1 | /* Low-level locking access to futex facilities. Stub version. |
2 | Copyright (C) 2014-2020 Free Software Foundation, Inc. |
3 | This file is part of the GNU C Library. |
4 | |
5 | The GNU C Library is free software; you can redistribute it and/or |
6 | modify it under the terms of the GNU Lesser General Public |
7 | License as published by the Free Software Foundation; either |
8 | version 2.1 of the License, or (at your option) any later version. |
9 | |
10 | The GNU C Library is distributed in the hope that it will be useful, |
11 | but WITHOUT ANY WARRANTY; without even the implied warranty of |
12 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
13 | Lesser General Public License for more details. |
14 | |
15 | You should have received a copy of the GNU Lesser General Public |
16 | License along with the GNU C Library. If not, see |
17 | <https://www.gnu.org/licenses/>. */ |
18 | |
19 | #ifndef _LOWLEVELLOCK_FUTEX_H |
20 | #define _LOWLEVELLOCK_FUTEX_H 1 |
21 | |
22 | #ifndef __ASSEMBLER__ |
23 | # include <sysdep.h> |
24 | # include <sysdep-cancel.h> |
25 | # include <kernel-features.h> |
26 | #endif |
27 | |
28 | #define FUTEX_WAIT 0 |
29 | #define FUTEX_WAKE 1 |
30 | #define FUTEX_REQUEUE 3 |
31 | #define FUTEX_CMP_REQUEUE 4 |
32 | #define FUTEX_WAKE_OP 5 |
33 | #define FUTEX_OP_CLEAR_WAKE_IF_GT_ONE ((4 << 24) | 1) |
34 | #define FUTEX_LOCK_PI 6 |
35 | #define FUTEX_UNLOCK_PI 7 |
36 | #define FUTEX_TRYLOCK_PI 8 |
37 | #define FUTEX_WAIT_BITSET 9 |
38 | #define FUTEX_WAKE_BITSET 10 |
39 | #define FUTEX_WAIT_REQUEUE_PI 11 |
40 | #define FUTEX_CMP_REQUEUE_PI 12 |
41 | #define FUTEX_PRIVATE_FLAG 128 |
42 | #define FUTEX_CLOCK_REALTIME 256 |
43 | |
44 | #define FUTEX_BITSET_MATCH_ANY 0xffffffff |
45 | |
46 | /* Values for 'private' parameter of locking macros. Yes, the |
47 | definition seems to be backwards. But it is not. The bit will be |
48 | reversed before passing to the system call. */ |
49 | #define LLL_PRIVATE 0 |
50 | #define LLL_SHARED FUTEX_PRIVATE_FLAG |
51 | |
52 | #ifndef __ASSEMBLER__ |
53 | |
54 | # if IS_IN (libc) || IS_IN (rtld) |
55 | /* In libc.so or ld.so all futexes are private. */ |
56 | # define __lll_private_flag(fl, private) \ |
57 | ({ \ |
58 | /* Prevent warnings in callers of this macro. */ \ |
59 | int __lll_private_flag_priv __attribute__ ((unused)); \ |
60 | __lll_private_flag_priv = (private); \ |
61 | ((fl) | FUTEX_PRIVATE_FLAG); \ |
62 | }) |
63 | # else |
64 | # define __lll_private_flag(fl, private) \ |
65 | (((fl) | FUTEX_PRIVATE_FLAG) ^ (private)) |
66 | # endif |
67 | |
68 | # define lll_futex_syscall(nargs, futexp, op, ...) \ |
69 | ({ \ |
70 | long int __ret = INTERNAL_SYSCALL (futex, nargs, futexp, op, \ |
71 | __VA_ARGS__); \ |
72 | (__glibc_unlikely (INTERNAL_SYSCALL_ERROR_P (__ret)) \ |
73 | ? -INTERNAL_SYSCALL_ERRNO (__ret) : 0); \ |
74 | }) |
75 | |
76 | /* For most of these macros, the return value is never really used. |
77 | Nevertheless, the protocol is that each one returns a negated errno |
78 | code for failure or zero for success. (Note that the corresponding |
79 | Linux system calls can sometimes return positive values for success |
80 | cases too. We never use those values.) */ |
81 | |
82 | |
83 | /* Wait while *FUTEXP == VAL for an lll_futex_wake call on FUTEXP. */ |
84 | # define lll_futex_wait(futexp, val, private) \ |
85 | lll_futex_timed_wait (futexp, val, NULL, private) |
86 | |
87 | # define lll_futex_timed_wait(futexp, val, timeout, private) \ |
88 | lll_futex_syscall (4, futexp, \ |
89 | __lll_private_flag (FUTEX_WAIT, private), \ |
90 | val, timeout) |
91 | |
92 | /* Verify whether the supplied clockid is supported by |
93 | lll_futex_clock_wait_bitset. */ |
94 | # define lll_futex_supported_clockid(clockid) \ |
95 | ((clockid) == CLOCK_REALTIME || (clockid) == CLOCK_MONOTONIC) |
96 | |
97 | /* The kernel currently only supports CLOCK_MONOTONIC or |
98 | CLOCK_REALTIME timeouts for FUTEX_WAIT_BITSET. We could attempt to |
99 | convert others here but currently do not. */ |
100 | # define lll_futex_clock_wait_bitset(futexp, val, clockid, timeout, private) \ |
101 | ({ \ |
102 | long int __ret; \ |
103 | if (lll_futex_supported_clockid (clockid)) \ |
104 | { \ |
105 | const unsigned int clockbit = \ |
106 | (clockid == CLOCK_REALTIME) ? FUTEX_CLOCK_REALTIME : 0; \ |
107 | const int op = \ |
108 | __lll_private_flag (FUTEX_WAIT_BITSET | clockbit, private); \ |
109 | \ |
110 | __ret = lll_futex_syscall (6, futexp, op, val, \ |
111 | timeout, NULL /* Unused. */, \ |
112 | FUTEX_BITSET_MATCH_ANY); \ |
113 | } \ |
114 | else \ |
115 | __ret = -EINVAL; \ |
116 | __ret; \ |
117 | }) |
118 | |
119 | /* Wake up up to NR waiters on FUTEXP. */ |
120 | # define lll_futex_wake(futexp, nr, private) \ |
121 | lll_futex_syscall (4, futexp, \ |
122 | __lll_private_flag (FUTEX_WAKE, private), nr, 0) |
123 | |
124 | /* Wake up up to NR_WAKE waiters on FUTEXP. Move up to NR_MOVE of the |
125 | rest from waiting on FUTEXP to waiting on MUTEX (a different futex). |
126 | Returns non-zero if error happened, zero if success. */ |
127 | # define lll_futex_requeue(futexp, nr_wake, nr_move, mutex, val, private) \ |
128 | lll_futex_syscall (6, futexp, \ |
129 | __lll_private_flag (FUTEX_CMP_REQUEUE, private), \ |
130 | nr_wake, nr_move, mutex, val) |
131 | |
132 | /* Wake up up to NR_WAKE waiters on FUTEXP and NR_WAKE2 on FUTEXP2. |
133 | Returns non-zero if error happened, zero if success. */ |
134 | # define lll_futex_wake_unlock(futexp, nr_wake, nr_wake2, futexp2, private) \ |
135 | lll_futex_syscall (6, futexp, \ |
136 | __lll_private_flag (FUTEX_WAKE_OP, private), \ |
137 | nr_wake, nr_wake2, futexp2, \ |
138 | FUTEX_OP_CLEAR_WAKE_IF_GT_ONE) |
139 | |
140 | |
141 | /* Priority Inheritance support. */ |
142 | #define lll_futex_timed_lock_pi(futexp, abstime, private) \ |
143 | lll_futex_syscall (4, futexp, \ |
144 | __lll_private_flag (FUTEX_LOCK_PI, private), \ |
145 | 0, abstime) |
146 | |
147 | #define lll_futex_timed_unlock_pi(futexp, private) \ |
148 | lll_futex_syscall (4, futexp, \ |
149 | __lll_private_flag (FUTEX_UNLOCK_PI, private), \ |
150 | 0, 0) |
151 | |
152 | /* Like lll_futex_wait (FUTEXP, VAL, PRIVATE) but with the expectation |
153 | that lll_futex_cmp_requeue_pi (FUTEXP, _, _, MUTEX, _, PRIVATE) will |
154 | be used to do the wakeup. Confers priority-inheritance behavior on |
155 | the waiter. */ |
156 | # define lll_futex_wait_requeue_pi(futexp, val, mutex, private) \ |
157 | lll_futex_timed_wait_requeue_pi (futexp, val, NULL, 0, mutex, private) |
158 | |
159 | /* Like lll_futex_wait_requeue_pi, but with a timeout. */ |
160 | # define lll_futex_timed_wait_requeue_pi(futexp, val, timeout, clockbit, \ |
161 | mutex, private) \ |
162 | lll_futex_syscall (5, futexp, \ |
163 | __lll_private_flag (FUTEX_WAIT_REQUEUE_PI \ |
164 | | (clockbit), private), \ |
165 | val, timeout, mutex) |
166 | |
167 | /* Like lll_futex_requeue, but pairs with lll_futex_wait_requeue_pi |
168 | and inherits priority from the waiter. */ |
169 | # define lll_futex_cmp_requeue_pi(futexp, nr_wake, nr_move, mutex, \ |
170 | val, private) \ |
171 | lll_futex_syscall (6, futexp, \ |
172 | __lll_private_flag (FUTEX_CMP_REQUEUE_PI, \ |
173 | private), \ |
174 | nr_wake, nr_move, mutex, val) |
175 | |
176 | /* Like lll_futex_wait, but acting as a cancellable entrypoint. */ |
177 | # define lll_futex_wait_cancel(futexp, val, private) \ |
178 | ({ \ |
179 | int __oldtype = CANCEL_ASYNC (); \ |
180 | long int __err = lll_futex_wait (futexp, val, LLL_SHARED); \ |
181 | CANCEL_RESET (__oldtype); \ |
182 | __err; \ |
183 | }) |
184 | |
185 | /* Like lll_futex_timed_wait, but acting as a cancellable entrypoint. */ |
186 | # define lll_futex_timed_wait_cancel(futexp, val, timeout, private) \ |
187 | ({ \ |
188 | int __oldtype = CANCEL_ASYNC (); \ |
189 | long int __err = lll_futex_timed_wait (futexp, val, timeout, private); \ |
190 | CANCEL_RESET (__oldtype); \ |
191 | __err; \ |
192 | }) |
193 | |
194 | #endif /* !__ASSEMBLER__ */ |
195 | |
196 | #endif /* lowlevellock-futex.h */ |
197 | |