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Commit | Line | Data |
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5a9fdfec FB |
1 | /* |
2 | * defines common to all virtual CPUs | |
5fafdf24 | 3 | * |
5a9fdfec FB |
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 | |
8167ee88 | 17 | * License along with this library; if not, see <http://www.gnu.org/licenses/>. |
5a9fdfec FB |
18 | */ |
19 | #ifndef CPU_ALL_H | |
20 | #define CPU_ALL_H | |
21 | ||
7d99a001 | 22 | #include "qemu-common.h" |
b3c4bbe5 | 23 | #include "qemu-tls.h" |
1ad2134f | 24 | #include "cpu-common.h" |
0ac4bd56 | 25 | |
5fafdf24 TS |
26 | /* some important defines: |
27 | * | |
0ac4bd56 FB |
28 | * WORDS_ALIGNED : if defined, the host cpu can only make word aligned |
29 | * memory accesses. | |
5fafdf24 | 30 | * |
e2542fe2 | 31 | * HOST_WORDS_BIGENDIAN : if defined, the host cpu is big endian and |
0ac4bd56 | 32 | * otherwise little endian. |
5fafdf24 | 33 | * |
0ac4bd56 | 34 | * (TARGET_WORDS_ALIGNED : same for target cpu (not supported yet)) |
5fafdf24 | 35 | * |
0ac4bd56 FB |
36 | * TARGET_WORDS_BIGENDIAN : same for target cpu |
37 | */ | |
38 | ||
e2542fe2 | 39 | #if defined(HOST_WORDS_BIGENDIAN) != defined(TARGET_WORDS_BIGENDIAN) |
f193c797 FB |
40 | #define BSWAP_NEEDED |
41 | #endif | |
42 | ||
43 | #ifdef BSWAP_NEEDED | |
44 | ||
45 | static inline uint16_t tswap16(uint16_t s) | |
46 | { | |
47 | return bswap16(s); | |
48 | } | |
49 | ||
50 | static inline uint32_t tswap32(uint32_t s) | |
51 | { | |
52 | return bswap32(s); | |
53 | } | |
54 | ||
55 | static inline uint64_t tswap64(uint64_t s) | |
56 | { | |
57 | return bswap64(s); | |
58 | } | |
59 | ||
60 | static inline void tswap16s(uint16_t *s) | |
61 | { | |
62 | *s = bswap16(*s); | |
63 | } | |
64 | ||
65 | static inline void tswap32s(uint32_t *s) | |
66 | { | |
67 | *s = bswap32(*s); | |
68 | } | |
69 | ||
70 | static inline void tswap64s(uint64_t *s) | |
71 | { | |
72 | *s = bswap64(*s); | |
73 | } | |
74 | ||
75 | #else | |
76 | ||
77 | static inline uint16_t tswap16(uint16_t s) | |
78 | { | |
79 | return s; | |
80 | } | |
81 | ||
82 | static inline uint32_t tswap32(uint32_t s) | |
83 | { | |
84 | return s; | |
85 | } | |
86 | ||
87 | static inline uint64_t tswap64(uint64_t s) | |
88 | { | |
89 | return s; | |
90 | } | |
91 | ||
92 | static inline void tswap16s(uint16_t *s) | |
93 | { | |
94 | } | |
95 | ||
96 | static inline void tswap32s(uint32_t *s) | |
97 | { | |
98 | } | |
99 | ||
100 | static inline void tswap64s(uint64_t *s) | |
101 | { | |
102 | } | |
103 | ||
104 | #endif | |
105 | ||
106 | #if TARGET_LONG_SIZE == 4 | |
107 | #define tswapl(s) tswap32(s) | |
108 | #define tswapls(s) tswap32s((uint32_t *)(s)) | |
0a962c02 | 109 | #define bswaptls(s) bswap32s(s) |
f193c797 FB |
110 | #else |
111 | #define tswapl(s) tswap64(s) | |
112 | #define tswapls(s) tswap64s((uint64_t *)(s)) | |
0a962c02 | 113 | #define bswaptls(s) bswap64s(s) |
f193c797 FB |
114 | #endif |
115 | ||
61382a50 FB |
116 | /* CPU memory access without any memory or io remapping */ |
117 | ||
83d73968 FB |
118 | /* |
119 | * the generic syntax for the memory accesses is: | |
120 | * | |
121 | * load: ld{type}{sign}{size}{endian}_{access_type}(ptr) | |
122 | * | |
123 | * store: st{type}{size}{endian}_{access_type}(ptr, val) | |
124 | * | |
125 | * type is: | |
126 | * (empty): integer access | |
127 | * f : float access | |
5fafdf24 | 128 | * |
83d73968 FB |
129 | * sign is: |
130 | * (empty): for floats or 32 bit size | |
131 | * u : unsigned | |
132 | * s : signed | |
133 | * | |
134 | * size is: | |
135 | * b: 8 bits | |
136 | * w: 16 bits | |
137 | * l: 32 bits | |
138 | * q: 64 bits | |
5fafdf24 | 139 | * |
83d73968 FB |
140 | * endian is: |
141 | * (empty): target cpu endianness or 8 bit access | |
142 | * r : reversed target cpu endianness (not implemented yet) | |
143 | * be : big endian (not implemented yet) | |
144 | * le : little endian (not implemented yet) | |
145 | * | |
146 | * access_type is: | |
147 | * raw : host memory access | |
148 | * user : user mode access using soft MMU | |
149 | * kernel : kernel mode access using soft MMU | |
150 | */ | |
2df3b95d | 151 | |
cbbab922 | 152 | /* target-endianness CPU memory access functions */ |
2df3b95d FB |
153 | #if defined(TARGET_WORDS_BIGENDIAN) |
154 | #define lduw_p(p) lduw_be_p(p) | |
155 | #define ldsw_p(p) ldsw_be_p(p) | |
156 | #define ldl_p(p) ldl_be_p(p) | |
157 | #define ldq_p(p) ldq_be_p(p) | |
158 | #define ldfl_p(p) ldfl_be_p(p) | |
159 | #define ldfq_p(p) ldfq_be_p(p) | |
160 | #define stw_p(p, v) stw_be_p(p, v) | |
161 | #define stl_p(p, v) stl_be_p(p, v) | |
162 | #define stq_p(p, v) stq_be_p(p, v) | |
163 | #define stfl_p(p, v) stfl_be_p(p, v) | |
164 | #define stfq_p(p, v) stfq_be_p(p, v) | |
165 | #else | |
166 | #define lduw_p(p) lduw_le_p(p) | |
167 | #define ldsw_p(p) ldsw_le_p(p) | |
168 | #define ldl_p(p) ldl_le_p(p) | |
169 | #define ldq_p(p) ldq_le_p(p) | |
170 | #define ldfl_p(p) ldfl_le_p(p) | |
171 | #define ldfq_p(p) ldfq_le_p(p) | |
172 | #define stw_p(p, v) stw_le_p(p, v) | |
173 | #define stl_p(p, v) stl_le_p(p, v) | |
174 | #define stq_p(p, v) stq_le_p(p, v) | |
175 | #define stfl_p(p, v) stfl_le_p(p, v) | |
176 | #define stfq_p(p, v) stfq_le_p(p, v) | |
5a9fdfec FB |
177 | #endif |
178 | ||
61382a50 FB |
179 | /* MMU memory access macros */ |
180 | ||
53a5960a | 181 | #if defined(CONFIG_USER_ONLY) |
0e62fd79 AJ |
182 | #include <assert.h> |
183 | #include "qemu-types.h" | |
184 | ||
53a5960a PB |
185 | /* On some host systems the guest address space is reserved on the host. |
186 | * This allows the guest address space to be offset to a convenient location. | |
187 | */ | |
379f6698 PB |
188 | #if defined(CONFIG_USE_GUEST_BASE) |
189 | extern unsigned long guest_base; | |
190 | extern int have_guest_base; | |
68a1c816 | 191 | extern unsigned long reserved_va; |
379f6698 | 192 | #define GUEST_BASE guest_base |
18e9ea8a | 193 | #define RESERVED_VA reserved_va |
379f6698 PB |
194 | #else |
195 | #define GUEST_BASE 0ul | |
18e9ea8a | 196 | #define RESERVED_VA 0ul |
379f6698 | 197 | #endif |
53a5960a PB |
198 | |
199 | /* All direct uses of g2h and h2g need to go away for usermode softmmu. */ | |
8d9dde94 | 200 | #define g2h(x) ((void *)((unsigned long)(target_ulong)(x) + GUEST_BASE)) |
b9f83121 RH |
201 | |
202 | #if HOST_LONG_BITS <= TARGET_VIRT_ADDR_SPACE_BITS | |
203 | #define h2g_valid(x) 1 | |
204 | #else | |
205 | #define h2g_valid(x) ({ \ | |
206 | unsigned long __guest = (unsigned long)(x) - GUEST_BASE; \ | |
39879bbb AG |
207 | (__guest < (1ul << TARGET_VIRT_ADDR_SPACE_BITS)) && \ |
208 | (!RESERVED_VA || (__guest < RESERVED_VA)); \ | |
b9f83121 RH |
209 | }) |
210 | #endif | |
211 | ||
0e62fd79 AJ |
212 | #define h2g(x) ({ \ |
213 | unsigned long __ret = (unsigned long)(x) - GUEST_BASE; \ | |
214 | /* Check if given address fits target address space */ \ | |
b9f83121 | 215 | assert(h2g_valid(x)); \ |
0e62fd79 AJ |
216 | (abi_ulong)__ret; \ |
217 | }) | |
53a5960a PB |
218 | |
219 | #define saddr(x) g2h(x) | |
220 | #define laddr(x) g2h(x) | |
221 | ||
222 | #else /* !CONFIG_USER_ONLY */ | |
c27004ec FB |
223 | /* NOTE: we use double casts if pointers and target_ulong have |
224 | different sizes */ | |
27b0dc16 SW |
225 | #define saddr(x) (uint8_t *)(intptr_t)(x) |
226 | #define laddr(x) (uint8_t *)(intptr_t)(x) | |
53a5960a PB |
227 | #endif |
228 | ||
229 | #define ldub_raw(p) ldub_p(laddr((p))) | |
230 | #define ldsb_raw(p) ldsb_p(laddr((p))) | |
231 | #define lduw_raw(p) lduw_p(laddr((p))) | |
232 | #define ldsw_raw(p) ldsw_p(laddr((p))) | |
233 | #define ldl_raw(p) ldl_p(laddr((p))) | |
234 | #define ldq_raw(p) ldq_p(laddr((p))) | |
235 | #define ldfl_raw(p) ldfl_p(laddr((p))) | |
236 | #define ldfq_raw(p) ldfq_p(laddr((p))) | |
237 | #define stb_raw(p, v) stb_p(saddr((p)), v) | |
238 | #define stw_raw(p, v) stw_p(saddr((p)), v) | |
239 | #define stl_raw(p, v) stl_p(saddr((p)), v) | |
240 | #define stq_raw(p, v) stq_p(saddr((p)), v) | |
241 | #define stfl_raw(p, v) stfl_p(saddr((p)), v) | |
242 | #define stfq_raw(p, v) stfq_p(saddr((p)), v) | |
c27004ec FB |
243 | |
244 | ||
5fafdf24 | 245 | #if defined(CONFIG_USER_ONLY) |
61382a50 FB |
246 | |
247 | /* if user mode, no other memory access functions */ | |
248 | #define ldub(p) ldub_raw(p) | |
249 | #define ldsb(p) ldsb_raw(p) | |
250 | #define lduw(p) lduw_raw(p) | |
251 | #define ldsw(p) ldsw_raw(p) | |
252 | #define ldl(p) ldl_raw(p) | |
253 | #define ldq(p) ldq_raw(p) | |
254 | #define ldfl(p) ldfl_raw(p) | |
255 | #define ldfq(p) ldfq_raw(p) | |
256 | #define stb(p, v) stb_raw(p, v) | |
257 | #define stw(p, v) stw_raw(p, v) | |
258 | #define stl(p, v) stl_raw(p, v) | |
259 | #define stq(p, v) stq_raw(p, v) | |
260 | #define stfl(p, v) stfl_raw(p, v) | |
261 | #define stfq(p, v) stfq_raw(p, v) | |
262 | ||
e141ab52 | 263 | #ifndef CONFIG_TCG_PASS_AREG0 |
61382a50 FB |
264 | #define ldub_code(p) ldub_raw(p) |
265 | #define ldsb_code(p) ldsb_raw(p) | |
266 | #define lduw_code(p) lduw_raw(p) | |
267 | #define ldsw_code(p) ldsw_raw(p) | |
268 | #define ldl_code(p) ldl_raw(p) | |
bc98a7ef | 269 | #define ldq_code(p) ldq_raw(p) |
e141ab52 BS |
270 | #else |
271 | #define cpu_ldub_code(env1, p) ldub_raw(p) | |
272 | #define cpu_ldsb_code(env1, p) ldsb_raw(p) | |
273 | #define cpu_lduw_code(env1, p) lduw_raw(p) | |
274 | #define cpu_ldsw_code(env1, p) ldsw_raw(p) | |
275 | #define cpu_ldl_code(env1, p) ldl_raw(p) | |
276 | #define cpu_ldq_code(env1, p) ldq_raw(p) | |
277 | #endif | |
61382a50 FB |
278 | |
279 | #define ldub_kernel(p) ldub_raw(p) | |
280 | #define ldsb_kernel(p) ldsb_raw(p) | |
281 | #define lduw_kernel(p) lduw_raw(p) | |
282 | #define ldsw_kernel(p) ldsw_raw(p) | |
283 | #define ldl_kernel(p) ldl_raw(p) | |
bc98a7ef | 284 | #define ldq_kernel(p) ldq_raw(p) |
0ac4bd56 FB |
285 | #define ldfl_kernel(p) ldfl_raw(p) |
286 | #define ldfq_kernel(p) ldfq_raw(p) | |
61382a50 FB |
287 | #define stb_kernel(p, v) stb_raw(p, v) |
288 | #define stw_kernel(p, v) stw_raw(p, v) | |
289 | #define stl_kernel(p, v) stl_raw(p, v) | |
290 | #define stq_kernel(p, v) stq_raw(p, v) | |
0ac4bd56 FB |
291 | #define stfl_kernel(p, v) stfl_raw(p, v) |
292 | #define stfq_kernel(p, vt) stfq_raw(p, v) | |
61382a50 | 293 | |
2f5a189c BS |
294 | #ifdef CONFIG_TCG_PASS_AREG0 |
295 | #define cpu_ldub_data(env, addr) ldub_raw(addr) | |
296 | #define cpu_lduw_data(env, addr) lduw_raw(addr) | |
297 | #define cpu_ldl_data(env, addr) ldl_raw(addr) | |
298 | ||
299 | #define cpu_stb_data(env, addr, data) stb_raw(addr, data) | |
300 | #define cpu_stw_data(env, addr, data) stw_raw(addr, data) | |
301 | #define cpu_stl_data(env, addr, data) stl_raw(addr, data) | |
302 | #endif | |
61382a50 FB |
303 | #endif /* defined(CONFIG_USER_ONLY) */ |
304 | ||
5a9fdfec FB |
305 | /* page related stuff */ |
306 | ||
03875444 | 307 | #define TARGET_PAGE_SIZE (1 << TARGET_PAGE_BITS) |
5a9fdfec FB |
308 | #define TARGET_PAGE_MASK ~(TARGET_PAGE_SIZE - 1) |
309 | #define TARGET_PAGE_ALIGN(addr) (((addr) + TARGET_PAGE_SIZE - 1) & TARGET_PAGE_MASK) | |
310 | ||
c6d50674 SW |
311 | /* ??? These should be the larger of uintptr_t and target_ulong. */ |
312 | extern uintptr_t qemu_real_host_page_size; | |
313 | extern uintptr_t qemu_host_page_size; | |
314 | extern uintptr_t qemu_host_page_mask; | |
5a9fdfec | 315 | |
83fb7adf | 316 | #define HOST_PAGE_ALIGN(addr) (((addr) + qemu_host_page_size - 1) & qemu_host_page_mask) |
5a9fdfec FB |
317 | |
318 | /* same as PROT_xxx */ | |
319 | #define PAGE_READ 0x0001 | |
320 | #define PAGE_WRITE 0x0002 | |
321 | #define PAGE_EXEC 0x0004 | |
322 | #define PAGE_BITS (PAGE_READ | PAGE_WRITE | PAGE_EXEC) | |
323 | #define PAGE_VALID 0x0008 | |
324 | /* original state of the write flag (used when tracking self-modifying | |
325 | code */ | |
5fafdf24 | 326 | #define PAGE_WRITE_ORG 0x0010 |
2e9a5713 PB |
327 | #if defined(CONFIG_BSD) && defined(CONFIG_USER_ONLY) |
328 | /* FIXME: Code that sets/uses this is broken and needs to go away. */ | |
50a9569b | 329 | #define PAGE_RESERVED 0x0020 |
2e9a5713 | 330 | #endif |
5a9fdfec | 331 | |
b480d9b7 | 332 | #if defined(CONFIG_USER_ONLY) |
5a9fdfec | 333 | void page_dump(FILE *f); |
5cd2c5b6 | 334 | |
b480d9b7 PB |
335 | typedef int (*walk_memory_regions_fn)(void *, abi_ulong, |
336 | abi_ulong, unsigned long); | |
5cd2c5b6 RH |
337 | int walk_memory_regions(void *, walk_memory_regions_fn); |
338 | ||
53a5960a PB |
339 | int page_get_flags(target_ulong address); |
340 | void page_set_flags(target_ulong start, target_ulong end, int flags); | |
3d97b40b | 341 | int page_check_range(target_ulong start, target_ulong len, int flags); |
b480d9b7 | 342 | #endif |
5a9fdfec | 343 | |
9349b4f9 AF |
344 | CPUArchState *cpu_copy(CPUArchState *env); |
345 | CPUArchState *qemu_get_cpu(int cpu); | |
c5be9f08 | 346 | |
f5c848ee JK |
347 | #define CPU_DUMP_CODE 0x00010000 |
348 | ||
9349b4f9 | 349 | void cpu_dump_state(CPUArchState *env, FILE *f, fprintf_function cpu_fprintf, |
7fe48483 | 350 | int flags); |
9349b4f9 | 351 | void cpu_dump_statistics(CPUArchState *env, FILE *f, fprintf_function cpu_fprintf, |
9a78eead | 352 | int flags); |
7fe48483 | 353 | |
9349b4f9 | 354 | void QEMU_NORETURN cpu_abort(CPUArchState *env, const char *fmt, ...) |
2c80e423 | 355 | GCC_FMT_ATTR(2, 3); |
9349b4f9 AF |
356 | extern CPUArchState *first_cpu; |
357 | DECLARE_TLS(CPUArchState *,cpu_single_env); | |
4a2dd92d | 358 | #define cpu_single_env tls_var(cpu_single_env) |
db1a4972 | 359 | |
9c76219e RH |
360 | /* Flags for use in ENV->INTERRUPT_PENDING. |
361 | ||
362 | The numbers assigned here are non-sequential in order to preserve | |
363 | binary compatibility with the vmstate dump. Bit 0 (0x0001) was | |
364 | previously used for CPU_INTERRUPT_EXIT, and is cleared when loading | |
365 | the vmstate dump. */ | |
366 | ||
367 | /* External hardware interrupt pending. This is typically used for | |
368 | interrupts from devices. */ | |
369 | #define CPU_INTERRUPT_HARD 0x0002 | |
370 | ||
371 | /* Exit the current TB. This is typically used when some system-level device | |
372 | makes some change to the memory mapping. E.g. the a20 line change. */ | |
373 | #define CPU_INTERRUPT_EXITTB 0x0004 | |
374 | ||
375 | /* Halt the CPU. */ | |
376 | #define CPU_INTERRUPT_HALT 0x0020 | |
377 | ||
378 | /* Debug event pending. */ | |
379 | #define CPU_INTERRUPT_DEBUG 0x0080 | |
380 | ||
381 | /* Several target-specific external hardware interrupts. Each target/cpu.h | |
382 | should define proper names based on these defines. */ | |
383 | #define CPU_INTERRUPT_TGT_EXT_0 0x0008 | |
384 | #define CPU_INTERRUPT_TGT_EXT_1 0x0010 | |
385 | #define CPU_INTERRUPT_TGT_EXT_2 0x0040 | |
386 | #define CPU_INTERRUPT_TGT_EXT_3 0x0200 | |
387 | #define CPU_INTERRUPT_TGT_EXT_4 0x1000 | |
388 | ||
389 | /* Several target-specific internal interrupts. These differ from the | |
07f35073 | 390 | preceding target-specific interrupts in that they are intended to |
9c76219e RH |
391 | originate from within the cpu itself, typically in response to some |
392 | instruction being executed. These, therefore, are not masked while | |
393 | single-stepping within the debugger. */ | |
394 | #define CPU_INTERRUPT_TGT_INT_0 0x0100 | |
395 | #define CPU_INTERRUPT_TGT_INT_1 0x0400 | |
396 | #define CPU_INTERRUPT_TGT_INT_2 0x0800 | |
d362e757 | 397 | #define CPU_INTERRUPT_TGT_INT_3 0x2000 |
9c76219e | 398 | |
d362e757 | 399 | /* First unused bit: 0x4000. */ |
9c76219e | 400 | |
3125f763 RH |
401 | /* The set of all bits that should be masked when single-stepping. */ |
402 | #define CPU_INTERRUPT_SSTEP_MASK \ | |
403 | (CPU_INTERRUPT_HARD \ | |
404 | | CPU_INTERRUPT_TGT_EXT_0 \ | |
405 | | CPU_INTERRUPT_TGT_EXT_1 \ | |
406 | | CPU_INTERRUPT_TGT_EXT_2 \ | |
407 | | CPU_INTERRUPT_TGT_EXT_3 \ | |
408 | | CPU_INTERRUPT_TGT_EXT_4) | |
98699967 | 409 | |
ec6959d0 | 410 | #ifndef CONFIG_USER_ONLY |
9349b4f9 | 411 | typedef void (*CPUInterruptHandler)(CPUArchState *, int); |
ec6959d0 JK |
412 | |
413 | extern CPUInterruptHandler cpu_interrupt_handler; | |
414 | ||
9349b4f9 | 415 | static inline void cpu_interrupt(CPUArchState *s, int mask) |
ec6959d0 JK |
416 | { |
417 | cpu_interrupt_handler(s, mask); | |
418 | } | |
419 | #else /* USER_ONLY */ | |
9349b4f9 | 420 | void cpu_interrupt(CPUArchState *env, int mask); |
ec6959d0 JK |
421 | #endif /* USER_ONLY */ |
422 | ||
9349b4f9 | 423 | void cpu_reset_interrupt(CPUArchState *env, int mask); |
68a79315 | 424 | |
9349b4f9 | 425 | void cpu_exit(CPUArchState *s); |
3098dba0 | 426 | |
9349b4f9 | 427 | bool qemu_cpu_has_work(CPUArchState *env); |
6a4955a8 | 428 | |
a1d1bb31 AL |
429 | /* Breakpoint/watchpoint flags */ |
430 | #define BP_MEM_READ 0x01 | |
431 | #define BP_MEM_WRITE 0x02 | |
432 | #define BP_MEM_ACCESS (BP_MEM_READ | BP_MEM_WRITE) | |
06d55cc1 | 433 | #define BP_STOP_BEFORE_ACCESS 0x04 |
6e140f28 | 434 | #define BP_WATCHPOINT_HIT 0x08 |
a1d1bb31 | 435 | #define BP_GDB 0x10 |
2dc9f411 | 436 | #define BP_CPU 0x20 |
a1d1bb31 | 437 | |
9349b4f9 | 438 | int cpu_breakpoint_insert(CPUArchState *env, target_ulong pc, int flags, |
a1d1bb31 | 439 | CPUBreakpoint **breakpoint); |
9349b4f9 AF |
440 | int cpu_breakpoint_remove(CPUArchState *env, target_ulong pc, int flags); |
441 | void cpu_breakpoint_remove_by_ref(CPUArchState *env, CPUBreakpoint *breakpoint); | |
442 | void cpu_breakpoint_remove_all(CPUArchState *env, int mask); | |
443 | int cpu_watchpoint_insert(CPUArchState *env, target_ulong addr, target_ulong len, | |
a1d1bb31 | 444 | int flags, CPUWatchpoint **watchpoint); |
9349b4f9 | 445 | int cpu_watchpoint_remove(CPUArchState *env, target_ulong addr, |
a1d1bb31 | 446 | target_ulong len, int flags); |
9349b4f9 AF |
447 | void cpu_watchpoint_remove_by_ref(CPUArchState *env, CPUWatchpoint *watchpoint); |
448 | void cpu_watchpoint_remove_all(CPUArchState *env, int mask); | |
60897d36 EI |
449 | |
450 | #define SSTEP_ENABLE 0x1 /* Enable simulated HW single stepping */ | |
451 | #define SSTEP_NOIRQ 0x2 /* Do not use IRQ while single stepping */ | |
452 | #define SSTEP_NOTIMER 0x4 /* Do not Timers while single stepping */ | |
453 | ||
9349b4f9 | 454 | void cpu_single_step(CPUArchState *env, int enabled); |
9349b4f9 AF |
455 | int cpu_is_stopped(CPUArchState *env); |
456 | void run_on_cpu(CPUArchState *env, void (*func)(void *data), void *data); | |
4c3a88a2 | 457 | |
b3755a91 PB |
458 | #if !defined(CONFIG_USER_ONLY) |
459 | ||
4fcc562b PB |
460 | /* Return the physical page corresponding to a virtual one. Use it |
461 | only for debugging because no protection checks are done. Return -1 | |
462 | if no page found. */ | |
9349b4f9 | 463 | target_phys_addr_t cpu_get_phys_page_debug(CPUArchState *env, target_ulong addr); |
4fcc562b | 464 | |
33417e70 FB |
465 | /* memory API */ |
466 | ||
edf75d59 | 467 | extern int phys_ram_fd; |
c227f099 | 468 | extern ram_addr_t ram_size; |
f471a17e | 469 | |
cd19cfa2 HY |
470 | /* RAM is pre-allocated and passed into qemu_ram_alloc_from_ptr */ |
471 | #define RAM_PREALLOC_MASK (1 << 0) | |
472 | ||
f471a17e | 473 | typedef struct RAMBlock { |
7c637366 | 474 | struct MemoryRegion *mr; |
f471a17e AW |
475 | uint8_t *host; |
476 | ram_addr_t offset; | |
477 | ram_addr_t length; | |
cd19cfa2 | 478 | uint32_t flags; |
cc9e98cb | 479 | char idstr[256]; |
f471a17e | 480 | QLIST_ENTRY(RAMBlock) next; |
04b16653 AW |
481 | #if defined(__linux__) && !defined(TARGET_S390X) |
482 | int fd; | |
483 | #endif | |
f471a17e AW |
484 | } RAMBlock; |
485 | ||
486 | typedef struct RAMList { | |
487 | uint8_t *phys_dirty; | |
85d59fef | 488 | QLIST_HEAD(, RAMBlock) blocks; |
45f33f01 | 489 | uint64_t dirty_pages; |
f471a17e AW |
490 | } RAMList; |
491 | extern RAMList ram_list; | |
edf75d59 | 492 | |
c902760f MT |
493 | extern const char *mem_path; |
494 | extern int mem_prealloc; | |
495 | ||
0f459d16 PB |
496 | /* Flags stored in the low bits of the TLB virtual address. These are |
497 | defined so that fast path ram access is all zeros. */ | |
498 | /* Zero if TLB entry is valid. */ | |
499 | #define TLB_INVALID_MASK (1 << 3) | |
500 | /* Set if TLB entry references a clean RAM page. The iotlb entry will | |
501 | contain the page physical address. */ | |
502 | #define TLB_NOTDIRTY (1 << 4) | |
503 | /* Set if TLB entry is an IO callback. */ | |
504 | #define TLB_MMIO (1 << 5) | |
505 | ||
055403b2 | 506 | void dump_exec_info(FILE *f, fprintf_function cpu_fprintf); |
b3755a91 PB |
507 | #endif /* !CONFIG_USER_ONLY */ |
508 | ||
9349b4f9 | 509 | int cpu_memory_rw_debug(CPUArchState *env, target_ulong addr, |
b3755a91 PB |
510 | uint8_t *buf, int len, int is_write); |
511 | ||
5a9fdfec | 512 | #endif /* CPU_ALL_H */ |