461 lines
7.7 KiB
C
461 lines
7.7 KiB
C
/* $Header$ */
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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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/* @(#)mach5.c 1.16 */
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/*
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* Motorola 68000/68010 auxiliary functions
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*/
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ea_1(sz, bits)
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{
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register flag;
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if (mrg_1 > 074)
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serror("no specials");
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if ((flag = eamode[mrg_1>>3]) == 0)
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if ((flag = eamode[010 + (mrg_1&07)]) == 0)
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flag = eamode[015 + (sz>>6)];
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if ((mrg_1 & 070) == 010)
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checksize(sz, 2|4);
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bits &= ~flag;
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if (bits)
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serror("bad addressing categorie");
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if (flag & FITW)
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Xfit (
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! fitw(exp_1.val)
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&&
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(mrg_1 != 074 || ! fit16(exp_1.val))
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) ;
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if (flag & FITB) {
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Xfit (
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! fitb(exp_1.val)
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&&
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(mrg_1 != 074 || ! fit8(exp_1.val))
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);
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if (mrg_1 == 074)
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exp_1.val &= 0xFF;
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}
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#ifdef RELOCATION
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RELOMOVE(relonami, rel_1);
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if (flag & ~0xFF)
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newrelo(exp_1.typ, (flag>>8) | RELBR | RELWR);
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#endif
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if (flag & PUTL)
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emit4(exp_1.val);
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if (flag & PUTW)
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emit2(loww(exp_1.val));
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}
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ea_2(sz, bits)
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{
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mrg_1 = mrg_2;
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exp_1 = exp_2;
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RELOMOVE(rel_1, rel_2);
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ea_1(sz, bits);
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}
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index(hibyte)
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{
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Xfit(fitb(exp_2.val));
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exp_2.val = hibyte | lowb(exp_2.val);
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}
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checksize(sz, bits)
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{
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if ((bits & (1 << (sz>>6))) == 0)
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serror("bad size");
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}
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test68010()
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{
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if (model != 1)
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warning("68010 instruction");
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}
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badoperand()
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{
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serror("bad operands");
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}
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shift_op(opc, sz)
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{
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if (mrg_1 < 010 && mrg_2 < 010) {
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emit2((opc&0170470) | sz | mrg_1<<9 | mrg_2);
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return;
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}
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if (exp_1.typ != S_ABS || mrg_1 != 074) {
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badoperand();
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return;
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}
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if (mrg_2 < 010) {
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Xfit(fit3(exp_1.val));
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emit2((opc&0170430) | sz | low3(exp_1.val)<<9 | mrg_2);
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return;
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}
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checksize(sz, 2);
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Xfit(exp_1.val == 1);
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emit2((opc&0177700) | mrg_2);
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ea_2(SIZE_W, MEM|ALT);
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}
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bitop(opc)
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{
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register bits;
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bits = DTA|ALT;
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if (opc == 0 && (mrg_1 < 010 || mrg_2 != 074))
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bits = DTA;
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if (mrg_1 < 010) {
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emit2(opc | 0400 | mrg_1<<9 | mrg_2);
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ea_2(0, bits);
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return;
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}
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if (mrg_1 == 074) {
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emit2(opc | 04000 | mrg_2);
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ea_1(SIZE_W, 0);
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ea_2(0, bits);
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return;
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}
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badoperand();
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}
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add(opc, sz)
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{
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if ((mrg_2 & 070) == 010)
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checksize(sz, 2|4);
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if (
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mrg_1 == 074
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&&
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small(
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exp_1.typ==S_ABS && fit3(exp_1.val),
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sz==SIZE_L ? 4 : 2
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)
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) {
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emit2((opc&0400) | 050000 | low3(exp_1.val)<<9 | sz | mrg_2);
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ea_2(sz, ALT);
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return;
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}
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if (mrg_1 == 074 && (mrg_2 & 070) != 010) {
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emit2((opc&03000) | sz | mrg_2);
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ea_1(sz, 0);
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ea_2(sz, DTA|ALT);
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return;
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}
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if ((mrg_2 & 070) == 010) {
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emit2((opc&0170300) | (mrg_2&7)<<9 | sz<<1 | mrg_1);
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ea_1(sz, 0);
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return;
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}
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if (to_dreg(opc, sz, 0))
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return;
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if (from_dreg(opc, sz, ALT|MEM))
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return;
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badoperand();
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}
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and(opc, sz)
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{
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if (mrg_1 == 074 && mrg_2 >= 076) { /* ccr or sr */
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if (sz != SIZE_NON)
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checksize(sz, mrg_2==076 ? 1 : 2);
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else
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sz = (mrg_2==076 ? SIZE_B : SIZE_W);
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emit2((opc&07400) | sz | 074);
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ea_1(sz, 0);
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return;
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}
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if (sz == SIZE_NON)
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sz = SIZE_DEF;
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if (mrg_1 == 074) {
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emit2((opc&07400) | sz | mrg_2);
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ea_1(sz, 0);
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ea_2(sz, DTA|ALT);
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return;
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}
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if ((opc & 010000) == 0 && to_dreg(opc, sz, DTA))
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return;
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if (from_dreg(opc, sz, (opc & 010000) ? DTA|ALT : ALT|MEM))
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return;
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badoperand();
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}
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to_dreg(opc, sz, bits)
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{
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if ((mrg_2 & 070) != 000)
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return(0);
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emit2((opc & 0170000) | sz | (mrg_2&7)<<9 | mrg_1);
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ea_1(sz, bits);
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return(1);
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}
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from_dreg(opc, sz, bits)
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{
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if ((mrg_1 & 070) != 000)
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return(0);
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emit2((opc & 0170000) | sz | (mrg_1&7)<<9 | 0400 | mrg_2);
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ea_2(sz, bits);
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return(1);
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}
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cmp(sz)
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{
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register opc;
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if ((mrg_1&070) == 030 && (mrg_2&070) == 030) {
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emit2(0130410 | sz | (mrg_1&7) | (mrg_2&7)<<9);
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return;
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}
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if (mrg_1 == 074 && (mrg_2 & 070) != 010) {
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emit2(06000 | sz | mrg_2);
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ea_1(sz, 0);
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ea_2(sz, DTA|ALT);
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return;
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}
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if (mrg_2 < 020) {
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if (mrg_2 >= 010) {
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checksize(sz, 2|4);
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opc = 0130300 | sz<<1;
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mrg_2 &= 7;
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} else
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opc = 0130000 | sz;
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emit2(opc | mrg_2<<9 | mrg_1);
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ea_1(sz, 0);
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return;
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}
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badoperand();
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}
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move(sz)
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{
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register opc;
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if (mrg_1 > 074 || mrg_2 > 074) {
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move_special(sz);
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return;
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}
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if (sz == SIZE_NON)
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sz = SIZE_DEF;
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if (
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mrg_2<010
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&&
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mrg_1==074
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&&
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sz==SIZE_L
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&&
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small(exp_1.typ==S_ABS && fitb(exp_1.val), 4)
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) {
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emit2(070000 | mrg_2<<9 | lowb(exp_1.val));
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return;
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}
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switch (sz) {
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case SIZE_B: opc = 010000; break;
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case SIZE_W: opc = 030000; break;
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case SIZE_L: opc = 020000; break;
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}
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emit2(opc | mrg_1 | (mrg_2&7)<<9 | (mrg_2&070)<<3);
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ea_1(sz, 0);
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ea_2(sz, ALT);
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}
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move_special(sz)
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{
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if (mrg_2 >= 076) {
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if (sz != SIZE_NON)
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checksize(sz, 2);
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emit2(042300 | (mrg_2==076?0:01000) | mrg_1);
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ea_1(SIZE_W, DTA);
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return;
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}
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if (mrg_1 >= 076) {
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if (mrg_1 == 076)
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test68010();
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if (sz != SIZE_NON)
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checksize(sz, 2);
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emit2(040300 | (mrg_1==076?01000:0) | mrg_2);
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ea_2(SIZE_W, DTA|ALT);
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return;
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}
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if (sz != SIZE_NON)
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checksize(sz, 4);
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if (mrg_1==075 && (mrg_2&070)==010) {
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emit2(047150 | (mrg_2&7));
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return;
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}
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if (mrg_2==075 && (mrg_1&070)==010) {
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emit2(047140 | (mrg_1&7));
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return;
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}
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badoperand();
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}
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movem(dr, sz, regs)
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{
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register i;
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register r;
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if ((mrg_2>>3) == 04) {
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r = regs; regs = 0;
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for (i = 0; i < 16; i++) {
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regs <<= 1;
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if (r & 1)
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regs++;
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r >>= 1;
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}
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}
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checksize(sz, 2|4);
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if ((mrg_2>>3)-3 == dr)
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badoperand();
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emit2(044200 | dr<<10 | (sz & 0200) >> 1 | mrg_2);
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emit2(regs);
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i = CTR;
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if (dr == 0 && (mrg_2&070) == 040)
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i = MEM;
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if (dr != 0 && (mrg_2&070) == 030)
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i = MEM;
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if (dr == 0)
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i |= ALT;
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ea_2(sz, i);
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}
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movep(sz)
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{
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checksize(sz, 2|4);
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if (mrg_1<010 && (mrg_2&070)==050) {
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emit2(0610 | (sz & 0200)>>1 | mrg_1<<9 | (mrg_2&7));
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ea_2(sz, 0);
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return;
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}
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if (mrg_2<010 && (mrg_1&070)==050) {
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emit2(0410 | (sz & 0200)>>1 | mrg_2<<9 | (mrg_1&7));
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ea_1(sz, 0);
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return;
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}
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badoperand();
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}
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branch(opc, exp)
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expr_t exp;
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{
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register sm;
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exp.val -= (DOTVAL + 2);
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if ((pass == PASS_2)
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&&
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(exp.val > 0)
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&&
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((exp.typ & S_DOT) == 0)
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)
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exp.val -= DOTGAIN;
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sm = fitb(exp.val);
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if ((exp.typ & ~S_DOT) != DOTTYP)
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sm = 0;
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if (small(sm,2)) {
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if (exp.val == 0)
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emit2(047161); /* NOP */
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else
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emit2(opc | lowb(exp.val));
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} else {
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Xfit(fitw(exp.val));
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emit2(opc);
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#ifdef RELOCATION
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newrelo(exp.typ, RELPC|RELO2|RELBR|RELWR);
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#endif
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emit2(loww(exp.val));
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}
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}
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ea5x73(rg, sz)
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{
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if ((exp_2.typ & ~S_DOT) == DOTTYP) {
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/* pc relative with index */
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if (sz == SIZE_NON)
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sz = SIZE_DEF;
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exp_2.val -= (DOTVAL + 2);
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mrg_2 = 073;
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checksize(sz, 2|4);
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index(rg<<12 | (sz&0200)<<4);
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return;
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}
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/* displacement */
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mrg_2 = 050 | rg;
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if (pass == PASS_1) /* tricky, maybe 073 in next passes */
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return;
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if ((rg & 010) == 0 || sz != SIZE_NON)
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badoperand();
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}
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ea707172(sz)
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{
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register sm;
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mrg_2 = 071;
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switch (sz) {
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case SIZE_B:
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badoperand();
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case SIZE_W:
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mrg_2 = 070;
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case SIZE_L:
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return;
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case SIZE_NON:
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break;
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}
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if (pass == PASS_1) {
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/*
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* reserve a bit in the bittable
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* in the following passes one call to small()
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* will be done, but we don't know which one
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* since exp_2.typ cannot be trusted
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*/
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small(0, 2);
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return;
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}
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if ((exp_2.typ & ~S_DOT) == DOTTYP) {
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sm = fitw(exp_2.val-(DOTVAL+2));
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sm = small(sm, 2);
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if (sm) { /* pc relative */
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exp_2.val -= (DOTVAL+2);
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mrg_2 = 072;
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}
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} else {
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sm = fitw(exp_2.val);
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#ifdef ASLD
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if (exp_2.typ & S_VAR)
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sm = 0;
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#else
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if (exp_2.typ != S_ABS)
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sm = 0;
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#endif ASLD
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sm = small(sm, 2);
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if (sm)
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mrg_2 = 070;
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}
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}
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ea6x(rg, ir, sz)
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{
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mrg_2 = 060 | rg;
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checksize(sz, 2|4);
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index(ir<<12 | (sz&0200)<<4);
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}
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ea72()
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{
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mrg_2 = 072;
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exp_2.val -= (DOTVAL + 2);
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}
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ea73(ri, sz)
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{
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mrg_2 = 073;
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exp_2.val -= (DOTVAL + 2);
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checksize(sz, 2|4);
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index(ri<<12 | (sz&0200)<<4);
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}
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Xnofit()
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{
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if (pass == PASS_3) serror("too big");
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}
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