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0cac1b66 BS |
1 | /* |
2 | * Common CPU TLB handling | |
3 | * | |
4 | * Copyright (c) 2003 Fabrice Bellard | |
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 | |
17 | * License along with this library; if not, see <http://www.gnu.org/licenses/>. | |
18 | */ | |
19 | ||
7b31bbc2 | 20 | #include "qemu/osdep.h" |
0cac1b66 | 21 | #include "cpu.h" |
022c62cb PB |
22 | #include "exec/exec-all.h" |
23 | #include "exec/memory.h" | |
24 | #include "exec/address-spaces.h" | |
f08b6170 | 25 | #include "exec/cpu_ldst.h" |
0cac1b66 | 26 | |
022c62cb | 27 | #include "exec/cputlb.h" |
0cac1b66 | 28 | |
022c62cb | 29 | #include "exec/memory-internal.h" |
220c3ebd | 30 | #include "exec/ram_addr.h" |
63c91552 | 31 | #include "exec/exec-all.h" |
0f590e74 | 32 | #include "tcg/tcg.h" |
0cac1b66 | 33 | |
8526e1f4 AB |
34 | /* DEBUG defines, enable DEBUG_TLB_LOG to log to the CPU_LOG_MMU target */ |
35 | /* #define DEBUG_TLB */ | |
36 | /* #define DEBUG_TLB_LOG */ | |
37 | ||
38 | #ifdef DEBUG_TLB | |
39 | # define DEBUG_TLB_GATE 1 | |
40 | # ifdef DEBUG_TLB_LOG | |
41 | # define DEBUG_TLB_LOG_GATE 1 | |
42 | # else | |
43 | # define DEBUG_TLB_LOG_GATE 0 | |
44 | # endif | |
45 | #else | |
46 | # define DEBUG_TLB_GATE 0 | |
47 | # define DEBUG_TLB_LOG_GATE 0 | |
48 | #endif | |
49 | ||
50 | #define tlb_debug(fmt, ...) do { \ | |
51 | if (DEBUG_TLB_LOG_GATE) { \ | |
52 | qemu_log_mask(CPU_LOG_MMU, "%s: " fmt, __func__, \ | |
53 | ## __VA_ARGS__); \ | |
54 | } else if (DEBUG_TLB_GATE) { \ | |
55 | fprintf(stderr, "%s: " fmt, __func__, ## __VA_ARGS__); \ | |
56 | } \ | |
57 | } while (0) | |
0cac1b66 BS |
58 | |
59 | /* statistics */ | |
60 | int tlb_flush_count; | |
61 | ||
0cac1b66 BS |
62 | /* NOTE: |
63 | * If flush_global is true (the usual case), flush all tlb entries. | |
64 | * If flush_global is false, flush (at least) all tlb entries not | |
65 | * marked global. | |
66 | * | |
67 | * Since QEMU doesn't currently implement a global/not-global flag | |
68 | * for tlb entries, at the moment tlb_flush() will also flush all | |
69 | * tlb entries in the flush_global == false case. This is OK because | |
70 | * CPU architectures generally permit an implementation to drop | |
71 | * entries from the TLB at any time, so flushing more entries than | |
72 | * required is only an efficiency issue, not a correctness issue. | |
73 | */ | |
00c8cb0a | 74 | void tlb_flush(CPUState *cpu, int flush_global) |
0cac1b66 | 75 | { |
00c8cb0a | 76 | CPUArchState *env = cpu->env_ptr; |
0cac1b66 | 77 | |
8526e1f4 AB |
78 | tlb_debug("(%d)\n", flush_global); |
79 | ||
4fadb3bb | 80 | memset(env->tlb_table, -1, sizeof(env->tlb_table)); |
88e89a57 | 81 | memset(env->tlb_v_table, -1, sizeof(env->tlb_v_table)); |
8cd70437 | 82 | memset(cpu->tb_jmp_cache, 0, sizeof(cpu->tb_jmp_cache)); |
0cac1b66 | 83 | |
88e89a57 | 84 | env->vtlb_index = 0; |
0cac1b66 BS |
85 | env->tlb_flush_addr = -1; |
86 | env->tlb_flush_mask = 0; | |
87 | tlb_flush_count++; | |
88 | } | |
89 | ||
d7a74a9d PM |
90 | static inline void v_tlb_flush_by_mmuidx(CPUState *cpu, va_list argp) |
91 | { | |
92 | CPUArchState *env = cpu->env_ptr; | |
93 | ||
8526e1f4 | 94 | tlb_debug("start\n"); |
d7a74a9d PM |
95 | |
96 | for (;;) { | |
97 | int mmu_idx = va_arg(argp, int); | |
98 | ||
99 | if (mmu_idx < 0) { | |
100 | break; | |
101 | } | |
102 | ||
8526e1f4 | 103 | tlb_debug("%d\n", mmu_idx); |
d7a74a9d PM |
104 | |
105 | memset(env->tlb_table[mmu_idx], -1, sizeof(env->tlb_table[0])); | |
106 | memset(env->tlb_v_table[mmu_idx], -1, sizeof(env->tlb_v_table[0])); | |
107 | } | |
108 | ||
d7a74a9d PM |
109 | memset(cpu->tb_jmp_cache, 0, sizeof(cpu->tb_jmp_cache)); |
110 | } | |
111 | ||
112 | void tlb_flush_by_mmuidx(CPUState *cpu, ...) | |
113 | { | |
114 | va_list argp; | |
115 | va_start(argp, cpu); | |
116 | v_tlb_flush_by_mmuidx(cpu, argp); | |
117 | va_end(argp); | |
118 | } | |
119 | ||
0cac1b66 BS |
120 | static inline void tlb_flush_entry(CPUTLBEntry *tlb_entry, target_ulong addr) |
121 | { | |
122 | if (addr == (tlb_entry->addr_read & | |
123 | (TARGET_PAGE_MASK | TLB_INVALID_MASK)) || | |
124 | addr == (tlb_entry->addr_write & | |
125 | (TARGET_PAGE_MASK | TLB_INVALID_MASK)) || | |
126 | addr == (tlb_entry->addr_code & | |
127 | (TARGET_PAGE_MASK | TLB_INVALID_MASK))) { | |
4fadb3bb | 128 | memset(tlb_entry, -1, sizeof(*tlb_entry)); |
0cac1b66 BS |
129 | } |
130 | } | |
131 | ||
31b030d4 | 132 | void tlb_flush_page(CPUState *cpu, target_ulong addr) |
0cac1b66 | 133 | { |
31b030d4 | 134 | CPUArchState *env = cpu->env_ptr; |
0cac1b66 BS |
135 | int i; |
136 | int mmu_idx; | |
137 | ||
8526e1f4 AB |
138 | tlb_debug("page :" TARGET_FMT_lx "\n", addr); |
139 | ||
0cac1b66 BS |
140 | /* Check if we need to flush due to large pages. */ |
141 | if ((addr & env->tlb_flush_mask) == env->tlb_flush_addr) { | |
8526e1f4 AB |
142 | tlb_debug("forcing full flush (" |
143 | TARGET_FMT_lx "/" TARGET_FMT_lx ")\n", | |
144 | env->tlb_flush_addr, env->tlb_flush_mask); | |
145 | ||
00c8cb0a | 146 | tlb_flush(cpu, 1); |
0cac1b66 BS |
147 | return; |
148 | } | |
0cac1b66 BS |
149 | |
150 | addr &= TARGET_PAGE_MASK; | |
151 | i = (addr >> TARGET_PAGE_BITS) & (CPU_TLB_SIZE - 1); | |
152 | for (mmu_idx = 0; mmu_idx < NB_MMU_MODES; mmu_idx++) { | |
153 | tlb_flush_entry(&env->tlb_table[mmu_idx][i], addr); | |
154 | } | |
155 | ||
88e89a57 XT |
156 | /* check whether there are entries that need to be flushed in the vtlb */ |
157 | for (mmu_idx = 0; mmu_idx < NB_MMU_MODES; mmu_idx++) { | |
158 | int k; | |
159 | for (k = 0; k < CPU_VTLB_SIZE; k++) { | |
160 | tlb_flush_entry(&env->tlb_v_table[mmu_idx][k], addr); | |
161 | } | |
162 | } | |
163 | ||
611d4f99 | 164 | tb_flush_jmp_cache(cpu, addr); |
0cac1b66 BS |
165 | } |
166 | ||
d7a74a9d PM |
167 | void tlb_flush_page_by_mmuidx(CPUState *cpu, target_ulong addr, ...) |
168 | { | |
169 | CPUArchState *env = cpu->env_ptr; | |
170 | int i, k; | |
171 | va_list argp; | |
172 | ||
173 | va_start(argp, addr); | |
174 | ||
8526e1f4 AB |
175 | tlb_debug("addr "TARGET_FMT_lx"\n", addr); |
176 | ||
d7a74a9d PM |
177 | /* Check if we need to flush due to large pages. */ |
178 | if ((addr & env->tlb_flush_mask) == env->tlb_flush_addr) { | |
8526e1f4 AB |
179 | tlb_debug("forced full flush (" |
180 | TARGET_FMT_lx "/" TARGET_FMT_lx ")\n", | |
181 | env->tlb_flush_addr, env->tlb_flush_mask); | |
182 | ||
d7a74a9d PM |
183 | v_tlb_flush_by_mmuidx(cpu, argp); |
184 | va_end(argp); | |
185 | return; | |
186 | } | |
d7a74a9d PM |
187 | |
188 | addr &= TARGET_PAGE_MASK; | |
189 | i = (addr >> TARGET_PAGE_BITS) & (CPU_TLB_SIZE - 1); | |
190 | ||
191 | for (;;) { | |
192 | int mmu_idx = va_arg(argp, int); | |
193 | ||
194 | if (mmu_idx < 0) { | |
195 | break; | |
196 | } | |
197 | ||
8526e1f4 | 198 | tlb_debug("idx %d\n", mmu_idx); |
d7a74a9d PM |
199 | |
200 | tlb_flush_entry(&env->tlb_table[mmu_idx][i], addr); | |
201 | ||
202 | /* check whether there are vltb entries that need to be flushed */ | |
203 | for (k = 0; k < CPU_VTLB_SIZE; k++) { | |
204 | tlb_flush_entry(&env->tlb_v_table[mmu_idx][k], addr); | |
205 | } | |
206 | } | |
207 | va_end(argp); | |
208 | ||
d7a74a9d PM |
209 | tb_flush_jmp_cache(cpu, addr); |
210 | } | |
211 | ||
0cac1b66 BS |
212 | /* update the TLBs so that writes to code in the virtual page 'addr' |
213 | can be detected */ | |
214 | void tlb_protect_code(ram_addr_t ram_addr) | |
215 | { | |
03eebc9e SH |
216 | cpu_physical_memory_test_and_clear_dirty(ram_addr, TARGET_PAGE_SIZE, |
217 | DIRTY_MEMORY_CODE); | |
0cac1b66 BS |
218 | } |
219 | ||
220 | /* update the TLB so that writes in physical page 'phys_addr' are no longer | |
221 | tested for self modifying code */ | |
9564f52d | 222 | void tlb_unprotect_code(ram_addr_t ram_addr) |
0cac1b66 | 223 | { |
52159192 | 224 | cpu_physical_memory_set_dirty_flag(ram_addr, DIRTY_MEMORY_CODE); |
0cac1b66 BS |
225 | } |
226 | ||
227 | static bool tlb_is_dirty_ram(CPUTLBEntry *tlbe) | |
228 | { | |
229 | return (tlbe->addr_write & (TLB_INVALID_MASK|TLB_MMIO|TLB_NOTDIRTY)) == 0; | |
230 | } | |
231 | ||
232 | void tlb_reset_dirty_range(CPUTLBEntry *tlb_entry, uintptr_t start, | |
233 | uintptr_t length) | |
234 | { | |
235 | uintptr_t addr; | |
236 | ||
237 | if (tlb_is_dirty_ram(tlb_entry)) { | |
238 | addr = (tlb_entry->addr_write & TARGET_PAGE_MASK) + tlb_entry->addend; | |
239 | if ((addr - start) < length) { | |
240 | tlb_entry->addr_write |= TLB_NOTDIRTY; | |
241 | } | |
242 | } | |
243 | } | |
244 | ||
7443b437 PB |
245 | static inline ram_addr_t qemu_ram_addr_from_host_nofail(void *ptr) |
246 | { | |
247 | ram_addr_t ram_addr; | |
248 | ||
1b5ec234 | 249 | if (qemu_ram_addr_from_host(ptr, &ram_addr) == NULL) { |
7443b437 PB |
250 | fprintf(stderr, "Bad ram pointer %p\n", ptr); |
251 | abort(); | |
252 | } | |
253 | return ram_addr; | |
254 | } | |
255 | ||
9a13565d | 256 | void tlb_reset_dirty(CPUState *cpu, ram_addr_t start1, ram_addr_t length) |
0cac1b66 BS |
257 | { |
258 | CPUArchState *env; | |
259 | ||
9a13565d | 260 | int mmu_idx; |
0cac1b66 | 261 | |
9a13565d PC |
262 | env = cpu->env_ptr; |
263 | for (mmu_idx = 0; mmu_idx < NB_MMU_MODES; mmu_idx++) { | |
264 | unsigned int i; | |
0cac1b66 | 265 | |
9a13565d PC |
266 | for (i = 0; i < CPU_TLB_SIZE; i++) { |
267 | tlb_reset_dirty_range(&env->tlb_table[mmu_idx][i], | |
268 | start1, length); | |
269 | } | |
88e89a57 | 270 | |
9a13565d PC |
271 | for (i = 0; i < CPU_VTLB_SIZE; i++) { |
272 | tlb_reset_dirty_range(&env->tlb_v_table[mmu_idx][i], | |
273 | start1, length); | |
0cac1b66 BS |
274 | } |
275 | } | |
276 | } | |
277 | ||
278 | static inline void tlb_set_dirty1(CPUTLBEntry *tlb_entry, target_ulong vaddr) | |
279 | { | |
280 | if (tlb_entry->addr_write == (vaddr | TLB_NOTDIRTY)) { | |
281 | tlb_entry->addr_write = vaddr; | |
282 | } | |
283 | } | |
284 | ||
285 | /* update the TLB corresponding to virtual page vaddr | |
286 | so that it is no longer dirty */ | |
bcae01e4 | 287 | void tlb_set_dirty(CPUState *cpu, target_ulong vaddr) |
0cac1b66 | 288 | { |
bcae01e4 | 289 | CPUArchState *env = cpu->env_ptr; |
0cac1b66 BS |
290 | int i; |
291 | int mmu_idx; | |
292 | ||
293 | vaddr &= TARGET_PAGE_MASK; | |
294 | i = (vaddr >> TARGET_PAGE_BITS) & (CPU_TLB_SIZE - 1); | |
295 | for (mmu_idx = 0; mmu_idx < NB_MMU_MODES; mmu_idx++) { | |
296 | tlb_set_dirty1(&env->tlb_table[mmu_idx][i], vaddr); | |
297 | } | |
88e89a57 XT |
298 | |
299 | for (mmu_idx = 0; mmu_idx < NB_MMU_MODES; mmu_idx++) { | |
300 | int k; | |
301 | for (k = 0; k < CPU_VTLB_SIZE; k++) { | |
302 | tlb_set_dirty1(&env->tlb_v_table[mmu_idx][k], vaddr); | |
303 | } | |
304 | } | |
0cac1b66 BS |
305 | } |
306 | ||
307 | /* Our TLB does not support large pages, so remember the area covered by | |
308 | large pages and trigger a full TLB flush if these are invalidated. */ | |
309 | static void tlb_add_large_page(CPUArchState *env, target_ulong vaddr, | |
310 | target_ulong size) | |
311 | { | |
312 | target_ulong mask = ~(size - 1); | |
313 | ||
314 | if (env->tlb_flush_addr == (target_ulong)-1) { | |
315 | env->tlb_flush_addr = vaddr & mask; | |
316 | env->tlb_flush_mask = mask; | |
317 | return; | |
318 | } | |
319 | /* Extend the existing region to include the new page. | |
320 | This is a compromise between unnecessary flushes and the cost | |
321 | of maintaining a full variable size TLB. */ | |
322 | mask &= env->tlb_flush_mask; | |
323 | while (((env->tlb_flush_addr ^ vaddr) & mask) != 0) { | |
324 | mask <<= 1; | |
325 | } | |
326 | env->tlb_flush_addr &= mask; | |
327 | env->tlb_flush_mask = mask; | |
328 | } | |
329 | ||
330 | /* Add a new TLB entry. At most one entry for a given virtual address | |
79e2b9ae PB |
331 | * is permitted. Only a single TARGET_PAGE_SIZE region is mapped, the |
332 | * supplied size is only used by tlb_flush_page. | |
333 | * | |
334 | * Called from TCG-generated code, which is under an RCU read-side | |
335 | * critical section. | |
336 | */ | |
fadc1cbe PM |
337 | void tlb_set_page_with_attrs(CPUState *cpu, target_ulong vaddr, |
338 | hwaddr paddr, MemTxAttrs attrs, int prot, | |
339 | int mmu_idx, target_ulong size) | |
0cac1b66 | 340 | { |
0c591eb0 | 341 | CPUArchState *env = cpu->env_ptr; |
0cac1b66 BS |
342 | MemoryRegionSection *section; |
343 | unsigned int index; | |
344 | target_ulong address; | |
345 | target_ulong code_address; | |
346 | uintptr_t addend; | |
347 | CPUTLBEntry *te; | |
149f54b5 | 348 | hwaddr iotlb, xlat, sz; |
88e89a57 | 349 | unsigned vidx = env->vtlb_index++ % CPU_VTLB_SIZE; |
d7898cda | 350 | int asidx = cpu_asidx_from_attrs(cpu, attrs); |
0cac1b66 BS |
351 | |
352 | assert(size >= TARGET_PAGE_SIZE); | |
353 | if (size != TARGET_PAGE_SIZE) { | |
354 | tlb_add_large_page(env, vaddr, size); | |
355 | } | |
149f54b5 PB |
356 | |
357 | sz = size; | |
d7898cda | 358 | section = address_space_translate_for_iotlb(cpu, asidx, paddr, &xlat, &sz); |
149f54b5 PB |
359 | assert(sz >= TARGET_PAGE_SIZE); |
360 | ||
8526e1f4 AB |
361 | tlb_debug("vaddr=" TARGET_FMT_lx " paddr=0x" TARGET_FMT_plx |
362 | " prot=%x idx=%d\n", | |
363 | vaddr, paddr, prot, mmu_idx); | |
0cac1b66 BS |
364 | |
365 | address = vaddr; | |
8f3e03cb PB |
366 | if (!memory_region_is_ram(section->mr) && !memory_region_is_romd(section->mr)) { |
367 | /* IO memory case */ | |
0cac1b66 | 368 | address |= TLB_MMIO; |
8f3e03cb PB |
369 | addend = 0; |
370 | } else { | |
371 | /* TLB_MMIO for rom/romd handled below */ | |
149f54b5 | 372 | addend = (uintptr_t)memory_region_get_ram_ptr(section->mr) + xlat; |
0cac1b66 | 373 | } |
0cac1b66 BS |
374 | |
375 | code_address = address; | |
bb0e627a | 376 | iotlb = memory_region_section_get_iotlb(cpu, section, vaddr, paddr, xlat, |
149f54b5 | 377 | prot, &address); |
0cac1b66 BS |
378 | |
379 | index = (vaddr >> TARGET_PAGE_BITS) & (CPU_TLB_SIZE - 1); | |
0cac1b66 | 380 | te = &env->tlb_table[mmu_idx][index]; |
88e89a57 XT |
381 | |
382 | /* do not discard the translation in te, evict it into a victim tlb */ | |
383 | env->tlb_v_table[mmu_idx][vidx] = *te; | |
384 | env->iotlb_v[mmu_idx][vidx] = env->iotlb[mmu_idx][index]; | |
385 | ||
386 | /* refill the tlb */ | |
e469b22f | 387 | env->iotlb[mmu_idx][index].addr = iotlb - vaddr; |
fadc1cbe | 388 | env->iotlb[mmu_idx][index].attrs = attrs; |
0cac1b66 BS |
389 | te->addend = addend - vaddr; |
390 | if (prot & PAGE_READ) { | |
391 | te->addr_read = address; | |
392 | } else { | |
393 | te->addr_read = -1; | |
394 | } | |
395 | ||
396 | if (prot & PAGE_EXEC) { | |
397 | te->addr_code = code_address; | |
398 | } else { | |
399 | te->addr_code = -1; | |
400 | } | |
401 | if (prot & PAGE_WRITE) { | |
402 | if ((memory_region_is_ram(section->mr) && section->readonly) | |
cc5bea60 | 403 | || memory_region_is_romd(section->mr)) { |
0cac1b66 BS |
404 | /* Write access calls the I/O callback. */ |
405 | te->addr_write = address | TLB_MMIO; | |
406 | } else if (memory_region_is_ram(section->mr) | |
8e41fb63 FZ |
407 | && cpu_physical_memory_is_clean( |
408 | memory_region_get_ram_addr(section->mr) + xlat)) { | |
0cac1b66 BS |
409 | te->addr_write = address | TLB_NOTDIRTY; |
410 | } else { | |
411 | te->addr_write = address; | |
412 | } | |
413 | } else { | |
414 | te->addr_write = -1; | |
415 | } | |
416 | } | |
417 | ||
fadc1cbe PM |
418 | /* Add a new TLB entry, but without specifying the memory |
419 | * transaction attributes to be used. | |
420 | */ | |
421 | void tlb_set_page(CPUState *cpu, target_ulong vaddr, | |
422 | hwaddr paddr, int prot, | |
423 | int mmu_idx, target_ulong size) | |
424 | { | |
425 | tlb_set_page_with_attrs(cpu, vaddr, paddr, MEMTXATTRS_UNSPECIFIED, | |
426 | prot, mmu_idx, size); | |
427 | } | |
428 | ||
0cac1b66 BS |
429 | /* NOTE: this function can trigger an exception */ |
430 | /* NOTE2: the returned address is not exactly the physical address: it | |
116aae36 PM |
431 | * is actually a ram_addr_t (in system mode; the user mode emulation |
432 | * version of this function returns a guest virtual address). | |
433 | */ | |
0cac1b66 BS |
434 | tb_page_addr_t get_page_addr_code(CPUArchState *env1, target_ulong addr) |
435 | { | |
436 | int mmu_idx, page_index, pd; | |
437 | void *p; | |
438 | MemoryRegion *mr; | |
09daed84 | 439 | CPUState *cpu = ENV_GET_CPU(env1); |
a54c87b6 | 440 | CPUIOTLBEntry *iotlbentry; |
0cac1b66 BS |
441 | |
442 | page_index = (addr >> TARGET_PAGE_BITS) & (CPU_TLB_SIZE - 1); | |
97ed5ccd | 443 | mmu_idx = cpu_mmu_index(env1, true); |
0cac1b66 BS |
444 | if (unlikely(env1->tlb_table[mmu_idx][page_index].addr_code != |
445 | (addr & TARGET_PAGE_MASK))) { | |
0cac1b66 | 446 | cpu_ldub_code(env1, addr); |
0cac1b66 | 447 | } |
a54c87b6 PM |
448 | iotlbentry = &env1->iotlb[mmu_idx][page_index]; |
449 | pd = iotlbentry->addr & ~TARGET_PAGE_MASK; | |
450 | mr = iotlb_to_region(cpu, pd, iotlbentry->attrs); | |
0cac1b66 | 451 | if (memory_region_is_unassigned(mr)) { |
c658b94f AF |
452 | CPUClass *cc = CPU_GET_CLASS(cpu); |
453 | ||
454 | if (cc->do_unassigned_access) { | |
455 | cc->do_unassigned_access(cpu, addr, false, true, 0, 4); | |
456 | } else { | |
a47dddd7 | 457 | cpu_abort(cpu, "Trying to execute code outside RAM or ROM at 0x" |
c658b94f AF |
458 | TARGET_FMT_lx "\n", addr); |
459 | } | |
0cac1b66 BS |
460 | } |
461 | p = (void *)((uintptr_t)addr + env1->tlb_table[mmu_idx][page_index].addend); | |
462 | return qemu_ram_addr_from_host_nofail(p); | |
463 | } | |
464 | ||
0f590e74 PB |
465 | #define MMUSUFFIX _mmu |
466 | ||
467 | #define SHIFT 0 | |
58ed270d | 468 | #include "softmmu_template.h" |
0f590e74 PB |
469 | |
470 | #define SHIFT 1 | |
58ed270d | 471 | #include "softmmu_template.h" |
0f590e74 PB |
472 | |
473 | #define SHIFT 2 | |
58ed270d | 474 | #include "softmmu_template.h" |
0f590e74 PB |
475 | |
476 | #define SHIFT 3 | |
58ed270d | 477 | #include "softmmu_template.h" |
0f590e74 PB |
478 | #undef MMUSUFFIX |
479 | ||
0cac1b66 | 480 | #define MMUSUFFIX _cmmu |
7e4e8865 SW |
481 | #undef GETPC_ADJ |
482 | #define GETPC_ADJ 0 | |
483 | #undef GETRA | |
484 | #define GETRA() ((uintptr_t)0) | |
0cac1b66 BS |
485 | #define SOFTMMU_CODE_ACCESS |
486 | ||
487 | #define SHIFT 0 | |
58ed270d | 488 | #include "softmmu_template.h" |
0cac1b66 BS |
489 | |
490 | #define SHIFT 1 | |
58ed270d | 491 | #include "softmmu_template.h" |
0cac1b66 BS |
492 | |
493 | #define SHIFT 2 | |
58ed270d | 494 | #include "softmmu_template.h" |
0cac1b66 BS |
495 | |
496 | #define SHIFT 3 | |
58ed270d | 497 | #include "softmmu_template.h" |