1 /* 2 * m68k virtual CPU header 3 * 4 * Copyright (c) 2005-2007 CodeSourcery 5 * Written by Paul Brook 6 * 7 * This library is free software; you can redistribute it and/or 8 * modify it under the terms of the GNU Lesser General Public 9 * License as published by the Free Software Foundation; either 10 * version 2.1 of the License, or (at your option) any later version. 11 * 12 * This library is distributed in the hope that it will be useful, 13 * but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 15 * Lesser General Public License for more details. 16 * 17 * You should have received a copy of the GNU Lesser General Public 18 * License along with this library; if not, see <http://www.gnu.org/licenses/>. 19 */ 20 21 #ifndef M68K_CPU_H 22 #define M68K_CPU_H 23 24 #include "exec/cpu-defs.h" 25 #include "qemu/cpu-float.h" 26 #include "cpu-qom.h" 27 28 #define OS_BYTE 0 29 #define OS_WORD 1 30 #define OS_LONG 2 31 #define OS_SINGLE 3 32 #define OS_DOUBLE 4 33 #define OS_EXTENDED 5 34 #define OS_PACKED 6 35 #define OS_UNSIZED 7 36 37 #define EXCP_ACCESS 2 /* Access (MMU) error. */ 38 #define EXCP_ADDRESS 3 /* Address error. */ 39 #define EXCP_ILLEGAL 4 /* Illegal instruction. */ 40 #define EXCP_DIV0 5 /* Divide by zero */ 41 #define EXCP_CHK 6 /* CHK, CHK2 Instructions */ 42 #define EXCP_TRAPCC 7 /* FTRAPcc, TRAPcc, TRAPV Instructions */ 43 #define EXCP_PRIVILEGE 8 /* Privilege violation. */ 44 #define EXCP_TRACE 9 45 #define EXCP_LINEA 10 /* Unimplemented line-A (MAC) opcode. */ 46 #define EXCP_LINEF 11 /* Unimplemented line-F (FPU) opcode. */ 47 #define EXCP_DEBUGNBP 12 /* Non-breakpoint debug interrupt. */ 48 #define EXCP_DEBEGBP 13 /* Breakpoint debug interrupt. */ 49 #define EXCP_FORMAT 14 /* RTE format error. */ 50 #define EXCP_UNINITIALIZED 15 51 #define EXCP_SPURIOUS 24 /* Spurious interrupt */ 52 #define EXCP_INT_LEVEL_1 25 /* Level 1 Interrupt autovector */ 53 #define EXCP_INT_LEVEL_7 31 /* Level 7 Interrupt autovector */ 54 #define EXCP_TRAP0 32 /* User trap #0. */ 55 #define EXCP_TRAP15 47 /* User trap #15. */ 56 #define EXCP_FP_BSUN 48 /* Branch Set on Unordered */ 57 #define EXCP_FP_INEX 49 /* Inexact result */ 58 #define EXCP_FP_DZ 50 /* Divide by Zero */ 59 #define EXCP_FP_UNFL 51 /* Underflow */ 60 #define EXCP_FP_OPERR 52 /* Operand Error */ 61 #define EXCP_FP_OVFL 53 /* Overflow */ 62 #define EXCP_FP_SNAN 54 /* Signaling Not-A-Number */ 63 #define EXCP_FP_UNIMP 55 /* Unimplemented Data type */ 64 #define EXCP_MMU_CONF 56 /* MMU Configuration Error */ 65 #define EXCP_MMU_ILLEGAL 57 /* MMU Illegal Operation Error */ 66 #define EXCP_MMU_ACCESS 58 /* MMU Access Level Violation Error */ 67 68 #define EXCP_RTE 0x100 69 #define EXCP_HALT_INSN 0x101 70 71 #define M68K_DTTR0 0 72 #define M68K_DTTR1 1 73 #define M68K_ITTR0 2 74 #define M68K_ITTR1 3 75 76 #define M68K_MAX_TTR 2 77 #define TTR(type, index) ttr[((type & ACCESS_CODE) == ACCESS_CODE) * 2 + index] 78 79 #define TARGET_INSN_START_EXTRA_WORDS 1 80 81 typedef CPU_LDoubleU FPReg; 82 83 typedef struct CPUArchState { 84 uint32_t dregs[8]; 85 uint32_t aregs[8]; 86 uint32_t pc; 87 uint32_t sr; 88 89 /* 90 * The 68020/30/40 support two supervisor stacks, ISP and MSP. 91 * The 68000/10, Coldfire, and CPU32 only have USP/SSP. 92 * 93 * The current_sp is stored in aregs[7], the other here. 94 * The USP, SSP, and if used the additional ISP for 68020/30/40. 95 */ 96 int current_sp; 97 uint32_t sp[3]; 98 99 /* Condition flags. */ 100 uint32_t cc_op; 101 uint32_t cc_x; /* always 0/1 */ 102 uint32_t cc_n; /* in bit 31 (i.e. negative) */ 103 uint32_t cc_v; /* in bit 31, unused, or computed from cc_n and cc_v */ 104 uint32_t cc_c; /* either 0/1, unused, or computed from cc_n and cc_v */ 105 uint32_t cc_z; /* == 0 or unused */ 106 107 FPReg fregs[8]; 108 FPReg fp_result; 109 uint32_t fpcr; 110 uint32_t fpsr; 111 float_status fp_status; 112 113 uint64_t mactmp; 114 /* 115 * EMAC Hardware deals with 48-bit values composed of one 32-bit and 116 * two 8-bit parts. We store a single 64-bit value and 117 * rearrange/extend this when changing modes. 118 */ 119 uint64_t macc[4]; 120 uint32_t macsr; 121 uint32_t mac_mask; 122 123 /* MMU status. */ 124 struct { 125 uint32_t ar; 126 uint32_t ssw; 127 /* 68040 */ 128 uint16_t tcr; 129 uint32_t urp; 130 uint32_t srp; 131 bool fault; 132 uint32_t ttr[4]; 133 uint32_t mmusr; 134 } mmu; 135 136 /* Control registers. */ 137 uint32_t vbr; 138 uint32_t mbar; 139 uint32_t rambar0; 140 uint32_t cacr; 141 uint32_t sfc; 142 uint32_t dfc; 143 144 int pending_vector; 145 int pending_level; 146 147 /* Fields up to this point are cleared by a CPU reset */ 148 struct {} end_reset_fields; 149 150 /* Fields from here on are preserved across CPU reset. */ 151 uint32_t features; 152 } CPUM68KState; 153 154 /* 155 * M68kCPU: 156 * @env: #CPUM68KState 157 * 158 * A Motorola 68k CPU. 159 */ 160 struct ArchCPU { 161 /*< private >*/ 162 CPUState parent_obj; 163 /*< public >*/ 164 165 CPUNegativeOffsetState neg; 166 CPUM68KState env; 167 }; 168 169 170 #ifndef CONFIG_USER_ONLY 171 void m68k_cpu_do_interrupt(CPUState *cpu); 172 bool m68k_cpu_exec_interrupt(CPUState *cpu, int int_req); 173 #endif /* !CONFIG_USER_ONLY */ 174 void m68k_cpu_dump_state(CPUState *cpu, FILE *f, int flags); 175 hwaddr m68k_cpu_get_phys_page_debug(CPUState *cpu, vaddr addr); 176 int m68k_cpu_gdb_read_register(CPUState *cpu, GByteArray *buf, int reg); 177 int m68k_cpu_gdb_write_register(CPUState *cpu, uint8_t *buf, int reg); 178 179 void m68k_tcg_init(void); 180 void m68k_cpu_init_gdb(M68kCPU *cpu); 181 uint32_t cpu_m68k_get_ccr(CPUM68KState *env); 182 void cpu_m68k_set_ccr(CPUM68KState *env, uint32_t); 183 void cpu_m68k_set_sr(CPUM68KState *env, uint32_t); 184 void cpu_m68k_restore_fp_status(CPUM68KState *env); 185 void cpu_m68k_set_fpcr(CPUM68KState *env, uint32_t val); 186 187 188 /* 189 * Instead of computing the condition codes after each m68k instruction, 190 * QEMU just stores one operand (called CC_SRC), the result 191 * (called CC_DEST) and the type of operation (called CC_OP). When the 192 * condition codes are needed, the condition codes can be calculated 193 * using this information. Condition codes are not generated if they 194 * are only needed for conditional branches. 195 */ 196 typedef enum { 197 /* Translator only -- use env->cc_op. */ 198 CC_OP_DYNAMIC, 199 200 /* Each flag bit computed into cc_[xcnvz]. */ 201 CC_OP_FLAGS, 202 203 /* X in cc_x, C = X, N in cc_n, Z in cc_n, V via cc_n/cc_v. */ 204 CC_OP_ADDB, CC_OP_ADDW, CC_OP_ADDL, 205 CC_OP_SUBB, CC_OP_SUBW, CC_OP_SUBL, 206 207 /* X in cc_x, {N,Z,C,V} via cc_n/cc_v. */ 208 CC_OP_CMPB, CC_OP_CMPW, CC_OP_CMPL, 209 210 /* X in cc_x, C = 0, V = 0, N in cc_n, Z in cc_n. */ 211 CC_OP_LOGIC, 212 213 CC_OP_NB 214 } CCOp; 215 216 #define CCF_C 0x01 217 #define CCF_V 0x02 218 #define CCF_Z 0x04 219 #define CCF_N 0x08 220 #define CCF_X 0x10 221 222 #define SR_I_SHIFT 8 223 #define SR_I 0x0700 224 #define SR_M 0x1000 225 #define SR_S 0x2000 226 #define SR_T_SHIFT 14 227 #define SR_T 0xc000 228 229 #define M68K_SR_TRACE(sr) ((sr & SR_T) >> SR_T_SHIFT) 230 #define M68K_SR_TRACE_ANY_INS 0x2 231 232 #define M68K_SSP 0 233 #define M68K_USP 1 234 #define M68K_ISP 2 235 236 /* bits for 68040 special status word */ 237 #define M68K_CP_040 0x8000 238 #define M68K_CU_040 0x4000 239 #define M68K_CT_040 0x2000 240 #define M68K_CM_040 0x1000 241 #define M68K_MA_040 0x0800 242 #define M68K_ATC_040 0x0400 243 #define M68K_LK_040 0x0200 244 #define M68K_RW_040 0x0100 245 #define M68K_SIZ_040 0x0060 246 #define M68K_TT_040 0x0018 247 #define M68K_TM_040 0x0007 248 249 #define M68K_TM_040_DATA 0x0001 250 #define M68K_TM_040_CODE 0x0002 251 #define M68K_TM_040_SUPER 0x0004 252 253 /* bits for 68040 write back status word */ 254 #define M68K_WBV_040 0x80 255 #define M68K_WBSIZ_040 0x60 256 #define M68K_WBBYT_040 0x20 257 #define M68K_WBWRD_040 0x40 258 #define M68K_WBLNG_040 0x00 259 #define M68K_WBTT_040 0x18 260 #define M68K_WBTM_040 0x07 261 262 /* bus access size codes */ 263 #define M68K_BA_SIZE_MASK 0x60 264 #define M68K_BA_SIZE_BYTE 0x20 265 #define M68K_BA_SIZE_WORD 0x40 266 #define M68K_BA_SIZE_LONG 0x00 267 #define M68K_BA_SIZE_LINE 0x60 268 269 /* bus access transfer type codes */ 270 #define M68K_BA_TT_MOVE16 0x08 271 272 /* bits for 68040 MMU status register (mmusr) */ 273 #define M68K_MMU_B_040 0x0800 274 #define M68K_MMU_G_040 0x0400 275 #define M68K_MMU_U1_040 0x0200 276 #define M68K_MMU_U0_040 0x0100 277 #define M68K_MMU_S_040 0x0080 278 #define M68K_MMU_CM_040 0x0060 279 #define M68K_MMU_M_040 0x0010 280 #define M68K_MMU_WP_040 0x0004 281 #define M68K_MMU_T_040 0x0002 282 #define M68K_MMU_R_040 0x0001 283 284 #define M68K_MMU_SR_MASK_040 (M68K_MMU_G_040 | M68K_MMU_U1_040 | \ 285 M68K_MMU_U0_040 | M68K_MMU_S_040 | \ 286 M68K_MMU_CM_040 | M68K_MMU_M_040 | \ 287 M68K_MMU_WP_040) 288 289 /* bits for 68040 MMU Translation Control Register */ 290 #define M68K_TCR_ENABLED 0x8000 291 #define M68K_TCR_PAGE_8K 0x4000 292 293 /* bits for 68040 MMU Table Descriptor / Page Descriptor / TTR */ 294 #define M68K_DESC_WRITEPROT 0x00000004 295 #define M68K_DESC_USED 0x00000008 296 #define M68K_DESC_MODIFIED 0x00000010 297 #define M68K_DESC_CACHEMODE 0x00000060 298 #define M68K_DESC_CM_WRTHRU 0x00000000 299 #define M68K_DESC_CM_COPYBK 0x00000020 300 #define M68K_DESC_CM_SERIAL 0x00000040 301 #define M68K_DESC_CM_NCACHE 0x00000060 302 #define M68K_DESC_SUPERONLY 0x00000080 303 #define M68K_DESC_USERATTR 0x00000300 304 #define M68K_DESC_USERATTR_SHIFT 8 305 #define M68K_DESC_GLOBAL 0x00000400 306 #define M68K_DESC_URESERVED 0x00000800 307 308 #define M68K_ROOT_POINTER_ENTRIES 128 309 #define M68K_4K_PAGE_MASK (~0xff) 310 #define M68K_POINTER_BASE(entry) (entry & ~0x1ff) 311 #define M68K_ROOT_INDEX(addr) ((address >> 23) & 0x1fc) 312 #define M68K_POINTER_INDEX(addr) ((address >> 16) & 0x1fc) 313 #define M68K_4K_PAGE_BASE(entry) (next & M68K_4K_PAGE_MASK) 314 #define M68K_4K_PAGE_INDEX(addr) ((address >> 10) & 0xfc) 315 #define M68K_8K_PAGE_MASK (~0x7f) 316 #define M68K_8K_PAGE_BASE(entry) (next & M68K_8K_PAGE_MASK) 317 #define M68K_8K_PAGE_INDEX(addr) ((address >> 11) & 0x7c) 318 #define M68K_UDT_VALID(entry) (entry & 2) 319 #define M68K_PDT_VALID(entry) (entry & 3) 320 #define M68K_PDT_INDIRECT(entry) ((entry & 3) == 2) 321 #define M68K_INDIRECT_POINTER(addr) (addr & ~3) 322 #define M68K_TTS_POINTER_SHIFT 18 323 #define M68K_TTS_ROOT_SHIFT 25 324 325 /* bits for 68040 MMU Transparent Translation Registers */ 326 #define M68K_TTR_ADDR_BASE 0xff000000 327 #define M68K_TTR_ADDR_MASK 0x00ff0000 328 #define M68K_TTR_ADDR_MASK_SHIFT 8 329 #define M68K_TTR_ENABLED 0x00008000 330 #define M68K_TTR_SFIELD 0x00006000 331 #define M68K_TTR_SFIELD_USER 0x0000 332 #define M68K_TTR_SFIELD_SUPER 0x2000 333 334 /* m68k Control Registers */ 335 336 /* ColdFire */ 337 /* Memory Management Control Registers */ 338 #define M68K_CR_ASID 0x003 339 #define M68K_CR_ACR0 0x004 340 #define M68K_CR_ACR1 0x005 341 #define M68K_CR_ACR2 0x006 342 #define M68K_CR_ACR3 0x007 343 #define M68K_CR_MMUBAR 0x008 344 345 /* Processor Miscellaneous Registers */ 346 #define M68K_CR_PC 0x80F 347 348 /* Local Memory and Module Control Registers */ 349 #define M68K_CR_ROMBAR0 0xC00 350 #define M68K_CR_ROMBAR1 0xC01 351 #define M68K_CR_RAMBAR0 0xC04 352 #define M68K_CR_RAMBAR1 0xC05 353 #define M68K_CR_MPCR 0xC0C 354 #define M68K_CR_EDRAMBAR 0xC0D 355 #define M68K_CR_SECMBAR 0xC0E 356 #define M68K_CR_MBAR 0xC0F 357 358 /* Local Memory Address Permutation Control Registers */ 359 #define M68K_CR_PCR1U0 0xD02 360 #define M68K_CR_PCR1L0 0xD03 361 #define M68K_CR_PCR2U0 0xD04 362 #define M68K_CR_PCR2L0 0xD05 363 #define M68K_CR_PCR3U0 0xD06 364 #define M68K_CR_PCR3L0 0xD07 365 #define M68K_CR_PCR1U1 0xD0A 366 #define M68K_CR_PCR1L1 0xD0B 367 #define M68K_CR_PCR2U1 0xD0C 368 #define M68K_CR_PCR2L1 0xD0D 369 #define M68K_CR_PCR3U1 0xD0E 370 #define M68K_CR_PCR3L1 0xD0F 371 372 /* MC680x0 */ 373 /* MC680[1234]0/CPU32 */ 374 #define M68K_CR_SFC 0x000 375 #define M68K_CR_DFC 0x001 376 #define M68K_CR_USP 0x800 377 #define M68K_CR_VBR 0x801 /* + Coldfire */ 378 379 /* MC680[234]0 */ 380 #define M68K_CR_CACR 0x002 /* + Coldfire */ 381 #define M68K_CR_CAAR 0x802 /* MC68020 and MC68030 only */ 382 #define M68K_CR_MSP 0x803 383 #define M68K_CR_ISP 0x804 384 385 /* MC68040/MC68LC040 */ 386 #define M68K_CR_TC 0x003 387 #define M68K_CR_ITT0 0x004 388 #define M68K_CR_ITT1 0x005 389 #define M68K_CR_DTT0 0x006 390 #define M68K_CR_DTT1 0x007 391 #define M68K_CR_MMUSR 0x805 392 #define M68K_CR_URP 0x806 393 #define M68K_CR_SRP 0x807 394 395 /* MC68EC040 */ 396 #define M68K_CR_IACR0 0x004 397 #define M68K_CR_IACR1 0x005 398 #define M68K_CR_DACR0 0x006 399 #define M68K_CR_DACR1 0x007 400 401 /* MC68060 */ 402 #define M68K_CR_BUSCR 0x008 403 #define M68K_CR_PCR 0x808 404 405 #define M68K_FPIAR_SHIFT 0 406 #define M68K_FPIAR (1 << M68K_FPIAR_SHIFT) 407 #define M68K_FPSR_SHIFT 1 408 #define M68K_FPSR (1 << M68K_FPSR_SHIFT) 409 #define M68K_FPCR_SHIFT 2 410 #define M68K_FPCR (1 << M68K_FPCR_SHIFT) 411 412 /* Floating-Point Status Register */ 413 414 /* Condition Code */ 415 #define FPSR_CC_MASK 0x0f000000 416 #define FPSR_CC_A 0x01000000 /* Not-A-Number */ 417 #define FPSR_CC_I 0x02000000 /* Infinity */ 418 #define FPSR_CC_Z 0x04000000 /* Zero */ 419 #define FPSR_CC_N 0x08000000 /* Negative */ 420 421 /* Quotient */ 422 423 #define FPSR_QT_MASK 0x00ff0000 424 #define FPSR_QT_SHIFT 16 425 426 /* Floating-Point Control Register */ 427 /* Rounding mode */ 428 #define FPCR_RND_MASK 0x0030 429 #define FPCR_RND_N 0x0000 430 #define FPCR_RND_Z 0x0010 431 #define FPCR_RND_M 0x0020 432 #define FPCR_RND_P 0x0030 433 434 /* Rounding precision */ 435 #define FPCR_PREC_MASK 0x00c0 436 #define FPCR_PREC_X 0x0000 437 #define FPCR_PREC_S 0x0040 438 #define FPCR_PREC_D 0x0080 439 #define FPCR_PREC_U 0x00c0 440 441 #define FPCR_EXCP_MASK 0xff00 442 443 /* CACR fields are implementation defined, but some bits are common. */ 444 #define M68K_CACR_EUSP 0x10 445 446 #define MACSR_PAV0 0x100 447 #define MACSR_OMC 0x080 448 #define MACSR_SU 0x040 449 #define MACSR_FI 0x020 450 #define MACSR_RT 0x010 451 #define MACSR_N 0x008 452 #define MACSR_Z 0x004 453 #define MACSR_V 0x002 454 #define MACSR_EV 0x001 455 456 void m68k_set_irq_level(M68kCPU *cpu, int level, uint8_t vector); 457 void m68k_switch_sp(CPUM68KState *env); 458 459 void do_m68k_semihosting(CPUM68KState *env, int nr); 460 461 /* 462 * The 68000 family is defined in six main CPU classes, the 680[012346]0. 463 * Generally each successive CPU adds enhanced data/stack/instructions. 464 * However, some features are only common to one, or a few classes. 465 * The features covers those subsets of instructons. 466 * 467 * CPU32/32+ are basically 680010 compatible with some 68020 class instructons, 468 * and some additional CPU32 instructions. Mostly Supervisor state differences. 469 * 470 * The ColdFire core ISA is a RISC-style reduction of the 68000 series cpu. 471 * There are 4 ColdFire core ISA revisions: A, A+, B and C. 472 * Each feature covers the subset of instructions common to the 473 * ISA revisions mentioned. 474 */ 475 476 enum m68k_features { 477 /* Base m68k instruction set */ 478 M68K_FEATURE_M68000, 479 M68K_FEATURE_M68010, 480 M68K_FEATURE_M68020, 481 M68K_FEATURE_M68030, 482 M68K_FEATURE_M68040, 483 M68K_FEATURE_M68060, 484 /* Base Coldfire set Rev A. */ 485 M68K_FEATURE_CF_ISA_A, 486 /* (ISA B or C). */ 487 M68K_FEATURE_CF_ISA_B, 488 /* BIT/BITREV, FF1, STRLDSR (ISA A+ or C). */ 489 M68K_FEATURE_CF_ISA_APLUSC, 490 /* BRA with Long branch. (680[2346]0, ISA A+ or B). */ 491 M68K_FEATURE_BRAL, 492 M68K_FEATURE_CF_FPU, 493 M68K_FEATURE_CF_MAC, 494 M68K_FEATURE_CF_EMAC, 495 /* Revision B EMAC (dual accumulate). */ 496 M68K_FEATURE_CF_EMAC_B, 497 /* User Stack Pointer. (680[012346]0, ISA A+, B or C). */ 498 M68K_FEATURE_USP, 499 /* Master Stack Pointer. (680[234]0) */ 500 M68K_FEATURE_MSP, 501 /* 68020+ full extension word. */ 502 M68K_FEATURE_EXT_FULL, 503 /* word sized address index registers. */ 504 M68K_FEATURE_WORD_INDEX, 505 /* scaled address index registers. */ 506 M68K_FEATURE_SCALED_INDEX, 507 /* 32 bit mul/div. (680[2346]0, and CPU32) */ 508 M68K_FEATURE_LONG_MULDIV, 509 /* 64 bit mul/div. (680[2346]0, and CPU32) */ 510 M68K_FEATURE_QUAD_MULDIV, 511 /* Bcc with Long branches. (680[2346]0, and CPU32) */ 512 M68K_FEATURE_BCCL, 513 /* BFxxx Bit field insns. (680[2346]0) */ 514 M68K_FEATURE_BITFIELD, 515 /* fpu insn. (680[46]0) */ 516 M68K_FEATURE_FPU, 517 /* CAS/CAS2[WL] insns. (680[2346]0) */ 518 M68K_FEATURE_CAS, 519 /* BKPT insn. (680[12346]0, and CPU32) */ 520 M68K_FEATURE_BKPT, 521 /* RTD insn. (680[12346]0, and CPU32) */ 522 M68K_FEATURE_RTD, 523 /* CHK2 insn. (680[2346]0, and CPU32) */ 524 M68K_FEATURE_CHK2, 525 /* MOVEP insn. (680[01234]0, and CPU32) */ 526 M68K_FEATURE_MOVEP, 527 /* MOVEC insn. (from 68010) */ 528 M68K_FEATURE_MOVEC, 529 /* Unaligned data accesses (680[2346]0) */ 530 M68K_FEATURE_UNALIGNED_DATA, 531 }; 532 533 static inline int m68k_feature(CPUM68KState *env, int feature) 534 { 535 return (env->features & (1u << feature)) != 0; 536 } 537 538 void m68k_cpu_list(void); 539 540 void register_m68k_insns (CPUM68KState *env); 541 542 enum { 543 /* 1 bit to define user level / supervisor access */ 544 ACCESS_SUPER = 0x01, 545 /* 1 bit to indicate direction */ 546 ACCESS_STORE = 0x02, 547 /* 1 bit to indicate debug access */ 548 ACCESS_DEBUG = 0x04, 549 /* PTEST instruction */ 550 ACCESS_PTEST = 0x08, 551 /* Type of instruction that generated the access */ 552 ACCESS_CODE = 0x10, /* Code fetch access */ 553 ACCESS_DATA = 0x20, /* Data load/store access */ 554 }; 555 556 #define M68K_CPU_TYPE_SUFFIX "-" TYPE_M68K_CPU 557 #define M68K_CPU_TYPE_NAME(model) model M68K_CPU_TYPE_SUFFIX 558 #define CPU_RESOLVING_TYPE TYPE_M68K_CPU 559 560 #define cpu_list m68k_cpu_list 561 562 /* MMU modes definitions */ 563 #define MMU_KERNEL_IDX 0 564 #define MMU_USER_IDX 1 565 static inline int cpu_mmu_index (CPUM68KState *env, bool ifetch) 566 { 567 return (env->sr & SR_S) == 0 ? 1 : 0; 568 } 569 570 bool m68k_cpu_tlb_fill(CPUState *cs, vaddr address, int size, 571 MMUAccessType access_type, int mmu_idx, 572 bool probe, uintptr_t retaddr); 573 void m68k_cpu_transaction_failed(CPUState *cs, hwaddr physaddr, vaddr addr, 574 unsigned size, MMUAccessType access_type, 575 int mmu_idx, MemTxAttrs attrs, 576 MemTxResult response, uintptr_t retaddr); 577 578 #include "exec/cpu-all.h" 579 580 /* TB flags */ 581 #define TB_FLAGS_MACSR 0x0f 582 #define TB_FLAGS_MSR_S_BIT 13 583 #define TB_FLAGS_MSR_S (1 << TB_FLAGS_MSR_S_BIT) 584 #define TB_FLAGS_SFC_S_BIT 14 585 #define TB_FLAGS_SFC_S (1 << TB_FLAGS_SFC_S_BIT) 586 #define TB_FLAGS_DFC_S_BIT 15 587 #define TB_FLAGS_DFC_S (1 << TB_FLAGS_DFC_S_BIT) 588 #define TB_FLAGS_TRACE 16 589 #define TB_FLAGS_TRACE_BIT (1 << TB_FLAGS_TRACE) 590 591 static inline void cpu_get_tb_cpu_state(CPUM68KState *env, target_ulong *pc, 592 target_ulong *cs_base, uint32_t *flags) 593 { 594 *pc = env->pc; 595 *cs_base = 0; 596 *flags = (env->macsr >> 4) & TB_FLAGS_MACSR; 597 if (env->sr & SR_S) { 598 *flags |= TB_FLAGS_MSR_S; 599 *flags |= (env->sfc << (TB_FLAGS_SFC_S_BIT - 2)) & TB_FLAGS_SFC_S; 600 *flags |= (env->dfc << (TB_FLAGS_DFC_S_BIT - 2)) & TB_FLAGS_DFC_S; 601 } 602 if (M68K_SR_TRACE(env->sr) == M68K_SR_TRACE_ANY_INS) { 603 *flags |= TB_FLAGS_TRACE; 604 } 605 } 606 607 void dump_mmu(CPUM68KState *env); 608 609 #endif 610