]> git.proxmox.com Git - mirror_qemu.git/blame - util/coroutine-ucontext.c
block/export: Conditionally ignore set-context error
[mirror_qemu.git] / util / coroutine-ucontext.c
CommitLineData
00dccaf1
KW
1/*
2 * ucontext coroutine initialization code
3 *
4 * Copyright (C) 2006 Anthony Liguori <anthony@codemonkey.ws>
5 * Copyright (C) 2011 Kevin Wolf <kwolf@redhat.com>
6 *
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.0 of the License, or (at your option) any later version.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
19 */
20
21/* XXX Is there a nicer way to disable glibc's stack check for longjmp? */
22#ifdef _FORTIFY_SOURCE
23#undef _FORTIFY_SOURCE
24#endif
aafd7584 25#include "qemu/osdep.h"
00dccaf1 26#include <ucontext.h>
10817bf0 27#include "qemu/coroutine_int.h"
00dccaf1 28
3f4349dc
KW
29#ifdef CONFIG_VALGRIND_H
30#include <valgrind/valgrind.h>
31#endif
32
d83414e1
MAL
33#if defined(__SANITIZE_ADDRESS__) || __has_feature(address_sanitizer)
34#ifdef CONFIG_ASAN_IFACE_FIBER
35#define CONFIG_ASAN 1
36#include <sanitizer/asan_interface.h>
37#endif
38#endif
39
0aebab04
LY
40#ifdef CONFIG_TSAN
41#include <sanitizer/tsan_interface.h>
42#endif
43
00dccaf1
KW
44typedef struct {
45 Coroutine base;
46 void *stack;
ddba1591 47 size_t stack_size;
58ebc2c3
DB
48#ifdef CONFIG_SAFESTACK
49 /* Need an unsafe stack for each coroutine */
50 void *unsafe_stack;
51 size_t unsafe_stack_size;
52#endif
6ab7e546 53 sigjmp_buf env;
3f4349dc 54
995f5c3c 55#ifdef CONFIG_TSAN
0aebab04
LY
56 void *tsan_co_fiber;
57 void *tsan_caller_fiber;
995f5c3c 58#endif
0aebab04 59
3f4349dc
KW
60#ifdef CONFIG_VALGRIND_H
61 unsigned int valgrind_stack_id;
62#endif
63
00dccaf1
KW
64} CoroutineUContext;
65
66/**
67 * Per-thread coroutine bookkeeping
68 */
d1d1b206
PB
69static __thread CoroutineUContext leader;
70static __thread Coroutine *current;
00dccaf1
KW
71
72/*
73 * va_args to makecontext() must be type 'int', so passing
74 * the pointer we need may require several int args. This
75 * union is a quick hack to let us do that
76 */
77union cc_arg {
78 void *p;
79 int i[2];
80};
81
995f5c3c
RF
82/*
83 * QEMU_ALWAYS_INLINE only does so if __OPTIMIZE__, so we cannot use it.
84 * always_inline is required to avoid TSan runtime fatal errors.
85 */
0aebab04
LY
86static inline __attribute__((always_inline))
87void on_new_fiber(CoroutineUContext *co)
88{
89#ifdef CONFIG_TSAN
90 co->tsan_co_fiber = __tsan_create_fiber(0); /* flags: sync on switch */
91 co->tsan_caller_fiber = __tsan_get_current_fiber();
92#endif
93}
94
995f5c3c 95/* always_inline is required to avoid TSan runtime fatal errors. */
0aebab04
LY
96static inline __attribute__((always_inline))
97void finish_switch_fiber(void *fake_stack_save)
d83414e1
MAL
98{
99#ifdef CONFIG_ASAN
100 const void *bottom_old;
101 size_t size_old;
102
103 __sanitizer_finish_switch_fiber(fake_stack_save, &bottom_old, &size_old);
104
105 if (!leader.stack) {
106 leader.stack = (void *)bottom_old;
107 leader.stack_size = size_old;
108 }
109#endif
0aebab04
LY
110#ifdef CONFIG_TSAN
111 if (fake_stack_save) {
112 __tsan_release(fake_stack_save);
113 __tsan_switch_to_fiber(fake_stack_save, 0); /* 0=synchronize */
114 }
115#endif
d83414e1
MAL
116}
117
995f5c3c
RF
118/* always_inline is required to avoid TSan runtime fatal errors. */
119static inline __attribute__((always_inline))
120void start_switch_fiber_asan(CoroutineAction action, void **fake_stack_save,
121 const void *bottom, size_t size)
d83414e1
MAL
122{
123#ifdef CONFIG_ASAN
0aebab04
LY
124 __sanitizer_start_switch_fiber(
125 action == COROUTINE_TERMINATE ? NULL : fake_stack_save,
126 bottom, size);
127#endif
995f5c3c
RF
128}
129
130/* always_inline is required to avoid TSan runtime fatal errors. */
131static inline __attribute__((always_inline))
132void start_switch_fiber_tsan(void **fake_stack_save,
133 CoroutineUContext *co,
134 bool caller)
135{
0aebab04 136#ifdef CONFIG_TSAN
995f5c3c
RF
137 void *new_fiber = caller ?
138 co->tsan_caller_fiber :
139 co->tsan_co_fiber;
140 void *curr_fiber = __tsan_get_current_fiber();
0aebab04
LY
141 __tsan_acquire(curr_fiber);
142
143 *fake_stack_save = curr_fiber;
144 __tsan_switch_to_fiber(new_fiber, 0); /* 0=synchronize */
d83414e1
MAL
145#endif
146}
147
00dccaf1
KW
148static void coroutine_trampoline(int i0, int i1)
149{
150 union cc_arg arg;
151 CoroutineUContext *self;
152 Coroutine *co;
d83414e1
MAL
153 void *fake_stack_save = NULL;
154
155 finish_switch_fiber(NULL);
00dccaf1
KW
156
157 arg.i[0] = i0;
158 arg.i[1] = i1;
159 self = arg.p;
160 co = &self->base;
161
162 /* Initialize longjmp environment and switch back the caller */
6ab7e546 163 if (!sigsetjmp(self->env, 0)) {
995f5c3c
RF
164 start_switch_fiber_asan(COROUTINE_YIELD, &fake_stack_save, leader.stack,
165 leader.stack_size);
166 start_switch_fiber_tsan(&fake_stack_save, self, true); /* true=caller */
6ab7e546 167 siglongjmp(*(sigjmp_buf *)co->entry_arg, 1);
00dccaf1
KW
168 }
169
d83414e1
MAL
170 finish_switch_fiber(fake_stack_save);
171
00dccaf1
KW
172 while (true) {
173 co->entry(co->entry_arg);
174 qemu_coroutine_switch(co, co->caller, COROUTINE_TERMINATE);
175 }
176}
177
40239784 178Coroutine *qemu_coroutine_new(void)
00dccaf1 179{
00dccaf1
KW
180 CoroutineUContext *co;
181 ucontext_t old_uc, uc;
6ab7e546 182 sigjmp_buf old_env;
32b74677 183 union cc_arg arg = {0};
d83414e1 184 void *fake_stack_save = NULL;
00dccaf1 185
6ab7e546
PM
186 /* The ucontext functions preserve signal masks which incurs a
187 * system call overhead. sigsetjmp(buf, 0)/siglongjmp() does not
188 * preserve signal masks but only works on the current stack.
189 * Since we need a way to create and switch to a new stack, use
190 * the ucontext functions for that but sigsetjmp()/siglongjmp() for
191 * everything else.
00dccaf1
KW
192 */
193
194 if (getcontext(&uc) == -1) {
195 abort();
196 }
197
7267c094 198 co = g_malloc0(sizeof(*co));
ddba1591
PL
199 co->stack_size = COROUTINE_STACK_SIZE;
200 co->stack = qemu_alloc_stack(&co->stack_size);
58ebc2c3
DB
201#ifdef CONFIG_SAFESTACK
202 co->unsafe_stack_size = COROUTINE_STACK_SIZE;
203 co->unsafe_stack = qemu_alloc_stack(&co->unsafe_stack_size);
204#endif
00dccaf1
KW
205 co->base.entry_arg = &old_env; /* stash away our jmp_buf */
206
207 uc.uc_link = &old_uc;
208 uc.uc_stack.ss_sp = co->stack;
ddba1591 209 uc.uc_stack.ss_size = co->stack_size;
00dccaf1
KW
210 uc.uc_stack.ss_flags = 0;
211
3f4349dc
KW
212#ifdef CONFIG_VALGRIND_H
213 co->valgrind_stack_id =
ddba1591 214 VALGRIND_STACK_REGISTER(co->stack, co->stack + co->stack_size);
3f4349dc
KW
215#endif
216
00dccaf1
KW
217 arg.p = co;
218
0aebab04 219 on_new_fiber(co);
00dccaf1
KW
220 makecontext(&uc, (void (*)(void))coroutine_trampoline,
221 2, arg.i[0], arg.i[1]);
222
6ab7e546
PM
223 /* swapcontext() in, siglongjmp() back out */
224 if (!sigsetjmp(old_env, 0)) {
995f5c3c
RF
225 start_switch_fiber_asan(COROUTINE_YIELD, &fake_stack_save, co->stack,
226 co->stack_size);
227 start_switch_fiber_tsan(&fake_stack_save,
228 co, false); /* false=not caller */
58ebc2c3
DB
229
230#ifdef CONFIG_SAFESTACK
231 /*
232 * Before we swap the context, set the new unsafe stack
233 * The unsafe stack grows just like the normal stack, so start from
234 * the last usable location of the memory area.
235 * NOTE: we don't have to re-set the usp afterwards because we are
236 * coming back to this context through a siglongjmp.
237 * The compiler already wrapped the corresponding sigsetjmp call with
238 * code that saves the usp on the (safe) stack before the call, and
239 * restores it right after (which is where we return with siglongjmp).
240 */
241 void *usp = co->unsafe_stack + co->unsafe_stack_size;
242 __safestack_unsafe_stack_ptr = usp;
243#endif
244
00dccaf1
KW
245 swapcontext(&old_uc, &uc);
246 }
d83414e1
MAL
247
248 finish_switch_fiber(fake_stack_save);
249
00dccaf1
KW
250 return &co->base;
251}
252
3f4349dc
KW
253#ifdef CONFIG_VALGRIND_H
254/* Work around an unused variable in the valgrind.h macro... */
7aa12aa2 255#if !defined(__clang__)
e6f53fd5 256#pragma GCC diagnostic push
3f4349dc 257#pragma GCC diagnostic ignored "-Wunused-but-set-variable"
06d71fa1 258#endif
3f4349dc
KW
259static inline void valgrind_stack_deregister(CoroutineUContext *co)
260{
261 VALGRIND_STACK_DEREGISTER(co->valgrind_stack_id);
262}
7aa12aa2 263#if !defined(__clang__)
e6f53fd5 264#pragma GCC diagnostic pop
3f4349dc 265#endif
06d71fa1 266#endif
3f4349dc 267
00dccaf1
KW
268void qemu_coroutine_delete(Coroutine *co_)
269{
00dccaf1
KW
270 CoroutineUContext *co = DO_UPCAST(CoroutineUContext, base, co_);
271
3f4349dc
KW
272#ifdef CONFIG_VALGRIND_H
273 valgrind_stack_deregister(co);
274#endif
275
ddba1591 276 qemu_free_stack(co->stack, co->stack_size);
58ebc2c3
DB
277#ifdef CONFIG_SAFESTACK
278 qemu_free_stack(co->unsafe_stack, co->unsafe_stack_size);
279#endif
7267c094 280 g_free(co);
00dccaf1
KW
281}
282
d1d1b206
PB
283/* This function is marked noinline to prevent GCC from inlining it
284 * into coroutine_trampoline(). If we allow it to do that then it
285 * hoists the code to get the address of the TLS variable "current"
286 * out of the while() loop. This is an invalid transformation because
287 * the sigsetjmp() call may be called when running thread A but
288 * return in thread B, and so we might be in a different thread
289 * context each time round the loop.
290 */
291CoroutineAction __attribute__((noinline))
292qemu_coroutine_switch(Coroutine *from_, Coroutine *to_,
293 CoroutineAction action)
00dccaf1
KW
294{
295 CoroutineUContext *from = DO_UPCAST(CoroutineUContext, base, from_);
296 CoroutineUContext *to = DO_UPCAST(CoroutineUContext, base, to_);
00dccaf1 297 int ret;
d83414e1 298 void *fake_stack_save = NULL;
00dccaf1 299
d1d1b206 300 current = to_;
00dccaf1 301
6ab7e546 302 ret = sigsetjmp(from->env, 0);
00dccaf1 303 if (ret == 0) {
995f5c3c
RF
304 start_switch_fiber_asan(action, &fake_stack_save, to->stack,
305 to->stack_size);
306 start_switch_fiber_tsan(&fake_stack_save,
307 to, false); /* false=not caller */
6ab7e546 308 siglongjmp(to->env, action);
00dccaf1 309 }
d83414e1
MAL
310
311 finish_switch_fiber(fake_stack_save);
312
00dccaf1
KW
313 return ret;
314}
315
316Coroutine *qemu_coroutine_self(void)
317{
d1d1b206
PB
318 if (!current) {
319 current = &leader.base;
320 }
0aebab04
LY
321#ifdef CONFIG_TSAN
322 if (!leader.tsan_co_fiber) {
323 leader.tsan_co_fiber = __tsan_get_current_fiber();
324 }
325#endif
d1d1b206 326 return current;
00dccaf1
KW
327}
328
329bool qemu_in_coroutine(void)
330{
d1d1b206 331 return current && current->caller;
00dccaf1 332}