1163fa5caSBlue Swirl /* 2163fa5caSBlue Swirl * Sparc MMU helpers 3163fa5caSBlue Swirl * 4163fa5caSBlue Swirl * Copyright (c) 2003-2005 Fabrice Bellard 5163fa5caSBlue Swirl * 6163fa5caSBlue Swirl * This library is free software; you can redistribute it and/or 7163fa5caSBlue Swirl * modify it under the terms of the GNU Lesser General Public 8163fa5caSBlue Swirl * License as published by the Free Software Foundation; either 9163fa5caSBlue Swirl * version 2 of the License, or (at your option) any later version. 10163fa5caSBlue Swirl * 11163fa5caSBlue Swirl * This library is distributed in the hope that it will be useful, 12163fa5caSBlue Swirl * but WITHOUT ANY WARRANTY; without even the implied warranty of 13163fa5caSBlue Swirl * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 14163fa5caSBlue Swirl * Lesser General Public License for more details. 15163fa5caSBlue Swirl * 16163fa5caSBlue Swirl * You should have received a copy of the GNU Lesser General Public 17163fa5caSBlue Swirl * License along with this library; if not, see <http://www.gnu.org/licenses/>. 18163fa5caSBlue Swirl */ 19163fa5caSBlue Swirl 20163fa5caSBlue Swirl #include "cpu.h" 21ec0ceb17SBlue Swirl #include "trace.h" 22022c62cbSPaolo Bonzini #include "exec/address-spaces.h" 23163fa5caSBlue Swirl 24163fa5caSBlue Swirl /* Sparc MMU emulation */ 25163fa5caSBlue Swirl 26163fa5caSBlue Swirl #if defined(CONFIG_USER_ONLY) 27163fa5caSBlue Swirl 287510454eSAndreas Färber int sparc_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw, 29163fa5caSBlue Swirl int mmu_idx) 30163fa5caSBlue Swirl { 317510454eSAndreas Färber SPARCCPU *cpu = SPARC_CPU(cs); 327510454eSAndreas Färber 33163fa5caSBlue Swirl if (rw & 2) { 347510454eSAndreas Färber cpu->env.exception_index = TT_TFAULT; 35163fa5caSBlue Swirl } else { 367510454eSAndreas Färber cpu->env.exception_index = TT_DFAULT; 37163fa5caSBlue Swirl } 38163fa5caSBlue Swirl return 1; 39163fa5caSBlue Swirl } 40163fa5caSBlue Swirl 41163fa5caSBlue Swirl #else 42163fa5caSBlue Swirl 43163fa5caSBlue Swirl #ifndef TARGET_SPARC64 44163fa5caSBlue Swirl /* 45163fa5caSBlue Swirl * Sparc V8 Reference MMU (SRMMU) 46163fa5caSBlue Swirl */ 47163fa5caSBlue Swirl static const int access_table[8][8] = { 48163fa5caSBlue Swirl { 0, 0, 0, 0, 8, 0, 12, 12 }, 49163fa5caSBlue Swirl { 0, 0, 0, 0, 8, 0, 0, 0 }, 50163fa5caSBlue Swirl { 8, 8, 0, 0, 0, 8, 12, 12 }, 51163fa5caSBlue Swirl { 8, 8, 0, 0, 0, 8, 0, 0 }, 52163fa5caSBlue Swirl { 8, 0, 8, 0, 8, 8, 12, 12 }, 53163fa5caSBlue Swirl { 8, 0, 8, 0, 8, 0, 8, 0 }, 54163fa5caSBlue Swirl { 8, 8, 8, 0, 8, 8, 12, 12 }, 55163fa5caSBlue Swirl { 8, 8, 8, 0, 8, 8, 8, 0 } 56163fa5caSBlue Swirl }; 57163fa5caSBlue Swirl 58163fa5caSBlue Swirl static const int perm_table[2][8] = { 59163fa5caSBlue Swirl { 60163fa5caSBlue Swirl PAGE_READ, 61163fa5caSBlue Swirl PAGE_READ | PAGE_WRITE, 62163fa5caSBlue Swirl PAGE_READ | PAGE_EXEC, 63163fa5caSBlue Swirl PAGE_READ | PAGE_WRITE | PAGE_EXEC, 64163fa5caSBlue Swirl PAGE_EXEC, 65163fa5caSBlue Swirl PAGE_READ | PAGE_WRITE, 66163fa5caSBlue Swirl PAGE_READ | PAGE_EXEC, 67163fa5caSBlue Swirl PAGE_READ | PAGE_WRITE | PAGE_EXEC 68163fa5caSBlue Swirl }, 69163fa5caSBlue Swirl { 70163fa5caSBlue Swirl PAGE_READ, 71163fa5caSBlue Swirl PAGE_READ | PAGE_WRITE, 72163fa5caSBlue Swirl PAGE_READ | PAGE_EXEC, 73163fa5caSBlue Swirl PAGE_READ | PAGE_WRITE | PAGE_EXEC, 74163fa5caSBlue Swirl PAGE_EXEC, 75163fa5caSBlue Swirl PAGE_READ, 76163fa5caSBlue Swirl 0, 77163fa5caSBlue Swirl 0, 78163fa5caSBlue Swirl } 79163fa5caSBlue Swirl }; 80163fa5caSBlue Swirl 81a8170e5eSAvi Kivity static int get_physical_address(CPUSPARCState *env, hwaddr *physical, 82163fa5caSBlue Swirl int *prot, int *access_index, 83163fa5caSBlue Swirl target_ulong address, int rw, int mmu_idx, 84163fa5caSBlue Swirl target_ulong *page_size) 85163fa5caSBlue Swirl { 86163fa5caSBlue Swirl int access_perms = 0; 87a8170e5eSAvi Kivity hwaddr pde_ptr; 88163fa5caSBlue Swirl uint32_t pde; 89163fa5caSBlue Swirl int error_code = 0, is_dirty, is_user; 90163fa5caSBlue Swirl unsigned long page_offset; 912fad1112SAndreas Färber CPUState *cs = CPU(sparc_env_get_cpu(env)); 92163fa5caSBlue Swirl 93163fa5caSBlue Swirl is_user = mmu_idx == MMU_USER_IDX; 94163fa5caSBlue Swirl 95163fa5caSBlue Swirl if ((env->mmuregs[0] & MMU_E) == 0) { /* MMU disabled */ 96163fa5caSBlue Swirl *page_size = TARGET_PAGE_SIZE; 97163fa5caSBlue Swirl /* Boot mode: instruction fetches are taken from PROM */ 98163fa5caSBlue Swirl if (rw == 2 && (env->mmuregs[0] & env->def->mmu_bm)) { 99163fa5caSBlue Swirl *physical = env->prom_addr | (address & 0x7ffffULL); 100163fa5caSBlue Swirl *prot = PAGE_READ | PAGE_EXEC; 101163fa5caSBlue Swirl return 0; 102163fa5caSBlue Swirl } 103163fa5caSBlue Swirl *physical = address; 104163fa5caSBlue Swirl *prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC; 105163fa5caSBlue Swirl return 0; 106163fa5caSBlue Swirl } 107163fa5caSBlue Swirl 108163fa5caSBlue Swirl *access_index = ((rw & 1) << 2) | (rw & 2) | (is_user ? 0 : 1); 109163fa5caSBlue Swirl *physical = 0xffffffffffff0000ULL; 110163fa5caSBlue Swirl 111163fa5caSBlue Swirl /* SPARC reference MMU table walk: Context table->L1->L2->PTE */ 112163fa5caSBlue Swirl /* Context base + context number */ 113163fa5caSBlue Swirl pde_ptr = (env->mmuregs[1] << 4) + (env->mmuregs[2] << 2); 114fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 115163fa5caSBlue Swirl 116163fa5caSBlue Swirl /* Ctx pde */ 117163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 118163fa5caSBlue Swirl default: 119163fa5caSBlue Swirl case 0: /* Invalid */ 120163fa5caSBlue Swirl return 1 << 2; 121163fa5caSBlue Swirl case 2: /* L0 PTE, maybe should not happen? */ 122163fa5caSBlue Swirl case 3: /* Reserved */ 123163fa5caSBlue Swirl return 4 << 2; 124163fa5caSBlue Swirl case 1: /* L0 PDE */ 125163fa5caSBlue Swirl pde_ptr = ((address >> 22) & ~3) + ((pde & ~3) << 4); 126fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 127163fa5caSBlue Swirl 128163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 129163fa5caSBlue Swirl default: 130163fa5caSBlue Swirl case 0: /* Invalid */ 131163fa5caSBlue Swirl return (1 << 8) | (1 << 2); 132163fa5caSBlue Swirl case 3: /* Reserved */ 133163fa5caSBlue Swirl return (1 << 8) | (4 << 2); 134163fa5caSBlue Swirl case 1: /* L1 PDE */ 135163fa5caSBlue Swirl pde_ptr = ((address & 0xfc0000) >> 16) + ((pde & ~3) << 4); 136fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 137163fa5caSBlue Swirl 138163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 139163fa5caSBlue Swirl default: 140163fa5caSBlue Swirl case 0: /* Invalid */ 141163fa5caSBlue Swirl return (2 << 8) | (1 << 2); 142163fa5caSBlue Swirl case 3: /* Reserved */ 143163fa5caSBlue Swirl return (2 << 8) | (4 << 2); 144163fa5caSBlue Swirl case 1: /* L2 PDE */ 145163fa5caSBlue Swirl pde_ptr = ((address & 0x3f000) >> 10) + ((pde & ~3) << 4); 146fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 147163fa5caSBlue Swirl 148163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 149163fa5caSBlue Swirl default: 150163fa5caSBlue Swirl case 0: /* Invalid */ 151163fa5caSBlue Swirl return (3 << 8) | (1 << 2); 152163fa5caSBlue Swirl case 1: /* PDE, should not happen */ 153163fa5caSBlue Swirl case 3: /* Reserved */ 154163fa5caSBlue Swirl return (3 << 8) | (4 << 2); 155163fa5caSBlue Swirl case 2: /* L3 PTE */ 1561658dd32SBlue Swirl page_offset = 0; 157163fa5caSBlue Swirl } 158163fa5caSBlue Swirl *page_size = TARGET_PAGE_SIZE; 159163fa5caSBlue Swirl break; 160163fa5caSBlue Swirl case 2: /* L2 PTE */ 1611658dd32SBlue Swirl page_offset = address & 0x3f000; 162163fa5caSBlue Swirl *page_size = 0x40000; 163163fa5caSBlue Swirl } 164163fa5caSBlue Swirl break; 165163fa5caSBlue Swirl case 2: /* L1 PTE */ 1661658dd32SBlue Swirl page_offset = address & 0xfff000; 167163fa5caSBlue Swirl *page_size = 0x1000000; 168163fa5caSBlue Swirl } 169163fa5caSBlue Swirl } 170163fa5caSBlue Swirl 171163fa5caSBlue Swirl /* check access */ 172163fa5caSBlue Swirl access_perms = (pde & PTE_ACCESS_MASK) >> PTE_ACCESS_SHIFT; 173163fa5caSBlue Swirl error_code = access_table[*access_index][access_perms]; 174163fa5caSBlue Swirl if (error_code && !((env->mmuregs[0] & MMU_NF) && is_user)) { 175163fa5caSBlue Swirl return error_code; 176163fa5caSBlue Swirl } 177163fa5caSBlue Swirl 178163fa5caSBlue Swirl /* update page modified and dirty bits */ 179163fa5caSBlue Swirl is_dirty = (rw & 1) && !(pde & PG_MODIFIED_MASK); 180163fa5caSBlue Swirl if (!(pde & PG_ACCESSED_MASK) || is_dirty) { 181163fa5caSBlue Swirl pde |= PG_ACCESSED_MASK; 182163fa5caSBlue Swirl if (is_dirty) { 183163fa5caSBlue Swirl pde |= PG_MODIFIED_MASK; 184163fa5caSBlue Swirl } 1852198a121SEdgar E. Iglesias stl_phys_notdirty(cs->as, pde_ptr, pde); 186163fa5caSBlue Swirl } 187163fa5caSBlue Swirl 188163fa5caSBlue Swirl /* the page can be put in the TLB */ 189163fa5caSBlue Swirl *prot = perm_table[is_user][access_perms]; 190163fa5caSBlue Swirl if (!(pde & PG_MODIFIED_MASK)) { 191163fa5caSBlue Swirl /* only set write access if already dirty... otherwise wait 192163fa5caSBlue Swirl for dirty access */ 193163fa5caSBlue Swirl *prot &= ~PAGE_WRITE; 194163fa5caSBlue Swirl } 195163fa5caSBlue Swirl 196163fa5caSBlue Swirl /* Even if large ptes, we map only one 4KB page in the cache to 197163fa5caSBlue Swirl avoid filling it too fast */ 198a8170e5eSAvi Kivity *physical = ((hwaddr)(pde & PTE_ADDR_MASK) << 4) + page_offset; 199163fa5caSBlue Swirl return error_code; 200163fa5caSBlue Swirl } 201163fa5caSBlue Swirl 202163fa5caSBlue Swirl /* Perform address translation */ 2037510454eSAndreas Färber int sparc_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw, 204163fa5caSBlue Swirl int mmu_idx) 205163fa5caSBlue Swirl { 2067510454eSAndreas Färber SPARCCPU *cpu = SPARC_CPU(cs); 2077510454eSAndreas Färber CPUSPARCState *env = &cpu->env; 208a8170e5eSAvi Kivity hwaddr paddr; 209163fa5caSBlue Swirl target_ulong vaddr; 210163fa5caSBlue Swirl target_ulong page_size; 211163fa5caSBlue Swirl int error_code = 0, prot, access_index; 212163fa5caSBlue Swirl 2131658dd32SBlue Swirl address &= TARGET_PAGE_MASK; 214163fa5caSBlue Swirl error_code = get_physical_address(env, &paddr, &prot, &access_index, 215163fa5caSBlue Swirl address, rw, mmu_idx, &page_size); 2161658dd32SBlue Swirl vaddr = address; 217163fa5caSBlue Swirl if (error_code == 0) { 218163fa5caSBlue Swirl #ifdef DEBUG_MMU 2197510454eSAndreas Färber printf("Translate at %" VADDR_PRIx " -> " TARGET_FMT_plx ", vaddr " 220163fa5caSBlue Swirl TARGET_FMT_lx "\n", address, paddr, vaddr); 221163fa5caSBlue Swirl #endif 222163fa5caSBlue Swirl tlb_set_page(env, vaddr, paddr, prot, mmu_idx, page_size); 223163fa5caSBlue Swirl return 0; 224163fa5caSBlue Swirl } 225163fa5caSBlue Swirl 226163fa5caSBlue Swirl if (env->mmuregs[3]) { /* Fault status register */ 227163fa5caSBlue Swirl env->mmuregs[3] = 1; /* overflow (not read before another fault) */ 228163fa5caSBlue Swirl } 229163fa5caSBlue Swirl env->mmuregs[3] |= (access_index << 5) | error_code | 2; 230163fa5caSBlue Swirl env->mmuregs[4] = address; /* Fault address register */ 231163fa5caSBlue Swirl 232163fa5caSBlue Swirl if ((env->mmuregs[0] & MMU_NF) || env->psret == 0) { 233163fa5caSBlue Swirl /* No fault mode: if a mapping is available, just override 234163fa5caSBlue Swirl permissions. If no mapping is available, redirect accesses to 235163fa5caSBlue Swirl neverland. Fake/overridden mappings will be flushed when 236163fa5caSBlue Swirl switching to normal mode. */ 237163fa5caSBlue Swirl prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC; 238163fa5caSBlue Swirl tlb_set_page(env, vaddr, paddr, prot, mmu_idx, TARGET_PAGE_SIZE); 239163fa5caSBlue Swirl return 0; 240163fa5caSBlue Swirl } else { 241163fa5caSBlue Swirl if (rw & 2) { 242163fa5caSBlue Swirl env->exception_index = TT_TFAULT; 243163fa5caSBlue Swirl } else { 244163fa5caSBlue Swirl env->exception_index = TT_DFAULT; 245163fa5caSBlue Swirl } 246163fa5caSBlue Swirl return 1; 247163fa5caSBlue Swirl } 248163fa5caSBlue Swirl } 249163fa5caSBlue Swirl 250c5f9864eSAndreas Färber target_ulong mmu_probe(CPUSPARCState *env, target_ulong address, int mmulev) 251163fa5caSBlue Swirl { 2522fad1112SAndreas Färber CPUState *cs = CPU(sparc_env_get_cpu(env)); 253a8170e5eSAvi Kivity hwaddr pde_ptr; 254163fa5caSBlue Swirl uint32_t pde; 255163fa5caSBlue Swirl 256163fa5caSBlue Swirl /* Context base + context number */ 257a8170e5eSAvi Kivity pde_ptr = (hwaddr)(env->mmuregs[1] << 4) + 258163fa5caSBlue Swirl (env->mmuregs[2] << 2); 259fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 260163fa5caSBlue Swirl 261163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 262163fa5caSBlue Swirl default: 263163fa5caSBlue Swirl case 0: /* Invalid */ 264163fa5caSBlue Swirl case 2: /* PTE, maybe should not happen? */ 265163fa5caSBlue Swirl case 3: /* Reserved */ 266163fa5caSBlue Swirl return 0; 267163fa5caSBlue Swirl case 1: /* L1 PDE */ 268163fa5caSBlue Swirl if (mmulev == 3) { 269163fa5caSBlue Swirl return pde; 270163fa5caSBlue Swirl } 271163fa5caSBlue Swirl pde_ptr = ((address >> 22) & ~3) + ((pde & ~3) << 4); 272fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 273163fa5caSBlue Swirl 274163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 275163fa5caSBlue Swirl default: 276163fa5caSBlue Swirl case 0: /* Invalid */ 277163fa5caSBlue Swirl case 3: /* Reserved */ 278163fa5caSBlue Swirl return 0; 279163fa5caSBlue Swirl case 2: /* L1 PTE */ 280163fa5caSBlue Swirl return pde; 281163fa5caSBlue Swirl case 1: /* L2 PDE */ 282163fa5caSBlue Swirl if (mmulev == 2) { 283163fa5caSBlue Swirl return pde; 284163fa5caSBlue Swirl } 285163fa5caSBlue Swirl pde_ptr = ((address & 0xfc0000) >> 16) + ((pde & ~3) << 4); 286fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 287163fa5caSBlue Swirl 288163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 289163fa5caSBlue Swirl default: 290163fa5caSBlue Swirl case 0: /* Invalid */ 291163fa5caSBlue Swirl case 3: /* Reserved */ 292163fa5caSBlue Swirl return 0; 293163fa5caSBlue Swirl case 2: /* L2 PTE */ 294163fa5caSBlue Swirl return pde; 295163fa5caSBlue Swirl case 1: /* L3 PDE */ 296163fa5caSBlue Swirl if (mmulev == 1) { 297163fa5caSBlue Swirl return pde; 298163fa5caSBlue Swirl } 299163fa5caSBlue Swirl pde_ptr = ((address & 0x3f000) >> 10) + ((pde & ~3) << 4); 300fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 301163fa5caSBlue Swirl 302163fa5caSBlue Swirl switch (pde & PTE_ENTRYTYPE_MASK) { 303163fa5caSBlue Swirl default: 304163fa5caSBlue Swirl case 0: /* Invalid */ 305163fa5caSBlue Swirl case 1: /* PDE, should not happen */ 306163fa5caSBlue Swirl case 3: /* Reserved */ 307163fa5caSBlue Swirl return 0; 308163fa5caSBlue Swirl case 2: /* L3 PTE */ 309163fa5caSBlue Swirl return pde; 310163fa5caSBlue Swirl } 311163fa5caSBlue Swirl } 312163fa5caSBlue Swirl } 313163fa5caSBlue Swirl } 314163fa5caSBlue Swirl return 0; 315163fa5caSBlue Swirl } 316163fa5caSBlue Swirl 317c5f9864eSAndreas Färber void dump_mmu(FILE *f, fprintf_function cpu_fprintf, CPUSPARCState *env) 318163fa5caSBlue Swirl { 31900b941e5SAndreas Färber CPUState *cs = CPU(sparc_env_get_cpu(env)); 320163fa5caSBlue Swirl target_ulong va, va1, va2; 321163fa5caSBlue Swirl unsigned int n, m, o; 322a8170e5eSAvi Kivity hwaddr pde_ptr, pa; 323163fa5caSBlue Swirl uint32_t pde; 324163fa5caSBlue Swirl 325163fa5caSBlue Swirl pde_ptr = (env->mmuregs[1] << 4) + (env->mmuregs[2] << 2); 326fdfba1a2SEdgar E. Iglesias pde = ldl_phys(cs->as, pde_ptr); 327163fa5caSBlue Swirl (*cpu_fprintf)(f, "Root ptr: " TARGET_FMT_plx ", ctx: %d\n", 328a8170e5eSAvi Kivity (hwaddr)env->mmuregs[1] << 4, env->mmuregs[2]); 329163fa5caSBlue Swirl for (n = 0, va = 0; n < 256; n++, va += 16 * 1024 * 1024) { 330163fa5caSBlue Swirl pde = mmu_probe(env, va, 2); 331163fa5caSBlue Swirl if (pde) { 33200b941e5SAndreas Färber pa = cpu_get_phys_page_debug(cs, va); 333163fa5caSBlue Swirl (*cpu_fprintf)(f, "VA: " TARGET_FMT_lx ", PA: " TARGET_FMT_plx 334163fa5caSBlue Swirl " PDE: " TARGET_FMT_lx "\n", va, pa, pde); 335163fa5caSBlue Swirl for (m = 0, va1 = va; m < 64; m++, va1 += 256 * 1024) { 336163fa5caSBlue Swirl pde = mmu_probe(env, va1, 1); 337163fa5caSBlue Swirl if (pde) { 33800b941e5SAndreas Färber pa = cpu_get_phys_page_debug(cs, va1); 339163fa5caSBlue Swirl (*cpu_fprintf)(f, " VA: " TARGET_FMT_lx ", PA: " 340163fa5caSBlue Swirl TARGET_FMT_plx " PDE: " TARGET_FMT_lx "\n", 341163fa5caSBlue Swirl va1, pa, pde); 342163fa5caSBlue Swirl for (o = 0, va2 = va1; o < 64; o++, va2 += 4 * 1024) { 343163fa5caSBlue Swirl pde = mmu_probe(env, va2, 0); 344163fa5caSBlue Swirl if (pde) { 34500b941e5SAndreas Färber pa = cpu_get_phys_page_debug(cs, va2); 346163fa5caSBlue Swirl (*cpu_fprintf)(f, " VA: " TARGET_FMT_lx ", PA: " 347163fa5caSBlue Swirl TARGET_FMT_plx " PTE: " 348163fa5caSBlue Swirl TARGET_FMT_lx "\n", 349163fa5caSBlue Swirl va2, pa, pde); 350163fa5caSBlue Swirl } 351163fa5caSBlue Swirl } 352163fa5caSBlue Swirl } 353163fa5caSBlue Swirl } 354163fa5caSBlue Swirl } 355163fa5caSBlue Swirl } 356163fa5caSBlue Swirl } 357163fa5caSBlue Swirl 358163fa5caSBlue Swirl /* Gdb expects all registers windows to be flushed in ram. This function handles 359163fa5caSBlue Swirl * reads (and only reads) in stack frames as if windows were flushed. We assume 360163fa5caSBlue Swirl * that the sparc ABI is followed. 361163fa5caSBlue Swirl */ 362f3659eeeSAndreas Färber int sparc_cpu_memory_rw_debug(CPUState *cs, vaddr address, 363f3659eeeSAndreas Färber uint8_t *buf, int len, bool is_write) 364163fa5caSBlue Swirl { 365f3659eeeSAndreas Färber SPARCCPU *cpu = SPARC_CPU(cs); 366f3659eeeSAndreas Färber CPUSPARCState *env = &cpu->env; 367f3659eeeSAndreas Färber target_ulong addr = address; 368163fa5caSBlue Swirl int i; 369163fa5caSBlue Swirl int len1; 370163fa5caSBlue Swirl int cwp = env->cwp; 371163fa5caSBlue Swirl 372163fa5caSBlue Swirl if (!is_write) { 373163fa5caSBlue Swirl for (i = 0; i < env->nwindows; i++) { 374163fa5caSBlue Swirl int off; 375163fa5caSBlue Swirl target_ulong fp = env->regbase[cwp * 16 + 22]; 376163fa5caSBlue Swirl 377163fa5caSBlue Swirl /* Assume fp == 0 means end of frame. */ 378163fa5caSBlue Swirl if (fp == 0) { 379163fa5caSBlue Swirl break; 380163fa5caSBlue Swirl } 381163fa5caSBlue Swirl 382163fa5caSBlue Swirl cwp = cpu_cwp_inc(env, cwp + 1); 383163fa5caSBlue Swirl 384163fa5caSBlue Swirl /* Invalid window ? */ 385163fa5caSBlue Swirl if (env->wim & (1 << cwp)) { 386163fa5caSBlue Swirl break; 387163fa5caSBlue Swirl } 388163fa5caSBlue Swirl 389163fa5caSBlue Swirl /* According to the ABI, the stack is growing downward. */ 390163fa5caSBlue Swirl if (addr + len < fp) { 391163fa5caSBlue Swirl break; 392163fa5caSBlue Swirl } 393163fa5caSBlue Swirl 394163fa5caSBlue Swirl /* Not in this frame. */ 395163fa5caSBlue Swirl if (addr > fp + 64) { 396163fa5caSBlue Swirl continue; 397163fa5caSBlue Swirl } 398163fa5caSBlue Swirl 399163fa5caSBlue Swirl /* Handle access before this window. */ 400163fa5caSBlue Swirl if (addr < fp) { 401163fa5caSBlue Swirl len1 = fp - addr; 402f17ec444SAndreas Färber if (cpu_memory_rw_debug(cs, addr, buf, len1, is_write) != 0) { 403163fa5caSBlue Swirl return -1; 404163fa5caSBlue Swirl } 405163fa5caSBlue Swirl addr += len1; 406163fa5caSBlue Swirl len -= len1; 407163fa5caSBlue Swirl buf += len1; 408163fa5caSBlue Swirl } 409163fa5caSBlue Swirl 410163fa5caSBlue Swirl /* Access byte per byte to registers. Not very efficient but speed 411163fa5caSBlue Swirl * is not critical. 412163fa5caSBlue Swirl */ 413163fa5caSBlue Swirl off = addr - fp; 414163fa5caSBlue Swirl len1 = 64 - off; 415163fa5caSBlue Swirl 416163fa5caSBlue Swirl if (len1 > len) { 417163fa5caSBlue Swirl len1 = len; 418163fa5caSBlue Swirl } 419163fa5caSBlue Swirl 420163fa5caSBlue Swirl for (; len1; len1--) { 421163fa5caSBlue Swirl int reg = cwp * 16 + 8 + (off >> 2); 422163fa5caSBlue Swirl union { 423163fa5caSBlue Swirl uint32_t v; 424163fa5caSBlue Swirl uint8_t c[4]; 425163fa5caSBlue Swirl } u; 426163fa5caSBlue Swirl u.v = cpu_to_be32(env->regbase[reg]); 427163fa5caSBlue Swirl *buf++ = u.c[off & 3]; 428163fa5caSBlue Swirl addr++; 429163fa5caSBlue Swirl len--; 430163fa5caSBlue Swirl off++; 431163fa5caSBlue Swirl } 432163fa5caSBlue Swirl 433163fa5caSBlue Swirl if (len == 0) { 434163fa5caSBlue Swirl return 0; 435163fa5caSBlue Swirl } 436163fa5caSBlue Swirl } 437163fa5caSBlue Swirl } 438f17ec444SAndreas Färber return cpu_memory_rw_debug(cs, addr, buf, len, is_write); 439163fa5caSBlue Swirl } 440163fa5caSBlue Swirl 441163fa5caSBlue Swirl #else /* !TARGET_SPARC64 */ 442163fa5caSBlue Swirl 443163fa5caSBlue Swirl /* 41 bit physical address space */ 444a8170e5eSAvi Kivity static inline hwaddr ultrasparc_truncate_physical(uint64_t x) 445163fa5caSBlue Swirl { 446163fa5caSBlue Swirl return x & 0x1ffffffffffULL; 447163fa5caSBlue Swirl } 448163fa5caSBlue Swirl 449163fa5caSBlue Swirl /* 450163fa5caSBlue Swirl * UltraSparc IIi I/DMMUs 451163fa5caSBlue Swirl */ 452163fa5caSBlue Swirl 453163fa5caSBlue Swirl /* Returns true if TTE tag is valid and matches virtual address value 454163fa5caSBlue Swirl in context requires virtual address mask value calculated from TTE 455163fa5caSBlue Swirl entry size */ 456163fa5caSBlue Swirl static inline int ultrasparc_tag_match(SparcTLBEntry *tlb, 457163fa5caSBlue Swirl uint64_t address, uint64_t context, 458a8170e5eSAvi Kivity hwaddr *physical) 459163fa5caSBlue Swirl { 460163fa5caSBlue Swirl uint64_t mask; 461163fa5caSBlue Swirl 462163fa5caSBlue Swirl switch (TTE_PGSIZE(tlb->tte)) { 463163fa5caSBlue Swirl default: 464163fa5caSBlue Swirl case 0x0: /* 8k */ 465163fa5caSBlue Swirl mask = 0xffffffffffffe000ULL; 466163fa5caSBlue Swirl break; 467163fa5caSBlue Swirl case 0x1: /* 64k */ 468163fa5caSBlue Swirl mask = 0xffffffffffff0000ULL; 469163fa5caSBlue Swirl break; 470163fa5caSBlue Swirl case 0x2: /* 512k */ 471163fa5caSBlue Swirl mask = 0xfffffffffff80000ULL; 472163fa5caSBlue Swirl break; 473163fa5caSBlue Swirl case 0x3: /* 4M */ 474163fa5caSBlue Swirl mask = 0xffffffffffc00000ULL; 475163fa5caSBlue Swirl break; 476163fa5caSBlue Swirl } 477163fa5caSBlue Swirl 478163fa5caSBlue Swirl /* valid, context match, virtual address match? */ 479163fa5caSBlue Swirl if (TTE_IS_VALID(tlb->tte) && 480163fa5caSBlue Swirl (TTE_IS_GLOBAL(tlb->tte) || tlb_compare_context(tlb, context)) 481163fa5caSBlue Swirl && compare_masked(address, tlb->tag, mask)) { 482163fa5caSBlue Swirl /* decode physical address */ 483163fa5caSBlue Swirl *physical = ((tlb->tte & mask) | (address & ~mask)) & 0x1ffffffe000ULL; 484163fa5caSBlue Swirl return 1; 485163fa5caSBlue Swirl } 486163fa5caSBlue Swirl 487163fa5caSBlue Swirl return 0; 488163fa5caSBlue Swirl } 489163fa5caSBlue Swirl 490c5f9864eSAndreas Färber static int get_physical_address_data(CPUSPARCState *env, 491a8170e5eSAvi Kivity hwaddr *physical, int *prot, 492163fa5caSBlue Swirl target_ulong address, int rw, int mmu_idx) 493163fa5caSBlue Swirl { 494163fa5caSBlue Swirl unsigned int i; 495163fa5caSBlue Swirl uint64_t context; 496163fa5caSBlue Swirl uint64_t sfsr = 0; 497163fa5caSBlue Swirl 498163fa5caSBlue Swirl int is_user = (mmu_idx == MMU_USER_IDX || 499163fa5caSBlue Swirl mmu_idx == MMU_USER_SECONDARY_IDX); 500163fa5caSBlue Swirl 501163fa5caSBlue Swirl if ((env->lsu & DMMU_E) == 0) { /* DMMU disabled */ 502163fa5caSBlue Swirl *physical = ultrasparc_truncate_physical(address); 503163fa5caSBlue Swirl *prot = PAGE_READ | PAGE_WRITE; 504163fa5caSBlue Swirl return 0; 505163fa5caSBlue Swirl } 506163fa5caSBlue Swirl 507163fa5caSBlue Swirl switch (mmu_idx) { 508163fa5caSBlue Swirl case MMU_USER_IDX: 509163fa5caSBlue Swirl case MMU_KERNEL_IDX: 510163fa5caSBlue Swirl context = env->dmmu.mmu_primary_context & 0x1fff; 511163fa5caSBlue Swirl sfsr |= SFSR_CT_PRIMARY; 512163fa5caSBlue Swirl break; 513163fa5caSBlue Swirl case MMU_USER_SECONDARY_IDX: 514163fa5caSBlue Swirl case MMU_KERNEL_SECONDARY_IDX: 515163fa5caSBlue Swirl context = env->dmmu.mmu_secondary_context & 0x1fff; 516163fa5caSBlue Swirl sfsr |= SFSR_CT_SECONDARY; 517163fa5caSBlue Swirl break; 518163fa5caSBlue Swirl case MMU_NUCLEUS_IDX: 519163fa5caSBlue Swirl sfsr |= SFSR_CT_NUCLEUS; 520163fa5caSBlue Swirl /* FALLTHRU */ 521163fa5caSBlue Swirl default: 522163fa5caSBlue Swirl context = 0; 523163fa5caSBlue Swirl break; 524163fa5caSBlue Swirl } 525163fa5caSBlue Swirl 526163fa5caSBlue Swirl if (rw == 1) { 527163fa5caSBlue Swirl sfsr |= SFSR_WRITE_BIT; 528163fa5caSBlue Swirl } else if (rw == 4) { 529163fa5caSBlue Swirl sfsr |= SFSR_NF_BIT; 530163fa5caSBlue Swirl } 531163fa5caSBlue Swirl 532163fa5caSBlue Swirl for (i = 0; i < 64; i++) { 533163fa5caSBlue Swirl /* ctx match, vaddr match, valid? */ 534163fa5caSBlue Swirl if (ultrasparc_tag_match(&env->dtlb[i], address, context, physical)) { 535163fa5caSBlue Swirl int do_fault = 0; 536163fa5caSBlue Swirl 537163fa5caSBlue Swirl /* access ok? */ 538163fa5caSBlue Swirl /* multiple bits in SFSR.FT may be set on TT_DFAULT */ 539163fa5caSBlue Swirl if (TTE_IS_PRIV(env->dtlb[i].tte) && is_user) { 540163fa5caSBlue Swirl do_fault = 1; 541163fa5caSBlue Swirl sfsr |= SFSR_FT_PRIV_BIT; /* privilege violation */ 542ec0ceb17SBlue Swirl trace_mmu_helper_dfault(address, context, mmu_idx, env->tl); 543163fa5caSBlue Swirl } 544163fa5caSBlue Swirl if (rw == 4) { 545163fa5caSBlue Swirl if (TTE_IS_SIDEEFFECT(env->dtlb[i].tte)) { 546163fa5caSBlue Swirl do_fault = 1; 547163fa5caSBlue Swirl sfsr |= SFSR_FT_NF_E_BIT; 548163fa5caSBlue Swirl } 549163fa5caSBlue Swirl } else { 550163fa5caSBlue Swirl if (TTE_IS_NFO(env->dtlb[i].tte)) { 551163fa5caSBlue Swirl do_fault = 1; 552163fa5caSBlue Swirl sfsr |= SFSR_FT_NFO_BIT; 553163fa5caSBlue Swirl } 554163fa5caSBlue Swirl } 555163fa5caSBlue Swirl 556163fa5caSBlue Swirl if (do_fault) { 557163fa5caSBlue Swirl /* faults above are reported with TT_DFAULT. */ 558163fa5caSBlue Swirl env->exception_index = TT_DFAULT; 559163fa5caSBlue Swirl } else if (!TTE_IS_W_OK(env->dtlb[i].tte) && (rw == 1)) { 560163fa5caSBlue Swirl do_fault = 1; 561163fa5caSBlue Swirl env->exception_index = TT_DPROT; 562163fa5caSBlue Swirl 563ec0ceb17SBlue Swirl trace_mmu_helper_dprot(address, context, mmu_idx, env->tl); 564163fa5caSBlue Swirl } 565163fa5caSBlue Swirl 566163fa5caSBlue Swirl if (!do_fault) { 567163fa5caSBlue Swirl *prot = PAGE_READ; 568163fa5caSBlue Swirl if (TTE_IS_W_OK(env->dtlb[i].tte)) { 569163fa5caSBlue Swirl *prot |= PAGE_WRITE; 570163fa5caSBlue Swirl } 571163fa5caSBlue Swirl 572163fa5caSBlue Swirl TTE_SET_USED(env->dtlb[i].tte); 573163fa5caSBlue Swirl 574163fa5caSBlue Swirl return 0; 575163fa5caSBlue Swirl } 576163fa5caSBlue Swirl 577163fa5caSBlue Swirl if (env->dmmu.sfsr & SFSR_VALID_BIT) { /* Fault status register */ 578163fa5caSBlue Swirl sfsr |= SFSR_OW_BIT; /* overflow (not read before 579163fa5caSBlue Swirl another fault) */ 580163fa5caSBlue Swirl } 581163fa5caSBlue Swirl 582163fa5caSBlue Swirl if (env->pstate & PS_PRIV) { 583163fa5caSBlue Swirl sfsr |= SFSR_PR_BIT; 584163fa5caSBlue Swirl } 585163fa5caSBlue Swirl 586163fa5caSBlue Swirl /* FIXME: ASI field in SFSR must be set */ 587163fa5caSBlue Swirl env->dmmu.sfsr = sfsr | SFSR_VALID_BIT; 588163fa5caSBlue Swirl 589163fa5caSBlue Swirl env->dmmu.sfar = address; /* Fault address register */ 590163fa5caSBlue Swirl 591163fa5caSBlue Swirl env->dmmu.tag_access = (address & ~0x1fffULL) | context; 592163fa5caSBlue Swirl 593163fa5caSBlue Swirl return 1; 594163fa5caSBlue Swirl } 595163fa5caSBlue Swirl } 596163fa5caSBlue Swirl 597ec0ceb17SBlue Swirl trace_mmu_helper_dmiss(address, context); 598163fa5caSBlue Swirl 599163fa5caSBlue Swirl /* 600163fa5caSBlue Swirl * On MMU misses: 601163fa5caSBlue Swirl * - UltraSPARC IIi: SFSR and SFAR unmodified 602163fa5caSBlue Swirl * - JPS1: SFAR updated and some fields of SFSR updated 603163fa5caSBlue Swirl */ 604163fa5caSBlue Swirl env->dmmu.tag_access = (address & ~0x1fffULL) | context; 605163fa5caSBlue Swirl env->exception_index = TT_DMISS; 606163fa5caSBlue Swirl return 1; 607163fa5caSBlue Swirl } 608163fa5caSBlue Swirl 609c5f9864eSAndreas Färber static int get_physical_address_code(CPUSPARCState *env, 610a8170e5eSAvi Kivity hwaddr *physical, int *prot, 611163fa5caSBlue Swirl target_ulong address, int mmu_idx) 612163fa5caSBlue Swirl { 613163fa5caSBlue Swirl unsigned int i; 614163fa5caSBlue Swirl uint64_t context; 615163fa5caSBlue Swirl 616163fa5caSBlue Swirl int is_user = (mmu_idx == MMU_USER_IDX || 617163fa5caSBlue Swirl mmu_idx == MMU_USER_SECONDARY_IDX); 618163fa5caSBlue Swirl 619163fa5caSBlue Swirl if ((env->lsu & IMMU_E) == 0 || (env->pstate & PS_RED) != 0) { 620163fa5caSBlue Swirl /* IMMU disabled */ 621163fa5caSBlue Swirl *physical = ultrasparc_truncate_physical(address); 622163fa5caSBlue Swirl *prot = PAGE_EXEC; 623163fa5caSBlue Swirl return 0; 624163fa5caSBlue Swirl } 625163fa5caSBlue Swirl 626163fa5caSBlue Swirl if (env->tl == 0) { 627163fa5caSBlue Swirl /* PRIMARY context */ 628163fa5caSBlue Swirl context = env->dmmu.mmu_primary_context & 0x1fff; 629163fa5caSBlue Swirl } else { 630163fa5caSBlue Swirl /* NUCLEUS context */ 631163fa5caSBlue Swirl context = 0; 632163fa5caSBlue Swirl } 633163fa5caSBlue Swirl 634163fa5caSBlue Swirl for (i = 0; i < 64; i++) { 635163fa5caSBlue Swirl /* ctx match, vaddr match, valid? */ 636163fa5caSBlue Swirl if (ultrasparc_tag_match(&env->itlb[i], 637163fa5caSBlue Swirl address, context, physical)) { 638163fa5caSBlue Swirl /* access ok? */ 639163fa5caSBlue Swirl if (TTE_IS_PRIV(env->itlb[i].tte) && is_user) { 640163fa5caSBlue Swirl /* Fault status register */ 641163fa5caSBlue Swirl if (env->immu.sfsr & SFSR_VALID_BIT) { 642163fa5caSBlue Swirl env->immu.sfsr = SFSR_OW_BIT; /* overflow (not read before 643163fa5caSBlue Swirl another fault) */ 644163fa5caSBlue Swirl } else { 645163fa5caSBlue Swirl env->immu.sfsr = 0; 646163fa5caSBlue Swirl } 647163fa5caSBlue Swirl if (env->pstate & PS_PRIV) { 648163fa5caSBlue Swirl env->immu.sfsr |= SFSR_PR_BIT; 649163fa5caSBlue Swirl } 650163fa5caSBlue Swirl if (env->tl > 0) { 651163fa5caSBlue Swirl env->immu.sfsr |= SFSR_CT_NUCLEUS; 652163fa5caSBlue Swirl } 653163fa5caSBlue Swirl 654163fa5caSBlue Swirl /* FIXME: ASI field in SFSR must be set */ 655163fa5caSBlue Swirl env->immu.sfsr |= SFSR_FT_PRIV_BIT | SFSR_VALID_BIT; 656163fa5caSBlue Swirl env->exception_index = TT_TFAULT; 657163fa5caSBlue Swirl 658163fa5caSBlue Swirl env->immu.tag_access = (address & ~0x1fffULL) | context; 659163fa5caSBlue Swirl 660ec0ceb17SBlue Swirl trace_mmu_helper_tfault(address, context); 661163fa5caSBlue Swirl 662163fa5caSBlue Swirl return 1; 663163fa5caSBlue Swirl } 664163fa5caSBlue Swirl *prot = PAGE_EXEC; 665163fa5caSBlue Swirl TTE_SET_USED(env->itlb[i].tte); 666163fa5caSBlue Swirl return 0; 667163fa5caSBlue Swirl } 668163fa5caSBlue Swirl } 669163fa5caSBlue Swirl 670ec0ceb17SBlue Swirl trace_mmu_helper_tmiss(address, context); 671163fa5caSBlue Swirl 672163fa5caSBlue Swirl /* Context is stored in DMMU (dmmuregs[1]) also for IMMU */ 673163fa5caSBlue Swirl env->immu.tag_access = (address & ~0x1fffULL) | context; 674163fa5caSBlue Swirl env->exception_index = TT_TMISS; 675163fa5caSBlue Swirl return 1; 676163fa5caSBlue Swirl } 677163fa5caSBlue Swirl 678a8170e5eSAvi Kivity static int get_physical_address(CPUSPARCState *env, hwaddr *physical, 679163fa5caSBlue Swirl int *prot, int *access_index, 680163fa5caSBlue Swirl target_ulong address, int rw, int mmu_idx, 681163fa5caSBlue Swirl target_ulong *page_size) 682163fa5caSBlue Swirl { 683163fa5caSBlue Swirl /* ??? We treat everything as a small page, then explicitly flush 684163fa5caSBlue Swirl everything when an entry is evicted. */ 685163fa5caSBlue Swirl *page_size = TARGET_PAGE_SIZE; 686163fa5caSBlue Swirl 687163fa5caSBlue Swirl /* safety net to catch wrong softmmu index use from dynamic code */ 688163fa5caSBlue Swirl if (env->tl > 0 && mmu_idx != MMU_NUCLEUS_IDX) { 689ec0ceb17SBlue Swirl if (rw == 2) { 690ec0ceb17SBlue Swirl trace_mmu_helper_get_phys_addr_code(env->tl, mmu_idx, 691ec0ceb17SBlue Swirl env->dmmu.mmu_primary_context, 692ec0ceb17SBlue Swirl env->dmmu.mmu_secondary_context, 693ec0ceb17SBlue Swirl address); 694ec0ceb17SBlue Swirl } else { 695ec0ceb17SBlue Swirl trace_mmu_helper_get_phys_addr_data(env->tl, mmu_idx, 696163fa5caSBlue Swirl env->dmmu.mmu_primary_context, 697163fa5caSBlue Swirl env->dmmu.mmu_secondary_context, 698163fa5caSBlue Swirl address); 699163fa5caSBlue Swirl } 700ec0ceb17SBlue Swirl } 701163fa5caSBlue Swirl 702163fa5caSBlue Swirl if (rw == 2) { 703163fa5caSBlue Swirl return get_physical_address_code(env, physical, prot, address, 704163fa5caSBlue Swirl mmu_idx); 705163fa5caSBlue Swirl } else { 706163fa5caSBlue Swirl return get_physical_address_data(env, physical, prot, address, rw, 707163fa5caSBlue Swirl mmu_idx); 708163fa5caSBlue Swirl } 709163fa5caSBlue Swirl } 710163fa5caSBlue Swirl 711163fa5caSBlue Swirl /* Perform address translation */ 7127510454eSAndreas Färber int sparc_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw, 713163fa5caSBlue Swirl int mmu_idx) 714163fa5caSBlue Swirl { 7157510454eSAndreas Färber SPARCCPU *cpu = SPARC_CPU(cs); 7167510454eSAndreas Färber CPUSPARCState *env = &cpu->env; 7171658dd32SBlue Swirl target_ulong vaddr; 718a8170e5eSAvi Kivity hwaddr paddr; 719163fa5caSBlue Swirl target_ulong page_size; 720163fa5caSBlue Swirl int error_code = 0, prot, access_index; 721163fa5caSBlue Swirl 7221658dd32SBlue Swirl address &= TARGET_PAGE_MASK; 723163fa5caSBlue Swirl error_code = get_physical_address(env, &paddr, &prot, &access_index, 724163fa5caSBlue Swirl address, rw, mmu_idx, &page_size); 725163fa5caSBlue Swirl if (error_code == 0) { 7261658dd32SBlue Swirl vaddr = address; 727163fa5caSBlue Swirl 728ec0ceb17SBlue Swirl trace_mmu_helper_mmu_fault(address, paddr, mmu_idx, env->tl, 729163fa5caSBlue Swirl env->dmmu.mmu_primary_context, 730163fa5caSBlue Swirl env->dmmu.mmu_secondary_context); 731163fa5caSBlue Swirl 732163fa5caSBlue Swirl tlb_set_page(env, vaddr, paddr, prot, mmu_idx, page_size); 733163fa5caSBlue Swirl return 0; 734163fa5caSBlue Swirl } 735163fa5caSBlue Swirl /* XXX */ 736163fa5caSBlue Swirl return 1; 737163fa5caSBlue Swirl } 738163fa5caSBlue Swirl 739c5f9864eSAndreas Färber void dump_mmu(FILE *f, fprintf_function cpu_fprintf, CPUSPARCState *env) 740163fa5caSBlue Swirl { 741163fa5caSBlue Swirl unsigned int i; 742163fa5caSBlue Swirl const char *mask; 743163fa5caSBlue Swirl 744163fa5caSBlue Swirl (*cpu_fprintf)(f, "MMU contexts: Primary: %" PRId64 ", Secondary: %" 745163fa5caSBlue Swirl PRId64 "\n", 746163fa5caSBlue Swirl env->dmmu.mmu_primary_context, 747163fa5caSBlue Swirl env->dmmu.mmu_secondary_context); 748163fa5caSBlue Swirl if ((env->lsu & DMMU_E) == 0) { 749163fa5caSBlue Swirl (*cpu_fprintf)(f, "DMMU disabled\n"); 750163fa5caSBlue Swirl } else { 751163fa5caSBlue Swirl (*cpu_fprintf)(f, "DMMU dump\n"); 752163fa5caSBlue Swirl for (i = 0; i < 64; i++) { 753163fa5caSBlue Swirl switch (TTE_PGSIZE(env->dtlb[i].tte)) { 754163fa5caSBlue Swirl default: 755163fa5caSBlue Swirl case 0x0: 756163fa5caSBlue Swirl mask = " 8k"; 757163fa5caSBlue Swirl break; 758163fa5caSBlue Swirl case 0x1: 759163fa5caSBlue Swirl mask = " 64k"; 760163fa5caSBlue Swirl break; 761163fa5caSBlue Swirl case 0x2: 762163fa5caSBlue Swirl mask = "512k"; 763163fa5caSBlue Swirl break; 764163fa5caSBlue Swirl case 0x3: 765163fa5caSBlue Swirl mask = " 4M"; 766163fa5caSBlue Swirl break; 767163fa5caSBlue Swirl } 768163fa5caSBlue Swirl if (TTE_IS_VALID(env->dtlb[i].tte)) { 769163fa5caSBlue Swirl (*cpu_fprintf)(f, "[%02u] VA: %" PRIx64 ", PA: %llx" 770163fa5caSBlue Swirl ", %s, %s, %s, %s, ctx %" PRId64 " %s\n", 771163fa5caSBlue Swirl i, 772163fa5caSBlue Swirl env->dtlb[i].tag & (uint64_t)~0x1fffULL, 773163fa5caSBlue Swirl TTE_PA(env->dtlb[i].tte), 774163fa5caSBlue Swirl mask, 775163fa5caSBlue Swirl TTE_IS_PRIV(env->dtlb[i].tte) ? "priv" : "user", 776163fa5caSBlue Swirl TTE_IS_W_OK(env->dtlb[i].tte) ? "RW" : "RO", 777163fa5caSBlue Swirl TTE_IS_LOCKED(env->dtlb[i].tte) ? 778163fa5caSBlue Swirl "locked" : "unlocked", 779163fa5caSBlue Swirl env->dtlb[i].tag & (uint64_t)0x1fffULL, 780163fa5caSBlue Swirl TTE_IS_GLOBAL(env->dtlb[i].tte) ? 781163fa5caSBlue Swirl "global" : "local"); 782163fa5caSBlue Swirl } 783163fa5caSBlue Swirl } 784163fa5caSBlue Swirl } 785163fa5caSBlue Swirl if ((env->lsu & IMMU_E) == 0) { 786163fa5caSBlue Swirl (*cpu_fprintf)(f, "IMMU disabled\n"); 787163fa5caSBlue Swirl } else { 788163fa5caSBlue Swirl (*cpu_fprintf)(f, "IMMU dump\n"); 789163fa5caSBlue Swirl for (i = 0; i < 64; i++) { 790163fa5caSBlue Swirl switch (TTE_PGSIZE(env->itlb[i].tte)) { 791163fa5caSBlue Swirl default: 792163fa5caSBlue Swirl case 0x0: 793163fa5caSBlue Swirl mask = " 8k"; 794163fa5caSBlue Swirl break; 795163fa5caSBlue Swirl case 0x1: 796163fa5caSBlue Swirl mask = " 64k"; 797163fa5caSBlue Swirl break; 798163fa5caSBlue Swirl case 0x2: 799163fa5caSBlue Swirl mask = "512k"; 800163fa5caSBlue Swirl break; 801163fa5caSBlue Swirl case 0x3: 802163fa5caSBlue Swirl mask = " 4M"; 803163fa5caSBlue Swirl break; 804163fa5caSBlue Swirl } 805163fa5caSBlue Swirl if (TTE_IS_VALID(env->itlb[i].tte)) { 806163fa5caSBlue Swirl (*cpu_fprintf)(f, "[%02u] VA: %" PRIx64 ", PA: %llx" 807163fa5caSBlue Swirl ", %s, %s, %s, ctx %" PRId64 " %s\n", 808163fa5caSBlue Swirl i, 809163fa5caSBlue Swirl env->itlb[i].tag & (uint64_t)~0x1fffULL, 810163fa5caSBlue Swirl TTE_PA(env->itlb[i].tte), 811163fa5caSBlue Swirl mask, 812163fa5caSBlue Swirl TTE_IS_PRIV(env->itlb[i].tte) ? "priv" : "user", 813163fa5caSBlue Swirl TTE_IS_LOCKED(env->itlb[i].tte) ? 814163fa5caSBlue Swirl "locked" : "unlocked", 815163fa5caSBlue Swirl env->itlb[i].tag & (uint64_t)0x1fffULL, 816163fa5caSBlue Swirl TTE_IS_GLOBAL(env->itlb[i].tte) ? 817163fa5caSBlue Swirl "global" : "local"); 818163fa5caSBlue Swirl } 819163fa5caSBlue Swirl } 820163fa5caSBlue Swirl } 821163fa5caSBlue Swirl } 822163fa5caSBlue Swirl 823163fa5caSBlue Swirl #endif /* TARGET_SPARC64 */ 824163fa5caSBlue Swirl 825a8170e5eSAvi Kivity static int cpu_sparc_get_phys_page(CPUSPARCState *env, hwaddr *phys, 826163fa5caSBlue Swirl target_ulong addr, int rw, int mmu_idx) 827163fa5caSBlue Swirl { 828163fa5caSBlue Swirl target_ulong page_size; 829163fa5caSBlue Swirl int prot, access_index; 830163fa5caSBlue Swirl 831163fa5caSBlue Swirl return get_physical_address(env, phys, &prot, &access_index, addr, rw, 832163fa5caSBlue Swirl mmu_idx, &page_size); 833163fa5caSBlue Swirl } 834163fa5caSBlue Swirl 835163fa5caSBlue Swirl #if defined(TARGET_SPARC64) 836a8170e5eSAvi Kivity hwaddr cpu_get_phys_page_nofault(CPUSPARCState *env, target_ulong addr, 837163fa5caSBlue Swirl int mmu_idx) 838163fa5caSBlue Swirl { 839a8170e5eSAvi Kivity hwaddr phys_addr; 840163fa5caSBlue Swirl 841163fa5caSBlue Swirl if (cpu_sparc_get_phys_page(env, &phys_addr, addr, 4, mmu_idx) != 0) { 842163fa5caSBlue Swirl return -1; 843163fa5caSBlue Swirl } 844163fa5caSBlue Swirl return phys_addr; 845163fa5caSBlue Swirl } 846163fa5caSBlue Swirl #endif 847163fa5caSBlue Swirl 84800b941e5SAndreas Färber hwaddr sparc_cpu_get_phys_page_debug(CPUState *cs, vaddr addr) 849163fa5caSBlue Swirl { 85000b941e5SAndreas Färber SPARCCPU *cpu = SPARC_CPU(cs); 85100b941e5SAndreas Färber CPUSPARCState *env = &cpu->env; 852a8170e5eSAvi Kivity hwaddr phys_addr; 853163fa5caSBlue Swirl int mmu_idx = cpu_mmu_index(env); 854cc4aa830SAvi Kivity MemoryRegionSection section; 855163fa5caSBlue Swirl 856163fa5caSBlue Swirl if (cpu_sparc_get_phys_page(env, &phys_addr, addr, 2, mmu_idx) != 0) { 857163fa5caSBlue Swirl if (cpu_sparc_get_phys_page(env, &phys_addr, addr, 0, mmu_idx) != 0) { 858163fa5caSBlue Swirl return -1; 859163fa5caSBlue Swirl } 860163fa5caSBlue Swirl } 861cc4aa830SAvi Kivity section = memory_region_find(get_system_memory(), phys_addr, 1); 862dfde4e6eSPaolo Bonzini memory_region_unref(section.mr); 863052e87b0SPaolo Bonzini if (!int128_nz(section.size)) { 864163fa5caSBlue Swirl return -1; 865163fa5caSBlue Swirl } 866163fa5caSBlue Swirl return phys_addr; 867163fa5caSBlue Swirl } 868163fa5caSBlue Swirl #endif 869