pmidi-1.6.0/0000777000076400007640000000000007771154137006411 5pmidi-1.6.0/README0000644000076400007640000001072307771130750007203 This is pmidi - a command line midi player for ALSA Written by Steve Ratcliffe Web: http://www.parabola.demon.co.uk/alsa/pmidi.html Web: http://sourceforge.net/projects/pmidi See the file COPYING for licence details (GPL). Build and install ----------------- See the INSTALL file for full details. Normally you just need to use the following commands: ./configure make make install To compile from CVS use the following commands first to create the configure script: aclocal autoconf -a automake Before use ---------- 1. First check that the correct sequencer modules are loaded for your sound card: - For a card with an external Midi connection, you need to load snd-seq-midi. - For the OPL2/3 internal synthesiser you need to load snd-synth-opl3. - For the AWE32/64 internal synthesiser you need to load snd-synth-emu8000. - For the SB Live! internal synthesiser you need to load snd-synth-emu10k1. - (Let me know of any more) 2.a If you have an AWE32/64 or SB Live! you will need to load the sounds with sfxload in the same way as for the standard kernel drivers. 2.b If you have the OPL3 FM synthesiser you will have to load the FM instruments with sbiload. See note below. 3. Make sure that the synth in the mixer is turned up and unmuted if appropriate. Usage ----- pmidi [-p client:port ...] [-l] [-d delay] file ... -p client:port - A alsa client and port number to send midi to -l - List possible output ports that could be used -d delay - Delay after song ends (default 2 sec) Because you may have more than one sound card and each sound card may have several MIDI connections, you have to tell pmidi which one to use. First find out what the possibilities are for your system: If you run: pmidi -l it will give you a list of the possible devices that it can play to. On my system I get: Port Client name Port name 64:0 Rawmidi 0 - EMU10K1 MPU-401 (U EMU10K1 MPU-401 (UART) 65:0 Emu10k1 WaveTable Emu10k1 Port 0 65:1 Emu10k1 WaveTable Emu10k1 Port 1 65:2 Emu10k1 WaveTable Emu10k1 Port 2 65:3 Emu10k1 WaveTable Emu10k1 Port 3 128:0 FLUID Synth (28152) Synth input port (28152) 129:0 Client-129 TiMidity port 0 129:1 Client-129 TiMidity port 1 Any of the port numbers in the first column can be used with pmidi. In the example above the first one is the external Midi port, and the next four are the internal wave table synthesiser on the SoundBlaster Live! If you don't see anything listed then check that the correct ALSA modules are loaded as in the section "Before use". Running pmidi ------------- You specify the port or ports to use with the -p option, or by setting the environment variable ALSA_OUTPUT_PORTS. For example to use port 0 on client 65: pmidi -p 65:0 song.mid or export ALSA_OUTPUT_PORTS=65:0 pmidi song.mid A list of client ports can be supplied, which will be used if the midi file contains port select sequences. pmidi -p 65:0,65:1,65:2,65:3 song.mid You can also use spaces to separate with suitable quoting on the command line. OPL3 FM synthesiser ------------------- (This note was provided by Dmitrii Sadovskii) This is what has to be done to use the OPL3 FM synthesiser with pmidi (provided that the ALSA's respective card module is already loaded) # modprobe -k snd-synth-opl3 > sbiload -l (same as pmidi -l) Port Client name Port name 64:0 External MIDI 0 MIDI 0-0 65:0 OPL3 FM synth OPL3 Port > sbiload -p65:0 --opl3 std.o3 drums.o3 > pmidi -p65:0 sample.midi sbiload: alsa-tools/seq/sbiload/ Written by Uros Bizjak Web: http://www.kss-loka.si/~uros/sbiload.html sbiload works with ALSA driver 0.9.0beta2 and later. Use it with native ALSA sequencers, such as pmidi-1.5.1 or later. Laptops: the sound card (or the driver?) does not keep the instrument patches after suspend, so sbiload should be called at resume (as well as alsactl restore) It should be said that ALSA+pmidi plays with better quality than OSS/Free but that in general FM synthesisers are not great for good midi. 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However `strip' might not be the right # tool to use in cross-compilation environments, therefore Automake # will honor the `STRIP' environment variable to overrule this program. if test "$cross_compiling" != no; then if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}strip", so it can be a program name with args. set dummy ${ac_tool_prefix}strip; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_STRIP+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$STRIP"; then ac_cv_prog_STRIP="$STRIP" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_STRIP="${ac_tool_prefix}strip" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi STRIP=$ac_cv_prog_STRIP if test -n "$STRIP"; then echo "$as_me:$LINENO: result: $STRIP" >&5 echo "${ECHO_T}$STRIP" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi fi if test -z "$ac_cv_prog_STRIP"; then ac_ct_STRIP=$STRIP # Extract the first word of "strip", so it can be a program name with args. set dummy strip; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_ac_ct_STRIP+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$ac_ct_STRIP"; then ac_cv_prog_ac_ct_STRIP="$ac_ct_STRIP" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_STRIP="strip" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done test -z "$ac_cv_prog_ac_ct_STRIP" && ac_cv_prog_ac_ct_STRIP=":" fi fi ac_ct_STRIP=$ac_cv_prog_ac_ct_STRIP if test -n "$ac_ct_STRIP"; then echo "$as_me:$LINENO: result: $ac_ct_STRIP" >&5 echo "${ECHO_T}$ac_ct_STRIP" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi STRIP=$ac_ct_STRIP else STRIP="$ac_cv_prog_STRIP" fi fi INSTALL_STRIP_PROGRAM="\${SHELL} \$(install_sh) -c -s" # We need awk for the "check" target. The system "awk" is bad on # some platforms. ac_ext=c ac_cpp='$CPP $CPPFLAGS' ac_compile='$CC -c $CFLAGS $CPPFLAGS conftest.$ac_ext >&5' ac_link='$CC -o conftest$ac_exeext $CFLAGS $CPPFLAGS $LDFLAGS conftest.$ac_ext $LIBS >&5' ac_compiler_gnu=$ac_cv_c_compiler_gnu if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}gcc", so it can be a program name with args. set dummy ${ac_tool_prefix}gcc; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$CC"; then ac_cv_prog_CC="$CC" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_CC="${ac_tool_prefix}gcc" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi CC=$ac_cv_prog_CC if test -n "$CC"; then echo "$as_me:$LINENO: result: $CC" >&5 echo "${ECHO_T}$CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi fi if test -z "$ac_cv_prog_CC"; then ac_ct_CC=$CC # Extract the first word of "gcc", so it can be a program name with args. set dummy gcc; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_ac_ct_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$ac_ct_CC"; then ac_cv_prog_ac_ct_CC="$ac_ct_CC" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_CC="gcc" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi ac_ct_CC=$ac_cv_prog_ac_ct_CC if test -n "$ac_ct_CC"; then echo "$as_me:$LINENO: result: $ac_ct_CC" >&5 echo "${ECHO_T}$ac_ct_CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi CC=$ac_ct_CC else CC="$ac_cv_prog_CC" fi if test -z "$CC"; then if test -n "$ac_tool_prefix"; then # Extract the first word of "${ac_tool_prefix}cc", so it can be a program name with args. set dummy ${ac_tool_prefix}cc; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$CC"; then ac_cv_prog_CC="$CC" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_CC="${ac_tool_prefix}cc" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi CC=$ac_cv_prog_CC if test -n "$CC"; then echo "$as_me:$LINENO: result: $CC" >&5 echo "${ECHO_T}$CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi fi if test -z "$ac_cv_prog_CC"; then ac_ct_CC=$CC # Extract the first word of "cc", so it can be a program name with args. set dummy cc; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_ac_ct_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$ac_ct_CC"; then ac_cv_prog_ac_ct_CC="$ac_ct_CC" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_CC="cc" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi ac_ct_CC=$ac_cv_prog_ac_ct_CC if test -n "$ac_ct_CC"; then echo "$as_me:$LINENO: result: $ac_ct_CC" >&5 echo "${ECHO_T}$ac_ct_CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi CC=$ac_ct_CC else CC="$ac_cv_prog_CC" fi fi if test -z "$CC"; then # Extract the first word of "cc", so it can be a program name with args. set dummy cc; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$CC"; then ac_cv_prog_CC="$CC" # Let the user override the test. else ac_prog_rejected=no as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then if test "$as_dir/$ac_word$ac_exec_ext" = "/usr/ucb/cc"; then ac_prog_rejected=yes continue fi ac_cv_prog_CC="cc" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done if test $ac_prog_rejected = yes; then # We found a bogon in the path, so make sure we never use it. set dummy $ac_cv_prog_CC shift if test $# != 0; then # We chose a different compiler from the bogus one. # However, it has the same basename, so the bogon will be chosen # first if we set CC to just the basename; use the full file name. shift ac_cv_prog_CC="$as_dir/$ac_word${1+' '}$@" fi fi fi fi CC=$ac_cv_prog_CC if test -n "$CC"; then echo "$as_me:$LINENO: result: $CC" >&5 echo "${ECHO_T}$CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi fi if test -z "$CC"; then if test -n "$ac_tool_prefix"; then for ac_prog in cl do # Extract the first word of "$ac_tool_prefix$ac_prog", so it can be a program name with args. set dummy $ac_tool_prefix$ac_prog; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$CC"; then ac_cv_prog_CC="$CC" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_CC="$ac_tool_prefix$ac_prog" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi CC=$ac_cv_prog_CC if test -n "$CC"; then echo "$as_me:$LINENO: result: $CC" >&5 echo "${ECHO_T}$CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi test -n "$CC" && break done fi if test -z "$CC"; then ac_ct_CC=$CC for ac_prog in cl do # Extract the first word of "$ac_prog", so it can be a program name with args. set dummy $ac_prog; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_prog_ac_ct_CC+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if test -n "$ac_ct_CC"; then ac_cv_prog_ac_ct_CC="$ac_ct_CC" # Let the user override the test. else as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_prog_ac_ct_CC="$ac_prog" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done fi fi ac_ct_CC=$ac_cv_prog_ac_ct_CC if test -n "$ac_ct_CC"; then echo "$as_me:$LINENO: result: $ac_ct_CC" >&5 echo "${ECHO_T}$ac_ct_CC" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi test -n "$ac_ct_CC" && break done CC=$ac_ct_CC fi fi test -z "$CC" && { { echo "$as_me:$LINENO: error: no acceptable C compiler found in \$PATH See \`config.log' for more details." >&5 echo "$as_me: error: no acceptable C compiler found in \$PATH See \`config.log' for more details." >&2;} { (exit 1); exit 1; }; } # Provide some information about the compiler. echo "$as_me:$LINENO:" \ "checking for C compiler version" >&5 ac_compiler=`set X $ac_compile; echo $2` { (eval echo "$as_me:$LINENO: \"$ac_compiler --version &5\"") >&5 (eval $ac_compiler --version &5) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } { (eval echo "$as_me:$LINENO: \"$ac_compiler -v &5\"") >&5 (eval $ac_compiler -v &5) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } { (eval echo "$as_me:$LINENO: \"$ac_compiler -V &5\"") >&5 (eval $ac_compiler -V &5) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ int main () { ; return 0; } _ACEOF ac_clean_files_save=$ac_clean_files ac_clean_files="$ac_clean_files a.out a.exe b.out" # Try to create an executable without -o first, disregard a.out. # It will help us diagnose broken compilers, and finding out an intuition # of exeext. echo "$as_me:$LINENO: checking for C compiler default output" >&5 echo $ECHO_N "checking for C compiler default output... $ECHO_C" >&6 ac_link_default=`echo "$ac_link" | sed 's/ -o *conftest[^ ]*//'` if { (eval echo "$as_me:$LINENO: \"$ac_link_default\"") >&5 (eval $ac_link_default) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); }; then # Find the output, starting from the most likely. This scheme is # not robust to junk in `.', hence go to wildcards (a.*) only as a last # resort. # Be careful to initialize this variable, since it used to be cached. # Otherwise an old cache value of `no' led to `EXEEXT = no' in a Makefile. ac_cv_exeext= # b.out is created by i960 compilers. for ac_file in a_out.exe a.exe conftest.exe a.out conftest a.* conftest.* b.out do test -f "$ac_file" || continue case $ac_file in *.$ac_ext | *.xcoff | *.tds | *.d | *.pdb | *.xSYM | *.bb | *.bbg | *.o | *.obj ) ;; conftest.$ac_ext ) # This is the source file. ;; [ab].out ) # We found the default executable, but exeext='' is most # certainly right. break;; *.* ) ac_cv_exeext=`expr "$ac_file" : '[^.]*\(\..*\)'` # FIXME: I believe we export ac_cv_exeext for Libtool, # but it would be cool to find out if it's true. Does anybody # maintain Libtool? --akim. export ac_cv_exeext break;; * ) break;; esac done else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 { { echo "$as_me:$LINENO: error: C compiler cannot create executables See \`config.log' for more details." >&5 echo "$as_me: error: C compiler cannot create executables See \`config.log' for more details." >&2;} { (exit 77); exit 77; }; } fi ac_exeext=$ac_cv_exeext echo "$as_me:$LINENO: result: $ac_file" >&5 echo "${ECHO_T}$ac_file" >&6 # Check the compiler produces executables we can run. If not, either # the compiler is broken, or we cross compile. echo "$as_me:$LINENO: checking whether the C compiler works" >&5 echo $ECHO_N "checking whether the C compiler works... $ECHO_C" >&6 # FIXME: These cross compiler hacks should be removed for Autoconf 3.0 # If not cross compiling, check that we can run a simple program. if test "$cross_compiling" != yes; then if { ac_try='./$ac_file' { (eval echo "$as_me:$LINENO: \"$ac_try\"") >&5 (eval $ac_try) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); }; }; then cross_compiling=no else if test "$cross_compiling" = maybe; then cross_compiling=yes else { { echo "$as_me:$LINENO: error: cannot run C compiled programs. If you meant to cross compile, use \`--host'. See \`config.log' for more details." >&5 echo "$as_me: error: cannot run C compiled programs. If you meant to cross compile, use \`--host'. See \`config.log' for more details." >&2;} { (exit 1); exit 1; }; } fi fi fi echo "$as_me:$LINENO: result: yes" >&5 echo "${ECHO_T}yes" >&6 rm -f a.out a.exe conftest$ac_cv_exeext b.out ac_clean_files=$ac_clean_files_save # Check the compiler produces executables we can run. If not, either # the compiler is broken, or we cross compile. echo "$as_me:$LINENO: checking whether we are cross compiling" >&5 echo $ECHO_N "checking whether we are cross compiling... $ECHO_C" >&6 echo "$as_me:$LINENO: result: $cross_compiling" >&5 echo "${ECHO_T}$cross_compiling" >&6 echo "$as_me:$LINENO: checking for suffix of executables" >&5 echo $ECHO_N "checking for suffix of executables... $ECHO_C" >&6 if { (eval echo "$as_me:$LINENO: \"$ac_link\"") >&5 (eval $ac_link) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); }; then # If both `conftest.exe' and `conftest' are `present' (well, observable) # catch `conftest.exe'. For instance with Cygwin, `ls conftest' will # work properly (i.e., refer to `conftest.exe'), while it won't with # `rm'. for ac_file in conftest.exe conftest conftest.*; do test -f "$ac_file" || continue case $ac_file in *.$ac_ext | *.xcoff | *.tds | *.d | *.pdb | *.xSYM | *.bb | *.bbg | *.o | *.obj ) ;; *.* ) ac_cv_exeext=`expr "$ac_file" : '[^.]*\(\..*\)'` export ac_cv_exeext break;; * ) break;; esac done else { { echo "$as_me:$LINENO: error: cannot compute suffix of executables: cannot compile and link See \`config.log' for more details." >&5 echo "$as_me: error: cannot compute suffix of executables: cannot compile and link See \`config.log' for more details." >&2;} { (exit 1); exit 1; }; } fi rm -f conftest$ac_cv_exeext echo "$as_me:$LINENO: result: $ac_cv_exeext" >&5 echo "${ECHO_T}$ac_cv_exeext" >&6 rm -f conftest.$ac_ext EXEEXT=$ac_cv_exeext ac_exeext=$EXEEXT echo "$as_me:$LINENO: checking for suffix of object files" >&5 echo $ECHO_N "checking for suffix of object files... $ECHO_C" >&6 if test "${ac_cv_objext+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ int main () { ; return 0; } _ACEOF rm -f conftest.o conftest.obj if { (eval echo "$as_me:$LINENO: \"$ac_compile\"") >&5 (eval $ac_compile) 2>&5 ac_status=$? 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echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } && { ac_try='test -s conftest$ac_exeext' { (eval echo "$as_me:$LINENO: \"$ac_try\"") >&5 (eval $ac_try) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); }; }; then ac_cv_lib_asound_snd_ctl_open=yes else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 ac_cv_lib_asound_snd_ctl_open=no fi rm -f conftest.$ac_objext conftest$ac_exeext conftest.$ac_ext LIBS=$ac_check_lib_save_LIBS fi echo "$as_me:$LINENO: result: $ac_cv_lib_asound_snd_ctl_open" >&5 echo "${ECHO_T}$ac_cv_lib_asound_snd_ctl_open" >&6 if test $ac_cv_lib_asound_snd_ctl_open = yes; then cat >>confdefs.h <<_ACEOF #define HAVE_LIBASOUND 1 _ACEOF LIBS="-lasound $LIBS" else { { echo "$as_me:$LINENO: error: No linkable libasound was found." >&5 echo "$as_me: error: No linkable libasound was found." >&2;} { (exit 1); exit 1; }; } alsa_found=no fi if test "x$alsa_found" = "xyes" ; then : LIBS=`echo $LIBS | sed 's/-lasound//g'` LIBS=`echo $LIBS | sed 's/ //'` LIBS="-lasound $LIBS" fi if test "x$alsa_found" = "xno" ; then : CFLAGS="$alsa_save_CFLAGS" LDFLAGS="$alsa_save_LDFLAGS" LIBS="$alsa_save_LIBS" ALSA_CFLAGS="" ALSA_LIBS="" fi echo "$as_me:$LINENO: checking for snd_seq_drain_output in -lasound" >&5 echo $ECHO_N "checking for snd_seq_drain_output in -lasound... $ECHO_C" >&6 if test "${ac_cv_lib_asound_snd_seq_drain_output+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else ac_check_lib_save_LIBS=$LIBS LIBS="-lasound $ALSA_LIBS $LIBS" cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ /* Override any gcc2 internal prototype to avoid an error. */ #ifdef __cplusplus extern "C" #endif /* We use char because int might match the return type of a gcc2 builtin and then its argument prototype would still apply. */ char snd_seq_drain_output (); int main () { snd_seq_drain_output (); ; return 0; } _ACEOF rm -f conftest.$ac_objext conftest$ac_exeext if { (eval echo "$as_me:$LINENO: \"$ac_link\"") >&5 (eval $ac_link) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } && { ac_try='test -s conftest$ac_exeext' { (eval echo "$as_me:$LINENO: \"$ac_try\"") >&5 (eval $ac_try) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); }; }; then ac_cv_lib_asound_snd_seq_drain_output=yes else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 ac_cv_lib_asound_snd_seq_drain_output=no fi rm -f conftest.$ac_objext conftest$ac_exeext conftest.$ac_ext LIBS=$ac_check_lib_save_LIBS fi echo "$as_me:$LINENO: result: $ac_cv_lib_asound_snd_seq_drain_output" >&5 echo "${ECHO_T}$ac_cv_lib_asound_snd_seq_drain_output" >&6 if test $ac_cv_lib_asound_snd_seq_drain_output = yes; then cat >>confdefs.h <<\_ACEOF #define USE_DRAIN 1 _ACEOF fi # Check whether --with-included_glib or --without-included_glib was given. if test "${with_included_glib+set}" = set; then withval="$with_included_glib" included_glib="$withval" else included_glib=auto fi; if test "$included_glib" = "auto" || test "$included_glib" = "no"; then # Extract the first word of "glib-config", so it can be a program name with args. set dummy glib-config; ac_word=$2 echo "$as_me:$LINENO: checking for $ac_word" >&5 echo $ECHO_N "checking for $ac_word... $ECHO_C" >&6 if test "${ac_cv_path_GLIBCNF+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else case $GLIBCNF in [\\/]* | ?:[\\/]*) ac_cv_path_GLIBCNF="$GLIBCNF" # Let the user override the test with a path. ;; *) as_save_IFS=$IFS; IFS=$PATH_SEPARATOR for as_dir in $PATH do IFS=$as_save_IFS test -z "$as_dir" && as_dir=. for ac_exec_ext in '' $ac_executable_extensions; do if $as_executable_p "$as_dir/$ac_word$ac_exec_ext"; then ac_cv_path_GLIBCNF="$as_dir/$ac_word$ac_exec_ext" echo "$as_me:$LINENO: found $as_dir/$ac_word$ac_exec_ext" >&5 break 2 fi done done test -z "$ac_cv_path_GLIBCNF" && ac_cv_path_GLIBCNF="true" ;; esac fi GLIBCNF=$ac_cv_path_GLIBCNF if test -n "$GLIBCNF"; then echo "$as_me:$LINENO: result: $GLIBCNF" >&5 echo "${ECHO_T}$GLIBCNF" >&6 else echo "$as_me:$LINENO: result: no" >&5 echo "${ECHO_T}no" >&6 fi CFLAGS="$CFLAGS `$GLIBCNF --cflags`" LIBS="$LIBS `$GLIBCNF --libs`" WITH_INCLUDED_GLIB=0 fi if test x$WITH_INCLUDED_GLIB = x1; then GLIB_TRUE= GLIB_FALSE='#' else GLIB_TRUE='#' GLIB_FALSE= fi ac_ext=c ac_cpp='$CPP $CPPFLAGS' ac_compile='$CC -c $CFLAGS $CPPFLAGS conftest.$ac_ext >&5' ac_link='$CC -o conftest$ac_exeext $CFLAGS $CPPFLAGS $LDFLAGS conftest.$ac_ext $LIBS >&5' ac_compiler_gnu=$ac_cv_c_compiler_gnu echo "$as_me:$LINENO: checking how to run the C preprocessor" >&5 echo $ECHO_N "checking how to run the C preprocessor... $ECHO_C" >&6 # On Suns, sometimes $CPP names a directory. if test -n "$CPP" && test -d "$CPP"; then CPP= fi if test -z "$CPP"; then if test "${ac_cv_prog_CPP+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else # Double quotes because CPP needs to be expanded for CPP in "$CC -E" "$CC -E -traditional-cpp" "/lib/cpp" do ac_preproc_ok=false for ac_c_preproc_warn_flag in '' yes do # Use a header file that comes with gcc, so configuring glibc # with a fresh cross-compiler works. # Prefer to if __STDC__ is defined, since # exists even on freestanding compilers. # On the NeXT, cc -E runs the code through the compiler's parser, # not just through cpp. "Syntax error" is here to catch this case. cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #ifdef __STDC__ # include #else # include #endif Syntax error _ACEOF if { (eval echo "$as_me:$LINENO: \"$ac_cpp conftest.$ac_ext\"") >&5 (eval $ac_cpp conftest.$ac_ext) 2>conftest.er1 ac_status=$? grep -v '^ *+' conftest.er1 >conftest.err rm -f conftest.er1 cat conftest.err >&5 echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } >/dev/null; then if test -s conftest.err; then ac_cpp_err=$ac_c_preproc_warn_flag else ac_cpp_err= fi else ac_cpp_err=yes fi if test -z "$ac_cpp_err"; then : else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 # Broken: fails on valid input. continue fi rm -f conftest.err conftest.$ac_ext # OK, works on sane cases. Now check whether non-existent headers # can be detected and how. cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #include _ACEOF if { (eval echo "$as_me:$LINENO: \"$ac_cpp conftest.$ac_ext\"") >&5 (eval $ac_cpp conftest.$ac_ext) 2>conftest.er1 ac_status=$? grep -v '^ *+' conftest.er1 >conftest.err rm -f conftest.er1 cat conftest.err >&5 echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } >/dev/null; then if test -s conftest.err; then ac_cpp_err=$ac_c_preproc_warn_flag else ac_cpp_err= fi else ac_cpp_err=yes fi if test -z "$ac_cpp_err"; then # Broken: success on invalid input. continue else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 # Passes both tests. ac_preproc_ok=: break fi rm -f conftest.err conftest.$ac_ext done # Because of `break', _AC_PREPROC_IFELSE's cleaning code was skipped. rm -f conftest.err conftest.$ac_ext if $ac_preproc_ok; then break fi done ac_cv_prog_CPP=$CPP fi CPP=$ac_cv_prog_CPP else ac_cv_prog_CPP=$CPP fi echo "$as_me:$LINENO: result: $CPP" >&5 echo "${ECHO_T}$CPP" >&6 ac_preproc_ok=false for ac_c_preproc_warn_flag in '' yes do # Use a header file that comes with gcc, so configuring glibc # with a fresh cross-compiler works. # Prefer to if __STDC__ is defined, since # exists even on freestanding compilers. # On the NeXT, cc -E runs the code through the compiler's parser, # not just through cpp. "Syntax error" is here to catch this case. cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #ifdef __STDC__ # include #else # include #endif Syntax error _ACEOF if { (eval echo "$as_me:$LINENO: \"$ac_cpp conftest.$ac_ext\"") >&5 (eval $ac_cpp conftest.$ac_ext) 2>conftest.er1 ac_status=$? grep -v '^ *+' conftest.er1 >conftest.err rm -f conftest.er1 cat conftest.err >&5 echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } >/dev/null; then if test -s conftest.err; then ac_cpp_err=$ac_c_preproc_warn_flag else ac_cpp_err= fi else ac_cpp_err=yes fi if test -z "$ac_cpp_err"; then : else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 # Broken: fails on valid input. continue fi rm -f conftest.err conftest.$ac_ext # OK, works on sane cases. Now check whether non-existent headers # can be detected and how. cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #include _ACEOF if { (eval echo "$as_me:$LINENO: \"$ac_cpp conftest.$ac_ext\"") >&5 (eval $ac_cpp conftest.$ac_ext) 2>conftest.er1 ac_status=$? grep -v '^ *+' conftest.er1 >conftest.err rm -f conftest.er1 cat conftest.err >&5 echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } >/dev/null; then if test -s conftest.err; then ac_cpp_err=$ac_c_preproc_warn_flag else ac_cpp_err= fi else ac_cpp_err=yes fi if test -z "$ac_cpp_err"; then # Broken: success on invalid input. continue else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 # Passes both tests. ac_preproc_ok=: break fi rm -f conftest.err conftest.$ac_ext done # Because of `break', _AC_PREPROC_IFELSE's cleaning code was skipped. rm -f conftest.err conftest.$ac_ext if $ac_preproc_ok; then : else { { echo "$as_me:$LINENO: error: C preprocessor \"$CPP\" fails sanity check See \`config.log' for more details." >&5 echo "$as_me: error: C preprocessor \"$CPP\" fails sanity check See \`config.log' for more details." >&2;} { (exit 1); exit 1; }; } fi ac_ext=c ac_cpp='$CPP $CPPFLAGS' ac_compile='$CC -c $CFLAGS $CPPFLAGS conftest.$ac_ext >&5' ac_link='$CC -o conftest$ac_exeext $CFLAGS $CPPFLAGS $LDFLAGS conftest.$ac_ext $LIBS >&5' ac_compiler_gnu=$ac_cv_c_compiler_gnu echo "$as_me:$LINENO: checking for egrep" >&5 echo $ECHO_N "checking for egrep... $ECHO_C" >&6 if test "${ac_cv_prog_egrep+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else if echo a | (grep -E '(a|b)') >/dev/null 2>&1 then ac_cv_prog_egrep='grep -E' else ac_cv_prog_egrep='egrep' fi fi echo "$as_me:$LINENO: result: $ac_cv_prog_egrep" >&5 echo "${ECHO_T}$ac_cv_prog_egrep" >&6 EGREP=$ac_cv_prog_egrep echo "$as_me:$LINENO: checking for ANSI C header files" >&5 echo $ECHO_N "checking for ANSI C header files... $ECHO_C" >&6 if test "${ac_cv_header_stdc+set}" = set; then echo $ECHO_N "(cached) $ECHO_C" >&6 else cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #include #include #include #include int main () { ; return 0; } _ACEOF rm -f conftest.$ac_objext if { (eval echo "$as_me:$LINENO: \"$ac_compile\"") >&5 (eval $ac_compile) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); } && { ac_try='test -s conftest.$ac_objext' { (eval echo "$as_me:$LINENO: \"$ac_try\"") >&5 (eval $ac_try) 2>&5 ac_status=$? echo "$as_me:$LINENO: \$? = $ac_status" >&5 (exit $ac_status); }; }; then ac_cv_header_stdc=yes else echo "$as_me: failed program was:" >&5 sed 's/^/| /' conftest.$ac_ext >&5 ac_cv_header_stdc=no fi rm -f conftest.$ac_objext conftest.$ac_ext if test $ac_cv_header_stdc = yes; then # SunOS 4.x string.h does not declare mem*, contrary to ANSI. cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #include _ACEOF if (eval "$ac_cpp conftest.$ac_ext") 2>&5 | $EGREP "memchr" >/dev/null 2>&1; then : else ac_cv_header_stdc=no fi rm -f conftest* fi if test $ac_cv_header_stdc = yes; then # ISC 2.0.2 stdlib.h does not declare free, contrary to ANSI. cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #include _ACEOF if (eval "$ac_cpp conftest.$ac_ext") 2>&5 | $EGREP "free" >/dev/null 2>&1; then : else ac_cv_header_stdc=no fi rm -f conftest* fi if test $ac_cv_header_stdc = yes; then # /bin/cc in Irix-4.0.5 gets non-ANSI ctype macros unless using -ansi. if test "$cross_compiling" = yes; then : else cat >conftest.$ac_ext <<_ACEOF #line $LINENO "configure" /* confdefs.h. */ _ACEOF cat confdefs.h >>conftest.$ac_ext cat >>conftest.$ac_ext <<_ACEOF /* end confdefs.h. */ #include #if ((' ' & 0x0FF) == 0x020) # define ISLOWER(c) ('a' <= (c) && (c) <= 'z') # define TOUPPER(c) (ISLOWER(c) ? 'A' + ((c) - 'a') : (c)) #else # define ISLOWER(c) \ (('a' <= (c) && (c) <= 'i') \ || ('j' <= (c) && (c) <= 'r') \ || ('s' <= (c) && (c) <= 'z')) # define TOUPPER(c) (ISLOWER(c) ? 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So we exec the FD to /dev/null, # effectively closing config.log, so it can be properly (re)opened and # appended to by config.status. When coming back to configure, we # need to make the FD available again. if test "$no_create" != yes; then ac_cs_success=: ac_config_status_args= test "$silent" = yes && ac_config_status_args="$ac_config_status_args --quiet" exec 5>/dev/null $SHELL $CONFIG_STATUS $ac_config_status_args || ac_cs_success=false exec 5>>config.log # Use ||, not &&, to avoid exiting from the if with $? = 1, which # would make configure fail if this is the last instruction. $ac_cs_success || { (exit 1); exit 1; } fi pmidi-1.6.0/AUTHORS0000644000076400007640000000102207572425363007371 Written by: Steve Ratcliffe Thanks to: Habibie : Adding configure support. Frank van de Pol, Takashi Iwai and Paul Leonard for reporting problems and sending patches. Reinhard Katzmann: rpm spec file Dmitrii Sadovskii: some notes on using an FM synth Andras Wappel: For reporting that certain midi files did not play properly. Clemens Ladisch: Fixing bug in seq_control_timer() R. L. Horn: Configuration fixed for new alsa file installation directories. pmidi-1.6.0/COPYING0000644000076400007640000004310506770701224007354 GNU GENERAL PUBLIC LICENSE Version 2, June 1991 Copyright (C) 1989, 1991 Free Software Foundation, Inc. 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA Everyone is permitted to copy and distribute verbatim copies of this license document, but changing it is not allowed. Preamble The licenses for most software are designed to take away your freedom to share and change it. By contrast, the GNU General Public License is intended to guarantee your freedom to share and change free software--to make sure the software is free for all its users. This General Public License applies to most of the Free Software Foundation's software and to any other program whose authors commit to using it. (Some other Free Software Foundation software is covered by the GNU Library General Public License instead.) You can apply it to your programs, too. When we speak of free software, we are referring to freedom, not price. Our General Public Licenses are designed to make sure that you have the freedom to distribute copies of free software (and charge for this service if you wish), that you receive source code or can get it if you want it, that you can change the software or use pieces of it in new free programs; and that you know you can do these things. To protect your rights, we need to make restrictions that forbid anyone to deny you these rights or to ask you to surrender the rights. These restrictions translate to certain responsibilities for you if you distribute copies of the software, or if you modify it. For example, if you distribute copies of such a program, whether gratis or for a fee, you must give the recipients all the rights that you have. You must make sure that they, too, receive or can get the source code. And you must show them these terms so they know their rights. We protect your rights with two steps: (1) copyright the software, and (2) offer you this license which gives you legal permission to copy, distribute and/or modify the software. Also, for each author's protection and ours, we want to make certain that everyone understands that there is no warranty for this free software. If the software is modified by someone else and passed on, we want its recipients to know that what they have is not the original, so that any problems introduced by others will not reflect on the original authors' reputations. Finally, any free program is threatened constantly by software patents. We wish to avoid the danger that redistributors of a free program will individually obtain patent licenses, in effect making the program proprietary. To prevent this, we have made it clear that any patent must be licensed for everyone's free use or not licensed at all. The precise terms and conditions for copying, distribution and modification follow. GNU GENERAL PUBLIC LICENSE TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION 0. This License applies to any program or other work which contains a notice placed by the copyright holder saying it may be distributed under the terms of this General Public License. The "Program", below, refers to any such program or work, and a "work based on the Program" means either the Program or any derivative work under copyright law: that is to say, a work containing the Program or a portion of it, either verbatim or with modifications and/or translated into another language. (Hereinafter, translation is included without limitation in the term "modification".) Each licensee is addressed as "you". Activities other than copying, distribution and modification are not covered by this License; they are outside its scope. The act of running the Program is not restricted, and the output from the Program is covered only if its contents constitute a work based on the Program (independent of having been made by running the Program). Whether that is true depends on what the Program does. 1. You may copy and distribute verbatim copies of the Program's source code as you receive it, in any medium, provided that you conspicuously and appropriately publish on each copy an appropriate copyright notice and disclaimer of warranty; keep intact all the notices that refer to this License and to the absence of any warranty; and give any other recipients of the Program a copy of this License along with the Program. You may charge a fee for the physical act of transferring a copy, and you may at your option offer warranty protection in exchange for a fee. 2. You may modify your copy or copies of the Program or any portion of it, thus forming a work based on the Program, and copy and distribute such modifications or work under the terms of Section 1 above, provided that you also meet all of these conditions: a) You must cause the modified files to carry prominent notices stating that you changed the files and the date of any change. b) You must cause any work that you distribute or publish, that in whole or in part contains or is derived from the Program or any part thereof, to be licensed as a whole at no charge to all third parties under the terms of this License. c) If the modified program normally reads commands interactively when run, you must cause it, when started running for such interactive use in the most ordinary way, to print or display an announcement including an appropriate copyright notice and a notice that there is no warranty (or else, saying that you provide a warranty) and that users may redistribute the program under these conditions, and telling the user how to view a copy of this License. (Exception: if the Program itself is interactive but does not normally print such an announcement, your work based on the Program is not required to print an announcement.) These requirements apply to the modified work as a whole. If identifiable sections of that work are not derived from the Program, and can be reasonably considered independent and separate works in themselves, then this License, and its terms, do not apply to those sections when you distribute them as separate works. But when you distribute the same sections as part of a whole which is a work based on the Program, the distribution of the whole must be on the terms of this License, whose permissions for other licensees extend to the entire whole, and thus to each and every part regardless of who wrote it. Thus, it is not the intent of this section to claim rights or contest your rights to work written entirely by you; rather, the intent is to exercise the right to control the distribution of derivative or collective works based on the Program. In addition, mere aggregation of another work not based on the Program with the Program (or with a work based on the Program) on a volume of a storage or distribution medium does not bring the other work under the scope of this License. 3. You may copy and distribute the Program (or a work based on it, under Section 2) in object code or executable form under the terms of Sections 1 and 2 above provided that you also do one of the following: a) Accompany it with the complete corresponding machine-readable source code, which must be distributed under the terms of Sections 1 and 2 above on a medium customarily used for software interchange; or, b) Accompany it with a written offer, valid for at least three years, to give any third party, for a charge no more than your cost of physically performing source distribution, a complete machine-readable copy of the corresponding source code, to be distributed under the terms of Sections 1 and 2 above on a medium customarily used for software interchange; or, c) Accompany it with the information you received as to the offer to distribute corresponding source code. (This alternative is allowed only for noncommercial distribution and only if you received the program in object code or executable form with such an offer, in accord with Subsection b above.) The source code for a work means the preferred form of the work for making modifications to it. For an executable work, complete source code means all the source code for all modules it contains, plus any associated interface definition files, plus the scripts used to control compilation and installation of the executable. However, as a special exception, the source code distributed need not include anything that is normally distributed (in either source or binary form) with the major components (compiler, kernel, and so on) of the operating system on which the executable runs, unless that component itself accompanies the executable. If distribution of executable or object code is made by offering access to copy from a designated place, then offering equivalent access to copy the source code from the same place counts as distribution of the source code, even though third parties are not compelled to copy the source along with the object code. 4. You may not copy, modify, sublicense, or distribute the Program except as expressly provided under this License. Any attempt otherwise to copy, modify, sublicense or distribute the Program is void, and will automatically terminate your rights under this License. However, parties who have received copies, or rights, from you under this License will not have their licenses terminated so long as such parties remain in full compliance. 5. You are not required to accept this License, since you have not signed it. However, nothing else grants you permission to modify or distribute the Program or its derivative works. These actions are prohibited by law if you do not accept this License. Therefore, by modifying or distributing the Program (or any work based on the Program), you indicate your acceptance of this License to do so, and all its terms and conditions for copying, distributing or modifying the Program or works based on it. 6. Each time you redistribute the Program (or any work based on the Program), the recipient automatically receives a license from the original licensor to copy, distribute or modify the Program subject to these terms and conditions. You may not impose any further restrictions on the recipients' exercise of the rights granted herein. You are not responsible for enforcing compliance by third parties to this License. 7. If, as a consequence of a court judgment or allegation of patent infringement or for any other reason (not limited to patent issues), conditions are imposed on you (whether by court order, agreement or otherwise) that contradict the conditions of this License, they do not excuse you from the conditions of this License. If you cannot distribute so as to satisfy simultaneously your obligations under this License and any other pertinent obligations, then as a consequence you may not distribute the Program at all. For example, if a patent license would not permit royalty-free redistribution of the Program by all those who receive copies directly or indirectly through you, then the only way you could satisfy both it and this License would be to refrain entirely from distribution of the Program. If any portion of this section is held invalid or unenforceable under any particular circumstance, the balance of the section is intended to apply and the section as a whole is intended to apply in other circumstances. It is not the purpose of this section to induce you to infringe any patents or other property right claims or to contest validity of any such claims; this section has the sole purpose of protecting the integrity of the free software distribution system, which is implemented by public license practices. Many people have made generous contributions to the wide range of software distributed through that system in reliance on consistent application of that system; it is up to the author/donor to decide if he or she is willing to distribute software through any other system and a licensee cannot impose that choice. This section is intended to make thoroughly clear what is believed to be a consequence of the rest of this License. 8. If the distribution and/or use of the Program is restricted in certain countries either by patents or by copyrighted interfaces, the original copyright holder who places the Program under this License may add an explicit geographical distribution limitation excluding those countries, so that distribution is permitted only in or among countries not thus excluded. In such case, this License incorporates the limitation as if written in the body of this License. 9. The Free Software Foundation may publish revised and/or new versions of the General Public License from time to time. Such new versions will be similar in spirit to the present version, but may differ in detail to address new problems or concerns. Each version is given a distinguishing version number. If the Program specifies a version number of this License which applies to it and "any later version", you have the option of following the terms and conditions either of that version or of any later version published by the Free Software Foundation. If the Program does not specify a version number of this License, you may choose any version ever published by the Free Software Foundation. 10. If you wish to incorporate parts of the Program into other free programs whose distribution conditions are different, write to the author to ask for permission. For software which is copyrighted by the Free Software Foundation, write to the Free Software Foundation; we sometimes make exceptions for this. Our decision will be guided by the two goals of preserving the free status of all derivatives of our free software and of promoting the sharing and reuse of software generally. NO WARRANTY 11. BECAUSE THE PROGRAM IS LICENSED FREE OF CHARGE, THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF ALL NECESSARY SERVICING, REPAIR OR CORRECTION. 12. IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MAY MODIFY AND/OR REDISTRIBUTE THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS), EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. END OF TERMS AND CONDITIONS How to Apply These Terms to Your New Programs If you develop a new program, and you want it to be of the greatest possible use to the public, the best way to achieve this is to make it free software which everyone can redistribute and change under these terms. To do so, attach the following notices to the program. It is safest to attach them to the start of each source file to most effectively convey the exclusion of warranty; and each file should have at least the "copyright" line and a pointer to where the full notice is found. Copyright (C) 19yy This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA Also add information on how to contact you by electronic and paper mail. If the program is interactive, make it output a short notice like this when it starts in an interactive mode: Gnomovision version 69, Copyright (C) 19yy name of author Gnomovision comes with ABSOLUTELY NO WARRANTY; for details type `show w'. This is free software, and you are welcome to redistribute it under certain conditions; type `show c' for details. The hypothetical commands `show w' and `show c' should show the appropriate parts of the General Public License. Of course, the commands you use may be called something other than `show w' and `show c'; they could even be mouse-clicks or menu items--whatever suits your program. You should also get your employer (if you work as a programmer) or your school, if any, to sign a "copyright disclaimer" for the program, if necessary. Here is a sample; alter the names: Yoyodyne, Inc., hereby disclaims all copyright interest in the program `Gnomovision' (which makes passes at compilers) written by James Hacker. , 1 April 1989 Ty Coon, President of Vice This General Public License does not permit incorporating your program into proprietary programs. If your program is a subroutine library, you may consider it more useful to permit linking proprietary applications with the library. If this is what you want to do, use the GNU Library General Public License instead of this License. pmidi-1.6.0/ChangeLog0000644000076400007640000002754307771141544010110 2003-12-20 Steve Ratcliffe * ChangeLog, INSTALL, README, configure.in: Documentation changes, spelling fixes etc. Final changes for release 1.6 * man/pmidi.1: Man page now contains much of the information that is in the README file and the web site. * src/seqlib.c: Remove debugging. * src/pmidi.c: Converted to use sigaction. 2003-12-16 Steve Ratcliffe * src/seqlib.c, src/seqlib.h, src/seqpriv.h: Added code to send all-notes-off when device is closed -- for interrupt processing. May need to be moved out of close. * configure.in: Bumped version number to 1.6.0 * src/pmidi.c: Added option to print the version number. * src/pmidi.c: Patch to catch Ctrl-C from YAMAGUCHI Shingo (Applied a bit late; received Feb 2003) * Makefile.am: Use /usr/src/redhat directory for rpm building. There must be a standard way of doing this that works over different distributions... * src/Makefile.am: Using AM_CFLAGS instead of CFLAGS. 2002-12-01 Steve Ratcliffe * man/pmidi.1: Updated the date in the man page. * ChangeLog: For release. * configure.in: Fix warning from autoconf. * AUTHORS, ChangeLog, NEWS, README: Final tidy up before release. * Makefile.am, config.guess, config.sub, configure.in, missing: Allow for either rpm or rpmbuild. Set version number to 1.5.5 in preparation for release. 2002-12-01 Steve Ratcliffe * Makefile.am, config.guess, config.sub, configure.in, missing: Allow for either rpm or rpmbuild. Set version number to 1.5.5 in preparation for release. * configure.in: Fixed warning message from autoconf. * REL-1-5-5 2002-11-27 Steve Ratcliffe * INSTALL, config.guess, config.sub, configure.in: Completion of previous patch (From R.L. Horn) which I didn't fully apply. 2002-11-12 R.L. Horn PATCH * configure.in: Added AM_PATH_ALSA to get appropriate libasound CFLAGS and libraries. Added check for . * src/pmidi.c: Include if available. * src/seqlib.h: Include if available. 2002-04-30 Steve Ratcliffe * src/seqlib.c: the seq_control_timer function is called with SND_SEQ_EVENT_START/STOP in the onoff parameter, but it checks whether onoff is non-zero. This results in snd_seq_start_queue being called, even if onoff is SND_SEQ_EVENT_STOP. (Clemens Ladisch) 2001-08-16 Steve Ratcliffe * src/midiread.c: Allow for 'format 1' files where the tempo track in fact has playable notes in it. 2001-07-29 Steve Ratcliffe * REL-1-5-3 * configure.in: Remove redundant configuration for ALSA (you can't build without it) and drain which is now the only supported interface. 2001-07-22 Steve Ratcliffe * src/seqlib.c, src/seqlib.h: Removed some compatibility defines from a long time ago. * ChangeLog, pmidi.c, seqlib.c: Updated to latest ALSA api. (Based on code by Uros Bizjak) * ChangeLog: Previous changes should have been committed before. 2001-05-13 Steve Ratcliffe * REL-1-5-2 * pmidi.spec.in: The spec file is not a documentation file * Makefile.am: Remove the Hint file 2001-05-12 Steve Ratcliffe * aclocal.m4, README: Updated README with new information about FM cards and formating changes. (Uros Bizjak) 2001-05-07 Steve Ratcliffe * ChangeLog, Hint, make.conf, Makefile.orig: Remove unneeded files * configure.in: Fix the glib detection and flag (Habibie) * README: Add some quick cvs instructions. May change to autogen.sh soon. * configure.in: Better attempt at detecting glib 2001-05-06 Steve Ratcliffe * README, AUTHORS, ChangeLog: Transfer 'thanks to' people to AUTHORS and update. * INSTALL, README: Wrote some useful installation instructions. * src/.cvsignore, .cvsignore, man/.cvsignore: Added .cvsignore files for new autoconf files and layout * ALL FOLLOWING: Conversion to use autoconf/automake Conversion performed by Habibie * pmidi.1: Remove file as it is now in the man subdirectory. * Makefile.am, man/Makefile.am, pmidi.spec.in, src/Makefile.am: Add extra needed files to the distribution. We need glib.[ch], pmidi.1 and pmidi.spec so that the result of a make dist can be built by hand and by rpm -ta * configure.in: Changed version to 1.5.2 * NEWS: Added a NEWS file * elements.c, elements.h, except.c, except.h, glib.c, glib.h, intl.h, md.h, mdutil.c, midi.h, midiread.c, pmidi.c, seqlib.c, seqlib.h, seqmidi.c, seqpriv.h: Configure changes: remove the existing source files. * aclocal.m4, AUTHORS, config.guess, config.sub, configure.in, INSTALL, install-sh, Makefile, Makefile.am, Makefile.orig, man/Makefile.am, man/pmidi.1, missing, mkinstalldirs, pmidi.spec, pmidi.spec.in, src/elements.c, src/elements.h, src/except.c, src/except.h, src/glib.c, src/glib.h, src/intl.h, src/Makefile.am, src/md.h, src/mdutil.c, src/midi.h, src/midiread.c, src/pmidi.c, src/seqlib.c, src/seqlib.h, src/seqmidi.c, src/seqpriv.h: First stage of conversion to autoconf/automake system. 2001-05-01 Steve Ratcliffe * README: Added note about FM synth from Dmitrii Sadovskii 2001-04-22 Steve Ratcliffe * pmidi.spec: Updated for 1-5-1 * ChangeLog, pmidi.c, pmidi.spec: Updated to the latest CVS sequencer API. 2001-02-11 Steve Ratcliffe * pmidi.c, seqlib.c: Modified snd_seq_open commands so that it compiles. Missing drums. 2001-02-11 Steve Ratcliffe * pmidi.c, seqlib.c: Modified snd_seq_open commands so that it compiles. 2000-10-24 Steve Ratcliffe * Hint, Makefile: Improve the warning about _drain_ && _flush_ 2000-10-23 Steve Ratcliffe * seqlib.c: Use the snd_seq_start_queue() and related routines instead of old home grown routine. 2000-10-07 Steve Ratcliffe * REL 1-5-0 * Makefile, README, make.conf, pmidi.1, pmidi.c, pmidi.spec, seqlib.c: ALSA api changed, this keeps us in step. Needed for ALSA 0.6.0 after 29Sep2000. (submitted by Frank vdP) 2000-04-30 Steve Ratcliffe * pmidi.c: Use the environment variable ALSA_OUTPUT_PORTS instead of ALSA_OUT_PORT. The old name is still supported. * ChangeLog: For release 1.4.1 * pmidi.spec: Updated version number * pmidi.spec: Modified the description a little 2000-04-30 Steve Ratcliffe * ChangeLog: For release 1.4.1 * pmidi.c: Use the environment variable ALSA_OUTPUT_PORTS instead of ALSA_OUT_PORT. The old name is still supported. * pmidi.spec: Modified the description a little * pmidi.spec: updated the version number 2000-03-05 Steve Ratcliffe * midiread.c: Tidy up the meta event processing by putting them in order and include META_CHANNEL. 2000-02-03 Steve Ratcliffe * pmidi.spec: A spec file contributed by Reinhard Katzmann. 2000-01-30 Steve Ratcliffe * Version REL-1-4-0. * README, seqlib.h: Merged in from the 1.3 series to the main trunk. * elements.c, except.c, mdutil.c, midiread.c, pmidi.c, seqlib.c, seqmidi.c: The changes from the 1.3 series merged into the main trunk. * README: Added some useful information to the README. * seqlib.c: The symbols has changed from real to time. 1999-12-16 Steve Ratcliffe * elements.c, except.c, mdutil.c, midiread.c, pmidi.c, seqlib.c, seqmidi.c: Formatting cleanup, mainly removing stuff that was put in by the old mcode. * pmidi.c, seqlib.c, seqlib.h, seqmidi.c: Patch from Frank for the new sequencer API 1999-11-24 Steve Ratcliffe * seqlib.c: Undid last change after ALSA sequener fix. 1999-11-22 Steve Ratcliffe * pmidi.c: Allow a filename of '-' to read from stdin. (Takashi Iwai) 1999-11-21 Steve Ratcliffe * seqlib.c: Modify to use a direct destination for the timer control message. 1999-09-29 Steve Ratcliffe * ChangeLog: For rel 1-2-4 * seqlib.c, seqmidi.c: Make it really compile with 0.4.x * midiread.c: Fix the case where there is a zero length lyric or whatnot in the midi file. * midiread.c: Deal with zero length text messages and the like. 1999-09-18 Steve Ratcliffe * COPYING, README: Updated readme and added COPYING file * seqlib.c, seqmidi.c: Takashi Iwai patch to use the new higher level api's in alsa-lib * pmidi.c, seqlib.c: Modify flush calls so that buffering takes place within alsa-lib. Before it used to flush after every event. Now whole sets of events get written out at once. * COPYING, README: Updated readme and added missing COPYING file. 1999-09-17 Steve Ratcliffe * ChangeLog: Updated for REL-1-2-3 * seqmidi.c: Change to match corrected api in alsa for tempo changes. * seqlib.c: There was a correction made to the sequencer API which now requires the event->data.queue structure to be filled in when setting the timer. 1999-08-29 Steve Ratcliffe * ChangeLog, README, refresh.sh: For REL-1-2-2 * seqlib.h: Defines for compatability. 1999-08-08 Steve Ratcliffe * ChangeLog: Updated for release. My real mail address added * seqlib.c: Various structures cleared before use. There are extra fields in the subscription structure that need setting to zero. 1999-08-08 Steve Ratcliffe * seqlib.c: Various structures cleared before use. There are extra fields in the subscription structure that need setting to zero. (Frank van de Pol) 1999-07-15 Steve Ratcliffe * mdutil.c: Extra semi-colon completely changed the meaning of an if statement. Pointer would always be freed even if it was null. Probably no chance that it could actually be null though. 1999-07-04 Steve Ratcliffe * seqlib.c: Conditional compilation to detect non-working blocking writes. * midiread.c: Fixed some signed/unsigned mismatches. * pmidi.c: getopt bug as reported by Takashi Iwai. Also minor fixes: 1) exit after a usage message is shown, to prevent repeats. 2) fix memory leak. 1999-06-19 Steve Ratcliffe * pmidi.1: added the man page * pmidi.c, seqlib.c: Better error detection. We now rely on blocking working so you must use an earlier version if running a version of the ALSA driver from before about 18 June 1999. 1999-06-14 Steve Ratcliffe * pmidi.c: Fix coredump when attempting to play more than one file. (Takashi Iwai) 1999-06-12 Steve Ratcliffe * Makefile, pmidi.c: Implemented the -l option to get a list of valid ports that can be used 1999-06-11 Steve Ratcliffe * glib.h, midiread.c, seqmidi.c: Tempo fix for type 0 files. System timer event was set up incorrectly. (Takashi Iwai) Also add headers to declare malloc etc 1999-06-08 Steve Ratcliffe * intl.h: remove pointless i18n stuff * seqmidi.c: free sysex data after use * pmidi.c, seqlib.c, seqmidi.c: Problems reported by FrankVdP. Sysex should now work, workaround for chewing up CPU. 1999-06-07 Steve Ratcliffe * pmidi.c, seqlib.c: fixed segv on --delay * seqpriv.h: type fix for latest alsa-lib * elements.c, elements.h, pmidi.c, refresh.sh: resynced to melys pmidi-1.6.0/INSTALL0000644000076400007640000001064507771130750007357 Installation ============ This file contains complete installation instructions including many options that are not often used. See the README file for quick build and installation instructions. 1. If you are building from a source distribution you can skip this step. If you are building direct from CVS first run the following commands to generate the configure script and makefiles. aclocal automake -a autoconf 2. Run the configure command. ./configure There are several options that can be given to configure --prefix=directory The program is installed in /usr/local/bin, if you want to, for example install in /usr/bin use the following argument to configure ./configure --prefix=/usr --with-included-glib={auto|yes|no} Specifies whether to use the included glib routines, or the standard glib. Setting to auto (the default) will try to detect if you have glib installed. It is always safe to set this to yes. --with-alsa-support={auto|yes|no} ALSA support is required. Should be auto detected by default, but you may have to set this explicitly to yes if auto detection fails. --with-snd-sequencer={auto|drain|flush} This is for previous versions of ALSA that had different routine names. Unfortunately the changes are such that it can compile fine but not work correctly. Should be autodetected, but you can try setting to drain or flush explicitly; on the whole though previous versions of ALSA are not supported, you can always grab an earlier version of pmidi instead. There are numerous other configure options, use --help to display them. 3. Run make. make 4. If all is well the program and help files can be installed with: make install Other configure information --------------------------- - Configure creates a shell script `config.status' that you can run in the future to recreate the current configuration. - Configure also creates a file called `config.cache' that saves the results of its tests to speed up reconfiguring it is safe to remove this file. - It creates a file called `config.log' that contains a record of every thing that configure did and the results. If configure fails, you should look here to see why. Compilers and Options --------------------- Some systems require unusual options for compilation or linking that the `configure' script does not know about. You can give `configure' initial values for variables by setting them in the environment. Using a Bourne-compatible shell, you can do that on the command line like this: CC=c89 CFLAGS=-O2 LIBS=-lposix ./configure Installation Names ------------------ By default, `make install' will install the package's files in `/usr/local/bin', `/usr/local/man', etc. You can specify an installation prefix other than `/usr/local' by giving `configure' the option `--prefix=PATH'. You can specify separate installation prefixes for architecture-specific files and architecture-independent files. If you give `configure' the option `--exec-prefix=PATH', the package will use PATH as the prefix for installing programs and libraries. Documentation and other data files will still use the regular prefix. In addition, if you use an unusual directory layout you can give options like `--bindir=PATH' to specify different values for particular kinds of files. Run `configure --help' for a list of the directories you can set and what kinds of files go in them. If the package supports it, you can cause programs to be installed with an extra prefix or suffix on their names by giving `configure' the option `--program-prefix=PREFIX' or `--program-suffix=SUFFIX'. Operation Controls ------------------ `configure' recognises the following options to control how it operates. `--cache-file=FILE' Use and save the results of the tests in FILE instead of `./config.cache'. Set FILE to `/dev/null' to disable caching, for debugging `configure'. `--help' Print a summary of the options to `configure', and exit. `--quiet' `--silent' `-q' Do not print messages saying which checks are being made. To suppress all normal output, redirect it to `/dev/null' (any error messages will still be shown). `--srcdir=DIR' Look for the package's source code in directory DIR. Usually `configure' can determine that directory automatically. `--version' Print the version of Autoconf used to generate the `configure' script, and exit. pmidi-1.6.0/Makefile.am0000644000076400007640000000121307771152536010357 AUTOMAKE_OPTIONS = 1.4 EXTRA_DIST = \ COPYING \ ChangeLog \ README \ @PACKAGE@.spec SUBDIRS = \ man \ src # # Rule to build RPM distribution package # # Later versions of rpm (eg redhat8) do not have the -ba option, and # you have to use rpmbuild instead. # I try them both; if someone has a better way of doing this, please # let me know. # rpm: dist $(PACKAGE)-$(VERSION).tar.gz rm -rf build (mkdir build; cd build; mkdir SOURCES BUILD SPECS RPMS SRPMS) cp -av $(PACKAGE)-$(VERSION).tar.gz build/SOURCES rpmbuild --define "_topdir `pwd`/build" -ba @PACKAGE@.spec find build -name '*.rpm' | xargs -i cp '{}' . rm -r build pmidi-1.6.0/NEWS0000644000076400007640000000074407572425363007032 2002-12-01: Release 1.5.5 made. Configuration changes for working with 0.9.0rc6 (and perhaps earlier). Minor bug in seq_control_timer() that prevent the timer actually being stopped. Sorry, news isn't that exciting in stable software land. 2001-08-16: Release 1.5.4 to allow midi files that claim to be format-1 but do not reserve the first trace for tempo information. 2001-05-06: Configuration with automake/autoconf added. 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For targets that recently # switched to ELF, *-*-netbsd* would select the old # object file format. This provides both forward # compatibility and a consistent mechanism for selecting the # object file format. # # Note: NetBSD doesn't particularly care about the vendor # portion of the name. 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I hope that # covers most systems running today. This code pipes the CPU # types through head -n 1, so we only detect the type of CPU 0. ALPHA_CPU_TYPE=`/usr/sbin/psrinfo -v | sed -n -e 's/^ The alpha \(.*\) processor.*$/\1/p' | head -n 1` case "$ALPHA_CPU_TYPE" in "EV4 (21064)") UNAME_MACHINE="alpha" ;; "EV4.5 (21064)") UNAME_MACHINE="alpha" ;; "LCA4 (21066/21068)") UNAME_MACHINE="alpha" ;; "EV5 (21164)") UNAME_MACHINE="alphaev5" ;; "EV5.6 (21164A)") UNAME_MACHINE="alphaev56" ;; "EV5.6 (21164PC)") UNAME_MACHINE="alphapca56" ;; "EV5.7 (21164PC)") UNAME_MACHINE="alphapca57" ;; "EV6 (21264)") UNAME_MACHINE="alphaev6" ;; "EV6.7 (21264A)") UNAME_MACHINE="alphaev67" ;; "EV6.8CB (21264C)") UNAME_MACHINE="alphaev68" ;; "EV6.8AL (21264B)") UNAME_MACHINE="alphaev68" ;; "EV6.8CX (21264D)") UNAME_MACHINE="alphaev68" ;; "EV6.9A (21264/EV69A)") UNAME_MACHINE="alphaev69" ;; "EV7 (21364)") UNAME_MACHINE="alphaev7" ;; "EV7.9 (21364A)") UNAME_MACHINE="alphaev79" ;; esac # A Vn.n version is a released version. # A Tn.n version is a released field test version. # A Xn.n version is an unreleased experimental baselevel. # 1.2 uses "1.2" for uname -r. echo ${UNAME_MACHINE}-dec-osf`echo ${UNAME_RELEASE} | sed -e 's/^[VTX]//' | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz'` exit 0 ;; Alpha*:OpenVMS:*:*) echo alpha-hp-vms exit 0 ;; Alpha\ *:Windows_NT*:*) # How do we know it's Interix rather than the generic POSIX subsystem? # Should we change UNAME_MACHINE based on the output of uname instead # of the specific Alpha model? echo alpha-pc-interix exit 0 ;; 21064:Windows_NT:50:3) echo alpha-dec-winnt3.5 exit 0 ;; Amiga*:UNIX_System_V:4.0:*) echo m68k-unknown-sysv4 exit 0;; *:[Aa]miga[Oo][Ss]:*:*) echo ${UNAME_MACHINE}-unknown-amigaos exit 0 ;; *:[Mm]orph[Oo][Ss]:*:*) echo ${UNAME_MACHINE}-unknown-morphos exit 0 ;; *:OS/390:*:*) echo i370-ibm-openedition exit 0 ;; arm:RISC*:1.[012]*:*|arm:riscix:1.[012]*:*) echo arm-acorn-riscix${UNAME_RELEASE} exit 0;; SR2?01:HI-UX/MPP:*:* | SR8000:HI-UX/MPP:*:*) echo hppa1.1-hitachi-hiuxmpp exit 0;; Pyramid*:OSx*:*:* | MIS*:OSx*:*:* | MIS*:SMP_DC-OSx*:*:*) # akee@wpdis03.wpafb.af.mil (Earle F. Ake) contributed MIS and NILE. if test "`(/bin/universe) 2>/dev/null`" = att ; then echo pyramid-pyramid-sysv3 else echo pyramid-pyramid-bsd fi exit 0 ;; NILE*:*:*:dcosx) echo pyramid-pyramid-svr4 exit 0 ;; DRS?6000:unix:4.0:6*) echo sparc-icl-nx6 exit 0 ;; DRS?6000:UNIX_SV:4.2*:7*) case `/usr/bin/uname -p` in sparc) echo sparc-icl-nx7 && exit 0 ;; esac ;; sun4H:SunOS:5.*:*) echo sparc-hal-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit 0 ;; sun4*:SunOS:5.*:* | tadpole*:SunOS:5.*:*) echo sparc-sun-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit 0 ;; i86pc:SunOS:5.*:*) echo i386-pc-solaris2`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit 0 ;; sun4*:SunOS:6*:*) # According to config.sub, this is the proper way to canonicalize # SunOS6. Hard to guess exactly what SunOS6 will be like, but # it's likely to be more like Solaris than SunOS4. echo sparc-sun-solaris3`echo ${UNAME_RELEASE}|sed -e 's/[^.]*//'` exit 0 ;; sun4*:SunOS:*:*) case "`/usr/bin/arch -k`" in Series*|S4*) UNAME_RELEASE=`uname -v` ;; esac # Japanese Language versions have a version number like `4.1.3-JL'. echo sparc-sun-sunos`echo ${UNAME_RELEASE}|sed -e 's/-/_/'` exit 0 ;; sun3*:SunOS:*:*) echo m68k-sun-sunos${UNAME_RELEASE} exit 0 ;; sun*:*:4.2BSD:*) UNAME_RELEASE=`(sed 1q /etc/motd | awk '{print substr($5,1,3)}') 2>/dev/null` test "x${UNAME_RELEASE}" = "x" && UNAME_RELEASE=3 case "`/bin/arch`" in sun3) echo m68k-sun-sunos${UNAME_RELEASE} ;; sun4) echo sparc-sun-sunos${UNAME_RELEASE} ;; esac exit 0 ;; aushp:SunOS:*:*) echo sparc-auspex-sunos${UNAME_RELEASE} exit 0 ;; # The situation for MiNT is a little confusing. The machine name # can be virtually everything (everything which is not # "atarist" or "atariste" at least should have a processor # > m68000). The system name ranges from "MiNT" over "FreeMiNT" # to the lowercase version "mint" (or "freemint"). Finally # the system name "TOS" denotes a system which is actually not # MiNT. But MiNT is downward compatible to TOS, so this should # be no problem. atarist[e]:*MiNT:*:* | atarist[e]:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit 0 ;; atari*:*MiNT:*:* | atari*:*mint:*:* | atarist[e]:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit 0 ;; *falcon*:*MiNT:*:* | *falcon*:*mint:*:* | *falcon*:*TOS:*:*) echo m68k-atari-mint${UNAME_RELEASE} exit 0 ;; milan*:*MiNT:*:* | milan*:*mint:*:* | *milan*:*TOS:*:*) echo m68k-milan-mint${UNAME_RELEASE} exit 0 ;; hades*:*MiNT:*:* | hades*:*mint:*:* | *hades*:*TOS:*:*) echo m68k-hades-mint${UNAME_RELEASE} exit 0 ;; *:*MiNT:*:* | *:*mint:*:* | *:*TOS:*:*) echo m68k-unknown-mint${UNAME_RELEASE} exit 0 ;; powerpc:machten:*:*) echo powerpc-apple-machten${UNAME_RELEASE} exit 0 ;; RISC*:Mach:*:*) echo mips-dec-mach_bsd4.3 exit 0 ;; RISC*:ULTRIX:*:*) echo mips-dec-ultrix${UNAME_RELEASE} exit 0 ;; VAX*:ULTRIX*:*:*) echo vax-dec-ultrix${UNAME_RELEASE} exit 0 ;; 2020:CLIX:*:* | 2430:CLIX:*:*) echo clipper-intergraph-clix${UNAME_RELEASE} exit 0 ;; mips:*:*:UMIPS | mips:*:*:RISCos) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #ifdef __cplusplus #include /* for printf() prototype */ int main (int argc, char *argv[]) { #else int main (argc, argv) int argc; char *argv[]; { #endif #if defined (host_mips) && defined (MIPSEB) #if defined (SYSTYPE_SYSV) printf ("mips-mips-riscos%ssysv\n", argv[1]); exit (0); #endif #if defined (SYSTYPE_SVR4) printf ("mips-mips-riscos%ssvr4\n", argv[1]); exit (0); #endif #if defined (SYSTYPE_BSD43) || defined(SYSTYPE_BSD) printf ("mips-mips-riscos%sbsd\n", argv[1]); exit (0); #endif #endif exit (-1); } EOF $CC_FOR_BUILD -o $dummy $dummy.c \ && $dummy `echo "${UNAME_RELEASE}" | sed -n 's/\([0-9]*\).*/\1/p'` \ && exit 0 echo mips-mips-riscos${UNAME_RELEASE} exit 0 ;; Motorola:PowerMAX_OS:*:*) echo powerpc-motorola-powermax exit 0 ;; Motorola:*:4.3:PL8-*) echo powerpc-harris-powermax exit 0 ;; Night_Hawk:*:*:PowerMAX_OS | Synergy:PowerMAX_OS:*:*) echo powerpc-harris-powermax exit 0 ;; Night_Hawk:Power_UNIX:*:*) echo powerpc-harris-powerunix exit 0 ;; m88k:CX/UX:7*:*) echo m88k-harris-cxux7 exit 0 ;; m88k:*:4*:R4*) echo m88k-motorola-sysv4 exit 0 ;; m88k:*:3*:R3*) echo m88k-motorola-sysv3 exit 0 ;; AViiON:dgux:*:*) # DG/UX returns AViiON for all architectures UNAME_PROCESSOR=`/usr/bin/uname -p` if [ $UNAME_PROCESSOR = mc88100 ] || [ $UNAME_PROCESSOR = mc88110 ] then if [ ${TARGET_BINARY_INTERFACE}x = m88kdguxelfx ] || \ [ ${TARGET_BINARY_INTERFACE}x = x ] then echo m88k-dg-dgux${UNAME_RELEASE} else echo m88k-dg-dguxbcs${UNAME_RELEASE} fi else echo i586-dg-dgux${UNAME_RELEASE} fi exit 0 ;; M88*:DolphinOS:*:*) # DolphinOS (SVR3) echo m88k-dolphin-sysv3 exit 0 ;; M88*:*:R3*:*) # Delta 88k system running SVR3 echo m88k-motorola-sysv3 exit 0 ;; XD88*:*:*:*) # Tektronix XD88 system running UTekV (SVR3) echo m88k-tektronix-sysv3 exit 0 ;; Tek43[0-9][0-9]:UTek:*:*) # Tektronix 4300 system running UTek (BSD) echo m68k-tektronix-bsd exit 0 ;; *:IRIX*:*:*) echo mips-sgi-irix`echo ${UNAME_RELEASE}|sed -e 's/-/_/g'` exit 0 ;; ????????:AIX?:[12].1:2) # AIX 2.2.1 or AIX 2.1.1 is RT/PC AIX. echo romp-ibm-aix # uname -m gives an 8 hex-code CPU id exit 0 ;; # Note that: echo "'`uname -s`'" gives 'AIX ' i*86:AIX:*:*) echo i386-ibm-aix exit 0 ;; ia64:AIX:*:*) if [ -x /usr/bin/oslevel ] ; then IBM_REV=`/usr/bin/oslevel` else IBM_REV=${UNAME_VERSION}.${UNAME_RELEASE} fi echo ${UNAME_MACHINE}-ibm-aix${IBM_REV} exit 0 ;; *:AIX:2:3) if grep bos325 /usr/include/stdio.h >/dev/null 2>&1; then eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include main() { if (!__power_pc()) exit(1); puts("powerpc-ibm-aix3.2.5"); exit(0); } EOF $CC_FOR_BUILD -o $dummy $dummy.c && $dummy && exit 0 echo rs6000-ibm-aix3.2.5 elif grep bos324 /usr/include/stdio.h >/dev/null 2>&1; then echo rs6000-ibm-aix3.2.4 else echo rs6000-ibm-aix3.2 fi exit 0 ;; *:AIX:*:[45]) IBM_CPU_ID=`/usr/sbin/lsdev -C -c processor -S available | sed 1q | awk '{ print $1 }'` if /usr/sbin/lsattr -El ${IBM_CPU_ID} | grep ' POWER' >/dev/null 2>&1; then IBM_ARCH=rs6000 else IBM_ARCH=powerpc fi if [ -x /usr/bin/oslevel ] ; then IBM_REV=`/usr/bin/oslevel` else IBM_REV=${UNAME_VERSION}.${UNAME_RELEASE} fi echo ${IBM_ARCH}-ibm-aix${IBM_REV} exit 0 ;; *:AIX:*:*) echo rs6000-ibm-aix exit 0 ;; ibmrt:4.4BSD:*|romp-ibm:BSD:*) echo romp-ibm-bsd4.4 exit 0 ;; ibmrt:*BSD:*|romp-ibm:BSD:*) # covers RT/PC BSD and echo romp-ibm-bsd${UNAME_RELEASE} # 4.3 with uname added to exit 0 ;; # report: romp-ibm BSD 4.3 *:BOSX:*:*) echo rs6000-bull-bosx exit 0 ;; DPX/2?00:B.O.S.:*:*) echo m68k-bull-sysv3 exit 0 ;; 9000/[34]??:4.3bsd:1.*:*) echo m68k-hp-bsd exit 0 ;; hp300:4.4BSD:*:* | 9000/[34]??:4.3bsd:2.*:*) echo m68k-hp-bsd4.4 exit 0 ;; 9000/[34678]??:HP-UX:*:*) HPUX_REV=`echo ${UNAME_RELEASE}|sed -e 's/[^.]*.[0B]*//'` case "${UNAME_MACHINE}" in 9000/31? ) HP_ARCH=m68000 ;; 9000/[34]?? ) HP_ARCH=m68k ;; 9000/[678][0-9][0-9]) if [ -x /usr/bin/getconf ]; then sc_cpu_version=`/usr/bin/getconf SC_CPU_VERSION 2>/dev/null` sc_kernel_bits=`/usr/bin/getconf SC_KERNEL_BITS 2>/dev/null` case "${sc_cpu_version}" in 523) HP_ARCH="hppa1.0" ;; # CPU_PA_RISC1_0 528) HP_ARCH="hppa1.1" ;; # CPU_PA_RISC1_1 532) # CPU_PA_RISC2_0 case "${sc_kernel_bits}" in 32) HP_ARCH="hppa2.0n" ;; 64) HP_ARCH="hppa2.0w" ;; '') HP_ARCH="hppa2.0" ;; # HP-UX 10.20 esac ;; esac fi if [ "${HP_ARCH}" = "" ]; then eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #define _HPUX_SOURCE #include #include int main () { #if defined(_SC_KERNEL_BITS) long bits = sysconf(_SC_KERNEL_BITS); #endif long cpu = sysconf (_SC_CPU_VERSION); switch (cpu) { case CPU_PA_RISC1_0: puts ("hppa1.0"); break; case CPU_PA_RISC1_1: puts ("hppa1.1"); break; case CPU_PA_RISC2_0: #if defined(_SC_KERNEL_BITS) switch (bits) { case 64: puts ("hppa2.0w"); break; case 32: puts ("hppa2.0n"); break; default: puts ("hppa2.0"); break; } break; #else /* !defined(_SC_KERNEL_BITS) */ puts ("hppa2.0"); break; #endif default: puts ("hppa1.0"); break; } exit (0); } EOF (CCOPTS= $CC_FOR_BUILD -o $dummy $dummy.c 2>/dev/null) && HP_ARCH=`$dummy` test -z "$HP_ARCH" && HP_ARCH=hppa fi ;; esac if [ ${HP_ARCH} = "hppa2.0w" ] then # avoid double evaluation of $set_cc_for_build test -n "$CC_FOR_BUILD" || eval $set_cc_for_build if echo __LP64__ | (CCOPTS= $CC_FOR_BUILD -E -) | grep __LP64__ >/dev/null then HP_ARCH="hppa2.0w" else HP_ARCH="hppa64" fi fi echo ${HP_ARCH}-hp-hpux${HPUX_REV} exit 0 ;; ia64:HP-UX:*:*) HPUX_REV=`echo ${UNAME_RELEASE}|sed -e 's/[^.]*.[0B]*//'` echo ia64-hp-hpux${HPUX_REV} exit 0 ;; 3050*:HI-UX:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include int main () { long cpu = sysconf (_SC_CPU_VERSION); /* The order matters, because CPU_IS_HP_MC68K erroneously returns true for CPU_PA_RISC1_0. CPU_IS_PA_RISC returns correct results, however. */ if (CPU_IS_PA_RISC (cpu)) { switch (cpu) { case CPU_PA_RISC1_0: puts ("hppa1.0-hitachi-hiuxwe2"); break; case CPU_PA_RISC1_1: puts ("hppa1.1-hitachi-hiuxwe2"); break; case CPU_PA_RISC2_0: puts ("hppa2.0-hitachi-hiuxwe2"); break; default: puts ("hppa-hitachi-hiuxwe2"); break; } } else if (CPU_IS_HP_MC68K (cpu)) puts ("m68k-hitachi-hiuxwe2"); else puts ("unknown-hitachi-hiuxwe2"); exit (0); } EOF $CC_FOR_BUILD -o $dummy $dummy.c && $dummy && exit 0 echo unknown-hitachi-hiuxwe2 exit 0 ;; 9000/7??:4.3bsd:*:* | 9000/8?[79]:4.3bsd:*:* ) echo hppa1.1-hp-bsd exit 0 ;; 9000/8??:4.3bsd:*:*) echo hppa1.0-hp-bsd exit 0 ;; *9??*:MPE/iX:*:* | *3000*:MPE/iX:*:*) echo hppa1.0-hp-mpeix exit 0 ;; hp7??:OSF1:*:* | hp8?[79]:OSF1:*:* ) echo hppa1.1-hp-osf exit 0 ;; hp8??:OSF1:*:*) echo hppa1.0-hp-osf exit 0 ;; i*86:OSF1:*:*) if [ -x /usr/sbin/sysversion ] ; then echo ${UNAME_MACHINE}-unknown-osf1mk else echo ${UNAME_MACHINE}-unknown-osf1 fi exit 0 ;; parisc*:Lites*:*:*) echo hppa1.1-hp-lites exit 0 ;; C1*:ConvexOS:*:* | convex:ConvexOS:C1*:*) echo c1-convex-bsd exit 0 ;; C2*:ConvexOS:*:* | convex:ConvexOS:C2*:*) if getsysinfo -f scalar_acc then echo c32-convex-bsd else echo c2-convex-bsd fi exit 0 ;; C34*:ConvexOS:*:* | convex:ConvexOS:C34*:*) echo c34-convex-bsd exit 0 ;; C38*:ConvexOS:*:* | convex:ConvexOS:C38*:*) echo c38-convex-bsd exit 0 ;; C4*:ConvexOS:*:* | convex:ConvexOS:C4*:*) echo c4-convex-bsd exit 0 ;; CRAY*Y-MP:*:*:*) echo ymp-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit 0 ;; CRAY*[A-Z]90:*:*:*) echo ${UNAME_MACHINE}-cray-unicos${UNAME_RELEASE} \ | sed -e 's/CRAY.*\([A-Z]90\)/\1/' \ -e y/ABCDEFGHIJKLMNOPQRSTUVWXYZ/abcdefghijklmnopqrstuvwxyz/ \ -e 's/\.[^.]*$/.X/' exit 0 ;; CRAY*TS:*:*:*) echo t90-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit 0 ;; CRAY*T3E:*:*:*) echo alphaev5-cray-unicosmk${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit 0 ;; CRAY*SV1:*:*:*) echo sv1-cray-unicos${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit 0 ;; *:UNICOS/mp:*:*) echo nv1-cray-unicosmp${UNAME_RELEASE} | sed -e 's/\.[^.]*$/.X/' exit 0 ;; F30[01]:UNIX_System_V:*:* | F700:UNIX_System_V:*:*) FUJITSU_PROC=`uname -m | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz'` FUJITSU_SYS=`uname -p | tr 'ABCDEFGHIJKLMNOPQRSTUVWXYZ' 'abcdefghijklmnopqrstuvwxyz' | sed -e 's/\///'` FUJITSU_REL=`echo ${UNAME_RELEASE} | sed -e 's/ /_/'` echo "${FUJITSU_PROC}-fujitsu-${FUJITSU_SYS}${FUJITSU_REL}" exit 0 ;; i*86:BSD/386:*:* | i*86:BSD/OS:*:* | *:Ascend\ Embedded/OS:*:*) echo ${UNAME_MACHINE}-pc-bsdi${UNAME_RELEASE} exit 0 ;; sparc*:BSD/OS:*:*) echo sparc-unknown-bsdi${UNAME_RELEASE} exit 0 ;; *:BSD/OS:*:*) echo ${UNAME_MACHINE}-unknown-bsdi${UNAME_RELEASE} exit 0 ;; *:FreeBSD:*:*|*:GNU/FreeBSD:*:*) # Determine whether the default compiler uses glibc. eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include #if __GLIBC__ >= 2 LIBC=gnu #else LIBC= #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep ^LIBC=` echo ${UNAME_MACHINE}-unknown-freebsd`echo ${UNAME_RELEASE}|sed -e 's/[-(].*//'`${LIBC:+-$LIBC} exit 0 ;; i*:CYGWIN*:*) echo ${UNAME_MACHINE}-pc-cygwin exit 0 ;; i*:MINGW*:*) echo ${UNAME_MACHINE}-pc-mingw32 exit 0 ;; i*:PW*:*) echo ${UNAME_MACHINE}-pc-pw32 exit 0 ;; x86:Interix*:[34]*) echo i586-pc-interix${UNAME_RELEASE}|sed -e 's/\..*//' exit 0 ;; [345]86:Windows_95:* | [345]86:Windows_98:* | [345]86:Windows_NT:*) echo i${UNAME_MACHINE}-pc-mks exit 0 ;; i*:Windows_NT*:* | Pentium*:Windows_NT*:*) # How do we know it's Interix rather than the generic POSIX subsystem? # It also conflicts with pre-2.0 versions of AT&T UWIN. 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mips64:Linux:*:*) eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #undef CPU #undef mips64 #undef mips64el #if defined(__MIPSEL__) || defined(__MIPSEL) || defined(_MIPSEL) || defined(MIPSEL) CPU=mips64el #else #if defined(__MIPSEB__) || defined(__MIPSEB) || defined(_MIPSEB) || defined(MIPSEB) CPU=mips64 #else CPU= #endif #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep ^CPU=` test x"${CPU}" != x && echo "${CPU}-unknown-linux-gnu" && exit 0 ;; ppc:Linux:*:*) echo powerpc-${VENDOR:-unknown}-linux-gnu exit 0 ;; ppc64:Linux:*:*) echo powerpc64-${VENDOR:-unknown}-linux-gnu exit 0 ;; alpha:Linux:*:*) case `sed -n '/^cpu model/s/^.*: \(.*\)/\1/p' < /proc/cpuinfo` in EV5) UNAME_MACHINE=alphaev5 ;; EV56) UNAME_MACHINE=alphaev56 ;; PCA56) UNAME_MACHINE=alphapca56 ;; PCA57) UNAME_MACHINE=alphapca56 ;; EV6) UNAME_MACHINE=alphaev6 ;; EV67) UNAME_MACHINE=alphaev67 ;; EV68*) UNAME_MACHINE=alphaev68 ;; esac objdump --private-headers /bin/sh | grep ld.so.1 >/dev/null if test "$?" = 0 ; then LIBC="libc1" ; else LIBC="" ; fi echo ${UNAME_MACHINE}-unknown-linux-gnu${LIBC} exit 0 ;; parisc:Linux:*:* | hppa:Linux:*:*) # Look for CPU level case `grep '^cpu[^a-z]*:' /proc/cpuinfo 2>/dev/null | cut -d' ' -f2` in PA7*) echo hppa1.1-unknown-linux-gnu ;; PA8*) echo hppa2.0-unknown-linux-gnu ;; *) echo hppa-unknown-linux-gnu ;; esac exit 0 ;; parisc64:Linux:*:* | hppa64:Linux:*:*) echo hppa64-unknown-linux-gnu exit 0 ;; s390:Linux:*:* | s390x:Linux:*:*) echo ${UNAME_MACHINE}-${VENDOR:-ibm}-linux-gnu exit 0 ;; sh64*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit 0 ;; sh*:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit 0 ;; sparc:Linux:*:* | sparc64:Linux:*:*) echo ${UNAME_MACHINE}-unknown-linux-gnu exit 0 ;; x86_64:Linux:*:*) echo x86_64-${VENDOR:-unknown}-linux-gnu exit 0 ;; i*86:Linux:*:*) # The BFD linker knows what the default object file format is, so # first see if it will tell us. cd to the root directory to prevent # problems with other programs or directories called `ld' in the path. # Set LC_ALL=C to ensure ld outputs messages in English. ld_supported_targets=`cd /; LC_ALL=C ld --help 2>&1 \ | sed -ne '/supported targets:/!d s/[ ][ ]*/ /g s/.*supported targets: *// s/ .*// p'` case "$ld_supported_targets" in elf32-i386) TENTATIVE="${UNAME_MACHINE}-pc-linux-gnu" ;; a.out-i386-linux) echo "${UNAME_MACHINE}-pc-linux-gnuaout" exit 0 ;; coff-i386) echo "${UNAME_MACHINE}-pc-linux-gnucoff" exit 0 ;; "") # Either a pre-BFD a.out linker (linux-gnuoldld) or # one that does not give us useful --help. echo "${UNAME_MACHINE}-pc-linux-gnuoldld" exit 0 ;; esac # Determine whether the default compiler is a.out or elf eval $set_cc_for_build sed 's/^ //' << EOF >$dummy.c #include #ifdef __ELF__ # ifdef __GLIBC__ # if __GLIBC__ >= 2 LIBC=gnu # else LIBC=gnulibc1 # endif # else LIBC=gnulibc1 # endif #else #ifdef __INTEL_COMPILER LIBC=gnu #else LIBC=gnuaout #endif #endif EOF eval `$CC_FOR_BUILD -E $dummy.c 2>/dev/null | grep ^LIBC=` test x"${LIBC}" != x && echo "${UNAME_MACHINE}-${VENDOR:-pc}-linux-${LIBC}" && exit 0 test x"${TENTATIVE}" != x && echo "${TENTATIVE}" && exit 0 ;; i*86:DYNIX/ptx:4*:*) # ptx 4.0 does uname -s correctly, with DYNIX/ptx in there. # earlier versions are messed up and put the nodename in both # sysname and nodename. echo i386-sequent-sysv4 exit 0 ;; i*86:UNIX_SV:4.2MP:2.*) # Unixware is an offshoot of SVR4, but it has its own version # number series starting with 2... # I am not positive that other SVR4 systems won't match this, # I just have to hope. -- rms. # Use sysv4.2uw... so that sysv4* matches it. echo ${UNAME_MACHINE}-pc-sysv4.2uw${UNAME_VERSION} exit 0 ;; i*86:OS/2:*:*) # If we were able to find `uname', then EMX Unix compatibility # is probably installed. echo ${UNAME_MACHINE}-pc-os2-emx exit 0 ;; i*86:XTS-300:*:STOP) echo ${UNAME_MACHINE}-unknown-stop exit 0 ;; i*86:atheos:*:*) echo ${UNAME_MACHINE}-unknown-atheos exit 0 ;; i*86:LynxOS:2.*:* | i*86:LynxOS:3.[01]*:* | i*86:LynxOS:4.0*:*) echo i386-unknown-lynxos${UNAME_RELEASE} exit 0 ;; i*86:*DOS:*:*) echo ${UNAME_MACHINE}-pc-msdosdjgpp exit 0 ;; i*86:*:4.*:* | i*86:SYSTEM_V:4.*:*) UNAME_REL=`echo ${UNAME_RELEASE} | sed 's/\/MP$//'` if grep Novell /usr/include/link.h >/dev/null 2>/dev/null; then echo ${UNAME_MACHINE}-univel-sysv${UNAME_REL} else echo ${UNAME_MACHINE}-pc-sysv${UNAME_REL} fi exit 0 ;; i*86:*:5:[78]*) case `/bin/uname -X | grep "^Machine"` in *486*) UNAME_MACHINE=i486 ;; *Pentium) UNAME_MACHINE=i586 ;; *Pent*|*Celeron) UNAME_MACHINE=i686 ;; esac echo ${UNAME_MACHINE}-unknown-sysv${UNAME_RELEASE}${UNAME_SYSTEM}${UNAME_VERSION} exit 0 ;; i*86:*:3.2:*) if test -f /usr/options/cb.name; then UNAME_REL=`sed -n 's/.*Version //p' /dev/null >/dev/null ; then UNAME_REL=`(/bin/uname -X|grep Release|sed -e 's/.*= //')` (/bin/uname -X|grep i80486 >/dev/null) && UNAME_MACHINE=i486 (/bin/uname -X|grep '^Machine.*Pentium' >/dev/null) \ && UNAME_MACHINE=i586 (/bin/uname -X|grep '^Machine.*Pent *II' >/dev/null) \ && UNAME_MACHINE=i686 (/bin/uname -X|grep '^Machine.*Pentium Pro' >/dev/null) \ && UNAME_MACHINE=i686 echo ${UNAME_MACHINE}-pc-sco$UNAME_REL else echo ${UNAME_MACHINE}-pc-sysv32 fi exit 0 ;; pc:*:*:*) # Left here for compatibility: # uname -m prints for DJGPP always 'pc', but it prints nothing about # the processor, so we play safe by assuming i386. echo i386-pc-msdosdjgpp exit 0 ;; Intel:Mach:3*:*) echo i386-pc-mach3 exit 0 ;; paragon:*:*:*) echo i860-intel-osf1 exit 0 ;; i860:*:4.*:*) # i860-SVR4 if grep Stardent /usr/include/sys/uadmin.h >/dev/null 2>&1 ; then echo i860-stardent-sysv${UNAME_RELEASE} # Stardent Vistra i860-SVR4 else # Add other i860-SVR4 vendors below as they are discovered. echo i860-unknown-sysv${UNAME_RELEASE} # Unknown i860-SVR4 fi exit 0 ;; mini*:CTIX:SYS*5:*) # "miniframe" echo m68010-convergent-sysv exit 0 ;; mc68k:UNIX:SYSTEM5:3.51m) echo m68k-convergent-sysv exit 0 ;; M680?0:D-NIX:5.3:*) echo m68k-diab-dnix exit 0 ;; M68*:*:R3V[567]*:*) test -r /sysV68 && echo 'm68k-motorola-sysv' && exit 0 ;; 3[34]??:*:4.0:3.0 | 3[34]??A:*:4.0:3.0 | 3[34]??,*:*:4.0:3.0 | 3[34]??/*:*:4.0:3.0 | 4400:*:4.0:3.0 | 4850:*:4.0:3.0 | SKA40:*:4.0:3.0 | SDS2:*:4.0:3.0 | SHG2:*:4.0:3.0) OS_REL='' test -r /etc/.relid \ && OS_REL=.`sed -n 's/[^ ]* [^ ]* \([0-9][0-9]\).*/\1/p' < /etc/.relid` /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && echo i486-ncr-sysv4.3${OS_REL} && exit 0 /bin/uname -p 2>/dev/null | /bin/grep entium >/dev/null \ && echo i586-ncr-sysv4.3${OS_REL} && exit 0 ;; 3[34]??:*:4.0:* | 3[34]??,*:*:4.0:*) /bin/uname -p 2>/dev/null | grep 86 >/dev/null \ && echo i486-ncr-sysv4 && exit 0 ;; m68*:LynxOS:2.*:* | m68*:LynxOS:3.0*:*) echo m68k-unknown-lynxos${UNAME_RELEASE} exit 0 ;; mc68030:UNIX_System_V:4.*:*) echo m68k-atari-sysv4 exit 0 ;; TSUNAMI:LynxOS:2.*:*) echo sparc-unknown-lynxos${UNAME_RELEASE} exit 0 ;; rs6000:LynxOS:2.*:*) echo rs6000-unknown-lynxos${UNAME_RELEASE} exit 0 ;; PowerPC:LynxOS:2.*:* | PowerPC:LynxOS:3.[01]*:* | PowerPC:LynxOS:4.0*:*) echo powerpc-unknown-lynxos${UNAME_RELEASE} exit 0 ;; SM[BE]S:UNIX_SV:*:*) echo mips-dde-sysv${UNAME_RELEASE} exit 0 ;; RM*:ReliantUNIX-*:*:*) echo mips-sni-sysv4 exit 0 ;; RM*:SINIX-*:*:*) echo mips-sni-sysv4 exit 0 ;; *:SINIX-*:*:*) if uname -p 2>/dev/null >/dev/null ; then UNAME_MACHINE=`(uname -p) 2>/dev/null` echo ${UNAME_MACHINE}-sni-sysv4 else echo ns32k-sni-sysv fi exit 0 ;; PENTIUM:*:4.0*:*) # Unisys `ClearPath HMP IX 4000' SVR4/MP effort # says echo i586-unisys-sysv4 exit 0 ;; *:UNIX_System_V:4*:FTX*) # From Gerald Hewes . # How about differentiating between stratus architectures? -djm echo hppa1.1-stratus-sysv4 exit 0 ;; *:*:*:FTX*) # From seanf@swdc.stratus.com. echo i860-stratus-sysv4 exit 0 ;; *:VOS:*:*) # From Paul.Green@stratus.com. echo hppa1.1-stratus-vos exit 0 ;; mc68*:A/UX:*:*) echo m68k-apple-aux${UNAME_RELEASE} exit 0 ;; news*:NEWS-OS:6*:*) echo mips-sony-newsos6 exit 0 ;; R[34]000:*System_V*:*:* | R4000:UNIX_SYSV:*:* | R*000:UNIX_SV:*:*) if [ -d /usr/nec ]; then echo mips-nec-sysv${UNAME_RELEASE} else echo mips-unknown-sysv${UNAME_RELEASE} fi exit 0 ;; BeBox:BeOS:*:*) # BeOS running on hardware made by Be, PPC only. echo powerpc-be-beos exit 0 ;; BeMac:BeOS:*:*) # BeOS running on Mac or Mac clone, PPC only. echo powerpc-apple-beos exit 0 ;; BePC:BeOS:*:*) # BeOS running on Intel PC compatible. echo i586-pc-beos exit 0 ;; SX-4:SUPER-UX:*:*) echo sx4-nec-superux${UNAME_RELEASE} exit 0 ;; SX-5:SUPER-UX:*:*) echo sx5-nec-superux${UNAME_RELEASE} exit 0 ;; SX-6:SUPER-UX:*:*) echo sx6-nec-superux${UNAME_RELEASE} exit 0 ;; Power*:Rhapsody:*:*) echo powerpc-apple-rhapsody${UNAME_RELEASE} exit 0 ;; *:Rhapsody:*:*) echo ${UNAME_MACHINE}-apple-rhapsody${UNAME_RELEASE} exit 0 ;; *:Darwin:*:*) case `uname -p` in *86) UNAME_PROCESSOR=i686 ;; powerpc) UNAME_PROCESSOR=powerpc ;; esac echo ${UNAME_PROCESSOR}-apple-darwin${UNAME_RELEASE} exit 0 ;; *:procnto*:*:* | *:QNX:[0123456789]*:*) UNAME_PROCESSOR=`uname -p` if test "$UNAME_PROCESSOR" = "x86"; then UNAME_PROCESSOR=i386 UNAME_MACHINE=pc fi echo ${UNAME_PROCESSOR}-${UNAME_MACHINE}-nto-qnx${UNAME_RELEASE} exit 0 ;; *:QNX:*:4*) echo i386-pc-qnx exit 0 ;; NSR-[DGKLNPTVW]:NONSTOP_KERNEL:*:*) echo nsr-tandem-nsk${UNAME_RELEASE} exit 0 ;; *:NonStop-UX:*:*) echo mips-compaq-nonstopux exit 0 ;; BS2000:POSIX*:*:*) echo bs2000-siemens-sysv exit 0 ;; DS/*:UNIX_System_V:*:*) echo ${UNAME_MACHINE}-${UNAME_SYSTEM}-${UNAME_RELEASE} exit 0 ;; *:Plan9:*:*) # "uname -m" is not consistent, so use $cputype instead. 386 # is converted to i386 for consistency with other x86 # operating systems. if test "$cputype" = "386"; then UNAME_MACHINE=i386 else UNAME_MACHINE="$cputype" fi echo ${UNAME_MACHINE}-unknown-plan9 exit 0 ;; *:TOPS-10:*:*) echo pdp10-unknown-tops10 exit 0 ;; *:TENEX:*:*) echo pdp10-unknown-tenex exit 0 ;; KS10:TOPS-20:*:* | KL10:TOPS-20:*:* | TYPE4:TOPS-20:*:*) echo pdp10-dec-tops20 exit 0 ;; XKL-1:TOPS-20:*:* | TYPE5:TOPS-20:*:*) echo pdp10-xkl-tops20 exit 0 ;; *:TOPS-20:*:*) echo pdp10-unknown-tops20 exit 0 ;; *:ITS:*:*) echo pdp10-unknown-its exit 0 ;; SEI:*:*:SEIUX) echo mips-sei-seiux${UNAME_RELEASE} exit 0 ;; esac #echo '(No uname command or uname output not recognized.)' 1>&2 #echo "${UNAME_MACHINE}:${UNAME_SYSTEM}:${UNAME_RELEASE}:${UNAME_VERSION}" 1>&2 eval $set_cc_for_build cat >$dummy.c < # include #endif main () { #if defined (sony) #if defined (MIPSEB) /* BFD wants "bsd" instead of "newsos". Perhaps BFD should be changed, I don't know.... */ printf ("mips-sony-bsd\n"); exit (0); #else #include printf ("m68k-sony-newsos%s\n", #ifdef NEWSOS4 "4" #else "" #endif ); exit (0); #endif #endif #if defined (__arm) && defined (__acorn) && defined (__unix) printf ("arm-acorn-riscix"); exit (0); #endif #if defined (hp300) && !defined (hpux) printf ("m68k-hp-bsd\n"); exit (0); #endif #if defined (NeXT) #if !defined (__ARCHITECTURE__) #define __ARCHITECTURE__ "m68k" #endif int version; version=`(hostinfo | sed -n 's/.*NeXT Mach \([0-9]*\).*/\1/p') 2>/dev/null`; if (version < 4) printf ("%s-next-nextstep%d\n", __ARCHITECTURE__, version); else printf ("%s-next-openstep%d\n", __ARCHITECTURE__, version); exit (0); #endif #if defined (MULTIMAX) || defined (n16) #if defined (UMAXV) printf ("ns32k-encore-sysv\n"); exit (0); #else #if defined (CMU) printf ("ns32k-encore-mach\n"); exit (0); #else printf ("ns32k-encore-bsd\n"); exit (0); #endif #endif #endif #if defined (__386BSD__) printf ("i386-pc-bsd\n"); exit (0); #endif #if defined (sequent) #if defined (i386) printf ("i386-sequent-dynix\n"); exit (0); #endif #if defined (ns32000) printf ("ns32k-sequent-dynix\n"); exit (0); #endif #endif #if defined (_SEQUENT_) struct utsname un; uname(&un); if (strncmp(un.version, "V2", 2) == 0) { printf ("i386-sequent-ptx2\n"); exit (0); } if (strncmp(un.version, "V1", 2) == 0) { /* XXX is V1 correct? */ printf ("i386-sequent-ptx1\n"); exit (0); } printf ("i386-sequent-ptx\n"); exit (0); #endif #if defined (vax) # if !defined (ultrix) # include # if defined (BSD) # if BSD == 43 printf ("vax-dec-bsd4.3\n"); exit (0); # else # if BSD == 199006 printf ("vax-dec-bsd4.3reno\n"); exit (0); # else printf ("vax-dec-bsd\n"); exit (0); # endif # endif # else printf ("vax-dec-bsd\n"); exit (0); # endif # else printf ("vax-dec-ultrix\n"); exit (0); # endif #endif #if defined (alliant) && defined (i860) printf ("i860-alliant-bsd\n"); exit (0); #endif exit (1); } EOF $CC_FOR_BUILD -o $dummy $dummy.c 2>/dev/null && $dummy && exit 0 # Apollos put the system type in the environment. test -d /usr/apollo && { echo ${ISP}-apollo-${SYSTYPE}; exit 0; } # Convex versions that predate uname can use getsysinfo(1) if [ -x /usr/convex/getsysinfo ] then case `getsysinfo -f cpu_type` in c1*) echo c1-convex-bsd exit 0 ;; c2*) if getsysinfo -f scalar_acc then echo c32-convex-bsd else echo c2-convex-bsd fi exit 0 ;; c34*) echo c34-convex-bsd exit 0 ;; c38*) echo c38-convex-bsd exit 0 ;; c4*) echo c4-convex-bsd exit 0 ;; esac fi cat >&2 < in order to provide the needed information to handle your system. config.guess timestamp = $timestamp uname -m = `(uname -m) 2>/dev/null || echo unknown` uname -r = `(uname -r) 2>/dev/null || echo unknown` uname -s = `(uname -s) 2>/dev/null || echo unknown` uname -v = `(uname -v) 2>/dev/null || echo unknown` /usr/bin/uname -p = `(/usr/bin/uname -p) 2>/dev/null` /bin/uname -X = `(/bin/uname -X) 2>/dev/null` hostinfo = `(hostinfo) 2>/dev/null` /bin/universe = `(/bin/universe) 2>/dev/null` /usr/bin/arch -k = `(/usr/bin/arch -k) 2>/dev/null` /bin/arch = `(/bin/arch) 2>/dev/null` /usr/bin/oslevel = `(/usr/bin/oslevel) 2>/dev/null` /usr/convex/getsysinfo = `(/usr/convex/getsysinfo) 2>/dev/null` UNAME_MACHINE = ${UNAME_MACHINE} UNAME_RELEASE = ${UNAME_RELEASE} UNAME_SYSTEM = ${UNAME_SYSTEM} UNAME_VERSION = ${UNAME_VERSION} EOF exit 1 # Local variables: # eval: (add-hook 'write-file-hooks 'time-stamp) # time-stamp-start: "timestamp='" # time-stamp-format: "%:y-%02m-%02d" # time-stamp-end: "'" # End: pmidi-1.6.0/config.sub0000755000076400007640000007301507740426644010317 #! /bin/sh # Configuration validation subroutine script. # Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, # 2000, 2001, 2002, 2003 Free Software Foundation, Inc. timestamp='2003-06-18' # This file is (in principle) common to ALL GNU software. # The presence of a machine in this file suggests that SOME GNU software # can handle that machine. It does not imply ALL GNU software can. # # This file is free software; you can redistribute it and/or modify # it under the terms of the GNU General Public License as published by # the Free Software Foundation; either version 2 of the License, or # (at your option) any later version. # # This program is distributed in the hope that it will be useful, # but WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the # GNU General Public License for more details. # # You should have received a copy of the GNU General Public License # along with this program; if not, write to the Free Software # Foundation, Inc., 59 Temple Place - Suite 330, # Boston, MA 02111-1307, USA. # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that program. # Please send patches to . Submit a context # diff and a properly formatted ChangeLog entry. # # Configuration subroutine to validate and canonicalize a configuration type. # Supply the specified configuration type as an argument. # If it is invalid, we print an error message on stderr and exit with code 1. # Otherwise, we print the canonical config type on stdout and succeed. # This file is supposed to be the same for all GNU packages # and recognize all the CPU types, system types and aliases # that are meaningful with *any* GNU software. # Each package is responsible for reporting which valid configurations # it does not support. The user should be able to distinguish # a failure to support a valid configuration from a meaningless # configuration. # The goal of this file is to map all the various variations of a given # machine specification into a single specification in the form: # CPU_TYPE-MANUFACTURER-OPERATING_SYSTEM # or in some cases, the newer four-part form: # CPU_TYPE-MANUFACTURER-KERNEL-OPERATING_SYSTEM # It is wrong to echo any other type of specification. me=`echo "$0" | sed -e 's,.*/,,'` usage="\ Usage: $0 [OPTION] CPU-MFR-OPSYS $0 [OPTION] ALIAS Canonicalize a configuration name. Operation modes: -h, --help print this help, then exit -t, --time-stamp print date of last modification, then exit -v, --version print version number, then exit Report bugs and patches to ." version="\ GNU config.sub ($timestamp) Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001 Free Software Foundation, Inc. This is free software; see the source for copying conditions. There is NO warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE." help=" Try \`$me --help' for more information." # Parse command line while test $# -gt 0 ; do case $1 in --time-stamp | --time* | -t ) echo "$timestamp" ; exit 0 ;; --version | -v ) echo "$version" ; exit 0 ;; --help | --h* | -h ) echo "$usage"; exit 0 ;; -- ) # Stop option processing shift; break ;; - ) # Use stdin as input. break ;; -* ) echo "$me: invalid option $1$help" exit 1 ;; *local*) # First pass through any local machine types. echo $1 exit 0;; * ) break ;; esac done case $# in 0) echo "$me: missing argument$help" >&2 exit 1;; 1) ;; *) echo "$me: too many arguments$help" >&2 exit 1;; esac # Separate what the user gave into CPU-COMPANY and OS or KERNEL-OS (if any). # Here we must recognize all the valid KERNEL-OS combinations. maybe_os=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\2/'` case $maybe_os in nto-qnx* | linux-gnu* | freebsd*-gnu* | netbsd*-gnu* | storm-chaos* | os2-emx* | rtmk-nova*) os=-$maybe_os basic_machine=`echo $1 | sed 's/^\(.*\)-\([^-]*-[^-]*\)$/\1/'` ;; *) basic_machine=`echo $1 | sed 's/-[^-]*$//'` if [ $basic_machine != $1 ] then os=`echo $1 | sed 's/.*-/-/'` else os=; fi ;; esac ### Let's recognize common machines as not being operating systems so ### that things like config.sub decstation-3100 work. We also ### recognize some manufacturers as not being operating systems, so we ### can provide default operating systems below. case $os in -sun*os*) # Prevent following clause from handling this invalid input. ;; -dec* | -mips* | -sequent* | -encore* | -pc532* | -sgi* | -sony* | \ -att* | -7300* | -3300* | -delta* | -motorola* | -sun[234]* | \ -unicom* | -ibm* | -next | -hp | -isi* | -apollo | -altos* | \ -convergent* | -ncr* | -news | -32* | -3600* | -3100* | -hitachi* |\ -c[123]* | -convex* | -sun | -crds | -omron* | -dg | -ultra | -tti* | \ -harris | -dolphin | -highlevel | -gould | -cbm | -ns | -masscomp | \ -apple | -axis) os= basic_machine=$1 ;; -sim | -cisco | -oki | -wec | -winbond) os= basic_machine=$1 ;; -scout) ;; -wrs) os=-vxworks basic_machine=$1 ;; -chorusos*) os=-chorusos basic_machine=$1 ;; -chorusrdb) os=-chorusrdb basic_machine=$1 ;; -hiux*) os=-hiuxwe2 ;; -sco5) os=-sco3.2v5 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco4) os=-sco3.2v4 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2.[4-9]*) os=`echo $os | sed -e 's/sco3.2./sco3.2v/'` basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco3.2v[4-9]*) # Don't forget version if it is 3.2v4 or newer. basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -sco*) os=-sco3.2v2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -udk*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -isc) os=-isc2.2 basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -clix*) basic_machine=clipper-intergraph ;; -isc*) basic_machine=`echo $1 | sed -e 's/86-.*/86-pc/'` ;; -lynx*) os=-lynxos ;; -ptx*) basic_machine=`echo $1 | sed -e 's/86-.*/86-sequent/'` ;; -windowsnt*) os=`echo $os | sed -e 's/windowsnt/winnt/'` ;; -psos*) os=-psos ;; -mint | -mint[0-9]*) basic_machine=m68k-atari os=-mint ;; esac # Decode aliases for certain CPU-COMPANY combinations. case $basic_machine in # Recognize the basic CPU types without company name. # Some are omitted here because they have special meanings below. 1750a | 580 \ | a29k \ | alpha | alphaev[4-8] | alphaev56 | alphaev6[78] | alphapca5[67] \ | alpha64 | alpha64ev[4-8] | alpha64ev56 | alpha64ev6[78] | alpha64pca5[67] \ | arc | arm | arm[bl]e | arme[lb] | armv[2345] | armv[345][lb] | avr \ | c4x | clipper \ | d10v | d30v | dlx | dsp16xx \ | fr30 | frv \ | h8300 | h8500 | hppa | hppa1.[01] | hppa2.0 | hppa2.0[nw] | hppa64 \ | i370 | i860 | i960 | ia64 \ | ip2k \ | m32r | m68000 | m68k | m88k | mcore \ | mips | mipsbe | mipseb | mipsel | mipsle \ | mips16 \ | mips64 | mips64el \ | mips64vr | mips64vrel \ | mips64orion | mips64orionel \ | mips64vr4100 | mips64vr4100el \ | mips64vr4300 | mips64vr4300el \ | mips64vr5000 | mips64vr5000el \ | mipsisa32 | mipsisa32el \ | mipsisa32r2 | mipsisa32r2el \ | mipsisa64 | mipsisa64el \ | mipsisa64sb1 | mipsisa64sb1el \ | mipsisa64sr71k | mipsisa64sr71kel \ | mipstx39 | mipstx39el \ | mn10200 | mn10300 \ | msp430 \ | ns16k | ns32k \ | openrisc | or32 \ | pdp10 | pdp11 | pj | pjl \ | powerpc | powerpc64 | powerpc64le | powerpcle | ppcbe \ | pyramid \ | s390 | s390x \ | sh | sh[1234] | sh[23]e | sh[34]eb | shbe | shle | sh[1234]le | sh3ele \ | sh64 | sh64le \ | sparc | sparc64 | sparc86x | sparclet | sparclite | sparcv9 | sparcv9b \ | strongarm \ | tahoe | thumb | tic4x | tic80 | tron \ | v850 | v850e \ | we32k \ | x86 | xscale | xstormy16 | xtensa \ | z8k) basic_machine=$basic_machine-unknown ;; m6811 | m68hc11 | m6812 | m68hc12) # Motorola 68HC11/12. basic_machine=$basic_machine-unknown os=-none ;; m88110 | m680[12346]0 | m683?2 | m68360 | m5200 | v70 | w65 | z8k) ;; # We use `pc' rather than `unknown' # because (1) that's what they normally are, and # (2) the word "unknown" tends to confuse beginning users. i*86 | x86_64) basic_machine=$basic_machine-pc ;; # Object if more than one company name word. *-*-*) echo Invalid configuration \`$1\': machine \`$basic_machine\' not recognized 1>&2 exit 1 ;; # Recognize the basic CPU types with company name. 580-* \ | a29k-* \ | alpha-* | alphaev[4-8]-* | alphaev56-* | alphaev6[78]-* \ | alpha64-* | alpha64ev[4-8]-* | alpha64ev56-* | alpha64ev6[78]-* \ | alphapca5[67]-* | alpha64pca5[67]-* | arc-* \ | arm-* | armbe-* | armle-* | armeb-* | armv*-* \ | avr-* \ | bs2000-* \ | c[123]* | c30-* | [cjt]90-* | c4x-* | c54x-* | c55x-* | c6x-* \ | clipper-* | cydra-* \ | d10v-* | d30v-* | dlx-* \ | elxsi-* \ | f30[01]-* | f700-* | fr30-* | frv-* | fx80-* \ | h8300-* | h8500-* \ | hppa-* | hppa1.[01]-* | hppa2.0-* | hppa2.0[nw]-* | hppa64-* \ | i*86-* | i860-* | i960-* | ia64-* \ | ip2k-* \ | m32r-* \ | m68000-* | m680[012346]0-* | m68360-* | m683?2-* | m68k-* \ | m88110-* | m88k-* | mcore-* \ | mips-* | mipsbe-* | mipseb-* | mipsel-* | mipsle-* \ | mips16-* \ | mips64-* | mips64el-* \ | mips64vr-* | mips64vrel-* \ | mips64orion-* | mips64orionel-* \ | mips64vr4100-* | mips64vr4100el-* \ | mips64vr4300-* | mips64vr4300el-* \ | mips64vr5000-* | mips64vr5000el-* \ | mipsisa32-* | mipsisa32el-* \ | mipsisa32r2-* | mipsisa32r2el-* \ | mipsisa64-* | mipsisa64el-* \ | mipsisa64sb1-* | mipsisa64sb1el-* \ | mipsisa64sr71k-* | mipsisa64sr71kel-* \ | mipstx39-* | mipstx39el-* \ | msp430-* \ | none-* | np1-* | nv1-* | ns16k-* | ns32k-* \ | orion-* \ | pdp10-* | pdp11-* | pj-* | pjl-* | pn-* | power-* \ | powerpc-* | powerpc64-* | powerpc64le-* | powerpcle-* | ppcbe-* \ | pyramid-* \ | romp-* | rs6000-* \ | s390-* | s390x-* \ | sh-* | sh[1234]-* | sh[23]e-* | sh[34]eb-* | shbe-* \ | shle-* | sh[1234]le-* | sh3ele-* | sh64-* | sh64le-* \ | sparc-* | sparc64-* | sparc86x-* | sparclet-* | sparclite-* \ | sparcv9-* | sparcv9b-* | strongarm-* | sv1-* | sx?-* \ | tahoe-* | thumb-* \ | tic30-* | tic4x-* | tic54x-* | tic55x-* | tic6x-* | tic80-* \ | tron-* \ | v850-* | v850e-* | vax-* \ | we32k-* \ | x86-* | x86_64-* | xps100-* | xscale-* | xstormy16-* \ | xtensa-* \ | ymp-* \ | z8k-*) ;; # Recognize the various machine names and aliases which stand # for a CPU type and a company and sometimes even an OS. 386bsd) basic_machine=i386-unknown os=-bsd ;; 3b1 | 7300 | 7300-att | att-7300 | pc7300 | safari | unixpc) basic_machine=m68000-att ;; 3b*) basic_machine=we32k-att ;; a29khif) basic_machine=a29k-amd os=-udi ;; adobe68k) basic_machine=m68010-adobe os=-scout ;; alliant | fx80) basic_machine=fx80-alliant ;; altos | altos3068) basic_machine=m68k-altos ;; am29k) basic_machine=a29k-none os=-bsd ;; amd64) basic_machine=x86_64-pc ;; amdahl) basic_machine=580-amdahl os=-sysv ;; amiga | amiga-*) basic_machine=m68k-unknown ;; amigaos | amigados) basic_machine=m68k-unknown os=-amigaos ;; amigaunix | amix) basic_machine=m68k-unknown os=-sysv4 ;; apollo68) basic_machine=m68k-apollo os=-sysv ;; apollo68bsd) basic_machine=m68k-apollo os=-bsd ;; aux) basic_machine=m68k-apple os=-aux ;; balance) basic_machine=ns32k-sequent os=-dynix ;; c90) basic_machine=c90-cray os=-unicos ;; convex-c1) basic_machine=c1-convex os=-bsd ;; convex-c2) basic_machine=c2-convex os=-bsd ;; convex-c32) basic_machine=c32-convex os=-bsd ;; convex-c34) basic_machine=c34-convex os=-bsd ;; convex-c38) basic_machine=c38-convex os=-bsd ;; cray | j90) basic_machine=j90-cray os=-unicos ;; crds | unos) basic_machine=m68k-crds ;; cris | cris-* | etrax*) basic_machine=cris-axis ;; da30 | da30-*) basic_machine=m68k-da30 ;; decstation | decstation-3100 | pmax | pmax-* | pmin | dec3100 | decstatn) basic_machine=mips-dec ;; decsystem10* | dec10*) basic_machine=pdp10-dec os=-tops10 ;; decsystem20* | dec20*) basic_machine=pdp10-dec os=-tops20 ;; delta | 3300 | motorola-3300 | motorola-delta \ | 3300-motorola | delta-motorola) basic_machine=m68k-motorola ;; delta88) basic_machine=m88k-motorola os=-sysv3 ;; dpx20 | dpx20-*) basic_machine=rs6000-bull os=-bosx ;; dpx2* | dpx2*-bull) basic_machine=m68k-bull os=-sysv3 ;; ebmon29k) basic_machine=a29k-amd os=-ebmon ;; elxsi) basic_machine=elxsi-elxsi os=-bsd ;; encore | umax | mmax) basic_machine=ns32k-encore ;; es1800 | OSE68k | ose68k | ose | OSE) basic_machine=m68k-ericsson os=-ose ;; fx2800) basic_machine=i860-alliant ;; genix) basic_machine=ns32k-ns ;; gmicro) basic_machine=tron-gmicro os=-sysv ;; go32) basic_machine=i386-pc os=-go32 ;; h3050r* | hiux*) basic_machine=hppa1.1-hitachi os=-hiuxwe2 ;; h8300hms) basic_machine=h8300-hitachi os=-hms ;; h8300xray) basic_machine=h8300-hitachi os=-xray ;; h8500hms) basic_machine=h8500-hitachi os=-hms ;; harris) basic_machine=m88k-harris os=-sysv3 ;; hp300-*) basic_machine=m68k-hp ;; hp300bsd) basic_machine=m68k-hp os=-bsd ;; hp300hpux) basic_machine=m68k-hp os=-hpux ;; hp3k9[0-9][0-9] | hp9[0-9][0-9]) basic_machine=hppa1.0-hp ;; hp9k2[0-9][0-9] | hp9k31[0-9]) basic_machine=m68000-hp ;; hp9k3[2-9][0-9]) basic_machine=m68k-hp ;; hp9k6[0-9][0-9] | hp6[0-9][0-9]) basic_machine=hppa1.0-hp ;; hp9k7[0-79][0-9] | hp7[0-79][0-9]) basic_machine=hppa1.1-hp ;; hp9k78[0-9] | hp78[0-9]) # FIXME: really hppa2.0-hp basic_machine=hppa1.1-hp ;; hp9k8[67]1 | hp8[67]1 | hp9k80[24] | hp80[24] | hp9k8[78]9 | hp8[78]9 | hp9k893 | hp893) # FIXME: really hppa2.0-hp basic_machine=hppa1.1-hp ;; hp9k8[0-9][13679] | hp8[0-9][13679]) basic_machine=hppa1.1-hp ;; hp9k8[0-9][0-9] | hp8[0-9][0-9]) basic_machine=hppa1.0-hp ;; hppa-next) os=-nextstep3 ;; hppaosf) basic_machine=hppa1.1-hp os=-osf ;; hppro) basic_machine=hppa1.1-hp os=-proelf ;; i370-ibm* | ibm*) basic_machine=i370-ibm ;; # I'm not sure what "Sysv32" means. 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See the # GNU General Public License for more details. # You should have received a copy of the GNU General Public License # along with this program; if not, write to the Free Software # Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA # 02111-1307, USA. # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that program. # Originally written by Alexandre Oliva . if test -z "$depmode" || test -z "$source" || test -z "$object"; then echo "depcomp: Variables source, object and depmode must be set" 1>&2 exit 1 fi # `libtool' can also be set to `yes' or `no'. if test -z "$depfile"; then base=`echo "$object" | sed -e 's,^.*/,,' -e 's,\.\([^.]*\)$,.P\1,'` dir=`echo "$object" | sed 's,/.*$,/,'` if test "$dir" = "$object"; then dir= fi # FIXME: should be _deps on DOS. depfile="$dir.deps/$base" fi tmpdepfile=${tmpdepfile-`echo "$depfile" | sed 's/\.\([^.]*\)$/.T\1/'`} rm -f "$tmpdepfile" # Some modes work just like other modes, but use different flags. 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See the # GNU General Public License for more details. # You should have received a copy of the GNU General Public License # along with this program; if not, write to the Free Software # Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA # 02111-1307, USA. # As a special exception to the GNU General Public License, if you # distribute this file as part of a program that contains a # configuration script generated by Autoconf, you may include it under # the same distribution terms that you use for the rest of that program. if test $# -eq 0; then echo 1>&2 "Try \`$0 --help' for more information" exit 1 fi run=: # In the cases where this matters, `missing' is being run in the # srcdir already. if test -f configure.ac; then configure_ac=configure.ac else configure_ac=configure.in fi case "$1" in --run) # Try to run requested program, and just exit if it succeeds. run= shift "$@" && exit 0 ;; esac # If it does not exist, or fails to run (possibly an outdated version), # try to emulate it. case "$1" in -h|--h|--he|--hel|--help) echo "\ $0 [OPTION]... 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You may also peek at any GNU archive site, in case some other package would contain this missing \`$1' program." exit 1 ;; esac exit 0 pmidi-1.6.0/mkinstalldirs0000755000076400007640000000132307275234074011130 #! /bin/sh # mkinstalldirs --- make directory hierarchy # Author: Noah Friedman # Created: 1993-05-16 # Public domain # $Id: mkinstalldirs,v 1.1 2001/05/06 11:40:44 steve Exp $ errstatus=0 for file do set fnord `echo ":$file" | sed -ne 's/^:\//#/;s/^://;s/\// /g;s/^#/\//;p'` shift pathcomp= for d do pathcomp="$pathcomp$d" case "$pathcomp" in -* ) pathcomp=./$pathcomp ;; esac if test ! -d "$pathcomp"; then echo "mkdir $pathcomp" mkdir "$pathcomp" || lasterr=$? if test ! -d "$pathcomp"; then errstatus=$lasterr fi fi pathcomp="$pathcomp/" done done exit $errstatus # mkinstalldirs ends here pmidi-1.6.0/pmidi.spec.in0000644000076400007640000000504107277515707010715 %define ver @VERSION@ %define rel 1 %define prefix /usr Summary: A Command Line MIDI Player Through ALSA Sequencer. Name: @PACKAGE@ Version: %{ver} Release: %{rel} Copyright: GPL Group: Applications/Multimedia/Audio Source: ftp://download.sourceforge.net/pub/sourceforge/@PACKAGE@/@PACKAGE@-@VERSION@.tar.gz URL: http://@PACKAGE@.sourceforge.net BuildRoot: /usr/tmp/@PACKAGE@-@VERSION@-%{rel}-root Packager: Habibie Docdir: %{prefix}/doc %description @PACKAGE@ is a command line midi player for ALSA. It can play to any MIDI device that is supported by ALSA. Most external MIDI ports are supported. The sfxload program included with the awesfx is required to load a sound font first to using the internal synthesizer on a SB Live! or SB AWE32/64. Authors: Steve Ratcliffe %prep %setup -q %build # Needed for snapshot releases. if [ ! -f configure ]; then CFLAGS="${RPM_OPT_FLAGS}" ./autogen.sh --prefix=%prefix else CFLAGS="${RPM_OPT_FLAGS}" ./configure --prefix=%prefix fi [ "${SMP}" != "" ] && JSMP = '-j${SMP} "MAKE=make -j${SMP}"'; make ${JSMP}; %install [ -d ${RPM_BUILD_ROOT} ] && rm -rf ${RPM_BUILD_ROOT} make prefix=${RPM_BUILD_ROOT}%{prefix} install-strip # # Strip off binary and library files, if not done so. # # First, gathering the binary files list. # Process and store them as FILEB # find ${RPM_BUILD_ROOT}%{prefix} -type f > file-lists; FILEB=`file -f file-lists | awk -F':' '/executable/ { print $1 }'` # # Second, gathering the library files list. # Process and store them as FILEL. # find ${RPM_BUILD_ROOT}%{prefix} -type f > file-lists; FILEL=`file -f file-lists | awk -F':' '/shared object/ { print $1 }'` # # Then, strip both the binary and library # files listed in FILEB and FILEL. # [ "${FILEB}" ] && strip ${FILEB}; [ "${FILEL}" ] && strip ${FILEL}; # # Compressing the info files and manpages, if any. # if [ -d ${RPM_BUILD_ROOT}%{prefix}/info ]; then (cd ${RPM_BUILD_ROOT}%{prefix}/info; [ -z dir ] && rm -f dir;) find ${RPM_BUILD_ROOT}%{prefix}/info -type f -exec gzip -9nf {} \; fi if [ -d ${RPM_BUILD_ROOT}%{prefix}/man ]; then find ${RPM_BUILD_ROOT}%{prefix}/man -type f -exec gzip -9nf {} \; fi # # Generating the package file lists and store them in file-lists # echo "%defattr (-, root, root)" > file-lists find ${RPM_BUILD_ROOT}%{prefix} -type f | sed -e "s#^${RPM_BUILD_ROOT}##g" >> file-lists %clean (PKGDIR=`pwd`; cd ..; rm -rf ${PKGDIR} ${RPM_BUILD_ROOT}) %files -f file-lists %defattr (-, root, root) %doc AUTHORS %doc ChangeLog %doc INSTALL %doc NEWS %doc README pmidi-1.6.0/pmidi.spec0000644000076400007640000000477507771154137010320 %define ver 1.6.0 %define rel 1 %define prefix /usr Summary: A Command Line MIDI Player Through ALSA Sequencer. Name: pmidi Version: %{ver} Release: %{rel} Copyright: GPL Group: Applications/Multimedia/Audio Source: ftp://download.sourceforge.net/pub/sourceforge/pmidi/pmidi-1.6.0.tar.gz URL: http://pmidi.sourceforge.net BuildRoot: /usr/tmp/pmidi-1.6.0-%{rel}-root Packager: Habibie Docdir: %{prefix}/doc %description pmidi is a command line midi player for ALSA. It can play to any MIDI device that is supported by ALSA. Most external MIDI ports are supported. The sfxload program included with the awesfx is required to load a sound font first to using the internal synthesizer on a SB Live! or SB AWE32/64. 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You can specify on the command line which sequencer port that you wish to use. Use the .B \-l option to get a list of possible sequencer ports for your machine. .SS OPTIONS .TP .BI \-p client:port Specify the ALSA port to send the midi file to. .TP .B \-l List the possible output ports that could be used. .TP .BI \-d delay Delay after song ends. This is used to prevent the last note of a song being chopped off early. The default is two seconds. .SS "Port numbers" You can specify client:port numbers in the ALSA_OUTPUT_PORTS environment variable. You can also supply a comma (or space if quoted correctly) separated list of client:port numbers. This will allow you to play midi files that use more than 16 channels. .SS Examples .IP pmidi song.mid song2.mid .br pmidi -p "64:0, 64:1" song.mid .SH "TROUBLE SHOOTING" Before you start you need to have .SM ALSA installed and configured correctly. This man page cannot cover all general .SM ALSA topics, but here are a few things to check when things do not seem to be working. .SS "Checking ALSA" .IP 1. 4 First check that the correct sequencer modules are loaded for your sound card: .RS .IP - 3 For a card with an external Midi connection, you need to load snd-seq-midi. .IP - For the OPL2/3 internal synthesiser you need to load snd-synth-opl3. .IP - For the AWE32/64 internal synthesiser you need to load snd-synth-emu8000. .IP - For the SB Live! internal synthesiser you need to load snd-synth-emu10k1. .IP - (Let me know of any more) .RE .IP 2a If you have an AWE32/64 or SB Live! you will need to load the sounds with sfxload in the same way as for the standard kernel drivers. .IP 2b If you have the OPL3 FM synthesiser you will have to load the FM instruments with sbiload. See note below. .IP 3. Make sure that the synth in the mixer is turned up and unmuted if appropriate. .SS "Before use" Because you may have more than one sound card and each sound card may have several MIDI connections, you have to tell pmidi which one to use. .P First find out what the possibilities are for your system: .P If you run: .RS pmidi -l .RE it will give you a list of the possible devices that it can play to. On my system I get: .TS tab(;); lb lb lb l l l. Port;Client name;Port name 64:0;Rawmidi 0 - EMU10K1 MPU-401 (U;EMU10K1 MPU - 401 (UART) 65:0;Emu10k1 WaveTable;Emu10k1 Port 0 65:1;Emu10k1 WaveTable;Emu10k1 Port 1 65:2;Emu10k1 WaveTable;Emu10k1 Port 2 65:3;Emu10k1 WaveTable;Emu10k1 Port 3 128:0;FLUID Synth (28152);Synth input port (28152) 129:0;Client-129;TiMidity port 0 129:1;Client-129;TiMidity port 1 .TE .P Any of the port numbers in the first column can be used with pmidi. In the example above the first one is the external Midi port, the next four are the internal wave table synthesiser. Then there are two software synthesisers running, FluidSynth (http://www.fluidsynth.org) and Timididy. .P If you don't see anything listed then check that the correct ALSA modules are loaded as in the section "Checking ALSA". .SH ENVIRONMENT .TP \w'ALSA_OUTPUT_PORTS'u+3n .SB ALSA_OUTPUT_PORTS Port to use in playing midi file. .SH "SEE ALSO" playmidi(1) .br .SH AUTHOR .nf Steve Ratcliffe .fi pmidi-1.6.0/src/0000777000076400007640000000000007771154137007200 5pmidi-1.6.0/src/Makefile.in0000644000076400007640000003210107771154132011151 # Makefile.in generated by automake 1.7.8 from Makefile.am. # @configure_input@ # Copyright 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003 # Free Software Foundation, Inc. # This Makefile.in is free software; the Free Software Foundation # gives unlimited permission to copy and/or distribute it, # with or without modifications, as long as this notice is preserved. # This program is distributed in the hope that it will be useful, # but WITHOUT ANY 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"included GLIB" support # if GLIB pmidi_LDADD = glib.o @ALSA_LDFLAGS@ else pmidi_LDADD = @ALSA_LIBS@ endif pmidi-1.6.0/src/elements.c0000644000076400007640000002051707275234074011077 /* * * File: elements.m - Operation on all elements * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #include "md.h" static void md_container_init(struct containerElement *e); /* * Create and initialise a element element. */ struct element * md_element_new() { struct element * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_ELEMENT; return new; } /* * Create and initialise a container element. */ struct containerElement * md_container_new() { struct containerElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_CONTAINER; return new; } /* * Initialize data structures within the element. This is * only really required when pointers need allocating. * Arguments: * e - Element to init */ static void md_container_init(struct containerElement *e) { e->elements = g_ptr_array_new(); } /* * Create and initialise a root element. * Arguments: * - */ struct rootElement * md_root_new(void) { struct rootElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_ROOT; md_container_init(MD_CONTAINER(new)); return new; } /* * Create and initialise a track element. * Arguments: * - */ struct trackElement * md_track_new(void) { struct trackElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_TRACK; md_container_init(MD_CONTAINER(new)); return new; } /* * Create and initialise a tempomap element. */ struct tempomapElement * md_tempomap_new() { struct tempomapElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_TEMPOMAP; md_container_init(MD_CONTAINER(new)); return new; } /* * Create and initialise a note element. * Arguments: * note - * vel - * length - */ struct noteElement * md_note_new(short note, short vel, int length) { struct noteElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_NOTE; new->note = note; new->vel = vel; new->length = length; new->offvel = 0; return new; } /* * Create and initialise a part element. * Arguments: * - */ struct partElement * md_part_new(void) { struct partElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_PART; md_container_init(MD_CONTAINER(new)); return new; } /* * Create and initialise a control element. * Arguments: * control - * value - */ struct controlElement * md_control_new(short control, short value) { struct controlElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_CONTROL; new->control = control; new->value = value; return new; } /* * Create and initialise a program element. * Arguments: * program - */ struct programElement * md_program_new(int program) { struct programElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_PROGRAM; new->program = program; return new; } /* * Create and initialise a keytouch element. * Arguments: * note - * vel - */ struct keytouchElement * md_keytouch_new(int note, int vel) { struct keytouchElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_KEYTOUCH; new->note = note; new->velocity = vel; return new; } /* * Create and initialise a pressure element. * Arguments: * vel - */ struct pressureElement * md_pressure_new(int vel) { struct pressureElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_PRESSURE; new->velocity = vel; return new; } /* * Create and initialise a pitch element. */ struct pitchElement * md_pitch_new(int val) { struct pitchElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_PITCH; new->pitch = val; return new; } /* * Create and initialise a sysex element. */ struct sysexElement * md_sysex_new(int status, unsigned char *data, int len) { struct sysexElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_SYSEX; new->status = status; new->data = data; new->length = len; return new; } /* * Create and initialise a meta element. */ struct metaElement * md_meta_new() { struct metaElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_META; return new; } /* * Create and initialise a map element. */ struct mapElement * md_map_new() { struct mapElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_MAP; return new; } /* * Create and initialise a keysig element. */ struct keysigElement * md_keysig_new(short key, short minor) { struct keysigElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_KEYSIG; new->key = key; new->minor = minor != 0? 1: 0; return new; } /* * Create and initialise a timesig element. */ struct timesigElement * md_timesig_new(short top, short bottom, short clocks, short n32pq) { struct timesigElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_TIMESIG; new->top = top; new->bottom = bottom; new->clocks = clocks; new->n32pq = n32pq; return new; } /* * Create and initialise a tempo element. */ struct tempoElement * md_tempo_new(int m) { struct tempoElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_TEMPO; new->micro_tempo = m; return new; } /* * Create and initialise a text element. */ struct textElement * md_text_new(int type, char *text) { struct textElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_TEXT; { static char *typenames[] = { "", "text", "copyright", "trackname", "instrument", "lyric", "marker", "cuepoint", }; new->type = type; new->name = typenames[type]; new->text = text; if (text) new->length = strlen(text); else new->length = 0; } return new; } /* * Create and initialise a smpteoffset element. */ struct smpteoffsetElement * md_smpteoffset_new(short hours, short minutes, short seconds, short frames, short subframes) { struct smpteoffsetElement * new; new = g_malloc0(sizeof(*new)); MD_ELEMENT(new)->type = MD_TYPE_SMPTEOFFSET; new->hours = hours; new->minutes = minutes; new->seconds = seconds; new->frames = frames; new->subframes = subframes; return new; } /* * Add an element to a container element. */ void md_add(struct containerElement *c, struct element *e) { g_ptr_array_add(c->elements, e); } /* * Free a complete element tree. */ void md_free(struct element *el) { struct containerElement *c; int i; if (el->type >= MD_CONTAINER_BEGIN) { c = MD_CONTAINER(el); for (i = 0; i < c->elements->len; i++) { struct element *p = g_ptr_array_index(c->elements, i); md_free(p); } g_ptr_array_free(c->elements, 1); } switch (el->type) { case MD_TYPE_TEXT: g_free(MD_TEXT(el)->text); break; case MD_TYPE_SYSEX: g_free(MD_SYSEX(el)->data); break; } g_free(el); } /* * Check that the given element can be casted to the given type. * This is mainly for debugging as mismatches will not happen * in proper use. In particular do not use this routine to check * types unless you want the program to exit if the check fails. * Arguments: * el - Element to be cast * type - type to cast to */ struct element * md_check_cast(struct element *el, int type) { switch (type) { case MD_TYPE_CONTAINER: if (!iscontainer(el)) except(debugError, "Cast to container from %d", el->type); return el; case MD_TYPE_ELEMENT: /* Anything can be cast to an element */ if (el->type > 100 || el->type < 0) break; /* Sanity check */ return el; case MD_TYPE_META: case MD_TYPE_MAP: /* TEMP: this is a parent type */ return el; case MD_TYPE_TRACK: if (el->type == MD_TYPE_TEMPOMAP) return el; break; } if (type == el->type) return el; except(debugError, "Cast from %d to %d not allowed", el->type, type); return NULL;/* not reached */ } pmidi-1.6.0/src/except.c0000644000076400007640000000254507275234074010554 /* * * except.m - error handling code * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #include #include "stdio.h" static struct except format; static struct except io; static struct except debug; struct except *formatError = &format; /* Bad file format */ struct except *ioError = &io; /* I/o error to file */ struct except *debugError = &debug; /* Debugging 'shouldn't happen' errors */ /* * Deal with errors. At present just exit, will allow error * recovery in the future. * Arguments: * e - Exception thrown * message - Message * - Takes variable number of arguments */ void except(struct except *e, char *message, ...) { va_list ap; va_start(ap, message); vfprintf(stderr, message, ap); va_end(ap); putc('\n', stderr); #ifdef DEBUG g_on_error_stack_trace("a.out"); #endif exit(1); } pmidi-1.6.0/src/mdutil.c0000644000076400007640000001060307275234074010554 /* * File: mdutil.m - Utility routines for manipulating MD * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #include "md.h" /* * Given a container c then md_walk iterates through all * elements and calls fn for each one with the following * arguments: * * fn(element, arg, start-end-flags) * * The flag MD_WALK_START is set if this is an element start and * MD_WALK_END is set if this is an element end. Both are set for * empty elements (also can use MD_WALK_EMPTY) * * Arguments: * c - Container to be walked * fn - Callback function to call on each element * arg - Argument passed to fn * flags - Flags eg. include all elements or just current ones. */ void md_walk(struct containerElement *c, walkFunc fn, void *arg, int flags) { struct element *el; GPtrArray *ar; int i; fn(MD_ELEMENT(c), arg, MD_WALK_START); ar = c->elements; for (i = 0; i < ar->len; i++) { el = g_ptr_array_index(ar, i); if (iscontainer(el)) { md_walk(MD_CONTAINER(el), fn, arg, flags); } else { fn(el, arg, MD_WALK_EMPTY); } } fn(MD_ELEMENT(c), arg, MD_WALK_END); } /* * Return true if the element is some kind of container. * Arguments: * el - Element to be tested */ int iscontainer(struct element *el) { if (el->type >= MD_CONTAINER_BEGIN) return 1; else return 0; } /* * Return an object that can be passed to md_sequence_next to * iterate over all the elements in a tree in time sequenced * order. This is what you want if you actually want to play the * song for example. The elements in the container must * already be in sorted order within their own tracks or * subcontainers. * * Arguments: * root - Root to sequence over */ struct sequenceState * md_sequence_init(struct rootElement *root) { struct sequenceState *state; int ntracks; int i; state = g_new(struct sequenceState, 1); ntracks = MD_CONTAINER(root)->elements->len; state->nmerge = ntracks; state->track_ptrs = g_new(struct trackPos, ntracks); state->root = root; state->endtime = 0; /* XXX time ignored for present */ /* Initialise the pointers */ for (i = 0; i < ntracks; i++) { struct containerElement *c; /* c is a track or a tempo element */ c = MD_CONTAINER(MD_CONTAINER(root)->elements->pdata[i]); state->track_ptrs[i].len = c->elements->len; state->track_ptrs[i].count = 0; state->track_ptrs[i].currel = (struct element **)c->elements->pdata; if (MD_ELEMENT(c)->type == MD_TYPE_TRACK) if (MD_TRACK(c)->final_time > state->endtime) state->endtime = MD_TRACK(c)->final_time; } return state; } /* * Return the next element as sorted by time. * Arguments: * seq - Sequence state information */ struct element * md_sequence_next(struct sequenceState *seq) { struct element *el; unsigned long leasttime; struct trackPos *besttp; struct trackPos *tp; int i; if (seq->root) { /* The first time we return the root element */ el = MD_ELEMENT(seq->root); seq->root = NULL; return el; } leasttime = -1; besttp = NULL; for (i = 0; i < seq->nmerge; i++) { tp = &seq->track_ptrs[i]; /* Still some left? */ if (tp->count < tp->len) { el = *tp->currel; if (leasttime == -1 || el->element_time < leasttime) { leasttime = el->element_time; besttp = tp; } } } if (besttp) { el = *besttp->currel; besttp->count++; besttp->currel++; return el; } /* Nothing left */ return NULL; } /* * Finish with a sequence object. Frees all resources. The * object cannot be used any more. * Arguments: * seq - Sequence state information */ void md_sequence_end(struct sequenceState *seq) { if (!seq) return; if (seq->track_ptrs) g_free(seq->track_ptrs); g_free(seq); } /* * Get the final time for the song. * Arguments: * seq - Sequence state information */ unsigned long md_sequence_end_time(struct sequenceState *seq) { return seq->endtime; } pmidi-1.6.0/src/midiread.c0000644000076400007640000003300307337053315011027 /* * * File: midiread.m - Read in a midi file. * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #include #include "midi.h" /* * This structure is used to keep track of the state while * reading in a midi file. */ struct midistate { FILE *fp; /* File being read */ int current_time; /* Current midi time */ int port; /* Midi port number */ int device; /* Midi device number */ int track_count; /* Count of current track */ int chunk_size; /* Size of current chunk */ int chunk_count; /* Count within current chunk */ GPtrArray *notes; /* Currently on notes */ struct tempomapElement *tempo_map; /* The tempo map */ }; static struct rootElement *read_head(struct midistate *msp); static struct trackElement *read_track(struct midistate *msp); static void handle_status(struct midistate *msp, struct trackElement *track, int status); static struct metaElement *handle_meta(struct midistate *msp, int type, unsigned char *data); static int read_int(struct midistate *msp, int n); static unsigned char *read_data(struct midistate *msp, int length); static gint32 read_var(struct midistate *msp); static void put_back(struct midistate *msp, char c); static struct element *save_note(struct midistate *msp, int note, int vel); static void finish_note(struct midistate *msp, int note, int vel); static void skip_chunk(struct midistate *msp); /* * Read in a midi file from the specified open file pointer, fp * and return an mtree structure tree representing the file. * * Arguments: * fp - Input file pointer */ struct rootElement * midi_read(FILE *fp) { struct midistate mState; struct midistate *msp; struct rootElement *root; struct element *el; int i; msp = &mState; msp->fp = fp; msp->tempo_map = md_tempomap_new(); msp->notes = g_ptr_array_new(); msp->port = 0; root = read_head(msp); md_add(MD_CONTAINER(root), NULL); /* Leave room for the tempo map */ for (i = 0; i < root->tracks; i++) { el = MD_ELEMENT(read_track(msp)); /* If format 1 then the first track is really the tempo map */ if (root->format == 1 && i == 0 && MD_CONTAINER(el)->elements->len == 0) { /* It will be added after the loop */ md_free(el); continue; } md_add(MD_CONTAINER(root), el); } g_ptr_array_index(MD_CONTAINER(root)->elements, 0) = msp->tempo_map; msp->tempo_map = NULL; g_ptr_array_free(msp->notes, 1); return root; } /* * Read in a midi file from the specified file name. * * Arguments: * name - File name to read */ struct rootElement * midi_read_file(char *name) { FILE *fp; struct rootElement *root; fp = fopen(name, "rb"); if (fp == NULL) except(ioError, _("Could not open file %s"), name); root = midi_read(fp); fclose(fp); return root; } /* * Read the header information from a midi file * * Arguments: * msp - current midi state */ static struct rootElement * read_head(struct midistate *msp) { guint32 magic; int length; struct rootElement *root; root = md_root_new(); /* The first word just identifies the file as a midi file */ magic = read_int(msp, 4); if (magic != MIDI_HEAD_MAGIC) except(formatError, _("Bad header (%x), probably not a real midi file"), magic); /* The header chunk should be 6 bytes, (perhaps longer in the future) */ length = read_int(msp, 4); if (length < 6) except(formatError, _("Bad header length, probably not a real midi file")); root->format = read_int(msp, 2); root->tracks = read_int(msp, 2); root->time_base = read_int(msp, 2); /* Should skip any extra bytes, (may not be seekable) */ while (length > 6) { length--; (void) getc(msp->fp); } return root; } /* * Read in one track from the file, and return an element tree * describing it. * * Arguments: * msp - Midi state */ static struct trackElement * read_track(struct midistate *msp) { int status, laststatus; int head; int length; int delta_time; struct trackElement *track; int i; laststatus = 0; head = read_int(msp, 4); if (head != MIDI_TRACK_MAGIC) except(formatError, _("Bad track header (%x), probably not a midi file"), head); length = read_int(msp, 4); msp->chunk_size = length; msp->chunk_count = 0; /* nothing read yet */ track = md_track_new(); msp->current_time = 0; while (msp->chunk_count < msp->chunk_size) { delta_time = read_var(msp); msp->current_time += delta_time; status = read_int(msp, 1); if ((status & 0x80) == 0) { /* * This is not a status byte and so running status is being * used. Re-use the previous status and push back this byte. */ put_back(msp, status); status = laststatus; } else { laststatus = status; } handle_status(msp, track, status); } restart: for (i = 0; i < msp->notes->len; i++) { struct noteElement *ns; ns = g_ptr_array_index(msp->notes, i); msp->device = MD_ELEMENT(ns)->device_channel; printf("Left over note, finishing\n"); finish_note(msp, ns->note, 0); goto restart; } msp->track_count++; return track; } /* * Complete the reading of the status byte. The parsed midi * command will be added to the specified track . * * Arguments: * msp - Current midi file status * track - Current track * status - Status byte, ie. current command */ static void handle_status(struct midistate *msp, struct trackElement *track, int status) { int ch; int type; int device; int length; short note, vel, control; int val; unsigned char *data; struct element *el; ch = status & 0x0f; type = status & 0xf0; /* * Do not set the device if the type is 0xf0 as these commands are * not channel specific */ device = 0; if (type != 0xf0) device = (msp->port<<4) + ch; msp->device = device; el = NULL; switch (type) { case MIDI_NOTE_OFF: note = read_int(msp, 1); vel = read_int(msp, 1); finish_note(msp, note, vel); break; case MIDI_NOTE_ON: note = read_int(msp, 1); vel = read_int(msp, 1); if (vel == 0) { /* This is really a note off */ finish_note(msp, note, vel); } else { /* Save the start, so it can be matched with the note off */ el = save_note(msp, note, vel); } break; case MIDI_KEY_AFTERTOUCH: note = read_int(msp, 1); vel = read_int(msp, 1); /* new aftertouchElement */ el = MD_ELEMENT(md_keytouch_new(note, vel)); break; case MIDI_CONTROLER: control = read_int(msp, 1); val = read_int(msp, 1); el = MD_ELEMENT(md_control_new(control, val)); break; case MIDI_PATCH: val = read_int(msp, 1); el = MD_ELEMENT(md_program_new(val)); break; case MIDI_CHANNEL_AFTERTOUCH: val = read_int(msp, 1); el = MD_ELEMENT(md_pressure_new(val)); break; case MIDI_PITCH_WHEEL: val = read_int(msp, 1); val |= read_int(msp, 1) << 7; val -= 0x2000; /* Center it around zero */ el = MD_ELEMENT(md_pitch_new(val)); break; /* Now for all the non-channel specific ones */ case 0xf0: /* Deal with the end of track event first */ if (ch == 0x0f) { type = read_int(msp, 1); if (type == 0x2f) { /* End of track - skip to end of real track */ track->final_time = msp->current_time; skip_chunk(msp); return; } } /* Get the length of the following data */ length = read_var(msp); data = read_data(msp, length); if (ch == 0x0f) { el = (struct element *)handle_meta(msp, type, data); } else { el = (struct element *)md_sysex_new(status, data, length); } break; default: except(formatError, _("Bad status type 0x%x"), type); /*NOTREACHED*/ } if (el != NULL) { el->element_time = msp->current_time; el->device_channel = device; md_add(MD_CONTAINER(track), el); } } /* * Do extra handling of meta events. We want to save time * signature and key for use elsewhere, for example. This * routine create the correct type of class and returns it. * * Arguments: * msp - The midi file state * type - The meta event type * data - The data for the event */ static struct metaElement * handle_meta(struct midistate *msp, int type, unsigned char *data) { struct metaElement *el = NULL; struct mapElement *map = NULL; int micro_tempo; switch (type) { case MIDI_META_SEQUENCE: break; case MIDI_META_TEXT: case MIDI_META_COPYRIGHT: case MIDI_META_TRACKNAME: case MIDI_META_INSTRUMENT: case MIDI_META_LYRIC: case MIDI_META_MARKER: case MIDI_META_CUE: /* Text based events */ el = MD_META(md_text_new(type, (char*)data)); break; case MIDI_META_CHANNEL: break; case MIDI_META_PORT: msp->port = data[0]; g_free(data); break; case MIDI_META_EOT: break; case MIDI_META_TEMPO: micro_tempo = ((data[0]<<16) & 0xff0000) + ((data[1]<<8) & 0xff00) + (data[2] & 0xff); map = MD_MAP(md_tempo_new(micro_tempo)); g_free(data); break; case MIDI_META_SMPTE_OFFSET: el = MD_META(md_smpteoffset_new(data[0], data[1], data[2], data[3], data[4])); break; case MIDI_META_TIME: map = MD_MAP(md_timesig_new(data[0], 1<element_time = msp->current_time; md_add(MD_CONTAINER(msp->tempo_map), MD_ELEMENT(map)); } return el; } /* * Reads an interger from the midi file. The number of bytes to * be read is specified in n . * * Arguments: * msp - Midi file state * n - Number of bytes to read */ static int read_int(struct midistate *msp, int n) { int val; int c; int i; val = 0; for (i = 0; i < n; i++) { val <<= 8; c = getc(msp->fp); msp->chunk_count++; if (c == -1) except(formatError, _("Unexpected end of file")); val |= c; } return val; } /* * Read in a specified amount of data from the file. The return * is allocated data which must be freed by the caller. An extra * null byte is appended for the sake of text events. * Arguments: * msp - Midifile state * length - Length of data to read */ static unsigned char * read_data(struct midistate *msp, int length) { unsigned char *data = g_malloc(length+1); if (length == 0) { data[0] = 0; return data; } if (fread(data, length, 1, msp->fp) == 1) { msp->chunk_count += length; data[length] = '\0'; return data; } else { except(formatError, _("Unexpected end of file")); /*NOTREACHED*/ } return NULL; } /* * Read a variable length integer from the midifile and return * it. Returns an int32 so cannot really deal with more than * four bytes. * * Arguments: * msp - Midi file state */ static gint32 read_var(struct midistate *msp) { int val; int c; val = 0; do { c = getc(msp->fp); msp->chunk_count++; if (c == -1) except(formatError, _("Unexpected end of file")); val <<= 7; val |= (c & 0x7f); } while ((c & 0x80) == 0x80); return val; } /* * Push back a character. Have to also keep track of the * chunk_count. * Arguments: * msp - Midi input state * c - Character to push back */ static void put_back(struct midistate *msp, char c) { ungetc(c, msp->fp); msp->chunk_count--; } /* * Save the initial note-on message. This will later be paired * with a note off message. We have to keep track of channel and * device that the note-on is for so that it can be correctly * matched. * * Arguments: * msp - Midi file state * note - Note number * vel - Velocity */ static struct element * save_note(struct midistate *msp, int note, int vel) { struct noteElement *n; /* Create a new note and set its length to -1 * this will be filled in later, when the note-off arrives */ n = md_note_new(note, vel, -1); /* Save it so that we match up with the note off */ g_ptr_array_add(msp->notes, n); return MD_ELEMENT(n); } /* * Called when a note off is seen. Finds the corresponding note * on and constructs a note element. * * Arguments: * msp - Midi file state * note - Note number * vel - Note velocity */ static void finish_note(struct midistate *msp, int note, int vel) { int i; GPtrArray *notes; struct noteElement *n; int len; notes = msp->notes; n = NULL; for (i = notes->len-1; i >= 0; i--) { n = g_ptr_array_index(notes, i); if (n->note == note && MD_ELEMENT(n)->device_channel == msp->device) { len = msp->current_time - MD_ELEMENT(n)->element_time; n->offvel = vel; n->length = len; if (n->length < 0) { printf("Len neg: msp->time%d, s->time%d, note=%d, s.vel%d\n", msp->current_time, MD_ELEMENT(n)->element_time, note, n->vel); n->length = 0; } g_ptr_array_remove_index_fast(notes, i); break; } } } /* * Skip to the end of the chunk. Note that the input may not be * seekable, so we just read bytes until at the end of the chunk. * * Arguments: * msp - Midi file state */ static void skip_chunk(struct midistate *msp) { while (msp->chunk_count < msp->chunk_size) (void) read_int(msp, 1); } pmidi-1.6.0/src/pmidi.c0000644000076400007640000002534407771141544010370 /* * * Copyright (C) 1999-2003 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #if HAVE_ALSA_ASOUNDLIB_H #include #else #include #endif #include #include "seqlib.h" #include "md.h" #include "midi.h" #include #include #include #include #include #include /* * Play a midi file * pmidi [-p client:port,... ] [-l] [-d delay] file ... * * -p client:port - A alsa client and port number to send midi to * -l - List possible output ports that could be used * -d delay - Delay after song ends (default 2 sec) */ /* Options for the command */ #define HAS_ARG 1 static struct option long_opts[] = { {"port", HAS_ARG, NULL, 'p'}, {"list", 0, NULL, 'l'}, {"delay", HAS_ARG, NULL, 'd'}, {"version", 0, NULL, 'v'}, {0, 0, 0, 0}, }; /* Delay at the end of a song */ static int delay = 2; /* Pointer to root context */ seq_context_t *g_ctxp; /* Number of elements in an array */ #define NELEM(a) ( sizeof(a)/sizeof((a)[0]) ) #define ADDR_PARTS 4 /* Number of part in a port description addr 1:2:3:4 */ #define SEP ", \t" /* Separators for port description */ static seq_context_t *openports(char *portdesc); static void playfile(seq_context_t *ctxp, char *filename); static void showlist(); static void showusage(); static void play(void *arg, struct element *el); static void no_errors_please(const char *file, int line, const char *function, int err, const char *fmt, ...); static void set_signal_handler(seq_context_t *ctxp); static void signal_handler(int sig); static void showversion(void); /* * Play a midi file * pmidi [-p client:port ...] [-l] [-d delay] file ... * * -p, --port=client:port - An ALSA client and port number to use * -l, --list - List possible output ports that could be used * -d, --delay=SECS - Delay after song ends (default 2 sec) * -v, --version - Show version number * Arguments: * argc - arg count * argv - arg vector */ int main(int argc, char **argv) { char opts[NELEM(long_opts) * 2 + 1]; char *portdesc; seq_context_t *ctxp; char *cp; int c; struct option *op; /* Build up the short option string */ cp = opts; for (op = long_opts; op < &long_opts[NELEM(long_opts)]; op++) { *cp++ = op->val; if (op->has_arg) *cp++ = ':'; } /* Libaries shouldn't print errors by default! */ snd_lib_error_set_handler(no_errors_please); portdesc = NULL; /* Deal with the options */ for (;;) { c = getopt_long(argc, argv, opts, long_opts, NULL); if (c == -1) break; switch(c) { case 'p': portdesc = optarg; break; case 'd': delay = atoi(optarg); break; case 'l': showlist(); exit(0); break; case 'v': showversion(); exit(0); case '?': showusage(); exit(1); } } if (portdesc == NULL) { portdesc = getenv("ALSA_OUTPUT_PORTS"); /* Try the old name for the environment variable */ if (portdesc == NULL) portdesc = getenv("ALSA_OUT_PORT"); if (portdesc == NULL) { fprintf(stderr, "No client/port specified.\n" "You must supply one with the -p option or with the\n" "environment variable ALSA_OUTPUT_PORTS\n" ); exit(1); } } ctxp = openports(portdesc); if (ctxp == NULL) return 1; /* Set signal handler */ set_signal_handler(ctxp); /* Now play all the files */ for (; optind < argc; optind++) playfile(ctxp, argv[optind]); seq_free_context(ctxp); /* Restore signal handler */ signal(SIGINT, SIG_DFL); return 0; } /* * Read a list of client/port specifications and return an * array of snd_seq_addr_t that describes them. * * Arguments: * portdesc - */ static seq_context_t * openports(char *portdesc) { char *astr; char *cp; seq_context_t *ctxp; snd_seq_addr_t *addr; snd_seq_addr_t *ap; int a[ADDR_PARTS]; int count, naddr; int i; if (portdesc == NULL) return NULL; ctxp = seq_create_context(); addr = g_new(snd_seq_addr_t, strlen(portdesc)); naddr = 0; ap = addr; for (astr = strtok(portdesc, SEP); astr; astr = strtok(NULL, SEP)) { for (cp = astr, count = 0; cp && *cp; cp++) { if (count < ADDR_PARTS) a[count++] = atoi(cp); cp = strchr(cp, ':'); if (cp == NULL) break; } switch (count) { case 2: ap->client = a[0]; ap->port = a[1]; break; default: printf("Addresses in %d parts not supported yet\n", count); break; } ap++; naddr++; } count = 0; for (i = 0; i < naddr; i++) { int err; err = seq_connect_add(ctxp, addr[i].client, addr[i].port); if (err < 0) { fprintf(stderr, _("Could not connect to port %d:%d\n"), addr[i].client, addr[i].port); } else count++; } g_free(addr); if (count == 0) { seq_free_context(ctxp); return NULL; } return ctxp; } /* * Play a single file. * Arguments: * ctxp - * filename - */ static void playfile(seq_context_t *ctxp, char *filename) { struct rootElement *root; struct sequenceState *seq; struct element *el; unsigned long end; snd_seq_event_t *ep; if (strcmp(filename, "-") == 0) root = midi_read(stdin); else root = midi_read_file(filename); if (!root) return; /* Loop through all the elements in the song and play them */ seq = md_sequence_init(root); while ((el = md_sequence_next(seq)) != NULL) { play(ctxp, el); } /* Get the end time for the tracks and echo an event to * wake us up at that time */ end = md_sequence_end_time(seq); seq_midi_echo(ctxp, end); #ifdef USE_DRAIN snd_seq_drain_output(seq_handle(ctxp)); #else snd_seq_flush_output(seq_handle(ctxp)); #endif /* Wait for all the events to be played */ snd_seq_event_input(seq_handle(ctxp), &ep); /* Wait some extra time to allow for note to decay etc */ sleep(delay); seq_stop_timer(ctxp); md_free(MD_ELEMENT(root)); } /* * Show a list of possible output ports that midi could be sent * to. */ static void showlist() { snd_seq_client_info_t *cinfo; snd_seq_port_info_t *pinfo; int client; int port; int err; snd_seq_t *handle; err = snd_seq_open(&handle, "hw", SND_SEQ_OPEN_DUPLEX, 0); if (err < 0) except(ioError, _("Could not open sequencer %s"), snd_strerror(errno)); #ifdef USE_DRAIN /* * NOTE: This is here so that it will give an error if the wrong * version of alsa is used with USE_DRAIN set. An incompatible change * was made to ALSA on 29 Sep 2000 so that after that date you should * define USE_DRAIN. * * Unfortunately with USE_DRAIN defined with an earlier version of alsa * it will appear to compile fine but simply not work properly. This * unneeded call will give an error in this case. * * IF you see an error about this line, comment out the line beginning * with USE_DRAIN in the make.conf file or compile with: * make USE_DRAIN='' */ snd_seq_drop_output(handle); #endif snd_seq_client_info_alloca(&cinfo); snd_seq_client_info_set_client(cinfo, -1); printf(_(" Port %-30.30s %s\n"), _("Client name"), _("Port name")); while (snd_seq_query_next_client(handle, cinfo) >= 0) { client = snd_seq_client_info_get_client(cinfo); snd_seq_port_info_alloca(&pinfo); snd_seq_port_info_set_client(pinfo, client); snd_seq_port_info_set_port(pinfo, -1); while (snd_seq_query_next_port(handle, pinfo) >= 0) { int cap; cap = (SND_SEQ_PORT_CAP_SUBS_WRITE|SND_SEQ_PORT_CAP_WRITE); if ((snd_seq_port_info_get_capability(pinfo) & cap) == cap) { printf("%3d:%-3d %-30.30s %s\n", snd_seq_port_info_get_client(pinfo), snd_seq_port_info_get_port(pinfo), snd_seq_client_info_get_name(cinfo), snd_seq_port_info_get_name(pinfo) ); } } } } /* * Show a usage message */ static void showusage() { char **cpp; static char *msg[] = { N_("Usage: pmidi [-p client:port ...] [-l] [-d delay] file ..."), "", N_(" -p client:port - A alsa client and port number to send midi to"), N_(" -l - List possible output ports that could be used"), N_(" -d delay - Delay after song ends (default 2 sec)"), }; for (cpp = msg; cpp < msg+NELEM(msg); cpp++) { fprintf(stderr, "%s\n", _(*cpp)); } } static void showversion() { printf("pmidi-%s\n", VERSION); } static void play(void *arg, struct element *el) { seq_context_t *ctxp = arg; snd_seq_event_t ev; seq_midi_event_init(ctxp, &ev, el->element_time, el->device_channel); switch (el->type) { case MD_TYPE_ROOT: seq_init_tempo(ctxp, MD_ROOT(el)->time_base, 120, 1); seq_start_timer(ctxp); break; case MD_TYPE_NOTE: seq_midi_note(ctxp, &ev, el->device_channel, MD_NOTE(el)->note, MD_NOTE(el)->vel, MD_NOTE(el)->length); break; case MD_TYPE_CONTROL: seq_midi_control(ctxp, &ev, el->device_channel, MD_CONTROL(el)->control, MD_CONTROL(el)->value); break; case MD_TYPE_PROGRAM: seq_midi_program(ctxp, &ev, el->device_channel, MD_PROGRAM(el)->program); break; case MD_TYPE_TEMPO: seq_midi_tempo(ctxp, &ev, MD_TEMPO(el)->micro_tempo); break; case MD_TYPE_PITCH: seq_midi_pitchbend(ctxp, &ev, el->device_channel, MD_PITCH(el)->pitch); break; case MD_TYPE_PRESSURE: seq_midi_chanpress(ctxp, &ev, el->device_channel, MD_PRESSURE(el)->velocity); break; case MD_TYPE_KEYTOUCH: seq_midi_keypress(ctxp, &ev, el->device_channel, MD_KEYTOUCH(el)->note, MD_KEYTOUCH(el)->velocity); break; case MD_TYPE_SYSEX: seq_midi_sysex(ctxp, &ev, MD_SYSEX(el)->status, MD_SYSEX(el)->data, MD_SYSEX(el)->length); break; case MD_TYPE_TEXT: case MD_TYPE_KEYSIG: case MD_TYPE_TIMESIG: case MD_TYPE_SMPTEOFFSET: /* Ones that have no sequencer action */ break; default: printf("WARNING: play: not implemented yet %d\n", el->type); break; } } /** * alsa-lib has taken to printing errors on system call failures, even * though such failed calls are part of normal operation. So we have to * install our own handler to shut it up and prevent it messing up the list * output. * * Possibly not needed any more Dec 2003. */ static void no_errors_please(const char *file, int line, const char *function, int err, const char *fmt, ...) { } static void set_signal_handler(seq_context_t *ctxp) { struct sigaction *sap = calloc(1, sizeof(struct sigaction)); g_ctxp = ctxp; sap->sa_handler = signal_handler; sigaction(SIGINT, sap, NULL); } /* signal handler */ static void signal_handler(int sig) { /* Close device */ if (g_ctxp) { seq_free_context(g_ctxp); } exit(1); } pmidi-1.6.0/src/seqlib.c0000644000076400007640000002014707771141544010541 /* * File: seqlib.m - Interface to the alsa sequencer library. * * Copyright (C) 1999-2003 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #include #include #include #include "seqlib.h" #include "seqpriv.h" static void set_channel(snd_seq_event_t *ep, int chan); /* * Create a main client for an application. A queue is * allocated and a client is created. */ seq_context_t * seq_create_context() { seq_context_t *ctxp; int q; ctxp = g_new(seq_context_t, 1); ctxp->main = ctxp; /* This is the main context */ if (snd_seq_open(&ctxp->handle, "hw", SND_SEQ_OPEN_DUPLEX, 0) < 0) except(ioError, "Could not open sequencer: %s", snd_strerror(errno)); q = snd_seq_alloc_queue(ctxp->handle); ctxp->client = snd_seq_client_id(ctxp->handle); ctxp->queue = q; ctxp->destlist = g_array_new(0, 0, sizeof(snd_seq_addr_t)); ctxp->queue = q; ctxp->source.client = ctxp->client; ctxp->source.port = 0; seq_new_port(ctxp); return ctxp; } /* * Create another client context based on the specified * context. The same queue will be used for both clients. A new * client will be created. * Arguments: * ctxp - */ seq_context_t * seq_new_client(seq_context_t *ctxp) { return NULL;/*XXX*/ } /* * Free a context and any associated data and resources. If the * main context is freed then the sequencer is closed. TODO: * link all together so can all be closed at once. */ void seq_free_context(seq_context_t *ctxp) { if (ctxp->main == ctxp) { /* This is the main context */ snd_seq_event_t ev; unsigned long t; snd_seq_drop_output(ctxp->handle); t = 0; seq_midi_event_init(ctxp, &ev, t, 0); seq_midi_control(ctxp, &ev, 0, MIDI_CTL_ALL_SOUNDS_OFF, 0); seq_send_to_all(ctxp, &ev); snd_seq_drain_output(ctxp->handle); snd_seq_free_queue(ctxp->handle, ctxp->queue); snd_seq_close(ctxp->handle); } g_free(ctxp); } /* * Creates a new port on the specified context and returns the * port number. * Arguments: * ctxp - Context to create the port for */ int seq_new_port(seq_context_t *ctxp) { int ret; ret = snd_seq_create_simple_port(ctxp->handle, NULL, SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE | SND_SEQ_PORT_CAP_READ, SND_SEQ_PORT_TYPE_MIDI_GENERIC); if (ret < 0) { printf("Error creating port %s\n", snd_strerror(errno)); return -1; } ctxp->port_count++; ctxp->source.port = ret; return ret;/*XXX*/ } void seq_destroy_port(seq_context_t *ctxp, int port) { } /* * Set up the context so that all subsequent events will be sent * to the specified client and port combination. A * subscription is made to the client/port combination. * Arguments: * ctxp - Context to modify * client - Client to send subsequent events to * port - Port on the client to send events to */ int seq_connect_add(seq_context_t *ctxp, int client, int port) { snd_seq_addr_t addr; int ret; memset(&addr, 0, sizeof(addr)); addr.client = client; addr.port = port; g_array_append_val(ctxp->destlist, addr); ret = snd_seq_connect_to(ctxp->handle, ctxp->source.port, client, port); return ret; } /* * Set the initial time base and tempo. This should only be used * for initialisation when there is nothing playing. To * change the tempo during a song tempo change events are used. * If realtime is false the resolution is in ticks per quarter * note. If true, the the resolution is microseconds. There is * a macro XXX to convert from SMPTE codes. * * Arguments: * ctxp - Application context * resolution - Ticks per quarter note or realtime resolution * tempo - Beats per minute * realtime - True if absolute time base */ int seq_init_tempo(seq_context_t *ctxp, int resolution, int tempo, int realtime) { snd_seq_queue_tempo_t *qtempo; int ret; snd_seq_queue_tempo_alloca(&qtempo); memset(qtempo, 0, snd_seq_queue_tempo_sizeof()); snd_seq_queue_tempo_set_ppq(qtempo, resolution); snd_seq_queue_tempo_set_tempo(qtempo, 60*1000000/tempo); ret = snd_seq_set_queue_tempo(ctxp->handle, ctxp->queue, qtempo); return ret; } /* * Set the context to use the specified queue. All events sent * on this context will now use this queue. * * Arguments: * ctxp - Context to modify * q - The queue number */ void seq_set_queue(seq_context_t *ctxp, int q) { } /* * Send the event to the specified client and port. * * Arguments: * ctxp - Client context * ev - Event to send * client - Client to send the event to * port - Port to send the event to */ int seq_sendto(seq_context_t *ctxp, snd_seq_event_t *ev, int client, int port) { ev->source = ctxp->source; ev->queue = ctxp->queue; ev->dest.client = client; ev->dest.port = port; seq_write(ctxp, ev); return 0; } /* * seq_send_to_all: * Send the event to all the connected devices across all * possible channels. The messages are sent to the blocking * control port and so should not have timestamps in the * future. This function is intended for all-sounds-off type * controls etc. * * Arguments: * ctxp: Client context * ep: Event prototype to be sent */ int seq_send_to_all(seq_context_t *ctxp, snd_seq_event_t *ep) { int dev; int chan; snd_seq_addr_t *addr; for (dev = 0; ; dev++) { addr = seq_dev_addr(ctxp, dev); if (addr == NULL) break; /* No more */ ep->queue = ctxp->queue; ep->dest = *addr; for (chan = 0; chan < 16; chan++) { set_channel(ep, chan); (void) seq_write(ctxp, ep); } } return 0; } /* * seq_dev_addr: * Return the address corresponding to the specified logical * device. * * Arguments: * dev: Device to get the address of. * inout: Input or output device */ snd_seq_addr_t * seq_dev_addr(seq_context_t *ctxp, int dev) { GArray *list; snd_seq_addr_t *addr; list = ctxp->destlist; if (dev >= (int)list->len) return NULL; addr = &g_array_index(list, snd_seq_addr_t, dev); return addr; } /* * Start the timer. (What about timers other than the system * one?) */ void seq_start_timer(seq_context_t *ctxp) { seq_control_timer(ctxp, SND_SEQ_EVENT_START); } /* * Stop the timer. (What about timers other than the system * one?) */ void seq_stop_timer(seq_context_t *ctxp) { seq_control_timer(ctxp, SND_SEQ_EVENT_STOP); } void seq_control_timer(seq_context_t *ctxp, int onoff) { if (onoff == SND_SEQ_EVENT_START) snd_seq_start_queue(ctxp->handle, ctxp->queue, 0); else snd_seq_stop_queue(ctxp->handle, ctxp->queue, 0); #ifdef USE_DRAIN snd_seq_drain_output(ctxp->handle); #else snd_seq_flush_output(ctxp->handle); #endif } /* * Write out the event. This routine blocks until * successfully written. * * Arguments: * ctxp - Application context * ep - Event */ int seq_write(seq_context_t *ctxp, snd_seq_event_t *ep) { int err = 0; err = snd_seq_event_output(ctxp->handle, ep); if (err < 0) return err; return err; } /* * Return the handle to the underlying snd_seq stream. * Arguments: * ctxp - Application context */ void * seq_handle(seq_context_t *ctxp) { return ctxp->handle; } static void set_channel(snd_seq_event_t *ep, int chan) { switch (ep->type) { case SND_SEQ_EVENT_NOTE: case SND_SEQ_EVENT_NOTEON: case SND_SEQ_EVENT_NOTEOFF: ep->data.note.channel = chan; break; case SND_SEQ_EVENT_KEYPRESS: case SND_SEQ_EVENT_PGMCHANGE: case SND_SEQ_EVENT_CHANPRESS: case SND_SEQ_EVENT_PITCHBEND: case SND_SEQ_EVENT_CONTROL14: case SND_SEQ_EVENT_NONREGPARAM: case SND_SEQ_EVENT_REGPARAM: case SND_SEQ_EVENT_CONTROLLER: ep->data.control.channel = chan; break; default: if (snd_seq_ev_is_channel_type(ep)) g_warning("Missed a case in set_channel"); break; } } pmidi-1.6.0/src/seqmidi.c0000644000076400007640000001564407275234074010723 /* * File: seqmidi.m - convert to the sequencer events * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #include "glib.h" #include "elements.h" #include "except.h" #include "intl.h" #include #include "seqlib.h" #include "seqpriv.h" /* * Initialize a midi event from the context. The source and * destination addresses will be set from the information * stored in the context, which depends on the previous * connection calls. In addition the time and channel are set. * This should be called first before any of the following * functions. * * Arguments: * ctxp - Client application * ep - Event to init * time - Midi time * devchan - Midi channel */ void seq_midi_event_init(seq_context_t *ctxp, snd_seq_event_t *ep, unsigned long time, int devchan) { int dev; dev = devchan >> 4; /* * If insufficient output devices have been registered, then we * just scale the device back to fit in the correct range. This * is not necessarily what you want. */ if (dev >= ctxp->ctxndest) dev = dev % ctxp->ctxndest; snd_seq_ev_clear(ep); snd_seq_ev_schedule_tick(ep, ctxp->queue, 0, time); ep->source = ctxp->source; if (ctxp->ctxndest > 0) ep->dest = g_array_index(ctxp->destlist, snd_seq_addr_t, dev); } /* * Send a note event. * Arguments: * ctxp - Client context * ep - Event template * note - Pitch of note * vel - Velocity of note * length - Length of note */ void seq_midi_note(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int vel, int length) { ep->type = SND_SEQ_EVENT_NOTE; ep->data.note.channel = devchan & 0xf; ep->data.note.note = note; ep->data.note.velocity = vel; ep->data.note.duration = length; seq_write(ctxp, ep); } /* * Send a note on event. * Arguments: * ctxp - Client context * ep - Event template * note - Pitch of note * vel - Velocity of note * length - Length of note */ void seq_midi_note_on(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int vel, int length) { ep->type = SND_SEQ_EVENT_NOTEON; ep->data.note.channel = devchan & 0xf; ep->data.note.note = note; ep->data.note.velocity = vel; ep->data.note.duration = length; seq_write(ctxp, ep); } /* * Send a note off event. * Arguments: * ctxp - Client context * ep - Event template * note - Pitch of note * vel - Velocity of note * length - Length of note */ void seq_midi_note_off(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int vel, int length) { ep->type = SND_SEQ_EVENT_NOTEOFF; ep->data.note.channel = devchan & 0xf; ep->data.note.note = note; ep->data.note.velocity = vel; ep->data.note.duration = length; seq_write(ctxp, ep); } /* * Send a key pressure event. * Arguments: * ctxp - Application context * ep - Event template * note - Note to be altered * value - Pressure value */ void seq_midi_keypress(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int value) { ep->type = SND_SEQ_EVENT_KEYPRESS; ep->data.control.channel = devchan & 0xf; ep->data.control.param = note; ep->data.control.value = value; seq_write(ctxp, ep); } /* * Send a control event. * Arguments: * ctxp - Application context * ep - Event template * control - Controller to change * value - Value to set it to */ void seq_midi_control(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int control, int value) { ep->type = SND_SEQ_EVENT_CONTROLLER; ep->data.control.channel = devchan & 0xf; ep->data.control.param = control; ep->data.control.value = value; seq_write(ctxp, ep); } /* * Send a program change event. * Arguments: * ctxp - Application context * ep - Event template * program - Program to set */ void seq_midi_program(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int program) { ep->type = SND_SEQ_EVENT_PGMCHANGE; ep->data.control.channel = devchan & 0xf; ep->data.control.value = program; seq_write(ctxp, ep); } /* * Send a channel pressure event. * Arguments: * ctxp - Application context * ep - Event template * pressure - Pressure value */ void seq_midi_chanpress(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int pressure) { ep->type = SND_SEQ_EVENT_CHANPRESS; ep->data.control.channel = devchan & 0xf; ep->data.control.value = pressure; seq_write(ctxp, ep); } /* * Send a pitchbend message. The bend parameter is centered on * zero, negative values mean a lower pitch. * Arguments: * ctxp - Application context * ep - Event template * bend - Bend value, centered on zero. */ void seq_midi_pitchbend(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int bend) { ep->type = SND_SEQ_EVENT_PITCHBEND; ep->data.control.channel = devchan & 0xf; ep->data.control.value = bend; seq_write(ctxp, ep); } /* * Send a tempo event. The tempo parameter is in microseconds * per beat. * Arguments: * ctxp - Application context * ep - Event template * tempo - New tempo in usec per beat */ void seq_midi_tempo(seq_context_t *ctxp, snd_seq_event_t *ep, int tempo) { ep->type = SND_SEQ_EVENT_TEMPO; ep->data.queue.queue = ctxp->queue; ep->data.queue.param.value = tempo; ep->dest.client = SND_SEQ_CLIENT_SYSTEM; ep->dest.port = SND_SEQ_PORT_SYSTEM_TIMER; seq_write(ctxp, ep); } /* * Send a sysex event. The status byte is to distiguish * continuation sysex messages. * Arguments: * ctxp - Application context * ep - Event template * status - Status byte for sysex * data - Data to send * length - Length of data */ void seq_midi_sysex(seq_context_t *ctxp, snd_seq_event_t *ep, int status, unsigned char *data, int length) { unsigned char *ndata; int nlen; ep->type = SND_SEQ_EVENT_SYSEX; ndata = g_malloc(length + 1); nlen = length +1; ndata[0] = status; memcpy(ndata+1, data, length); snd_seq_ev_set_variable(ep, nlen, ndata); seq_write(ctxp, ep); g_free(ndata); } /* * Send an echo event back to the source client at the specified * time. * * Arguments: * ctxp - Application context * time - Time of event */ void seq_midi_echo(seq_context_t *ctxp, unsigned long time) { snd_seq_event_t ev; seq_midi_event_init(ctxp, &ev, time, 0); /* Loop back */ ev.dest = ctxp->source; seq_write(ctxp, &ev); } pmidi-1.6.0/src/elements.h0000644000076400007640000001554607275234074011112 /* * * File: elements.h * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * * * * */ #define MD_CONTAINER_BEGIN 50 /* Begining of container types */ /* * The basic element type. All elements have a time associated with * them and most use the device and channel field. */ struct element { short type; /* Element type */ guint32 element_time; /* Time for this element */ short device_channel; /* Device/channel for this element */ }; #define MD_ELEMENT(e) \ ((struct element *)md_check_cast((struct element *)(e), MD_TYPE_ELEMENT)) struct containerElement { struct element parent; GPtrArray *elements; /* List of elements */ }; #define MD_CONTAINER(e) \ ((struct containerElement *)md_check_cast((struct element *)(e), MD_TYPE_CONTAINER)) struct rootElement { struct containerElement parent; short format; /* Midi format */ short tracks; /* Number of tracks */ short time_base; /* Time base value */ }; #define MD_ROOT(e) \ ((struct rootElement *)md_check_cast((struct element *)(e), MD_TYPE_ROOT)) struct trackElement { struct containerElement parent; guint32 final_time; }; #define MD_TRACK(e) \ ((struct trackElement *)md_check_cast((struct element *)(e), MD_TYPE_TRACK)) struct tempomapElement { struct containerElement parent; }; #define MD_TEMPOMAP(e) \ ((struct tempomapElement *)md_check_cast((struct element *)(e), MD_TYPE_TEMPOMAP)) struct noteElement { struct element parent; short note; short vel; int length; short offvel; /* Note Off velocity */ }; #define MD_NOTE(e) \ ((struct noteElement *)md_check_cast((struct element *)(e), MD_TYPE_NOTE)) struct partElement { struct containerElement parent; guint32 final_time; }; #define MD_PART(e) \ ((struct partElement *)md_check_cast((struct element *)(e), MD_TYPE_PART)) struct controlElement { struct element parent; short control; /* Controller number */ short value; /* Controller value */ }; #define MD_CONTROL(e) \ ((struct controlElement *)md_check_cast((struct element *)(e), MD_TYPE_CONTROL)) struct programElement { struct element parent; int program; /* Program number */ }; #define MD_PROGRAM(e) \ ((struct programElement *)md_check_cast((struct element *)(e), MD_TYPE_PROGRAM)) struct keytouchElement { struct element parent; int note; int velocity; }; #define MD_KEYTOUCH(e) \ ((struct keytouchElement *)md_check_cast((struct element *)(e), MD_TYPE_KEYTOUCH)) struct pressureElement { struct element parent; int velocity; }; #define MD_PRESSURE(e) \ ((struct pressureElement *)md_check_cast((struct element *)(e), MD_TYPE_PRESSURE)) struct pitchElement { struct element parent; int pitch; }; #define MD_PITCH(e) \ ((struct pitchElement *)md_check_cast((struct element *)(e), MD_TYPE_PITCH)) struct sysexElement { struct element parent; int status; unsigned char *data; int length; }; #define MD_SYSEX(e) \ ((struct sysexElement *)md_check_cast((struct element *)(e), MD_TYPE_SYSEX)) struct metaElement { struct element parent; }; #define MD_META(e) \ ((struct metaElement *)md_check_cast((struct element *)(e), MD_TYPE_META)) struct mapElement { struct metaElement parent; }; #define MD_MAP(e) \ ((struct mapElement *)md_check_cast((struct element *)(e), MD_TYPE_MAP)) struct keysigElement { struct mapElement parent; char key; /* Key signature */ char minor; /* Is this a minor key or not */ }; #define MD_KEYSIG(e) \ ((struct keysigElement *)md_check_cast((struct element *)(e), MD_TYPE_KEYSIG)) struct timesigElement { struct mapElement parent; short top; /* 'top' of timesignature */ short bottom; /* 'bottom' of timesignature */ short clocks; /* Can't remember what this is */ short n32pq; /* Thirtysecond notes per quarter */ }; #define MD_TIMESIG(e) \ ((struct timesigElement *)md_check_cast((struct element *)(e), MD_TYPE_TIMESIG)) struct tempoElement { struct mapElement parent; int micro_tempo; /* The tempo in microsec per quarter note */ }; #define MD_TEMPO(e) \ ((struct tempoElement *)md_check_cast((struct element *)(e), MD_TYPE_TEMPO)) struct textElement { struct element parent; int type; /* Type of text (lyric, copyright etc) */ char *name; /* Type as text */ char *text; /* actual text */ int length; /* length of the text (including a null?) */ }; #define MD_TEXT(e) \ ((struct textElement *)md_check_cast((struct element *)(e), MD_TYPE_TEXT)) struct smpteoffsetElement { struct element parent; short hours; short minutes; short seconds; short frames; short subframes; }; #define MD_SMPTEOFFSET(e) \ ((struct smpteoffsetElement *)md_check_cast((struct element *)(e), MD_TYPE_SMPTEOFFSET)) struct element *md_element_new(); struct containerElement *md_container_new(); struct rootElement *md_root_new(void); struct trackElement *md_track_new(void); struct tempomapElement *md_tempomap_new(); struct noteElement *md_note_new(short note, short vel, int length); struct partElement *md_part_new(void); struct controlElement *md_control_new(short control, short value); struct programElement *md_program_new(int program); struct keytouchElement *md_keytouch_new(int note, int vel); struct pressureElement *md_pressure_new(int vel); struct pitchElement *md_pitch_new(int val); struct sysexElement *md_sysex_new(int status, unsigned char *data, int len); struct metaElement *md_meta_new(); struct mapElement *md_map_new(); struct keysigElement *md_keysig_new(short key, short minor); struct timesigElement *md_timesig_new(short top, short bottom, short clocks, short n32pq); struct tempoElement *md_tempo_new(int m); struct textElement *md_text_new(int type, char *text); struct smpteoffsetElement *md_smpteoffset_new(short hours, short minutes, short seconds, short frames, short subframes); void md_add(struct containerElement *c, struct element *e); void md_free(struct element *el); struct element *md_check_cast(struct element *el, int type); /* Defines for types */ #define MD_TYPE_PART (0 + MD_CONTAINER_BEGIN) #define MD_TYPE_ROOT (1 + MD_CONTAINER_BEGIN) #define MD_TYPE_KEYTOUCH 2 #define MD_TYPE_TEXT 3 #define MD_TYPE_PITCH 4 #define MD_TYPE_PROGRAM 5 #define MD_TYPE_META 6 #define MD_TYPE_PRESSURE 7 #define MD_TYPE_NOTE 8 #define MD_TYPE_ELEMENT 9 #define MD_TYPE_SMPTEOFFSET 10 #define MD_TYPE_TEMPO 11 #define MD_TYPE_TEMPOMAP (12 + MD_CONTAINER_BEGIN) #define MD_TYPE_SYSEX 13 #define MD_TYPE_TRACK (14 + MD_CONTAINER_BEGIN) #define MD_TYPE_KEYSIG 15 #define MD_TYPE_TIMESIG 16 #define MD_TYPE_CONTAINER 17 #define MD_TYPE_MAP 18 #define MD_TYPE_CONTROL 19 pmidi-1.6.0/src/except.h0000644000076400007640000000151707275234074010557 /* * * except.m - XXX * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * */ #include struct except { int set; sigjmp_buf buf; }; extern struct except *formatError; /* Bad file format */ extern struct except *ioError; /* Error reading/writing file */ extern struct except *debugError; /* Debugging 'shouldn't happen' errors */ void except(struct except *e, char *message, ...); pmidi-1.6.0/src/intl.h0000644000076400007640000000130707275234074010232 /* * intl.h - Internationalisation for melys * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. */ #ifdef I18N #include "libintl.h" #define _(_STRING) gettext(_STRING) #define N_(_STRING) _STRING #else #define _(_STRING) _STRING #define N_(_STRING) _STRING #endif pmidi-1.6.0/src/md.h0000644000076400007640000000343307275234074007666 /* * File: md.h * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * * */ /* Defines for md_walk() */ #define MD_WALK_ALL 1 /* Include all elements including deleted, hidden*/ /* Defines for walk callback flags */ #define MD_WALK_START 0x001 /* This is a start element */ #define MD_WALK_END 0x002 /* This is the end of an element */ #define MD_WALK_EMPTY (MD_WALK_START|MD_WALK_END) /* Empty element */ /* Typedef for md_walk callback function */ typedef void (*walkFunc)(struct element *, void *, int); /* * Structure to keep track of the position on each track that * is being merged. */ struct sequenceState { int nmerge; /* Number of tracks in trackPos to merge */ struct trackPos *track_ptrs; /* Position pointers */ struct rootElement *root; /* Root to be returned first */ unsigned long endtime; /* End time */ }; struct trackPos { int len; /* Total length of this container element */ int count; /* Current position count */ struct element **currel; /* Pointer to current position */ }; void md_walk(struct containerElement *c, walkFunc fn, void *arg, int flags); int iscontainer(struct element *el); struct sequenceState *md_sequence_init(struct rootElement *root); struct element *md_sequence_next(struct sequenceState *seq); void md_sequence_end(struct sequenceState *seq); unsigned long md_sequence_end_time(struct sequenceState *seq); pmidi-1.6.0/src/midi.h0000644000076400007640000000321307275234074010204 /* * * File: midi.h * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * */ /* * Midi status byte values. */ #define MIDI_NOTE_OFF 0x80 #define MIDI_NOTE_ON 0x90 #define MIDI_KEY_AFTERTOUCH 0xa0 #define MIDI_CONTROLER 0xb0 #define MIDI_PATCH 0xc0 #define MIDI_CHANNEL_AFTERTOUCH 0xd0 #define MIDI_PITCH_WHEEL 0xe0 #define MIDI_SYSEX 0xf0 #define MIDI_META 0xff /* Meta event defines */ #define MIDI_META_SEQUENCE 0 /* The text type meta events */ #define MIDI_META_TEXT 1 #define MIDI_META_COPYRIGHT 2 #define MIDI_META_TRACKNAME 3 #define MIDI_META_INSTRUMENT 4 #define MIDI_META_LYRIC 5 #define MIDI_META_MARKER 6 #define MIDI_META_CUE 7 /* More meta events */ #define MIDI_META_CHANNEL 0x20 #define MIDI_META_PORT 0x21 #define MIDI_META_EOT 0x2f #define MIDI_META_TEMPO 0x51 #define MIDI_META_SMPTE_OFFSET 0x54 #define MIDI_META_TIME 0x58 #define MIDI_META_KEY 0x59 #define MIDI_META_PROP 0x7f /** The maximum of the midi defined text types */ #define MIDI_MAX_TEXT_TYPE 7 #define MIDI_HEAD_MAGIC 0x4d546864 #define MIDI_TRACK_MAGIC 0x4d54726b struct rootElement *midi_read(FILE *fp); struct rootElement *midi_read_file(char *name); pmidi-1.6.0/src/seqlib.h0000644000076400007640000000562407771141544010551 /* * File: seqlib.h * * Copyright (C) 1999-2003 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * * --------- * This file is a set of interfaces to provide a little * higher level view of the sequencer. It is mainly experimental * to investigate new approaches. If successful they will be proposed * as additions/replacements to the existing seq lib. * * * */ #if HAVE_ALSA_ASOUNDLIB_H #include #else #include #endif typedef struct seq_context seq_context_t; seq_context_t *seq_create_context(); seq_context_t *seq_new_client(seq_context_t *ctxp); void seq_free_context(seq_context_t *cxtp); int seq_new_port(seq_context_t *ctxp); void seq_destroy_port(seq_context_t *cxtp, int port); int seq_connect_add(seq_context_t *ctxp, int client, int port); int seq_init_tempo(seq_context_t *ctxp, int resolution, int tempo, int realtime); void seq_set_queue(seq_context_t *ctxp, int q); int seq_sendto(seq_context_t *ctxp, snd_seq_event_t *ev, int client, int port); snd_seq_addr_t * seq_dev_addr(seq_context_t *ctxp, int dev); void seq_start_timer(seq_context_t *ctxp); void seq_stop_timer(seq_context_t *ctxp); void seq_control_timer(seq_context_t *ctxp, int onoff); int seq_write(seq_context_t *ctxp, snd_seq_event_t *ep); void *seq_handle(seq_context_t *ctxp); void seq_midi_event_init(seq_context_t *ctxp, snd_seq_event_t *ep, unsigned long time, int devchan); void seq_midi_note(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int vel, int length); void seq_midi_note_on(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int vel, int length); void seq_midi_note_off(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int vel, int length); void seq_midi_keypress(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int note, int value); void seq_midi_control(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int control, int value); void seq_midi_program(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int program); void seq_midi_chanpress(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int pressure); void seq_midi_pitchbend(seq_context_t *ctxp, snd_seq_event_t *ep, int devchan, int bend); void seq_midi_tempo(seq_context_t *ctxp, snd_seq_event_t *ep, int tempo); void seq_midi_sysex(seq_context_t *ctxp, snd_seq_event_t *ep, int status, unsigned char *data, int length); void seq_midi_echo(seq_context_t *ctxp, unsigned long time); pmidi-1.6.0/src/seqpriv.h0000644000076400007640000000253207771141544010756 /* * File: seqpriv.h * * Copyright (C) 1999-2003 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * * --------- * This file is a set of interfaces to provide a little * higher level view of the sequencer. It is mainly experimental * to investigate new approaches. If successful they will be proposed * as additions/replacements to the existing seq lib. * * * */ struct seq_context { snd_seq_t *handle; /* The snd_seq handle to /dev/snd/seq */ int client;/* The client associated with this context */ int queue; /* The queue to use for all operations */ snd_seq_addr_t source; /* Source for events */ GArray *destlist; /* Destination list */ #define ctxndest destlist->len #define ctxdest destlist->data char timer_started; /* True if timer is running */ int port_count; /* Ports allocated */ struct seq_context *main; /* Pointer to the main context */ GSList *ctlist; /* Context list if a main context */ }; pmidi-1.6.0/src/glib.c0000644000076400007640000000747207275234074010205 /* * File: glib.c Replacements for glib functions used by pmidi * * Copyright (C) 1999 Steve Ratcliffe * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * Code is derived from garray.c which is copyright: * Copyright (C) 1995-1997 Peter Mattis, Spencer Kimball and Josh MacDonald */ #include "glib.h" /* * There is no need to use this file, linking against glib is preferable * if you have it. */ #define MIN_ARRAY_SIZE 16 static gint g_nearest_pow (gint num) { gint n = 1; while (n < num) n <<= 1; return n; } /* Pointer Array */ typedef struct _GRealPtrArray GRealPtrArray; struct _GRealPtrArray { gpointer *pdata; guint len; guint alloc; }; GPtrArray* g_ptr_array_new(void) { GRealPtrArray *array; array = g_new(GRealPtrArray, 1); array->pdata = NULL; array->len = 0; array->alloc = 0; return (GPtrArray*) array; } void g_ptr_array_free(GPtrArray *array, gboolean free_segment) { if (free_segment) g_free(array->pdata); g_free(array); } static void g_ptr_array_maybe_expand(GRealPtrArray *array, gint len) { guint old_alloc; if ((array->len + len) > array->alloc) { old_alloc = array->alloc; array->alloc = g_nearest_pow(array->len + len); array->alloc = MAX(array->alloc, MIN_ARRAY_SIZE); if (array->pdata) { array->pdata = g_realloc(array->pdata, sizeof(gpointer) * array->alloc); } else { array->pdata = g_new0(gpointer, array->alloc); } memset(array->pdata + old_alloc, 0, array->alloc - old_alloc); } } gpointer g_ptr_array_remove_index_fast(GPtrArray* farray, guint index) { GRealPtrArray* array = (GRealPtrArray*)farray; gpointer result; result = array->pdata[index]; if (index != array->len - 1) array->pdata[index] = array->pdata[array->len - 1]; array->pdata[array->len - 1] = NULL; array->len -= 1; return result; } typedef struct _GRealArray GRealArray; struct _GRealArray { guint8 *data; guint len; guint alloc; guint elt_size; guint zero_terminated : 1; guint clear : 1; }; void g_ptr_array_add(GPtrArray* farray, gpointer data) { GRealPtrArray* array = (GRealPtrArray*) farray; g_ptr_array_maybe_expand(array, 1); array->pdata[array->len++] = data; } static void g_array_maybe_expand (GRealArray *array, gint len) { guint want_alloc = (array->len + len + array->zero_terminated) * array->elt_size; if (want_alloc > array->alloc) { guint old_alloc = array->alloc; array->alloc = g_nearest_pow (want_alloc); array->alloc = MAX(array->alloc, MIN_ARRAY_SIZE); array->data = g_realloc (array->data, array->alloc); if (array->clear || array->zero_terminated) memset (array->data + old_alloc, 0, array->alloc - old_alloc); } } GArray* g_array_new (gboolean zero_terminated, gboolean clear, guint elt_size) { GRealArray *array; array = g_new(GRealArray, 1); array->data = NULL; array->len = 0; array->alloc = 0; array->zero_terminated = (zero_terminated ? 1 : 0); array->clear = (clear ? 1 : 0); array->elt_size = elt_size; return (GArray*) array; } void g_array_free (GArray *array, gboolean free_segment) { if (free_segment) g_free (array->data); g_free(array); } GArray* g_array_append_vals(GArray *farray, gconstpointer data, guint len) { GRealArray *array = (GRealArray*) farray; g_array_maybe_expand (array, len); memcpy (array->data + array->elt_size * array->len, data, array->elt_size * len); array->len += len; return farray; } pmidi-1.6.0/src/glib.h0000644000076400007640000013730007275234074010204 /* GLIB - Library of useful routines for C programming * Copyright (C) 1995-1997 Peter Mattis, Spencer Kimball and Josh MacDonald * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 as * published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * General Public License for more details. * * You should have received a copy of the GNU Library General Public * License along with this library; if not, write to the * Free Software Foundation, Inc., 59 Temple Place - Suite 330, * Boston, MA 02111-1307, USA. */ /* * Modified by the GLib Team and others 1997-1999. See the AUTHORS * file for a list of people on the GLib Team. See the ChangeLog * files for a list of changes. These files are distributed with * GLib at ftp://ftp.gtk.org/pub/gtk/. * Modified: Steve Ratcliffe May 1999. File exists so that pmidi * is not dependant on glib. */ #ifndef __G_LIB_H__ #define __G_LIB_H__ #include #include /* system specific config file glibconfig.h provides definitions for * the extrema of many of the standard types. These are: * * G_MINSHORT, G_MAXSHORT * G_MININT, G_MAXINT * G_MINLONG, G_MAXLONG * G_MINFLOAT, G_MAXFLOAT * G_MINDOUBLE, G_MAXDOUBLE * * It also provides the following typedefs: * * gint8, guint8 * gint16, guint16 * gint32, guint32 * gint64, guint64 * * It defines the G_BYTE_ORDER symbol to one of G_*_ENDIAN (see later in * this file). * * And it provides a way to store and retrieve a `gint' in/from a `gpointer'. * This is useful to pass an integer instead of a pointer to a callback. * * GINT_TO_POINTER(i), GUINT_TO_POINTER(i) * GPOINTER_TO_INT(p), GPOINTER_TO_UINT(p) * * Finally, it provide the following wrappers to STDC functions: * * g_ATEXIT * To register hooks which are executed on exit(). * Usually a wrapper for STDC atexit. * * void *g_memmove(void *dest, const void *src, guint count); * A wrapper for STDC memmove, or an implementation, if memmove doesn't * exist. The prototype looks like the above, give or take a const, * or size_t. */ typedef signed char gint8; typedef unsigned char guint8; typedef signed short gint16; typedef unsigned short guint16; typedef signed int gint32; typedef unsigned int guint32; /* include varargs functions for assertment macros */ #include /* optionally feature DMALLOC memory allocation debugger */ #ifdef USE_DMALLOC #include "dmalloc.h" #endif #ifdef NATIVE_WIN32 /* On native Win32, directory separator is the backslash, and search path * separator is the semicolon. */ #define G_DIR_SEPARATOR '\\' #define G_DIR_SEPARATOR_S "\\" #define G_SEARCHPATH_SEPARATOR ';' #define G_SEARCHPATH_SEPARATOR_S ";" #else /* !NATIVE_WIN32 */ /* Unix */ #define G_DIR_SEPARATOR '/' #define G_DIR_SEPARATOR_S "/" #define G_SEARCHPATH_SEPARATOR ':' #define G_SEARCHPATH_SEPARATOR_S ":" #endif /* !NATIVE_WIN32 */ #ifdef __cplusplus extern "C" { #endif /* __cplusplus */ /* Provide definitions for some commonly used macros. * Some of them are only provided if they haven't already * been defined. It is assumed that if they are already * defined then the current definition is correct. */ #ifndef NULL #define NULL ((void*) 0) #endif #ifndef FALSE #define FALSE (0) #endif #ifndef TRUE #define TRUE (!FALSE) #endif #undef MAX #define MAX(a, b) (((a) > (b)) ? (a) : (b)) #undef MIN #define MIN(a, b) (((a) < (b)) ? (a) : (b)) #undef ABS #define ABS(a) (((a) < 0) ? -(a) : (a)) #undef CLAMP #define CLAMP(x, low, high) (((x) > (high)) ? (high) : (((x) < (low)) ? (low) : (x))) /* Define G_VA_COPY() to do the right thing for copying va_list variables. * glibconfig.h may have already defined G_VA_COPY as va_copy or __va_copy. */ #if !defined (G_VA_COPY) # if defined (__GNUC__) && defined (__PPC__) && (defined (_CALL_SYSV) || defined (_WIN32)) # define G_VA_COPY(ap1, ap2) (*(ap1) = *(ap2)) # elif defined (G_VA_COPY_AS_ARRAY) # define G_VA_COPY(ap1, ap2) g_memmove ((ap1), (ap2), sizeof (va_list)) # else /* va_list is a pointer */ # define G_VA_COPY(ap1, ap2) ((ap1) = (ap2)) # endif /* va_list is a pointer */ #endif /* !G_VA_COPY */ /* Provide convenience macros for handling structure * fields through their offsets. */ #define G_STRUCT_OFFSET(struct_type, member) \ ((gulong) ((gchar*) &((struct_type*) 0)->member)) #define G_STRUCT_MEMBER_P(struct_p, struct_offset) \ ((gpointer) ((gchar*) (struct_p) + (gulong) (struct_offset))) #define G_STRUCT_MEMBER(member_type, struct_p, struct_offset) \ (*(member_type*) G_STRUCT_MEMBER_P ((struct_p), (struct_offset))) /* inlining hassle. for compilers that don't allow the `inline' keyword, * mostly because of strict ANSI C compliance or dumbness, we try to fall * back to either `__inline__' or `__inline'. * we define G_CAN_INLINE, if the compiler seems to be actually * *capable* to do function inlining, in which case inline function bodys * do make sense. we also define G_INLINE_FUNC to properly export the * function prototypes if no inlining can be performed. * we special case most of the stuff, so inline functions can have a normal * implementation by defining G_INLINE_FUNC to extern and G_CAN_INLINE to 1. */ #ifndef G_INLINE_FUNC # define G_CAN_INLINE 1 #endif #ifdef G_HAVE_INLINE # if defined (__GNUC__) && defined (__STRICT_ANSI__) # undef inline # define inline __inline__ # endif #else /* !G_HAVE_INLINE */ # undef inline # if defined (G_HAVE___INLINE__) # define inline __inline__ # else /* !inline && !__inline__ */ # if defined (G_HAVE___INLINE) # define inline __inline # else /* !inline && !__inline__ && !__inline */ # define inline /* don't inline, then */ # ifndef G_INLINE_FUNC # undef G_CAN_INLINE # endif # endif # endif #endif #ifndef G_INLINE_FUNC # ifdef __GNUC__ # ifdef __OPTIMIZE__ # define G_INLINE_FUNC extern inline # else # undef G_CAN_INLINE # define G_INLINE_FUNC extern # endif # else /* !__GNUC__ */ # ifdef G_CAN_INLINE # define G_INLINE_FUNC static inline # else # define G_INLINE_FUNC extern # endif # endif /* !__GNUC__ */ #endif /* !G_INLINE_FUNC */ /* Provide simple macro statement wrappers (adapted from Perl): * G_STMT_START { statements; } G_STMT_END; * can be used as a single statement, as in * if (x) G_STMT_START { ... } G_STMT_END; else ... * * For gcc we will wrap the statements within `({' and `})' braces. * For SunOS they will be wrapped within `if (1)' and `else (void) 0', * and otherwise within `do' and `while (0)'. */ #if !(defined (G_STMT_START) && defined (G_STMT_END)) # if defined (__GNUC__) && !defined (__STRICT_ANSI__) && !defined (__cplusplus) # define G_STMT_START (void)( # define G_STMT_END ) # else # if (defined (sun) || defined (__sun__)) # define G_STMT_START if (1) # define G_STMT_END else (void)0 # else # define G_STMT_START do # define G_STMT_END while (0) # endif # endif #endif /* Provide macros to feature the GCC function attribute. */ #if __GNUC__ > 2 || (__GNUC__ == 2 && __GNUC_MINOR__ > 4) #define G_GNUC_PRINTF( format_idx, arg_idx ) \ __attribute__((format (printf, format_idx, arg_idx))) #define G_GNUC_SCANF( format_idx, arg_idx ) \ __attribute__((format (scanf, format_idx, arg_idx))) #define G_GNUC_FORMAT( arg_idx ) \ __attribute__((format_arg (arg_idx))) #define G_GNUC_NORETURN \ __attribute__((noreturn)) #define G_GNUC_CONST \ __attribute__((const)) #define G_GNUC_UNUSED \ __attribute__((unused)) #else /* !__GNUC__ */ #define G_GNUC_PRINTF( format_idx, arg_idx ) #define G_GNUC_SCANF( format_idx, arg_idx ) #define G_GNUC_FORMAT( arg_idx ) #define G_GNUC_NORETURN #define G_GNUC_CONST #define G_GNUC_UNUSED #endif /* !__GNUC__ */ /* Wrap the gcc __PRETTY_FUNCTION__ and __FUNCTION__ variables with * macros, so we can refer to them as strings unconditionally. */ #ifdef __GNUC__ #define G_GNUC_FUNCTION __FUNCTION__ #define G_GNUC_PRETTY_FUNCTION __PRETTY_FUNCTION__ #else /* !__GNUC__ */ #define G_GNUC_FUNCTION "" #define G_GNUC_PRETTY_FUNCTION "" #endif /* !__GNUC__ */ /* we try to provide a usefull equivalent for ATEXIT if it is * not defined, but use is actually abandoned. people should * use g_atexit() instead. */ #ifndef ATEXIT # define ATEXIT(proc) g_ATEXIT(proc) #else # define G_NATIVE_ATEXIT #endif /* ATEXIT */ /* Hacker macro to place breakpoints for elected machines. * Actual use is strongly deprecated of course ;) */ #if defined (__i386__) && defined (__GNUC__) && __GNUC__ >= 2 #define G_BREAKPOINT() G_STMT_START{ __asm__ __volatile__ ("int $03"); }G_STMT_END #elif defined (__alpha__) && defined (__GNUC__) && __GNUC__ >= 2 #define G_BREAKPOINT() G_STMT_START{ __asm__ __volatile__ ("bpt"); }G_STMT_END #else /* !__i386__ && !__alpha__ */ #define G_BREAKPOINT() #endif /* __i386__ */ /* Provide macros for easily allocating memory. The macros * will cast the allocated memory to the specified type * in order to avoid compiler warnings. (Makes the code neater). */ # define g_new(type, count) \ ((type *) malloc ((unsigned) sizeof (type) * (count))) # define g_new0(type, count) \ ((type *) calloc ((unsigned) sizeof (type) * (count), 1)) # define g_renew(type, mem, count) \ ((type *) realloc (mem, (unsigned) sizeof (type) * (count))) #define g_mem_chunk_create(type, pre_alloc, alloc_type) ( \ g_mem_chunk_new (#type " mem chunks (" #pre_alloc ")", \ sizeof (type), \ sizeof (type) * (pre_alloc), \ (alloc_type)) \ ) #define g_chunk_new(type, chunk) ( \ (type *) g_mem_chunk_alloc (chunk) \ ) #define g_chunk_new0(type, chunk) ( \ (type *) g_mem_chunk_alloc0 (chunk) \ ) #define g_chunk_free(mem, mem_chunk) G_STMT_START { \ g_mem_chunk_free ((mem_chunk), (mem)); \ } G_STMT_END #define g_string(x) #x /* Provide macros for error handling. The "assert" macros will * exit on failure. The "return" macros will exit the current * function. Two different definitions are given for the macros * if G_DISABLE_ASSERT is not defined, in order to support gcc's * __PRETTY_FUNCTION__ capability. */ #ifdef G_DISABLE_ASSERT #define g_assert(expr) #define g_assert_not_reached() #else /* !G_DISABLE_ASSERT */ #ifdef __GNUC__ #define g_assert(expr) G_STMT_START{ \ if (!(expr)) \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_ERROR, \ "file %s: line %d (%s): assertion failed: (%s)", \ __FILE__, \ __LINE__, \ __PRETTY_FUNCTION__, \ #expr); }G_STMT_END #define g_assert_not_reached() G_STMT_START{ \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_ERROR, \ "file %s: line %d (%s): should not be reached", \ __FILE__, \ __LINE__, \ __PRETTY_FUNCTION__); }G_STMT_END #else /* !__GNUC__ */ #define g_assert(expr) G_STMT_START{ \ if (!(expr)) \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_ERROR, \ "file %s: line %d: assertion failed: (%s)", \ __FILE__, \ __LINE__, \ #expr); }G_STMT_END #define g_assert_not_reached() G_STMT_START{ \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_ERROR, \ "file %s: line %d: should not be reached", \ __FILE__, \ __LINE__); }G_STMT_END #endif /* __GNUC__ */ #endif /* !G_DISABLE_ASSERT */ #ifdef G_DISABLE_CHECKS #define g_return_if_fail(expr) #define g_return_val_if_fail(expr,val) #else /* !G_DISABLE_CHECKS */ #ifdef __GNUC__ #define g_return_if_fail(expr) G_STMT_START{ \ if (!(expr)) \ { \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_CRITICAL, \ "file %s: line %d (%s): assertion `%s' failed.", \ __FILE__, \ __LINE__, \ __PRETTY_FUNCTION__, \ #expr); \ return; \ }; }G_STMT_END #define g_return_val_if_fail(expr,val) G_STMT_START{ \ if (!(expr)) \ { \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_CRITICAL, \ "file %s: line %d (%s): assertion `%s' failed.", \ __FILE__, \ __LINE__, \ __PRETTY_FUNCTION__, \ #expr); \ return val; \ }; }G_STMT_END #else /* !__GNUC__ */ #define g_return_if_fail(expr) G_STMT_START{ \ if (!(expr)) \ { \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_CRITICAL, \ "file %s: line %d: assertion `%s' failed.", \ __FILE__, \ __LINE__, \ #expr); \ return; \ }; }G_STMT_END #define g_return_val_if_fail(expr, val) G_STMT_START{ \ if (!(expr)) \ { \ g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_CRITICAL, \ "file %s: line %d: assertion `%s' failed.", \ __FILE__, \ __LINE__, \ #expr); \ return val; \ }; }G_STMT_END #endif /* !__GNUC__ */ #endif /* !G_DISABLE_CHECKS */ /* Provide type definitions for commonly used types. * These are useful because a "gint8" can be adjusted * to be 1 byte (8 bits) on all platforms. Similarly and * more importantly, "gint32" can be adjusted to be * 4 bytes (32 bits) on all platforms. */ typedef char gchar; typedef short gshort; typedef long glong; typedef int gint; typedef gint gboolean; typedef unsigned char guchar; typedef unsigned short gushort; typedef unsigned long gulong; typedef unsigned int guint; typedef float gfloat; typedef double gdouble; /* HAVE_LONG_DOUBLE doesn't work correctly on all platforms. * Since gldouble isn't used anywhere, just disable it for now */ #if 0 #ifdef HAVE_LONG_DOUBLE typedef long double gldouble; #else /* HAVE_LONG_DOUBLE */ typedef double gldouble; #endif /* HAVE_LONG_DOUBLE */ #endif /* 0 */ typedef void* gpointer; typedef const void *gconstpointer; typedef gint32 gssize; typedef guint32 gsize; typedef guint32 GQuark; typedef gint32 GTime; /* Portable endian checks and conversions * * glibconfig.h defines G_BYTE_ORDER which expands to one of * the below macros. */ #define G_LITTLE_ENDIAN 1234 #define G_BIG_ENDIAN 4321 #define G_PDP_ENDIAN 3412 /* unused, need specific PDP check */ /* Basic bit swapping functions */ #define GUINT16_SWAP_LE_BE_CONSTANT(val) ((guint16) ( \ (((guint16) (val) & (guint16) 0x00ffU) << 8) | \ (((guint16) (val) & (guint16) 0xff00U) >> 8))) #define GUINT32_SWAP_LE_BE_CONSTANT(val) ((guint32) ( \ (((guint32) (val) & (guint32) 0x000000ffU) << 24) | \ (((guint32) (val) & (guint32) 0x0000ff00U) << 8) | \ (((guint32) (val) & (guint32) 0x00ff0000U) >> 8) | \ (((guint32) (val) & (guint32) 0xff000000U) >> 24))) /* Intel specific stuff for speed */ #if defined (__i386__) && defined (__GNUC__) && __GNUC__ >= 2 # define GUINT16_SWAP_LE_BE_X86(val) \ (__extension__ \ ({ register guint16 __v; \ if (__builtin_constant_p (val)) \ __v = GUINT16_SWAP_LE_BE_CONSTANT (val); \ else \ __asm__ __const__ ("rorw $8, %w0" \ : "=r" (__v) \ : "0" ((guint16) (val))); \ __v; })) # define GUINT16_SWAP_LE_BE(val) (GUINT16_SWAP_LE_BE_X86 (val)) # if !defined(__i486__) && !defined(__i586__) \ && !defined(__pentium__) && !defined(__i686__) && !defined(__pentiumpro__) # define GUINT32_SWAP_LE_BE_X86(val) \ (__extension__ \ ({ register guint32 __v; \ if (__builtin_constant_p (val)) \ __v = GUINT32_SWAP_LE_BE_CONSTANT (val); \ else \ __asm__ __const__ ("rorw $8, %w0\n\t" \ "rorl $16, %0\n\t" \ "rorw $8, %w0" \ : "=r" (__v) \ : "0" ((guint32) (val))); \ __v; })) # else /* 486 and higher has bswap */ # define GUINT32_SWAP_LE_BE_X86(val) \ (__extension__ \ ({ register guint32 __v; \ if (__builtin_constant_p (val)) \ __v = GUINT32_SWAP_LE_BE_CONSTANT (val); \ else \ __asm__ __const__ ("bswap %0" \ : "=r" (__v) \ : "0" ((guint32) (val))); \ __v; })) # endif /* processor specific 32-bit stuff */ # define GUINT32_SWAP_LE_BE(val) (GUINT32_SWAP_LE_BE_X86 (val)) #else /* !__i386__ */ # define GUINT16_SWAP_LE_BE(val) (GUINT16_SWAP_LE_BE_CONSTANT (val)) # define GUINT32_SWAP_LE_BE(val) (GUINT32_SWAP_LE_BE_CONSTANT (val)) #endif /* __i386__ */ #ifdef G_HAVE_GINT64 # define GUINT64_SWAP_LE_BE_CONSTANT(val) ((guint64) ( \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x00000000000000ffU)) << 56) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x000000000000ff00U)) << 40) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x0000000000ff0000U)) << 24) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x00000000ff000000U)) << 8) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x000000ff00000000U)) >> 8) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x0000ff0000000000U)) >> 24) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0x00ff000000000000U)) >> 40) | \ (((guint64) (val) & \ (guint64) G_GINT64_CONSTANT(0xff00000000000000U)) >> 56))) # if defined (__i386__) && defined (__GNUC__) && __GNUC__ >= 2 # define GUINT64_SWAP_LE_BE_X86(val) \ (__extension__ \ ({ union { guint64 __ll; \ guint32 __l[2]; } __r; \ if (__builtin_constant_p (val)) \ __r.__ll = GUINT64_SWAP_LE_BE_CONSTANT (val); \ else \ { \ union { guint64 __ll; \ guint32 __l[2]; } __w; \ __w.__ll = ((guint64) val); \ __r.__l[0] = GUINT32_SWAP_LE_BE (__w.__l[1]); \ __r.__l[1] = GUINT32_SWAP_LE_BE (__w.__l[0]); \ } \ __r.__ll; })) # define GUINT64_SWAP_LE_BE(val) (GUINT64_SWAP_LE_BE_X86 (val)) # else /* !__i386__ */ # define GUINT64_SWAP_LE_BE(val) (GUINT64_SWAP_LE_BE_CONSTANT(val)) # endif #endif #define GUINT16_SWAP_LE_PDP(val) ((guint16) (val)) #define GUINT16_SWAP_BE_PDP(val) (GUINT16_SWAP_LE_BE (val)) #define GUINT32_SWAP_LE_PDP(val) ((guint32) ( \ (((guint32) (val) & (guint32) 0x0000ffffU) << 16) | \ (((guint32) (val) & (guint32) 0xffff0000U) >> 16))) #define GUINT32_SWAP_BE_PDP(val) ((guint32) ( \ (((guint32) (val) & (guint32) 0x00ff00ffU) << 8) | \ (((guint32) (val) & (guint32) 0xff00ff00U) >> 8))) /* The G*_TO_?E() macros are defined in glibconfig.h. * The transformation is symmetric, so the FROM just maps to the TO. */ #define GINT16_FROM_LE(val) (GINT16_TO_LE (val)) #define GUINT16_FROM_LE(val) (GUINT16_TO_LE (val)) #define GINT16_FROM_BE(val) (GINT16_TO_BE (val)) #define GUINT16_FROM_BE(val) (GUINT16_TO_BE (val)) #define GINT32_FROM_LE(val) (GINT32_TO_LE (val)) #define GUINT32_FROM_LE(val) (GUINT32_TO_LE (val)) #define GINT32_FROM_BE(val) (GINT32_TO_BE (val)) #define GUINT32_FROM_BE(val) (GUINT32_TO_BE (val)) #ifdef G_HAVE_GINT64 #define GINT64_FROM_LE(val) (GINT64_TO_LE (val)) #define GUINT64_FROM_LE(val) (GUINT64_TO_LE (val)) #define GINT64_FROM_BE(val) (GINT64_TO_BE (val)) #define GUINT64_FROM_BE(val) (GUINT64_TO_BE (val)) #endif #define GLONG_FROM_LE(val) (GLONG_TO_LE (val)) #define GULONG_FROM_LE(val) (GULONG_TO_LE (val)) #define GLONG_FROM_BE(val) (GLONG_TO_BE (val)) #define GULONG_FROM_BE(val) (GULONG_TO_BE (val)) #define GINT_FROM_LE(val) (GINT_TO_LE (val)) #define GUINT_FROM_LE(val) (GUINT_TO_LE (val)) #define GINT_FROM_BE(val) (GINT_TO_BE (val)) #define GUINT_FROM_BE(val) (GUINT_TO_BE (val)) /* Portable versions of host-network order stuff */ #define g_ntohl(val) (GUINT32_FROM_BE (val)) #define g_ntohs(val) (GUINT16_FROM_BE (val)) #define g_htonl(val) (GUINT32_TO_BE (val)) #define g_htons(val) (GUINT16_TO_BE (val)) /* Glib version. * we prefix variable declarations so they can * properly get exported in windows dlls. */ #ifdef NATIVE_WIN32 # ifdef GLIB_COMPILATION # define GUTILS_C_VAR __declspec(dllexport) # else /* !GLIB_COMPILATION */ # define GUTILS_C_VAR extern __declspec(dllimport) # endif /* !GLIB_COMPILATION */ #else /* !NATIVE_WIN32 */ # define GUTILS_C_VAR extern #endif /* !NATIVE_WIN32 */ GUTILS_C_VAR const guint glib_major_version; GUTILS_C_VAR const guint glib_minor_version; GUTILS_C_VAR const guint glib_micro_version; GUTILS_C_VAR const guint glib_interface_age; GUTILS_C_VAR const guint glib_binary_age; #define GLIB_CHECK_VERSION(major,minor,micro) \ (GLIB_MAJOR_VERSION > (major) || \ (GLIB_MAJOR_VERSION == (major) && GLIB_MINOR_VERSION > (minor)) || \ (GLIB_MAJOR_VERSION == (major) && GLIB_MINOR_VERSION == (minor) && \ GLIB_MICRO_VERSION >= (micro))) /* Forward declarations of glib types. */ typedef struct _GAllocator GAllocator; typedef struct _GArray GArray; typedef struct _GByteArray GByteArray; typedef struct _GCache GCache; typedef struct _GCompletion GCompletion; typedef struct _GData GData; typedef struct _GDebugKey GDebugKey; typedef struct _GHashTable GHashTable; typedef struct _GHook GHook; typedef struct _GHookList GHookList; typedef struct _GList GList; typedef struct _GMemChunk GMemChunk; typedef struct _GNode GNode; typedef struct _GPtrArray GPtrArray; typedef struct _GRelation GRelation; typedef struct _GScanner GScanner; typedef struct _GScannerConfig GScannerConfig; typedef struct _GSList GSList; typedef struct _GString GString; typedef struct _GStringChunk GStringChunk; typedef struct _GTimer GTimer; typedef struct _GTree GTree; typedef struct _GTuples GTuples; typedef union _GTokenValue GTokenValue; typedef struct _GIOChannel GIOChannel; typedef enum { G_TRAVERSE_LEAFS = 1 << 0, G_TRAVERSE_NON_LEAFS = 1 << 1, G_TRAVERSE_ALL = G_TRAVERSE_LEAFS | G_TRAVERSE_NON_LEAFS, G_TRAVERSE_MASK = 0x03 } GTraverseFlags; typedef enum { G_IN_ORDER, G_PRE_ORDER, G_POST_ORDER, G_LEVEL_ORDER } GTraverseType; /* Log level shift offset for user defined * log levels (0-7 are used by GLib). */ #define G_LOG_LEVEL_USER_SHIFT (8) /* Glib log levels and flags. */ typedef enum { /* log flags */ G_LOG_FLAG_RECURSION = 1 << 0, G_LOG_FLAG_FATAL = 1 << 1, /* GLib log levels */ G_LOG_LEVEL_ERROR = 1 << 2, /* always fatal */ G_LOG_LEVEL_CRITICAL = 1 << 3, G_LOG_LEVEL_WARNING = 1 << 4, G_LOG_LEVEL_MESSAGE = 1 << 5, G_LOG_LEVEL_INFO = 1 << 6, G_LOG_LEVEL_DEBUG = 1 << 7, G_LOG_LEVEL_MASK = ~(G_LOG_FLAG_RECURSION | G_LOG_FLAG_FATAL) } GLogLevelFlags; /* GLib log levels that are considered fatal by default */ #define G_LOG_FATAL_MASK (G_LOG_FLAG_RECURSION | G_LOG_LEVEL_ERROR) typedef gpointer (*GCacheNewFunc) (gpointer key); typedef gpointer (*GCacheDupFunc) (gpointer value); typedef void (*GCacheDestroyFunc) (gpointer value); typedef gint (*GCompareFunc) (gconstpointer a, gconstpointer b); typedef gchar* (*GCompletionFunc) (gpointer); typedef void (*GDestroyNotify) (gpointer data); typedef void (*GDataForeachFunc) (GQuark key_id, gpointer data, gpointer user_data); typedef void (*GFunc) (gpointer data, gpointer user_data); typedef guint (*GHashFunc) (gconstpointer key); typedef void (*GFreeFunc) (gpointer data); typedef void (*GHFunc) (gpointer key, gpointer value, gpointer user_data); typedef gboolean (*GHRFunc) (gpointer key, gpointer value, gpointer user_data); typedef gint (*GHookCompareFunc) (GHook *new_hook, GHook *sibling); typedef gboolean (*GHookFindFunc) (GHook *hook, gpointer data); typedef void (*GHookMarshaller) (GHook *hook, gpointer data); typedef gboolean (*GHookCheckMarshaller) (GHook *hook, gpointer data); typedef void (*GHookFunc) (gpointer data); typedef gboolean (*GHookCheckFunc) (gpointer data); typedef void (*GHookFreeFunc) (GHookList *hook_list, GHook *hook); typedef void (*GLogFunc) (const gchar *log_domain, GLogLevelFlags log_level, const gchar *message, gpointer user_data); typedef gboolean (*GNodeTraverseFunc) (GNode *node, gpointer data); typedef void (*GNodeForeachFunc) (GNode *node, gpointer data); typedef gint (*GSearchFunc) (gpointer key, gpointer data); typedef void (*GScannerMsgFunc) (GScanner *scanner, gchar *message, gint error); typedef gint (*GTraverseFunc) (gpointer key, gpointer value, gpointer data); typedef void (*GVoidFunc) (void); struct _GList { gpointer data; GList *next; GList *prev; }; struct _GSList { gpointer data; GSList *next; }; struct _GString { gchar *str; gint len; }; struct _GArray { gchar *data; guint len; }; struct _GByteArray { guint8 *data; guint len; }; struct _GPtrArray { gpointer *pdata; guint len; }; struct _GTuples { guint len; }; struct _GDebugKey { gchar *key; guint value; }; /* Doubly linked lists */ void g_list_push_allocator (GAllocator *allocator); void g_list_pop_allocator (void); GList* g_list_alloc (void); void g_list_free (GList *list); void g_list_free_1 (GList *list); GList* g_list_append (GList *list, gpointer data); GList* g_list_prepend (GList *list, gpointer data); GList* g_list_insert (GList *list, gpointer data, gint position); GList* g_list_insert_sorted (GList *list, gpointer data, GCompareFunc func); GList* g_list_concat (GList *list1, GList *list2); GList* g_list_remove (GList *list, gpointer data); GList* g_list_remove_link (GList *list, GList *llink); GList* g_list_reverse (GList *list); GList* g_list_copy (GList *list); GList* g_list_nth (GList *list, guint n); GList* g_list_find (GList *list, gpointer data); GList* g_list_find_custom (GList *list, gpointer data, GCompareFunc func); gint g_list_position (GList *list, GList *llink); gint g_list_index (GList *list, gpointer data); GList* g_list_last (GList *list); GList* g_list_first (GList *list); guint g_list_length (GList *list); void g_list_foreach (GList *list, GFunc func, gpointer user_data); GList* g_list_sort (GList *list, GCompareFunc compare_func); gpointer g_list_nth_data (GList *list, guint n); #define g_list_previous(list) ((list) ? (((GList *)(list))->prev) : NULL) #define g_list_next(list) ((list) ? (((GList *)(list))->next) : NULL) /* Singly linked lists */ void g_slist_push_allocator (GAllocator *allocator); void g_slist_pop_allocator (void); GSList* g_slist_alloc (void); void g_slist_free (GSList *list); void g_slist_free_1 (GSList *list); GSList* g_slist_append (GSList *list, gpointer data); GSList* g_slist_prepend (GSList *list, gpointer data); GSList* g_slist_insert (GSList *list, gpointer data, gint position); GSList* g_slist_insert_sorted (GSList *list, gpointer data, GCompareFunc func); GSList* g_slist_concat (GSList *list1, GSList *list2); GSList* g_slist_remove (GSList *list, gpointer data); GSList* g_slist_remove_link (GSList *list, GSList *llink); GSList* g_slist_reverse (GSList *list); GSList* g_slist_copy (GSList *list); GSList* g_slist_nth (GSList *list, guint n); GSList* g_slist_find (GSList *list, gpointer data); GSList* g_slist_find_custom (GSList *list, gpointer data, GCompareFunc func); gint g_slist_position (GSList *list, GSList *llink); gint g_slist_index (GSList *list, gpointer data); GSList* g_slist_last (GSList *list); guint g_slist_length (GSList *list); void g_slist_foreach (GSList *list, GFunc func, gpointer user_data); GSList* g_slist_sort (GSList *list, GCompareFunc compare_func); gpointer g_slist_nth_data (GSList *list, guint n); #define g_slist_next(slist) ((slist) ? (((GSList *)(slist))->next) : NULL) /* Hash tables */ GHashTable* g_hash_table_new (GHashFunc hash_func, GCompareFunc key_compare_func); void g_hash_table_destroy (GHashTable *hash_table); void g_hash_table_insert (GHashTable *hash_table, gpointer key, gpointer value); void g_hash_table_remove (GHashTable *hash_table, gconstpointer key); gpointer g_hash_table_lookup (GHashTable *hash_table, gconstpointer key); gboolean g_hash_table_lookup_extended(GHashTable *hash_table, gconstpointer lookup_key, gpointer *orig_key, gpointer *value); void g_hash_table_freeze (GHashTable *hash_table); void g_hash_table_thaw (GHashTable *hash_table); void g_hash_table_foreach (GHashTable *hash_table, GHFunc func, gpointer user_data); guint g_hash_table_foreach_remove (GHashTable *hash_table, GHRFunc func, gpointer user_data); guint g_hash_table_size (GHashTable *hash_table); /* Caches */ GCache* g_cache_new (GCacheNewFunc value_new_func, GCacheDestroyFunc value_destroy_func, GCacheDupFunc key_dup_func, GCacheDestroyFunc key_destroy_func, GHashFunc hash_key_func, GHashFunc hash_value_func, GCompareFunc key_compare_func); void g_cache_destroy (GCache *cache); gpointer g_cache_insert (GCache *cache, gpointer key); void g_cache_remove (GCache *cache, gpointer value); void g_cache_key_foreach (GCache *cache, GHFunc func, gpointer user_data); void g_cache_value_foreach (GCache *cache, GHFunc func, gpointer user_data); /* Balanced binary trees */ GTree* g_tree_new (GCompareFunc key_compare_func); void g_tree_destroy (GTree *tree); void g_tree_insert (GTree *tree, gpointer key, gpointer value); void g_tree_remove (GTree *tree, gpointer key); gpointer g_tree_lookup (GTree *tree, gpointer key); void g_tree_traverse (GTree *tree, GTraverseFunc traverse_func, GTraverseType traverse_type, gpointer data); gpointer g_tree_search (GTree *tree, GSearchFunc search_func, gpointer data); gint g_tree_height (GTree *tree); gint g_tree_nnodes (GTree *tree); /* N-way tree implementation */ struct _GNode { gpointer data; GNode *next; GNode *prev; GNode *parent; GNode *children; }; #define G_NODE_IS_ROOT(node) (((GNode*) (node))->parent == NULL && \ ((GNode*) (node))->prev == NULL && \ ((GNode*) (node))->next == NULL) #define G_NODE_IS_LEAF(node) (((GNode*) (node))->children == NULL) void g_node_push_allocator (GAllocator *allocator); void g_node_pop_allocator (void); GNode* g_node_new (gpointer data); void g_node_destroy (GNode *root); void g_node_unlink (GNode *node); GNode* g_node_insert (GNode *parent, gint position, GNode *node); GNode* g_node_insert_before (GNode *parent, GNode *sibling, GNode *node); GNode* g_node_prepend (GNode *parent, GNode *node); guint g_node_n_nodes (GNode *root, GTraverseFlags flags); GNode* g_node_get_root (GNode *node); gboolean g_node_is_ancestor (GNode *node, GNode *descendant); guint g_node_depth (GNode *node); GNode* g_node_find (GNode *root, GTraverseType order, GTraverseFlags flags, gpointer data); /* convenience macros */ #define g_node_append(parent, node) \ g_node_insert_before ((parent), NULL, (node)) #define g_node_insert_data(parent, position, data) \ g_node_insert ((parent), (position), g_node_new (data)) #define g_node_insert_data_before(parent, sibling, data) \ g_node_insert_before ((parent), (sibling), g_node_new (data)) #define g_node_prepend_data(parent, data) \ g_node_prepend ((parent), g_node_new (data)) #define g_node_append_data(parent, data) \ g_node_insert_before ((parent), NULL, g_node_new (data)) /* traversal function, assumes that `node' is root * (only traverses `node' and its subtree). * this function is just a high level interface to * low level traversal functions, optimized for speed. */ void g_node_traverse (GNode *root, GTraverseType order, GTraverseFlags flags, gint max_depth, GNodeTraverseFunc func, gpointer data); /* return the maximum tree height starting with `node', this is an expensive * operation, since we need to visit all nodes. this could be shortened by * adding `guint height' to struct _GNode, but then again, this is not very * often needed, and would make g_node_insert() more time consuming. */ guint g_node_max_height (GNode *root); void g_node_children_foreach (GNode *node, GTraverseFlags flags, GNodeForeachFunc func, gpointer data); void g_node_reverse_children (GNode *node); guint g_node_n_children (GNode *node); GNode* g_node_nth_child (GNode *node, guint n); GNode* g_node_last_child (GNode *node); GNode* g_node_find_child (GNode *node, GTraverseFlags flags, gpointer data); gint g_node_child_position (GNode *node, GNode *child); gint g_node_child_index (GNode *node, gpointer data); GNode* g_node_first_sibling (GNode *node); GNode* g_node_last_sibling (GNode *node); #define g_node_prev_sibling(node) ((node) ? \ ((GNode*) (node))->prev : NULL) #define g_node_next_sibling(node) ((node) ? \ ((GNode*) (node))->next : NULL) #define g_node_first_child(node) ((node) ? \ ((GNode*) (node))->children : NULL) /* Callback maintenance functions */ #define G_HOOK_FLAG_USER_SHIFT (4) typedef enum { G_HOOK_FLAG_ACTIVE = 1 << 0, G_HOOK_FLAG_IN_CALL = 1 << 1, G_HOOK_FLAG_MASK = 0x0f } GHookFlagMask; #define G_HOOK_DEFERRED_DESTROY ((GHookFreeFunc) 0x01) struct _GHookList { guint seq_id; guint hook_size; guint is_setup : 1; GHook *hooks; GMemChunk *hook_memchunk; GHookFreeFunc hook_free; /* virtual function */ GHookFreeFunc hook_destroy; /* virtual function */ }; struct _GHook { gpointer data; GHook *next; GHook *prev; guint ref_count; guint hook_id; guint flags; gpointer func; GDestroyNotify destroy; }; #define G_HOOK_ACTIVE(hook) ((((GHook*) hook)->flags & \ G_HOOK_FLAG_ACTIVE) != 0) #define G_HOOK_IN_CALL(hook) ((((GHook*) hook)->flags & \ G_HOOK_FLAG_IN_CALL) != 0) #define G_HOOK_IS_VALID(hook) (((GHook*) hook)->hook_id != 0 && \ G_HOOK_ACTIVE (hook)) #define G_HOOK_IS_UNLINKED(hook) (((GHook*) hook)->next == NULL && \ ((GHook*) hook)->prev == NULL && \ ((GHook*) hook)->hook_id == 0 && \ ((GHook*) hook)->ref_count == 0) void g_hook_list_init (GHookList *hook_list, guint hook_size); void g_hook_list_clear (GHookList *hook_list); GHook* g_hook_alloc (GHookList *hook_list); void g_hook_free (GHookList *hook_list, GHook *hook); void g_hook_ref (GHookList *hook_list, GHook *hook); void g_hook_unref (GHookList *hook_list, GHook *hook); gboolean g_hook_destroy (GHookList *hook_list, guint hook_id); void g_hook_destroy_link (GHookList *hook_list, GHook *hook); void g_hook_prepend (GHookList *hook_list, GHook *hook); void g_hook_insert_before (GHookList *hook_list, GHook *sibling, GHook *hook); void g_hook_insert_sorted (GHookList *hook_list, GHook *hook, GHookCompareFunc func); GHook* g_hook_get (GHookList *hook_list, guint hook_id); GHook* g_hook_find (GHookList *hook_list, gboolean need_valids, GHookFindFunc func, gpointer data); GHook* g_hook_find_data (GHookList *hook_list, gboolean need_valids, gpointer data); GHook* g_hook_find_func (GHookList *hook_list, gboolean need_valids, gpointer func); GHook* g_hook_find_func_data (GHookList *hook_list, gboolean need_valids, gpointer func, gpointer data); /* return the first valid hook, and increment its reference count */ GHook* g_hook_first_valid (GHookList *hook_list, gboolean may_be_in_call); /* return the next valid hook with incremented reference count, and * decrement the reference count of the original hook */ GHook* g_hook_next_valid (GHookList *hook_list, GHook *hook, gboolean may_be_in_call); /* GHookCompareFunc implementation to insert hooks sorted by their id */ gint g_hook_compare_ids (GHook *new_hook, GHook *sibling); /* convenience macros */ #define g_hook_append( hook_list, hook ) \ g_hook_insert_before ((hook_list), NULL, (hook)) /* invoke all valid hooks with the (*GHookFunc) signature. */ void g_hook_list_invoke (GHookList *hook_list, gboolean may_recurse); /* invoke all valid hooks with the (*GHookCheckFunc) signature, * and destroy the hook if FALSE is returned. */ void g_hook_list_invoke_check (GHookList *hook_list, gboolean may_recurse); /* invoke a marshaller on all valid hooks. */ void g_hook_list_marshal (GHookList *hook_list, gboolean may_recurse, GHookMarshaller marshaller, gpointer data); void g_hook_list_marshal_check (GHookList *hook_list, gboolean may_recurse, GHookCheckMarshaller marshaller, gpointer data); /* Fatal error handlers. * g_on_error_query() will prompt the user to either * [E]xit, [H]alt, [P]roceed or show [S]tack trace. * g_on_error_stack_trace() invokes gdb, which attaches to the current * process and shows a stack trace. * These function may cause different actions on non-unix platforms. * The prg_name arg is required by gdb to find the executable, if it is * passed as NULL, g_on_error_query() will try g_get_prgname(). */ void g_on_error_query (const gchar *prg_name); void g_on_error_stack_trace (const gchar *prg_name); /* Logging mechanism */ extern const gchar *g_log_domain_glib; guint g_log_set_handler (const gchar *log_domain, GLogLevelFlags log_levels, GLogFunc log_func, gpointer user_data); void g_log_remove_handler (const gchar *log_domain, guint handler_id); void g_log_default_handler (const gchar *log_domain, GLogLevelFlags log_level, const gchar *message, gpointer unused_data); void g_log (const gchar *log_domain, GLogLevelFlags log_level, const gchar *format, ...) G_GNUC_PRINTF (3, 4); void g_logv (const gchar *log_domain, GLogLevelFlags log_level, const gchar *format, va_list args); GLogLevelFlags g_log_set_fatal_mask (const gchar *log_domain, GLogLevelFlags fatal_mask); GLogLevelFlags g_log_set_always_fatal (GLogLevelFlags fatal_mask); #ifndef G_LOG_DOMAIN #define G_LOG_DOMAIN ((gchar*) 0) #endif /* G_LOG_DOMAIN */ #define g_error(format, args...) g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_ERROR, \ format, ##args) #define g_message(format, args...) g_log (G_LOG_DOMAIN, \ G_LOG_LEVEL_MESSAGE, \ format, ##args) #define g_warning printf /* Memory allocation and debugging */ #define g_malloc(size) ((gpointer)malloc(size)) #define g_malloc0(size) ((gpointer)calloc(size, 1)) #define g_realloc(mem,size) ((gpointer)realloc(mem, size)) #define g_free(mem) free(mem) void g_mem_profile (void); void g_mem_check (gpointer mem); /* String utility functions that modify a string argument or * return a constant string that must not be freed. */ #define G_STR_DELIMITERS "_-|> <." gchar* g_strdelimit (gchar *string, const gchar *delimiters, gchar new_delimiter); gdouble g_strtod (const gchar *nptr, gchar **endptr); gchar* g_strerror (gint errnum); gchar* g_strsignal (gint signum); gint g_strcasecmp (const gchar *s1, const gchar *s2); gint g_strncasecmp (const gchar *s1, const gchar *s2, guint n); void g_strdown (gchar *string); void g_strup (gchar *string); void g_strreverse (gchar *string); /* removes leading spaces */ gchar* g_strchug (gchar *string); /* removes trailing spaces */ gchar* g_strchomp (gchar *string); /* removes leading & trailing spaces */ #define g_strstrip( string ) g_strchomp (g_strchug (string)) /* String utility functions that return a newly allocated string which * ought to be freed from the caller at some point. */ gchar* g_strdup (const gchar *str); gchar* g_strdup_printf (const gchar *format, ...) G_GNUC_PRINTF (1, 2); gchar* g_strdup_vprintf (const gchar *format, va_list args); gchar* g_strndup (const gchar *str, guint n); gchar* g_strnfill (guint length, gchar fill_char); gchar* g_strconcat (const gchar *string1, ...); /* NULL terminated */ gchar* g_strjoin (const gchar *separator, ...); /* NULL terminated */ gchar* g_strescape (gchar *string); gpointer g_memdup (gconstpointer mem, guint byte_size); /* NULL terminated string arrays. * g_strsplit() splits up string into max_tokens tokens at delim and * returns a newly allocated string array. * g_strjoinv() concatenates all of str_array's strings, sliding in an * optional separator, the returned string is newly allocated. * g_strfreev() frees the array itself and all of its strings. */ gchar** g_strsplit (const gchar *string, const gchar *delimiter, gint max_tokens); gchar* g_strjoinv (const gchar *separator, gchar **str_array); void g_strfreev (gchar **str_array); /* calculate a string size, guarranteed to fit format + args. */ guint g_printf_string_upper_bound (const gchar* format, va_list args); /* Retrive static string info */ gchar* g_get_user_name (void); gchar* g_get_real_name (void); gchar* g_get_home_dir (void); gchar* g_get_tmp_dir (void); gchar* g_get_prgname (void); void g_set_prgname (const gchar *prgname); /* Miscellaneous utility functions */ guint g_parse_debug_string (const gchar *string, GDebugKey *keys, guint nkeys); gint g_snprintf (gchar *string, gulong n, gchar const *format, ...) G_GNUC_PRINTF (3, 4); gint g_vsnprintf (gchar *string, gulong n, gchar const *format, va_list args); gchar* g_basename (const gchar *file_name); /* Check if a file name is an absolute path */ gboolean g_path_is_absolute (const gchar *file_name); /* In case of absolute paths, skip the root part */ gchar* g_path_skip_root (gchar *file_name); /* strings are newly allocated with g_malloc() */ gchar* g_dirname (const gchar *file_name); gchar* g_get_current_dir (void); gchar* g_getenv (const gchar *variable); /* we use a GLib function as a replacement for ATEXIT, so * the programmer is not required to check the return value * (if there is any in the implementation) and doesn't encounter * missing include files. */ void g_atexit (GVoidFunc func); /* Bit tests */ G_INLINE_FUNC gint g_bit_nth_lsf (guint32 mask, gint nth_bit); #ifdef G_CAN_INLINE G_INLINE_FUNC gint g_bit_nth_lsf (guint32 mask, gint nth_bit) { do { nth_bit++; if (mask & (1 << (guint) nth_bit)) return nth_bit; } while (nth_bit < 32); return -1; } #endif /* G_CAN_INLINE */ G_INLINE_FUNC gint g_bit_nth_msf (guint32 mask, gint nth_bit); #ifdef G_CAN_INLINE G_INLINE_FUNC gint g_bit_nth_msf (guint32 mask, gint nth_bit) { if (nth_bit < 0) nth_bit = 32; do { nth_bit--; if (mask & (1 << (guint) nth_bit)) return nth_bit; } while (nth_bit > 0); return -1; } #endif /* G_CAN_INLINE */ G_INLINE_FUNC guint g_bit_storage (guint number); #ifdef G_CAN_INLINE G_INLINE_FUNC guint g_bit_storage (guint number) { register guint n_bits = 0; do { n_bits++; number >>= 1; } while (number); return n_bits; } #endif /* G_CAN_INLINE */ /* String Chunks */ GStringChunk* g_string_chunk_new (gint size); void g_string_chunk_free (GStringChunk *chunk); gchar* g_string_chunk_insert (GStringChunk *chunk, const gchar *string); gchar* g_string_chunk_insert_const (GStringChunk *chunk, const gchar *string); /* Strings */ GString* g_string_new (const gchar *init); GString* g_string_sized_new (guint dfl_size); void g_string_free (GString *string, gint free_segment); GString* g_string_assign (GString *lval, const gchar *rval); GString* g_string_truncate (GString *string, gint len); GString* g_string_append (GString *string, const gchar *val); GString* g_string_append_c (GString *string, gchar c); GString* g_string_prepend (GString *string, const gchar *val); GString* g_string_prepend_c (GString *string, gchar c); GString* g_string_insert (GString *string, gint pos, const gchar *val); GString* g_string_insert_c (GString *string, gint pos, gchar c); GString* g_string_erase (GString *string, gint pos, gint len); GString* g_string_down (GString *string); GString* g_string_up (GString *string); void g_string_sprintf (GString *string, const gchar *format, ...) G_GNUC_PRINTF (2, 3); void g_string_sprintfa (GString *string, const gchar *format, ...) G_GNUC_PRINTF (2, 3); /* Resizable arrays, remove fills any cleared spot and shortens the * array, while preserving the order. remove_fast will distort the * order by moving the last element to the position of the removed */ #define g_array_append_val(a,v) g_array_append_vals (a, &v, 1) #define g_array_prepend_val(a,v) g_array_prepend_vals (a, &v, 1) #define g_array_insert_val(a,i,v) g_array_insert_vals (a, i, &v, 1) #define g_array_index(a,t,i) (((t*) (a)->data) [(i)]) GArray* g_array_new (gboolean zero_terminated, gboolean clear, guint element_size); void g_array_free (GArray *array, gboolean free_segment); GArray* g_array_append_vals (GArray *array, gconstpointer data, guint len); GArray* g_array_prepend_vals (GArray *array, gconstpointer data, guint len); GArray* g_array_insert_vals (GArray *array, guint index, gconstpointer data, guint len); GArray* g_array_set_size (GArray *array, guint length); GArray* g_array_remove_index (GArray *array, guint index); GArray* g_array_remove_index_fast (GArray *array, guint index); /* Resizable pointer array. This interface is much less complicated * than the above. Add appends appends a pointer. Remove fills any * cleared spot and shortens the array. remove_fast will again distort * order. */ #define g_ptr_array_index(array,index) (array->pdata)[index] GPtrArray* g_ptr_array_new (void); void g_ptr_array_free (GPtrArray *array, gboolean free_seg); void g_ptr_array_set_size (GPtrArray *array, gint length); gpointer g_ptr_array_remove_index (GPtrArray *array, guint index); gpointer g_ptr_array_remove_index_fast (GPtrArray *array, guint index); gboolean g_ptr_array_remove (GPtrArray *array, gpointer data); gboolean g_ptr_array_remove_fast (GPtrArray *array, gpointer data); void g_ptr_array_add (GPtrArray *array, gpointer data); /* Byte arrays, an array of guint8. Implemented as a GArray, * but type-safe. */ GByteArray* g_byte_array_new (void); void g_byte_array_free (GByteArray *array, gboolean free_segment); GByteArray* g_byte_array_append (GByteArray *array, const guint8 *data, guint len); GByteArray* g_byte_array_prepend (GByteArray *array, const guint8 *data, guint len); GByteArray* g_byte_array_set_size (GByteArray *array, guint length); GByteArray* g_byte_array_remove_index (GByteArray *array, guint index); GByteArray* g_byte_array_remove_index_fast (GByteArray *array, guint index); #endif /* __G_LIB_H__ */