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583 lines
19 KiB
Tcl
583 lines
19 KiB
Tcl
# auto.tcl --
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#
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# utility procs formerly in init.tcl dealing with auto execution
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# of commands and can be auto loaded themselves.
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#
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# RCS: @(#) $Id: auto.tcl,v 1.11 2002/10/22 16:41:27 das Exp $
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#
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# Copyright (c) 1991-1993 The Regents of the University of California.
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# Copyright (c) 1994-1998 Sun Microsystems, Inc.
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#
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# See the file "license.terms" for information on usage and redistribution
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# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
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#
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# auto_reset --
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#
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# Destroy all cached information for auto-loading and auto-execution,
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# so that the information gets recomputed the next time it's needed.
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# Also delete any procedures that are listed in the auto-load index
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# except those defined in this file.
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#
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# Arguments:
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# None.
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proc auto_reset {} {
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global auto_execs auto_index auto_oldpath
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foreach p [info procs] {
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if {[info exists auto_index($p)] && ![string match auto_* $p]
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&& ([lsearch -exact {unknown pkg_mkIndex tclPkgSetup
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tcl_findLibrary pkg_compareExtension
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tclMacPkgSearch tclPkgUnknown} $p] < 0)} {
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rename $p {}
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}
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}
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catch {unset auto_execs}
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catch {unset auto_index}
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catch {unset auto_oldpath}
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}
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# tcl_findLibrary --
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#
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# This is a utility for extensions that searches for a library directory
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# using a canonical searching algorithm. A side effect is to source
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# the initialization script and set a global library variable.
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#
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# Arguments:
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# basename Prefix of the directory name, (e.g., "tk")
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# version Version number of the package, (e.g., "8.0")
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# patch Patchlevel of the package, (e.g., "8.0.3")
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# initScript Initialization script to source (e.g., tk.tcl)
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# enVarName environment variable to honor (e.g., TK_LIBRARY)
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# varName Global variable to set when done (e.g., tk_library)
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proc tcl_findLibrary {basename version patch initScript enVarName varName} {
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upvar #0 $varName the_library
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global env errorInfo
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set dirs {}
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set errors {}
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# The C application may have hardwired a path, which we honor
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set variableSet [info exists the_library]
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if {$variableSet && [string compare $the_library {}]} {
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lappend dirs $the_library
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} else {
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# Do the canonical search
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# 1. From an environment variable, if it exists
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if {[info exists env($enVarName)]} {
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lappend dirs $env($enVarName)
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}
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# 2. Relative to the Tcl library
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lappend dirs [file join [file dirname [info library]] \
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$basename$version]
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# 3. Various locations relative to the executable
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# ../lib/foo1.0 (From bin directory in install hierarchy)
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# ../../lib/foo1.0 (From bin/arch directory in install hierarchy)
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# ../library (From unix directory in build hierarchy)
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# ../../library (From unix/arch directory in build hierarchy)
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# ../../foo1.0.1/library
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# (From unix directory in parallel build hierarchy)
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# ../../../foo1.0.1/library
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# (From unix/arch directory in parallel build hierarchy)
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set parentDir [file dirname [file dirname [info nameofexecutable]]]
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set grandParentDir [file dirname $parentDir]
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lappend dirs [file join $parentDir lib $basename$version]
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lappend dirs [file join $grandParentDir lib $basename$version]
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lappend dirs [file join $parentDir library]
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lappend dirs [file join $grandParentDir library]
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lappend dirs [file join $grandParentDir $basename$patch library]
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lappend dirs [file join [file dirname $grandParentDir] \
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$basename$patch library]
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# 4. On MacOSX, check the directories in the tcl_pkgPath
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if {[string equal $::tcl_platform(platform) "unix"] && \
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[string equal $::tcl_platform(os) "Darwin"]} {
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foreach d $::tcl_pkgPath {
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lappend dirs [file join $d $basename$version]
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lappend dirs [file join $d $basename$version Resources Scripts]
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}
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}
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}
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foreach i $dirs {
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set the_library $i
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set file [file join $i $initScript]
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# source everything when in a safe interpreter because
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# we have a source command, but no file exists command
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if {[interp issafe] || [file exists $file]} {
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if {![catch {uplevel #0 [list source $file]} msg]} {
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return
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} else {
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append errors "$file: $msg\n$errorInfo\n"
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}
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}
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}
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if {!$variableSet} {
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unset the_library
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}
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set msg "Can't find a usable $initScript in the following directories: \n"
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append msg " $dirs\n\n"
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append msg "$errors\n\n"
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append msg "This probably means that $basename wasn't installed properly.\n"
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error $msg
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}
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# ----------------------------------------------------------------------
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# auto_mkindex
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# ----------------------------------------------------------------------
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# The following procedures are used to generate the tclIndex file
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# from Tcl source files. They use a special safe interpreter to
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# parse Tcl source files, writing out index entries as "proc"
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# commands are encountered. This implementation won't work in a
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# safe interpreter, since a safe interpreter can't create the
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# special parser and mess with its commands.
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if {[interp issafe]} {
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return ;# Stop sourcing the file here
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}
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# auto_mkindex --
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# Regenerate a tclIndex file from Tcl source files. Takes as argument
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# the name of the directory in which the tclIndex file is to be placed,
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# followed by any number of glob patterns to use in that directory to
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# locate all of the relevant files.
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#
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# Arguments:
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# dir - Name of the directory in which to create an index.
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# args - Any number of additional arguments giving the
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# names of files within dir. If no additional
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# are given auto_mkindex will look for *.tcl.
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proc auto_mkindex {dir args} {
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global errorCode errorInfo
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if {[interp issafe]} {
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error "can't generate index within safe interpreter"
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}
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set oldDir [pwd]
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cd $dir
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set dir [pwd]
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append index "# Tcl autoload index file, version 2.0\n"
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append index "# This file is generated by the \"auto_mkindex\" command\n"
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append index "# and sourced to set up indexing information for one or\n"
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append index "# more commands. Typically each line is a command that\n"
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append index "# sets an element in the auto_index array, where the\n"
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append index "# element name is the name of a command and the value is\n"
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append index "# a script that loads the command.\n\n"
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if {$args == ""} {
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set args *.tcl
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}
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auto_mkindex_parser::init
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foreach file [eval glob $args] {
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if {[catch {auto_mkindex_parser::mkindex $file} msg] == 0} {
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append index $msg
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} else {
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set code $errorCode
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set info $errorInfo
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cd $oldDir
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error $msg $info $code
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}
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}
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auto_mkindex_parser::cleanup
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set fid [open "tclIndex" w]
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puts -nonewline $fid $index
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close $fid
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cd $oldDir
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}
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# Original version of auto_mkindex that just searches the source
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# code for "proc" at the beginning of the line.
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proc auto_mkindex_old {dir args} {
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global errorCode errorInfo
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set oldDir [pwd]
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cd $dir
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set dir [pwd]
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append index "# Tcl autoload index file, version 2.0\n"
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append index "# This file is generated by the \"auto_mkindex\" command\n"
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append index "# and sourced to set up indexing information for one or\n"
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append index "# more commands. Typically each line is a command that\n"
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append index "# sets an element in the auto_index array, where the\n"
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append index "# element name is the name of a command and the value is\n"
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append index "# a script that loads the command.\n\n"
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if {[string equal $args ""]} {
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set args *.tcl
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}
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foreach file [eval glob $args] {
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set f ""
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set error [catch {
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set f [open $file]
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while {[gets $f line] >= 0} {
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if {[regexp {^proc[ ]+([^ ]*)} $line match procName]} {
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set procName [lindex [auto_qualify $procName "::"] 0]
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append index "set [list auto_index($procName)]"
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append index " \[list source \[file join \$dir [list $file]\]\]\n"
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}
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}
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close $f
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} msg]
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if {$error} {
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set code $errorCode
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set info $errorInfo
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catch {close $f}
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cd $oldDir
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error $msg $info $code
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}
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}
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set f ""
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set error [catch {
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set f [open tclIndex w]
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puts -nonewline $f $index
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close $f
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cd $oldDir
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} msg]
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if {$error} {
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set code $errorCode
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set info $errorInfo
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catch {close $f}
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cd $oldDir
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error $msg $info $code
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}
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}
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# Create a safe interpreter that can be used to parse Tcl source files
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# generate a tclIndex file for autoloading. This interp contains
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# commands for things that need index entries. Each time a command
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# is executed, it writes an entry out to the index file.
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namespace eval auto_mkindex_parser {
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variable parser "" ;# parser used to build index
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variable index "" ;# maintains index as it is built
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variable scriptFile "" ;# name of file being processed
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variable contextStack "" ;# stack of namespace scopes
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variable imports "" ;# keeps track of all imported cmds
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variable initCommands "" ;# list of commands that create aliases
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proc init {} {
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variable parser
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variable initCommands
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if {![interp issafe]} {
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set parser [interp create -safe]
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$parser hide info
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$parser hide rename
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$parser hide proc
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$parser hide namespace
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$parser hide eval
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$parser hide puts
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$parser invokehidden namespace delete ::
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$parser invokehidden proc unknown {args} {}
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# We'll need access to the "namespace" command within the
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# interp. Put it back, but move it out of the way.
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$parser expose namespace
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$parser invokehidden rename namespace _%@namespace
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$parser expose eval
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$parser invokehidden rename eval _%@eval
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# Install all the registered psuedo-command implementations
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foreach cmd $initCommands {
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eval $cmd
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}
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}
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}
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proc cleanup {} {
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variable parser
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interp delete $parser
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unset parser
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}
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}
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# auto_mkindex_parser::mkindex --
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#
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# Used by the "auto_mkindex" command to create a "tclIndex" file for
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# the given Tcl source file. Executes the commands in the file, and
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# handles things like the "proc" command by adding an entry for the
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# index file. Returns a string that represents the index file.
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#
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# Arguments:
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# file Name of Tcl source file to be indexed.
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proc auto_mkindex_parser::mkindex {file} {
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variable parser
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variable index
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variable scriptFile
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variable contextStack
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variable imports
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set scriptFile $file
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set fid [open $file]
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set contents [read $fid]
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close $fid
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# There is one problem with sourcing files into the safe
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# interpreter: references like "$x" will fail since code is not
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# really being executed and variables do not really exist.
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# To avoid this, we replace all $ with \0 (literally, the null char)
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# later, when getting proc names we will have to reverse this replacement,
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# in case there were any $ in the proc name. This will cause a problem
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# if somebody actually tries to have a \0 in their proc name. Too bad
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# for them.
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regsub -all {\$} $contents "\0" contents
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set index ""
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set contextStack ""
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set imports ""
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$parser eval $contents
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foreach name $imports {
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catch {$parser eval [list _%@namespace forget $name]}
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}
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return $index
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}
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# auto_mkindex_parser::hook command
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#
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# Registers a Tcl command to evaluate when initializing the
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# slave interpreter used by the mkindex parser.
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# The command is evaluated in the master interpreter, and can
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# use the variable auto_mkindex_parser::parser to get to the slave
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proc auto_mkindex_parser::hook {cmd} {
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variable initCommands
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lappend initCommands $cmd
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}
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# auto_mkindex_parser::slavehook command
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#
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# Registers a Tcl command to evaluate when initializing the
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# slave interpreter used by the mkindex parser.
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# The command is evaluated in the slave interpreter.
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proc auto_mkindex_parser::slavehook {cmd} {
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variable initCommands
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# The $parser variable is defined to be the name of the
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# slave interpreter when this command is used later.
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lappend initCommands "\$parser eval [list $cmd]"
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}
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# auto_mkindex_parser::command --
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#
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# Registers a new command with the "auto_mkindex_parser" interpreter
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# that parses Tcl files. These commands are fake versions of things
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# like the "proc" command. When you execute them, they simply write
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# out an entry to a "tclIndex" file for auto-loading.
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#
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# This procedure allows extensions to register their own commands
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# with the auto_mkindex facility. For example, a package like
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# [incr Tcl] might register a "class" command so that class definitions
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# could be added to a "tclIndex" file for auto-loading.
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#
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# Arguments:
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# name Name of command recognized in Tcl files.
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# arglist Argument list for command.
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# body Implementation of command to handle indexing.
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proc auto_mkindex_parser::command {name arglist body} {
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hook [list auto_mkindex_parser::commandInit $name $arglist $body]
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}
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# auto_mkindex_parser::commandInit --
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#
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# This does the actual work set up by auto_mkindex_parser::command
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# This is called when the interpreter used by the parser is created.
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#
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# Arguments:
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# name Name of command recognized in Tcl files.
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# arglist Argument list for command.
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# body Implementation of command to handle indexing.
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proc auto_mkindex_parser::commandInit {name arglist body} {
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variable parser
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set ns [namespace qualifiers $name]
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set tail [namespace tail $name]
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if {[string equal $ns ""]} {
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set fakeName "[namespace current]::_%@fake_$tail"
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} else {
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set fakeName "_%@fake_$name"
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regsub -all {::} $fakeName "_" fakeName
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set fakeName "[namespace current]::$fakeName"
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}
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proc $fakeName $arglist $body
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# YUK! Tcl won't let us alias fully qualified command names,
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# so we can't handle names like "::itcl::class". Instead,
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# we have to build procs with the fully qualified names, and
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# have the procs point to the aliases.
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if {[regexp {::} $name]} {
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set exportCmd [list _%@namespace export [namespace tail $name]]
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$parser eval [list _%@namespace eval $ns $exportCmd]
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# The following proc definition does not work if you
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# want to tolerate space or something else diabolical
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# in the procedure name, (i.e., space in $alias)
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# The following does not work:
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# "_%@eval {$alias} \$args"
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# because $alias gets concat'ed to $args.
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# The following does not work because $cmd is somehow undefined
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# "set cmd {$alias} \; _%@eval {\$cmd} \$args"
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# A gold star to someone that can make test
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# autoMkindex-3.3 work properly
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set alias [namespace tail $fakeName]
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$parser invokehidden proc $name {args} "_%@eval {$alias} \$args"
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$parser alias $alias $fakeName
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} else {
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$parser alias $name $fakeName
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}
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return
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}
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# auto_mkindex_parser::fullname --
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# Used by commands like "proc" within the auto_mkindex parser.
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# Returns the qualified namespace name for the "name" argument.
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# If the "name" does not start with "::", elements are added from
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# the current namespace stack to produce a qualified name. Then,
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# the name is examined to see whether or not it should really be
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# qualified. If the name has more than the leading "::", it is
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# returned as a fully qualified name. Otherwise, it is returned
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# as a simple name. That way, the Tcl autoloader will recognize
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# it properly.
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#
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# Arguments:
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# name - Name that is being added to index.
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proc auto_mkindex_parser::fullname {name} {
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variable contextStack
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if {![string match ::* $name]} {
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foreach ns $contextStack {
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set name "${ns}::$name"
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if {[string match ::* $name]} {
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break
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}
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}
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}
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if {[string equal [namespace qualifiers $name] ""]} {
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set name [namespace tail $name]
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} elseif {![string match ::* $name]} {
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set name "::$name"
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}
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# Earlier, mkindex replaced all $'s with \0. Now, we have to reverse
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# that replacement.
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regsub -all "\0" $name "\$" name
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return $name
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}
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# Register all of the procedures for the auto_mkindex parser that
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# will build the "tclIndex" file.
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# AUTO MKINDEX: proc name arglist body
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# Adds an entry to the auto index list for the given procedure name.
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auto_mkindex_parser::command proc {name args} {
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variable index
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variable scriptFile
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# Do some fancy reformatting on the "source" call to handle platform
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# differences with respect to pathnames. Use format just so that the
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# command is a little easier to read (otherwise it'd be full of
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# backslashed dollar signs, etc.
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append index [list set auto_index([fullname $name])] \
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[format { [list source [file join $dir %s]]} \
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[file split $scriptFile]] "\n"
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}
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# Conditionally add support for Tcl byte code files. There are some
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# tricky details here. First, we need to get the tbcload library
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# initialized in the current interpreter. We cannot load tbcload into the
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# slave until we have done so because it needs access to the tcl_patchLevel
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# variable. Second, because the package index file may defer loading the
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# library until we invoke a command, we need to explicitly invoke auto_load
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# to force it to be loaded. This should be a noop if the package has
|
|
# already been loaded
|
|
|
|
auto_mkindex_parser::hook {
|
|
if {![catch {package require tbcload}]} {
|
|
if {[llength [info commands tbcload::bcproc]] == 0} {
|
|
auto_load tbcload::bcproc
|
|
}
|
|
load {} tbcload $auto_mkindex_parser::parser
|
|
|
|
# AUTO MKINDEX: tbcload::bcproc name arglist body
|
|
# Adds an entry to the auto index list for the given pre-compiled
|
|
# procedure name.
|
|
|
|
auto_mkindex_parser::commandInit tbcload::bcproc {name args} {
|
|
variable index
|
|
variable scriptFile
|
|
# Do some nice reformatting of the "source" call, to get around
|
|
# path differences on different platforms. We use the format
|
|
# command just so that the code is a little easier to read.
|
|
append index [list set auto_index([fullname $name])] \
|
|
[format { [list source [file join $dir %s]]} \
|
|
[file split $scriptFile]] "\n"
|
|
}
|
|
}
|
|
}
|
|
|
|
# AUTO MKINDEX: namespace eval name command ?arg arg...?
|
|
# Adds the namespace name onto the context stack and evaluates the
|
|
# associated body of commands.
|
|
#
|
|
# AUTO MKINDEX: namespace import ?-force? pattern ?pattern...?
|
|
# Performs the "import" action in the parser interpreter. This is
|
|
# important for any commands contained in a namespace that affect
|
|
# the index. For example, a script may say "itcl::class ...",
|
|
# or it may import "itcl::*" and then say "class ...". This
|
|
# procedure does the import operation, but keeps track of imported
|
|
# patterns so we can remove the imports later.
|
|
|
|
auto_mkindex_parser::command namespace {op args} {
|
|
switch -- $op {
|
|
eval {
|
|
variable parser
|
|
variable contextStack
|
|
|
|
set name [lindex $args 0]
|
|
set args [lrange $args 1 end]
|
|
|
|
set contextStack [linsert $contextStack 0 $name]
|
|
$parser eval [list _%@namespace eval $name] $args
|
|
set contextStack [lrange $contextStack 1 end]
|
|
}
|
|
import {
|
|
variable parser
|
|
variable imports
|
|
foreach pattern $args {
|
|
if {[string compare $pattern "-force"]} {
|
|
lappend imports $pattern
|
|
}
|
|
}
|
|
catch {$parser eval "_%@namespace import $args"}
|
|
}
|
|
}
|
|
}
|
|
|
|
return
|