238 lines
4.4 KiB
Plaintext
238 lines
4.4 KiB
Plaintext
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/*
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* (c) copyright 1987 by the Vrije Universiteit, Amsterdam, The Netherlands.
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* See the copyright notice in the ACK home directory, in the file "Copyright".
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*
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* Author: Ceriel J.H. Jacobs
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*/
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/* O V E R A L L S T R U C T U R E */
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/* stripped down version of the one in the Modula-2 compiler */
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/* $Header$ */
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/*
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The grammar as given by Wirth is already almost LL(1); the
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main problem is that the full form of a qualified designator
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may be:
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[ module_ident '.' ]* IDENT [ '.' field_ident ]*
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which is quite confusing to an LL(1) parser. Rather than
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resorting to context-sensitive techniques, I have decided
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to render this as:
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IDENT [ '.' IDENT ]*
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on the grounds that it is quite natural to consider the first
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IDENT to be the name of the object and regard the others as
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field identifiers.
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*/
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{
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#include "main.h"
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#include "idf.h"
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#include "f_info.h"
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#include "LLlex.h"
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struct lnk *
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new_lnk()
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{
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static struct lnk *p;
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static int cnt;
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extern char *calloc();
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if (cnt--) return p++;
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p = (struct lnk *)calloc(50, sizeof(struct lnk));
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cnt = 49;
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return p++;
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}
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}
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%lexical LLlex;
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%start CompUnit, CompilationUnit;
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%start DefModule, DefinitionModule;
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ModuleDeclaration :
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MODULE IDENT
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priority
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';'
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import((struct lnk **) 0)*
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export?
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block
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IDENT
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;
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priority:
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[
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'[' ConstExpression ']'
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]
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;
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export :
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EXPORT
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[
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QUALIFIED
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]
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IdentList ';'
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;
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import(register struct lnk **p;)
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{
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register struct idf *fromid = 0;
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struct idf *id;
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}
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:
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{ if (p) while (*p) p = &((*p)->lnk_next); }
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[ FROM
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identifier(&id) { fromid = id;
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if (p) {
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if (AddToList(fromid->id_text, ".def")) {
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*p = new_lnk();
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(*p)->lnk_imp = fromid;
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}
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}
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}
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]?
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IMPORT
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identifier(&id) { if (! fromid && p) {
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if (AddToList(id->id_text, ".def")) {
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*p = new_lnk();
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(*p)->lnk_imp = id;
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p = &((*p)->lnk_next);
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}
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}
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}
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[
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',' identifier(&id)
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{ if (! fromid && p) {
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if (AddToList(id->id_text, ".def")) {
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*p = new_lnk();
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(*p)->lnk_imp = id;
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p = &((*p)->lnk_next);
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}
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}
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}
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]*
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';'
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/*
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When parsing a global module, this is the place where we must
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read already compiled definition modules.
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If the FROM clause is present, the identifier in it is a module
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name, otherwise the names in the import list are module names.
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*/
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;
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DefinitionModule
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{
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struct idf *id;
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extern char *strrindex();
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}
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:
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DEFINITION
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MODULE identifier(&id)
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{ if (! ForeignFlag) {
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AddToList(id->id_text, ".mod");
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}
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if (! id->id_type) {
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id->id_type = DEFINITION;
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}
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else if (id->id_type != IMPLEMENTATION) {
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error("multiple declaration for module %s",
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id->id_text);
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}
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if (! id->id_dir) {
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id->id_dir = WorkingDir;
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}
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else if (strcmp(id->id_dir, WorkingDir)) {
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Gerror("definition and implementation of module %s reside in different directories", id->id_text);
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}
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id->id_def = strrindex(FileName, '/');
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if (! id->id_def) id->id_def = FileName;
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else (id->id_def)++;
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CurrentArg->a_idf = id;
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}
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';'
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import(&(id->id_defimports))*
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[
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export
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/* empty */
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]
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definition* END IDENT
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'.'
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;
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definition :
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CONST [ %persistent ConstantDeclaration ';' ]*
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TYPE
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[ %persistent
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IDENT
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[ '=' type
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/*
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Here, the exported type has a hidden implementation.
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The export is said to be opaque.
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It is restricted to pointer types.
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*/
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]
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';'
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]*
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VAR [ %persistent VariableDeclaration ';' ]*
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ProcedureHeading
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';'
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;
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ProgramModule
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{
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struct idf *id;
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}
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:
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MODULE
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identifier(&id) { if (! id->id_type) {
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id->id_type = state;
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}
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else if (id->id_type != DEFINITION ||
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state != IMPLEMENTATION) {
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error("multiple declaration for module %s",
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id->id_text);
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}
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if (! id->id_dir) {
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id->id_dir = WorkingDir;
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}
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else if (strcmp(id->id_dir, WorkingDir)) {
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Gerror("definition and implementation of module %s reside in different directories", id->id_text);
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}
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CurrentArg->a_idf = id;
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}
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priority
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';' import(&(id->id_modimports))*
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block IDENT
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'.'
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;
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Module:
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DEFINITION
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{ fatal("Definition module in .mod file"); }
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| %default
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[
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IMPLEMENTATION { state = IMPLEMENTATION; }
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/* empty */ { state = PROGRAM; }
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]
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ProgramModule
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;
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CompilationUnit:
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Module
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;
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identifier(struct idf **id;):
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IDENT
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{ extern char idfbuf[];
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*id = str2idf(idfbuf);
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}
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;
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