1993-03-21 12:45:37 +03:00
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/********************************************
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jmp.c
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copyright 1991, Michael D. Brennan
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This is a source file for mawk, an implementation of
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the AWK programming language.
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Mawk is distributed without warranty under the terms of
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the GNU General Public License, version 2, 1991.
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********************************************/
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/* $Log: jmp.c,v $
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1993-07-03 03:56:52 +04:00
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/* Revision 1.2 1993/07/02 23:57:31 jtc
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/* Updated to mawk 1.1.4
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1993-03-21 12:45:37 +03:00
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/*
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1993-07-03 03:56:52 +04:00
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* Revision 5.1 1991/12/05 07:56:10 brennan
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1993-03-21 12:45:37 +03:00
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* 1.1 pre-release
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1993-07-03 03:56:52 +04:00
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*
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1993-03-21 12:45:37 +03:00
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*/
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/* this module deals with back patching jumps, breaks and continues,
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and with save and restoring code when we move code.
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There are three stacks. If we encounter a compile error, the
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stacks are frozen, i.e., we do not attempt error recovery
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on the stacks
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*/
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#include "mawk.h"
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#include "jmp.h"
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#include "code.h"
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#include "sizes.h"
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#include "init.h"
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#include "memory.h"
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extern unsigned compile_error_count ;
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#define error_state (compile_error_count>0)
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/*---------- back patching jumps ---------------*/
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typedef struct jmp {
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struct jmp *link ;
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INST *source ;
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} JMP ;
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static JMP *jmp_top ;
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void code_jmp( jtype, target)
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int jtype ;
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INST *target ;
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{
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register INST *source ;
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if (error_state) return ;
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code1(jtype) ;
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source = code_ptr++ ;
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if ( target ) source->op = target - source ;
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else /* save source on jump stack */
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{
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register JMP *p = (JMP*) zmalloc(sizeof(JMP)) ;
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p->source = source ;
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p->link = jmp_top ;
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jmp_top = p ;
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}
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}
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void patch_jmp(target) /* patch a jump on the jmp_stack */
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INST *target ;
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{ register JMP *p ;
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if ( ! error_state )
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{
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#ifdef DEBUG
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if (!jmp_top) bozo("jmp stack underflow") ;
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#endif
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p = jmp_top ; jmp_top = p->link ;
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p->source->op = target - p->source ;
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zfree(p, sizeof(JMP)) ;
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}
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}
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/*-- break and continue -------*/
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typedef struct bc {
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struct bc *link ; /* stack as linked list */
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int type ; /* 'B' or 'C' or mark start with 0 */
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INST *source ; /* position of _JMP */
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} BC ;
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static BC *bc_top ;
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void BC_new() /* mark the start of a loop */
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{
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BC_insert(0, (INST*) 0 ) ;
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}
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void BC_insert(type, address)
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int type ; INST *address ;
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{ register BC * p ;
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if ( error_state ) return ;
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if ( type && ! bc_top )
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{
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compile_error("%s statement outside of loop",
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type == 'B' ? "break" : "continue" ) ;
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return ;
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}
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else
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{
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p = (BC*) zmalloc(sizeof(BC)) ;
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p->type = type ;
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p->source = address ;
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p->link = bc_top ;
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bc_top = p ;
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}
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}
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void BC_clear(B_address, C_address)
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/* patch all break and continues for one loop */
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INST *B_address, *C_address ;
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{ register BC *p , *q ;
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if (error_state) return ;
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p = bc_top ;
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/* pop down to the mark node */
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while ( p->type )
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{
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p->source->op = (p->type == 'B' ? B_address : C_address)
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- p->source ;
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q = p ; p = p->link ; zfree(q, sizeof(BC)) ;
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}
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/* remove the mark node */
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bc_top = p->link ;
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zfree(p, sizeof(BC)) ;
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}
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/*----- moving code --------------------------*/
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/* a stack to hold some pieces of code while
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reorganizing loops .
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This used to be used on all loops. Now it is used
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only for the 3rd expression on a for loop and
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for the fist part of a range pattern
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*/
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typedef struct mc { /* mc -- move code */
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struct mc *link ;
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INST *code ;
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unsigned len ;
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} MC ;
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static MC *mc_top ;
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void code_push( code, len)
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INST *code ; unsigned len ;
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{
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register MC *p ;
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if (! error_state )
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{
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p = (MC*) zmalloc(sizeof(MC)) ;
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p->len = len ;
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p->link = mc_top ;
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mc_top = p ;
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if ( len )
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{
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p->code = (INST*) zmalloc(sizeof(INST)*len) ;
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(void) memcpy(p->code, code, SIZE_T(sizeof(INST)*len)) ;
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}
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}
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}
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/* copy the code at the top of the mc stack to target.
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return the number of INSTs moved */
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unsigned code_pop(target)
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INST *target ;
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{
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register MC *p ;
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unsigned retval ;
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if (error_state) return 0 ;
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#ifdef DEBUG
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if ( ! mc_top ) bozo("mc underflow") ;
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#endif
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p = mc_top ; mc_top = p->link ;
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if ( retval = p->len )
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{
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(void) memcpy(target, p->code, SIZE_T(p->len*sizeof(INST))) ;
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zfree(p->code, p->len*sizeof(INST)) ;
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}
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zfree(p, sizeof(MC)) ;
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return retval ;
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}
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