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util/qemu-thread-posix: use TSA_NO_TSA to suppress clang TSA warnings in FreeBSD
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CommitLineData
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1/*
2 * qemu bsd user mode definition
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, see <http://www.gnu.org/licenses/>.
16 */
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17#ifndef QEMU_H
18#define QEMU_H
19
84778508 20#include "cpu.h"
e5e44263 21#include "qemu/units.h"
f08b6170 22#include "exec/cpu_ldst.h"
ab77bd84 23#include "exec/exec-all.h"
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24
25#undef DEBUG_REMAP
84778508 26
022c62cb 27#include "exec/user/abitypes.h"
84778508 28
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29extern char **environ;
30
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31#include "exec/user/thunk.h"
32#include "target_arch.h"
84778508 33#include "syscall_defs.h"
0c6940d0 34#include "target_syscall.h"
82792244 35#include "target_os_vmparam.h"
790baacc 36#include "target_os_signal.h"
647afdf1 37#include "target.h"
022c62cb 38#include "exec/gdbstub.h"
84778508 39
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40/*
41 * This struct is used to hold certain information about the image. Basically,
42 * it replicates in user space what would be certain task_struct fields in the
43 * kernel
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44 */
45struct image_info {
0475f8fa 46 abi_ulong load_bias;
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47 abi_ulong load_addr;
48 abi_ulong start_code;
49 abi_ulong end_code;
50 abi_ulong start_data;
51 abi_ulong end_data;
52 abi_ulong start_brk;
53 abi_ulong brk;
54 abi_ulong start_mmap;
55 abi_ulong mmap;
56 abi_ulong rss;
57 abi_ulong start_stack;
58 abi_ulong entry;
59 abi_ulong code_offset;
60 abi_ulong data_offset;
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61 abi_ulong arg_start;
62 abi_ulong arg_end;
63 uint32_t elf_flags;
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64};
65
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66struct emulated_sigtable {
67 int pending; /* true if signal is pending */
b46d4ad7 68 target_siginfo_t info;
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69};
70
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71/*
72 * NOTE: we force a big alignment so that the stack stored after is aligned too
73 */
84778508 74typedef struct TaskState {
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75 pid_t ts_tid; /* tid (or pid) of this task */
76
84778508 77 struct TaskState *next;
031fe7af 78 struct bsd_binprm *bprm;
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79 struct image_info *info;
80
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81 struct emulated_sigtable sync_signal;
82 /*
83 * TODO: Since we block all signals while returning to the main CPU
84 * loop, this needn't be an array
85 */
84778508 86 struct emulated_sigtable sigtab[TARGET_NSIG];
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87 /*
88 * Nonzero if process_pending_signals() needs to do something (either
89 * handle a pending signal or unblock signals).
90 * This flag is written from a signal handler so should be accessed via
91 * the qatomic_read() and qatomic_set() functions. (It is not accessed
92 * from multiple threads.)
93 */
94 int signal_pending;
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95 /* True if we're leaving a sigsuspend and sigsuspend_mask is valid. */
96 bool in_sigsuspend;
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97 /*
98 * This thread's signal mask, as requested by the guest program.
99 * The actual signal mask of this thread may differ:
100 * + we don't let SIGSEGV and SIGBUS be blocked while running guest code
101 * + sometimes we block all signals to avoid races
102 */
103 sigset_t signal_mask;
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104 /*
105 * The signal mask imposed by a guest sigsuspend syscall, if we are
106 * currently in the middle of such a syscall
107 */
108 sigset_t sigsuspend_mask;
84778508 109
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110 /* This thread's sigaltstack, if it has one */
111 struct target_sigaltstack sigaltstack_used;
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112} __attribute__((aligned(16))) TaskState;
113
653ccec2 114void stop_all_tasks(void);
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115extern const char *qemu_uname_release;
116
84778508 117/*
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118 * TARGET_ARG_MAX defines the number of bytes allocated for arguments
119 * and envelope for the new program. 256k should suffice for a reasonable
120 * maxiumum env+arg in 32-bit environments, bump it up to 512k for !ILP32
121 * platforms.
84778508 122 */
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123#if TARGET_ABI_BITS > 32
124#define TARGET_ARG_MAX (512 * KiB)
125#else
126#define TARGET_ARG_MAX (256 * KiB)
127#endif
128#define MAX_ARG_PAGES (TARGET_ARG_MAX / TARGET_PAGE_SIZE)
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129
130/*
131 * This structure is used to hold the arguments that are
132 * used when loading binaries.
133 */
afcbcff8 134struct bsd_binprm {
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135 char buf[128];
136 void *page[MAX_ARG_PAGES];
137 abi_ulong p;
98b34d35 138 abi_ulong stringp;
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139 int fd;
140 int e_uid, e_gid;
141 int argc, envc;
142 char **argv;
143 char **envp;
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144 char *filename; /* (Given) Name of binary */
145 char *fullpath; /* Full path of binary */
0475f8fa 146 int (*core_dump)(int, CPUArchState *);
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147};
148
149void do_init_thread(struct target_pt_regs *regs, struct image_info *infop);
150abi_ulong loader_build_argptr(int envc, int argc, abi_ulong sp,
ffa03665 151 abi_ulong stringp);
036a013f 152int loader_exec(const char *filename, char **argv, char **envp,
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153 struct target_pt_regs *regs, struct image_info *infop,
154 struct bsd_binprm *bprm);
84778508 155
afcbcff8 156int load_elf_binary(struct bsd_binprm *bprm, struct target_pt_regs *regs,
036a013f 157 struct image_info *info);
afcbcff8 158int load_flt_binary(struct bsd_binprm *bprm, struct target_pt_regs *regs,
036a013f 159 struct image_info *info);
0475f8fa 160int is_target_elf_binary(int fd);
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161
162abi_long memcpy_to_target(abi_ulong dest, const void *src,
163 unsigned long len);
164void target_set_brk(abi_ulong new_brk);
165abi_long do_brk(abi_ulong new_brk);
166void syscall_init(void);
167abi_long do_freebsd_syscall(void *cpu_env, int num, abi_long arg1,
168 abi_long arg2, abi_long arg3, abi_long arg4,
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169 abi_long arg5, abi_long arg6, abi_long arg7,
170 abi_long arg8);
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171abi_long do_netbsd_syscall(void *cpu_env, int num, abi_long arg1,
172 abi_long arg2, abi_long arg3, abi_long arg4,
173 abi_long arg5, abi_long arg6);
174abi_long do_openbsd_syscall(void *cpu_env, int num, abi_long arg1,
175 abi_long arg2, abi_long arg3, abi_long arg4,
176 abi_long arg5, abi_long arg6);
9edc6313 177void gemu_log(const char *fmt, ...) G_GNUC_PRINTF(1, 2);
d42df502 178extern __thread CPUState *thread_cpu;
9349b4f9 179void cpu_loop(CPUArchState *env);
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180char *target_strerror(int err);
181int get_osversion(void);
182void fork_start(void);
183void fork_end(int child);
184
1de7afc9 185#include "qemu/log.h"
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186
187/* strace.c */
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188struct syscallname {
189 int nr;
190 const char *name;
191 const char *format;
192 void (*call)(const struct syscallname *,
193 abi_long, abi_long, abi_long,
194 abi_long, abi_long, abi_long);
195 void (*result)(const struct syscallname *, abi_long);
196};
197
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198void
199print_freebsd_syscall(int num,
200 abi_long arg1, abi_long arg2, abi_long arg3,
201 abi_long arg4, abi_long arg5, abi_long arg6);
202void print_freebsd_syscall_ret(int num, abi_long ret);
203void
204print_netbsd_syscall(int num,
205 abi_long arg1, abi_long arg2, abi_long arg3,
206 abi_long arg4, abi_long arg5, abi_long arg6);
207void print_netbsd_syscall_ret(int num, abi_long ret);
208void
209print_openbsd_syscall(int num,
210 abi_long arg1, abi_long arg2, abi_long arg3,
211 abi_long arg4, abi_long arg5, abi_long arg6);
212void print_openbsd_syscall_ret(int num, abi_long ret);
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213/**
214 * print_taken_signal:
215 * @target_signum: target signal being taken
216 * @tinfo: target_siginfo_t which will be passed to the guest for the signal
217 *
218 * Print strace output indicating that this signal is being taken by the guest,
219 * in a format similar to:
220 * --- SIGSEGV {si_signo=SIGSEGV, si_code=SI_KERNEL, si_addr=0} ---
221 */
222void print_taken_signal(int target_signum, const target_siginfo_t *tinfo);
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223extern int do_strace;
224
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225/* mmap.c */
226int target_mprotect(abi_ulong start, abi_ulong len, int prot);
227abi_long target_mmap(abi_ulong start, abi_ulong len, int prot,
be04f210 228 int flags, int fd, off_t offset);
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229int target_munmap(abi_ulong start, abi_ulong len);
230abi_long target_mremap(abi_ulong old_addr, abi_ulong old_size,
231 abi_ulong new_size, unsigned long flags,
232 abi_ulong new_addr);
233int target_msync(abi_ulong start, abi_ulong len, int flags);
234extern unsigned long last_brk;
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235extern abi_ulong mmap_next_start;
236abi_ulong mmap_find_vma(abi_ulong start, abi_ulong size);
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237void mmap_fork_start(void);
238void mmap_fork_end(int child);
84778508 239
28e738dc 240/* main.c */
01a298a5 241extern char qemu_proc_pathname[];
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242extern unsigned long target_maxtsiz;
243extern unsigned long target_dfldsiz;
244extern unsigned long target_maxdsiz;
245extern unsigned long target_dflssiz;
246extern unsigned long target_maxssiz;
247extern unsigned long target_sgrowsiz;
28e738dc 248
deeff83b 249/* os-syscall.c */
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250abi_long get_errno(abi_long ret);
251bool is_error(abi_long ret);
deeff83b 252int host_to_target_errno(int err);
e5f674f0 253
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254/* os-sys.c */
255abi_long do_freebsd_sysarch(void *cpu_env, abi_long arg1, abi_long arg2);
256
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257/* user access */
258
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259#define VERIFY_READ PAGE_READ
260#define VERIFY_WRITE (PAGE_READ | PAGE_WRITE)
84778508 261
1720751f 262static inline bool access_ok(int type, abi_ulong addr, abi_ulong size)
84778508 263{
1720751f 264 return page_check_range((target_ulong)addr, size, type) == 0;
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265}
266
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267/*
268 * NOTE __get_user and __put_user use host pointers and don't check access.
269 *
270 * These are usually used to access struct data members once the struct has been
271 * locked - usually with lock_user_struct().
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272 */
273#define __put_user(x, hptr)\
274({\
275 int size = sizeof(*hptr);\
cefbade1 276 switch (size) {\
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277 case 1:\
278 *(uint8_t *)(hptr) = (uint8_t)(typeof(*hptr))(x);\
279 break;\
280 case 2:\
281 *(uint16_t *)(hptr) = tswap16((typeof(*hptr))(x));\
282 break;\
283 case 4:\
284 *(uint32_t *)(hptr) = tswap32((typeof(*hptr))(x));\
285 break;\
286 case 8:\
287 *(uint64_t *)(hptr) = tswap64((typeof(*hptr))(x));\
288 break;\
289 default:\
290 abort();\
036a013f 291 } \
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292 0;\
293})
294
295#define __get_user(x, hptr) \
296({\
297 int size = sizeof(*hptr);\
cefbade1 298 switch (size) {\
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299 case 1:\
300 x = (typeof(*hptr))*(uint8_t *)(hptr);\
301 break;\
302 case 2:\
303 x = (typeof(*hptr))tswap16(*(uint16_t *)(hptr));\
304 break;\
305 case 4:\
306 x = (typeof(*hptr))tswap32(*(uint32_t *)(hptr));\
307 break;\
308 case 8:\
309 x = (typeof(*hptr))tswap64(*(uint64_t *)(hptr));\
310 break;\
311 default:\
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312 x = 0;\
313 abort();\
036a013f 314 } \
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315 0;\
316})
317
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318/*
319 * put_user()/get_user() take a guest address and check access
320 *
321 * These are usually used to access an atomic data type, such as an int, that
322 * has been passed by address. These internally perform locking and unlocking
323 * on the data type.
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324 */
325#define put_user(x, gaddr, target_type) \
326({ \
327 abi_ulong __gaddr = (gaddr); \
328 target_type *__hptr; \
329 abi_long __ret; \
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330 __hptr = lock_user(VERIFY_WRITE, __gaddr, sizeof(target_type), 0); \
331 if (__hptr) { \
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332 __ret = __put_user((x), __hptr); \
333 unlock_user(__hptr, __gaddr, sizeof(target_type)); \
334 } else \
335 __ret = -TARGET_EFAULT; \
336 __ret; \
337})
338
339#define get_user(x, gaddr, target_type) \
340({ \
341 abi_ulong __gaddr = (gaddr); \
342 target_type *__hptr; \
343 abi_long __ret; \
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344 __hptr = lock_user(VERIFY_READ, __gaddr, sizeof(target_type), 1); \
345 if (__hptr) { \
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346 __ret = __get_user((x), __hptr); \
347 unlock_user(__hptr, __gaddr, 0); \
348 } else { \
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349 (x) = 0; \
350 __ret = -TARGET_EFAULT; \
351 } \
352 __ret; \
353})
354
355#define put_user_ual(x, gaddr) put_user((x), (gaddr), abi_ulong)
356#define put_user_sal(x, gaddr) put_user((x), (gaddr), abi_long)
357#define put_user_u64(x, gaddr) put_user((x), (gaddr), uint64_t)
358#define put_user_s64(x, gaddr) put_user((x), (gaddr), int64_t)
359#define put_user_u32(x, gaddr) put_user((x), (gaddr), uint32_t)
360#define put_user_s32(x, gaddr) put_user((x), (gaddr), int32_t)
361#define put_user_u16(x, gaddr) put_user((x), (gaddr), uint16_t)
362#define put_user_s16(x, gaddr) put_user((x), (gaddr), int16_t)
363#define put_user_u8(x, gaddr) put_user((x), (gaddr), uint8_t)
364#define put_user_s8(x, gaddr) put_user((x), (gaddr), int8_t)
365
366#define get_user_ual(x, gaddr) get_user((x), (gaddr), abi_ulong)
367#define get_user_sal(x, gaddr) get_user((x), (gaddr), abi_long)
368#define get_user_u64(x, gaddr) get_user((x), (gaddr), uint64_t)
369#define get_user_s64(x, gaddr) get_user((x), (gaddr), int64_t)
370#define get_user_u32(x, gaddr) get_user((x), (gaddr), uint32_t)
371#define get_user_s32(x, gaddr) get_user((x), (gaddr), int32_t)
372#define get_user_u16(x, gaddr) get_user((x), (gaddr), uint16_t)
373#define get_user_s16(x, gaddr) get_user((x), (gaddr), int16_t)
374#define get_user_u8(x, gaddr) get_user((x), (gaddr), uint8_t)
375#define get_user_s8(x, gaddr) get_user((x), (gaddr), int8_t)
376
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377/*
378 * copy_from_user() and copy_to_user() are usually used to copy data
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379 * buffers between the target and host. These internally perform
380 * locking/unlocking of the memory.
381 */
382abi_long copy_from_user(void *hptr, abi_ulong gaddr, size_t len);
383abi_long copy_to_user(abi_ulong gaddr, void *hptr, size_t len);
384
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385/*
386 * Functions for accessing guest memory. The tget and tput functions
387 * read/write single values, byteswapping as necessary. The lock_user function
388 * gets a pointer to a contiguous area of guest memory, but does not perform
389 * any byteswapping. lock_user may return either a pointer to the guest
390 * memory, or a temporary buffer.
391 */
84778508 392
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393/*
394 * Lock an area of guest memory into the host. If copy is true then the
395 * host area will have the same contents as the guest.
396 */
397static inline void *lock_user(int type, abi_ulong guest_addr, long len,
398 int copy)
84778508 399{
cb0ea019 400 if (!access_ok(type, guest_addr, len)) {
84778508 401 return NULL;
cb0ea019 402 }
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BS
403#ifdef DEBUG_REMAP
404 {
405 void *addr;
fd9a3048 406 addr = g_malloc(len);
cb0ea019 407 if (copy) {
3e8f1628 408 memcpy(addr, g2h_untagged(guest_addr), len);
cb0ea019 409 } else {
84778508 410 memset(addr, 0, len);
cb0ea019 411 }
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412 return addr;
413 }
414#else
3e8f1628 415 return g2h_untagged(guest_addr);
84778508
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416#endif
417}
418
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419/*
420 * Unlock an area of guest memory. The first LEN bytes must be flushed back to
421 * guest memory. host_ptr = NULL is explicitly allowed and does nothing.
422 */
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423static inline void unlock_user(void *host_ptr, abi_ulong guest_addr,
424 long len)
425{
426
427#ifdef DEBUG_REMAP
cb0ea019 428 if (!host_ptr) {
84778508 429 return;
cb0ea019
WL
430 }
431 if (host_ptr == g2h_untagged(guest_addr)) {
84778508 432 return;
cb0ea019
WL
433 }
434 if (len > 0) {
3e8f1628 435 memcpy(g2h_untagged(guest_addr), host_ptr, len);
cb0ea019 436 }
fd9a3048 437 g_free(host_ptr);
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438#endif
439}
440
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441/*
442 * Return the length of a string in target memory or -TARGET_EFAULT if access
443 * error.
444 */
84778508
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445abi_long target_strlen(abi_ulong gaddr);
446
447/* Like lock_user but for null terminated strings. */
448static inline void *lock_user_string(abi_ulong guest_addr)
449{
450 abi_long len;
451 len = target_strlen(guest_addr);
cb0ea019 452 if (len < 0) {
84778508 453 return NULL;
cb0ea019 454 }
84778508
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455 return lock_user(VERIFY_READ, guest_addr, (long)(len + 1), 1);
456}
457
41d1af4d 458/* Helper macros for locking/unlocking a target struct. */
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459#define lock_user_struct(type, host_ptr, guest_addr, copy) \
460 (host_ptr = lock_user(type, guest_addr, sizeof(*host_ptr), copy))
461#define unlock_user_struct(host_ptr, guest_addr, copy) \
462 unlock_user(host_ptr, guest_addr, (copy) ? sizeof(*host_ptr) : 0)
463
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464static inline uint64_t target_arg64(uint32_t word0, uint32_t word1)
465{
466#if TARGET_ABI_BITS == 32
ee3eb3a7 467#if TARGET_BIG_ENDIAN
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WL
468 return ((uint64_t)word0 << 32) | word1;
469#else
470 return ((uint64_t)word1 << 32) | word0;
471#endif
472#else /* TARGET_ABI_BITS != 32 */
473 return word0;
474#endif /* TARGET_ABI_BITS != 32 */
475}
476
84778508 477#include <pthread.h>
84778508 478
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WL
479#include "user/safe-syscall.h"
480
84778508 481#endif /* QEMU_H */