2 // This file is part of the Cyclone 68000 Emulator
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4 // Copyright (c) 2004,2011 FinalDave (emudave (at) gmail.com)
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5 // Copyright (c) 2005-2011 GraÅžvydas "notaz" Ignotas (notasas (at) gmail.com)
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7 // This code is licensed under the GNU General Public License version 2.0 and the MAME License.
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8 // You can choose the license that has the most advantages for you.
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10 // SVN repository can be found at http://code.google.com/p/cyclone68000/
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15 // --------------------- Opcodes 0x0000+ ---------------------
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16 // Emit an Ori/And/Sub/Add/Eor/Cmp Immediate opcode, 0000ttt0 ssaaaaaa
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22 const char *shiftstr="";
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24 // Get source and target EA
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25 type=(op>>9)&7; if (type==4 || type>=7) return 1;
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26 size=(op>>6)&3; if (size>=3) return 1;
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30 // See if we can do this opcode:
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31 if (EaCanRead(tea,size)==0) return 1;
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32 if (EaCanWrite(tea)==0 || EaAn(tea)) return 1;
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34 use=OpBase(op,size);
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35 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
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37 OpStart(op, sea, tea); Cycles=4;
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39 // imm must be read first
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40 EaCalcRead(-1,10,sea,size,0,earwt_msb_dont_care);
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41 EaCalcRead((type!=6)?11:-1,0,tea,size,0x003f,earwt_msb_dont_care);
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43 if (size<2) shiftstr=(char *)(size?",asl #16":",asl #24");
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44 if (size<2) ot(" mov r10,r10,asl #%i\n",size?16:24);
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46 ot(";@ Do arithmetic:\n");
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48 if (type==0) ot(" orrs r1,r10,r0%s\n",shiftstr);
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49 if (type==1) ot(" ands r1,r10,r0%s\n",shiftstr);
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50 if (type==2||type==6)
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51 ot(" rsbs r1,r10,r0%s ;@ Defines NZCV\n",shiftstr);
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52 if (type==3) ot(" adds r1,r10,r0%s ;@ Defines NZCV\n",shiftstr);
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53 if (type==5) ot(" eors r1,r10,r0%s\n",shiftstr);
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55 if (type< 2) OpGetFlagsNZ(1); // Ori/And
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56 if (type==2) OpGetFlags(1,1); // Sub: Subtract/X-bit
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57 if (type==3) OpGetFlags(0,1); // Add: X-bit
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58 if (type==5) OpGetFlagsNZ(1); // Eor
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59 if (type==6) OpGetFlags(1,0); // Cmp: Subtract
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64 EaWrite(11, 1, tea,size,0x003f,earwt_shifted_up);
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70 if (size>=2 && tea<0x10) Cycles+=2;
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74 if (size>=2) Cycles+=4;
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75 if (tea>=8) Cycles+=4;
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76 if (type==1 && size>=2 && tea<8) Cycles-=2;
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84 // --------------------- Opcodes 0x5000+ ---------------------
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87 // 0101nnnt xxeeeeee (nnn=#8,1-7 t=addq/subq xx=size, eeeeee=EA)
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88 int num=0,type=0,size=0,ea=0;
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93 num =(op>>9)&7; if (num==0) num=8;
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95 size=(op>>6)&3; if (size>=3) return 1;
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98 // See if we can do this opcode:
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99 if (EaCanRead (ea,size)==0) return 1;
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100 if (EaCanWrite(ea) ==0) return 1;
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101 if (size == 0 && EaAn(ea) ) return 1;
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103 use=OpBase(op,size,1);
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105 if (num!=8) use|=0x0e00; // If num is not 8, use same handler
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106 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
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110 if(type==0&&size==1) Cycles=ea<0x10?4:8;
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111 if(size>=2) Cycles=ea<0x10?8:12;
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113 if (size>0 && (ea&0x38)==0x08) size=2; // addq.w #n,An is also 32-bit
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115 EaCalcRead(11,0,ea,size,0x003f,earwt_msb_dont_care);
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117 shift=32-(8<<size);
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123 ot(" and r2,r8,#0x0e00 ;@ Get quick value\n");
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125 if (lsr>=0) sprintf(count,"r2,lsr #%d", lsr);
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126 else sprintf(count,"r2,lsl #%d", -lsr);
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132 sprintf(count,"#0x%.4x",8<<shift);
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135 if (size<2) ot(" mov r0,r0,asl #%d\n\n",size?16:24);
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137 if (type==0) ot(" adds r1,r0,%s\n",count);
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138 if (type==1) ot(" subs r1,r0,%s\n",count);
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140 if ((ea&0x38)!=0x08) OpGetFlags(type,1);
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143 EaWrite(11, 1, ea,size,0x003f,earwt_shifted_up);
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150 // --------------------- Opcodes 0x8000+ ---------------------
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151 // 1t0tnnnd xxeeeeee (tt=type:or/sub/and/add xx=size, eeeeee=EA)
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152 int OpArithReg(int op)
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155 int type=0,size=0,dir=0,rea=0,ea=0;
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156 const char *asl="";
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157 const char *strop=0;
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161 dir =(op>> 8)&1; // er,re
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162 size=(op>> 6)&3; if (size>=3) return 1;
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165 if (dir && ea<0x10) return 1; // addx/subx opcode
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167 // See if we can do this opcode:
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168 if (dir==0 && EaCanRead (ea,size)==0) return 1;
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169 if (dir && EaCanWrite(ea)==0) return 1;
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170 if ((size==0||!(type&1))&&EaAn(ea)) return 1;
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172 use=OpBase(op,size);
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173 use&=~0x0e00; // Use same opcode for Dn
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174 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
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176 OpStart(op,ea); Cycles=4;
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178 EaCalcRead(dir?11:-1,0,ea,size,0x003f,earwt_msb_dont_care);
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180 EaCalcRead(dir?-1:11,1,rea,size,0x0e00,earwt_msb_dont_care);
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182 ot(";@ Do arithmetic:\n");
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183 if (type==0) strop = "orrs";
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184 if (type==1) strop = (char *) (dir ? "subs" : "rsbs");
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185 if (type==4) strop = "ands";
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186 if (type==5) strop = "adds";
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188 if (size==0) asl=",asl #24";
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189 if (size==1) asl=",asl #16";
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191 if (size<2) ot(" mov r0,r0%s\n",asl);
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192 ot(" %s r1,r0,r1%s\n",strop,asl);
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194 if (type&1) OpGetFlags(type==1,type&1); // add/subtract
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195 else OpGetFlagsNZ(1);
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198 ot(";@ Save result:\n");
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199 if (size<2) ot(" mov r1,r1,asr #%d\n",size?16:24);
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200 if (dir) EaWrite(11, 1, ea,size,0x003f,earwt_msb_dont_care);
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201 else EaWrite(11, 1,rea,size,0x0e00,earwt_msb_dont_care);
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204 if(ea<8) Cycles=(size>=2)?8:4; else Cycles+=(size>=2)?26:14;
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207 if(size>=2) Cycles+=4;
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211 if(ea<0x10||ea==0x3c) Cycles+=2;
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220 // --------------------- Opcodes 0x80c0+ ---------------------
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223 // Div/Mul: 1m00nnns 11eeeeee (m=Mul, nnn=Register Dn, s=signed, eeeeee=EA)
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224 int type=0,rea=0,sign=0,ea=0;
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227 type=(op>>14)&1; // div/mul
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232 // See if we can do this opcode:
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233 if (EaCanRead(ea,1)==0||EaAn(ea)) return 1;
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236 use&=~0x0e00; // Use same for all registers
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237 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
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240 if(type) Cycles=54;
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241 else Cycles=sign?158:140;
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243 EaCalcRead(-1,0,ea,1,0x003f,earwt_msb_dont_care);
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245 EaCalc(11,0x0e00,rea, 2);
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246 EaRead(11, 2,rea, 2,0x0e00);
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248 ot(" movs r1,r0,asl #16\n");
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250 if (type==0) // div
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252 // the manual says C is always cleared, but neither Musashi nor FAME do that
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253 //ot(" bic r10,r10,#0x20000000 ;@ always clear C\n");
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254 ot(" beq divzero%.4x ;@ division by zero\n",op);
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259 ot(" mov r12,#0 ;@ r12 = 1 or 2 if the result is negative\n");
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260 ot(" tst r2,r2\n");
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261 ot(" orrmi r12,r12,#2\n");
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262 ot(" rsbmi r2,r2,#0 ;@ Make r2 positive\n");
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264 ot(" movs r0,r1,asr #16\n");
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265 ot(" orrmi r12,r12,#1\n");
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266 ot(" rsbmi r0,r0,#0 ;@ Make r0 positive\n");
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268 ot(";@ detect the nasty 0x80000000 / -1 situation\n");
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269 ot(" mov r3,r2,asr #31\n");
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270 ot(" eors r3,r3,r1,asr #16\n");
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271 ot(" beq wrendofop%.4x\n",op);
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275 ot(" mov r0,r1,lsr #16 ;@ use only 16 bits of divisor\n");
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279 ot(";@ Divide r2 by r0\n");
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280 ot(" mov r3,#0\n");
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281 ot(" mov r1,r0\n");
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283 ot(";@ Shift up divisor till it's just less than numerator\n");
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284 ot("Shift%.4x%s\n",op,ms?"":":");
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285 ot(" cmp r1,r2,lsr #1\n");
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286 ot(" movls r1,r1,lsl #1\n");
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287 ot(" bcc Shift%.4x\n",op);
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290 ot("Divide%.4x%s\n",op,ms?"":":");
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291 ot(" cmp r2,r1\n");
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292 ot(" adc r3,r3,r3 ;@ Double r3 and add 1 if carry set\n");
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293 ot(" subcs r2,r2,r1\n");
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294 ot(" teq r1,r0\n");
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295 ot(" movne r1,r1,lsr #1\n");
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296 ot(" bne Divide%.4x\n",op);
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298 ot(";@r3==quotient,r2==remainder\n");
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303 ot(" and r1,r12,#1\n");
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304 ot(" teq r1,r12,lsr #1\n");
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305 ot(" rsbne r3,r3,#0 ;@ negate if quotient is negative\n");
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306 ot(" tst r12,#2\n");
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307 ot(" rsbne r2,r2,#0 ;@ negate the remainder if divident was negative\n");
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310 // signed overflow check
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311 ot(" mov r1,r3,asl #16\n");
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312 ot(" cmp r3,r1,asr #16 ;@ signed overflow?\n");
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313 ot(" orrne r10,r10,#0x10000000 ;@ set overflow flag\n");
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314 ot(" bne endofop%.4x ;@ overflow!\n",op);
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316 ot("wrendofop%.4x%s\n",op,ms?"":":");
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321 ot(" movs r1,r3,lsr #16 ;@ check for overflow condition\n");
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322 ot(" orrne r10,r10,#0x10000000 ;@ set overflow flag\n");
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323 ot(" bne endofop%.4x ;@ overflow!\n",op);
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327 ot(" movs r1,r3,lsl #16 ;@ Clip to 16-bits\n");
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330 ot(" mov r1,r1,lsr #16\n");
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331 ot(" orr r1,r1,r2,lsl #16 ;@ Insert remainder\n");
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336 ot(";@ Get 16-bit signs right:\n");
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337 ot(" mov r0,r1,%s #16\n",sign?"asr":"lsr");
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338 ot(" mov r2,r2,lsl #16\n");
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339 ot(" mov r2,r2,%s #16\n",sign?"asr":"lsr");
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342 ot(" muls r1,r2,r0\n");
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347 EaWrite(11, 1,rea, 2,0x0e00,earwt_shifted_up);
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349 if (type==0) ot("endofop%.4x%s\n",op,ms?"":":");
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352 if (type==0) // div
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354 ot("divzero%.4x%s\n",op,ms?"":":");
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355 ot(" mov r0,#5 ;@ Divide by zero\n");
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356 ot(" bl Exception\n");
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365 // Get X Bit into carry - trashes r2
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366 int GetXBit(int subtract)
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368 ot(";@ Get X bit:\n");
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369 ot(" ldr r2,[r7,#0x4c]\n");
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370 if (subtract) ot(" mvn r2,r2 ;@ Invert it\n");
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371 ot(" tst r2,r2,lsl #3 ;@ Get into Carry\n");
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376 // --------------------- Opcodes 0x8100+ ---------------------
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377 // 1t00ddd1 0000asss - sbcd/abcd Ds,Dd or -(As),-(Ad)
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381 int type=0,sea=0,mem=0,dea=0;
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383 type=(op>>14)&1; // sbcd/abcd
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388 if (mem) { sea|=0x20; dea|=0x20; }
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390 use=op&~0x0e07; // Use same opcode for all registers..
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391 if (sea==0x27) use|=0x0007; // ___x.b -(a7)
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392 if (dea==0x27) use|=0x0e00; // ___x.b -(a7)
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393 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
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395 OpStart(op,sea,dea); Cycles=6;
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399 ot(";@ Get src/dest EA vals\n");
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400 EaCalc (0,0x000f, sea,0,earwt_msb_dont_care);
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401 EaRead (0, 6, sea,0,0x000f,earwt_msb_dont_care);
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402 EaCalcRead(11,0,dea,0,0x0e00,earwt_msb_dont_care);
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406 ot(";@ Get src/dest reg vals\n");
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407 EaCalcRead(-1,6,sea,0,0x0007,earwt_msb_dont_care);
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408 EaCalcRead(11,0,dea,0,0x0e00,earwt_msb_dont_care);
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411 ot(" bic r10,r10,#0xb1000000 ;@ clear all flags except old Z\n");
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413 ot(" ldr r1,[r7,#0x4c] ;@ Get X bit\n");
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414 ot(" and r2,r0,#0x0f\n");
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415 ot(" movs r12,r1,lsl #3 ;@ X into carry\n");
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416 ot(" and r1,r6,#0x0f\n");
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420 ot(" adc r1,r2,r1\n");
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421 ot(" cmp r1,#9\n");
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423 ot(" and r0,r0,#0xf0\n");
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424 ot(" and r6,r6,#0xf0\n");
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425 ot(" add r1,r1,r0\n");
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426 ot(" add r1,r1,r6\n");
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427 ot(" mov r12,r1\n");
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428 ot(" addhi r12,r12,#6 ;@ Decimal adjust units\n");
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429 ot(" tst r1,#0x80\n");
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430 ot(" orreq r10,r10,#0x10000000 ;@ Undefined V behavior\n");
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431 ot(" cmp r12,#0x9f\n");
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432 ot(" orrhi r10,r10,#0x20000000 ;@ C\n");
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433 ot(" subhi r12,r12,#0xa0\n");
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434 ot(" movs r0,r12,lsl #24\n");
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435 ot(" bicpl r10,r10,#0x10000000 ;@ Undefined V behavior part II\n");
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440 ot(" mov r12,#0 ;@ corf\n");
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441 ot(" adc r1,r1,#0\n");
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442 ot(" sub r1,r2,r1\n");
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443 ot(" cmp r1,#0x0f\n");
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444 ot(" movhi r12,#6\n");
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446 ot(" and r0,r0,#0xf0\n");
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447 ot(" and r6,r6,#0xf0\n");
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448 ot(" add r1,r1,r0\n");
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449 ot(" sub r1,r1,r6\n");
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450 ot(" tst r1,#0x80\n");
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451 ot(" orrne r10,r10,#0x10000000 ;@ Undefined V behavior\n");
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452 ot(" cmp r1,r12\n");
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453 ot(" orrlt r10,r10,#0x20000000 ;@ C\n");
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454 ot(" cmp r1,#0xff\n");
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455 ot(" addhi r1,r1,#0xa0\n");
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456 ot(" sub r12,r1,r12\n");
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457 ot(" movs r0,r12,lsl #24\n");
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458 ot(" bicmi r10,r10,#0x10000000 ;@ Undefined V behavior part II\n");
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461 ot(" orrmi r10,r10,#0x80000000 ;@ Undefined N behavior\n");
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462 ot(" bicne r10,r10,#0x40000000 ;@ Z flag\n");
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463 ot(" str r10,[r7,#0x4c] ;@ Save X bit\n");
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466 EaWrite(11, 0, dea,0,0x0e00,earwt_shifted_up);
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468 ot(" ldr r6,[r7,#0x54]\n");
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474 // 01001000 00eeeeee - nbcd <ea>
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482 if(EaCanWrite(ea)==0||EaAn(ea)) return 1;
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485 if(op!=use) { OpUse(op,use); return 0; } // Use existing handler
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487 OpStart(op,ea); Cycles=6;
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488 if(ea >= 8) Cycles+=2;
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490 EaCalcRead(11,0,ea,0,0x003f,earwt_zero_extend);
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492 // this is rewrite of Musashi's code
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493 ot(" ldr r2,[r7,#0x4c]\n");
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494 ot(" bic r10,r10,#0xb0000000 ;@ clear all flags, except Z\n");
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495 ot(" and r2,r2,#0x20000000\n");
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496 ot(" rsb r1,r0,#0 ;@ do arithmetic\n");
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497 ot(" subs r1,r1,r2,lsr #29 ;@ X\n");
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499 ot(" beq finish%.4x\n",op);
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502 ot(" movs r1,r1,lsl #24\n");
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503 ot(" orrmi r10,r10,#0x10000000 ;@ Undefined V behavior\n");
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504 ot(" orr r2,r1,r0,lsl #24\n");
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505 ot(" tst r2,#0x0f000000\n");
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506 ot(" andeq r1,r1,#0xf0000000\n");
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507 ot(" orreq r1,r1,#0x06000000\n");
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508 ot(" adds r1,r1,#0x9a000000\n");
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509 ot(" bicmi r10,r10,#0x10000000 ;@ Undefined V behavior part II\n");
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510 ot(" orrmi r10,r10,#0x80000000 ;@ Undefined N behavior\n");
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511 ot(" bicne r10,r10,#0x40000000 ;@ Z\n");
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512 ot(" orr r10,r10,#0x20000000 ;@ C\n");
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515 EaWrite(11, 1, ea,0,0x3f,earwt_shifted_up);
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517 ot("finish%.4x%s\n",op,ms?"":":");
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518 ot(" str r10,[r7,#0x4c] ;@ Save X\n");
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521 ot(" ldr r6,[r7,#0x54]\n");
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527 // --------------------- Opcodes 0x90c0+ ---------------------
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528 // Suba/Cmpa/Adda 1tt1nnnx 11eeeeee (tt=type, x=size, eeeeee=Source EA)
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529 int OpAritha(int op)
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532 int type=0,size=0,sea=0,dea=0;
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533 const char *asr="";
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535 // Suba/Cmpa/Adda/(invalid):
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536 type=(op>>13)&3; if (type>=3) return 1;
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538 size=(op>>8)&1; size++;
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539 dea=(op>>9)&7; dea|=8; // Dest=An
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540 sea=op&0x003f; // Source
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542 // See if we can do this opcode:
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543 if (EaCanRead(sea,size)==0) return 1;
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545 use=OpBase(op,size);
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546 use&=~0x0e00; // Use same opcode for An
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547 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
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549 OpStart(op,sea); Cycles=(size==2)?6:8;
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550 if(size==2&&(sea<0x10||sea==0x3c)) Cycles+=2;
\r
551 if(type==1) Cycles=6;
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553 // EA calculation order defines how situations like suba.w (A0)+, A0 get handled.
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554 // different emus act differently in this situation, I couldn't fugure which is right behaviour.
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557 EaCalcRead(-1,0,sea,size,0x003f,earwt_msb_dont_care);
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558 EaCalcRead(type!=1?11:-1,1,dea,2,0x0e00,earwt_msb_dont_care);
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563 EaCalcRead(type!=1?11:-1,1,dea,2,0x0e00,earwt_msb_dont_care);
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564 EaCalcRead(-1,0,sea,size,0x003f,earwt_msb_dont_care);
\r
568 if (size<2) ot(" mov r0,r0,asl #%d\n\n",size?16:24);
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569 if (size<2) asr=(char *)(size?",asr #16":",asr #24");
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571 if (type==0) ot(" sub r1,r1,r0%s\n",asr);
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572 if (type==1) ot(" cmp r1,r0%s ;@ Defines NZCV\n",asr);
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573 if (type==1) OpGetFlags(1,0); // Get Cmp flags
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574 if (type==2) ot(" add r1,r1,r0%s\n",asr);
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577 if (type!=1) EaWrite(11, 1, dea,2,0x0e00);
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584 // --------------------- Opcodes 0x9100+ ---------------------
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585 // Emit a Subx/Addx opcode, 1t01ddd1 zz00rsss addx.z Ds,Dd
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589 int type=0,size=0,dea=0,sea=0,mem=0;
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590 const char *asl="";
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594 size=(op>> 6)&3; if (size>=3) return 1;
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598 // See if we can do this opcode:
\r
599 if (EaCanRead(sea,size)==0) return 1;
\r
600 if (EaCanWrite(dea)==0) return 1;
\r
602 if (mem) { sea+=0x20; dea+=0x20; }
\r
604 use=op&~0x0e07; // Use same opcode for Dn
\r
605 if (size==0&&sea==0x27) use|=0x0007; // ___x.b -(a7)
\r
606 if (size==0&&dea==0x27) use|=0x0e00; // ___x.b -(a7)
\r
607 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
\r
609 OpStart(op,sea,dea); Cycles=4;
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610 if(size>=2) Cycles+=4;
\r
611 if(sea>=0x10) Cycles+=2;
\r
615 ot(";@ Get src/dest EA vals\n");
\r
616 EaCalc (0,0x000f, sea,size,earwt_shifted_up);
\r
617 EaRead (0, 6, sea,size,0x000f,earwt_shifted_up);
\r
618 EaCalcRead(11,0,dea,size,0x0e00,earwt_msb_dont_care);
\r
622 ot(";@ Get src/dest reg vals\n");
\r
623 EaCalcRead(-1,6,sea,size,0x0007,earwt_msb_dont_care);
\r
624 EaCalcRead(11,0,dea,size,0x0e00,earwt_msb_dont_care);
\r
625 if (size<2) ot(" mov r6,r6,asl #%d\n\n",size?16:24);
\r
628 if (size<2) asl=(char *)(size?",asl #16":",asl #24");
\r
630 ot(";@ Do arithmetic:\n");
\r
633 if (type==1 && size<2)
\r
635 ot(";@ Make sure the carry bit will tip the balance:\n");
\r
636 ot(" mvn r2,#0\n");
\r
637 ot(" orr r6,r6,r2,lsr #%i\n",(size==0)?8:16);
\r
641 if (type==0) ot(" rscs r1,r6,r0%s\n",asl);
\r
642 if (type==1) ot(" adcs r1,r6,r0%s\n",asl);
\r
643 ot(" orr r3,r10,#0xb0000000 ;@ for old Z\n");
\r
644 OpGetFlags(type==0,1,0); // subtract
\r
646 ot(" movs r2,r1,lsr #%i\n", size?16:24);
\r
647 ot(" orreq r10,r10,#0x40000000 ;@ add potentially missed Z\n");
\r
649 ot(" andeq r10,r10,r3 ;@ fix Z\n");
\r
652 ot(";@ Save result:\n");
\r
653 EaWrite(11, 1, dea,size,0x0e00,earwt_shifted_up);
\r
655 ot(" ldr r6,[r7,#0x54]\n");
\r
661 // --------------------- Opcodes 0xb000+ ---------------------
\r
662 // Emit a Cmp/Eor opcode, 1011rrrt xxeeeeee (rrr=Dn, t=cmp/eor, xx=size extension, eeeeee=ea)
\r
663 int OpCmpEor(int op)
\r
666 int size=0,ea=0,use=0;
\r
667 const char *asl="";
\r
669 // Get EA and register EA
\r
672 size=(op>>6)&3; if (size>=3) return 1;
\r
675 if (eor && (ea>>3) == 1) return 1; // not a valid mode for eor
\r
677 // See if we can do this opcode:
\r
678 if (EaCanRead(ea,size)==0) return 1;
\r
679 if (eor && EaCanWrite(ea)==0) return 1;
\r
680 if (EaAn(ea)&&(eor||size==0)) return 1;
\r
682 use=OpBase(op,size);
\r
683 use&=~0x0e00; // Use 1 handler for register d0-7
\r
684 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
\r
686 OpStart(op,ea); Cycles=4;
\r
688 if(ea>8) Cycles+=4;
\r
689 if(size>=2) Cycles+=4;
\r
691 if(size>=2) Cycles+=2;
\r
694 ot(";@ Get EA into r11 and value into r0:\n");
\r
695 EaCalcRead(eor?11:-1,0,ea,size,0x003f,earwt_msb_dont_care);
\r
697 ot(";@ Get register operand into r1:\n");
\r
698 EaCalcRead(-1,1,rea,size,0x0e00,earwt_msb_dont_care);
\r
700 if (size<2) ot(" mov r0,r0,asl #%d\n\n",size?16:24);
\r
701 if (size<2) asl=(char *)(size?",asl #16":",asl #24");
\r
703 ot(";@ Do arithmetic:\n");
\r
706 ot(" eors r1,r0,r1%s\n",asl);
\r
711 ot(" rsbs r1,r0,r1%s\n",asl);
\r
712 OpGetFlags(1,0); // Cmp like subtract
\r
716 if (eor) EaWrite(11, 1,ea,size,0x003f,earwt_shifted_up);
\r
722 // Emit a Cmpm opcode, 1011ddd1 xx001sss (rrr=Adst, xx=size extension, sss=Asrc)
\r
725 int size=0,sea=0,dea=0,use=0;
\r
726 const char *asl="";
\r
728 // get size, get EAs
\r
729 size=(op>>6)&3; if (size>=3) return 1;
\r
733 use=op&~0x0e07; // Use 1 handler for all registers..
\r
734 if (size==0&&sea==0x1f) use|=0x0007; // ..except (a7)+
\r
735 if (size==0&&dea==0x1f) use|=0x0e00;
\r
736 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
\r
738 OpStart(op,sea); Cycles=4;
\r
740 ot(";@ Get src operand into r11:\n");
\r
741 EaCalc (0,0x0007, sea,size,earwt_shifted_up);
\r
742 EaRead (0, 11, sea,size,0x0007,earwt_shifted_up);
\r
744 ot(";@ Get dst operand into r0:\n");
\r
745 EaCalcRead(-1,0,dea,size,0x0e00,earwt_msb_dont_care);
\r
747 if (size<2) asl=(char *)(size?",asl #16":",asl #24");
\r
749 ot(" rsbs r0,r11,r0%s\n",asl);
\r
750 OpGetFlags(1,0); // Cmp like subtract
\r
758 // Emit a Chk opcode, 0100ddd1 x0eeeeee (rrr=Dn, x=size extension, eeeeee=ea)
\r
762 int size=0,ea=0,use=0;
\r
764 // Get EA and register EA
\r
767 size=1; // word operation
\r
768 else size=2; // long
\r
771 if (EaAn(ea)) return 1; // not a valid mode
\r
772 if (size!=1) return 1; // 000 variant only supports word
\r
774 // See if we can do this opcode:
\r
775 if (EaCanRead(ea,size)==0) return 1;
\r
777 use=OpBase(op,size);
\r
778 use&=~0x0e00; // Use 1 handler for register d0-7
\r
779 if (op!=use) { OpUse(op,use); return 0; } // Use existing handler
\r
781 OpStart(op,ea); Cycles=10;
\r
783 ot(";@ Get value into r0:\n");
\r
784 EaCalcRead(-1,0,ea,size,0x003f,earwt_msb_dont_care);
\r
786 ot(";@ Get register operand into r1:\n");
\r
787 EaCalcRead(-1,1,rea,size,0x0e00,earwt_msb_dont_care);
\r
789 if (size<2) ot(" mov r0,r0,asl #%d\n",size?16:24);
\r
791 if (size<2) ot(" movs r1,r1,asl #%d\n\n",size?16:24);
\r
792 else ot(" adds r1,r1,#0 ;@ Define flags\n");
\r
794 ot(";@ get flags, including undocumented ones\n");
\r
795 ot(" and r3,r10,#0x80000000\n");
\r
798 ot(";@ is reg negative?\n");
\r
799 ot(" bmi chktrap%.4x\n",op);
\r
801 ot(";@ Do arithmetic:\n");
\r
802 ot(" cmp r1,r0\n");
\r
803 ot(" bgt chktrap%.4x\n",op);
\r
805 ot(";@ old N remains\n");
\r
806 ot(" orr r10,r10,r3\n");
\r
809 ot("chktrap%.4x%s ;@ CHK exception:\n",op,ms?"":":");
\r
810 ot(" mov r0,#6\n");
\r
811 ot(" bl Exception\n");
\r
818 // vim:ts=2:sw=2:expandtab
\r