Annotation of qemu/target-mips/helper.c, revision 1.1.1.11

1.1       root        1: /*
                      2:  *  MIPS emulation helpers for qemu.
1.1.1.6   root        3:  *
1.1       root        4:  *  Copyright (c) 2004-2005 Jocelyn Mayer
                      5:  *
                      6:  * This library is free software; you can redistribute it and/or
                      7:  * modify it under the terms of the GNU Lesser General Public
                      8:  * License as published by the Free Software Foundation; either
                      9:  * version 2 of the License, or (at your option) any later version.
                     10:  *
                     11:  * This library is distributed in the hope that it will be useful,
                     12:  * but WITHOUT ANY WARRANTY; without even the implied warranty of
                     13:  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
                     14:  * Lesser General Public License for more details.
                     15:  *
                     16:  * You should have received a copy of the GNU Lesser General Public
1.1.1.8   root       17:  * License along with this library; if not, see <http://www.gnu.org/licenses/>.
1.1       root       18:  */
                     19: #include <stdarg.h>
                     20: #include <stdlib.h>
                     21: #include <stdio.h>
                     22: #include <string.h>
                     23: #include <inttypes.h>
                     24: #include <signal.h>
                     25: 
                     26: #include "cpu.h"
                     27: #include "exec-all.h"
                     28: 
1.1.1.4   root       29: enum {
                     30:     TLBRET_DIRTY = -4,
                     31:     TLBRET_INVALID = -3,
                     32:     TLBRET_NOMATCH = -2,
                     33:     TLBRET_BADADDR = -1,
                     34:     TLBRET_MATCH = 0
                     35: };
                     36: 
1.1.1.11! root       37: #if !defined(CONFIG_USER_ONLY)
        !            38: 
1.1.1.6   root       39: /* no MMU emulation */
1.1.1.9   root       40: int no_mmu_map_address (CPUState *env, target_phys_addr_t *physical, int *prot,
1.1       root       41:                         target_ulong address, int rw, int access_type)
                     42: {
1.1.1.6   root       43:     *physical = address;
                     44:     *prot = PAGE_READ | PAGE_WRITE;
                     45:     return TLBRET_MATCH;
                     46: }
                     47: 
                     48: /* fixed mapping MMU emulation */
1.1.1.9   root       49: int fixed_mmu_map_address (CPUState *env, target_phys_addr_t *physical, int *prot,
1.1.1.6   root       50:                            target_ulong address, int rw, int access_type)
                     51: {
                     52:     if (address <= (int32_t)0x7FFFFFFFUL) {
                     53:         if (!(env->CP0_Status & (1 << CP0St_ERL)))
                     54:             *physical = address + 0x40000000UL;
                     55:         else
                     56:             *physical = address;
                     57:     } else if (address <= (int32_t)0xBFFFFFFFUL)
                     58:         *physical = address & 0x1FFFFFFF;
                     59:     else
                     60:         *physical = address;
                     61: 
                     62:     *prot = PAGE_READ | PAGE_WRITE;
                     63:     return TLBRET_MATCH;
                     64: }
                     65: 
                     66: /* MIPS32/MIPS64 R4000-style MMU emulation */
1.1.1.9   root       67: int r4k_map_address (CPUState *env, target_phys_addr_t *physical, int *prot,
1.1.1.6   root       68:                      target_ulong address, int rw, int access_type)
                     69: {
                     70:     uint8_t ASID = env->CP0_EntryHi & 0xFF;
1.1.1.5   root       71:     int i;
                     72: 
1.1.1.6   root       73:     for (i = 0; i < env->tlb->tlb_in_use; i++) {
                     74:         r4k_tlb_t *tlb = &env->tlb->mmu.r4k.tlb[i];
1.1.1.5   root       75:         /* 1k pages are not supported. */
1.1.1.6   root       76:         target_ulong mask = tlb->PageMask | ~(TARGET_PAGE_MASK << 1);
1.1.1.5   root       77:         target_ulong tag = address & ~mask;
1.1.1.6   root       78:         target_ulong VPN = tlb->VPN & ~mask;
                     79: #if defined(TARGET_MIPS64)
                     80:         tag &= env->SEGMask;
                     81: #endif
1.1       root       82: 
                     83:         /* Check ASID, virtual page number & size */
1.1.1.6   root       84:         if ((tlb->G == 1 || tlb->ASID == ASID) && VPN == tag) {
1.1       root       85:             /* TLB match */
1.1.1.6   root       86:             int n = !!(address & mask & ~(mask >> 1));
1.1       root       87:             /* Check access rights */
1.1.1.6   root       88:             if (!(n ? tlb->V1 : tlb->V0))
1.1.1.4   root       89:                 return TLBRET_INVALID;
1.1.1.6   root       90:             if (rw == 0 || (n ? tlb->D1 : tlb->D0)) {
1.1.1.5   root       91:                 *physical = tlb->PFN[n] | (address & (mask >> 1));
1.1       root       92:                 *prot = PAGE_READ;
1.1.1.3   root       93:                 if (n ? tlb->D1 : tlb->D0)
1.1       root       94:                     *prot |= PAGE_WRITE;
1.1.1.4   root       95:                 return TLBRET_MATCH;
1.1       root       96:             }
1.1.1.4   root       97:             return TLBRET_DIRTY;
1.1       root       98:         }
                     99:     }
1.1.1.4   root      100:     return TLBRET_NOMATCH;
1.1       root      101: }
                    102: 
1.1.1.9   root      103: static int get_physical_address (CPUState *env, target_phys_addr_t *physical,
1.1.1.4   root      104:                                 int *prot, target_ulong address,
                    105:                                 int rw, int access_type)
1.1       root      106: {
1.1.1.6   root      107:     /* User mode can only access useg/xuseg */
1.1.1.4   root      108:     int user_mode = (env->hflags & MIPS_HFLAG_MODE) == MIPS_HFLAG_UM;
1.1.1.6   root      109:     int supervisor_mode = (env->hflags & MIPS_HFLAG_MODE) == MIPS_HFLAG_SM;
                    110:     int kernel_mode = !user_mode && !supervisor_mode;
                    111: #if defined(TARGET_MIPS64)
                    112:     int UX = (env->CP0_Status & (1 << CP0St_UX)) != 0;
                    113:     int SX = (env->CP0_Status & (1 << CP0St_SX)) != 0;
                    114:     int KX = (env->CP0_Status & (1 << CP0St_KX)) != 0;
                    115: #endif
1.1.1.4   root      116:     int ret = TLBRET_MATCH;
                    117: 
1.1       root      118: #if 0
1.1.1.7   root      119:     qemu_log("user mode %d h %08x\n", user_mode, env->hflags);
1.1       root      120: #endif
1.1.1.6   root      121: 
                    122:     if (address <= (int32_t)0x7FFFFFFFUL) {
                    123:         /* useg */
                    124:         if (env->CP0_Status & (1 << CP0St_ERL)) {
                    125:             *physical = address & 0xFFFFFFFF;
1.1       root      126:             *prot = PAGE_READ | PAGE_WRITE;
                    127:         } else {
1.1.1.6   root      128:             ret = env->tlb->map_address(env, physical, prot, address, rw, access_type);
1.1       root      129:         }
1.1.1.6   root      130: #if defined(TARGET_MIPS64)
                    131:     } else if (address < 0x4000000000000000ULL) {
                    132:         /* xuseg */
1.1.1.7   root      133:         if (UX && address <= (0x3FFFFFFFFFFFFFFFULL & env->SEGMask)) {
1.1.1.6   root      134:             ret = env->tlb->map_address(env, physical, prot, address, rw, access_type);
1.1.1.7   root      135:         } else {
                    136:             ret = TLBRET_BADADDR;
1.1.1.6   root      137:         }
                    138:     } else if (address < 0x8000000000000000ULL) {
                    139:         /* xsseg */
1.1.1.7   root      140:         if ((supervisor_mode || kernel_mode) &&
                    141:             SX && address <= (0x7FFFFFFFFFFFFFFFULL & env->SEGMask)) {
1.1.1.6   root      142:             ret = env->tlb->map_address(env, physical, prot, address, rw, access_type);
1.1.1.7   root      143:         } else {
                    144:             ret = TLBRET_BADADDR;
1.1.1.6   root      145:         }
                    146:     } else if (address < 0xC000000000000000ULL) {
                    147:         /* xkphys */
                    148:         if (kernel_mode && KX &&
                    149:             (address & 0x07FFFFFFFFFFFFFFULL) <= env->PAMask) {
                    150:             *physical = address & env->PAMask;
                    151:             *prot = PAGE_READ | PAGE_WRITE;
1.1.1.7   root      152:         } else {
                    153:             ret = TLBRET_BADADDR;
                    154:         }
1.1.1.6   root      155:     } else if (address < 0xFFFFFFFF80000000ULL) {
                    156:         /* xkseg */
1.1.1.7   root      157:         if (kernel_mode && KX &&
                    158:             address <= (0xFFFFFFFF7FFFFFFFULL & env->SEGMask)) {
1.1.1.6   root      159:             ret = env->tlb->map_address(env, physical, prot, address, rw, access_type);
1.1.1.7   root      160:         } else {
                    161:             ret = TLBRET_BADADDR;
                    162:         }
1.1.1.6   root      163: #endif
1.1.1.5   root      164:     } else if (address < (int32_t)0xA0000000UL) {
1.1       root      165:         /* kseg0 */
1.1.1.6   root      166:         if (kernel_mode) {
                    167:             *physical = address - (int32_t)0x80000000UL;
                    168:             *prot = PAGE_READ | PAGE_WRITE;
                    169:         } else {
                    170:             ret = TLBRET_BADADDR;
                    171:         }
1.1.1.5   root      172:     } else if (address < (int32_t)0xC0000000UL) {
1.1       root      173:         /* kseg1 */
1.1.1.6   root      174:         if (kernel_mode) {
                    175:             *physical = address - (int32_t)0xA0000000UL;
                    176:             *prot = PAGE_READ | PAGE_WRITE;
                    177:         } else {
                    178:             ret = TLBRET_BADADDR;
                    179:         }
1.1.1.5   root      180:     } else if (address < (int32_t)0xE0000000UL) {
1.1.1.6   root      181:         /* sseg (kseg2) */
                    182:         if (supervisor_mode || kernel_mode) {
                    183:             ret = env->tlb->map_address(env, physical, prot, address, rw, access_type);
                    184:         } else {
                    185:             ret = TLBRET_BADADDR;
                    186:         }
1.1       root      187:     } else {
                    188:         /* kseg3 */
                    189:         /* XXX: debug segment is not emulated */
1.1.1.6   root      190:         if (kernel_mode) {
                    191:             ret = env->tlb->map_address(env, physical, prot, address, rw, access_type);
                    192:         } else {
                    193:             ret = TLBRET_BADADDR;
                    194:         }
1.1       root      195:     }
                    196: #if 0
1.1.1.7   root      197:     qemu_log(TARGET_FMT_lx " %d %d => " TARGET_FMT_lx " %d (%d)\n",
                    198:             address, rw, access_type, *physical, *prot, ret);
1.1       root      199: #endif
                    200: 
                    201:     return ret;
                    202: }
1.1.1.7   root      203: #endif
1.1       root      204: 
1.1.1.9   root      205: static void raise_mmu_exception(CPUState *env, target_ulong address,
                    206:                                 int rw, int tlb_error)
                    207: {
                    208:     int exception = 0, error_code = 0;
                    209: 
                    210:     switch (tlb_error) {
                    211:     default:
                    212:     case TLBRET_BADADDR:
                    213:         /* Reference to kernel address from user mode or supervisor mode */
                    214:         /* Reference to supervisor address from user mode */
                    215:         if (rw)
                    216:             exception = EXCP_AdES;
                    217:         else
                    218:             exception = EXCP_AdEL;
                    219:         break;
                    220:     case TLBRET_NOMATCH:
                    221:         /* No TLB match for a mapped address */
                    222:         if (rw)
                    223:             exception = EXCP_TLBS;
                    224:         else
                    225:             exception = EXCP_TLBL;
                    226:         error_code = 1;
                    227:         break;
                    228:     case TLBRET_INVALID:
                    229:         /* TLB match with no valid bit */
                    230:         if (rw)
                    231:             exception = EXCP_TLBS;
                    232:         else
                    233:             exception = EXCP_TLBL;
                    234:         break;
                    235:     case TLBRET_DIRTY:
                    236:         /* TLB match but 'D' bit is cleared */
                    237:         exception = EXCP_LTLBL;
                    238:         break;
                    239: 
                    240:     }
                    241:     /* Raise exception */
                    242:     env->CP0_BadVAddr = address;
                    243:     env->CP0_Context = (env->CP0_Context & ~0x007fffff) |
                    244:                        ((address >> 9) & 0x007ffff0);
                    245:     env->CP0_EntryHi =
                    246:         (env->CP0_EntryHi & 0xFF) | (address & (TARGET_PAGE_MASK << 1));
                    247: #if defined(TARGET_MIPS64)
                    248:     env->CP0_EntryHi &= env->SEGMask;
                    249:     env->CP0_XContext = (env->CP0_XContext & ((~0ULL) << (env->SEGBITS - 7))) |
                    250:                         ((address & 0xC00000000000ULL) >> (55 - env->SEGBITS)) |
                    251:                         ((address & ((1ULL << env->SEGBITS) - 1) & 0xFFFFFFFFFFFFE000ULL) >> 9);
                    252: #endif
                    253:     env->exception_index = exception;
                    254:     env->error_code = error_code;
                    255: }
                    256: 
1.1.1.11! root      257: #if !defined(CONFIG_USER_ONLY)
1.1.1.6   root      258: target_phys_addr_t cpu_get_phys_page_debug(CPUState *env, target_ulong addr)
1.1       root      259: {
1.1.1.9   root      260:     target_phys_addr_t phys_addr;
1.1       root      261:     int prot;
                    262: 
                    263:     if (get_physical_address(env, &phys_addr, &prot, addr, 0, ACCESS_INT) != 0)
                    264:         return -1;
                    265:     return phys_addr;
                    266: }
1.1.1.11! root      267: #endif
1.1       root      268: 
                    269: int cpu_mips_handle_mmu_fault (CPUState *env, target_ulong address, int rw,
1.1.1.6   root      270:                                int mmu_idx, int is_softmmu)
1.1       root      271: {
1.1.1.7   root      272: #if !defined(CONFIG_USER_ONLY)
1.1.1.9   root      273:     target_phys_addr_t physical;
1.1       root      274:     int prot;
1.1.1.7   root      275: #endif
1.1       root      276:     int access_type;
                    277:     int ret = 0;
                    278: 
1.1.1.2   root      279: #if 0
1.1.1.7   root      280:     log_cpu_state(env, 0);
1.1.1.2   root      281: #endif
1.1.1.7   root      282:     qemu_log("%s pc " TARGET_FMT_lx " ad " TARGET_FMT_lx " rw %d mmu_idx %d smmu %d\n",
                    283:               __func__, env->active_tc.PC, address, rw, mmu_idx, is_softmmu);
1.1.1.2   root      284: 
                    285:     rw &= 1;
                    286: 
1.1       root      287:     /* data access */
                    288:     /* XXX: put correct access by using cpu_restore_state()
                    289:        correctly */
                    290:     access_type = ACCESS_INT;
1.1.1.7   root      291: #if defined(CONFIG_USER_ONLY)
                    292:     ret = TLBRET_NOMATCH;
                    293: #else
1.1       root      294:     ret = get_physical_address(env, &physical, &prot,
                    295:                                address, rw, access_type);
1.1.1.9   root      296:     qemu_log("%s address=" TARGET_FMT_lx " ret %d physical " TARGET_FMT_plx " prot %d\n",
1.1.1.7   root      297:               __func__, address, ret, physical, prot);
1.1.1.4   root      298:     if (ret == TLBRET_MATCH) {
1.1.1.11! root      299:        tlb_set_page(env, address & TARGET_PAGE_MASK,
        !           300:                     physical & TARGET_PAGE_MASK, prot | PAGE_EXEC,
        !           301:                     mmu_idx, TARGET_PAGE_SIZE);
        !           302:        ret = 0;
1.1.1.7   root      303:     } else if (ret < 0)
                    304: #endif
                    305:     {
1.1.1.9   root      306:         raise_mmu_exception(env, address, rw, ret);
1.1       root      307:         ret = 1;
                    308:     }
                    309: 
                    310:     return ret;
                    311: }
                    312: 
1.1.1.9   root      313: #if !defined(CONFIG_USER_ONLY)
1.1.1.10  root      314: target_phys_addr_t cpu_mips_translate_address(CPUState *env, target_ulong address, int rw)
1.1.1.9   root      315: {
                    316:     target_phys_addr_t physical;
                    317:     int prot;
                    318:     int access_type;
                    319:     int ret = 0;
                    320: 
                    321:     rw &= 1;
                    322: 
                    323:     /* data access */
                    324:     access_type = ACCESS_INT;
                    325:     ret = get_physical_address(env, &physical, &prot,
                    326:                                address, rw, access_type);
                    327:     if (ret != TLBRET_MATCH) {
                    328:         raise_mmu_exception(env, address, rw, ret);
1.1.1.10  root      329:         return -1LL;
                    330:     } else {
                    331:         return physical;
1.1.1.9   root      332:     }
                    333: }
                    334: #endif
                    335: 
1.1.1.6   root      336: static const char * const excp_names[EXCP_LAST + 1] = {
                    337:     [EXCP_RESET] = "reset",
                    338:     [EXCP_SRESET] = "soft reset",
                    339:     [EXCP_DSS] = "debug single step",
                    340:     [EXCP_DINT] = "debug interrupt",
                    341:     [EXCP_NMI] = "non-maskable interrupt",
                    342:     [EXCP_MCHECK] = "machine check",
                    343:     [EXCP_EXT_INTERRUPT] = "interrupt",
                    344:     [EXCP_DFWATCH] = "deferred watchpoint",
                    345:     [EXCP_DIB] = "debug instruction breakpoint",
                    346:     [EXCP_IWATCH] = "instruction fetch watchpoint",
                    347:     [EXCP_AdEL] = "address error load",
                    348:     [EXCP_AdES] = "address error store",
                    349:     [EXCP_TLBF] = "TLB refill",
                    350:     [EXCP_IBE] = "instruction bus error",
                    351:     [EXCP_DBp] = "debug breakpoint",
                    352:     [EXCP_SYSCALL] = "syscall",
                    353:     [EXCP_BREAK] = "break",
                    354:     [EXCP_CpU] = "coprocessor unusable",
                    355:     [EXCP_RI] = "reserved instruction",
                    356:     [EXCP_OVERFLOW] = "arithmetic overflow",
                    357:     [EXCP_TRAP] = "trap",
                    358:     [EXCP_FPE] = "floating point",
                    359:     [EXCP_DDBS] = "debug data break store",
                    360:     [EXCP_DWATCH] = "data watchpoint",
                    361:     [EXCP_LTLBL] = "TLB modify",
                    362:     [EXCP_TLBL] = "TLB load",
                    363:     [EXCP_TLBS] = "TLB store",
                    364:     [EXCP_DBE] = "data bus error",
                    365:     [EXCP_DDBL] = "debug data break load",
                    366:     [EXCP_THREAD] = "thread",
                    367:     [EXCP_MDMX] = "MDMX",
                    368:     [EXCP_C2E] = "precise coprocessor 2",
                    369:     [EXCP_CACHE] = "cache error",
                    370: };
                    371: 
1.1.1.11! root      372: #if !defined(CONFIG_USER_ONLY)
        !           373: static target_ulong exception_resume_pc (CPUState *env)
        !           374: {
        !           375:     target_ulong bad_pc;
        !           376:     target_ulong isa_mode;
        !           377: 
        !           378:     isa_mode = !!(env->hflags & MIPS_HFLAG_M16);
        !           379:     bad_pc = env->active_tc.PC | isa_mode;
        !           380:     if (env->hflags & MIPS_HFLAG_BMASK) {
        !           381:         /* If the exception was raised from a delay slot, come back to
        !           382:            the jump.  */
        !           383:         bad_pc -= (env->hflags & MIPS_HFLAG_B16 ? 2 : 4);
        !           384:     }
        !           385: 
        !           386:     return bad_pc;
        !           387: }
        !           388: 
        !           389: static void set_hflags_for_handler (CPUState *env)
        !           390: {
        !           391:     /* Exception handlers are entered in 32-bit mode.  */
        !           392:     env->hflags &= ~(MIPS_HFLAG_M16);
        !           393:     /* ...except that microMIPS lets you choose.  */
        !           394:     if (env->insn_flags & ASE_MICROMIPS) {
        !           395:         env->hflags |= (!!(env->CP0_Config3
        !           396:                            & (1 << CP0C3_ISA_ON_EXC))
        !           397:                         << MIPS_HFLAG_M16_SHIFT);
        !           398:     }
        !           399: }
        !           400: #endif
        !           401: 
1.1       root      402: void do_interrupt (CPUState *env)
                    403: {
1.1.1.6   root      404: #if !defined(CONFIG_USER_ONLY)
1.1.1.5   root      405:     target_ulong offset;
1.1       root      406:     int cause = -1;
1.1.1.6   root      407:     const char *name;
1.1       root      408: 
1.1.1.7   root      409:     if (qemu_log_enabled() && env->exception_index != EXCP_EXT_INTERRUPT) {
1.1.1.6   root      410:         if (env->exception_index < 0 || env->exception_index > EXCP_LAST)
                    411:             name = "unknown";
                    412:         else
                    413:             name = excp_names[env->exception_index];
                    414: 
1.1.1.7   root      415:         qemu_log("%s enter: PC " TARGET_FMT_lx " EPC " TARGET_FMT_lx " %s exception\n",
                    416:                  __func__, env->active_tc.PC, env->CP0_EPC, name);
1.1       root      417:     }
                    418:     if (env->exception_index == EXCP_EXT_INTERRUPT &&
                    419:         (env->hflags & MIPS_HFLAG_DM))
                    420:         env->exception_index = EXCP_DINT;
                    421:     offset = 0x180;
                    422:     switch (env->exception_index) {
                    423:     case EXCP_DSS:
                    424:         env->CP0_Debug |= 1 << CP0DB_DSS;
                    425:         /* Debug single step cannot be raised inside a delay slot and
1.1.1.7   root      426:            resume will always occur on the next instruction
                    427:            (but we assume the pc has always been updated during
                    428:            code translation). */
1.1.1.11! root      429:         env->CP0_DEPC = env->active_tc.PC | !!(env->hflags & MIPS_HFLAG_M16);
1.1       root      430:         goto enter_debug_mode;
                    431:     case EXCP_DINT:
                    432:         env->CP0_Debug |= 1 << CP0DB_DINT;
                    433:         goto set_DEPC;
                    434:     case EXCP_DIB:
                    435:         env->CP0_Debug |= 1 << CP0DB_DIB;
                    436:         goto set_DEPC;
                    437:     case EXCP_DBp:
                    438:         env->CP0_Debug |= 1 << CP0DB_DBp;
                    439:         goto set_DEPC;
                    440:     case EXCP_DDBS:
                    441:         env->CP0_Debug |= 1 << CP0DB_DDBS;
                    442:         goto set_DEPC;
                    443:     case EXCP_DDBL:
                    444:         env->CP0_Debug |= 1 << CP0DB_DDBL;
                    445:     set_DEPC:
1.1.1.11! root      446:         env->CP0_DEPC = exception_resume_pc(env);
        !           447:         env->hflags &= ~MIPS_HFLAG_BMASK;
1.1.1.7   root      448:  enter_debug_mode:
1.1.1.6   root      449:         env->hflags |= MIPS_HFLAG_DM | MIPS_HFLAG_64 | MIPS_HFLAG_CP0;
                    450:         env->hflags &= ~(MIPS_HFLAG_KSU);
1.1       root      451:         /* EJTAG probe trap enable is not implemented... */
1.1.1.6   root      452:         if (!(env->CP0_Status & (1 << CP0St_EXL)))
                    453:             env->CP0_Cause &= ~(1 << CP0Ca_BD);
1.1.1.7   root      454:         env->active_tc.PC = (int32_t)0xBFC00480;
1.1.1.11! root      455:         set_hflags_for_handler(env);
1.1       root      456:         break;
                    457:     case EXCP_RESET:
1.1.1.5   root      458:         cpu_reset(env);
                    459:         break;
1.1       root      460:     case EXCP_SRESET:
1.1.1.6   root      461:         env->CP0_Status |= (1 << CP0St_SR);
                    462:         memset(env->CP0_WatchLo, 0, sizeof(*env->CP0_WatchLo));
1.1       root      463:         goto set_error_EPC;
                    464:     case EXCP_NMI:
1.1.1.6   root      465:         env->CP0_Status |= (1 << CP0St_NMI);
1.1.1.7   root      466:  set_error_EPC:
1.1.1.11! root      467:         env->CP0_ErrorEPC = exception_resume_pc(env);
        !           468:         env->hflags &= ~MIPS_HFLAG_BMASK;
1.1.1.6   root      469:         env->CP0_Status |= (1 << CP0St_ERL) | (1 << CP0St_BEV);
                    470:         env->hflags |= MIPS_HFLAG_64 | MIPS_HFLAG_CP0;
                    471:         env->hflags &= ~(MIPS_HFLAG_KSU);
                    472:         if (!(env->CP0_Status & (1 << CP0St_EXL)))
                    473:             env->CP0_Cause &= ~(1 << CP0Ca_BD);
1.1.1.7   root      474:         env->active_tc.PC = (int32_t)0xBFC00000;
1.1.1.11! root      475:         set_hflags_for_handler(env);
1.1       root      476:         break;
                    477:     case EXCP_EXT_INTERRUPT:
                    478:         cause = 0;
                    479:         if (env->CP0_Cause & (1 << CP0Ca_IV))
                    480:             offset = 0x200;
                    481:         goto set_EPC;
1.1.1.6   root      482:     case EXCP_LTLBL:
                    483:         cause = 1;
                    484:         goto set_EPC;
                    485:     case EXCP_TLBL:
                    486:         cause = 2;
                    487:         if (env->error_code == 1 && !(env->CP0_Status & (1 << CP0St_EXL))) {
                    488: #if defined(TARGET_MIPS64)
                    489:             int R = env->CP0_BadVAddr >> 62;
                    490:             int UX = (env->CP0_Status & (1 << CP0St_UX)) != 0;
                    491:             int SX = (env->CP0_Status & (1 << CP0St_SX)) != 0;
                    492:             int KX = (env->CP0_Status & (1 << CP0St_KX)) != 0;
                    493: 
1.1.1.11! root      494:             if (((R == 0 && UX) || (R == 1 && SX) || (R == 3 && KX)) &&
        !           495:                 (!(env->insn_flags & (INSN_LOONGSON2E | INSN_LOONGSON2F))))
1.1.1.6   root      496:                 offset = 0x080;
                    497:             else
                    498: #endif
                    499:                 offset = 0x000;
                    500:         }
                    501:         goto set_EPC;
                    502:     case EXCP_TLBS:
                    503:         cause = 3;
                    504:         if (env->error_code == 1 && !(env->CP0_Status & (1 << CP0St_EXL))) {
                    505: #if defined(TARGET_MIPS64)
                    506:             int R = env->CP0_BadVAddr >> 62;
                    507:             int UX = (env->CP0_Status & (1 << CP0St_UX)) != 0;
                    508:             int SX = (env->CP0_Status & (1 << CP0St_SX)) != 0;
                    509:             int KX = (env->CP0_Status & (1 << CP0St_KX)) != 0;
                    510: 
1.1.1.11! root      511:             if (((R == 0 && UX) || (R == 1 && SX) || (R == 3 && KX)) &&
        !           512:                 (!(env->insn_flags & (INSN_LOONGSON2E | INSN_LOONGSON2F))))
1.1.1.6   root      513:                 offset = 0x080;
                    514:             else
                    515: #endif
                    516:                 offset = 0x000;
                    517:         }
1.1       root      518:         goto set_EPC;
                    519:     case EXCP_AdEL:
                    520:         cause = 4;
                    521:         goto set_EPC;
1.1.1.6   root      522:     case EXCP_AdES:
                    523:         cause = 5;
1.1       root      524:         goto set_EPC;
                    525:     case EXCP_IBE:
                    526:         cause = 6;
                    527:         goto set_EPC;
                    528:     case EXCP_DBE:
                    529:         cause = 7;
                    530:         goto set_EPC;
                    531:     case EXCP_SYSCALL:
                    532:         cause = 8;
                    533:         goto set_EPC;
                    534:     case EXCP_BREAK:
                    535:         cause = 9;
                    536:         goto set_EPC;
                    537:     case EXCP_RI:
                    538:         cause = 10;
                    539:         goto set_EPC;
                    540:     case EXCP_CpU:
                    541:         cause = 11;
1.1.1.6   root      542:         env->CP0_Cause = (env->CP0_Cause & ~(0x3 << CP0Ca_CE)) |
                    543:                          (env->error_code << CP0Ca_CE);
1.1       root      544:         goto set_EPC;
                    545:     case EXCP_OVERFLOW:
                    546:         cause = 12;
                    547:         goto set_EPC;
                    548:     case EXCP_TRAP:
                    549:         cause = 13;
                    550:         goto set_EPC;
1.1.1.6   root      551:     case EXCP_FPE:
                    552:         cause = 15;
1.1       root      553:         goto set_EPC;
1.1.1.6   root      554:     case EXCP_C2E:
                    555:         cause = 18;
1.1       root      556:         goto set_EPC;
1.1.1.6   root      557:     case EXCP_MDMX:
                    558:         cause = 22;
                    559:         goto set_EPC;
                    560:     case EXCP_DWATCH:
                    561:         cause = 23;
                    562:         /* XXX: TODO: manage defered watch exceptions */
                    563:         goto set_EPC;
                    564:     case EXCP_MCHECK:
                    565:         cause = 24;
                    566:         goto set_EPC;
                    567:     case EXCP_THREAD:
                    568:         cause = 25;
                    569:         goto set_EPC;
                    570:     case EXCP_CACHE:
                    571:         cause = 30;
                    572:         if (env->CP0_Status & (1 << CP0St_BEV)) {
                    573:             offset = 0x100;
1.1       root      574:         } else {
1.1.1.6   root      575:             offset = 0x20000100;
                    576:         }
1.1.1.7   root      577:  set_EPC:
1.1.1.6   root      578:         if (!(env->CP0_Status & (1 << CP0St_EXL))) {
1.1.1.11! root      579:             env->CP0_EPC = exception_resume_pc(env);
1.1.1.6   root      580:             if (env->hflags & MIPS_HFLAG_BMASK) {
                    581:                 env->CP0_Cause |= (1 << CP0Ca_BD);
                    582:             } else {
                    583:                 env->CP0_Cause &= ~(1 << CP0Ca_BD);
                    584:             }
                    585:             env->CP0_Status |= (1 << CP0St_EXL);
                    586:             env->hflags |= MIPS_HFLAG_64 | MIPS_HFLAG_CP0;
                    587:             env->hflags &= ~(MIPS_HFLAG_KSU);
1.1       root      588:         }
1.1.1.6   root      589:         env->hflags &= ~MIPS_HFLAG_BMASK;
1.1.1.5   root      590:         if (env->CP0_Status & (1 << CP0St_BEV)) {
1.1.1.7   root      591:             env->active_tc.PC = (int32_t)0xBFC00200;
1.1.1.5   root      592:         } else {
1.1.1.7   root      593:             env->active_tc.PC = (int32_t)(env->CP0_EBase & ~0x3ff);
1.1.1.5   root      594:         }
1.1.1.7   root      595:         env->active_tc.PC += offset;
1.1.1.11! root      596:         set_hflags_for_handler(env);
1.1.1.6   root      597:         env->CP0_Cause = (env->CP0_Cause & ~(0x1f << CP0Ca_EC)) | (cause << CP0Ca_EC);
1.1       root      598:         break;
                    599:     default:
1.1.1.7   root      600:         qemu_log("Invalid MIPS exception %d. Exiting\n", env->exception_index);
1.1       root      601:         printf("Invalid MIPS exception %d. Exiting\n", env->exception_index);
                    602:         exit(1);
                    603:     }
1.1.1.7   root      604:     if (qemu_log_enabled() && env->exception_index != EXCP_EXT_INTERRUPT) {
                    605:         qemu_log("%s: PC " TARGET_FMT_lx " EPC " TARGET_FMT_lx " cause %d\n"
1.1.1.6   root      606:                 "    S %08x C %08x A " TARGET_FMT_lx " D " TARGET_FMT_lx "\n",
1.1.1.7   root      607:                 __func__, env->active_tc.PC, env->CP0_EPC, cause,
1.1       root      608:                 env->CP0_Status, env->CP0_Cause, env->CP0_BadVAddr,
                    609:                 env->CP0_DEPC);
                    610:     }
1.1.1.7   root      611: #endif
1.1       root      612:     env->exception_index = EXCP_NONE;
                    613: }
1.1.1.5   root      614: 
1.1.1.11! root      615: #if !defined(CONFIG_USER_ONLY)
1.1.1.6   root      616: void r4k_invalidate_tlb (CPUState *env, int idx, int use_extra)
1.1.1.5   root      617: {
1.1.1.6   root      618:     r4k_tlb_t *tlb;
1.1.1.5   root      619:     target_ulong addr;
                    620:     target_ulong end;
                    621:     uint8_t ASID = env->CP0_EntryHi & 0xFF;
                    622:     target_ulong mask;
                    623: 
1.1.1.6   root      624:     tlb = &env->tlb->mmu.r4k.tlb[idx];
                    625:     /* The qemu TLB is flushed when the ASID changes, so no need to
1.1.1.5   root      626:        flush these entries again.  */
                    627:     if (tlb->G == 0 && tlb->ASID != ASID) {
                    628:         return;
                    629:     }
                    630: 
1.1.1.6   root      631:     if (use_extra && env->tlb->tlb_in_use < MIPS_TLB_MAX) {
1.1.1.5   root      632:         /* For tlbwr, we can shadow the discarded entry into
1.1.1.7   root      633:            a new (fake) TLB entry, as long as the guest can not
                    634:            tell that it's there.  */
1.1.1.6   root      635:         env->tlb->mmu.r4k.tlb[env->tlb->tlb_in_use] = *tlb;
                    636:         env->tlb->tlb_in_use++;
1.1.1.5   root      637:         return;
                    638:     }
                    639: 
                    640:     /* 1k pages are not supported. */
1.1.1.6   root      641:     mask = tlb->PageMask | ~(TARGET_PAGE_MASK << 1);
1.1.1.5   root      642:     if (tlb->V0) {
1.1.1.6   root      643:         addr = tlb->VPN & ~mask;
                    644: #if defined(TARGET_MIPS64)
                    645:         if (addr >= (0xFFFFFFFF80000000ULL & env->SEGMask)) {
                    646:             addr |= 0x3FFFFF0000000000ULL;
                    647:         }
                    648: #endif
1.1.1.5   root      649:         end = addr | (mask >> 1);
                    650:         while (addr < end) {
                    651:             tlb_flush_page (env, addr);
                    652:             addr += TARGET_PAGE_SIZE;
                    653:         }
                    654:     }
                    655:     if (tlb->V1) {
1.1.1.6   root      656:         addr = (tlb->VPN & ~mask) | ((mask >> 1) + 1);
                    657: #if defined(TARGET_MIPS64)
                    658:         if (addr >= (0xFFFFFFFF80000000ULL & env->SEGMask)) {
                    659:             addr |= 0x3FFFFF0000000000ULL;
                    660:         }
                    661: #endif
1.1.1.5   root      662:         end = addr | mask;
1.1.1.7   root      663:         while (addr - 1 < end) {
1.1.1.5   root      664:             tlb_flush_page (env, addr);
                    665:             addr += TARGET_PAGE_SIZE;
                    666:         }
                    667:     }
                    668: }
1.1.1.11! root      669: #endif

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