extern uint16_t ea_rseg; #undef readmemb #undef writememb #define readmemb(s,a) ((readlookup2[((s)+(a))>>12]==-1 || (s)==0xFFFFFFFF)?readmemb386l(s,a): *(uint8_t *)(readlookup2[((s)+(a))>>12] + (s) + (a)) ) #define writememb(s,a,v) if (writelookup2[((s)+(a))>>12]==-1 || (s)==0xFFFFFFFF) writememb386l(s,a,v); else *(uint8_t *)(writelookup2[((s) + (a)) >> 12] + (s) + (a)) = v #define writememw(s,a,v) if (writelookup2[((s)+(a))>>12]==-1 || (s)==0xFFFFFFFF || (((s)+(a))&0xFFF)>0xFFE) writememwl(s,a,v); else *(uint16_t *)(writelookup2[((s) + (a)) >> 12] + (s) + (a)) = v #define writememl(s,a,v) if (writelookup2[((s)+(a))>>12]==-1 || (s)==0xFFFFFFFF || (((s)+(a))&0xFFF)>0xFFC) writememll(s,a,v); else *(uint32_t *)(writelookup2[((s) + (a)) >> 12] + (s) + (a)) = v #define check_io_perm(port) if (!IOPLp || (eflags&VM_FLAG)) \ { \ int tempi = checkio(port); \ if (abrt) return 1; \ if (tempi) \ { \ x86gpf(NULL,0); \ return 1; \ } \ } #define checkio_perm(port) if (!IOPLp || (eflags&VM_FLAG)) \ { \ tempi = checkio(port); \ if (abrt) break; \ if (tempi) \ { \ x86gpf(NULL,0); \ break; \ } \ } #define CHECK_READ(seg, low, high) \ if ((low < (seg)->limit_low) || (high > (seg)->limit_high)) \ { \ x86gpf("Limit check", 0); \ return 1; \ } #define CHECK_WRITE(seg, low, high) \ if ((low < (seg)->limit_low) || (high > (seg)->limit_high)) \ { \ x86gpf("Limit check", 0); \ return 1; \ } #define CHECK_WRITE_REP(seg, low, high) \ if ((low < (seg)->limit_low) || (high > (seg)->limit_high)) \ { \ x86gpf("Limit check", 0); \ break; \ } #define NOTRM if (!(msw & 1) || (eflags & VM_FLAG))\ { \ x86_int(6); \ return 1; \ } static inline uint8_t fastreadb(uint32_t a) { if ((a >> 12) == pccache) return *((uint8_t *)&pccache2[a]); pccache2 = getpccache(a); if (abrt) return; pccache = a >> 12; return *((uint8_t *)&pccache2[a]); } static inline uint16_t fastreadw(uint32_t a) { uint32_t t; if ((a&0xFFF)>0xFFE) { t=readmemb(0,a); t|=(readmemb(0,a+1)<<8); return t; } if ((a>>12)==pccache) return *((uint16_t *)&pccache2[a]); pccache2=getpccache(a); if (abrt) return; pccache=a>>12; return *((uint16_t *)&pccache2[a]); } static inline uint32_t fastreadl(uint32_t a) { uint8_t *t; uint32_t val; if ((a&0xFFF)<0xFFD) { if ((a>>12)!=pccache) { t = getpccache(a); if (abrt) return 0; pccache2 = t; pccache=a>>12; //return *((uint32_t *)&pccache2[a]); } return *((uint32_t *)&pccache2[a]); } val =readmemb(0,a); val |=(readmemb(0,a+1)<<8); val |=(readmemb(0,a+2)<<16); val |=(readmemb(0,a+3)<<24); return val; } static inline uint8_t getbyte() { pc++; return fastreadb(cs + (pc - 1)); } static inline uint16_t getword() { pc+=2; return fastreadw(cs+(pc-2)); } static inline uint32_t getlong() { pc+=4; return fastreadl(cs+(pc-4)); } static inline uint64_t getquad() { pc+=8; return fastreadl(cs+(pc-8)) | ((uint64_t)fastreadl(cs+(pc-4)) << 32); } static inline uint8_t geteab() { if (mod==3) return (rm&4)?regs[rm&3].b.h:regs[rm&3].b.l; if (eal_r) return *(uint8_t *)eal_r; return readmemb(easeg,eaaddr); } static inline uint16_t geteaw() { if (mod==3) return regs[rm].w; // cycles-=3; if (eal_r) return *(uint16_t *)eal_r; return readmemw(easeg,eaaddr); } static inline uint32_t geteal() { if (mod==3) return regs[rm].l; // cycles-=3; if (eal_r) return *eal_r; return readmeml(easeg,eaaddr); } static inline uint64_t geteaq() { return readmeml(easeg,eaaddr) | ((uint64_t)readmeml(easeg, eaaddr + 4) << 32); } static inline uint8_t geteab_mem() { if (eal_r) return *(uint8_t *)eal_r; return readmemb(easeg,eaaddr); } static inline uint16_t geteaw_mem() { if (eal_r) return *(uint16_t *)eal_r; return readmemw(easeg,eaaddr); } static inline uint32_t geteal_mem() { if (eal_r) return *eal_r; return readmeml(easeg,eaaddr); } static inline void seteaq(uint64_t v) { writememll(easeg, eaaddr, v & 0xffffffff); if (abrt) return; writememll(easeg, eaaddr + 4, v >> 32); } #define seteab(v) if (mod!=3) { if (eal_w) *(uint8_t *)eal_w=v; else writememb386l(easeg,eaaddr,v); } else if (rm&4) regs[rm&3].b.h=v; else regs[rm].b.l=v #define seteaw(v) if (mod!=3) { if (eal_w) *(uint16_t *)eal_w=v; else writememwl(easeg,eaaddr,v); } else regs[rm].w=v #define seteal(v) if (mod!=3) { if (eal_w) *eal_w=v; else writememll(easeg,eaaddr,v); } else regs[rm].l=v #define seteab_mem(v) if (eal_w) *(uint8_t *)eal_w=v; else writememb386l(easeg,eaaddr,v); #define seteaw_mem(v) if (eal_w) *(uint16_t *)eal_w=v; else writememwl(easeg,eaaddr,v); #define seteal_mem(v) if (eal_w) *eal_w=v; else writememll(easeg,eaaddr,v); #define getbytef() ((uint8_t)(fetchdat)); pc++ #define getwordf() ((uint16_t)(fetchdat)); pc+=2 #define getbyte2f() ((uint8_t)(fetchdat>>8)); pc++ #define getword2f() ((uint16_t)(fetchdat>>8)); pc+=2 #define rmdat rmdat32 #define fetchdat rmdat32