kern_ras.c revision 1.22 1 1.22 ad /* $NetBSD: kern_ras.c,v 1.22 2007/10/24 21:50:09 ad Exp $ */
2 1.1 gmcgarry
3 1.1 gmcgarry /*-
4 1.21 ad * Copyright (c) 2002, 2006, 2007 The NetBSD Foundation, Inc.
5 1.1 gmcgarry * All rights reserved.
6 1.1 gmcgarry *
7 1.1 gmcgarry * This code is derived from software contributed to The NetBSD Foundation
8 1.21 ad * by Gregory McGarry, and by Andrew Doran.
9 1.1 gmcgarry *
10 1.1 gmcgarry * Redistribution and use in source and binary forms, with or without
11 1.1 gmcgarry * modification, are permitted provided that the following conditions
12 1.1 gmcgarry * are met:
13 1.1 gmcgarry * 1. Redistributions of source code must retain the above copyright
14 1.1 gmcgarry * notice, this list of conditions and the following disclaimer.
15 1.1 gmcgarry * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 gmcgarry * notice, this list of conditions and the following disclaimer in the
17 1.1 gmcgarry * documentation and/or other materials provided with the distribution.
18 1.1 gmcgarry * 3. All advertising materials mentioning features or use of this software
19 1.1 gmcgarry * must display the following acknowledgement:
20 1.1 gmcgarry * This product includes software developed by the NetBSD
21 1.1 gmcgarry * Foundation, Inc. and its contributors.
22 1.1 gmcgarry * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 gmcgarry * contributors may be used to endorse or promote products derived
24 1.1 gmcgarry * from this software without specific prior written permission.
25 1.1 gmcgarry *
26 1.1 gmcgarry * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 gmcgarry * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 gmcgarry * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 gmcgarry * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 gmcgarry * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 gmcgarry * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 gmcgarry * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 gmcgarry * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 gmcgarry * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 gmcgarry * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 gmcgarry * POSSIBILITY OF SUCH DAMAGE.
37 1.1 gmcgarry */
38 1.1 gmcgarry
39 1.1 gmcgarry #include <sys/cdefs.h>
40 1.22 ad __KERNEL_RCSID(0, "$NetBSD: kern_ras.c,v 1.22 2007/10/24 21:50:09 ad Exp $");
41 1.1 gmcgarry
42 1.1 gmcgarry #include <sys/param.h>
43 1.1 gmcgarry #include <sys/lock.h>
44 1.1 gmcgarry #include <sys/systm.h>
45 1.21 ad #include <sys/kernel.h>
46 1.1 gmcgarry #include <sys/pool.h>
47 1.1 gmcgarry #include <sys/proc.h>
48 1.1 gmcgarry #include <sys/ras.h>
49 1.21 ad #include <sys/xcall.h>
50 1.1 gmcgarry #include <sys/syscallargs.h>
51 1.1 gmcgarry
52 1.1 gmcgarry #include <uvm/uvm_extern.h>
53 1.1 gmcgarry
54 1.13 thorpej POOL_INIT(ras_pool, sizeof(struct ras), 0, 0, 0, "raspl",
55 1.18 ad &pool_allocator_nointr, IPL_NONE);
56 1.13 thorpej
57 1.1 gmcgarry #define MAX_RAS_PER_PROC 16
58 1.1 gmcgarry
59 1.3 thorpej u_int ras_per_proc = MAX_RAS_PER_PROC;
60 1.1 gmcgarry
61 1.1 gmcgarry #ifdef DEBUG
62 1.1 gmcgarry int ras_debug = 0;
63 1.1 gmcgarry #define DPRINTF(x) if (ras_debug) printf x
64 1.1 gmcgarry #else
65 1.1 gmcgarry #define DPRINTF(x) /* nothing */
66 1.1 gmcgarry #endif
67 1.1 gmcgarry
68 1.1 gmcgarry /*
69 1.21 ad * Force all CPUs through cpu_switchto(), waiting until complete.
70 1.21 ad */
71 1.21 ad static void
72 1.21 ad ras_sync(void)
73 1.21 ad {
74 1.21 ad
75 1.21 ad /* No need to sync if exiting or single threaded. */
76 1.21 ad if (curproc->p_nlwps > 1 && ncpu > 1) {
77 1.21 ad #ifdef NO_SOFTWARE_PATENTS
78 1.21 ad uint64_t where;
79 1.21 ad where = xc_broadcast(0, (xcfunc_t)nullop, NULL, NULL);
80 1.21 ad xc_wait(where);
81 1.21 ad #else
82 1.21 ad kpause("ras", false, hz >> 3, NULL);
83 1.21 ad #endif
84 1.21 ad }
85 1.21 ad }
86 1.21 ad
87 1.21 ad /*
88 1.1 gmcgarry * Check the specified address to see if it is within the
89 1.1 gmcgarry * sequence. If it is found, we return the restart address,
90 1.1 gmcgarry * otherwise we return -1. If we do perform a restart, we
91 1.1 gmcgarry * mark the sequence as hit.
92 1.21 ad *
93 1.21 ad * No locking required: we disable preemption and ras_sync()
94 1.21 ad * guarantees that individual entries are valid while we still
95 1.21 ad * have visibility of them.
96 1.1 gmcgarry */
97 1.17 christos void *
98 1.17 christos ras_lookup(struct proc *p, void *addr)
99 1.1 gmcgarry {
100 1.1 gmcgarry struct ras *rp;
101 1.17 christos void *startaddr;
102 1.16 ad
103 1.17 christos startaddr = (void *)-1;
104 1.1 gmcgarry
105 1.21 ad crit_enter();
106 1.21 ad for (rp = p->p_raslist; rp != NULL; rp = rp->ras_next) {
107 1.1 gmcgarry if (addr > rp->ras_startaddr && addr < rp->ras_endaddr) {
108 1.16 ad startaddr = rp->ras_startaddr;
109 1.1 gmcgarry DPRINTF(("RAS hit: p=%p %p\n", p, addr));
110 1.16 ad break;
111 1.1 gmcgarry }
112 1.1 gmcgarry }
113 1.21 ad crit_exit();
114 1.1 gmcgarry
115 1.21 ad return startaddr;
116 1.1 gmcgarry }
117 1.1 gmcgarry
118 1.1 gmcgarry /*
119 1.1 gmcgarry * During a fork, we copy all of the sequences from parent p1 to
120 1.1 gmcgarry * the child p2.
121 1.21 ad *
122 1.21 ad * No locking required as the parent must be paused.
123 1.1 gmcgarry */
124 1.1 gmcgarry int
125 1.1 gmcgarry ras_fork(struct proc *p1, struct proc *p2)
126 1.1 gmcgarry {
127 1.1 gmcgarry struct ras *rp, *nrp;
128 1.9 yamt
129 1.21 ad for (rp = p1->p_raslist; rp != NULL; rp = rp->ras_next) {
130 1.7 pooka nrp = pool_get(&ras_pool, PR_WAITOK);
131 1.1 gmcgarry nrp->ras_startaddr = rp->ras_startaddr;
132 1.1 gmcgarry nrp->ras_endaddr = rp->ras_endaddr;
133 1.21 ad nrp = p2->p_raslist;
134 1.21 ad p2->p_raslist = nrp;
135 1.9 yamt }
136 1.9 yamt
137 1.22 ad DPRINTF(("ras_fork: p1=%p, p2=%p\n", p1, p2));
138 1.1 gmcgarry
139 1.21 ad return 0;
140 1.1 gmcgarry }
141 1.1 gmcgarry
142 1.1 gmcgarry /*
143 1.1 gmcgarry * Nuke all sequences for this process.
144 1.1 gmcgarry */
145 1.1 gmcgarry int
146 1.21 ad ras_purgeall(void)
147 1.1 gmcgarry {
148 1.21 ad struct ras *rp, *nrp;
149 1.21 ad proc_t *p;
150 1.21 ad
151 1.21 ad p = curproc;
152 1.1 gmcgarry
153 1.21 ad mutex_enter(&p->p_raslock);
154 1.21 ad if ((rp = p->p_raslist) != NULL) {
155 1.21 ad p->p_raslist = NULL;
156 1.21 ad ras_sync();
157 1.21 ad for(; rp != NULL; rp = nrp) {
158 1.21 ad nrp = rp->ras_next;
159 1.21 ad pool_put(&ras_pool, rp);
160 1.21 ad }
161 1.1 gmcgarry }
162 1.21 ad mutex_exit(&p->p_raslock);
163 1.1 gmcgarry
164 1.21 ad return 0;
165 1.1 gmcgarry }
166 1.1 gmcgarry
167 1.12 hannken #if defined(__HAVE_RAS)
168 1.12 hannken
169 1.1 gmcgarry /*
170 1.1 gmcgarry * Install the new sequence. If it already exists, return
171 1.1 gmcgarry * an error.
172 1.1 gmcgarry */
173 1.11 thorpej static int
174 1.21 ad ras_install(void *addr, size_t len)
175 1.1 gmcgarry {
176 1.1 gmcgarry struct ras *rp;
177 1.8 yamt struct ras *newrp;
178 1.21 ad void *endaddr;
179 1.21 ad int nras, error;
180 1.21 ad proc_t *p;
181 1.21 ad
182 1.21 ad endaddr = (char *)addr + len;
183 1.1 gmcgarry
184 1.17 christos if (addr < (void *)VM_MIN_ADDRESS ||
185 1.17 christos endaddr > (void *)VM_MAXUSER_ADDRESS)
186 1.1 gmcgarry return (EINVAL);
187 1.1 gmcgarry
188 1.1 gmcgarry if (len <= 0)
189 1.1 gmcgarry return (EINVAL);
190 1.1 gmcgarry
191 1.21 ad newrp = pool_get(&ras_pool, PR_WAITOK);
192 1.21 ad newrp->ras_startaddr = addr;
193 1.21 ad newrp->ras_endaddr = endaddr;
194 1.21 ad error = 0;
195 1.21 ad nras = 0;
196 1.21 ad p = curproc;
197 1.21 ad
198 1.21 ad mutex_enter(&p->p_raslock);
199 1.21 ad for (rp = p->p_raslist; rp != NULL; rp = rp->ras_next) {
200 1.19 thorpej if (++nras >= ras_per_proc) {
201 1.21 ad error = EINVAL;
202 1.21 ad break;
203 1.1 gmcgarry }
204 1.19 thorpej if (addr < rp->ras_endaddr && endaddr > rp->ras_startaddr) {
205 1.21 ad error = EEXIST;
206 1.21 ad break;
207 1.19 thorpej }
208 1.1 gmcgarry }
209 1.21 ad if (rp == NULL) {
210 1.21 ad newrp->ras_next = p->p_raslist;
211 1.21 ad p->p_raslist = newrp;
212 1.21 ad ras_sync();
213 1.21 ad mutex_exit(&p->p_raslock);
214 1.21 ad } else {
215 1.21 ad mutex_exit(&p->p_raslock);
216 1.21 ad pool_put(&ras_pool, newrp);
217 1.8 yamt }
218 1.1 gmcgarry
219 1.21 ad return error;
220 1.1 gmcgarry }
221 1.1 gmcgarry
222 1.1 gmcgarry /*
223 1.1 gmcgarry * Nuke the specified sequence. Both address and len must
224 1.1 gmcgarry * match, otherwise we return an error.
225 1.1 gmcgarry */
226 1.11 thorpej static int
227 1.21 ad ras_purge(void *addr, size_t len)
228 1.1 gmcgarry {
229 1.21 ad struct ras *rp, **link;
230 1.21 ad void *endaddr;
231 1.21 ad proc_t *p;
232 1.21 ad
233 1.21 ad endaddr = (char *)addr + len;
234 1.21 ad p = curproc;
235 1.21 ad
236 1.21 ad mutex_enter(&p->p_raslock);
237 1.21 ad link = &p->p_raslist;
238 1.21 ad for (rp = *link; rp != NULL; link = &rp->ras_next, rp = *link) {
239 1.21 ad if (addr == rp->ras_startaddr && endaddr == rp->ras_endaddr)
240 1.1 gmcgarry break;
241 1.1 gmcgarry }
242 1.16 ad if (rp != NULL) {
243 1.21 ad *link = rp->ras_next;
244 1.21 ad ras_sync();
245 1.21 ad mutex_exit(&p->p_raslock);
246 1.16 ad pool_put(&ras_pool, rp);
247 1.21 ad return 0;
248 1.21 ad } else {
249 1.21 ad mutex_exit(&p->p_raslock);
250 1.21 ad return ESRCH;
251 1.16 ad }
252 1.1 gmcgarry }
253 1.1 gmcgarry
254 1.12 hannken #endif /* defined(__HAVE_RAS) */
255 1.12 hannken
256 1.1 gmcgarry /*ARGSUSED*/
257 1.1 gmcgarry int
258 1.15 yamt sys_rasctl(struct lwp *l, void *v, register_t *retval)
259 1.1 gmcgarry {
260 1.1 gmcgarry
261 1.1 gmcgarry #if defined(__HAVE_RAS)
262 1.1 gmcgarry
263 1.1 gmcgarry struct sys_rasctl_args /* {
264 1.17 christos syscallarg(void *) addr;
265 1.1 gmcgarry syscallarg(size_t) len;
266 1.1 gmcgarry syscallarg(int) op;
267 1.1 gmcgarry } */ *uap = v;
268 1.17 christos void *addr;
269 1.1 gmcgarry size_t len;
270 1.1 gmcgarry int op;
271 1.1 gmcgarry int error;
272 1.1 gmcgarry
273 1.1 gmcgarry /*
274 1.1 gmcgarry * first, extract syscall args from the uap.
275 1.1 gmcgarry */
276 1.1 gmcgarry
277 1.17 christos addr = (void *)SCARG(uap, addr);
278 1.1 gmcgarry len = (size_t)SCARG(uap, len);
279 1.1 gmcgarry op = SCARG(uap, op);
280 1.1 gmcgarry
281 1.2 thorpej DPRINTF(("sys_rasctl: p=%p addr=%p, len=%ld, op=0x%x\n",
282 1.21 ad curproc, addr, (long)len, op));
283 1.1 gmcgarry
284 1.1 gmcgarry switch (op) {
285 1.1 gmcgarry case RAS_INSTALL:
286 1.21 ad error = ras_install(addr, len);
287 1.1 gmcgarry break;
288 1.1 gmcgarry case RAS_PURGE:
289 1.21 ad error = ras_purge(addr, len);
290 1.1 gmcgarry break;
291 1.1 gmcgarry case RAS_PURGE_ALL:
292 1.21 ad error = ras_purgeall();
293 1.1 gmcgarry break;
294 1.1 gmcgarry default:
295 1.1 gmcgarry error = EINVAL;
296 1.1 gmcgarry break;
297 1.1 gmcgarry }
298 1.1 gmcgarry
299 1.1 gmcgarry return (error);
300 1.1 gmcgarry
301 1.1 gmcgarry #else
302 1.1 gmcgarry
303 1.1 gmcgarry return (EOPNOTSUPP);
304 1.1 gmcgarry
305 1.1 gmcgarry #endif
306 1.1 gmcgarry
307 1.1 gmcgarry }
308