linux_sched.c revision 1.53.2.2 1 1.53.2.2 yamt /* $NetBSD: linux_sched.c,v 1.53.2.2 2009/05/04 08:12:22 yamt Exp $ */
2 1.1 tron
3 1.1 tron /*-
4 1.1 tron * Copyright (c) 1999 The NetBSD Foundation, Inc.
5 1.1 tron * All rights reserved.
6 1.1 tron *
7 1.1 tron * This code is derived from software contributed to The NetBSD Foundation
8 1.2 thorpej * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.1 tron * NASA Ames Research Center; by Matthias Scheler.
10 1.1 tron *
11 1.1 tron * Redistribution and use in source and binary forms, with or without
12 1.1 tron * modification, are permitted provided that the following conditions
13 1.1 tron * are met:
14 1.1 tron * 1. Redistributions of source code must retain the above copyright
15 1.1 tron * notice, this list of conditions and the following disclaimer.
16 1.1 tron * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 tron * notice, this list of conditions and the following disclaimer in the
18 1.1 tron * documentation and/or other materials provided with the distribution.
19 1.1 tron *
20 1.1 tron * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.1 tron * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.1 tron * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.1 tron * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.1 tron * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.1 tron * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.1 tron * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.1 tron * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 tron * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 tron * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 tron * POSSIBILITY OF SUCH DAMAGE.
31 1.1 tron */
32 1.1 tron
33 1.1 tron /*
34 1.1 tron * Linux compatibility module. Try to deal with scheduler related syscalls.
35 1.1 tron */
36 1.8 lukem
37 1.8 lukem #include <sys/cdefs.h>
38 1.53.2.2 yamt __KERNEL_RCSID(0, "$NetBSD: linux_sched.c,v 1.53.2.2 2009/05/04 08:12:22 yamt Exp $");
39 1.1 tron
40 1.1 tron #include <sys/param.h>
41 1.1 tron #include <sys/mount.h>
42 1.1 tron #include <sys/proc.h>
43 1.1 tron #include <sys/systm.h>
44 1.22 manu #include <sys/sysctl.h>
45 1.22 manu #include <sys/malloc.h>
46 1.1 tron #include <sys/syscallargs.h>
47 1.14 jdolecek #include <sys/wait.h>
48 1.30 elad #include <sys/kauth.h>
49 1.34 manu #include <sys/ptrace.h>
50 1.3 itohy
51 1.43 ad #include <sys/cpu.h>
52 1.1 tron
53 1.1 tron #include <compat/linux/common/linux_types.h>
54 1.1 tron #include <compat/linux/common/linux_signal.h>
55 1.21 manu #include <compat/linux/common/linux_machdep.h> /* For LINUX_NPTL */
56 1.19 manu #include <compat/linux/common/linux_emuldata.h>
57 1.44 njoly #include <compat/linux/common/linux_ipc.h>
58 1.44 njoly #include <compat/linux/common/linux_sem.h>
59 1.53.2.2 yamt #include <compat/linux/common/linux_exec.h>
60 1.1 tron
61 1.1 tron #include <compat/linux/linux_syscallargs.h>
62 1.1 tron
63 1.1 tron #include <compat/linux/common/linux_sched.h>
64 1.1 tron
65 1.1 tron int
66 1.46 dsl linux_sys_clone(struct lwp *l, const struct linux_sys_clone_args *uap, register_t *retval)
67 1.1 tron {
68 1.46 dsl /* {
69 1.1 tron syscallarg(int) flags;
70 1.1 tron syscallarg(void *) stack;
71 1.21 manu #ifdef LINUX_NPTL
72 1.19 manu syscallarg(void *) parent_tidptr;
73 1.19 manu syscallarg(void *) child_tidptr;
74 1.19 manu #endif
75 1.46 dsl } */
76 1.1 tron int flags, sig;
77 1.19 manu int error;
78 1.53.2.2 yamt struct proc *p;
79 1.21 manu #ifdef LINUX_NPTL
80 1.19 manu struct linux_emuldata *led;
81 1.19 manu #endif
82 1.1 tron
83 1.1 tron /*
84 1.1 tron * We don't support the Linux CLONE_PID or CLONE_PTRACE flags.
85 1.1 tron */
86 1.1 tron if (SCARG(uap, flags) & (LINUX_CLONE_PID|LINUX_CLONE_PTRACE))
87 1.1 tron return (EINVAL);
88 1.1 tron
89 1.13 jdolecek /*
90 1.13 jdolecek * Thread group implies shared signals. Shared signals
91 1.13 jdolecek * imply shared VM. This matches what Linux kernel does.
92 1.13 jdolecek */
93 1.13 jdolecek if (SCARG(uap, flags) & LINUX_CLONE_THREAD
94 1.13 jdolecek && (SCARG(uap, flags) & LINUX_CLONE_SIGHAND) == 0)
95 1.13 jdolecek return (EINVAL);
96 1.13 jdolecek if (SCARG(uap, flags) & LINUX_CLONE_SIGHAND
97 1.13 jdolecek && (SCARG(uap, flags) & LINUX_CLONE_VM) == 0)
98 1.13 jdolecek return (EINVAL);
99 1.13 jdolecek
100 1.1 tron flags = 0;
101 1.1 tron
102 1.1 tron if (SCARG(uap, flags) & LINUX_CLONE_VM)
103 1.1 tron flags |= FORK_SHAREVM;
104 1.1 tron if (SCARG(uap, flags) & LINUX_CLONE_FS)
105 1.1 tron flags |= FORK_SHARECWD;
106 1.1 tron if (SCARG(uap, flags) & LINUX_CLONE_FILES)
107 1.1 tron flags |= FORK_SHAREFILES;
108 1.1 tron if (SCARG(uap, flags) & LINUX_CLONE_SIGHAND)
109 1.1 tron flags |= FORK_SHARESIGS;
110 1.1 tron if (SCARG(uap, flags) & LINUX_CLONE_VFORK)
111 1.1 tron flags |= FORK_PPWAIT;
112 1.1 tron
113 1.34 manu sig = SCARG(uap, flags) & LINUX_CLONE_CSIGNAL;
114 1.34 manu if (sig < 0 || sig >= LINUX__NSIG)
115 1.34 manu return (EINVAL);
116 1.34 manu sig = linux_to_native_signo[sig];
117 1.1 tron
118 1.21 manu #ifdef LINUX_NPTL
119 1.19 manu led = (struct linux_emuldata *)l->l_proc->p_emuldata;
120 1.19 manu
121 1.34 manu led->parent_tidptr = SCARG(uap, parent_tidptr);
122 1.34 manu led->child_tidptr = SCARG(uap, child_tidptr);
123 1.34 manu led->clone_flags = SCARG(uap, flags);
124 1.34 manu #endif /* LINUX_NPTL */
125 1.19 manu
126 1.1 tron /*
127 1.1 tron * Note that Linux does not provide a portable way of specifying
128 1.1 tron * the stack area; the caller must know if the stack grows up
129 1.1 tron * or down. So, we pass a stack size of 0, so that the code
130 1.1 tron * that makes this adjustment is a noop.
131 1.1 tron */
132 1.19 manu if ((error = fork1(l, flags, sig, SCARG(uap, stack), 0,
133 1.53.2.2 yamt NULL, NULL, retval, &p)) != 0)
134 1.19 manu return error;
135 1.19 manu
136 1.53.2.2 yamt #ifdef LINUX_NPTL
137 1.53.2.2 yamt if ((SCARG(uap, flags) & LINUX_CLONE_SETTLS) != 0)
138 1.53.2.2 yamt return linux_init_thread_area(l, LIST_FIRST(&p->p_lwps));
139 1.53.2.2 yamt #endif /* LINUX_NPTL */
140 1.53.2.2 yamt
141 1.19 manu return 0;
142 1.1 tron }
143 1.1 tron
144 1.49 elad /*
145 1.49 elad * linux realtime priority
146 1.49 elad *
147 1.49 elad * - SCHED_RR and SCHED_FIFO tasks have priorities [1,99].
148 1.49 elad *
149 1.49 elad * - SCHED_OTHER tasks don't have realtime priorities.
150 1.49 elad * in particular, sched_param::sched_priority is always 0.
151 1.49 elad */
152 1.49 elad
153 1.49 elad #define LINUX_SCHED_RTPRIO_MIN 1
154 1.49 elad #define LINUX_SCHED_RTPRIO_MAX 99
155 1.49 elad
156 1.49 elad static int
157 1.49 elad sched_linux2native(int linux_policy, struct linux_sched_param *linux_params,
158 1.49 elad int *native_policy, struct sched_param *native_params)
159 1.49 elad {
160 1.49 elad
161 1.49 elad switch (linux_policy) {
162 1.49 elad case LINUX_SCHED_OTHER:
163 1.49 elad if (native_policy != NULL) {
164 1.49 elad *native_policy = SCHED_OTHER;
165 1.49 elad }
166 1.49 elad break;
167 1.49 elad
168 1.49 elad case LINUX_SCHED_FIFO:
169 1.49 elad if (native_policy != NULL) {
170 1.49 elad *native_policy = SCHED_FIFO;
171 1.49 elad }
172 1.49 elad break;
173 1.49 elad
174 1.49 elad case LINUX_SCHED_RR:
175 1.49 elad if (native_policy != NULL) {
176 1.49 elad *native_policy = SCHED_RR;
177 1.49 elad }
178 1.49 elad break;
179 1.49 elad
180 1.49 elad default:
181 1.49 elad return EINVAL;
182 1.49 elad }
183 1.49 elad
184 1.49 elad if (linux_params != NULL) {
185 1.49 elad int prio = linux_params->sched_priority;
186 1.49 elad
187 1.49 elad KASSERT(native_params != NULL);
188 1.49 elad
189 1.49 elad if (linux_policy == LINUX_SCHED_OTHER) {
190 1.49 elad if (prio != 0) {
191 1.49 elad return EINVAL;
192 1.49 elad }
193 1.49 elad native_params->sched_priority = PRI_NONE; /* XXX */
194 1.49 elad } else {
195 1.49 elad if (prio < LINUX_SCHED_RTPRIO_MIN ||
196 1.49 elad prio > LINUX_SCHED_RTPRIO_MAX) {
197 1.49 elad return EINVAL;
198 1.49 elad }
199 1.49 elad native_params->sched_priority =
200 1.49 elad (prio - LINUX_SCHED_RTPRIO_MIN)
201 1.49 elad * (SCHED_PRI_MAX - SCHED_PRI_MIN)
202 1.49 elad / (LINUX_SCHED_RTPRIO_MAX - LINUX_SCHED_RTPRIO_MIN)
203 1.49 elad + SCHED_PRI_MIN;
204 1.49 elad }
205 1.49 elad }
206 1.49 elad
207 1.49 elad return 0;
208 1.49 elad }
209 1.49 elad
210 1.49 elad static int
211 1.49 elad sched_native2linux(int native_policy, struct sched_param *native_params,
212 1.49 elad int *linux_policy, struct linux_sched_param *linux_params)
213 1.49 elad {
214 1.49 elad
215 1.49 elad switch (native_policy) {
216 1.49 elad case SCHED_OTHER:
217 1.49 elad if (linux_policy != NULL) {
218 1.49 elad *linux_policy = LINUX_SCHED_OTHER;
219 1.49 elad }
220 1.49 elad break;
221 1.49 elad
222 1.49 elad case SCHED_FIFO:
223 1.49 elad if (linux_policy != NULL) {
224 1.49 elad *linux_policy = LINUX_SCHED_FIFO;
225 1.49 elad }
226 1.49 elad break;
227 1.49 elad
228 1.49 elad case SCHED_RR:
229 1.49 elad if (linux_policy != NULL) {
230 1.49 elad *linux_policy = LINUX_SCHED_RR;
231 1.49 elad }
232 1.49 elad break;
233 1.49 elad
234 1.49 elad default:
235 1.49 elad panic("%s: unknown policy %d\n", __func__, native_policy);
236 1.49 elad }
237 1.49 elad
238 1.49 elad if (native_params != NULL) {
239 1.49 elad int prio = native_params->sched_priority;
240 1.49 elad
241 1.49 elad KASSERT(prio >= SCHED_PRI_MIN);
242 1.49 elad KASSERT(prio <= SCHED_PRI_MAX);
243 1.49 elad KASSERT(linux_params != NULL);
244 1.49 elad
245 1.53.2.1 yamt #ifdef DEBUG_LINUX
246 1.53.2.1 yamt printf("native2linux: native: policy %d, priority %d\n",
247 1.53.2.1 yamt native_policy, prio);
248 1.53.2.1 yamt #endif
249 1.53.2.1 yamt
250 1.49 elad if (native_policy == SCHED_OTHER) {
251 1.49 elad linux_params->sched_priority = 0;
252 1.49 elad } else {
253 1.49 elad linux_params->sched_priority =
254 1.49 elad (prio - SCHED_PRI_MIN)
255 1.49 elad * (LINUX_SCHED_RTPRIO_MAX - LINUX_SCHED_RTPRIO_MIN)
256 1.49 elad / (SCHED_PRI_MAX - SCHED_PRI_MIN)
257 1.49 elad + LINUX_SCHED_RTPRIO_MIN;
258 1.49 elad }
259 1.53.2.1 yamt #ifdef DEBUG_LINUX
260 1.53.2.1 yamt printf("native2linux: linux: policy %d, priority %d\n",
261 1.53.2.1 yamt -1, linux_params->sched_priority);
262 1.53.2.1 yamt #endif
263 1.49 elad }
264 1.49 elad
265 1.49 elad return 0;
266 1.49 elad }
267 1.49 elad
268 1.1 tron int
269 1.46 dsl linux_sys_sched_setparam(struct lwp *l, const struct linux_sys_sched_setparam_args *uap, register_t *retval)
270 1.1 tron {
271 1.46 dsl /* {
272 1.1 tron syscallarg(linux_pid_t) pid;
273 1.1 tron syscallarg(const struct linux_sched_param *) sp;
274 1.46 dsl } */
275 1.49 elad int error, policy;
276 1.1 tron struct linux_sched_param lp;
277 1.49 elad struct sched_param sp;
278 1.49 elad
279 1.49 elad if (SCARG(uap, pid) < 0 || SCARG(uap, sp) == NULL) {
280 1.49 elad error = EINVAL;
281 1.49 elad goto out;
282 1.49 elad }
283 1.1 tron
284 1.49 elad error = copyin(SCARG(uap, sp), &lp, sizeof(lp));
285 1.49 elad if (error)
286 1.49 elad goto out;
287 1.1 tron
288 1.49 elad /* We need the current policy in Linux terms. */
289 1.49 elad error = do_sched_getparam(SCARG(uap, pid), 0, &policy, NULL);
290 1.49 elad if (error)
291 1.49 elad goto out;
292 1.49 elad error = sched_native2linux(policy, NULL, &policy, NULL);
293 1.49 elad if (error)
294 1.49 elad goto out;
295 1.1 tron
296 1.49 elad error = sched_linux2native(policy, &lp, &policy, &sp);
297 1.1 tron if (error)
298 1.49 elad goto out;
299 1.1 tron
300 1.49 elad error = do_sched_setparam(SCARG(uap, pid), 0, policy, &sp);
301 1.49 elad if (error)
302 1.49 elad goto out;
303 1.1 tron
304 1.49 elad out:
305 1.49 elad return error;
306 1.1 tron }
307 1.1 tron
308 1.1 tron int
309 1.46 dsl linux_sys_sched_getparam(struct lwp *l, const struct linux_sys_sched_getparam_args *uap, register_t *retval)
310 1.1 tron {
311 1.46 dsl /* {
312 1.1 tron syscallarg(linux_pid_t) pid;
313 1.1 tron syscallarg(struct linux_sched_param *) sp;
314 1.46 dsl } */
315 1.1 tron struct linux_sched_param lp;
316 1.49 elad struct sched_param sp;
317 1.50 elad int error, policy;
318 1.49 elad
319 1.49 elad if (SCARG(uap, pid) < 0 || SCARG(uap, sp) == NULL) {
320 1.49 elad error = EINVAL;
321 1.49 elad goto out;
322 1.49 elad }
323 1.1 tron
324 1.50 elad error = do_sched_getparam(SCARG(uap, pid), 0, &policy, &sp);
325 1.49 elad if (error)
326 1.49 elad goto out;
327 1.53.2.1 yamt #ifdef DEBUG_LINUX
328 1.53.2.1 yamt printf("getparam: native: policy %d, priority %d\n",
329 1.53.2.1 yamt policy, sp.sched_priority);
330 1.53.2.1 yamt #endif
331 1.1 tron
332 1.50 elad error = sched_native2linux(policy, &sp, NULL, &lp);
333 1.49 elad if (error)
334 1.49 elad goto out;
335 1.53.2.1 yamt #ifdef DEBUG_LINUX
336 1.53.2.1 yamt printf("getparam: linux: policy %d, priority %d\n",
337 1.53.2.1 yamt policy, lp.sched_priority);
338 1.53.2.1 yamt #endif
339 1.47 elad
340 1.49 elad error = copyout(&lp, SCARG(uap, sp), sizeof(lp));
341 1.49 elad if (error)
342 1.49 elad goto out;
343 1.1 tron
344 1.49 elad out:
345 1.49 elad return error;
346 1.1 tron }
347 1.1 tron
348 1.1 tron int
349 1.46 dsl linux_sys_sched_setscheduler(struct lwp *l, const struct linux_sys_sched_setscheduler_args *uap, register_t *retval)
350 1.1 tron {
351 1.46 dsl /* {
352 1.1 tron syscallarg(linux_pid_t) pid;
353 1.1 tron syscallarg(int) policy;
354 1.1 tron syscallarg(cont struct linux_sched_scheduler *) sp;
355 1.46 dsl } */
356 1.49 elad int error, policy;
357 1.1 tron struct linux_sched_param lp;
358 1.49 elad struct sched_param sp;
359 1.1 tron
360 1.49 elad if (SCARG(uap, pid) < 0 || SCARG(uap, sp) == NULL) {
361 1.49 elad error = EINVAL;
362 1.49 elad goto out;
363 1.49 elad }
364 1.1 tron
365 1.1 tron error = copyin(SCARG(uap, sp), &lp, sizeof(lp));
366 1.1 tron if (error)
367 1.49 elad goto out;
368 1.53.2.1 yamt #ifdef DEBUG_LINUX
369 1.53.2.1 yamt printf("setscheduler: linux: policy %d, priority %d\n",
370 1.53.2.1 yamt SCARG(uap, policy), lp.sched_priority);
371 1.53.2.1 yamt #endif
372 1.1 tron
373 1.49 elad error = sched_linux2native(SCARG(uap, policy), &lp, &policy, &sp);
374 1.49 elad if (error)
375 1.49 elad goto out;
376 1.53.2.1 yamt #ifdef DEBUG_LINUX
377 1.53.2.1 yamt printf("setscheduler: native: policy %d, priority %d\n",
378 1.53.2.1 yamt policy, sp.sched_priority);
379 1.53.2.1 yamt #endif
380 1.1 tron
381 1.49 elad error = do_sched_setparam(SCARG(uap, pid), 0, policy, &sp);
382 1.49 elad if (error)
383 1.49 elad goto out;
384 1.1 tron
385 1.49 elad out:
386 1.49 elad return error;
387 1.1 tron }
388 1.1 tron
389 1.1 tron int
390 1.46 dsl linux_sys_sched_getscheduler(struct lwp *l, const struct linux_sys_sched_getscheduler_args *uap, register_t *retval)
391 1.1 tron {
392 1.46 dsl /* {
393 1.1 tron syscallarg(linux_pid_t) pid;
394 1.46 dsl } */
395 1.49 elad int error, policy;
396 1.1 tron
397 1.1 tron *retval = -1;
398 1.1 tron
399 1.49 elad error = do_sched_getparam(SCARG(uap, pid), 0, &policy, NULL);
400 1.49 elad if (error)
401 1.49 elad goto out;
402 1.49 elad
403 1.49 elad error = sched_native2linux(policy, NULL, &policy, NULL);
404 1.49 elad if (error)
405 1.49 elad goto out;
406 1.49 elad
407 1.49 elad *retval = policy;
408 1.1 tron
409 1.49 elad out:
410 1.49 elad return error;
411 1.1 tron }
412 1.1 tron
413 1.1 tron int
414 1.46 dsl linux_sys_sched_yield(struct lwp *l, const void *v, register_t *retval)
415 1.1 tron {
416 1.11 gmcgarry
417 1.11 gmcgarry yield();
418 1.1 tron return 0;
419 1.1 tron }
420 1.1 tron
421 1.1 tron int
422 1.46 dsl linux_sys_sched_get_priority_max(struct lwp *l, const struct linux_sys_sched_get_priority_max_args *uap, register_t *retval)
423 1.1 tron {
424 1.46 dsl /* {
425 1.1 tron syscallarg(int) policy;
426 1.46 dsl } */
427 1.1 tron
428 1.53.2.1 yamt switch (SCARG(uap, policy)) {
429 1.53.2.1 yamt case LINUX_SCHED_OTHER:
430 1.53.2.1 yamt *retval = 0;
431 1.53.2.1 yamt break;
432 1.53.2.1 yamt case LINUX_SCHED_FIFO:
433 1.53.2.1 yamt case LINUX_SCHED_RR:
434 1.53.2.1 yamt *retval = LINUX_SCHED_RTPRIO_MAX;
435 1.53.2.1 yamt break;
436 1.53.2.1 yamt default:
437 1.1 tron return EINVAL;
438 1.1 tron }
439 1.1 tron
440 1.1 tron return 0;
441 1.1 tron }
442 1.1 tron
443 1.1 tron int
444 1.46 dsl linux_sys_sched_get_priority_min(struct lwp *l, const struct linux_sys_sched_get_priority_min_args *uap, register_t *retval)
445 1.1 tron {
446 1.46 dsl /* {
447 1.1 tron syscallarg(int) policy;
448 1.46 dsl } */
449 1.1 tron
450 1.53.2.1 yamt switch (SCARG(uap, policy)) {
451 1.53.2.1 yamt case LINUX_SCHED_OTHER:
452 1.53.2.1 yamt *retval = 0;
453 1.53.2.1 yamt break;
454 1.53.2.1 yamt case LINUX_SCHED_FIFO:
455 1.53.2.1 yamt case LINUX_SCHED_RR:
456 1.53.2.1 yamt *retval = LINUX_SCHED_RTPRIO_MIN;
457 1.53.2.1 yamt break;
458 1.53.2.1 yamt default:
459 1.1 tron return EINVAL;
460 1.1 tron }
461 1.1 tron
462 1.1 tron return 0;
463 1.1 tron }
464 1.14 jdolecek
465 1.14 jdolecek #ifndef __m68k__
466 1.14 jdolecek /* Present on everything but m68k */
467 1.14 jdolecek int
468 1.46 dsl linux_sys_exit_group(struct lwp *l, const struct linux_sys_exit_group_args *uap, register_t *retval)
469 1.14 jdolecek {
470 1.35 dogcow #ifdef LINUX_NPTL
471 1.46 dsl /* {
472 1.14 jdolecek syscallarg(int) error_code;
473 1.46 dsl } */
474 1.31 manu struct proc *p = l->l_proc;
475 1.31 manu struct linux_emuldata *led = p->p_emuldata;
476 1.31 manu struct linux_emuldata *e;
477 1.14 jdolecek
478 1.39 njoly if (led->s->flags & LINUX_LES_USE_NPTL) {
479 1.39 njoly
480 1.34 manu #ifdef DEBUG_LINUX
481 1.39 njoly printf("%s:%d, led->s->refs = %d\n", __func__, __LINE__,
482 1.39 njoly led->s->refs);
483 1.34 manu #endif
484 1.39 njoly
485 1.39 njoly /*
486 1.39 njoly * The calling thread is supposed to kill all threads
487 1.39 njoly * in the same thread group (i.e. all threads created
488 1.39 njoly * via clone(2) with CLONE_THREAD flag set).
489 1.39 njoly *
490 1.39 njoly * If there is only one thread, things are quite simple
491 1.39 njoly */
492 1.39 njoly if (led->s->refs == 1)
493 1.46 dsl return sys_exit(l, (const void *)uap, retval);
494 1.31 manu
495 1.31 manu #ifdef DEBUG_LINUX
496 1.39 njoly printf("%s:%d\n", __func__, __LINE__);
497 1.31 manu #endif
498 1.34 manu
499 1.53 ad mutex_enter(proc_lock);
500 1.39 njoly led->s->flags |= LINUX_LES_INEXITGROUP;
501 1.39 njoly led->s->xstat = W_EXITCODE(SCARG(uap, error_code), 0);
502 1.34 manu
503 1.39 njoly /*
504 1.39 njoly * Kill all threads in the group. The emulation exit hook takes
505 1.39 njoly * care of hiding the zombies and reporting the exit code
506 1.39 njoly * properly.
507 1.39 njoly */
508 1.39 njoly LIST_FOREACH(e, &led->s->threads, threads) {
509 1.39 njoly if (e->proc == p)
510 1.39 njoly continue;
511 1.31 manu
512 1.34 manu #ifdef DEBUG_LINUX
513 1.39 njoly printf("%s: kill PID %d\n", __func__, e->proc->p_pid);
514 1.34 manu #endif
515 1.39 njoly psignal(e->proc, SIGKILL);
516 1.39 njoly }
517 1.39 njoly
518 1.39 njoly /* Now, kill ourselves */
519 1.39 njoly psignal(p, SIGKILL);
520 1.53 ad mutex_exit(proc_lock);
521 1.41 ad
522 1.39 njoly return 0;
523 1.39 njoly
524 1.31 manu }
525 1.39 njoly #endif /* LINUX_NPTL */
526 1.14 jdolecek
527 1.46 dsl return sys_exit(l, (const void *)uap, retval);
528 1.14 jdolecek }
529 1.14 jdolecek #endif /* !__m68k__ */
530 1.19 manu
531 1.21 manu #ifdef LINUX_NPTL
532 1.19 manu int
533 1.46 dsl linux_sys_set_tid_address(struct lwp *l, const struct linux_sys_set_tid_address_args *uap, register_t *retval)
534 1.19 manu {
535 1.46 dsl /* {
536 1.19 manu syscallarg(int *) tidptr;
537 1.46 dsl } */
538 1.19 manu struct linux_emuldata *led;
539 1.19 manu
540 1.19 manu led = (struct linux_emuldata *)l->l_proc->p_emuldata;
541 1.19 manu led->clear_tid = SCARG(uap, tid);
542 1.19 manu
543 1.39 njoly led->s->flags |= LINUX_LES_USE_NPTL;
544 1.39 njoly
545 1.19 manu *retval = l->l_proc->p_pid;
546 1.19 manu
547 1.19 manu return 0;
548 1.19 manu }
549 1.20 manu
550 1.20 manu /* ARGUSED1 */
551 1.20 manu int
552 1.46 dsl linux_sys_gettid(struct lwp *l, const void *v, register_t *retval)
553 1.20 manu {
554 1.31 manu /* The Linux kernel does it exactly that way */
555 1.20 manu *retval = l->l_proc->p_pid;
556 1.20 manu return 0;
557 1.20 manu }
558 1.22 manu
559 1.31 manu #ifdef LINUX_NPTL
560 1.31 manu /* ARGUSED1 */
561 1.31 manu int
562 1.46 dsl linux_sys_getpid(struct lwp *l, const void *v, register_t *retval)
563 1.31 manu {
564 1.39 njoly struct linux_emuldata *led = l->l_proc->p_emuldata;
565 1.31 manu
566 1.39 njoly if (led->s->flags & LINUX_LES_USE_NPTL) {
567 1.39 njoly /* The Linux kernel does it exactly that way */
568 1.39 njoly *retval = led->s->group_pid;
569 1.39 njoly } else {
570 1.39 njoly *retval = l->l_proc->p_pid;
571 1.39 njoly }
572 1.31 manu
573 1.31 manu return 0;
574 1.31 manu }
575 1.31 manu
576 1.31 manu /* ARGUSED1 */
577 1.31 manu int
578 1.46 dsl linux_sys_getppid(struct lwp *l, const void *v, register_t *retval)
579 1.31 manu {
580 1.31 manu struct proc *p = l->l_proc;
581 1.31 manu struct linux_emuldata *led = p->p_emuldata;
582 1.31 manu struct proc *glp;
583 1.31 manu struct proc *pp;
584 1.31 manu
585 1.53 ad mutex_enter(proc_lock);
586 1.39 njoly if (led->s->flags & LINUX_LES_USE_NPTL) {
587 1.31 manu
588 1.39 njoly /* Find the thread group leader's parent */
589 1.51 ad if ((glp = p_find(led->s->group_pid, PFIND_LOCKED)) == NULL) {
590 1.39 njoly /* Maybe panic... */
591 1.39 njoly printf("linux_sys_getppid: missing group leader PID"
592 1.39 njoly " %d\n", led->s->group_pid);
593 1.53 ad mutex_exit(proc_lock);
594 1.39 njoly return -1;
595 1.39 njoly }
596 1.39 njoly pp = glp->p_pptr;
597 1.39 njoly
598 1.39 njoly /* If this is a Linux process too, return thread group PID */
599 1.39 njoly if (pp->p_emul == p->p_emul) {
600 1.39 njoly struct linux_emuldata *pled;
601 1.39 njoly
602 1.39 njoly pled = pp->p_emuldata;
603 1.39 njoly *retval = pled->s->group_pid;
604 1.39 njoly } else {
605 1.39 njoly *retval = pp->p_pid;
606 1.39 njoly }
607 1.31 manu
608 1.31 manu } else {
609 1.39 njoly *retval = p->p_pptr->p_pid;
610 1.31 manu }
611 1.53 ad mutex_exit(proc_lock);
612 1.31 manu
613 1.31 manu return 0;
614 1.31 manu }
615 1.31 manu #endif /* LINUX_NPTL */
616 1.31 manu
617 1.22 manu int
618 1.46 dsl linux_sys_sched_getaffinity(struct lwp *l, const struct linux_sys_sched_getaffinity_args *uap, register_t *retval)
619 1.22 manu {
620 1.46 dsl /* {
621 1.22 manu syscallarg(pid_t) pid;
622 1.22 manu syscallarg(unsigned int) len;
623 1.22 manu syscallarg(unsigned long *) mask;
624 1.46 dsl } */
625 1.22 manu int error;
626 1.22 manu int ret;
627 1.22 manu char *data;
628 1.22 manu int *retp;
629 1.22 manu
630 1.22 manu if (SCARG(uap, mask) == NULL)
631 1.22 manu return EINVAL;
632 1.22 manu
633 1.22 manu if (SCARG(uap, len) < sizeof(int))
634 1.22 manu return EINVAL;
635 1.22 manu
636 1.22 manu if (pfind(SCARG(uap, pid)) == NULL)
637 1.22 manu return ESRCH;
638 1.22 manu
639 1.22 manu /*
640 1.22 manu * return the actual number of CPU, tag all of them as available
641 1.22 manu * The result is a mask, the first CPU being in the least significant
642 1.22 manu * bit.
643 1.22 manu */
644 1.22 manu ret = (1 << ncpu) - 1;
645 1.22 manu data = malloc(SCARG(uap, len), M_TEMP, M_WAITOK|M_ZERO);
646 1.22 manu retp = (int *)&data[SCARG(uap, len) - sizeof(ret)];
647 1.22 manu *retp = ret;
648 1.22 manu
649 1.22 manu if ((error = copyout(data, SCARG(uap, mask), SCARG(uap, len))) != 0)
650 1.22 manu return error;
651 1.22 manu
652 1.22 manu free(data, M_TEMP);
653 1.22 manu
654 1.22 manu return 0;
655 1.22 manu
656 1.22 manu }
657 1.22 manu
658 1.22 manu int
659 1.46 dsl linux_sys_sched_setaffinity(struct lwp *l, const struct linux_sys_sched_setaffinity_args *uap, register_t *retval)
660 1.22 manu {
661 1.46 dsl /* {
662 1.22 manu syscallarg(pid_t) pid;
663 1.22 manu syscallarg(unsigned int) len;
664 1.22 manu syscallarg(unsigned long *) mask;
665 1.46 dsl } */
666 1.22 manu
667 1.22 manu if (pfind(SCARG(uap, pid)) == NULL)
668 1.22 manu return ESRCH;
669 1.22 manu
670 1.22 manu /* Let's ignore it */
671 1.22 manu #ifdef DEBUG_LINUX
672 1.22 manu printf("linux_sys_sched_setaffinity\n");
673 1.22 manu #endif
674 1.22 manu return 0;
675 1.22 manu };
676 1.23 manu #endif /* LINUX_NPTL */
677