mirror of
https://github.com/rn10950/RetroZilla.git
synced 2024-11-14 03:30:17 +01:00
435 lines
8.6 KiB
Perl
435 lines
8.6 KiB
Perl
#!perl
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#
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# This Source Code Form is subject to the terms of the Mozilla Public
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# License, v. 2.0. If a copy of the MPL was not distributed with this
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# file, You can obtain one at http://mozilla.org/MPL/2.0/.
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$copyright = '/* THIS IS A GENERATED FILE */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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';
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$count = -1;
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$i = 0;
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open(INPUT, "<$ARGV[0]") || die "Can't open $ARGV[0]: $!";
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while(<INPUT>) {
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s/^((?:[^"#]+|"[^"]*")*)(\s*#.*$)/$1/;
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next if (/^\s*$/);
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# print;
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/^([\S]+)\s+([^"][\S]*|"[^"]*")/;
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$name = $1;
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$value = $2;
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if( ($name =~ "FUNCTION") && !($name =~ "CK_FUNCTION") ) {
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$count++;
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$x[$count]{name} = $value;
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$i = 0;
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} else {
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if( $count < 0 ) {
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$value =~ s/"//g;
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$g{$name} = $value;
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} else {
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$x[$count]{args}[$i]{type} = $name;
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$x[$count]{args}[$i]{name} = $value;
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$i++;
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$x[$count]{nargs} = $i; # rewritten each time, oh well
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}
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}
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}
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close INPUT;
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# dodump();
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doprint();
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sub dodump {
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for( $j = 0; $j <= $count; $j++ ) {
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print "CK_RV CK_ENTRY $x[$j]{name}\n";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print " $x[$j]{args}[$i]{type} $x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print "\n";
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} else {
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print ",\n";
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}
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}
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}
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}
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sub doprint {
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open(PROTOTYPE, ">nssckg.h") || die "Can't open nssckg.h: $!";
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open(TYPEDEF, ">nssckft.h") || die "Can't open nssckft.h: $!";
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open(EPV, ">nssckepv.h") || die "Can't open nssckepv.h: $!";
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open(API, ">nssck.api") || die "Can't open nssck.api: $!";
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select PROTOTYPE;
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print $copyright;
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print <<EOD
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#ifndef NSSCKG_H
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#define NSSCKG_H
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/*
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* nssckg.h
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*
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* This automatically-generated header file prototypes the Cryptoki
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* functions specified by PKCS#11.
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*/
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#ifndef NSSCKT_H
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#include "nssckt.h"
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#endif /* NSSCKT_H */
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EOD
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;
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for( $j = 0; $j <= $count; $j++ ) {
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print "CK_RV CK_ENTRY $x[$j]{name}\n";
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print "(\n";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print " $x[$j]{args}[$i]{type} $x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print "\n";
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} else {
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print ",\n";
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}
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}
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print ");\n\n";
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}
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print <<EOD
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#endif /* NSSCKG_H */
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EOD
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;
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select TYPEDEF;
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print $copyright;
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print <<EOD
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#ifndef NSSCKFT_H
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#define NSSCKFT_H
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/*
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* nssckft.h
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*
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* The automatically-generated header file declares a typedef
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* each of the Cryptoki functions specified by PKCS#11.
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*/
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#ifndef NSSCKT_H
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#include "nssckt.h"
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#endif /* NSSCKT_H */
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EOD
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;
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for( $j = 0; $j <= $count; $j++ ) {
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# print "typedef CK_RV (CK_ENTRY *CK_$x[$j]{name})(\n";
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print "typedef CK_CALLBACK_FUNCTION(CK_RV, CK_$x[$j]{name})(\n";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print " $x[$j]{args}[$i]{type} $x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print "\n";
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} else {
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print ",\n";
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}
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}
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print ");\n\n";
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}
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print <<EOD
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#endif /* NSSCKFT_H */
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EOD
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;
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select EPV;
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print $copyright;
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print <<EOD
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#ifndef NSSCKEPV_H
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#define NSSCKEPV_H
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/*
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* nssckepv.h
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*
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* This automatically-generated header file defines the type
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* CK_FUNCTION_LIST specified by PKCS#11.
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*/
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#ifndef NSSCKT_H
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#include "nssckt.h"
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#endif /* NSSCKT_H */
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#ifndef NSSCKFT_H
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#include "nssckft.h"
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#endif /* NSSCKFT_H */
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#include "nssckp.h"
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struct CK_FUNCTION_LIST {
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CK_VERSION version;
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EOD
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;
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for( $j = 0; $j <= $count; $j++ ) {
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print " CK_$x[$j]{name} $x[$j]{name};\n";
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}
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print <<EOD
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};
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#include "nsscku.h"
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#endif /* NSSCKEPV_H */
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EOD
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;
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select API;
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print $copyright;
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print <<EOD
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/*
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* nssck.api
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*
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* This automatically-generated file is used to generate a set of
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* Cryptoki entry points within the object space of a Module using
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* the NSS Cryptoki Framework.
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*
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* The Module should have a .c file with the following:
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*
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* #define MODULE_NAME name
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* #define INSTANCE_NAME instance
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* #include "nssck.api"
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*
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* where "name" is some module-specific name that can be used to
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* disambiguate various modules. This included file will then
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* define the actual Cryptoki routines which pass through to the
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* Framework calls. All routines, except C_GetFunctionList, will
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* be prefixed with the name; C_GetFunctionList will be generated
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* to return an entry-point vector with these routines. The
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* instance specified should be the basic instance of NSSCKMDInstance.
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*
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* If, prior to including nssck.api, the .c file also specifies
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*
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* #define DECLARE_STRICT_CRYTPOKI_NAMES
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*
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* Then a set of "stub" routines not prefixed with the name will
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* be included. This would allow the combined module and framework
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* to be used in applications which are hard-coded to use the
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* PKCS#11 names (instead of going through the EPV). Please note
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* that such applications should be careful resolving symbols when
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* more than one PKCS#11 module is loaded.
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*/
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#ifndef MODULE_NAME
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#error "Error: MODULE_NAME must be defined."
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#endif /* MODULE_NAME */
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#ifndef INSTANCE_NAME
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#error "Error: INSTANCE_NAME must be defined."
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#endif /* INSTANCE_NAME */
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#ifndef NSSCKT_H
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#include "nssckt.h"
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#endif /* NSSCKT_H */
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#ifndef NSSCKFWT_H
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#include "nssckfwt.h"
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#endif /* NSSCKFWT_H */
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#ifndef NSSCKFWC_H
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#include "nssckfwc.h"
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#endif /* NSSCKFWC_H */
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#ifndef NSSCKEPV_H
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#include "nssckepv.h"
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#endif /* NSSCKEPV_H */
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#define ADJOIN(x,y) x##y
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#define __ADJOIN(x,y) ADJOIN(x,y)
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/*
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* The anchor. This object is used to store an "anchor" pointer in
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* the Module's object space, so the wrapper functions can relate
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* back to this instance.
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*/
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static NSSCKFWInstance *fwInstance = (NSSCKFWInstance *)0;
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static CK_RV CK_ENTRY
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__ADJOIN(MODULE_NAME,C_Initialize)
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(
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CK_VOID_PTR pInitArgs
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)
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{
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return NSSCKFWC_Initialize(&fwInstance, INSTANCE_NAME, pInitArgs);
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}
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#ifdef DECLARE_STRICT_CRYPTOKI_NAMES
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CK_RV CK_ENTRY
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C_Initialize
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(
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CK_VOID_PTR pInitArgs
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)
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{
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return __ADJOIN(MODULE_NAME,C_Initialize)(pInitArgs);
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}
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#endif /* DECLARE_STRICT_CRYPTOKI_NAMES */
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static CK_RV CK_ENTRY
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__ADJOIN(MODULE_NAME,C_Finalize)
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(
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CK_VOID_PTR pReserved
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)
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{
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return NSSCKFWC_Finalize(&fwInstance);
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}
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#ifdef DECLARE_STRICT_CRYPTOKI_NAMES
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CK_RV CK_ENTRY
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C_Finalize
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(
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CK_VOID_PTR pReserved
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)
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{
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return __ADJOIN(MODULE_NAME,C_Finalize)(pReserved);
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}
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#endif /* DECLARE_STRICT_CRYPTOKI_NAMES */
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static CK_RV CK_ENTRY
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__ADJOIN(MODULE_NAME,C_GetInfo)
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(
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CK_INFO_PTR pInfo
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)
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{
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return NSSCKFWC_GetInfo(fwInstance, pInfo);
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}
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#ifdef DECLARE_STRICT_CRYPTOKI_NAMES
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CK_RV CK_ENTRY
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C_GetInfo
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(
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CK_INFO_PTR pInfo
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)
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{
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return __ADJOIN(MODULE_NAME,C_GetInfo)(pInfo);
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}
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#endif /* DECLARE_STRICT_CRYPTOKI_NAMES */
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/*
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* C_GetFunctionList is defined at the end.
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*/
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EOD
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;
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for( $j = 4; $j <= $count; $j++ ) {
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print "static CK_RV CK_ENTRY\n";
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print "__ADJOIN(MODULE_NAME,$x[$j]{name})\n";
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print "(\n";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print " $x[$j]{args}[$i]{type} $x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print "\n";
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} else {
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print ",\n";
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}
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}
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print ")\n";
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print "{\n";
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print " return NSSCKFW$x[$j]{name}(fwInstance, ";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print "$x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print ");\n";
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} else {
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print ", ";
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}
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}
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print "}\n\n";
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print "#ifdef DECLARE_STRICT_CRYPTOKI_NAMES\n";
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print "CK_RV CK_ENTRY\n";
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print "$x[$j]{name}\n";
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print "(\n";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print " $x[$j]{args}[$i]{type} $x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print "\n";
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} else {
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print ",\n";
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}
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}
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print ")\n";
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print "{\n";
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print " return __ADJOIN(MODULE_NAME,$x[$j]{name})(";
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for( $i = 0; $i < $x[$j]{nargs}; $i++ ) {
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print "$x[$j]{args}[$i]{name}";
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if( $i == ($x[$j]{nargs} - 1) ) {
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print ");\n";
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} else {
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print ", ";
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}
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}
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print "}\n";
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print "#endif /* DECLARE_STRICT_CRYPTOKI_NAMES */\n\n";
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}
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print <<EOD
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static CK_RV CK_ENTRY
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__ADJOIN(MODULE_NAME,C_GetFunctionList)
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(
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CK_FUNCTION_LIST_PTR_PTR ppFunctionList
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);
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static CK_FUNCTION_LIST FunctionList = {
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{ 2, 1 },
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EOD
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;
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for( $j = 0; $j <= $count; $j++ ) {
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print "__ADJOIN(MODULE_NAME,$x[$j]{name})";
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if( $j < $count ) {
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print ",\n";
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} else {
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print "\n};\n\n";
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}
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}
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print <<EOD
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static CK_RV CK_ENTRY
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__ADJOIN(MODULE_NAME,C_GetFunctionList)
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(
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CK_FUNCTION_LIST_PTR_PTR ppFunctionList
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)
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{
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*ppFunctionList = &FunctionList;
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return CKR_OK;
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}
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/* This one is always present */
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CK_RV CK_ENTRY
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C_GetFunctionList
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(
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CK_FUNCTION_LIST_PTR_PTR ppFunctionList
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)
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{
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return __ADJOIN(MODULE_NAME,C_GetFunctionList)(ppFunctionList);
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}
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#undef __ADJOIN
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EOD
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;
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select STDOUT;
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}
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