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Fix Thumb signal handlers.
[mirror_qemu.git] / linux-user / qemu.h
CommitLineData
e88de099
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1#ifndef QEMU_H
2#define QEMU_H
31e31b8a 3
9de5e440 4#include <signal.h>
edf779ff 5#include <string.h>
31e31b8a 6
6180a181 7#include "cpu.h"
992f48a0 8
06177d36
AZ
9#undef DEBUG_REMAP
10#ifdef DEBUG_REMAP
11#include <stdlib.h>
12#endif /* DEBUG_REMAP */
13
992f48a0
BS
14#ifdef TARGET_ABI32
15typedef uint32_t abi_ulong;
16typedef int32_t abi_long;
f3e3285d
TS
17#define TARGET_ABI_FMT_lx "%08x"
18#define TARGET_ABI_FMT_ld "%d"
19#define TARGET_ABI_FMT_lu "%u"
992f48a0
BS
20#define TARGET_ABI_BITS 32
21#else
22typedef target_ulong abi_ulong;
23typedef target_long abi_long;
f3e3285d
TS
24#define TARGET_ABI_FMT_lx TARGET_FMT_lx
25#define TARGET_ABI_FMT_ld TARGET_FMT_ld
26#define TARGET_ABI_FMT_lu TARGET_FMT_lu
992f48a0 27#define TARGET_ABI_BITS TARGET_LONG_BITS
4683b130
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28/* for consistency, define ABI32 too */
29#if TARGET_ABI_BITS == 32
30#define TARGET_ABI32 1
31#endif
992f48a0
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32#endif
33
34#include "thunk.h"
35#include "syscall_defs.h"
6180a181 36#include "syscall.h"
a04e134a 37#include "target_signal.h"
1fddef4b 38#include "gdbstub.h"
66fb9763 39
31e31b8a
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40/* This struct is used to hold certain information about the image.
41 * Basically, it replicates in user space what would be certain
42 * task_struct fields in the kernel
43 */
44struct image_info {
992f48a0
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45 abi_ulong load_addr;
46 abi_ulong start_code;
47 abi_ulong end_code;
48 abi_ulong start_data;
49 abi_ulong end_data;
50 abi_ulong start_brk;
51 abi_ulong brk;
52 abi_ulong start_mmap;
53 abi_ulong mmap;
54 abi_ulong rss;
55 abi_ulong start_stack;
56 abi_ulong entry;
57 abi_ulong code_offset;
58 abi_ulong data_offset;
38d0662a 59 char **host_argv;
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60 int personality;
61};
62
b346ff46 63#ifdef TARGET_I386
851e67a1
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64/* Information about the current linux thread */
65struct vm86_saved_state {
66 uint32_t eax; /* return code */
67 uint32_t ebx;
68 uint32_t ecx;
69 uint32_t edx;
70 uint32_t esi;
71 uint32_t edi;
72 uint32_t ebp;
73 uint32_t esp;
74 uint32_t eflags;
75 uint32_t eip;
76 uint16_t cs, ss, ds, es, fs, gs;
77};
b346ff46 78#endif
851e67a1 79
28c4f361
FB
80#ifdef TARGET_ARM
81/* FPU emulator */
82#include "nwfpe/fpa11.h"
28c4f361
FB
83#endif
84
851e67a1
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85/* NOTE: we force a big alignment so that the stack stored after is
86 aligned too */
87typedef struct TaskState {
88 struct TaskState *next;
28c4f361
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89#ifdef TARGET_ARM
90 /* FPA state */
91 FPA11 fpa;
a4f81979 92 int swi_errno;
28c4f361 93#endif
84409ddb 94#if defined(TARGET_I386) && !defined(TARGET_X86_64)
992f48a0 95 abi_ulong target_v86;
851e67a1 96 struct vm86_saved_state vm86_saved_regs;
b333af06 97 struct target_vm86plus_struct vm86plus;
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98 uint32_t v86flags;
99 uint32_t v86mask;
e6e5906b
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100#endif
101#ifdef TARGET_M68K
102 int sim_syscalls;
a87295e8
PB
103#endif
104#if defined(TARGET_ARM) || defined(TARGET_M68K)
105 /* Extra fields for semihosted binaries. */
106 uint32_t stack_base;
107 uint32_t heap_base;
108 uint32_t heap_limit;
b346ff46 109#endif
851e67a1 110 int used; /* non zero if used */
978efd6a 111 struct image_info *info;
851e67a1
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112 uint8_t stack[0];
113} __attribute__((aligned(16))) TaskState;
114
115extern TaskState *first_task_state;
c5937220 116extern const char *qemu_uname_release;
851e67a1 117
e5fe0c52
PB
118/* ??? See if we can avoid exposing so much of the loader internals. */
119/*
120 * MAX_ARG_PAGES defines the number of pages allocated for arguments
121 * and envelope for the new program. 32 should suffice, this gives
122 * a maximum env+arg of 128kB w/4KB pages!
123 */
124#define MAX_ARG_PAGES 32
125
126/*
5fafdf24 127 * This structure is used to hold the arguments that are
e5fe0c52
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128 * used when loading binaries.
129 */
130struct linux_binprm {
131 char buf[128];
132 void *page[MAX_ARG_PAGES];
992f48a0 133 abi_ulong p;
e5fe0c52
PB
134 int fd;
135 int e_uid, e_gid;
136 int argc, envc;
137 char **argv;
138 char **envp;
139 char * filename; /* Name of binary */
140};
141
142void do_init_thread(struct target_pt_regs *regs, struct image_info *infop);
992f48a0
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143abi_ulong loader_build_argptr(int envc, int argc, abi_ulong sp,
144 abi_ulong stringp, int push_ptr);
5fafdf24 145int loader_exec(const char * filename, char ** argv, char ** envp,
01ffc75b 146 struct target_pt_regs * regs, struct image_info *infop);
31e31b8a 147
e5fe0c52
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148int load_elf_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
149 struct image_info * info);
150int load_flt_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
151 struct image_info * info);
cb33da57
BS
152#ifdef TARGET_HAS_ELFLOAD32
153int load_elf_binary_multi(struct linux_binprm *bprm,
154 struct target_pt_regs *regs,
155 struct image_info *info);
156#endif
e5fe0c52 157
579a97f7
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158abi_long memcpy_to_target(abi_ulong dest, const void *src,
159 unsigned long len);
992f48a0
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160void target_set_brk(abi_ulong new_brk);
161abi_long do_brk(abi_ulong new_brk);
31e31b8a 162void syscall_init(void);
992f48a0
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163abi_long do_syscall(void *cpu_env, int num, abi_long arg1,
164 abi_long arg2, abi_long arg3, abi_long arg4,
165 abi_long arg5, abi_long arg6);
31e31b8a 166void gemu_log(const char *fmt, ...) __attribute__((format(printf,1,2)));
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167extern CPUState *global_env;
168void cpu_loop(CPUState *env);
32ce6337
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169void init_paths(const char *prefix);
170const char *path(const char *pathname);
b92c47c1 171char *target_strerror(int err);
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172
173extern int loglevel;
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174extern FILE *logfile;
175
b92c47c1
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176/* strace.c */
177void print_syscall(int num,
c16f9ed3
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178 abi_long arg1, abi_long arg2, abi_long arg3,
179 abi_long arg4, abi_long arg5, abi_long arg6);
180void print_syscall_ret(int num, abi_long arg1);
b92c47c1
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181extern int do_strace;
182
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183/* signal.c */
184void process_pending_signals(void *cpu_env);
185void signal_init(void);
186int queue_signal(int sig, target_siginfo_t *info);
187void host_to_target_siginfo(target_siginfo_t *tinfo, const siginfo_t *info);
188void target_to_host_siginfo(siginfo_t *info, const target_siginfo_t *tinfo);
189long do_sigreturn(CPUState *env);
190long do_rt_sigreturn(CPUState *env);
579a97f7 191abi_long do_sigaltstack(abi_ulong uss_addr, abi_ulong uoss_addr, abi_ulong sp);
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192
193#ifdef TARGET_I386
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194/* vm86.c */
195void save_v86_state(CPUX86State *env);
447db213 196void handle_vm86_trap(CPUX86State *env, int trapno);
631271d7 197void handle_vm86_fault(CPUX86State *env);
992f48a0 198int do_vm86(CPUX86State *env, long subfunction, abi_ulong v86_addr);
5bfb56b2
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199#elif defined(TARGET_SPARC64)
200void sparc64_set_context(CPUSPARCState *env);
201void sparc64_get_context(CPUSPARCState *env);
b346ff46 202#endif
631271d7 203
54936004 204/* mmap.c */
992f48a0
BS
205int target_mprotect(abi_ulong start, abi_ulong len, int prot);
206abi_long target_mmap(abi_ulong start, abi_ulong len, int prot,
207 int flags, int fd, abi_ulong offset);
208int target_munmap(abi_ulong start, abi_ulong len);
209abi_long target_mremap(abi_ulong old_addr, abi_ulong old_size,
210 abi_ulong new_size, unsigned long flags,
211 abi_ulong new_addr);
212int target_msync(abi_ulong start, abi_ulong len, int flags);
54936004 213
edf779ff
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214/* user access */
215
216#define VERIFY_READ 0
579a97f7 217#define VERIFY_WRITE 1 /* implies read access */
edf779ff 218
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219static inline int access_ok(int type, abi_ulong addr, abi_ulong size)
220{
221 return page_check_range((target_ulong)addr, size,
222 (type == VERIFY_READ) ? PAGE_READ : (PAGE_READ | PAGE_WRITE)) == 0;
223}
edf779ff 224
89343ecd 225/* NOTE __get_user and __put_user use host pointers and don't check access. */
579a97f7
FB
226/* These are usually used to access struct data members once the
227 * struct has been locked - usually with lock_user_struct().
228 */
89343ecd 229#define __put_user(x, hptr)\
edf779ff 230({\
89343ecd 231 int size = sizeof(*hptr);\
edf779ff
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232 switch(size) {\
233 case 1:\
2f619698 234 *(uint8_t *)(hptr) = (uint8_t)(typeof(*hptr))(x);\
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235 break;\
236 case 2:\
89343ecd 237 *(uint16_t *)(hptr) = tswap16((typeof(*hptr))(x));\
edf779ff
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238 break;\
239 case 4:\
89343ecd 240 *(uint32_t *)(hptr) = tswap32((typeof(*hptr))(x));\
edf779ff
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241 break;\
242 case 8:\
89343ecd 243 *(uint64_t *)(hptr) = tswap64((typeof(*hptr))(x));\
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244 break;\
245 default:\
246 abort();\
247 }\
248 0;\
249})
250
89343ecd 251#define __get_user(x, hptr) \
edf779ff 252({\
89343ecd 253 int size = sizeof(*hptr);\
edf779ff
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254 switch(size) {\
255 case 1:\
89343ecd 256 x = (typeof(*hptr))*(uint8_t *)(hptr);\
edf779ff
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257 break;\
258 case 2:\
89343ecd 259 x = (typeof(*hptr))tswap16(*(uint16_t *)(hptr));\
edf779ff
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260 break;\
261 case 4:\
89343ecd 262 x = (typeof(*hptr))tswap32(*(uint32_t *)(hptr));\
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263 break;\
264 case 8:\
89343ecd 265 x = (typeof(*hptr))tswap64(*(uint64_t *)(hptr));\
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266 break;\
267 default:\
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268 /* avoid warning */\
269 x = 0;\
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270 abort();\
271 }\
272 0;\
273})
274
579a97f7
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275/* put_user()/get_user() take a guest address and check access */
276/* These are usually used to access an atomic data type, such as an int,
277 * that has been passed by address. These internally perform locking
278 * and unlocking on the data type.
279 */
280#define put_user(x, gaddr, target_type) \
281({ \
282 abi_ulong __gaddr = (gaddr); \
283 target_type *__hptr; \
284 abi_long __ret; \
285 if ((__hptr = lock_user(VERIFY_WRITE, __gaddr, sizeof(target_type), 0))) { \
286 __ret = __put_user((x), __hptr); \
287 unlock_user(__hptr, __gaddr, sizeof(target_type)); \
288 } else \
289 __ret = -TARGET_EFAULT; \
290 __ret; \
edf779ff
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291})
292
579a97f7
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293#define get_user(x, gaddr, target_type) \
294({ \
295 abi_ulong __gaddr = (gaddr); \
296 target_type *__hptr; \
297 abi_long __ret; \
298 if ((__hptr = lock_user(VERIFY_READ, __gaddr, sizeof(target_type), 1))) { \
299 __ret = __get_user((x), __hptr); \
300 unlock_user(__hptr, __gaddr, 0); \
2f619698
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301 } else { \
302 /* avoid warning */ \
303 (x) = 0; \
579a97f7 304 __ret = -TARGET_EFAULT; \
2f619698 305 } \
579a97f7 306 __ret; \
edf779ff
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307})
308
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309#define put_user_ual(x, gaddr) put_user((x), (gaddr), abi_ulong)
310#define put_user_sal(x, gaddr) put_user((x), (gaddr), abi_long)
311#define put_user_u64(x, gaddr) put_user((x), (gaddr), uint64_t)
312#define put_user_s64(x, gaddr) put_user((x), (gaddr), int64_t)
313#define put_user_u32(x, gaddr) put_user((x), (gaddr), uint32_t)
314#define put_user_s32(x, gaddr) put_user((x), (gaddr), int32_t)
315#define put_user_u16(x, gaddr) put_user((x), (gaddr), uint16_t)
316#define put_user_s16(x, gaddr) put_user((x), (gaddr), int16_t)
317#define put_user_u8(x, gaddr) put_user((x), (gaddr), uint8_t)
318#define put_user_s8(x, gaddr) put_user((x), (gaddr), int8_t)
319
320#define get_user_ual(x, gaddr) get_user((x), (gaddr), abi_ulong)
321#define get_user_sal(x, gaddr) get_user((x), (gaddr), abi_long)
322#define get_user_u64(x, gaddr) get_user((x), (gaddr), uint64_t)
323#define get_user_s64(x, gaddr) get_user((x), (gaddr), int64_t)
324#define get_user_u32(x, gaddr) get_user((x), (gaddr), uint32_t)
325#define get_user_s32(x, gaddr) get_user((x), (gaddr), int32_t)
326#define get_user_u16(x, gaddr) get_user((x), (gaddr), uint16_t)
327#define get_user_s16(x, gaddr) get_user((x), (gaddr), int16_t)
328#define get_user_u8(x, gaddr) get_user((x), (gaddr), uint8_t)
329#define get_user_s8(x, gaddr) get_user((x), (gaddr), int8_t)
330
579a97f7
FB
331/* copy_from_user() and copy_to_user() are usually used to copy data
332 * buffers between the target and host. These internally perform
333 * locking/unlocking of the memory.
334 */
335abi_long copy_from_user(void *hptr, abi_ulong gaddr, size_t len);
336abi_long copy_to_user(abi_ulong gaddr, void *hptr, size_t len);
337
53a5960a
PB
338/* Functions for accessing guest memory. The tget and tput functions
339 read/write single values, byteswapping as neccessary. The lock_user
340 gets a pointer to a contiguous area of guest memory, but does not perform
341 and byteswapping. lock_user may return either a pointer to the guest
342 memory, or a temporary buffer. */
343
344/* Lock an area of guest memory into the host. If copy is true then the
345 host area will have the same contents as the guest. */
579a97f7 346static inline void *lock_user(int type, abi_ulong guest_addr, long len, int copy)
edf779ff 347{
579a97f7
FB
348 if (!access_ok(type, guest_addr, len))
349 return NULL;
53a5960a 350#ifdef DEBUG_REMAP
579a97f7
FB
351 {
352 void *addr;
353 addr = malloc(len);
354 if (copy)
355 memcpy(addr, g2h(guest_addr), len);
356 else
357 memset(addr, 0, len);
358 return addr;
359 }
53a5960a
PB
360#else
361 return g2h(guest_addr);
362#endif
edf779ff
FB
363}
364
579a97f7
FB
365/* Unlock an area of guest memory. The first LEN bytes must be
366 flushed back to guest memory. host_ptr = NULL is explicitely
367 allowed and does nothing. */
368static inline void unlock_user(void *host_ptr, abi_ulong guest_addr,
992f48a0 369 long len)
edf779ff 370{
579a97f7 371
53a5960a 372#ifdef DEBUG_REMAP
579a97f7
FB
373 if (!host_ptr)
374 return;
375 if (host_ptr == g2h(guest_addr))
53a5960a
PB
376 return;
377 if (len > 0)
06177d36 378 memcpy(g2h(guest_addr), host_ptr, len);
579a97f7 379 free(host_ptr);
53a5960a 380#endif
edf779ff
FB
381}
382
579a97f7
FB
383/* Return the length of a string in target memory or -TARGET_EFAULT if
384 access error. */
385abi_long target_strlen(abi_ulong gaddr);
53a5960a
PB
386
387/* Like lock_user but for null terminated strings. */
992f48a0 388static inline void *lock_user_string(abi_ulong guest_addr)
53a5960a 389{
579a97f7
FB
390 abi_long len;
391 len = target_strlen(guest_addr);
392 if (len < 0)
393 return NULL;
394 return lock_user(VERIFY_READ, guest_addr, (long)(len + 1), 1);
edf779ff
FB
395}
396
53a5960a 397/* Helper macros for locking/ulocking a target struct. */
579a97f7
FB
398#define lock_user_struct(type, host_ptr, guest_addr, copy) \
399 (host_ptr = lock_user(type, guest_addr, sizeof(*host_ptr), copy))
400#define unlock_user_struct(host_ptr, guest_addr, copy) \
53a5960a
PB
401 unlock_user(host_ptr, guest_addr, (copy) ? sizeof(*host_ptr) : 0)
402
e88de099 403#endif /* QEMU_H */