?? op_mem.h
字號:
/* Load and set reservation */void OPPROTO glue(op_lwarx, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu32, MEMSUFFIX)((uint32_t)T0); env->reserve = (uint32_t)T0; } RETURN();}#if defined(TARGET_PPC64)void OPPROTO glue(op_lwarx_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu32, MEMSUFFIX)((uint64_t)T0); env->reserve = (uint64_t)T0; } RETURN();}void OPPROTO glue(op_ldarx, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu64, MEMSUFFIX)((uint32_t)T0); env->reserve = (uint32_t)T0; } RETURN();}void OPPROTO glue(op_ldarx_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu64, MEMSUFFIX)((uint64_t)T0); env->reserve = (uint64_t)T0; } RETURN();}#endifvoid OPPROTO glue(op_lwarx_le, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu32r, MEMSUFFIX)((uint32_t)T0); env->reserve = (uint32_t)T0; } RETURN();}#if defined(TARGET_PPC64)void OPPROTO glue(op_lwarx_le_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu32r, MEMSUFFIX)((uint64_t)T0); env->reserve = (uint64_t)T0; } RETURN();}void OPPROTO glue(op_ldarx_le, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu64r, MEMSUFFIX)((uint32_t)T0); env->reserve = (uint32_t)T0; } RETURN();}void OPPROTO glue(op_ldarx_le_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { T1 = glue(ldu64r, MEMSUFFIX)((uint64_t)T0); env->reserve = (uint64_t)T0; } RETURN();}#endif/* Store with reservation */void OPPROTO glue(op_stwcx, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint32_t)T0)) { env->crf[0] = xer_so; } else { glue(st32, MEMSUFFIX)((uint32_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}#if defined(TARGET_PPC64)void OPPROTO glue(op_stwcx_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint64_t)T0)) { env->crf[0] = xer_so; } else { glue(st32, MEMSUFFIX)((uint64_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}void OPPROTO glue(op_stdcx, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint32_t)T0)) { env->crf[0] = xer_so; } else { glue(st64, MEMSUFFIX)((uint32_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}void OPPROTO glue(op_stdcx_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint64_t)T0)) { env->crf[0] = xer_so; } else { glue(st64, MEMSUFFIX)((uint64_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}#endifvoid OPPROTO glue(op_stwcx_le, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint32_t)T0)) { env->crf[0] = xer_so; } else { glue(st32r, MEMSUFFIX)((uint32_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}#if defined(TARGET_PPC64)void OPPROTO glue(op_stwcx_le_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint64_t)T0)) { env->crf[0] = xer_so; } else { glue(st32r, MEMSUFFIX)((uint64_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}void OPPROTO glue(op_stdcx_le, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint32_t)T0)) { env->crf[0] = xer_so; } else { glue(st64r, MEMSUFFIX)((uint32_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}void OPPROTO glue(op_stdcx_le_64, MEMSUFFIX) (void){ if (unlikely(T0 & 0x03)) { do_raise_exception(POWERPC_EXCP_ALIGN); } else { if (unlikely(env->reserve != (uint64_t)T0)) { env->crf[0] = xer_so; } else { glue(st64r, MEMSUFFIX)((uint64_t)T0, T1); env->crf[0] = xer_so | 0x02; } } env->reserve = (target_ulong)-1ULL; RETURN();}#endifvoid OPPROTO glue(op_dcbz_l32, MEMSUFFIX) (void){ T0 &= ~((uint32_t)31); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x00), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x04), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x08), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x0C), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x10), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x14), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x18), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x1C), 0); RETURN();}void OPPROTO glue(op_dcbz_l64, MEMSUFFIX) (void){ T0 &= ~((uint32_t)63); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x00), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x04), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x08), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x0C), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x10), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x14), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x18), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x1C), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x20UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x24UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x28UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x2CUL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x30UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x34UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x38UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x3CUL), 0); RETURN();}void OPPROTO glue(op_dcbz_l128, MEMSUFFIX) (void){ T0 &= ~((uint32_t)127); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x00), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x04), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x08), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x0C), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x10), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x14), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x18), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x1C), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x20UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x24UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x28UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x2CUL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x30UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x34UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x38UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x3CUL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x40UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x44UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x48UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x4CUL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x50UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x54UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x58UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x5CUL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x60UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x64UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x68UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x6CUL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x70UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x74UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x78UL), 0); glue(st32, MEMSUFFIX)((uint32_t)(T0 + 0x7CUL), 0); RETURN();}void OPPROTO glue(op_dcbz, MEMSUFFIX) (void){ glue(do_dcbz, MEMSUFFIX)(); RETURN();}#if defined(TARGET_PPC64)void OPPROTO glue(op_dcbz_l32_64, MEMSUFFIX) (void){ T0 &= ~((uint64_t)31); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x00), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x04), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x08), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x0C), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x10), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x14), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x18), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x1C), 0); RETURN();}void OPPROTO glue(op_dcbz_l64_64, MEMSUFFIX) (void){ T0 &= ~((uint64_t)63); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x00), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x04), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x08), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x0C), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x10), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x14), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x18), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x1C), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x20UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x24UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x28UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x2CUL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x30UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x34UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x38UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x3CUL), 0); RETURN();}void OPPROTO glue(op_dcbz_l128_64, MEMSUFFIX) (void){ T0 &= ~((uint64_t)127); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x00), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x04), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x08), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x0C), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x10), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x14), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x18), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x1C), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x20UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x24UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x28UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x2CUL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x30UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x34UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x38UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x3CUL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x40UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x44UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x48UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x4CUL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x50UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x54UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x58UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x5CUL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x60UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x64UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x68UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x6CUL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x70UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x74UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x78UL), 0); glue(st32, MEMSUFFIX)((uint64_t)(T0 + 0x7CUL), 0); RETURN();}void OPPROTO glue(op_dcbz_64, MEMSUFFIX) (void){ glue(do_dcbz_64, MEMSUFFIX)(); RETURN();}#endif/* Instruction cache block invalidate */void OPPROTO glue(op_icbi, MEMSUFFIX) (void){ glue(do_icbi, MEMSUFFIX)(); RETURN();}#if defined(TARGET_PPC64)void OPPROTO glue(op_icbi_64, MEMSUFFIX) (void){ glue(do_icbi_64, MEMSUFFIX)(); RETURN();}#endif/* External access */void OPPROTO glue(op_eciwx, MEMSUFFIX) (void){ T1 = glue(ldu32, MEMSUFFIX)((uint32_t)T0); RETURN();}
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