5,4;0,0,5]) 2 tests, 2 passed, 0 known failure, 0 skipped [inst/impz.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/impz.m ***** assert (size (impz (1, [1 -1 0.9], 100)), [100 1]) ***** xtest [h, t] = impz (1, [1 -1 0.9], 0:101); assert (size (h), [101 1]) assert (t, 0:101) !!!!! known failure impz: N must be empty or a scalar 2 tests, 1 passed, 1 known failure, 0 skipped [inst/fwht.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/fwht.m ***** assert (isempty (fwht ([]))); ***** assert (fwht (zeros (16)), zeros (16)); ***** assert (fwht (ones (16, 1)), [1; (zeros (15, 1))]); ***** assert (fwht (zeros (17, 1)), zeros (32, 1)); ***** assert (fwht ([1 -1 1 -1 1 -1 1 -1]), [0 0 0 0 0 0 0 1]); ***** test x = randi (16, 16); assert (ifwht (fwht (x)), x); ***** test x = randi (16, 16); assert (ifwht (fwht (x, [], "sequency"), [], "sequency"), x); ***** test x = randi (16, 16); assert (ifwht (fwht (x, [], "hadamard"), [], "hadamard"), x); ***** test x = randi (16, 16); assert (ifwht (fwht (x, [], "dyadic"), [], "dyadic"), x); ***** error fwht (); ***** error fwht (1, 2, 3, 4); ***** error fwht (0, 0); ***** error fwht (0, 5); ***** error fwht (0, [], "invalid"); 14 tests, 14 passed, 0 known failure, 0 skipped [inst/udecode.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/udecode.m ***** test u = [0 0 0 0 0 1 2 3 3 3 3 3 3]; y = udecode(u, 2); assert(y, [-1 -1 -1 -1 -1 -0.5 0 0.5 0.5 0.5 0.5 0.5 0.5]); ***** test u = [0 1 2 3 4 5 6 7 8 9 10]; y = udecode(u, 2, 1, "saturate"); assert(y, [-1 -0.5 0 0.5 0.5 0.5 0.5 0.5 0.5 0.5 0.5]); ***** test u = [0 1 2 3 4 5 6 7 8 9 10]; y = udecode(u, 2, 1, "wrap"); assert(y, [-1 -0.5 0 0.5 -1 -0.5 0 0.5 -1 -0.5 0]); ***** test u = [-4 -3 -2 -1 0 1 2 3]; y = udecode(u, 3, 2); assert(y, [-2, -1.5 -1 -0.5 0 0.5 1 1.5]); ***** test u = [-7 -6 -5 -4 -3 -2 -1 0 1 2 3 4 5 6 7]; y = udecode(u, 3, 2, "saturate"); assert(y, [-2 -2 -2 -2 -1.5 -1 -0.5 0 0.5 1 1.5 1.5 1.5 1.5 1.5]); ***** test u = [-7 -6 -5 -4 -3 -2 -1 0 1 2 3 4 5 6 7]; y = udecode(u, 3, 2, "wrap"); assert(y, [0.5 1 1.5 -2 -1.5 -1 -0.5 0 0.5 1 1.5 -2 -1.5 -1 -0.5]); ***** error udecode () ***** error udecode (1) ***** error udecode (1, 2, 3, 4, 5) ***** error udecode (1.5) ***** error udecode (1, 100) ***** error udecode (1, 4, 0) ***** error udecode (1, 4, -1) ***** error udecode (1, 4, 2, "invalid") 14 tests, 14 passed, 0 known failure, 0 skipped [inst/unshiftdata.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/unshiftdata.m ***** test x = 1:5; [y, perm, shifts] = shiftdata (x); x2 = unshiftdata (y, perm, shifts); assert (x, x2); ***** test X = fix (rand (3, 3) * 100); [Y, perm, shifts] = shiftdata (X, 2); X2 = unshiftdata (Y, perm, shifts); assert (X, X2); ***** test X = fix (rand (4, 4, 4, 4) * 100); [Y, perm, shifts] = shiftdata (X, 3); X2 = unshiftdata (Y, perm, shifts); assert (X, X2); ***** test X = fix (rand (1, 1, 3, 4) * 100); [Y, perm, shifts] = shiftdata (X); X2 = unshiftdata (Y, perm, shifts); assert (X, X2); ***** error unshiftdata () ***** error unshiftdata (1, 2) ***** error unshiftdata (1, 2, 3, 4) ***** error unshiftdata (1, 2.5) ***** error unshiftdata (1, [], 2.5) ***** error unshiftdata (1, [], []) 10 tests, 10 passed, 0 known failure, 0 skipped [inst/grpdelay.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/grpdelay.m ***** demo % 1 %-------------------------------------------------------------- % From Oppenheim and Schafer, a single zero of radius r=0.9 at % angle pi should have a group delay of about -9 at 1 and 1/2 % at zero and 2*pi. %-------------------------------------------------------------- grpdelay([1 0.9],[],512,'whole',1); hold on; xlabel('Normalized Frequency (cycles/sample)'); stem([0, 0.5, 1],[0.5, -9, 0.5],'*b;target;'); hold off; title ('Zero at z = -0.9'); ***** demo % 2 %-------------------------------------------------------------- % confirm the group delays approximately meet the targets % don't worry that it is not exact, as I have not entered % the exact targets. %-------------------------------------------------------------- b = poly([1/0.9*exp(1i*pi*0.2), 0.9*exp(1i*pi*0.6)]); a = poly([0.9*exp(-1i*pi*0.6), 1/0.9*exp(-1i*pi*0.2)]); grpdelay(b,a,512,'whole',1); hold on; xlabel('Normalized Frequency (cycles/sample)'); stem([0.1, 0.3, 0.7, 0.9], [9, -9, 9, -9],'*b;target;'); hold off; title ('Two Zeros and Two Poles'); ***** demo % 3 %-------------------------------------------------------------- % fir lowpass order 40 with cutoff at w=0.3 and details of % the transition band [.3, .5] %-------------------------------------------------------------- subplot(211); Fs = 8000; % sampling rate Fc = 0.3*Fs/2; % lowpass cut-off frequency nb = 40; b = fir1(nb,2*Fc/Fs); % matlab freq normalization: 1=Fs/2 [H,f] = freqz(b,1,[],1); [gd,f] = grpdelay(b,1,[],1); plot(f,20*log10(abs(H))); title(sprintf('b = fir1(%d,2*%d/%d);',nb,Fc,Fs)); xlabel('Normalized Frequency (cycles/sample)'); ylabel('Amplitude Response (dB)'); grid('on'); subplot(212); del = nb/2; % should equal this plot(f,gd); title(sprintf('Group Delay in Pass-Band (Expect %d samples)',del)); ylabel('Group Delay (samples)'); axis([0, 0.2, del-1, del+1]); ***** demo % 4 %-------------------------------------------------------------- % IIR bandstop filter has delays at [1000, 3000] %-------------------------------------------------------------- Fs = 8000; [b, a] = cheby1(3, 3, 2*[1000, 3000]/Fs, 'stop'); [H,f] = freqz(b,a,[],Fs); [gd,f] = grpdelay(b,a,[],Fs); subplot(211); plot(f,abs(H)); title('[b,a] = cheby1(3, 3, 2*[1000, 3000]/Fs, "stop");'); xlabel('Frequency (Hz)'); ylabel('Amplitude Response'); grid('on'); subplot(212); plot(f,gd); title('[gd,f] = grpdelay(b,a,[],Fs);'); ylabel('Group Delay (samples)'); ***** test % 00 [gd1,w] = grpdelay([0,1]); [gd2,w] = grpdelay([0,1],1); assert(gd1,gd2,10*eps); ***** test % 0A [gd,w] = grpdelay([0,1],1,4); assert(gd,[1;1;1;1]); assert(w,pi/4*[0:3]',10*eps); ***** test % 0B [gd,w] = grpdelay([0,1],1,4,'whole'); assert(gd,[1;1;1;1]); assert(w,pi/2*[0:3]',10*eps); ***** test % 0C [gd,f] = grpdelay([0,1],1,4,0.5); assert(gd,[1;1;1;1]); assert(f,1/16*[0:3]',10*eps); ***** test % 0D [gd,w] = grpdelay([0,1],1,4,'whole',1); assert(gd,[1;1;1;1]); assert(w,1/4*[0:3]',10*eps); ***** test % 0E [gd,f] = grpdelay([1 -0.9j],[],4,'whole',1); gd0 = 0.447513812154696; gdm1 =0.473684210526316; assert(gd,[gd0;-9;gd0;gdm1],20*eps); assert(f,1/4*[0:3]',10*eps); ***** test % 1A: gd= grpdelay(1,[1,.9],2*pi*[0,0.125,0.25,0.375]); assert(gd, [-0.47368;-0.46918;-0.44751;-0.32316],1e-5); ***** test % 1B: gd= grpdelay(1,[1,.9],[0,0.125,0.25,0.375],1); assert(gd, [-0.47368;-0.46918;-0.44751;-0.32316],1e-5); ***** test % 2: gd = grpdelay([1,2],[1,0.5,.9],4); assert(gd,[-0.29167;-0.24218;0.53077;0.40658],1e-5); ***** test % 3 b1=[1,2];a1f=[0.25,0.5,1];a1=fliplr(a1f); % gd1=grpdelay(b1,a1,4); gd=grpdelay(conv(b1,a1f),1,4)-2; assert(gd, [0.095238;0.239175;0.953846;1.759360],1e-5); ***** test % 4 warning ("off", "signal:grpdelay-singularity", "local"); Fs = 8000; [b, a] = cheby1(3, 3, 2*[1000, 3000]/Fs, 'stop'); [h, w] = grpdelay(b, a, 256, 'half', Fs); [h2, w2] = grpdelay(b, a, 512, 'whole', Fs); assert (size(h), size(w)); assert (length(h), 256); assert (size(h2), size(w2)); assert (length(h2), 512); assert (h, h2(1:256)); assert (w, w2(1:256)); ***** test % 5 a = [1 0 0.9]; b = [0.9 0 1]; [dh, wf] = grpdelay(b, a, 512, 'whole'); [da, wa] = grpdelay(1, a, 512, 'whole'); [db, wb] = grpdelay(b, 1, 512, 'whole'); assert(dh,db+da,1e-5); ***** test DR= [1.00000 -0.00000 -3.37219 0.00000 ... 5.45710 -0.00000 -5.24394 0.00000 ... 3.12049 -0.00000 -1.08770 0.00000 0.17404]; N = [-0.0139469 -0.0222376 0.0178631 0.0451737 ... 0.0013962 -0.0259712 0.0016338 0.0165189 ... 0.0115098 0.0095051 0.0043874]; assert (nthargout (1:2, @grpdelay, N, DR, 1024), nthargout (1:2, @grpdelay, N', DR', 1024)); 13 tests, 13 passed, 0 known failure, 0 skipped [inst/sos2zp.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/sos2zp.m ***** test b1t=[1 2 3]; a1t=[1 .2 .3]; b2t=[4 5 6]; a2t=[1 .4 .5]; sos=[b1t a1t; b2t a2t]; z = [-1-1.41421356237310i;-1+1.41421356237310i;... -0.625-1.05326872164704i;-0.625+1.05326872164704i]; p = [-0.2-0.678232998312527i;-0.2+0.678232998312527i;... -0.1-0.538516480713450i;-0.1+0.538516480713450i]; k = 4; [z2,p2,k2] = sos2zp(sos,1); assert({cplxpair(z2),cplxpair(p2),k2},{z,p,k},100*eps); ***** test sos = [1, 1, 0, 1, 1, 0.5]; [Z, P] = sos2zp (sos); assert (Z, roots (sos(1,1:3)), 10*eps); assert (P, roots (sos(1,4:6)), 10*eps); ***** test sos = [0, 1, 1, 1, 0.5, 0]; [Z, P] = sos2zp (sos); assert (Z, roots (sos(1,1:3)), 10*eps); assert (P, roots (sos(1,4:6)), 10*eps); ***** test sos = [1, 1, 0, 1, 0.5, 0]; [Z, P] = sos2zp (sos); assert (Z, roots (sos(1,1:3)), 10*eps); assert (P, roots (sos(1,4:6)), 10*eps); ***** test sos = [0, 1, 1, 1, 1, 0.5]; [Z, P] = sos2zp (sos); assert (Z, roots (sos(1,1:3)), 10*eps); assert (P, roots (sos(1,4:6)), 10*eps); ***** test sos = [1, 1, 0, 0, 1, 0.5]; [Z, P] = sos2zp (sos); assert (Z, roots (sos(1,1:3)), 10*eps); assert (P, roots (sos(1,4:6)), 10*eps); ***** test sos = [0, 1, 1, 0, 1, 0.5]; [Z, P] = sos2zp (sos); assert (Z, roots (sos(1,1:3)), 10*eps); assert (P, roots (sos(1,4:6)), 10*eps); 7 tests, 7 passed, 0 known failure, 0 skipped [inst/downsample.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/downsample.m ***** assert(downsample([1,2,3,4,5],2),[1,3,5]); ***** assert(downsample([1;2;3;4;5],2),[1;3;5]); ***** assert(downsample([1,2;3,4;5,6;7,8;9,10],2),[1,2;5,6;9,10]); ***** assert(downsample([1,2,3,4,5],2,1),[2,4]); ***** assert(downsample([1,2;3,4;5,6;7,8;9,10],2,1),[3,4;7,8]); 5 tests, 5 passed, 0 known failure, 0 skipped [inst/fht.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/fht.m ***** assert( fht([1 2 3 4]),[10 -4 -2 0] ) 1 test, 1 passed, 0 known failure, 0 skipped [inst/lpc.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/lpc.m ***** demo noise = randn (10000, 1); x = filter (1, [1 1/2 1/4 1/8], noise); x = x(end-4096:end); [a, g] = lpc (x, 3); xe = filter ([0 -a(2:end)], 1, x); e = x - xe; [ac, k] = xcorr (e, "coeff"); subplot (2,1,1); plot (x(1:100), "b-", xe(1:100), "r--"); xlabel ("sample"); ylabel ("amplitude"); legend ("original","LPC estimate"); subplot (2,1,2); plot (k,ac,"b-"); xlabel ("lag"); title ("autocorrelation of prediction error"); ***** demo if !isempty ( pkg ("list", "ltfat") ) pkg load ltfat [sig, fs] = linus; x = sig(13628:14428); [a, g] = lpc (x, 8); F = round (sort (unique (abs (angle (roots (a))))) * fs / (2 * pi) ); [h, w] = freqz (1, a, 512, "whole"); subplot (2, 1, 1); plot ( 1E3 * [0:1/fs:(length (x)-1)*1/fs], x); xlabel ("time (ms)"); ylabel ("Amplitude"); title ( "'linus' test signal" ); subplot (2, 1, 2); plot (w(1:256)/pi, 20*log10 (abs (h(1:256)))); xlabel ("Normalized Frequency ({\\times \\pi} rad/sample)") ylabel ("Magnitude (dB)") txt = sprintf (['Signal sampling rate = %d kHz\nFormant frequencies: ' ... '\nF1 = %d Hz\nF2 = %d Hz\nF3 = %d Hz\nF4 = %d Hz'], fs/1E3, ... F(1), F(2), F(3), F(4)); text (0.6, 20, txt); endif ## test input validation ***** error [a, g] = lpc () ***** error [a, g] = lpc (1) ***** error [a, g] = lpc (1, 1) ***** error [a, g] = lpc (1, 1, 1) ***** error [a, g] = lpc (1:10, 0) ***** error [a, g] = lpc (1:10, 10) ***** error [a, g] = lpc (1:10, 0.5) ***** error [a, g] = lpc (1:10, 1, [1 2]) ***** test x = [1:4 4:-1:1]; [a, g] = lpc (x, 5); assert (a, [1.0 -1.823903 1.101798 -0.405738 0.521153 -0.340032], 1e-6) assert (g, 0.272194, 1e-6) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/cheb2ap.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cheb2ap.m ***** error cheb2ap (-1, 3) ***** error cheb2ap (3, -1) ***** demo w=0:0.01:1000; [z, p, k] = cheb2ap (3, 3); [b, a] = zp2tf (z, p, k); Gs = freqs (b, a, w); semilogx (w, abs (Gs)); xlabel('Frequency in rad/sec') ylabel('Magnitude of G(s)'); title('Type 2 Chebyshev Low-Pass Filter, k=3, 3 dB ripple in stop band') grid; 2 tests, 2 passed, 0 known failure, 0 skipped [inst/blackmannuttall.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/blackmannuttall.m ***** assert (blackmannuttall (1), 1) ***** assert (blackmannuttall (2), 0.0003628 * ones (2, 1), eps) ***** assert (blackmannuttall (15), flipud (blackmannuttall (15)), 10*eps); ***** assert (blackmannuttall (16), flipud (blackmannuttall (16)), 10*eps); ***** assert (blackmannuttall (15), blackmannuttall (15, "symmetric")); ***** assert (blackmannuttall (16)(1:15), blackmannuttall (15, "periodic")); ***** error blackmannuttall () ***** error blackmannuttall (0.5) ***** error blackmannuttall (-1) ***** error blackmannuttall (ones (1, 4)) ***** error blackmannuttall (1, 2) ***** error blackmannuttall (1, "invalid") 12 tests, 12 passed, 0 known failure, 0 skipped [inst/chebwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/chebwin.m ***** assert (chebwin (1), 1) ***** assert (chebwin (2), ones (2, 1)) ***** error chebwin () ***** error chebwin (0.5) ***** error chebwin (-1) ***** error chebwin (ones (1, 4)) ***** error chebwin (1, 2, 3) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/specgram.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/specgram.m ***** shared S,f,t,x Fs=1000; x = chirp([0:1/Fs:2],0,2,500); # freq. sweep from 0-500 over 2 sec. step=ceil(20*Fs/1000); # one spectral slice every 20 ms window=ceil(100*Fs/1000); # 100 ms data window [S, f, t] = specgram(x); ## test of returned shape ***** assert (rows(S), 128) ***** assert (columns(f), rows(S)) ***** assert (columns(t), columns(S)) ***** test [S, f, t] = specgram(x'); ***** assert (rows(S), 128) ***** assert (columns(f), rows(S)); ***** assert (columns(t), columns(S)); ***** error (isempty(specgram([]))); ***** error (isempty(specgram([1, 2 ; 3, 4]))); ***** error (specgram) ***** demo Fs=1000; x = chirp([0:1/Fs:2],0,2,500); # freq. sweep from 0-500 over 2 sec. step=ceil(20*Fs/1000); # one spectral slice every 20 ms window=ceil(100*Fs/1000); # 100 ms data window ## test of automatic plot [S, f, t] = specgram(x); specgram(x, 2^nextpow2(window), Fs, window, window-step); ***** #demo # FIXME: Enable once we have an audio file to demo ## Speech spectrogram [x, Fs] = auload(file_in_loadpath("sample.wav")); # audio file step = fix(5*Fs/1000); # one spectral slice every 5 ms window = fix(40*Fs/1000); # 40 ms data window fftn = 2^nextpow2(window); # next highest power of 2 [S, f, t] = specgram(x, fftn, Fs, window, window-step); S = abs(S(2:fftn*4000/Fs,:)); # magnitude in range 0>>>> /build/reproducible-path/octave-signal-1.4.6/inst/fwhm.m ***** test x=-pi:0.001:pi; y=cos(x); assert( abs(fwhm(x, y) - 2*pi/3) < 0.01 ); ***** test assert( fwhm(-10:10) == 0 && fwhm(ones(1,50)) == 0 ); ***** test x=-20:1:20; y1=-4+zeros(size(x)); y1(4:10)=8; y2=-2+zeros(size(x)); y2(4:11)=2; y3= 2+zeros(size(x)); y3(5:13)=10; assert( max(abs(fwhm(x, [y1;y2;y3]') - [20.0/3,7.5,9.25])) < 0.01 ); ***** test x=1:3; y=[-1,3,-1]; assert(abs(fwhm(x,y)-0.75)<0.001 && abs(fwhm(x,y,'zero')-0.75)<0.001 && abs(fwhm(x,y,'min')-1.0)<0.001); ***** test x=1:3; y=[-1,3,-1]; assert(abs(fwhm(x,y, 'rlevel', 0.1)-1.35)<0.001 && abs(fwhm(x,y,'zero', 'rlevel', 0.1)-1.35)<0.001 && abs(fwhm(x,y,'min', 'rlevel', 0.1)-1.40)<0.001); ***** test x=1:3; y=[-1,3,-1]; assert(abs(fwhm(x,y, 'alevel', 2.5)-0.25)<0.001 && abs(fwhm(x,y,'alevel', -0.5)-1.75)<0.001); ***** test x=-10:10; assert( fwhm(x.*x) == 0 ); ***** test x=-5:5; y=18-x.*x; assert( abs(fwhm(y)-6.0) < 0.001 && abs(fwhm(x,y,'zero')-6.0) < 0.001 && abs(fwhm(x,y,'min')-7.0 ) < 0.001); 8 tests, 8 passed, 0 known failure, 0 skipped [inst/decimate.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/decimate.m ***** demo t=0:0.01:2; x=chirp(t,2,.5,10,'quadratic')+sin(2*pi*t*0.4); y = decimate(x,4); # factor of 4 decimation stem(t(1:121)*1000,x(1:121),"-g;Original;"); hold on; # plot original stem(t(1:4:121)*1000,y(1:31),"-r;Decimated;"); hold off; # decimated %------------------------------------------------------------------ % The signal to decimate starts away from zero, is slowly varying % at the start and quickly varying at the end, decimate and plot. % Since it starts away from zero, you will see the boundary % effects of the antialiasing filter clearly. You will also see % how it follows the curve nicely in the slowly varying early % part of the signal, but averages the curve in the quickly % varying late part of the signal. ***** error decimate () ***** error decimate (1) ***** error decimate (1, 2, 3, 4, 5) ***** error decimate (1, -1) ***** test s = decimate(1:100, 2, 'fir'); assert(s, 1:2:100, 1e3*eps); 5 tests, 5 passed, 0 known failure, 0 skipped [inst/cplxreal.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cplxreal.m ***** test [zc, zr] = cplxreal ([]); assert (isempty (zc)) assert (isempty (zr)) ***** test [zc, zr] = cplxreal (1); assert (isempty (zc)) assert (zr, 1) ***** test [zc, zr] = cplxreal ([1+1i, 1-1i]); assert (zc, 1+1i) assert (isempty (zr)) ***** test [zc, zr] = cplxreal (roots ([1, 0, 0, 1])); assert (zc, complex (0.5, sin (pi/3)), 10*eps) assert (zr, -1, 2*eps) ***** test [zc, zr] = cplxreal (roots ([1, 0, 0, 1, 0])); assert (zc, complex (0.5, sin (pi/3)), 10*eps) assert (zr, [-1; 0], 2*eps) ***** test [zc, zr] = cplxreal (roots ([1, 0, 0, 1, 0, 0])); assert (zc, complex (0.5, sin (pi/3)), 10*eps) assert (zr, [-1; 0; 0], 2*eps) ***** error cplxreal () ***** error cplxreal (1, 2, 3, 4) ***** error cplxreal (1, ones (2, 3)) ***** error cplxreal (1, -1) ***** error cplxreal (1, [], 3) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/residued.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/residued.m ***** test B=1; A=[1 -1]; [r,p,f,m] = residued(B,A); assert({r,p,f,m},{1,1,[],1},100*eps); [r2,p2,f2,m2] = residuez(B,A); assert({r,p,f,m},{r2,p2,f2,m2},100*eps); ***** test B=[1 -2 1]; A=[1 -1]; [r,p,f,m] = residued(B,A); assert({r,p,f,m},{0,1,[1 -1],1},100*eps); ***** test B=[1 -2 1]; A=[1 -0.5]; [r,p,f,m] = residued(B,A); assert({r,p,f,m},{0.25,0.5,[1 -1.5],1},100*eps); ***** test B=1; A=[1 -0.75 0.125]; [r,p,f,m] = residued(B,A); [r2,p2,f2,m2] = residuez(B,A); assert({r,p,f,m},{r2,p2,f2,m2},100*eps); ***** test B=1; A=[1 -2 1]; [r,p,f,m] = residued(B,A); [r2,p2,f2,m2] = residuez(B,A); assert({r,p,f,m},{r2,p2,f2,m2},100*eps); ***** test B=[6,2]; A=[1 -2 1]; [r,p,f,m] = residued(B,A); [r2,p2,f2,m2] = residuez(B,A); assert({r,p,f,m},{r2,p2,f2,m2},100*eps); ***** test B=[1 1 1]; A=[1 -2 1]; [r,p,f,m] = residued(B,A); assert(r,[0;3],1e-7); assert(p,[1;1],1e-8); assert(f,1,100*eps); assert(m,[1;2],100*eps); ***** test B=[2 6 6 2]; A=[1 -2 1]; [r,p,f,m] = residued(B,A); assert(r,[8;16],3e-7); assert(p,[1;1],1e-8); assert(f,[2,10],100*eps); assert(m,[1;2],100*eps); ***** test B=[1,6,2]; A=[1 -2 1]; [r,p,f,m] = residued(B,A); assert(r,[-1;9],3e-7); assert(p,[1;1],1e-8); assert(f,1,100*eps); assert(m,[1;2],100*eps); ***** test B=[1 0 0 0 1]; A=[1 0 0 0 -1]; [r,p,f,m] = residued(B,A); [~,is] = sort(angle(p)); assert(r(is),[-1/2;-j/2;1/2;j/2],100*eps); assert(p(is),[-1;-j;1;j],100*eps); assert(f,1,100*eps); assert(m,[1;1;1;1],100*eps); 10 tests, 10 passed, 0 known failure, 0 skipped [inst/zerocrossing.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/zerocrossing.m ***** test x = linspace(0,1,100); y = rand(1,100)-0.5; x0= zerocrossing(x,y); y0 = interp1(x,y,x0); assert(norm(y0,inf), 0, 100*eps) ***** test x = linspace(0,1,100); y = rand(1,100)-0.5; y(10:20) = 0; x0= zerocrossing(x,y); y0 = interp1(x,y,x0); assert(norm(y0,inf), 0, 100*eps) ***** demo x = linspace(0,1,100); y = rand(1,100)-0.5; x0= zerocrossing(x,y); y0 = interp1(x,y,x0); plot(x,y,x0,y0,'x') ***** demo x = linspace(0,1,100); y = rand(1,100)-0.5; y(10:20) = 0; x0= zerocrossing(x,y); y0 = interp1(x,y,x0); plot(x,y,x0,y0,'x') 2 tests, 2 passed, 0 known failure, 0 skipped [inst/filtord.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/filtord.m ***** demo b = [1 0]; a = [1 1]; n = filtord (b, a) ***** demo b = [1 0 0 0 0 0 0 1]; a = [1 0 0 0 0 0 0 .5]; [sos, g] = tf2sos (b, a); n = filtord (sos) ## test input validation ***** error n = filtord () ***** error n = filtord (1, 1, 1) ***** error n = filtord ([1:10]', 1) ***** error n = filtord (1, [1:10]') ***** error n = filtord ([1:10]', [1:10]') ***** error n = filtord (1:10, 1:10, 1:10) ***** error n = filtord (ones(3), ones(3)) ***** test b = [1 0 0]; a = [1 0 0 0]; n = filtord (b, a); assert (n, 3, 1e-6) ***** test [b, a] = butter (5, .5); n = filtord (b, a); assert (n, 5, 1e-6) ***** test [b, a] = butter (6, .5); n = filtord (b, a); assert (n, 6, 1e-6) ***** test b = [1 0 0 0 0 0 1]; a = [1 0 0 0 0 0 .5]; [sos, g] = tf2sos (b, a); n = filtord (sos); assert (n, 6, 1e-6) ***** test b = [1 0 0 0 0 0 0 1]; a = [1 0 0 0 0 0 0 .5]; [sos, g] = tf2sos (b, a); n = filtord (sos); assert (n, 7, 1e-6) 12 tests, 12 passed, 0 known failure, 0 skipped [inst/parzenwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/parzenwin.m ***** assert (parzenwin (1), 1) ***** assert (parzenwin (2), 0.25 * ones (2, 1)) ***** error parzenwin () ***** error parzenwin (0.5) ***** error parzenwin (-1) ***** error parzenwin (ones (1, 4)) ***** error parzenwin (1, 2) 7 tests, 7 passed, 0 known failure, 0 skipped [inst/tripuls.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/tripuls.m ***** demo fs = 11025; # arbitrary sample rate f0 = 100; # pulse train sample rate w = 0.5/f0; # pulse width 1/10th the distance between pulses x = pulstran (0:1/fs:4/f0, 0:1/f0:4/f0, "tripuls", w); plot ([0:length(x)-1]*1000/fs, x); xlabel ("Time (ms)"); ylabel ("Amplitude"); title ("Triangular pulse train of 5 ms pulses at 10 ms intervals"); ***** demo fs = 11025; # arbitrary sample rate f0 = 100; # pulse train sample rate w = 0.5/f0; # pulse width 1/10th the distance between pulses x = pulstran (0:1/fs:4/f0, 0:1/f0:4/f0, "tripuls", w, -0.5); plot ([0:length(x)-1]*1000/fs, x); xlabel ("Time (ms)"); ylabel ("Amplitude"); title ("Triangular pulse train of 5 ms pulses at 10 ms intervals, skew = -0.5"); ***** assert (tripuls ([]), []) ***** assert (tripuls ([], 0.1), []) ***** assert (tripuls (zeros (10, 1)), ones (10, 1)) ***** assert (tripuls (-1:1), [0, 1, 0]) ***** assert (tripuls (-5:5, 9), [0, 1, 3, 5, 7, 9, 7, 5, 3, 1, 0] / 9) ***** assert (tripuls (0:1/100:0.3, 0.1), tripuls ([0:1/100:0.3]', 0.1)') ***** error tripuls () ***** error tripuls (1, 2, 3, 4) ***** error tripuls (1, 2j) ***** error tripuls (1, 2, 2) ***** error tripuls (1, 2, -2) 11 tests, 11 passed, 0 known failure, 0 skipped [inst/peak2rms.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/peak2rms.m ***** assert (peak2rms (1), 1) ***** assert (peak2rms (-5), 1) ***** assert (peak2rms ([-2 3; 4 -2]), [4/sqrt(10), 3/sqrt((9+4)/2)]) ***** assert (peak2rms ([-2 3; 4 -2], 2), [3/sqrt((9+4)/2); 4/sqrt(10)]) ***** assert (peak2rms ([1 2 3], 3), [1 1 1]) ***** error peak2rms () ***** error peak2rms (1, 2, 3) ***** error peak2rms (1, 1.5) ***** error peak2rms (1, -1) 9 tests, 9 passed, 0 known failure, 0 skipped [inst/idst.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/idst.m ***** test x = log(gausswin(32)); assert(x, idst(dst(x)), 100*eps) 1 test, 1 passed, 0 known failure, 0 skipped [inst/bitrevorder.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/bitrevorder.m ***** assert (bitrevorder (0), 0); ***** assert (bitrevorder (0:1), 0:1); ***** assert (bitrevorder ([0:1]'), [0:1]'); ***** assert (bitrevorder (0:7), [0 4 2 6 1 5 3 7]); ***** assert (bitrevorder ([0:7]'), [0 4 2 6 1 5 3 7]'); ***** assert (bitrevorder ([0:7]*i), [0 4 2 6 1 5 3 7]*i); ***** assert (bitrevorder ([0:7]'*i), [0 4 2 6 1 5 3 7]'*i); ***** assert (bitrevorder (0:15), [0 8 4 12 2 10 6 14 1 9 5 13 3 11 7 15]); ***** error bitrevorder (); ***** error bitrevorder (1, 2); ***** error bitrevorder ([]); ***** error bitrevorder (0:2); 12 tests, 12 passed, 0 known failure, 0 skipped [inst/dst.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/dst.m ***** test x = log(linspace(0.1,1,32)); y = dst(x); assert(y(3), sum(x.*sin(3*pi*[1:32]/33)), 100*eps) 1 test, 1 passed, 0 known failure, 0 skipped [inst/isminphase.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/isminphase.m ***** demo b = [3 1]; a = [1 .5]; f = isminphase (b, a) ## test input validation ***** error n = isminphase () ***** error n = isminphase (1, 1, 1, 1) ***** error n = isminphase (1, 1, 1, 1, 1) ***** error n = isminphase ([1:10]', 1) ***** error n = isminphase (1, [1:10]') ***** error n = isminphase ([1:10]', [1:10]') ***** error n = isminphase (1:10, 1:10, 1:10) ***** error n = isminphase (ones (3), ones (3)) ***** test b = [3 1]; a = [1 .5]; f = isminphase (b, a); assert (f, true) ***** test [b, a] = butter (1, .5); f = isminphase (b, a); assert (f, false) ***** test [b, a] = butter (8, .5); f = isminphase (b, a); assert (f, false) ***** test b = 1.25^2 * conv (conv (conv ([1 -0.9*e^(-j*0.6*pi)], [1 -0.9*e^(j*0.6*pi)]), [1 -0.8*e^(-j*0.8*pi)]), [1 -0.8*e^(j*0.8*pi)]); a = 1; f = isminphase (b, a); assert (f, true) 12 tests, 12 passed, 0 known failure, 0 skipped [inst/marcumq.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/marcumq.m ***** error marcumq (1) ***** error marcumq (-1, 1, 1, 1, 1) ***** error marcumq (-1, 1) ***** error marcumq (1, -1) ***** error marcumq (1, 1, 0) ***** error marcumq (1, 1, -1) ***** error marcumq (1, 1, 1.1) ***** test a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [0.000000, 0.100000, 1.100000, 2.100000, 3.100000, 4.100000]; Q = [1.000000, 0.995012, 0.546074, 0.110251, 0.008189, 0.000224; 1.000000, 0.995019, 0.546487, 0.110554, 0.008238, 0.000226; 1.000000, 0.996971, 0.685377, 0.233113, 0.034727, 0.002092; 1.000000, 0.999322, 0.898073, 0.561704, 0.185328, 0.027068; 1.000000, 0.999944, 0.985457, 0.865241, 0.526735, 0.169515; 1.000000, 0.999998, 0.999136, 0.980933, 0.851679, 0.509876; 1.000000, 1.000000, 0.999979, 0.998864, 0.978683, 0.844038; 1.000000, 1.000000, 1.000000, 0.999973, 0.998715, 0.977300; 1.000000, 1.000000, 1.000000, 1.000000, 0.999969, 0.998618; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999966; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000]; q = marcumq (a, b); assert (q, Q, 1e-6); ***** test a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [5.100000, 6.100000, 7.100000, 8.100000, 9.100000, 10.10000]; Q = [0.000002, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000002, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000049, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.001606, 0.000037, 0.000000, 0.000000, 0.000000, 0.000000; 0.024285, 0.001420, 0.000032, 0.000000, 0.000000, 0.000000; 0.161412, 0.022812, 0.001319, 0.000030, 0.000000, 0.000000; 0.499869, 0.156458, 0.021893, 0.001256, 0.000028, 0.000000; 0.839108, 0.493229, 0.153110, 0.021264, 0.001212, 0.000027; 0.976358, 0.835657, 0.488497, 0.150693, 0.020806, 0.001180; 0.998549, 0.975673, 0.833104, 0.484953, 0.148867, 0.020458; 0.999965, 0.998498, 0.975152, 0.831138, 0.482198, 0.147437; 1.000000, 0.999963, 0.998458, 0.974742, 0.829576, 0.479995; 1.000000, 1.000000, 0.999962, 0.998426, 0.974411, 0.828307; 1.000000, 1.000000, 1.000000, 0.999961, 0.998400, 0.974138; 1.000000, 1.000000, 1.000000, 1.000000, 0.999960, 0.998378; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999960; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000]; q = marcumq (a, b); assert (q, Q, 1e-6); ***** test a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [11.10000, 12.10000, 13.10000, 14.10000, 15.10000, 16.10000]; Q = [0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.000026, 0.000000, 0.000000, 0.000000, 0.000000, 0.000000; 0.001155, 0.000026, 0.000000, 0.000000, 0.000000, 0.000000; 0.020183, 0.001136, 0.000025, 0.000000, 0.000000, 0.000000; 0.146287, 0.019961, 0.001120, 0.000025, 0.000000, 0.000000; 0.478193, 0.145342, 0.019778, 0.001107, 0.000024, 0.000000; 0.827253, 0.476692, 0.144551, 0.019625, 0.001096, 0.000024; 0.973909, 0.826366, 0.475422, 0.143881, 0.019494, 0.001087; 0.998359, 0.973714, 0.825607, 0.474333, 0.143304, 0.019381; 0.999959, 0.998343, 0.973546, 0.824952, 0.473389, 0.142803; 1.000000, 0.999959, 0.998330, 0.973400, 0.824380, 0.472564; 1.000000, 1.000000, 0.999958, 0.998318, 0.973271, 0.823876; 1.000000, 1.000000, 1.000000, 0.999958, 0.998307, 0.973158; 1.000000, 1.000000, 1.000000, 1.000000, 0.999957, 0.998297; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999957; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000]; q = marcumq (a, b); assert (q, Q, 1e-6); ***** test a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [17.10000, 18.10000, 19.10000]; Q = [0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000000, 0.000000, 0.000000; 0.000024, 0.000000, 0.000000; 0.001078, 0.000024, 0.000000; 0.019283, 0.001071, 0.000023; 0.142364, 0.019197, 0.001065; 0.471835, 0.141976, 0.019121; 0.823429, 0.471188, 0.141630; 0.973056, 0.823030, 0.470608; 0.998289, 0.972965, 0.822671; 0.999957, 0.998281, 0.972883; 1.000000, 0.999957, 0.998274; 1.000000, 1.000000, 0.999956; 1.000000, 1.000000, 1.000000]; q = marcumq (a, b); assert (q, Q, 1e-6); ***** test M = 2; a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [ 0.00, 0.10, 2.10, 7.10, 12.10, 17.10]; Q = [1.000000, 0.999987, 0.353353, 0.000000, 0.000000, 0.000000; 1.000000, 0.999988, 0.353687, 0.000000, 0.000000, 0.000000; 1.000000, 0.999992, 0.478229, 0.000000, 0.000000, 0.000000; 1.000000, 0.999999, 0.745094, 0.000001, 0.000000, 0.000000; 1.000000, 1.000000, 0.934771, 0.000077, 0.000000, 0.000000; 1.000000, 1.000000, 0.992266, 0.002393, 0.000000, 0.000000; 1.000000, 1.000000, 0.999607, 0.032264, 0.000000, 0.000000; 1.000000, 1.000000, 0.999992, 0.192257, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.545174, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.864230, 0.000040, 0.000000; 1.000000, 1.000000, 1.000000, 0.981589, 0.001555, 0.000000; 1.000000, 1.000000, 1.000000, 0.998957, 0.024784, 0.000000; 1.000000, 1.000000, 1.000000, 0.999976, 0.166055, 0.000000; 1.000000, 1.000000, 1.000000, 1.000000, 0.509823, 0.000000; 1.000000, 1.000000, 1.000000, 1.000000, 0.846066, 0.000032; 1.000000, 1.000000, 1.000000, 1.000000, 0.978062, 0.001335; 1.000000, 1.000000, 1.000000, 1.000000, 0.998699, 0.022409; 1.000000, 1.000000, 1.000000, 1.000000, 0.999970, 0.156421; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.495223; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.837820; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.976328; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.998564; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999966; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000]; q = marcumq (a, b, M); assert (q, Q, 1e-6); ***** test M = 5; a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [ 0.00, 0.10, 2.10, 7.10, 12.10, 17.10]; Q = [1.000000, 1.000000, 0.926962, 0.000000, 0.000000, 0.000000; 1.000000, 1.000000, 0.927021, 0.000000, 0.000000, 0.000000; 1.000000, 1.000000, 0.947475, 0.000001, 0.000000, 0.000000; 1.000000, 1.000000, 0.980857, 0.000033, 0.000000, 0.000000; 1.000000, 1.000000, 0.996633, 0.000800, 0.000000, 0.000000; 1.000000, 1.000000, 0.999729, 0.011720, 0.000000, 0.000000; 1.000000, 1.000000, 0.999990, 0.088999, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.341096, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.705475, 0.000002, 0.000000; 1.000000, 1.000000, 1.000000, 0.933009, 0.000134, 0.000000; 1.000000, 1.000000, 1.000000, 0.993118, 0.003793, 0.000000; 1.000000, 1.000000, 1.000000, 0.999702, 0.045408, 0.000000; 1.000000, 1.000000, 1.000000, 0.999995, 0.238953, 0.000000; 1.000000, 1.000000, 1.000000, 1.000000, 0.607903, 0.000001; 1.000000, 1.000000, 1.000000, 1.000000, 0.896007, 0.000073; 1.000000, 1.000000, 1.000000, 1.000000, 0.987642, 0.002480; 1.000000, 1.000000, 1.000000, 1.000000, 0.999389, 0.034450; 1.000000, 1.000000, 1.000000, 1.000000, 0.999988, 0.203879; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.565165; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.876284; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.984209; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999165; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999983; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000]; q = marcumq (a, b, M); assert (q, Q, 1e-6); ***** test M = 10; a = [0.00; 0.05; 1.00; 2.00; 3.00; 4.00; 5.00; 6.00; 7.00; 8.00; 9.00; 10.00; 11.00; 12.00; 13.00; 14.00; 15.00; 16.00; 17.00; 18.00; 19.00; 20.00; 21.00; 22.00; 23.00; 24.00]; b = [ 0.00, 0.10, 2.10, 7.10, 12.10, 17.10]; Q = [1.000000, 1.000000, 0.999898, 0.000193, 0.000000, 0.000000; 1.000000, 1.000000, 0.999897, 0.000194, 0.000000, 0.000000; 1.000000, 1.000000, 0.999931, 0.000416, 0.000000, 0.000000; 1.000000, 1.000000, 0.999980, 0.002377, 0.000000, 0.000000; 1.000000, 1.000000, 0.999997, 0.016409, 0.000000, 0.000000; 1.000000, 1.000000, 0.999999, 0.088005, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.302521, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.638401, 0.000000, 0.000000; 1.000000, 1.000000, 1.000000, 0.894322, 0.000022, 0.000000; 1.000000, 1.000000, 1.000000, 0.984732, 0.000840, 0.000000; 1.000000, 1.000000, 1.000000, 0.998997, 0.014160, 0.000000; 1.000000, 1.000000, 1.000000, 0.999972, 0.107999, 0.000000; 1.000000, 1.000000, 1.000000, 1.000000, 0.391181, 0.000000; 1.000000, 1.000000, 1.000000, 1.000000, 0.754631, 0.000004; 1.000000, 1.000000, 1.000000, 1.000000, 0.951354, 0.000266; 1.000000, 1.000000, 1.000000, 1.000000, 0.995732, 0.006444; 1.000000, 1.000000, 1.000000, 1.000000, 0.999843, 0.065902; 1.000000, 1.000000, 1.000000, 1.000000, 0.999998, 0.299616; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.676336; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.925312; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.992390; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999679; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 0.999995; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000; 1.000000, 1.000000, 1.000000, 1.000000, 1.000000, 1.000000]; q = marcumq (a, b, M); assert (q, Q, 1e-6); 14 tests, 14 passed, 0 known failure, 0 skipped [inst/firpmord.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/firpmord.m ***** error firpmord ([1 2], [1 0], [1 1], [1 1]); ***** error firpmord ([0 2], [1 0], [1 1]); ***** error firpmord ([.1 1], [1 0], [1 1]); ***** error firpmord ([.1 .9], [1], [.1 .1]); ***** error firpmord ([.1 .2], [1 0], [.1 .1 .1]); ***** error firpmord ([.1 .2], [1 0], [1 0]); ***** assert ( firpmord ([0.4 0.5], [0 1], [2.5e-4 2.5e-4]), firpmord ([0.4 0.5], [0 1], [2.5e-4])) ***** test ds = 1e-4; dp = 0.01; assert ( firpmord ([1 2 3 4 5 6 7 8]/10, [0 1 0 1 0], [ds dp ds dp ds]), firpmord ([1 2 3 4 5 6 7 8]/10, [0 1 0 1 0], [ds dp])) ***** assert (1 + firpmord ([.1 .2], [0 1], [1e-4 .01], 1), 33) ***** assert (1 + firpmord ([ 15 20], [ 1 0], [ .1 .001], 100), 38) ***** assert (1 + firpmord ([ 8 10 ], [0 1 ], [.001 .1 ], 100), 91) ***** assert (1 + firpmord ([ 8 10 15 20], [0 1 0], [.001 .1 .001], 100), 90) #+1? ***** assert (1 + firpmord ([17 20 ], [1 0 ], [.01 1e-4 ], 100), 107)#-1? ***** assert (1 + firpmord ([ 22 25], [ 0 1], [ 1e-4 .01], 100), 107) ***** assert (1 + firpmord ([17 20 22 25], [1 0 1], [.01 1e-4 .01], 100), 107) ***** assert (1 + firpmord ([ 21 25], [ 1 0], [ .01 1e-4], 100), 81) #+1? ***** assert (1 + firpmord ([10 20 ], [0 1 ], [1e-4 .01 ], 100), 33) ***** assert (1 + firpmord ([10 20 21 25], [0 1 0], [1e-4 .01 1e-4], 100), 81) #+1? ***** assert (1 + firpmord ([20 25 ], [1 0 ], [.01 1e-4 ], 100), 65) #+1? ***** assert (1 + firpmord ([ 26 30], [ 0 1], [ 1e-4 .01], 100), 81) #+2? ***** assert (1 + firpmord ([20 25 26 30], [1 0 1], [.01 1e-4 .01], 100), 81) #+2? ***** demo db2mag = @(x) 10^(x/20); fs = 8000; [n f a w] = firpmord ([2500 3000], [1 0], [0.01 db2mag(-60)], fs); b = firpm (n, f, a, w); [h f] = freqz (b, 1, 2^14); clf plot (fs/2*f/pi, 20*log10 (abs (h))); grid on; axis ([0 fs/2 -90 5]) ylabel ("Magnitude (dB)"); xlabel ("Frequency (Hz)") title (sprintf ("Response analysis of firpmord / firpm low-pass filter design (order=%i)", length (b) - 1)) axes ("position", [.24 .4 .4 .3]) plot (fs/2*f/pi, abs (h)); grid on; axis ([0 2600 x=.987 2-x]) ylabel ("Magnitude") title ("Pass-band detail") %-------------------------------------------------- % Figure shows analysis of filter designed using % firpm with firpmord; specs. are almost met. ***** demo db2mag = @(x) 10^(x/20); b = firpm (firpmord ([0.3 0.4], [0 1], [db2mag(-80) .01], "c"){:}); [h f] = freqz (b, 1, 2^14); clf plot (f/pi, 20*log10 (abs (h))); grid on; axis ([0 1 -110 5]) ylabel ("Magnitude (dB)"); xlabel ("Frequency (normalized)") title (sprintf ("Response analysis of firpmord / firpm high-pass filter design (order=%i)", length (b) - 1)) axes ("position", [.52 .4 .35 .3]) plot (f/pi, abs (h)); grid on; axis ([.39 1 x=.987 2-x]) ylabel ("Magnitude") title ("Pass-band detail") %-------------------------------------------------- % Figure shows analysis of filter designed using % firpm with firpmord; specs. are exceeded. ***** demo db2mag = @(x) 10^(x/20); ds = db2mag (-80); dp = 0.01; b = firpm (firpmord ([1 2 3 4 5 6 7 8]/10, [0 1 0 1 0], [ds dp], "c"){:}); [h f] = freqz (b, 1, 2^14); clf plot (f/pi, 20*log10 (abs (h))); grid on; axis ([0 1 -110 5]) ylabel ("Magnitude (dB)"); xlabel ("Frequency (normalized)") title ("Response analysis of firpmord / firpm multi-band-pass filter design") title (sprintf ("Response analysis of firpmord / firpm multi-band-pass filter design (order=%i)", length (b) - 1)) axes ("position", [.38 .5 .5 .2]) plot (f/pi, abs (h)); grid on; axis ([.11 .79 x=.986 2-x]) ylabel ("Magnitude") title ("Pass-bands detail") %-------------------------------------------------- % Figure shows analysis of filter designed using % firpm with firpmord; specs. are met. ***** demo db2mag = @(x) 10^(x/20); ds = db2mag (-40); dp = 1 - db2mag (-0.1); b = firpm (firpmord ([2 3 8 9]/32, [0 1 0], [ds dp], "c"){:}); [h f] = freqz (b, 1, 2^14); clf plot (f/pi, 20*log10 (abs (h))); grid on; axis ([0 1 -50 3]) ylabel ("Magnitude (dB)"); xlabel ("Frequency (normalized)") title (sprintf ("Response analysis of firpmord / firpm band-pass filter design (order=%i)", length (b) - 1)) axes ("position", [.45 .5 .4 .3]) plot (f/pi, 20*log10 (abs (h))); grid on; axis ([.08 .26 x=-.13 -x]) ylabel ("Magnitude (dB)") title ("Pass-band detail") %-------------------------------------------------- % Figure shows analysis of filter designed using % firpm with firpmord; specs. are not met. ***** demo % FIRPMX: F, A, D, Fs are as firpmord. % type in {0,1,2} constrains order to be {even,odd,either} resp. function h = firpmx (type, F, A, D, Fs = 2) type *= !A(end); step = 2; bounds = [0 0]; while (bounds(2) - bounds(1) != step) if all (!bounds) [n f a w] = firpmord (F, A, D, Fs); elseif (!bounds(1)) n = min (n - step, round (n * 0.994)); elseif (!bounds(2)) n = max (n + step, round (n / 0.998)); else n = fix (mean (bounds)); endif n += rem (n + rem (type, 2), step); [b m] = firpm (n, f, a, w); bounds(1 + (met = (abs(m) <= max (D)))) = n; step -= bounds(2) - bounds(1) == type; if (met) h = b; endif endwhile endfunction db2mag = @(x) 10^(x/20); ds = db2mag (-40); dp = 1 - db2mag (-0.1); b = firpmx (2, [2 3 8 9]/32, [0 1 0], [ds dp]); [h f] = freqz (b, 1, 2^14); clf plot (f/pi, 20*log10 (abs (h))); grid on; axis ([0 1 -50 3]) ylabel ("Magnitude (dB)"); xlabel ("Frequency (normalized)") title (sprintf ("Response analysis of firpmord / iterative-firpm band-pass filter design (order=%i)", length (b) - 1)) axes ("position", [.45 .5 .4 .3]) plot (f/pi, 20*log10 (abs (h))); grid on; axis ([.08 .26 x=-.13 -x]) ylabel ("Magnitude (dB)") title ("Pass-band detail") %-------------------------------------------------- % Figure shows analysis of filter designed iteratively % using firpm with firpmord, so that specs. are met. 21 tests, 21 passed, 0 known failure, 0 skipped [inst/ultrwin.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/ultrwin.m ***** test assert(ultrwin(100, 1, 1), ones(100, 1), 1e-14); ***** test L = 201; xmu = 1.01; m = L-1; for mu = -1.35:.3:1.35 x = xmu*cos([0:m]*pi/L); C(2,:) = 2*mu*x; C(1,:) = 1; for k = 2:m; C(k+1,:) = 2*(k+mu-1)/k*x.*C(k,:) - (k+2*mu-2)/k*C(k-1,:); end b = real(ifft(C(m+1,:))); b = b(m/2+2:L)/b(1); assert(ultrwin(L, mu, xmu, "x")', [b 1 fliplr(b)], 1e-12); end ***** test b = [ 5.7962919401511820e-03 1.6086991349967078e-02 3.6019014684117417e-02 6.8897525451558125e-02 1.1802364384553447e-01 1.8566749737411145e-01 2.7234740630826737e-01 3.7625460141456091e-01 4.9297108901880221e-01 6.1558961695849457e-01 7.3527571856983598e-01 8.4222550739092694e-01 9.2688779484512085e-01 9.8125497127708561e-01]'; [w xmu] = ultrwin(29, 0, 3); assert(w', [b 1 fliplr(b)], 1e-14); assert(xmu, 1.053578297819277, 1e-14); ***** test b = [ 2.9953636903962466e-02 7.6096450051659603e-02 1.5207129867916891e-01 2.5906995366355179e-01 3.9341065451220536e-01 5.4533014012036929e-01 6.9975915071207051e-01 8.3851052636906720e-01 9.4345733548690369e-01]'; assert(ultrwin(20, .5, 50, "a")', [b 1 1 fliplr(b)], 1e-14); ***** test b = [ 1.0159906492322712e-01 1.4456358609406283e-01 2.4781689516201011e-01 3.7237015168857646e-01 5.1296973026690407e-01 6.5799041448113671e-01 7.9299087042967320e-01 9.0299778924260576e-01 9.7496213649820296e-01]'; assert(ultrwin(19, -.4, 40, "l")', [b 1 fliplr(b)], 1e-14); ***** demo w=ultrwin(120, -1, 40, "l"); [W,f]=freqz(w); clf subplot(2,1,1); plot(f/pi, 20*log10(W/abs(W(1)))); grid; axis([0 1 -90 0]) subplot(2,1,2); plot(0:length(w)-1, w); grid %----------------------------------------------------------- % Figure shows an Ultraspherical window with MU=-1, LATT=40: % frequency domain above, time domain below. ***** demo c="krbm"; clf; subplot(2, 1, 1) for beta=2:5 w=ultrwin(80, -.5, beta); [W,f]=freqz(w); plot(f/pi, 20*log10(W/abs(W(1))), c(1+mod(beta, length(c)))); hold on end; grid; axis([0 1 -140 0]); hold off subplot(2, 1, 2); for n=2:10 w=ultrwin(n*20, 1, 3); [W,f]=freqz(w,1,2^11); plot(f/pi, 20*log10(W/abs(W(1))), c(1+mod(n, length(c)))); hold on end; grid; axis([0 .2 -100 0]); hold off %-------------------------------------------------- % Figure shows transfers of Ultraspherical windows: % above: varying BETA with fixed N & MU, % below: varying N with fixed MU & BETA. ***** demo c="krbm"; clf; subplot(2, 1, 1) for j=0:4 w=ultrwin(80, j*.6-1.2, 50, "a"); [W,f]=freqz(w); plot(f/pi, 20*log10(W/abs(W(1))), c(1+mod(j, length(c)))); hold on end; grid; axis([0 1 -100 0]); hold off subplot(2, 1, 2); for j=4:-1:0 w=ultrwin(80, j*.75-1.5, 50, "l"); [W,f]=freqz(w); plot(f/pi, 20*log10(W/abs(W(1))), c(1+mod(j, length(c)))); hold on end; grid; axis([0 1 -100 0]); hold off %-------------------------------------------------- % Figure shows transfers of Ultraspherical windows: % above: varying MU with fixed N & ATT, % below: varying MU with fixed N & LATT. ***** demo clf; a=[.8 2 -115 5]; fc=1.1/pi; l="labelxy"; for k=1:3; switch (k); case 1; w=kaiser(L=159, 7.91); case 2; w=ultrwin(L=165, 0, 2.73); case 3; w=ultrwin(L=153, .5, 2.6); end subplot(3, 1, 4-k); f=[1:(L-1)/2]*pi;f=sin(fc*f)./f; f=[fliplr(f) fc f]'; [h,f]=freqz(w.*f,1,2^14); plot(f,20*log10(h)); grid; axis(a,l); l="labely"; end %----------------------------------------------------------- % Figure shows example lowpass filter design (Fp=1, Fs=1.2 % rad/s, att=80 dB) and comparison with other windows. From % top to bottom: Ultraspherical, Dolph-Chebyshev, and Kaiser % windows, with lengths 153, 165, and 159 respectively. 5 tests, 5 passed, 0 known failure, 0 skipped [inst/rssq.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/rssq.m ***** assert (rssq ([]), 0) ***** assert (rssq ([1 2 -1]), sqrt (6)) ***** assert (rssq ([1 2 -1]'), sqrt (6)) ***** assert (rssq ([1 2], 3), [1 2]) ***** error rssq () ***** error rssq (1, 2, 3) ***** error rssq (1, 1.5) ***** error rssq (1, -1) 8 tests, 8 passed, 0 known failure, 0 skipped [inst/hann.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/hann.m ***** assert (hann (1), 1); ***** assert (hann (2), zeros (2, 1)); ***** assert (hann (16), flipud (hann (16)), 10*eps); ***** assert (hann (15), flipud (hann (15)), 10*eps); ***** test N = 15; A = hann (N); assert (A(ceil (N/2)), 1); ***** assert (hann (15), hann (15, "symmetric")); ***** assert (hann (16)(1:15), hann (15, "periodic")); ***** test N = 16; A = hann (N, "periodic"); assert (A (N/2 + 1), 1); ***** error hann () ***** error hann (0.5) ***** error hann (-1) ***** error hann (1, "invalid") 12 tests, 12 passed, 0 known failure, 0 skipped [inst/impinvar.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/impinvar.m ***** function err = stozerr(bs,as,fs) # number of time steps n=100; # impulse invariant transform to z-domain [bz az]=impinvar(bs,as,fs); # create sys object of transfer function s=tf(bs,as); # calculate impulse response of continuous time system # at discrete time intervals 1/fs ys=impulse(s,(n-1)/fs,1/fs)'; # impulse response of discrete time system yz=filter(bz,az,[1 zeros(1,n-1)]); # find rms error err=sqrt(sum((yz*fs-ys).^2)/length(ys)); endfunction ***** assert(stozerr([1],[1 1],100),0,0.0001); ***** assert(stozerr([1],[1 2 1],100),0,0.0001); ***** assert(stozerr([1 1],[1 2 1],100),0,0.0002); ***** assert(stozerr([1],[1 3 3 1],100),0,0.0001); ***** assert(stozerr([1 1],[1 3 3 1],100),0,0.0001); ***** assert(stozerr([1 1 1],[1 3 3 1],100),0,0.0001); ***** assert(stozerr([1],[1 0 1],100),0,0.0001); ***** assert(stozerr([1 1],[1 0 1],100),0,0.0001); ***** assert(stozerr([1],[1 0 2 0 1],100),0,0.0001); ***** assert(stozerr([1 1],[1 0 2 0 1],100),0,0.0001); ***** assert(stozerr([1 1 1],[1 0 2 0 1],100),0,0.0001); ***** assert(stozerr([1 1 1 1],[1 0 2 0 1],100),0,0.0001); 12 tests, 12 passed, 0 known failure, 0 skipped [inst/sos2ss.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/sos2ss.m ***** test sos = [1, 1, 0, 1, 0.5, 0]; g = 1; [a, b, c, d] = sos2ss (sos, g); assert ({a, b, c, d}, {-0.5, 0.5, 1, 1}); 1 test, 1 passed, 0 known failure, 0 skipped [inst/cheb1ap.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cheb1ap.m ***** error cheb1ap (-1, 4) ***** error cheb1ap (1.5, 4) ***** error cheb1ap (2, -1) ***** test [z,p,k]=cheb1ap(4,2); assert (isempty(z), 1, 0) assert (p, [ -0.10489 - 0.95795i; -0.25322 - 0.39680i; -0.25322 + 0.39680i; -0.10489 + 0.95795i], e-6) assert (k, 0.1634, e-6) 4 tests, 4 passed, 0 known failure, 0 skipped [inst/ifht.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/ifht.m ***** assert(ifht(fht(1:4)),[1 2 3 4]) 1 test, 1 passed, 0 known failure, 0 skipped [inst/besself.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/besself.m ***** error [a, b] = besself () ***** error [a, b] = besself (1) ***** error [a, b] = besself (1, 2, 3, 4, 5) ***** error [a, b] = besself (.5, .2) ***** error [a, b] = besself (3, .2, "invalid") 5 tests, 5 passed, 0 known failure, 0 skipped [inst/buffer.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/buffer.m ***** error (buffer(1:10, 4.1)) ***** assert (buffer(1:10, 4), reshape([1:10,0,0],[4,3])) ***** assert (buffer(1:10, 4, 1), reshape([0:3,3:6,6:9,9,10,0,0],[4,4])) ***** assert (buffer(1:10, 4, 2), reshape ([0,0:2,1:4,3:6,5:8,7:10],[4,5])) ***** assert (buffer(1:10, 4, 3), [0,0,0:7;0,0:8;0:9;1:10]) ***** error (buffer(1:10, 4, 3.1)) ***** error (buffer(1:10, 4, 4)) ***** assert (buffer(1:10, 4, -1), reshape([1:4,6:9],[4,2])) ***** assert (buffer(1:10, 4, -2), reshape([1:4,7:10],[4,2])) ***** assert (buffer(1:10, 4, -3), reshape([1:4,8:10,0],[4,2])) ***** assert (buffer(1:10, 4, 1, 11), reshape([11,1:3,3:6,6:9,9,10,0,0],[4,4])) ***** error (buffer(1:10, 4, 1, [10,11])) ***** assert (buffer(1:10, 4, 1, 'nodelay'), reshape([1:4,4:7,7:10],[4,3])) ***** error (buffer(1:10, 4, 1, 'badstring')) ***** assert (buffer(1:10, 4, 2,'nodelay'), reshape ([1:4,3:6,5:8,7:10],[4,4])) ***** assert (buffer(1:10, 4, 3, [11,12,13]),[11,12,13,1:7;12,13,1:8;13,1:9;1:10]) ***** assert (buffer(1:10, 4, 3, 'nodelay'),[1:8;2:9;3:10;4:10,0]) ***** assert (buffer(1:11,4,-2,1),reshape([2:5,8:11],4,2)) ***** test [y, z] = buffer(1:12,4); assert (y, reshape(1:12,4,3)); assert (z, zeros (1,0)); ***** test [y, z] = buffer(1:11,4); assert (y, reshape(1:8,4,2)); assert (z, [9, 10, 11]); ***** test [y, z] = buffer([1:12]',4); assert (y, reshape(1:12,4,3)); assert (z, zeros (0,1)); ***** test [y, z] = buffer([1:11]',4); assert (y, reshape(1:8,4,2)); assert (z, [9; 10; 11]); ***** test [y,z,opt] = buffer(1:15,4,-2,1); assert (y, reshape([2:5,8:11],4,2)); assert (z, [14, 15]); assert (opt, 0); ***** test [y,z,opt] = buffer(1:11,4,-2,1); assert (y, reshape([2:5,8:11],4,2)); assert (z, zeros (1,0)); assert (opt, 2); ***** test [y,z,opt] = buffer([1:15]',4,-2,1); assert (y, reshape([2:5,8:11],4,2)); assert (z, [14; 15]); assert (opt, 0); ***** test [y,z,opt] = buffer([1:11]',4,-2,1); assert (y, reshape([2:5,8:11],4,2)); assert (z, zeros (0, 1)); assert (opt, 2); ***** test [y,z,opt] = buffer([1:11],5,2,[-1,0]); assert (y, reshape ([-1:3,2:6,5:9],[5,3])); assert (z, [10, 11]); assert (opt, [8; 9]); ***** test [y,z,opt] = buffer([1:11]',5,2,[-1,0]); assert (y, reshape ([-1:3,2:6,5:9],[5,3])); assert (z, [10; 11]); assert (opt, [8; 9]); ***** test [y, z, opt] = buffer (1:10, 6, 4); assert (y, [0 0 1:2:5; 0 0 2:2:6; 0 1:2:7; 0 2:2:8; 1:2:9; 2:2:10]) assert (z, zeros (1, 0)) assert (opt, [7; 8; 9; 10]) 29 tests, 29 passed, 0 known failure, 0 skipped [inst/residuez.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/residuez.m ***** test B=[1 -2 1]; A=[1 -1]; [r,p,f,m] = residuez(B,A); assert(r,0,100*eps); assert(p,1,100*eps); assert(f,[1 -1],100*eps); assert(m,1,100*eps); ***** test B=1; A=[1 -1j]; [r,p,f,m] = residuez(B,A); assert(r,1,100*eps); assert(p,1j,100*eps); assert(f,[],100*eps); assert(m,1,100*eps); ***** test B=1; A=[1 -1 .25]; [r,p,f,m] = residuez(B,A); [rs,is] = sort(r); assert(rs,[0;1],1e-7); assert(p(is),[0.5;0.5],1e-8); assert(f,[],100*eps); assert(m(is),[1;2],100*eps); ***** test B=1; A=[1 -0.75 .125]; [r,p,f,m] = residuez(B,A); [rs,is] = sort(r); assert(rs,[-1;2],100*eps); assert(p(is),[0.25;0.5],100*eps); assert(f,[],100*eps); assert(m(is),[1;1],100*eps); ***** test B=[1,6,2]; A=[1,-2,1]; [r,p,f,m] = residuez(B,A); [rs,is] = sort(r); assert(rs,[-10;9],1e-7); assert(p(is),[1;1],1e-8); assert(f,[2],100*eps); assert(m(is),[1;2],100*eps); ***** test B=[6,2]; A=[1,-2,1]; [r,p,f,m] = residuez(B,A); [rs,is] = sort(r); assert(rs,[-2;8],1e-7); assert(p(is),[1;1],1e-8); assert(f,[],100*eps); assert(m(is),[1;2],100*eps); ***** test B=[1,6,6,2]; A=[1,-2,1]; [r,p,f,m] = residuez(B,A); [rs,is] = sort(r); assert(rs,[-24;15],2e-7); assert(p(is),[1;1],1e-8); assert(f,[10,2],100*eps); assert(m(is),[1;2],100*eps); ***** test B=[1,6,6,2]; A=[1,-(2+j),(1+2j),-j]; [r,p,f,m] = residuez(B,A); [rs,is] = sort(r); assert(rs,[-2+2.5j;7.5+7.5j;-4.5-12j],1E-6); assert(p(is),[1j;1;1],1E-6); assert(f,2j,1E-6); assert(m(is),[1;2;1],1E-6); ***** test B=[1,0,1]; A=[1,0,0,0,0,-1]; [r,p,f,m] = residuez(B,A); [as,is] = sort(angle(p)); rise = [ ... 0.26180339887499 - 0.19021130325903i; ... 0.03819660112501 + 0.11755705045849i; ... 0.4; ... 0.03819660112501 - 0.11755705045849i; ... 0.26180339887499 + 0.19021130325903i;]; pise = [ ... -0.80901699437495 - 0.58778525229247i; ... 0.30901699437495 - 0.95105651629515i; ... 1; ... 0.30901699437495 + 0.95105651629515i; ... -0.80901699437495 + 0.58778525229247i]; assert(r(is),rise,100*eps); assert(p(is),pise,100*eps); assert(f,[],100*eps); assert(m,[1;1;1;1;1],100*eps); ***** test # bug 57359 [r,p,k] = residuez([1 1 1.5 .5],[1 1.5 .5]); [rs,is] = sort(r); assert(r(is), [-1; 2], 100*eps); assert(p(is), [-0.5; -1], 100*eps); assert(k, [0 1], 100*eps); ***** test # matlab example b0 = 0.05634; b1 = [1 1]; b2 = [1 -1.0166 1]; a1 = [1 -0.683]; a2 = [1 -1.4461 0.7957]; b = b0*conv(b1,b2); a = conv(a1,a2); [r,p,k] = residuez(b,a); expected_r = [ ... -0.115252473987042 - 0.018151109860883i; ... -0.115252473987042 + 0.018151109860883i; ... 0.390513439910336 - 0.000000000000000i; ... ]; expected_p = [ ... 0.723050000000000 + 0.522397068808775i; ... 0.723050000000000 - 0.522397068808775i; ... 0.683000000000000 + 0.000000000000000i; ... ]; expected_k = -0.103668491936251; # sort doesnt use i in the sort, so order of real is only thing can count on [rs,is] = sort(r); assert(real(r(is)), real(expected_r), 1e-5); assert(abs(imag(r(is))), abs(imag(expected_r)), 1e-5); assert(real(p(is)), real(expected_p), 1e-5); assert(abs(imag(p(is))), abs(imag(expected_p)), 1e-5); assert(k, expected_k, 100*eps); 11 tests, 11 passed, 0 known failure, 0 skipped [inst/tf2sos.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/tf2sos.m ***** test B=[1 0 0 0 0 1]; A=[1 0 0 0 0 .9]; [sos,g] = tf2sos(B,A); [Bh,Ah] = sos2tf(sos,g); assert({Bh,Ah},{B,A},100*eps); 1 test, 1 passed, 0 known failure, 0 skipped [inst/ellipord.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/ellipord.m ***** demo fs = 44100; Npts = fs; fpass = 4000; fstop = 13713; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn); f = 0:fs/2; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on plot (outline_lp_pass_x, outline_lp_pass_y, "m", outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("2nd order digital elliptical low-pass (without margin)"); ***** demo fs = 44100; Npts = fs; fpass = 4000; fstop = 13712; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn); f = 0:fs/2; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on plot (outline_lp_pass_x, outline_lp_pass_y, "m", outline_lp_stop_x, outline_lp_stop_y, "m"); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("3rd order digital elliptical low-pass (just exceeds 2nd order i.e. large margin)"); ***** demo fs = 44100; Npts = fs; fstop = 4000; fpass = 13713; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn, "high"); f = 0:fs/2; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_hp_pass_x, outline_hp_pass_y, "m", outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("2nd order digital elliptical high-pass (without margin)"); ***** demo fs = 44100; Npts = fs; fstop = 4000; fpass = 13712; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn, "high"); f = 0:fs/2; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))); outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [min(f) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_hp_pass_x, outline_hp_pass_y, "m", outline_hp_stop_x, outline_hp_stop_y, "m"); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("3rd order digital elliptical high-pass (just exceeds 2nd order i.e. large margin)"); ***** demo fs = 44100; Npts = fs; fpass = [9500 9750]; fstop = [8500 10261]; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order digital elliptical band-pass (without margin) limitation on upper freq"); ***** demo fs = 44100; Npts = fs; fpass = [9500 9750]; fstop = [9000 10700]; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order digital elliptical band-pass (without margin) limitation on lower freq"); ***** demo fs = 44100; Npts = fs; fpass = [9500 9750]; fstop = [8500 10260]; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order digital elliptical band-pass (just exceeds 4th order i.e. large margin) limitation on upper freq"); ***** demo fs = 44100; Npts = fs; fpass = [9500 9750]; fstop = [9001 10700]; Rpass = 3; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order digital elliptical band-pass (just exceeds 4th order i.e. large margin) limitation on lower freq"); ***** demo fs = 44100; Npts = fs; fstop = [9875 10126.5823]; fpass = [8500 11073]; Rpass = 0.5; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn, "stop"); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order digital elliptical notch (without margin) limit on upper freq"); ***** demo fs = 44100; Npts = fs; fstop = [9875 10126.5823]; fpass = [8952 12000]; Rpass = 0.5; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn, "stop"); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order digital elliptical notch (without margin) limit on lower freq"); ***** demo fs = 44100; Npts = fs; fstop = [9875 10126.5823]; fpass = [8500 11072]; Rpass = 0.5; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn, "stop"); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order digital elliptical notch (just exceeds 4th order) limit on upper freq"); ***** demo fs = 44100; Npts = fs; fstop = [9875 10126.5823]; fpass = [8953 12000]; Rpass = 0.5; Rstop = 40; Wpass = 2/fs * fpass; Wstop = 2/fs * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop) [b, a] = ellip (n, Rpass, Rstop, Wn, "stop"); f = 5000:15000; W = f * (2 * pi / fs); H = freqz (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [min(f) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [min(f) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order digital elliptical notch (just exceeds 4th order) limit on lower freq"); ***** demo fpass = 4000; fstop = 20224; Rpass = 3; Rstop = 40; Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "s"); f = 1000:10:100000; W = 2*pi * f; H = freqs (b, a, W); semilogx(f, 20 * log10 (abs (H))) outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on plot (outline_lp_pass_x, outline_lp_pass_y, "m", outline_lp_stop_x, outline_lp_stop_y, "m") ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("2nd order analog elliptical low-pass (without margin)"); ***** demo fpass = 4000; fstop = 20223; Rpass = 3; Rstop = 40; Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "s"); f = 1000:10:100000; W = 2*pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))) outline_lp_pass_x = [f(2) , fpass(1), fpass(1)]; outline_lp_pass_y = [-Rpass, -Rpass , -80]; outline_lp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_lp_stop_y = [0 , 0 , -Rstop , -Rstop]; hold on plot (outline_lp_pass_x, outline_lp_pass_y, "m", outline_lp_stop_x, outline_lp_stop_y, "m") ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("3rd order analog elliptical low-pass (just exceeds 2nd order i.e. large margin)"); ***** demo fstop = 4000; fpass = 20224; Rpass = 3; Rstop = 40; Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "high", "s"); f = 1000:10:100000; W = 2*pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))) outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_hp_pass_x, outline_hp_pass_y, "m", outline_hp_stop_x, outline_hp_stop_y, "m") ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("2nd order analog elliptical high-pass (without margin)"); ***** demo fstop = 4000; fpass = 20223; Rpass = 3; Rstop = 40; Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "high", "s"); f = 1000:10:100000; W = 2*pi * f; H = freqs (b, a, W); semilogx (f, 20 * log10 (abs (H))) outline_hp_pass_x = [fpass(1), fpass(1), max(f)]; outline_hp_pass_y = [-80 , -Rpass , -Rpass]; outline_hp_stop_x = [f(2) , fstop(1), fstop(1), max(f)]; outline_hp_stop_y = [-Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_hp_pass_x, outline_hp_pass_y, "m", outline_hp_stop_x, outline_hp_stop_y, "m") ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("3rd order analog elliptical high-pass (just exceeds 2nd order i.e. large margin)"); ***** demo fpass = [9875 10126.5823]; fstop = [9000 10657]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order analog elliptical band-pass (without margin) limitation on upper freq"); ***** demo fpass = [9875 10126.5823]; fstop = [9384 12000]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order analog elliptical band-pass (without margin) limitation on lower freq"); ***** demo fpass = [9875 10126.5823]; fstop = [9000 10656]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order analog elliptical band-pass (just exceeds 4th order i.e. large margin) limitation on upper freq"); ***** demo fpass = [9875 10126.5823]; fstop = [9385 12000]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_bp_pass_x = [fpass(1), fpass(1), fpass(2), fpass(2)]; outline_bp_pass_y = [-80 , -Rpass , -Rpass , -80]; outline_bp_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_bp_stop_y = [-Rstop , -Rstop , 0 , 0 , -Rstop , -Rstop]; hold on plot (outline_bp_pass_x, outline_bp_pass_y, "m", outline_bp_stop_x, outline_bp_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order analog elliptical band-pass (just exceeds 4th order i.e. large margin) limitation on lower freq"); ***** demo fstop = [9875 10126.5823]; fpass = [9000 10657]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "stop", "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order analog elliptical notch (without margin) limit on upper freq"); ***** demo fstop = [9875 10126.5823]; fpass = [9384 12000]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "stop", "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("4th order analog elliptical notch (without margin) limit on lower freq"); ***** demo fstop = [9875 10126.5823]; fpass = [9000 10656]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "stop", "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order analog elliptical notch (just exceeds 4th order) limit on upper freq"); ***** demo fstop = [9875 10126.5823]; fpass = [9385 12000]; Rpass = 3; Rstop = 40; fcenter = sqrt (fpass(1) * fpass(2)); Wpass = 2*pi * fpass; Wstop = 2*pi * fstop; [n, Wn] = ellipord (Wpass, Wstop, Rpass, Rstop, "s") [b, a] = ellip (n, Rpass, Rstop, Wn, "stop", "s"); f = 5000:15000; W = 2*pi * f; H = freqs (b, a, W); plot (f, 20 * log10 (abs (H))) outline_notch_pass_x_a = [f(2) , fpass(1), fpass(1)]; outline_notch_pass_x_b = [fpass(2), fpass(2), max(f)]; outline_notch_pass_y_a = [-Rpass , -Rpass , -80]; outline_notch_pass_y_b = [-80 , -Rpass , -Rpass]; outline_notch_stop_x = [f(2) , fstop(1), fstop(1), fstop(2), fstop(2), max(f)]; outline_notch_stop_y = [0 , 0 , -Rstop , -Rstop , 0 , 0 ]; hold on plot (outline_notch_pass_x_a, outline_notch_pass_y_a, "m", outline_notch_pass_x_b, outline_notch_pass_y_b, "m", outline_notch_stop_x, outline_notch_stop_y, "m") xlim ([f(1), f(end)]); ylim ([-80, 0]); grid on xlabel ("Frequency (Hz)"); ylabel ("Attenuation (dB)"); title ("6th order analog elliptical notch (just exceeds 4th order) limit on lower freq"); ***** test # Analog band-pass [n, Wn] = ellipord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9000, 10657], 3, 40, "s"); assert (n, 2); assert (round (Wn), [62046, 63627]); ***** test # Analog band-pass [n, Wn] = ellipord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9384, 12000], 3, 40, "s"); assert (n, 2); assert (round (Wn), [62046, 63627]); ***** test # Analog band-pass [n, Wn] = ellipord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9000, 10656], 3, 40, "s"); assert (n, 3); assert (round (Wn), [62046, 63627]); ***** test # Analog band-pass [n, Wn] = ellipord (2 * pi * [9875, 10126.5823], ... 2 * pi * [9385, 12000], 3, 40, "s"); assert (n, 3); assert (round (Wn), [62046, 63627]); ***** test # Analog high-pass [n, Wn] = ellipord (2 * pi * 20224, 2 * pi * 4000, 3, 40, "s"); assert (n, 2); assert (round (Wn), 127071); ***** test # Analog high-pass [n, Wn] = ellipord (2 * pi * 20223, 2 * pi * 4000, 3, 40, "s"); assert (n, 3); assert (round (Wn), 127065); ***** test # Analog low-pass [n, Wn] = ellipord (2 * pi * 4000, 2 * pi * 20224, 3, 40, "s"); assert (n, 2); assert (round (Wn), 25133); ***** test # Analog low-pass [n, Wn] = ellipord (2 * pi * 4000, 2 * pi * 20223, 3, 40, "s"); assert (n, 3); assert (round (Wn), 25133); ***** test # Analog notch (narrow band-stop) [n, Wn] = ellipord (2 * pi * [9000, 10657], ... 2 * pi * [9875, 10126.5823], 3, 40, "s"); assert (n, 2); assert (round (Wn), [58958, 66960]); ***** test # Analog notch (narrow band-stop) [n, Wn] = ellipord (2 * pi * [9384, 12000], ... 2 * pi * [9875, 10126.5823], 3, 40, "s"); assert (n, 2); assert (round (Wn), [58961 , 66956]); ***** test # Analog notch (narrow band-stop) [n, Wn] = ellipord (2 * pi * [9000, 10656], ... 2 * pi * [9875, 10126.5823], 3, 40, "s"); assert (n, 3); assert (round (Wn), [58964, 66954]); ***** test # Analog notch (narrow band-stop) [n, Wn] = ellipord (2 * pi * [9385, 12000], ... 2 * pi * [9875, 10126.5823], 3, 40, "s"); assert (n, 3); assert (round (Wn), [58968, 66949]); ***** test # Digital band-pass fs = 44100; [n, Wn] = ellipord (2 / fs * [9500, 9750], 2 / fs * [8500, 10261], 3, 40); Wn = Wn * fs / 2; assert (n, 2); assert (round (Wn), [9500, 9750]); ***** test # Digital band-pass fs = 44100; [n, Wn] = ellipord (2 / fs * [9500, 9750], 2 / fs * [9000, 10700], 3, 40); Wn = Wn * fs / 2; assert (n, 2); assert (round (Wn), [9500, 9750]); ***** test # Digital band-pass fs = 44100; [n, Wn] = ellipord (2 / fs * [9500, 9750], 2 / fs * [8500, 10260], 3, 40); Wn = Wn * fs / 2; assert (n, 3); assert (round (Wn), [9500, 9750]); ***** test # Digital band-pass fs = 44100; [n, Wn] = ellipord (2 / fs * [9500, 9750], 2 / fs * [9001, 10700], 3, 40); Wn = Wn * fs / 2; assert (n, 3); assert (round (Wn), [9500, 9750]); ***** test # Digital high-pass fs = 44100; [n, Wn] = ellipord (2 / fs * 13713, 2 / fs * 4000, 3, 40); Wn = Wn * fs / 2; assert (n, 2); assert (round (Wn), 13713); ***** test # Digital high-pass fs = 44100; [n, Wn] = ellipord (2 / fs * 13712, 2 / fs * 4000, 3, 40); Wn = Wn * fs / 2; assert (n, 3); assert (round (Wn), 13712); ***** test # Digital low-pass fs = 44100; [n, Wn] = ellipord (2 / fs * 4000, 2 / fs * 13713, 3, 40); Wn = Wn * fs / 2; assert (n, 2); assert (round (Wn), 4000); ***** test # Digital low-pass fs = 44100; [n, Wn] = ellipord (2 / fs * 4000, 2 / fs * 13712, 3, 40); Wn = Wn * fs / 2; assert (n, 3); assert (round (Wn), 4000); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn] = ellipord (2 / fs * [8500, 11073], 2 / fs * [9875, 10126.5823], 0.5, 40); Wn = Wn * fs / 2; assert (n, 2); assert (round (Wn), [8952, 11073]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn] = ellipord (2 / fs * [8952, 12000], 2 / fs * [9875, 10126.5823], 0.5, 40); Wn = Wn * fs / 2; assert (n, 2); assert (round (Wn), [8952, 11073]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn] = ellipord (2 / fs * [8500, 11072], 2 / fs * [9875, 10126.5823], 0.5, 40); Wn = Wn * fs / 2; assert (n, 3); assert (round (Wn), [8953, 11072]); ***** test # Digital notch (narrow band-stop) fs = 44100; [n, Wn] = ellipord (2 / fs * [8953, 12000], 2 / fs * [9875, 10126.5823], 0.5, 40); Wn = Wn * fs / 2; assert (n, 3); assert (round (Wn), [8953, 11072]); ***** error ellipord () ***** error ellipord (.1) ***** error ellipord (.1, .2) ***** error ellipord (.1, .2, 3) ***** error ellipord ([.1 .1], [.2 .2], 3, 4) ***** error ellipord ([.1 .2], [.5 .6], 3, 4) ***** error ellipord ([.1 .5], [.2 .6], 3, 4) 31 tests, 31 passed, 0 known failure, 0 skipped [inst/chirp.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/chirp.m ***** demo t = 0:0.001:5; y = chirp (t); specgram (y, 256, 1000); %------------------------------------------------------------ % Shows linear sweep of 100 Hz/sec starting at zero for 5 sec % since the sample rate is 1000 Hz, this should be a diagonal % from bottom left to top right. ***** demo t = -2:0.001:15; y = chirp (t, 400, 10, 100, "quadratic"); [S, f, t] = specgram (y, 256, 1000); t = t - 2; imagesc(t, f, 20 * log10 (abs (S))); set (gca (), "ydir", "normal"); xlabel ("Time"); ylabel ("Frequency"); %------------------------------------------------------------ % Shows a quadratic chirp of 400 Hz at t=0 and 100 Hz at t=10 % Time goes from -2 to 15 seconds. ***** demo t = 0:1/8000:5; y = chirp (t, 200, 2, 500, "logarithmic"); specgram (y, 256, 8000); %------------------------------------------------------------- % Shows a logarithmic chirp of 200 Hz at t=0 and 500 Hz at t=2 % Time goes from 0 to 5 seconds at 8000 Hz. ***** shared t t = (0:5000) ./ 1000; ***** test y1 = chirp (t); y2 = chirp (t, 0, 1, 100, "linear", 0); assert (y2, y1) ***** test y1 = chirp (t, [], [], [], "li"); y2 = chirp (t, 0, 1, 100, "linear", 0); assert (y2, y1) ***** test y1 = chirp (t, [], [], [], "q"); y2 = chirp (t, 0, 1, 100, "quadratic", 0); assert (y2, y1) ***** test y1 = chirp (t, [], [], [], "lo"); y2 = chirp (t, 1e-6, 1, 100, "logarithmic", 0); assert (y2, y1) ***** error chirp () ***** error chirp (1, 2, 3, 4, 5, 6, 7) ***** error chirp (0, [], [], [], "l") ***** error chirp (0, [], [], [], "foo") 8 tests, 8 passed, 0 known failure, 0 skipped [inst/ellip.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/ellip.m ***** demo [n, Ws] = ellipord ([.1 .2], [.01 .4], 1, 90); [b, a] = ellip (5, 1, 90, [.1 .2]); [h, w] = freqz (b, a); plot (w./pi, 20*log10 (abs (h)), ";;") xlabel ("Frequency"); ylabel ("abs(H[w])[dB]"); axis ([0, 1, -100, 0]); hold ("on"); x=ones (1, length (h)); plot (w./pi, x.*-1, ";-1 dB;") plot (w./pi, x.*-90, ";-90 dB;") hold ("off"); ***** error [a, b] = ellip () ***** error [a, b] = ellip (1) ***** error [a, b] = ellip (1, 2) ***** error [a, b] = ellip (1, 2, 3) ***** error [a, b] = ellip (1, 2, 3, 4, 5, 6, 7) ***** error [a, b] = ellip (.5, 2, 40, .2) ***** error [a, b] = ellip (3, 2, 40, .2, "invalid") ***** test ellip (6, 3, 50, .6); assert (isrow (ans)); ***** test A = ellip (6, 3, 50, .6); assert (isrow (A)); ***** test [A, B] = ellip (6, 3, 50, .6); assert (isrow (A)); assert (isrow (B)); ***** test [z, p, g] = ellip (6, 3, 50, .6); assert (iscolumn (z)); assert (iscolumn (p)); assert (isscalar (g)); ***** test [a, b, c, d] = ellip (6, 3, 50, .6); assert (ismatrix (a)); assert (iscolumn (b)); assert (isrow (c)); assert (isscalar (d)); 12 tests, 12 passed, 0 known failure, 0 skipped [inst/fracshift.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/fracshift.m ***** test d = [1.5 7/6]; N = 1024; t = ((0:N-1)-N/2).'; tt = bsxfun (@minus, t, d); err1= err2 = zeros(N/2,1); for n = 0:N/2-1, phi0 = 2*pi*rand; f0 = n/N; sigma = N/4; x = exp(-t.^2/(2*sigma)).*sin(2*pi*f0*t + phi0); xx = exp(-tt.^2/(2*sigma)).*sin(2*pi*f0*tt + phi0); [y,h] = fracshift(x, d(1)); err1(n+1) = max (abs (y - xx(:,1))); [y,h] = fracshift(x, d(2)); err2(n+1) = max (abs (y - xx(:,2))); endfor rolloff = .1; rejection = 10^-3; idx_inband = 1:ceil((1-rolloff)*N/2)-1; assert (max (err1(idx_inband)) < rejection); assert (max (err2(idx_inband)) < rejection); ***** test N = 1024; p = 6; q = 7; d1 = 64; d2 = d1*p/q; t = 128; [b a] = butter (10,.25); n = zeros (N, 1); n(N/2+(-t:t)) = randn(2*t+1,1); n = filter(b,a,n); n1 = fracshift(n,d1); n1 = resample(n1,p,q); n2 = resample(n,p,q); n2 = fracshift(n2,d2); err = abs (n2 - n1); rejection = 10^-3; assert(max (err) < rejection); ***** test #integer shift similar similar to non-integer N = 1024; t = linspace(0, 1, N).'; x = exp(-t.^2/2/0.25^2).*sin(2*pi*10*t); d = 10; y = fracshift(x, d); yh = fracshift(x, d+1e-8); assert(y, yh, 1e-8) ***** warning fracshift([1 2 3 2 1], 3, h=0.5); #integer shift and filter provided ***** test #bug 52758 x = [0 1 0 0 0 0 0 0]; y = fracshift(x, 1); assert (size(x) == size(y)) ***** test #bug 47387 N = 1024; t = linspace(0, 1, N).'; x = exp(-t.^2/2/0.25^2).*sin(2*pi*10*t); dt = 0.25; d = dt / (t(2) - t(1)); y = fracshift(x, d); L = 37; _t = (-L:L).'; ideal_filter = sinc (_t - (d - fix (d))); m = 2 * L; _t = (0:m).' - (d - fix (d)); beta = 5.6533; _t = 2 * beta / m * sqrt (_t .* (m - _t)); w = besseli (0, _t) / besseli (0, beta); h = w .* ideal_filter; yh = fracshift(x, d, h); assert(y, yh, 1e-8) ***** demo N = 1024; t = linspace (0, 1, N).'; x = exp(-t.^2/2/0.25^2).*sin(2*pi*10*t); dt = 0.25; d = dt / (t(2) - t(1)); y = fracshift(x, d); plot(t,y,'r-;shifted;', t, x, 'k-;original;') axis tight xlabel ('time') ylabel ('signal') 6 tests, 6 passed, 0 known failure, 0 skipped [inst/cconv.m] >>>>> /build/reproducible-path/octave-signal-1.4.6/inst/cconv.m ***** shared x x = [1, 2, 3, 4, 5]; ***** assert (cconv (x, 1), [1, 2, 3, 4, 5], 2*eps) ***** assert (cconv (x', 1), [1; 2; 3; 4; 5], 2*eps) ***** assert (real (cconv (x, [1 1])), [1, 3, 5, 7, 9, 5], 2*eps) ***** assert (cconv (x, [1 1], 3), [8, 12, 10]) ***** assert (cconv ([2 1 2 1], [1 2 3 4]), [2 5 10 16 12 11 4], 1e-14) ***** assert (cconv ([2 1 2 1], [1 2 3 4], 4), [14 16 14 16]) ***** assert (cconv ([2 1 2 1], [1 2 3 4], 3), [22 17 21]) ***** assert (cconv ([2 1 2 1], [1 2 3 4], 2), [28 32]) ***** assert (cconv ([2 1 2 1], [1 2 3 4], 1), 60) ***** assert (cconv (x*j, 1), [1j, 2j, 3j, 4j, 5j]) ***** assert (cconv (x'*j, 1), [1j; 2j; 3j; 4j; 5j]) ***** error cconv () ***** error cconv (1) ***** error cconv (1, 1, [1 1]) ***** error cconv (ones (2, 2), 1) ***** error cconv (1, ones (2, 2)) ***** error cconv (1, 1, 3.5) 17 tests, 17 passed, 0 known failure, 0 skipped Checking C++ files ... [src/firpm.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/firpm.cc ***** error firpm (1.1, 2, 3); ***** error firpm (i, 2, 3); ***** error firpm ([1 2], 2, 3); ***** error firpm (1, 2, 3); ***** error firpm (2, [1 2 3], 3); ***** error firpm (2, [1 i], 3); ***** error firpm (1, [1 2], i); ***** error firpm (1, [1 2], []); ***** error firpm (1, [1 2], [1 2 3]); ***** error firpm (1, [1 2], [1 i]); ***** error firpm (1, [1 2], 1, []); ***** error firpm (1, [1 2], 1, [1 2 3]); ***** error firpm (1, [1 2], 1, [1 2], 'diffi'); ***** error firpm (1, [1 2], 1, [1 2], 'hilberts'); ***** error firpm (1, [1 2], 1, [1 2], {'antisymmetric'}); ***** error firpm (1, [1 2], 1, [1 2], {0, [1 1]}); ***** error firpm (1, [1 2], 1, i); ***** error firpm (2, [0 1], [1 0], {}, 1); ***** warning firpm (1, [.1 .9], 1, [1 2], {0,0,-1}); ***** error firpm (2, [.1 .9], 1); ***** error firpm (1, [1 2], 1, [1 2], 'diff'); ***** error firpm (81, [0 .2 .3 1], [1 -1]); ***** error firpm (81, [0 .2 .3 1], [-1 0], 'a'); ***** test b0 = [ -0.01306844322361 -0.00576879446491 0.00838126690529 -0.04580777271297 -0.03857170268345 -0.06564404551953 -0.03895798206108 0.10957536253443 -0.09596565600341 -0.04596208116089 0.25250866248593 -0.04596208116089 -0.09596565600341 0.10957536253443 -0.03895798206108 -0.06564404551953 -0.03857170268345 -0.04580777271297 0.00838126690529 -0.00576879446491 -0.01306844322361 ]'; [b m] = firpm (20, [0 .2 .3 .4 .5 .7 .9 1], [0 .2 0 0 .5 .7 0 0], [1 4 16 64], 'b', {256}); assert (b0, b, 1e-5); assert (m, 0.21493, -5e-5); ***** test b0 = [ -0.00025230206347 -0.01634334994986 0.02291167335102 0.04226921430992 0.01542390317553 0.03368560169380 -0.07263229297607 0.02402776579442 0.10971999889298 -0.19495185723437 0 0.19495185723437 -0.10971999889298 -0.02402776579442 0.07263229297607 -0.03368560169380 -0.01542390317553 -0.04226921430992 -0.02291167335102 0.01634334994986 0.00025230206347 ]'; [b m] = firpm (20, [0 .2 .3 .4 .5 .7 .9 1], [0 .2 0 0 .5 .7 0 0], [1 4 16 64], 'h', {256}); assert (b0, b, 1e-5); assert (m, 0.19499, -5e-5); ***** test b0 = [ -0.00377491711564 0.00749876297245 -0.01857378491500 -0.02436623414958 0.02123220611895 -0.00133887288041 0.08769905297256 -0.01438000909341 -0.11006930405280 0.20125570410204 0 -0.20125570410204 0.11006930405280 0.01438000909341 -0.08769905297256 0.00133887288041 -0.02123220611895 0.02436623414958 0.01857378491500 -0.00749876297245 0.00377491711564 ]'; [b m] = firpm (20, [0 .2 .3 .4 .5 .7 .9 1], [0 .2 0 0 .5 .7 0 0], [1 4 16 64], 'd', {256}); assert (b0, b, 1e-5); assert (m, 0.49129, -5e-5); ***** test b0 = [ 0.00110112420442 0.00032786748236 0.03890416611405 0.02776952210339 -0.00513106293312 0.00821219616448 -0.05050622257469 0.07143158068636 0.04353182141693 -0.17253512167493 0.13296924791431 0.13296924791431 -0.17253512167493 0.04353182141693 0.07143158068636 -0.05050622257469 0.00821219616448 -0.00513106293312 0.02776952210339 0.03890416611405 0.00032786748236 0.00110112420442 ]'; [b m] = firpm (21, [0 .2 .3 .4 .5 .7 .9 1], [0 .2 0 0 .5 .7 0 0], [1 4 16 64], 'b', {256}); assert (b0, b, 1e-5); assert (m, 0.19215, -5e-5); ***** test b0 = [ 0.00688473243750 -0.00142370547227 0.00792901881787 0.05914568352388 0.03038499582274 0.03374098557746 -0.02191978751853 -0.08702247834731 0.10568616843372 -0.06074859970379 -0.18689246939614 0.18689246939614 0.06074859970379 -0.10568616843372 0.08702247834731 0.02191978751853 -0.03374098557746 -0.03038499582274 -0.05914568352388 -0.00792901881787 0.00142370547227 -0.00688473243750 ]'; [b m] = firpm (21, [0 .2 .3 .4 .5 .7 .9 1], [0 .2 0 0 .5 .7 0 0], [1 4 16 64], 'h', {256}); assert (b0, b, 1e-5); assert (m, 0.20726, -5e-5); ***** test b0 = [ -0.00164508269033 0.00067200008069 0.00268424782721 -0.03510524314006 0.00455581822868 0.00862256307919 0.03221163698642 0.08429446688809 -0.12214036419364 0.04373834279952 0.19029552670347 -0.19029552670347 -0.04373834279952 0.12214036419364 -0.08429446688809 -0.03221163698642 -0.00862256307919 -0.00455581822868 0.03510524314006 -0.00268424782721 -0.00067200008069 0.00164508269033 ]'; [b m] = firpm (21, [0 .2 .3 .4 .5 .7 .9 1], [0 .2 0 0 .5 .7 0 0], [1 4 16 64], 'd', {256}); assert (b0, b, 1e-5); assert (m, 0.47868, -5e-5); ***** test b0=[ -0.01402452049012097 0.001876620211412957 0.03037229727821556 -0.01238680025691372 -0.0170173995332925 -0.001299983105532321 -0.01887047540094186 0.0478657090945251 0.02646457824791903 -0.05579347345500663 -0.001118815789852797 -0.05887946612620026 0.03589780658038378 0.229839817358415 -0.1717538614573135 -0.2842595261696291 ]'; [b m] = firpm (31 , [0 .3 .4 .7 .8 1], [0 1 0], [10 1 10], 'a', {1}); assert (b, [b0 fliplr(-b0)], 5e-9); assert (m, 0.059734, -5e-5); ***** test b0 = [ -8.876086291046802e-04 2.355569104748801e-02 -8.241671888096303e-04 -4.470074798008300e-02 -2.808154545387648e-03 8.170132813894931e-02 -1.058582827015804e-03 -1.777420298924492e-01 -2.265334116571183e-02 5.239577857603830e-01 8.489449590726375e-01 5.239577857603830e-01 -2.265334116571183e-02 -1.777420298924492e-01 -1.058582827015804e-03 8.170132813894931e-02 -2.808154545387648e-03 -4.470074798008300e-02 -8.241671888096303e-04 2.355569104748801e-02 -8.876086291046802e-04 ]'; [b m] = firpm (N=20, [0 .4 .6 1], {@(n,f,g,w,v1) deal ((log2 (v1/n+w(2)+g)).*(g<=f(2)), ones (size(g))),2*N}); assert (b0, b, 1e-5); assert (m, .0210628, -5e-5); ***** test [b m] = firpm (40, [0 .5 .6 1], [1 0]); assert (m, 0.010304, -5e-5); ***** test [b m] = firpm (40, [0 .25 .3 .6 .65 1], [0 1 0]); assert (m, 0.055834, -5e-5); ***** test [b m] = firpm (30, [0 .2 .4 .6 .8 1], [1 .5 0]); assert (m, 5.6277e-04, -5e-5); ***** test [b m] = firpm (40, [0 .2 .3 .4 .5 .6 .7 .8 .9 1], [1 0 1 0 1], [11 100 7 10 5]); assert (m, 0.25723, -5e-5); ***** test [b m] = firpm (80, [0 .2 .3 1], [1 -1]); assert (m, 6.6123e-04, -5e-5); ***** test [b m] = firpm (40, [0 2.5/pi], [0 2.5], [.5], 'differentiator'); assert (m, 2.5226e-06, -5e-5); ***** test [b m] = firpm (59, [0 .2 .3 1], [0 1 0 0], 'd'); assert (m, 0.0073785, -5e-5); ***** test [b m] = firpm (31, [0 .5 .7 1], [0 1], 'antisymmetric'); assert (m, 0.0015660, -5e-5); ***** test assert (firpm (31, [0 .5 .7 1], [0 1], 'antisymmetric'), firpm (31, [0 .5 .7 1], [0 1], 'hilbert')) ***** test [b m] = firpm (30, [.1 .9], 1, 'antisymmetric'); assert (m, 0.0027064, -5e-5); ***** test [b m] = firpm (1000, [0 .4 .41 1], [1 0]); assert (m, 5.2892e-05, -5e-5); ***** test [b m] = firpm (120, [0 .5 .55 .75 .75 1], [1 0 0], [1 1 4 64 64 64]); assert (m, 0.0048543, -5e-5); ***** test [b m] = firpm (11, [0 2*.45], .5, 'symmetric'); assert (m, 0.045066, -5e-5); ***** warning firpm (298, [0 .28 .33 .48 .53 1], [0 1 0], [93 68 89], {50,-1}); ***** test [b m] = firpm (298, [0 .28 .33 .48 .53 1], [0 1 0], [93 68 89], {50}); assert (m, 6.86583e-05, -5e-5); ***** test assert (firpm (11, [0 2*.45], .5, 'symmetric'), firpm (11, [0 2*.45], .5, 'bandpass')) ***** test assert (firpm (11, [0 2*.45], .5, 'symmetric'), firpm (11, [0 2*.45], .5)) ***** assert (firpm (20, [0 .3 .5 1], [1 1 0 0]), firpm (20, [0 .3 .5 1], [1 0])) ***** test assert ( firpm (30, [0.1 0.9], 1, "antisymmetric"), firpm (30, [0.1 0.9], 1, "hilbert")) ***** test assert ( firpm (11, [0 0.9], 1, {1}), firpm (11, [0 0.9], 1, {64})) ***** test [b1 m1] = firpm (20, [0 0.4 0.5 1], [1 0], [1 1/8]); [b2 m2] = firpm (20, [0 0.4 0.5 1], [1 0], [8 1]); assert (b1, b2) assert (m1 * 8, m2) ***** demo N=38; F=[0 .47 .53 1]; A=[1 1 0 0]; W=[1 1]; ant=0; [b m r] = firpm (N, F, A, W, 'sa'(1+ant)); mul=[1 i](1+ant); clf; [h f] = freqz (b); plot (f/pi, real (mul*h.*exp (i*f*N/2)), f=F(1:2),(a=A(1:2))-(M=m/W(1)),'r', f, a+M,'r', f=F(3:4),(a=A(3:4))-(M=m/W(2)),'r', f, a+M,'r', r.fextr, real ((mul*r.H.*exp (i*r.fgrid*pi*N/2))(r.iextr)),'ko') grid on; axis ([0 1 -.1 1.1]); set (gca, 'xtick', [0:.1:1], 'ytick', [0:.1:1]) title (sprintf ('firpm type-I low-pass filter (order=%i)', length (b) - 1)); ylabel ('Amplitude response'); xlabel ('Frequency (normalized)') axes ('position', [.58 .35 .3 .5]) stem (b); grid off title ('Impulse response') axis ([1 length(b) -.15 .55]) %-------------------------------------------------- % Figure shows transfer and impulse-response of % half-band filter design. ***** demo N=41; F=[0 .1 .16 .34 .4 1]; A=[0 0 1 1 0 0]; W=[1 3 2]; ant=1; [b m r] = firpm (N, F, A, W, 'sa'(1+ant)); mul=[1 i](1+ant); clf; [h f] = freqz (b); plot (f/pi, real (mul*h.*exp (i*f*N/2)), f=F(1:2),(a=A(1:2))-(M=m/W(1)),'r', f, a+M,'r', f=F(3:4),(a=A(3:4))-(M=m/W(2)),'r', f, a+M,'r', f=F(5:6),(a=A(5:6))-(M=m/W(3)),'r', f, a+M,'r', r.fextr, real ((mul*r.H.*exp (i*r.fgrid*pi*N/2))(r.iextr)),'ko') grid on; axis ([0 1 -.1 1.1]); set (gca, 'xtick', [0:.1:1], 'ytick', [0:.1:1]) title (sprintf ('firpm type-IV weighted band-pass filter (order=%i)', length (b) - 1)); ylabel ('Amplitude response'); xlabel ('Frequency (normalized)') axes ('position', [.55 .4 .3 .4]) stem (b); grid off title ('Impulse response') axis ([1 length(b) -.3 .3]) %-------------------------------------------------- % Figure shows transfer and impulse-response of % band-pass filter design. ***** demo curve = @(a,b,y,z,x) z*(b-a)./((x-a)*z/y+b-x); respFn = @(n,f,g,w,curve) deal (g>=f(3) & g<=f(4), ... (g<=f(2)).*curve (f(2),f(1),w(1),w(3),g) + ... (g>=f(3) & g<=f(4))*w(2) + ... (g>=f(5) & g<=f(6)).*curve (f(5),f(6),w(1),w(3),g) + ... (g>f(7))*w(4)); % NB contiguous bands so > not >=. b=firpm (127, [0 .2 .24 .26 .3 .5 .5 1], {respFn, curve}, [10 1 100 10]); clf; [h f]=freqz (b); plot (f/pi, 20*log10 (abs (h))) grid on; axis ([0 1 -90 5]); set (gca, 'xtick', [0:.1:1], 'ytick', [-80:10:0]) title (sprintf ('firpm type-II band-pass filter with shaped stop-bands (order=%i)', length (b) - 1)); ylabel ('Magnitude response (dB)'); xlabel ('Frequency (normalized)') %-------------------------------------------------- % Figure shows transfer of band-pass filter design % with shaped error-weight in the stop-bands. ***** demo b = firpm (40, [0 .1 .3 1], [-1 1]); clf; [h f] = freqz (b,1,2^14); plot (f/pi, 20*log10 (abs (h))) grid on; axis ([0 1 -60 5]); set (gca, 'xtick', [0:.1:1]) title (sprintf ('firpm type-I notch filter (order=%i)', length (b) - 1)); ylabel ('Magnitude response (dB)'); xlabel ('Frequency (normalized)') axes ('position', [.42 .55 .45 .2]) plot (f/pi, 20*log10 (abs (h))); grid on axis ([0 1 -(e=1e-2) e]) title ('Pass-bands detail') axes ('position', [.42 .2 .45 .2]) stem (b); grid off title ('Impulse response') axis ([1 length(b) -.45 .65]) %-------------------------------------------------- % Figure shows transfer and impulse-response of % notch filter design. ***** demo b = firpm (1000, [0 .4 .41 1], [1 0], {1}); clf; [h f] = freqz (b, 1, 2^17); plot (f/pi, 20*log10 (abs (h))) title (sprintf ('firpm type-I brick-wall low-pass filter (order=%i)', length (b) - 1)); ylabel ('Magnitude response (dB)'); xlabel ('Frequency (normalized)') grid on; axis ([0 1 -100 5]); set (gca, 'xtick', [0:.1:1]) axes ('position', [.55 .6 .3 .2]) plot (f/pi, 20*log10 (abs (h))); grid on title ('Details') axis ([.38 .401 -(e=1e-3) e]) axes ('position', [.55 .3 .3 .2]) plot (f/pi, 20*log10 (abs (h))); grid on axis ([.409 .43 -86 -85]) axes ('position', [.2 .35 .2 .3]) semilogy (abs (b)); grid off title ('Impulse response magnitude') axis ([0 length(b)+1 1e-6 1]) %-------------------------------------------------- % Figure shows transfer and impulse-response of % brick-wall low-pass filter design. ***** demo b = firpm (20, [0 2.5]/pi, [0 2.5], 'differentiator'); clf [h f] = freqz (b,1,2^12); subplot (2, 1, 1) plot (f, abs (h)); grid on title (sprintf ('firpm type-III differentiator filter (order=%i)', length (b) - 1)); ylabel ('Magnitude response'); xlabel ('Frequency (radians/sample)') axis ([0 pi 0 pi]) subplot (2, 1, 2) plot (f, abs (abs (h)./f-1)); grid on axis ([0 2.5 0 1e-3]) title ('Pass-band error (inverse-f weighted)') %-------------------------------------------------- % Figure shows transfer of differentiator filter design. % above: full-band % below: detail of pass-band error (inverse-f weighted) ***** demo b = firpm (30, [.05 .95], 1, 'antisymmetric'); clf; [h f] = freqz (b); plot (f/pi, abs (h)) grid on; axis ([0 1 0 1.1]); set (gca, 'xtick', [0:.1:1], 'ytick', [0:.1:1]) title (sprintf ('firpm type-III hilbert transformer filter (order=%i)', length (b) - 1)); ylabel ('Magnitude response'); xlabel ('Frequency (normalized)') axes ('position', [.3 .25 .45 .4]) stem (b); grid off title ('Impulse response') axis ([1 length(b) -.7 .7]) %-------------------------------------------------- % Figure shows transfer and impulse-response of % hilbert filter design. ***** demo cic = @(f) (sin (pi*(f+eps*!f)/2)./sin (pi*(f+eps*!f)/2/10)/10).^4; if compare_versions(OCTAVE_VERSION, '6', '<') eval('b = firpm (30, [0 .5 .7 1], @(n,f,g, w) deal (a=(g<=f(2))./cic (g), 1./(a+!a)));') else function [ag wg] = resp (n,f,g,w) ag = (g<=f(2))./cic (g); wg = 1./(ag+!ag); endfunction b = firpm (30, [0 .5 .7 1], @resp); endif clf; [h f]=freqz (b); plot (f/=pi, 20*log10 (abs (h))) grid on; axis ([0 1 -60 6]); set (gca, 'xtick', [0:.1:1]) title (sprintf ('firpm type-I CIC-compensation filter (order=%i)', length (b) - 1)); ylabel ('Magnitude response (dB)'); xlabel ('Frequency (normalized)') axes ('position', [2 3 4 3]/10) plot (f, 20*log10 (abs (h).*cic (f))); axis ([0 .55 -.04 .04]); grid on title ('Compensated filter response') %-------------------------------------------------- % Figure shows transfer details of CIC-compensation % filter design. ***** demo clf; n=30; Fp=.8; for d=linspace (-.5, .5, 10) b = firpm (n, [0 Fp], {@(n,f,g,w,d,Fp) (g<=Fp).*cos (g*pi*d),d,Fp})... + firpm (n, [0 Fp], {@(n,f,g,w,d,Fp) (g<=Fp).*sin (g*pi*d),d,Fp}, 'a'); [g f]=grpdelay (b); set (gca,'ColorOrderIndex',1); plot (f/pi, g-n/2); hold ('on'); end; hold ('off'); grid on; axis ([0 1 -.6 .6]); set (gca, 'xtick', [0 Fp 1], 'ytick', [-.5:.5:.5]) title (sprintf ('firpm type-I fractional-delay filters (order=%i)', length (b) - 1)); ylabel ('Fractional-delay (samples)'); xlabel ('Frequency (normalized)') %-------------------------------------------------- % Figure shows delay response of (non-linear-phase) % filter designs with progressive fractional-delay. 52 tests, 52 passed, 0 known failure, 0 skipped [src/cl2bp.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/cl2bp.cc ***** test b = [ 0.0000000000000000 0.0563980420304213 -0.0000000000000000 -0.0119990278695041 -0.0000000000000001 -0.3016146759510104 0.0000000000000001 0.5244313235801866 0.0000000000000001 -0.3016146759510104 -0.0000000000000001 -0.0119990278695041 -0.0000000000000000 0.0563980420304213 0.0000000000000000]; assert(cl2bp(7, 0.25*pi, 0.75*pi, [0.01, 1.04, 0.01], [-0.01, 0.96, -0.01], 2^11), b, 1e-14); assert(cl2bp(7, 0.25*pi, 0.75*pi, [0.01, 1.04, 0.01], [-0.01, 0.96, -0.01]), b, 1e-14); 1 test, 1 passed, 0 known failure, 0 skipped [src/__ultrwin__.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/__ultrwin__.cc ***** assert (1) 1 test, 1 passed, 0 known failure, 0 skipped [src/medfilt1.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/medfilt1.cc ***** assert (medfilt1 ([1 2 3 4 3 2 1]), [1 2 3 3 3 2 1]); ***** assert (medfilt1 ([1 2 3 4 3 2 1]'), [1 2 3 3 3 2 1]'); ***** assert (medfilt1 ([1 2 3 4 3 2 1], "truncate"), [1.5 2 3 3 3 2 1.5]); ***** assert (medfilt1 ([-1 2 3 4 3 -2 1], "truncate"), [0.5 2 3 3 3 1 -0.5]); ***** assert (medfilt1 ([-1 2 3 4 3 -2 1], "zeropad"), [0 2 3 3 3 1 0]); ***** assert (medfilt1 ([]), []); ***** test A = [1 2 3 ; 6 5 4 ; 6 5 2 ]; assert (medfilt1 (A,4,[],2), [0.5 1.5 1.5; 2.5 4.5 4.5; 2.5 3.5 3.5]); assert (medfilt1 (A,4,[],1), [0.5 3.5 3.5; 1 3.5 3.5; 1.5 2.5 2.5]'); assert (medfilt1 (A,3,[],1), [1 2 3; 6 5 3; 6 5 2]); ***** test A = [ Inf 4 -4 NaN -1 -1 -3 -2 1 -Inf]; B = medfilt1 (A, 7, [], 1, 'includenan', 'zeropad'); assert (B, [0, 0, 0, NaN, 0, 0, 0, 0, 0, 0]); B = medfilt1 (A, 7, [], 2, 'includenan', 'zeropad'); assert (B, [NaN, NaN, NaN, NaN, NaN, NaN, NaN, -1, -1, 0]); B = medfilt1 (A, 7, [], 2, 'includenan', 'truncate'); assert (B, [NaN, NaN, NaN, NaN, NaN, NaN, NaN, -1.5, -2, -2.5]); B = medfilt1 (A, 7, [], 2, 'omitnan', 'zeropad'); assert (B, [0, 0, -0.5, -1, -1.5, -1.5, -1.5, -1, -1, 0]); B = medfilt1 (A, 7, [], 2, 'omitnan', 'truncate'); assert (B, [4, 1.5, -1, -1, -1.5, -1.5, -1.5, -1.5, -2, -2.5]); ***** test A = medfilt1 ([ NaN NaN -Inf], 4, [], 2, 'omitnan', 'truncate'); assert (A, [NaN, -Inf, -Inf]); ***** test A = medfilt1 ([-2 Inf -2; 1 3 -Inf; 1 0 -Inf], 1, [], 2); assert (A, [-2 Inf -2; 1 3 -Inf; 1 0 -Inf]); ***** test A = medfilt1 ([-Inf 0 -3; Inf 1 NaN], 9, [], 1); assert (A, [0, 0, NaN; 0, 0, NaN]); A = medfilt1 ([-Inf 0 -3; Inf 1 NaN], 9, [], 1, 'omitnan', 'truncate'); assert (A, [NaN, 0.5, -3; NaN, 0.5, -3]); ***** test A = medfilt1 ([Inf -3 Inf Inf 0 -2; Inf 1 NaN 5 5 -3], 3, [], 1); assert (A, [Inf, 0, NaN, 5, 0, -2; Inf, 0, NaN, 5, 0, -2]); ***** test A = medfilt1 ([3 3 7 5 6]', 5, [], 1, 'omitnan', 'truncate'); assert (A, [3, 4, 5, 5.5, 6]'); A = medfilt1 ([3 3 7 5 6]', 5, [], 2, 'omitnan', 'truncate'); assert (A, [3, 3, 7, 5, 6]'); ***** test A = medfilt1 ([3 1 4 1 3], 3, 'omitnan', 'truncate'); assert (A, [2, 3, 1, 3, 2]); ***** test A = medfilt1 ([3 1 4 1 3], 6, 'omitnan', 'truncate'); assert (A, [3, 2, 3, 3, 2]); ***** test A = medfilt1 ([1 2 3 4 4 3 2 1; 6 5 4 3 3 4 5 6; 6 5 4 3 2 1 0 -1; 6 5 4 3 2 1 0 -1]); assert (A, [1 2 3 3 3 3 2 1; 6 5 4 3 3 3 2 1; 6 5 4 3 2 1 0 -1; 6 5 4 3 2 1 0 -1]); ***** error (medfilt1 ([1 2 3], -1)); ***** error (medfilt1 ([1 2 3], 1, [], "hello")); ***** error (medfilt1 ([1 2 3], 1, [], "omitnan", false)); ***** error (medfilt1 ({1 2 3})); 20 tests, 20 passed, 0 known failure, 0 skipped [src/remez.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/remez.cc ***** test b = [ 0.0415131831103279 0.0581639884202646 -0.0281579212691008 -0.0535575358002337 -0.0617245915143180 0.0507753178978075 0.2079018331396460 0.3327160895375440 0.3327160895375440 0.2079018331396460 0.0507753178978075 -0.0617245915143180 -0.0535575358002337 -0.0281579212691008 0.0581639884202646 0.0415131831103279]; assert(remez(15,[0,0.3,0.4,1],[1,1,0,0]),b,1e-14); 1 test, 1 passed, 0 known failure, 0 skipped [src/__fwht__.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/__fwht__.cc ***** assert (1) 1 test, 1 passed, 0 known failure, 0 skipped [src/upfirdn.cc] >>>>> /build/reproducible-path/octave-signal-1.4.6/src/upfirdn.cc ***** assert (isequal (upfirdn (1:100, 1, 1, 1), 1:100)) ***** assert (isequal (upfirdn (1:100, 1, 1, 2), 1:2:100)) ***** error upfirdn () ***** error upfirdn (1,2) ***** error upfirdn (1,2,3) ***** error upfirdn (1,2,3,4,5) 6 tests, 6 passed, 0 known failure, 0 skipped Done running the unit tests. Summary: 1071 tests, 1070 passed, 1 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_installinfo -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_dwz -a -O--buildsystem=octave dh_strip -a -O--buildsystem=octave dh_makeshlibs -a -O--buildsystem=octave dh_shlibdeps -a -O--buildsystem=octave dpkg-shlibdeps: warning: diversions involved - output may be incorrect diversion by libc6 from: /lib/ld-linux-armhf.so.3 dpkg-shlibdeps: warning: diversions involved - output may be incorrect diversion by libc6 to: /lib/ld-linux-armhf.so.3.usr-is-merged dh_octave_substvar -O--buildsystem=octave dh_installdeb -O--buildsystem=octave dh_gencontrol -O--buildsystem=octave dpkg-gencontrol: warning: package octave-signal: substitution variable ${octave:Upstream-Description} unused, but is defined dpkg-gencontrol: warning: package octave-signal: substitution variable ${octave:Upstream-Description} unused, but is defined dh_md5sums -O--buildsystem=octave dh_builddeb -O--buildsystem=octave dpkg-deb: building package 'octave-signal-dbgsym' in '../octave-signal-dbgsym_1.4.6-1_armhf.deb'. dpkg-deb: building package 'octave-signal' in '../octave-signal_1.4.6-1_armhf.deb'. dpkg-genbuildinfo --build=binary -O../octave-signal_1.4.6-1_armhf.buildinfo dpkg-genchanges --build=binary -O../octave-signal_1.4.6-1_armhf.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: including full 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/1894 and its subdirectories I: Current time: Sun Oct 20 18:59:53 -12 2024 I: pbuilder-time-stamp: 1729493993 Mon Oct 21 07:00:08 UTC 2024 I: 1st build successful. Starting 2nd build on remote node virt64b-armhf-rb.debian.net. Mon Oct 21 07:00:08 UTC 2024 I: Preparing to do remote build '2' on virt64b-armhf-rb.debian.net. Mon Oct 21 07:16:48 UTC 2024 I: Deleting $TMPDIR on virt64b-armhf-rb.debian.net. Mon Oct 21 07:16:51 UTC 2024 I: octave-signal_1.4.6-1_armhf.changes: Format: 1.8 Date: Sun, 29 Sep 2024 08:44:02 -0300 Source: octave-signal Binary: octave-signal octave-signal-dbgsym Architecture: armhf Version: 1.4.6-1 Distribution: unstable Urgency: medium Maintainer: Debian Octave Group Changed-By: Rafael Laboissière Description: octave-signal - signal processing functions for Octave Changes: octave-signal (1.4.6-1) unstable; urgency=medium . * New upstream version 1.4.6 * d/control: + Bump Standards-Version to 4.7.0 (no changes needed) + Resctrict build-dependencies needed for building the documentation to the "!nodoc" profile * d/clean: Clean doc/signal.html Checksums-Sha1: 50e64965da45ab1d1fbbb3227bdb9a433ccb2e9d 2371748 octave-signal-dbgsym_1.4.6-1_armhf.deb 928e4c7f1cdb01a429325b56b2d8fda3d6b4902c 22852 octave-signal_1.4.6-1_armhf.buildinfo 4e6767e5602f625c337d69b8b365161f0cc6023d 736220 octave-signal_1.4.6-1_armhf.deb Checksums-Sha256: 9adb16e80b773da20d5b0d2d709d65d0760cf163114ba160fb059b7e01c8c69e 2371748 octave-signal-dbgsym_1.4.6-1_armhf.deb fe45d5f3c94f5054e11ac35b1067cbf91eb4f1f36d8dccfa8e8d2ba22ca7f3cf 22852 octave-signal_1.4.6-1_armhf.buildinfo 8a09f7d51719b8feafcf526e78558b3dd47bb2ead44cb60b7cdcbd3135fc8c97 736220 octave-signal_1.4.6-1_armhf.deb Files: 57c0de18ab2ae9117b7458206b9659ec 2371748 debug optional octave-signal-dbgsym_1.4.6-1_armhf.deb d5b351f2cb33ab7e7dc4c955011f9c43 22852 math optional octave-signal_1.4.6-1_armhf.buildinfo 2959a27880949c00e3e70bbf51920756 736220 math optional octave-signal_1.4.6-1_armhf.deb Mon Oct 21 07:16:52 UTC 2024 I: diffoscope 281 will be used to compare the two builds: Running as unit: rb-diffoscope-armhf_24-7803.service Warning: program compiled against libxml 212 using older 209 # Profiling output for: /usr/bin/diffoscope --timeout 7200 --html /srv/reproducible-results/rbuild-debian/r-b-build.nfNnVHNn/octave-signal_1.4.6-1.diffoscope.html --text /srv/reproducible-results/rbuild-debian/r-b-build.nfNnVHNn/octave-signal_1.4.6-1.diffoscope.txt --json /srv/reproducible-results/rbuild-debian/r-b-build.nfNnVHNn/octave-signal_1.4.6-1.diffoscope.json --profile=- /srv/reproducible-results/rbuild-debian/r-b-build.nfNnVHNn/b1/octave-signal_1.4.6-1_armhf.changes /srv/reproducible-results/rbuild-debian/r-b-build.nfNnVHNn/b2/octave-signal_1.4.6-1_armhf.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: 0.416s) 0.416s 2 calls outputs 0.000s 1 call cleanup ## recognizes (total time: 0.049s) 0.049s 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: 746ms CPU time consumed: 747ms Mon Oct 21 07:16:53 UTC 2024 I: diffoscope 281 found no differences in the changes files, and a .buildinfo file also exists. Mon Oct 21 07:16:53 UTC 2024 I: octave-signal from trixie built successfully and reproducibly on armhf. Mon Oct 21 07:16:54 UTC 2024 I: Submitting .buildinfo files to external archives: Mon Oct 21 07:16:54 UTC 2024 I: Submitting 24K b1/octave-signal_1.4.6-1_armhf.buildinfo.asc Mon Oct 21 07:16:55 UTC 2024 I: Submitting 24K b2/octave-signal_1.4.6-1_armhf.buildinfo.asc Mon Oct 21 07:16:56 UTC 2024 I: Done submitting .buildinfo files to http://buildinfo.debian.net/api/submit. Mon Oct 21 07:16:56 UTC 2024 I: Done submitting .buildinfo files. Mon Oct 21 07:16:56 UTC 2024 I: Removing signed octave-signal_1.4.6-1_armhf.buildinfo.asc files: removed './b1/octave-signal_1.4.6-1_armhf.buildinfo.asc' removed './b2/octave-signal_1.4.6-1_armhf.buildinfo.asc'