229 lines
		
	
	
	
		
			5.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			229 lines
		
	
	
	
		
			5.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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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: Hans van Staveren
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 */
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#include <assert.h>
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#include "param.h"
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#include "types.h"
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#include "tes.h"
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#include <em_spec.h>
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#include <em_pseu.h>
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#include "alloc.h"
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#include "util.h"
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#include "putline.h"
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#include "line.h"
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#include "reg.h"
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#include "lookup.h"
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#include "proinf.h"
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#include "ext.h"
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/* External definitions */
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extern void flow(void);
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extern void backward(void);
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extern int peephole(void);
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static void relabel(void)
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{
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	register num_p *npp, np, tp;
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	register num_p repl, ttp;
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	/*
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	 * For each label find its final destination after crossjumping.
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	 * Care has to be taken to prevent a loop in the program to
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	 * cause same in the optimizer.
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	 */
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	for (npp = curpro.numhash; npp < &curpro.numhash[NNUMHASH]; npp++)
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		for (np = *npp; np != (num_p) 0; np = np->n_next)
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		{
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			assert(
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					! np->n_line || ((np->n_line->l_instr&BMASK) == op_lab && np->n_line->l_a.la_np == np));
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			for (tp = np; (tp->n_flags & (NUMKNOWN | NUMMARK)) == 0;
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					tp = tp->n_repl)
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				tp->n_flags |= NUMMARK;
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			repl = tp->n_repl;
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			for (tp = np; tp->n_flags & NUMMARK; tp = ttp)
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			{
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				ttp = tp->n_repl;
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				tp->n_repl = repl;
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				tp->n_flags &= ~ NUMMARK;
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				tp->n_flags |= NUMKNOWN;
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			}
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		}
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	for (npp = curpro.numhash; npp < &curpro.numhash[NNUMHASH]; npp++)
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		for (np = *npp; np != (num_p) 0; np = np->n_next)
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		{
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			np->n_flags &= ~(NUMKNOWN | NUMSCAN | NUMREACH);
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			np->n_jumps = 0;
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		}
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}
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static void symknown(void)
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{
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	register sym_p *spp, sp;
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	for (spp = symhash; spp < &symhash[NSYMHASH]; spp++)
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		for (sp = *spp; sp != (sym_p) 0; sp = sp->s_next)
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			if (sp->s_flags & SYMSEEN)
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				sp->s_flags |= SYMKNOWN;
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}
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static void cleanlocals(void)
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{
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	register num_p *npp, np, tp;
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	for (npp = curpro.numhash; npp < &curpro.numhash[NNUMHASH]; npp++)
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	{
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		np = *npp;
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		while (np != (num_p) 0)
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		{
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			tp = np->n_next;
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			oldnum(np);
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			np = tp;
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		}
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		*npp = (num_p) 0;
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	}
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}
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static void checklocs(void)
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{
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	register num_p *npp, np;
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	for (npp = curpro.numhash; npp < &curpro.numhash[NNUMHASH]; npp++)
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		for (np = *npp; np != (num_p) 0; np = np->n_next)
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			if (np->n_line == (line_p) 0)
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				error("local label %u undefined", (unsigned) np->n_number);
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}
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static offset align(offset count, offset alignment)
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{
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	assert(alignment == 1 || alignment == 2 || alignment == 4);
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	return ((count + alignment - 1) & ~(alignment - 1));
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}
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static void symvalue(void)
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{
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	register line_p lp;
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	register sym_p sp;
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	register arg_p ap;
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	register argb_p abp;
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	short curfrag = 0;
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	offset count;
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	for (lp = pseudos; lp != (line_p) 0; lp = lp->l_next)
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		switch (lp->l_instr & BMASK)
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		{
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			default:
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				assert(FALSE);
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				break;
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			case ps_sym:
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				sp = lp->l_a.la_sp;
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				if (sp->s_frag != curfrag)
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				{
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					count = 0;
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					curfrag = sp->s_frag;
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				}
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				count = align(count, wordsize);
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				sp->s_value = count;
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				break;
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			case ps_bss:
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			case ps_hol:
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				/* nothing to do, all bss pseudos are in diff frags */
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			case ps_mes:
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				break;
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			case ps_con:
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			case ps_rom:
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				for (ap = lp->l_a.la_arg; ap != (arg_p) 0; ap = ap->a_next)
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					switch (ap->a_typ)
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					{
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						default:
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							assert(FALSE);
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						case ARGOFF:
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							count = align(count, wordsize) + wordsize;
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							break;
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						case ARGNUM:
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						case ARGSYM:
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						case ARGVAL:
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							count = align(count, wordsize) + pointersize;
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							break;
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						case ARGICN:
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						case ARGUCN:
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						case ARGFCN:
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							if (ap->a_a.a_con.ac_length < wordsize)
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								count = align(count,
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										(offset) ap->a_a.a_con.ac_length);
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							else
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								count = align(count, wordsize);
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							count += ap->a_a.a_con.ac_length;
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							break;
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						case ARGSTR:
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							for (abp = &ap->a_a.a_string; abp != (argb_p) 0;
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									abp = abp->ab_next)
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								count += abp->ab_index;
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							break;
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					}
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		}
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}
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static void do_tes(void)
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{
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	register line_p insptr = instrs, oldlin = NULL, oldlin2 = NULL;
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	init_state();
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	tes_pseudos();
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	while (insptr != NULL)
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	{
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		tes_instr(insptr, oldlin, oldlin2);
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		oldlin2 = oldlin;
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		oldlin = insptr;
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		insptr = insptr->l_next;
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	}
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}
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void process(void)
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{
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	if (wordsize == 0 || pointersize == 0)
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		error("No MES EMX encountered");
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	backward(); /* reverse and cleanup list */
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	symknown(); /* symbol scope is now known */
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	if (!nflag)
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		symvalue(); /* give symbols value */
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	if (prodepth != 0)
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	{
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		if (!nflag)
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		{
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			int npasses = 0;
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			bool madeopt;
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			checklocs(); /* check definition of locals */
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			do
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			{
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				madeopt = peephole(); /* local optimization */
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				relabel(); /* relabel local labels */
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				flow(); /* throw away unreachable code */
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			} while (madeopt && ++npasses < 5000);
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			assert(!madeopt);
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		}
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		do_tes(); /* top elt. size computation phase */
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		outpro(); /* generate PRO pseudo */
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		outregs(); /* generate MES ms_reg pseudos */
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		outtes(); /* generate MES ms_tes pseudos */
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	}
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	putlines(pseudos); /* pseudos first */
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	if (prodepth != 0)
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	{
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		putlines(instrs); /* instructions next */
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		outend(); /* generate END pseudo */
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		cleanlocals(); /* forget instruction labels */
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	}
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	else if (instrs != (line_p) 0)
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		error("instructions outside procedure");
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#ifdef COREDEBUG
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	coreverbose();
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#endif
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}
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