mirror of
https://github.com/RetroShare/RetroShare.git
synced 2024-12-11 00:44:27 -05:00
353 lines
7.7 KiB
C
353 lines
7.7 KiB
C
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/* Copyright (c) 2007 by Ian Piumarta
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* All rights reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the 'Software'),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, provided that the above copyright notice(s) and this
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* permission notice appear in all copies of the Software. Acknowledgement
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* of the use of this Software in supporting documentation would be
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* appreciated but is not required.
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*
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* THE SOFTWARE IS PROVIDED 'AS IS'. USE ENTIRELY AT YOUR OWN RISK.
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*
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* Last edited: 2007-05-15 10:32:09 by piumarta on emilia
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <assert.h>
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#include "tree.h"
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Node *actions= 0;
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Node *rules= 0;
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Node *thisRule= 0;
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Node *start= 0;
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FILE *output= 0;
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int actionCount= 0;
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int ruleCount= 0;
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int lastToken= -1;
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static inline Node *_newNode(int type, int size)
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{
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Node *node= calloc(1, size);
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node->type= type;
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return node;
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}
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#define newNode(T) _newNode(T, sizeof(struct T))
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Node *makeRule(char *name)
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{
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Node *node= newNode(Rule);
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node->rule.name= strdup(name);
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node->rule.id= ++ruleCount;
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node->rule.flags= 0;
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node->rule.next= rules;
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rules= node;
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return node;
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}
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Node *findRule(char *name)
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{
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Node *n;
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char *ptr;
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for (ptr= name; *ptr; ptr++) if ('-' == *ptr) *ptr= '_';
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for (n= rules; n; n= n->any.next)
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{
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assert(Rule == n->type);
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if (!strcmp(name, n->rule.name))
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return n;
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}
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return makeRule(name);
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}
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Node *beginRule(Node *rule)
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{
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actionCount= 0;
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return thisRule= rule;
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}
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void Rule_setExpression(Node *node, Node *expression)
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{
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assert(node);
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#ifdef DEBUG
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Node_print(node); fprintf(stderr, " [%d]<- ", node->type); Node_print(expression); fprintf(stderr, "\n");
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#endif
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assert(Rule == node->type);
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node->rule.expression= expression;
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if (!start || !strcmp(node->rule.name, "start"))
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start= node;
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}
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Node *makeVariable(char *name)
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{
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Node *node;
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assert(thisRule);
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for (node= thisRule->rule.variables; node; node= node->variable.next)
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if (!strcmp(name, node->variable.name))
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return node;
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node= newNode(Variable);
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node->variable.name= strdup(name);
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node->variable.next= thisRule->rule.variables;
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thisRule->rule.variables= node;
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return node;
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}
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Node *makeName(Node *rule)
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{
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Node *node= newNode(Name);
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node->name.rule= rule;
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node->name.variable= 0;
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rule->rule.flags |= RuleUsed;
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return node;
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}
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Node *makeDot(void)
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{
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return newNode(Dot);
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}
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Node *makeCharacter(char *text)
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{
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Node *node= newNode(Character);
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node->character.value= strdup(text);
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return node;
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}
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Node *makeString(char *text)
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{
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Node *node= newNode(String);
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node->string.value= strdup(text);
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return node;
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}
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Node *makeClass(char *text)
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{
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Node *node= newNode(Class);
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node->cclass.value= (unsigned char *)strdup(text);
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return node;
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}
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Node *makeAction(char *text)
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{
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Node *node= newNode(Action);
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char name[1024];
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assert(thisRule);
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sprintf(name, "_%d_%s", ++actionCount, thisRule->rule.name);
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node->action.name= strdup(name);
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node->action.text= strdup(text);
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node->action.list= actions;
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node->action.rule= thisRule;
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actions= node;
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{
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char *ptr;
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for (ptr= node->action.text; *ptr; ++ptr)
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if ('$' == ptr[0] && '$' == ptr[1])
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ptr[1]= ptr[0]= 'y';
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}
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return node;
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}
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Node *makePredicate(char *text)
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{
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Node *node= newNode(Predicate);
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node->predicate.text= strdup(text);
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return node;
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}
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Node *makeAlternate(Node *e)
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{
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if (Alternate != e->type)
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{
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Node *node= newNode(Alternate);
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assert(e);
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assert(!e->any.next);
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node->alternate.first=
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node->alternate.last= e;
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return node;
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}
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return e;
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}
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Node *Alternate_append(Node *a, Node *e)
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{
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assert(a);
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a= makeAlternate(a);
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assert(a->alternate.last);
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assert(e);
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a->alternate.last->any.next= e;
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a->alternate.last= e;
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return a;
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}
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Node *makeSequence(Node *e)
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{
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if (Sequence != e->type)
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{
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Node *node= newNode(Sequence);
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assert(e);
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assert(!e->any.next);
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node->sequence.first=
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node->sequence.last= e;
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return node;
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}
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return e;
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}
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Node *Sequence_append(Node *a, Node *e)
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{
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assert(a);
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a= makeSequence(a);
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assert(a->sequence.last);
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assert(e);
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a->sequence.last->any.next= e;
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a->sequence.last= e;
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return a;
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}
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Node *makePeekFor(Node *e)
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{
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Node *node= newNode(PeekFor);
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node->peekFor.element= e;
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return node;
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}
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Node *makePeekNot(Node *e)
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{
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Node *node= newNode(PeekNot);
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node->peekNot.element= e;
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return node;
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}
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Node *makeQuery(Node *e)
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{
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Node *node= newNode(Query);
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node->query.element= e;
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return node;
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}
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Node *makeStar(Node *e)
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{
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Node *node= newNode(Star);
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node->star.element= e;
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return node;
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}
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Node *makePlus(Node *e)
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{
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Node *node= newNode(Plus);
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node->plus.element= e;
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return node;
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}
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static Node *stack[1024];
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static Node **stackPointer= stack;
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#ifdef DEBUG
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static void dumpStack(void)
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{
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Node **p;
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for (p= stack + 1; p <= stackPointer; ++p)
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{
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fprintf(stderr, "### %d\t", p - stack);
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Node_print(*p);
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fprintf(stderr, "\n");
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}
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}
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#endif
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Node *push(Node *node)
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{
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assert(node);
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assert(stackPointer < stack + 1023);
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#ifdef DEBUG
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dumpStack(); fprintf(stderr, " PUSH "); Node_print(node); fprintf(stderr, "\n");
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#endif
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return *++stackPointer= node;
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}
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Node *top(void)
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{
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assert(stackPointer > stack);
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return *stackPointer;
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}
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Node *pop(void)
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{
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assert(stackPointer > stack);
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#ifdef DEBUG
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dumpStack(); fprintf(stderr, " POP\n");
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#endif
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return *stackPointer--;
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}
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static void Node_fprint(FILE *stream, Node *node)
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{
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assert(node);
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switch (node->type)
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{
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case Rule: fprintf(stream, " %s", node->rule.name); break;
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case Name: fprintf(stream, " %s", node->name.rule->rule.name); break;
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case Dot: fprintf(stream, " ."); break;
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case Character: fprintf(stream, " '%s'", node->character.value); break;
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case String: fprintf(stream, " \"%s\"", node->string.value); break;
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case Class: fprintf(stream, " [%s]", node->cclass.value); break;
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case Action: fprintf(stream, " { %s }", node->action.text); break;
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case Predicate: fprintf(stream, " ?{ %s }", node->action.text); break;
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case Alternate: node= node->alternate.first;
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fprintf(stream, " (");
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Node_fprint(stream, node);
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while ((node= node->any.next))
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{
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fprintf(stream, " |");
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Node_fprint(stream, node);
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}
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fprintf(stream, " )");
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break;
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case Sequence: node= node->sequence.first;
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fprintf(stream, " (");
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Node_fprint(stream, node);
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while ((node= node->any.next))
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Node_fprint(stream, node);
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fprintf(stream, " )");
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break;
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case PeekFor: fprintf(stream, "&"); Node_fprint(stream, node->query.element); break;
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case PeekNot: fprintf(stream, "!"); Node_fprint(stream, node->query.element); break;
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case Query: Node_fprint(stream, node->query.element); fprintf(stream, "?"); break;
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case Star: Node_fprint(stream, node->query.element); fprintf(stream, "*"); break;
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case Plus: Node_fprint(stream, node->query.element); fprintf(stream, "+"); break;
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default:
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fprintf(stream, "\nunknown node type %d\n", node->type);
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exit(1);
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}
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}
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void Node_print(Node *node) { Node_fprint(stderr, node); }
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static void Rule_fprint(FILE *stream, Node *node)
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{
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assert(node);
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assert(Rule == node->type);
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fprintf(stream, "%s.%d =", node->rule.name, node->rule.id);
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if (node->rule.expression)
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Node_fprint(stream, node->rule.expression);
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else
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fprintf(stream, " UNDEFINED");
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fprintf(stream, " ;\n");
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}
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void Rule_print(Node *node) { Rule_fprint(stderr, node); }
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