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CommitLineData
e88de099
FB
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
022c62cb 14#include "exec/user/abitypes.h"
992f48a0 15
022c62cb 16#include "exec/user/thunk.h"
992f48a0 17#include "syscall_defs.h"
6180a181 18#include "syscall.h"
022c62cb 19#include "exec/gdbstub.h"
1de7afc9 20#include "qemu/queue.h"
66fb9763 21
d5975363 22#define THREAD __thread
d5975363 23
31e31b8a
FB
24/* This struct is used to hold certain information about the image.
25 * Basically, it replicates in user space what would be certain
26 * task_struct fields in the kernel
27 */
28struct image_info {
9955ffac 29 abi_ulong load_bias;
992f48a0
BS
30 abi_ulong load_addr;
31 abi_ulong start_code;
32 abi_ulong end_code;
33 abi_ulong start_data;
34 abi_ulong end_data;
35 abi_ulong start_brk;
36 abi_ulong brk;
37 abi_ulong start_mmap;
38 abi_ulong mmap;
39 abi_ulong rss;
40 abi_ulong start_stack;
97374d38 41 abi_ulong stack_limit;
992f48a0
BS
42 abi_ulong entry;
43 abi_ulong code_offset;
44 abi_ulong data_offset;
edf8e2af 45 abi_ulong saved_auxv;
125b0f55 46 abi_ulong auxv_len;
edf8e2af
MW
47 abi_ulong arg_start;
48 abi_ulong arg_end;
d8fd2954 49 uint32_t elf_flags;
31e31b8a 50 int personality;
1af02e83
MF
51#ifdef CONFIG_USE_FDPIC
52 abi_ulong loadmap_addr;
53 uint16_t nsegs;
54 void *loadsegs;
55 abi_ulong pt_dynamic_addr;
56 struct image_info *other_info;
57#endif
31e31b8a
FB
58};
59
b346ff46 60#ifdef TARGET_I386
851e67a1
FB
61/* Information about the current linux thread */
62struct vm86_saved_state {
63 uint32_t eax; /* return code */
64 uint32_t ebx;
65 uint32_t ecx;
66 uint32_t edx;
67 uint32_t esi;
68 uint32_t edi;
69 uint32_t ebp;
70 uint32_t esp;
71 uint32_t eflags;
72 uint32_t eip;
73 uint16_t cs, ss, ds, es, fs, gs;
74};
b346ff46 75#endif
851e67a1 76
28c4f361
FB
77#ifdef TARGET_ARM
78/* FPU emulator */
79#include "nwfpe/fpa11.h"
28c4f361
FB
80#endif
81
624f7979
PB
82#define MAX_SIGQUEUE_SIZE 1024
83
84struct sigqueue {
85 struct sigqueue *next;
c227f099 86 target_siginfo_t info;
624f7979
PB
87};
88
89struct emulated_sigtable {
90 int pending; /* true if signal is pending */
91 struct sigqueue *first;
92 struct sigqueue info; /* in order to always have memory for the
93 first signal, we put it here */
94};
95
851e67a1
FB
96/* NOTE: we force a big alignment so that the stack stored after is
97 aligned too */
98typedef struct TaskState {
edf8e2af 99 pid_t ts_tid; /* tid (or pid) of this task */
28c4f361
FB
100#ifdef TARGET_ARM
101 /* FPA state */
102 FPA11 fpa;
a4f81979 103 int swi_errno;
28c4f361 104#endif
d2fbca94
GX
105#ifdef TARGET_UNICORE32
106 int swi_errno;
107#endif
84409ddb 108#if defined(TARGET_I386) && !defined(TARGET_X86_64)
992f48a0 109 abi_ulong target_v86;
851e67a1 110 struct vm86_saved_state vm86_saved_regs;
b333af06 111 struct target_vm86plus_struct vm86plus;
631271d7
FB
112 uint32_t v86flags;
113 uint32_t v86mask;
e6e5906b 114#endif
c2764719 115 abi_ulong child_tidptr;
e6e5906b
PB
116#ifdef TARGET_M68K
117 int sim_syscalls;
1ccd9374 118 abi_ulong tp_value;
a87295e8 119#endif
d2fbca94 120#if defined(TARGET_ARM) || defined(TARGET_M68K) || defined(TARGET_UNICORE32)
a87295e8 121 /* Extra fields for semihosted binaries. */
a87295e8
PB
122 uint32_t heap_base;
123 uint32_t heap_limit;
b346ff46 124#endif
d0fd11ff 125 uint32_t stack_base;
851e67a1 126 int used; /* non zero if used */
978efd6a 127 struct image_info *info;
edf8e2af 128 struct linux_binprm *bprm;
624f7979
PB
129
130 struct emulated_sigtable sigtab[TARGET_NSIG];
131 struct sigqueue sigqueue_table[MAX_SIGQUEUE_SIZE]; /* siginfo queue */
132 struct sigqueue *first_free; /* first free siginfo queue entry */
133 int signal_pending; /* non zero if a signal may be pending */
851e67a1
FB
134} __attribute__((aligned(16))) TaskState;
135
d088d664 136extern char *exec_path;
624f7979 137void init_task_state(TaskState *ts);
edf8e2af
MW
138void task_settid(TaskState *);
139void stop_all_tasks(void);
c5937220 140extern const char *qemu_uname_release;
379f6698 141extern unsigned long mmap_min_addr;
851e67a1 142
e5fe0c52
PB
143/* ??? See if we can avoid exposing so much of the loader internals. */
144/*
145 * MAX_ARG_PAGES defines the number of pages allocated for arguments
146 * and envelope for the new program. 32 should suffice, this gives
147 * a maximum env+arg of 128kB w/4KB pages!
148 */
fd4d81dd 149#define MAX_ARG_PAGES 33
e5fe0c52 150
9955ffac
RH
151/* Read a good amount of data initially, to hopefully get all the
152 program headers loaded. */
153#define BPRM_BUF_SIZE 1024
154
e5fe0c52 155/*
5fafdf24 156 * This structure is used to hold the arguments that are
e5fe0c52
PB
157 * used when loading binaries.
158 */
159struct linux_binprm {
9955ffac 160 char buf[BPRM_BUF_SIZE] __attribute__((aligned));
e5fe0c52 161 void *page[MAX_ARG_PAGES];
992f48a0 162 abi_ulong p;
e5fe0c52
PB
163 int fd;
164 int e_uid, e_gid;
165 int argc, envc;
166 char **argv;
167 char **envp;
168 char * filename; /* Name of binary */
9349b4f9 169 int (*core_dump)(int, const CPUArchState *); /* coredump routine */
e5fe0c52
PB
170};
171
172void do_init_thread(struct target_pt_regs *regs, struct image_info *infop);
992f48a0
BS
173abi_ulong loader_build_argptr(int envc, int argc, abi_ulong sp,
174 abi_ulong stringp, int push_ptr);
5fafdf24 175int loader_exec(const char * filename, char ** argv, char ** envp,
edf8e2af
MW
176 struct target_pt_regs * regs, struct image_info *infop,
177 struct linux_binprm *);
31e31b8a 178
e5fe0c52
PB
179int load_elf_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
180 struct image_info * info);
181int load_flt_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
182 struct image_info * info);
183
579a97f7
FB
184abi_long memcpy_to_target(abi_ulong dest, const void *src,
185 unsigned long len);
992f48a0
BS
186void target_set_brk(abi_ulong new_brk);
187abi_long do_brk(abi_ulong new_brk);
31e31b8a 188void syscall_init(void);
992f48a0
BS
189abi_long do_syscall(void *cpu_env, int num, abi_long arg1,
190 abi_long arg2, abi_long arg3, abi_long arg4,
5945cfcb
PM
191 abi_long arg5, abi_long arg6, abi_long arg7,
192 abi_long arg8);
e5924d89 193void gemu_log(const char *fmt, ...) GCC_FMT_ATTR(1, 2);
a2247f8e 194extern THREAD CPUState *thread_cpu;
9349b4f9 195void cpu_loop(CPUArchState *env);
b92c47c1 196char *target_strerror(int err);
a745ec6d 197int get_osversion(void);
d5975363
PB
198void fork_start(void);
199void fork_end(int child);
6977fbfd 200
dce10401
MI
201/* Creates the initial guest address space in the host memory space using
202 * the given host start address hint and size. The guest_start parameter
203 * specifies the start address of the guest space. guest_base will be the
204 * difference between the host start address computed by this function and
205 * guest_start. If fixed is specified, then the mapped address space must
206 * start at host_start. The real start address of the mapped memory space is
207 * returned or -1 if there was an error.
208 */
209unsigned long init_guest_space(unsigned long host_start,
210 unsigned long host_size,
211 unsigned long guest_start,
212 bool fixed);
213
1de7afc9 214#include "qemu/log.h"
631271d7 215
a05c6409
RH
216/* syscall.c */
217int host_to_target_waitstatus(int status);
218
b92c47c1
TS
219/* strace.c */
220void print_syscall(int num,
c16f9ed3
FB
221 abi_long arg1, abi_long arg2, abi_long arg3,
222 abi_long arg4, abi_long arg5, abi_long arg6);
223void print_syscall_ret(int num, abi_long arg1);
b92c47c1
TS
224extern int do_strace;
225
b346ff46 226/* signal.c */
9349b4f9 227void process_pending_signals(CPUArchState *cpu_env);
b346ff46 228void signal_init(void);
9349b4f9 229int queue_signal(CPUArchState *env, int sig, target_siginfo_t *info);
c227f099
AL
230void host_to_target_siginfo(target_siginfo_t *tinfo, const siginfo_t *info);
231void target_to_host_siginfo(siginfo_t *info, const target_siginfo_t *tinfo);
4cb05961 232int target_to_host_signal(int sig);
1d9d8b55 233int host_to_target_signal(int sig);
9349b4f9
AF
234long do_sigreturn(CPUArchState *env);
235long do_rt_sigreturn(CPUArchState *env);
579a97f7 236abi_long do_sigaltstack(abi_ulong uss_addr, abi_ulong uoss_addr, abi_ulong sp);
b346ff46
FB
237
238#ifdef TARGET_I386
631271d7
FB
239/* vm86.c */
240void save_v86_state(CPUX86State *env);
447db213 241void handle_vm86_trap(CPUX86State *env, int trapno);
631271d7 242void handle_vm86_fault(CPUX86State *env);
992f48a0 243int do_vm86(CPUX86State *env, long subfunction, abi_ulong v86_addr);
5bfb56b2
BS
244#elif defined(TARGET_SPARC64)
245void sparc64_set_context(CPUSPARCState *env);
246void sparc64_get_context(CPUSPARCState *env);
b346ff46 247#endif
631271d7 248
54936004 249/* mmap.c */
992f48a0
BS
250int target_mprotect(abi_ulong start, abi_ulong len, int prot);
251abi_long target_mmap(abi_ulong start, abi_ulong len, int prot,
252 int flags, int fd, abi_ulong offset);
253int target_munmap(abi_ulong start, abi_ulong len);
254abi_long target_mremap(abi_ulong old_addr, abi_ulong old_size,
255 abi_ulong new_size, unsigned long flags,
256 abi_ulong new_addr);
257int target_msync(abi_ulong start, abi_ulong len, int flags);
0776590d 258extern unsigned long last_brk;
59e9d91c 259extern abi_ulong mmap_next_start;
c8a706fe
PB
260void mmap_lock(void);
261void mmap_unlock(void);
9ad197d9 262abi_ulong mmap_find_vma(abi_ulong, abi_ulong);
c2764719
PB
263void cpu_list_lock(void);
264void cpu_list_unlock(void);
d5975363
PB
265void mmap_fork_start(void);
266void mmap_fork_end(int child);
54936004 267
440c7e85 268/* main.c */
703e0e89 269extern unsigned long guest_stack_size;
440c7e85 270
edf779ff
FB
271/* user access */
272
273#define VERIFY_READ 0
579a97f7 274#define VERIFY_WRITE 1 /* implies read access */
edf779ff 275
dae3270c
FB
276static inline int access_ok(int type, abi_ulong addr, abi_ulong size)
277{
278 return page_check_range((target_ulong)addr, size,
279 (type == VERIFY_READ) ? PAGE_READ : (PAGE_READ | PAGE_WRITE)) == 0;
280}
edf779ff 281
658f2dc9
RH
282/* NOTE __get_user and __put_user use host pointers and don't check access.
283 These are usually used to access struct data members once the struct has
284 been locked - usually with lock_user_struct. */
285
286/* Tricky points:
287 - Use __builtin_choose_expr to avoid type promotion from ?:,
288 - Invalid sizes result in a compile time error stemming from
289 the fact that abort has no parameters.
290 - It's easier to use the endian-specific unaligned load/store
291 functions than host-endian unaligned load/store plus tswapN. */
292
293#define __put_user_e(x, hptr, e) \
294 (__builtin_choose_expr(sizeof(*(hptr)) == 1, stb_p, \
295 __builtin_choose_expr(sizeof(*(hptr)) == 2, stw_##e##_p, \
296 __builtin_choose_expr(sizeof(*(hptr)) == 4, stl_##e##_p, \
297 __builtin_choose_expr(sizeof(*(hptr)) == 8, stq_##e##_p, abort)))) \
298 ((hptr), (x)), 0)
299
300#define __get_user_e(x, hptr, e) \
0bc8ce94 301 ((x) = (typeof(*hptr))( \
658f2dc9
RH
302 __builtin_choose_expr(sizeof(*(hptr)) == 1, ldub_p, \
303 __builtin_choose_expr(sizeof(*(hptr)) == 2, lduw_##e##_p, \
304 __builtin_choose_expr(sizeof(*(hptr)) == 4, ldl_##e##_p, \
305 __builtin_choose_expr(sizeof(*(hptr)) == 8, ldq_##e##_p, abort)))) \
0bc8ce94 306 (hptr)), 0)
658f2dc9
RH
307
308#ifdef TARGET_WORDS_BIGENDIAN
309# define __put_user(x, hptr) __put_user_e(x, hptr, be)
310# define __get_user(x, hptr) __get_user_e(x, hptr, be)
311#else
312# define __put_user(x, hptr) __put_user_e(x, hptr, le)
313# define __get_user(x, hptr) __get_user_e(x, hptr, le)
314#endif
edf779ff 315
579a97f7
FB
316/* put_user()/get_user() take a guest address and check access */
317/* These are usually used to access an atomic data type, such as an int,
318 * that has been passed by address. These internally perform locking
319 * and unlocking on the data type.
320 */
321#define put_user(x, gaddr, target_type) \
322({ \
323 abi_ulong __gaddr = (gaddr); \
324 target_type *__hptr; \
325 abi_long __ret; \
326 if ((__hptr = lock_user(VERIFY_WRITE, __gaddr, sizeof(target_type), 0))) { \
327 __ret = __put_user((x), __hptr); \
328 unlock_user(__hptr, __gaddr, sizeof(target_type)); \
329 } else \
330 __ret = -TARGET_EFAULT; \
331 __ret; \
edf779ff
FB
332})
333
579a97f7
FB
334#define get_user(x, gaddr, target_type) \
335({ \
336 abi_ulong __gaddr = (gaddr); \
337 target_type *__hptr; \
338 abi_long __ret; \
339 if ((__hptr = lock_user(VERIFY_READ, __gaddr, sizeof(target_type), 1))) { \
340 __ret = __get_user((x), __hptr); \
341 unlock_user(__hptr, __gaddr, 0); \
2f619698
FB
342 } else { \
343 /* avoid warning */ \
344 (x) = 0; \
579a97f7 345 __ret = -TARGET_EFAULT; \
2f619698 346 } \
579a97f7 347 __ret; \
edf779ff
FB
348})
349
2f619698
FB
350#define put_user_ual(x, gaddr) put_user((x), (gaddr), abi_ulong)
351#define put_user_sal(x, gaddr) put_user((x), (gaddr), abi_long)
352#define put_user_u64(x, gaddr) put_user((x), (gaddr), uint64_t)
353#define put_user_s64(x, gaddr) put_user((x), (gaddr), int64_t)
354#define put_user_u32(x, gaddr) put_user((x), (gaddr), uint32_t)
355#define put_user_s32(x, gaddr) put_user((x), (gaddr), int32_t)
356#define put_user_u16(x, gaddr) put_user((x), (gaddr), uint16_t)
357#define put_user_s16(x, gaddr) put_user((x), (gaddr), int16_t)
358#define put_user_u8(x, gaddr) put_user((x), (gaddr), uint8_t)
359#define put_user_s8(x, gaddr) put_user((x), (gaddr), int8_t)
360
361#define get_user_ual(x, gaddr) get_user((x), (gaddr), abi_ulong)
362#define get_user_sal(x, gaddr) get_user((x), (gaddr), abi_long)
363#define get_user_u64(x, gaddr) get_user((x), (gaddr), uint64_t)
364#define get_user_s64(x, gaddr) get_user((x), (gaddr), int64_t)
365#define get_user_u32(x, gaddr) get_user((x), (gaddr), uint32_t)
366#define get_user_s32(x, gaddr) get_user((x), (gaddr), int32_t)
367#define get_user_u16(x, gaddr) get_user((x), (gaddr), uint16_t)
368#define get_user_s16(x, gaddr) get_user((x), (gaddr), int16_t)
369#define get_user_u8(x, gaddr) get_user((x), (gaddr), uint8_t)
370#define get_user_s8(x, gaddr) get_user((x), (gaddr), int8_t)
371
579a97f7
FB
372/* copy_from_user() and copy_to_user() are usually used to copy data
373 * buffers between the target and host. These internally perform
374 * locking/unlocking of the memory.
375 */
376abi_long copy_from_user(void *hptr, abi_ulong gaddr, size_t len);
377abi_long copy_to_user(abi_ulong gaddr, void *hptr, size_t len);
378
53a5960a 379/* Functions for accessing guest memory. The tget and tput functions
1301f322 380 read/write single values, byteswapping as necessary. The lock_user
53a5960a
PB
381 gets a pointer to a contiguous area of guest memory, but does not perform
382 and byteswapping. lock_user may return either a pointer to the guest
383 memory, or a temporary buffer. */
384
385/* Lock an area of guest memory into the host. If copy is true then the
386 host area will have the same contents as the guest. */
579a97f7 387static inline void *lock_user(int type, abi_ulong guest_addr, long len, int copy)
edf779ff 388{
579a97f7
FB
389 if (!access_ok(type, guest_addr, len))
390 return NULL;
53a5960a 391#ifdef DEBUG_REMAP
579a97f7
FB
392 {
393 void *addr;
394 addr = malloc(len);
395 if (copy)
396 memcpy(addr, g2h(guest_addr), len);
397 else
398 memset(addr, 0, len);
399 return addr;
400 }
53a5960a
PB
401#else
402 return g2h(guest_addr);
403#endif
edf779ff
FB
404}
405
579a97f7 406/* Unlock an area of guest memory. The first LEN bytes must be
1235fc06 407 flushed back to guest memory. host_ptr = NULL is explicitly
579a97f7
FB
408 allowed and does nothing. */
409static inline void unlock_user(void *host_ptr, abi_ulong guest_addr,
992f48a0 410 long len)
edf779ff 411{
579a97f7 412
53a5960a 413#ifdef DEBUG_REMAP
579a97f7
FB
414 if (!host_ptr)
415 return;
416 if (host_ptr == g2h(guest_addr))
53a5960a
PB
417 return;
418 if (len > 0)
06177d36 419 memcpy(g2h(guest_addr), host_ptr, len);
579a97f7 420 free(host_ptr);
53a5960a 421#endif
edf779ff
FB
422}
423
579a97f7
FB
424/* Return the length of a string in target memory or -TARGET_EFAULT if
425 access error. */
426abi_long target_strlen(abi_ulong gaddr);
53a5960a
PB
427
428/* Like lock_user but for null terminated strings. */
992f48a0 429static inline void *lock_user_string(abi_ulong guest_addr)
53a5960a 430{
579a97f7
FB
431 abi_long len;
432 len = target_strlen(guest_addr);
433 if (len < 0)
434 return NULL;
435 return lock_user(VERIFY_READ, guest_addr, (long)(len + 1), 1);
edf779ff
FB
436}
437
53a5960a 438/* Helper macros for locking/ulocking a target struct. */
579a97f7
FB
439#define lock_user_struct(type, host_ptr, guest_addr, copy) \
440 (host_ptr = lock_user(type, guest_addr, sizeof(*host_ptr), copy))
441#define unlock_user_struct(host_ptr, guest_addr, copy) \
53a5960a
PB
442 unlock_user(host_ptr, guest_addr, (copy) ? sizeof(*host_ptr) : 0)
443
c8a706fe 444#include <pthread.h>
c8a706fe 445
dfeab06c
PM
446/* Include target-specific struct and function definitions;
447 * they may need access to the target-independent structures
448 * above, so include them last.
449 */
450#include "target_cpu.h"
451#include "target_signal.h"
452
e88de099 453#endif /* QEMU_H */