uipc_socket.c revision 1.65 1 1.65 thorpej /* $NetBSD: uipc_socket.c,v 1.65 2002/05/03 00:35:14 thorpej Exp $ */
2 1.64 thorpej
3 1.64 thorpej /*-
4 1.64 thorpej * Copyright (c) 2002 The NetBSD Foundation, Inc.
5 1.64 thorpej * All rights reserved.
6 1.64 thorpej *
7 1.64 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.64 thorpej * by Jason R. Thorpe of Wasabi Systems, Inc.
9 1.64 thorpej *
10 1.64 thorpej * Redistribution and use in source and binary forms, with or without
11 1.64 thorpej * modification, are permitted provided that the following conditions
12 1.64 thorpej * are met:
13 1.64 thorpej * 1. Redistributions of source code must retain the above copyright
14 1.64 thorpej * notice, this list of conditions and the following disclaimer.
15 1.64 thorpej * 2. Redistributions in binary form must reproduce the above copyright
16 1.64 thorpej * notice, this list of conditions and the following disclaimer in the
17 1.64 thorpej * documentation and/or other materials provided with the distribution.
18 1.64 thorpej * 3. All advertising materials mentioning features or use of this software
19 1.64 thorpej * must display the following acknowledgement:
20 1.64 thorpej * This product includes software developed by the NetBSD
21 1.64 thorpej * Foundation, Inc. and its contributors.
22 1.64 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.64 thorpej * contributors may be used to endorse or promote products derived
24 1.64 thorpej * from this software without specific prior written permission.
25 1.64 thorpej *
26 1.64 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.64 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.64 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.64 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.64 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.64 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.64 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.64 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.64 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.64 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.64 thorpej * POSSIBILITY OF SUCH DAMAGE.
37 1.64 thorpej */
38 1.16 cgd
39 1.1 cgd /*
40 1.15 mycroft * Copyright (c) 1982, 1986, 1988, 1990, 1993
41 1.15 mycroft * The Regents of the University of California. All rights reserved.
42 1.1 cgd *
43 1.1 cgd * Redistribution and use in source and binary forms, with or without
44 1.1 cgd * modification, are permitted provided that the following conditions
45 1.1 cgd * are met:
46 1.1 cgd * 1. Redistributions of source code must retain the above copyright
47 1.1 cgd * notice, this list of conditions and the following disclaimer.
48 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
49 1.1 cgd * notice, this list of conditions and the following disclaimer in the
50 1.1 cgd * documentation and/or other materials provided with the distribution.
51 1.1 cgd * 3. All advertising materials mentioning features or use of this software
52 1.1 cgd * must display the following acknowledgement:
53 1.1 cgd * This product includes software developed by the University of
54 1.1 cgd * California, Berkeley and its contributors.
55 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
56 1.1 cgd * may be used to endorse or promote products derived from this software
57 1.1 cgd * without specific prior written permission.
58 1.1 cgd *
59 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
60 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
61 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
62 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
63 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
64 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
65 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
66 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
67 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
68 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
69 1.1 cgd * SUCH DAMAGE.
70 1.1 cgd *
71 1.32 fvdl * @(#)uipc_socket.c 8.6 (Berkeley) 5/2/95
72 1.1 cgd */
73 1.59 lukem
74 1.59 lukem #include <sys/cdefs.h>
75 1.65 thorpej __KERNEL_RCSID(0, "$NetBSD: uipc_socket.c,v 1.65 2002/05/03 00:35:14 thorpej Exp $");
76 1.64 thorpej
77 1.64 thorpej #include "opt_sock_counters.h"
78 1.64 thorpej #include "opt_sosend_loan.h"
79 1.1 cgd
80 1.9 mycroft #include <sys/param.h>
81 1.9 mycroft #include <sys/systm.h>
82 1.9 mycroft #include <sys/proc.h>
83 1.9 mycroft #include <sys/file.h>
84 1.9 mycroft #include <sys/malloc.h>
85 1.9 mycroft #include <sys/mbuf.h>
86 1.9 mycroft #include <sys/domain.h>
87 1.9 mycroft #include <sys/kernel.h>
88 1.9 mycroft #include <sys/protosw.h>
89 1.9 mycroft #include <sys/socket.h>
90 1.9 mycroft #include <sys/socketvar.h>
91 1.21 christos #include <sys/signalvar.h>
92 1.9 mycroft #include <sys/resourcevar.h>
93 1.37 thorpej #include <sys/pool.h>
94 1.37 thorpej
95 1.64 thorpej #include <uvm/uvm.h>
96 1.64 thorpej
97 1.54 lukem struct pool socket_pool;
98 1.37 thorpej
99 1.54 lukem extern int somaxconn; /* patchable (XXX sysctl) */
100 1.54 lukem int somaxconn = SOMAXCONN;
101 1.49 jonathan
102 1.64 thorpej #ifdef SOSEND_COUNTERS
103 1.64 thorpej #include <sys/device.h>
104 1.64 thorpej
105 1.64 thorpej struct evcnt sosend_loan_big = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
106 1.64 thorpej NULL, "sosend", "loan big");
107 1.64 thorpej struct evcnt sosend_copy_big = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
108 1.64 thorpej NULL, "sosend", "copy big");
109 1.64 thorpej struct evcnt sosend_copy_small = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
110 1.64 thorpej NULL, "sosend", "copy small");
111 1.64 thorpej struct evcnt sosend_kvalimit = EVCNT_INITIALIZER(EVCNT_TYPE_MISC,
112 1.64 thorpej NULL, "sosend", "kva limit");
113 1.64 thorpej
114 1.64 thorpej #define SOSEND_COUNTER_INCR(ev) (ev)->ev_count++
115 1.64 thorpej
116 1.64 thorpej #else
117 1.64 thorpej
118 1.64 thorpej #define SOSEND_COUNTER_INCR(ev) /* nothing */
119 1.64 thorpej
120 1.64 thorpej #endif /* SOSEND_COUNTERS */
121 1.64 thorpej
122 1.37 thorpej void
123 1.54 lukem soinit(void)
124 1.37 thorpej {
125 1.37 thorpej
126 1.37 thorpej pool_init(&socket_pool, sizeof(struct socket), 0, 0, 0,
127 1.62 thorpej "sockpl", NULL);
128 1.64 thorpej
129 1.64 thorpej #ifdef SOSEND_COUNTERS
130 1.64 thorpej evcnt_attach_static(&sosend_loan_big);
131 1.64 thorpej evcnt_attach_static(&sosend_copy_big);
132 1.64 thorpej evcnt_attach_static(&sosend_copy_small);
133 1.64 thorpej evcnt_attach_static(&sosend_kvalimit);
134 1.64 thorpej #endif /* SOSEND_COUNTERS */
135 1.37 thorpej }
136 1.1 cgd
137 1.64 thorpej #ifdef SOSEND_LOAN
138 1.65 thorpej int use_sosend_loan = 1;
139 1.65 thorpej #else
140 1.65 thorpej int use_sosend_loan = 0;
141 1.65 thorpej #endif
142 1.64 thorpej
143 1.64 thorpej struct mbuf *so_pendfree;
144 1.64 thorpej
145 1.64 thorpej int somaxkva = 16 * 1024 * 1024;
146 1.64 thorpej int socurkva;
147 1.64 thorpej int sokvawaiters;
148 1.64 thorpej
149 1.64 thorpej #define SOCK_LOAN_THRESH 4096
150 1.64 thorpej #define SOCK_LOAN_CHUNK 65536
151 1.64 thorpej
152 1.64 thorpej static void
153 1.64 thorpej sodoloanfree(caddr_t buf, u_int size)
154 1.64 thorpej {
155 1.64 thorpej struct vm_page **pgs;
156 1.64 thorpej vaddr_t va, sva, eva;
157 1.64 thorpej vsize_t len;
158 1.64 thorpej paddr_t pa;
159 1.64 thorpej int i, npgs;
160 1.64 thorpej
161 1.64 thorpej eva = round_page((vaddr_t) buf + size);
162 1.64 thorpej sva = trunc_page((vaddr_t) buf);
163 1.64 thorpej len = eva - sva;
164 1.64 thorpej npgs = len >> PAGE_SHIFT;
165 1.64 thorpej
166 1.64 thorpej pgs = alloca(npgs * sizeof(*pgs));
167 1.64 thorpej
168 1.64 thorpej for (i = 0, va = sva; va < eva; i++, va += PAGE_SIZE) {
169 1.64 thorpej if (pmap_extract(pmap_kernel(), va, &pa) == FALSE)
170 1.64 thorpej panic("sodoloanfree: va 0x%lx not mapped", va);
171 1.64 thorpej pgs[i] = PHYS_TO_VM_PAGE(pa);
172 1.64 thorpej }
173 1.64 thorpej
174 1.64 thorpej pmap_kremove(sva, len);
175 1.64 thorpej pmap_update(pmap_kernel());
176 1.64 thorpej uvm_unloan(pgs, npgs, UVM_LOAN_TOPAGE);
177 1.64 thorpej uvm_km_free(kernel_map, sva, len);
178 1.64 thorpej socurkva -= len;
179 1.64 thorpej if (sokvawaiters)
180 1.64 thorpej wakeup(&socurkva);
181 1.64 thorpej }
182 1.64 thorpej
183 1.64 thorpej static size_t
184 1.64 thorpej sodopendfree(struct socket *so)
185 1.64 thorpej {
186 1.64 thorpej struct mbuf *m;
187 1.64 thorpej size_t rv = 0;
188 1.64 thorpej int s;
189 1.64 thorpej
190 1.64 thorpej s = splvm();
191 1.64 thorpej
192 1.64 thorpej for (;;) {
193 1.64 thorpej m = so_pendfree;
194 1.64 thorpej if (m == NULL)
195 1.64 thorpej break;
196 1.64 thorpej so_pendfree = m->m_next;
197 1.64 thorpej splx(s);
198 1.64 thorpej
199 1.64 thorpej rv += m->m_ext.ext_size;
200 1.64 thorpej sodoloanfree(m->m_ext.ext_buf, m->m_ext.ext_size);
201 1.64 thorpej s = splvm();
202 1.64 thorpej pool_cache_put(&mbpool_cache, m);
203 1.64 thorpej }
204 1.64 thorpej
205 1.64 thorpej for (;;) {
206 1.64 thorpej m = so->so_pendfree;
207 1.64 thorpej if (m == NULL)
208 1.64 thorpej break;
209 1.64 thorpej so->so_pendfree = m->m_next;
210 1.64 thorpej splx(s);
211 1.64 thorpej
212 1.64 thorpej rv += m->m_ext.ext_size;
213 1.64 thorpej sodoloanfree(m->m_ext.ext_buf, m->m_ext.ext_size);
214 1.64 thorpej s = splvm();
215 1.64 thorpej pool_cache_put(&mbpool_cache, m);
216 1.64 thorpej }
217 1.64 thorpej
218 1.64 thorpej splx(s);
219 1.64 thorpej return (rv);
220 1.64 thorpej }
221 1.64 thorpej
222 1.64 thorpej static void
223 1.64 thorpej soloanfree(struct mbuf *m, caddr_t buf, u_int size, void *arg)
224 1.64 thorpej {
225 1.64 thorpej struct socket *so = arg;
226 1.64 thorpej int s;
227 1.64 thorpej
228 1.64 thorpej if (m == NULL) {
229 1.64 thorpej sodoloanfree(buf, size);
230 1.64 thorpej return;
231 1.64 thorpej }
232 1.64 thorpej
233 1.64 thorpej s = splvm();
234 1.64 thorpej m->m_next = so->so_pendfree;
235 1.64 thorpej so->so_pendfree = m;
236 1.64 thorpej splx(s);
237 1.64 thorpej if (sokvawaiters)
238 1.64 thorpej wakeup(&socurkva);
239 1.64 thorpej }
240 1.64 thorpej
241 1.64 thorpej static long
242 1.64 thorpej sosend_loan(struct socket *so, struct uio *uio, struct mbuf *m, long space)
243 1.64 thorpej {
244 1.64 thorpej struct iovec *iov = uio->uio_iov;
245 1.64 thorpej vaddr_t sva, eva;
246 1.64 thorpej vsize_t len;
247 1.64 thorpej struct vm_page **pgs;
248 1.64 thorpej vaddr_t lva, va;
249 1.64 thorpej int npgs, s, i, error;
250 1.64 thorpej
251 1.64 thorpej if (uio->uio_segflg != UIO_USERSPACE)
252 1.64 thorpej return (0);
253 1.64 thorpej
254 1.64 thorpej if (iov->iov_len < (size_t) space)
255 1.64 thorpej space = iov->iov_len;
256 1.64 thorpej if (space > SOCK_LOAN_CHUNK)
257 1.64 thorpej space = SOCK_LOAN_CHUNK;
258 1.64 thorpej
259 1.64 thorpej eva = round_page((vaddr_t) iov->iov_base + space);
260 1.64 thorpej sva = trunc_page((vaddr_t) iov->iov_base);
261 1.64 thorpej len = eva - sva;
262 1.64 thorpej npgs = len >> PAGE_SHIFT;
263 1.64 thorpej
264 1.64 thorpej while (socurkva + len > somaxkva) {
265 1.64 thorpej if (sodopendfree(so))
266 1.64 thorpej continue;
267 1.64 thorpej SOSEND_COUNTER_INCR(&sosend_kvalimit);
268 1.64 thorpej s = splvm();
269 1.64 thorpej sokvawaiters++;
270 1.64 thorpej (void) tsleep(&socurkva, PVM, "sokva", 0);
271 1.64 thorpej sokvawaiters--;
272 1.64 thorpej splx(s);
273 1.64 thorpej }
274 1.64 thorpej
275 1.64 thorpej lva = uvm_km_valloc_wait(kernel_map, len);
276 1.64 thorpej if (lva == 0)
277 1.64 thorpej return (0);
278 1.64 thorpej socurkva += len;
279 1.64 thorpej
280 1.64 thorpej pgs = alloca(npgs * sizeof(*pgs));
281 1.64 thorpej
282 1.64 thorpej error = uvm_loan(&uio->uio_procp->p_vmspace->vm_map, sva, len,
283 1.64 thorpej pgs, UVM_LOAN_TOPAGE);
284 1.64 thorpej if (error) {
285 1.64 thorpej uvm_km_free(kernel_map, lva, len);
286 1.64 thorpej socurkva -= len;
287 1.64 thorpej return (0);
288 1.64 thorpej }
289 1.64 thorpej
290 1.64 thorpej for (i = 0, va = lva; i < npgs; i++, va += PAGE_SIZE)
291 1.64 thorpej pmap_kenter_pa(va, VM_PAGE_TO_PHYS(pgs[i]), VM_PROT_READ);
292 1.64 thorpej pmap_update(pmap_kernel());
293 1.64 thorpej
294 1.64 thorpej lva += (vaddr_t) iov->iov_base & PAGE_MASK;
295 1.64 thorpej
296 1.64 thorpej MEXTADD(m, (caddr_t) lva, space, M_MBUF, soloanfree, so);
297 1.64 thorpej
298 1.64 thorpej uio->uio_resid -= space;
299 1.64 thorpej /* uio_offset not updated, not set/used for write(2) */
300 1.64 thorpej uio->uio_iov->iov_base = (caddr_t) uio->uio_iov->iov_base + space;
301 1.64 thorpej uio->uio_iov->iov_len -= space;
302 1.64 thorpej if (uio->uio_iov->iov_len == 0) {
303 1.64 thorpej uio->uio_iov++;
304 1.64 thorpej uio->uio_iovcnt--;
305 1.64 thorpej }
306 1.64 thorpej
307 1.64 thorpej return (space);
308 1.64 thorpej }
309 1.64 thorpej
310 1.1 cgd /*
311 1.1 cgd * Socket operation routines.
312 1.1 cgd * These routines are called by the routines in
313 1.1 cgd * sys_socket.c or from a system process, and
314 1.1 cgd * implement the semantics of socket operations by
315 1.1 cgd * switching out to the protocol specific routines.
316 1.1 cgd */
317 1.1 cgd /*ARGSUSED*/
318 1.3 andrew int
319 1.54 lukem socreate(int dom, struct socket **aso, int type, int proto)
320 1.1 cgd {
321 1.54 lukem struct proc *p;
322 1.54 lukem struct protosw *prp;
323 1.54 lukem struct socket *so;
324 1.54 lukem int error, s;
325 1.1 cgd
326 1.54 lukem p = curproc; /* XXX */
327 1.1 cgd if (proto)
328 1.1 cgd prp = pffindproto(dom, proto, type);
329 1.1 cgd else
330 1.1 cgd prp = pffindtype(dom, type);
331 1.15 mycroft if (prp == 0 || prp->pr_usrreq == 0)
332 1.1 cgd return (EPROTONOSUPPORT);
333 1.1 cgd if (prp->pr_type != type)
334 1.1 cgd return (EPROTOTYPE);
335 1.39 matt s = splsoftnet();
336 1.37 thorpej so = pool_get(&socket_pool, PR_WAITOK);
337 1.38 perry memset((caddr_t)so, 0, sizeof(*so));
338 1.31 thorpej TAILQ_INIT(&so->so_q0);
339 1.31 thorpej TAILQ_INIT(&so->so_q);
340 1.1 cgd so->so_type = type;
341 1.1 cgd so->so_proto = prp;
342 1.33 matt so->so_send = sosend;
343 1.33 matt so->so_receive = soreceive;
344 1.44 lukem if (p != 0)
345 1.44 lukem so->so_uid = p->p_ucred->cr_uid;
346 1.22 mycroft error = (*prp->pr_usrreq)(so, PRU_ATTACH, (struct mbuf *)0,
347 1.22 mycroft (struct mbuf *)(long)proto, (struct mbuf *)0, p);
348 1.1 cgd if (error) {
349 1.1 cgd so->so_state |= SS_NOFDREF;
350 1.1 cgd sofree(so);
351 1.39 matt splx(s);
352 1.1 cgd return (error);
353 1.1 cgd }
354 1.39 matt splx(s);
355 1.1 cgd *aso = so;
356 1.1 cgd return (0);
357 1.1 cgd }
358 1.1 cgd
359 1.3 andrew int
360 1.54 lukem sobind(struct socket *so, struct mbuf *nam, struct proc *p)
361 1.1 cgd {
362 1.54 lukem int s, error;
363 1.1 cgd
364 1.54 lukem s = splsoftnet();
365 1.22 mycroft error = (*so->so_proto->pr_usrreq)(so, PRU_BIND, (struct mbuf *)0,
366 1.22 mycroft nam, (struct mbuf *)0, p);
367 1.1 cgd splx(s);
368 1.1 cgd return (error);
369 1.1 cgd }
370 1.1 cgd
371 1.3 andrew int
372 1.54 lukem solisten(struct socket *so, int backlog)
373 1.1 cgd {
374 1.54 lukem int s, error;
375 1.1 cgd
376 1.54 lukem s = splsoftnet();
377 1.22 mycroft error = (*so->so_proto->pr_usrreq)(so, PRU_LISTEN, (struct mbuf *)0,
378 1.22 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct proc *)0);
379 1.1 cgd if (error) {
380 1.1 cgd splx(s);
381 1.1 cgd return (error);
382 1.1 cgd }
383 1.63 matt if (TAILQ_EMPTY(&so->so_q))
384 1.1 cgd so->so_options |= SO_ACCEPTCONN;
385 1.1 cgd if (backlog < 0)
386 1.1 cgd backlog = 0;
387 1.49 jonathan so->so_qlimit = min(backlog, somaxconn);
388 1.1 cgd splx(s);
389 1.1 cgd return (0);
390 1.1 cgd }
391 1.1 cgd
392 1.21 christos void
393 1.54 lukem sofree(struct socket *so)
394 1.1 cgd {
395 1.64 thorpej struct mbuf *m;
396 1.1 cgd
397 1.43 mycroft if (so->so_pcb || (so->so_state & SS_NOFDREF) == 0)
398 1.1 cgd return;
399 1.43 mycroft if (so->so_head) {
400 1.43 mycroft /*
401 1.43 mycroft * We must not decommission a socket that's on the accept(2)
402 1.43 mycroft * queue. If we do, then accept(2) may hang after select(2)
403 1.43 mycroft * indicated that the listening socket was ready.
404 1.43 mycroft */
405 1.43 mycroft if (!soqremque(so, 0))
406 1.43 mycroft return;
407 1.43 mycroft }
408 1.1 cgd sbrelease(&so->so_snd);
409 1.1 cgd sorflush(so);
410 1.64 thorpej while ((m = so->so_pendfree) != NULL) {
411 1.64 thorpej so->so_pendfree = m->m_next;
412 1.64 thorpej m->m_next = so_pendfree;
413 1.64 thorpej so_pendfree = m;
414 1.64 thorpej }
415 1.37 thorpej pool_put(&socket_pool, so);
416 1.1 cgd }
417 1.1 cgd
418 1.1 cgd /*
419 1.1 cgd * Close a socket on last file table reference removal.
420 1.1 cgd * Initiate disconnect if connected.
421 1.1 cgd * Free socket when disconnect complete.
422 1.1 cgd */
423 1.3 andrew int
424 1.54 lukem soclose(struct socket *so)
425 1.1 cgd {
426 1.54 lukem struct socket *so2;
427 1.54 lukem int s, error;
428 1.1 cgd
429 1.54 lukem error = 0;
430 1.54 lukem s = splsoftnet(); /* conservative */
431 1.1 cgd if (so->so_options & SO_ACCEPTCONN) {
432 1.63 matt while ((so2 = TAILQ_FIRST(&so->so_q0)) != 0) {
433 1.42 mycroft (void) soqremque(so2, 0);
434 1.41 mycroft (void) soabort(so2);
435 1.41 mycroft }
436 1.63 matt while ((so2 = TAILQ_FIRST(&so->so_q)) != 0) {
437 1.42 mycroft (void) soqremque(so2, 1);
438 1.41 mycroft (void) soabort(so2);
439 1.41 mycroft }
440 1.1 cgd }
441 1.1 cgd if (so->so_pcb == 0)
442 1.1 cgd goto discard;
443 1.1 cgd if (so->so_state & SS_ISCONNECTED) {
444 1.1 cgd if ((so->so_state & SS_ISDISCONNECTING) == 0) {
445 1.1 cgd error = sodisconnect(so);
446 1.1 cgd if (error)
447 1.1 cgd goto drop;
448 1.1 cgd }
449 1.1 cgd if (so->so_options & SO_LINGER) {
450 1.1 cgd if ((so->so_state & SS_ISDISCONNECTING) &&
451 1.1 cgd (so->so_state & SS_NBIO))
452 1.1 cgd goto drop;
453 1.21 christos while (so->so_state & SS_ISCONNECTED) {
454 1.21 christos error = tsleep((caddr_t)&so->so_timeo,
455 1.21 christos PSOCK | PCATCH, netcls,
456 1.30 thorpej so->so_linger * hz);
457 1.21 christos if (error)
458 1.1 cgd break;
459 1.21 christos }
460 1.1 cgd }
461 1.1 cgd }
462 1.54 lukem drop:
463 1.1 cgd if (so->so_pcb) {
464 1.22 mycroft int error2 = (*so->so_proto->pr_usrreq)(so, PRU_DETACH,
465 1.22 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct mbuf *)0,
466 1.22 mycroft (struct proc *)0);
467 1.1 cgd if (error == 0)
468 1.1 cgd error = error2;
469 1.1 cgd }
470 1.54 lukem discard:
471 1.1 cgd if (so->so_state & SS_NOFDREF)
472 1.1 cgd panic("soclose: NOFDREF");
473 1.1 cgd so->so_state |= SS_NOFDREF;
474 1.1 cgd sofree(so);
475 1.1 cgd splx(s);
476 1.1 cgd return (error);
477 1.1 cgd }
478 1.1 cgd
479 1.1 cgd /*
480 1.20 mycroft * Must be called at splsoftnet...
481 1.1 cgd */
482 1.3 andrew int
483 1.54 lukem soabort(struct socket *so)
484 1.1 cgd {
485 1.1 cgd
486 1.22 mycroft return (*so->so_proto->pr_usrreq)(so, PRU_ABORT, (struct mbuf *)0,
487 1.22 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct proc *)0);
488 1.1 cgd }
489 1.1 cgd
490 1.3 andrew int
491 1.54 lukem soaccept(struct socket *so, struct mbuf *nam)
492 1.1 cgd {
493 1.54 lukem int s, error;
494 1.1 cgd
495 1.54 lukem error = 0;
496 1.54 lukem s = splsoftnet();
497 1.1 cgd if ((so->so_state & SS_NOFDREF) == 0)
498 1.1 cgd panic("soaccept: !NOFDREF");
499 1.1 cgd so->so_state &= ~SS_NOFDREF;
500 1.55 thorpej if ((so->so_state & SS_ISDISCONNECTED) == 0 ||
501 1.55 thorpej (so->so_proto->pr_flags & PR_ABRTACPTDIS) == 0)
502 1.41 mycroft error = (*so->so_proto->pr_usrreq)(so, PRU_ACCEPT,
503 1.41 mycroft (struct mbuf *)0, nam, (struct mbuf *)0, (struct proc *)0);
504 1.41 mycroft else
505 1.53 itojun error = ECONNABORTED;
506 1.52 itojun
507 1.1 cgd splx(s);
508 1.1 cgd return (error);
509 1.1 cgd }
510 1.1 cgd
511 1.3 andrew int
512 1.54 lukem soconnect(struct socket *so, struct mbuf *nam)
513 1.1 cgd {
514 1.54 lukem struct proc *p;
515 1.54 lukem int s, error;
516 1.1 cgd
517 1.54 lukem p = curproc; /* XXX */
518 1.1 cgd if (so->so_options & SO_ACCEPTCONN)
519 1.1 cgd return (EOPNOTSUPP);
520 1.20 mycroft s = splsoftnet();
521 1.1 cgd /*
522 1.1 cgd * If protocol is connection-based, can only connect once.
523 1.1 cgd * Otherwise, if connected, try to disconnect first.
524 1.1 cgd * This allows user to disconnect by connecting to, e.g.,
525 1.1 cgd * a null address.
526 1.1 cgd */
527 1.1 cgd if (so->so_state & (SS_ISCONNECTED|SS_ISCONNECTING) &&
528 1.1 cgd ((so->so_proto->pr_flags & PR_CONNREQUIRED) ||
529 1.1 cgd (error = sodisconnect(so))))
530 1.1 cgd error = EISCONN;
531 1.1 cgd else
532 1.1 cgd error = (*so->so_proto->pr_usrreq)(so, PRU_CONNECT,
533 1.23 mycroft (struct mbuf *)0, nam, (struct mbuf *)0, p);
534 1.1 cgd splx(s);
535 1.1 cgd return (error);
536 1.1 cgd }
537 1.1 cgd
538 1.3 andrew int
539 1.54 lukem soconnect2(struct socket *so1, struct socket *so2)
540 1.1 cgd {
541 1.54 lukem int s, error;
542 1.1 cgd
543 1.54 lukem s = splsoftnet();
544 1.22 mycroft error = (*so1->so_proto->pr_usrreq)(so1, PRU_CONNECT2,
545 1.22 mycroft (struct mbuf *)0, (struct mbuf *)so2, (struct mbuf *)0,
546 1.22 mycroft (struct proc *)0);
547 1.1 cgd splx(s);
548 1.1 cgd return (error);
549 1.1 cgd }
550 1.1 cgd
551 1.3 andrew int
552 1.54 lukem sodisconnect(struct socket *so)
553 1.1 cgd {
554 1.54 lukem int s, error;
555 1.1 cgd
556 1.54 lukem s = splsoftnet();
557 1.1 cgd if ((so->so_state & SS_ISCONNECTED) == 0) {
558 1.1 cgd error = ENOTCONN;
559 1.1 cgd goto bad;
560 1.1 cgd }
561 1.1 cgd if (so->so_state & SS_ISDISCONNECTING) {
562 1.1 cgd error = EALREADY;
563 1.1 cgd goto bad;
564 1.1 cgd }
565 1.22 mycroft error = (*so->so_proto->pr_usrreq)(so, PRU_DISCONNECT,
566 1.22 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct mbuf *)0,
567 1.22 mycroft (struct proc *)0);
568 1.54 lukem bad:
569 1.1 cgd splx(s);
570 1.64 thorpej sodopendfree(so);
571 1.1 cgd return (error);
572 1.1 cgd }
573 1.1 cgd
574 1.15 mycroft #define SBLOCKWAIT(f) (((f) & MSG_DONTWAIT) ? M_NOWAIT : M_WAITOK)
575 1.1 cgd /*
576 1.1 cgd * Send on a socket.
577 1.1 cgd * If send must go all at once and message is larger than
578 1.1 cgd * send buffering, then hard error.
579 1.1 cgd * Lock against other senders.
580 1.1 cgd * If must go all at once and not enough room now, then
581 1.1 cgd * inform user that this would block and do nothing.
582 1.1 cgd * Otherwise, if nonblocking, send as much as possible.
583 1.1 cgd * The data to be sent is described by "uio" if nonzero,
584 1.1 cgd * otherwise by the mbuf chain "top" (which must be null
585 1.1 cgd * if uio is not). Data provided in mbuf chain must be small
586 1.1 cgd * enough to send all at once.
587 1.1 cgd *
588 1.1 cgd * Returns nonzero on error, timeout or signal; callers
589 1.1 cgd * must check for short counts if EINTR/ERESTART are returned.
590 1.1 cgd * Data and control buffers are freed on return.
591 1.1 cgd */
592 1.3 andrew int
593 1.54 lukem sosend(struct socket *so, struct mbuf *addr, struct uio *uio, struct mbuf *top,
594 1.54 lukem struct mbuf *control, int flags)
595 1.1 cgd {
596 1.54 lukem struct proc *p;
597 1.54 lukem struct mbuf **mp, *m;
598 1.58 jdolecek long space, len, resid, clen, mlen;
599 1.58 jdolecek int error, s, dontroute, atomic;
600 1.54 lukem
601 1.64 thorpej sodopendfree(so);
602 1.64 thorpej
603 1.54 lukem p = curproc; /* XXX */
604 1.54 lukem clen = 0;
605 1.54 lukem atomic = sosendallatonce(so) || top;
606 1.1 cgd if (uio)
607 1.1 cgd resid = uio->uio_resid;
608 1.1 cgd else
609 1.1 cgd resid = top->m_pkthdr.len;
610 1.7 cgd /*
611 1.7 cgd * In theory resid should be unsigned.
612 1.7 cgd * However, space must be signed, as it might be less than 0
613 1.7 cgd * if we over-committed, and we must use a signed comparison
614 1.7 cgd * of space and resid. On the other hand, a negative resid
615 1.7 cgd * causes us to loop sending 0-length segments to the protocol.
616 1.7 cgd */
617 1.29 mycroft if (resid < 0) {
618 1.29 mycroft error = EINVAL;
619 1.29 mycroft goto out;
620 1.29 mycroft }
621 1.1 cgd dontroute =
622 1.1 cgd (flags & MSG_DONTROUTE) && (so->so_options & SO_DONTROUTE) == 0 &&
623 1.1 cgd (so->so_proto->pr_flags & PR_ATOMIC);
624 1.12 mycroft p->p_stats->p_ru.ru_msgsnd++;
625 1.1 cgd if (control)
626 1.1 cgd clen = control->m_len;
627 1.1 cgd #define snderr(errno) { error = errno; splx(s); goto release; }
628 1.1 cgd
629 1.54 lukem restart:
630 1.21 christos if ((error = sblock(&so->so_snd, SBLOCKWAIT(flags))) != 0)
631 1.1 cgd goto out;
632 1.1 cgd do {
633 1.20 mycroft s = splsoftnet();
634 1.1 cgd if (so->so_state & SS_CANTSENDMORE)
635 1.1 cgd snderr(EPIPE);
636 1.48 thorpej if (so->so_error) {
637 1.48 thorpej error = so->so_error;
638 1.48 thorpej so->so_error = 0;
639 1.48 thorpej splx(s);
640 1.48 thorpej goto release;
641 1.48 thorpej }
642 1.1 cgd if ((so->so_state & SS_ISCONNECTED) == 0) {
643 1.1 cgd if (so->so_proto->pr_flags & PR_CONNREQUIRED) {
644 1.1 cgd if ((so->so_state & SS_ISCONFIRMING) == 0 &&
645 1.1 cgd !(resid == 0 && clen != 0))
646 1.1 cgd snderr(ENOTCONN);
647 1.1 cgd } else if (addr == 0)
648 1.1 cgd snderr(EDESTADDRREQ);
649 1.1 cgd }
650 1.1 cgd space = sbspace(&so->so_snd);
651 1.1 cgd if (flags & MSG_OOB)
652 1.1 cgd space += 1024;
653 1.21 christos if ((atomic && resid > so->so_snd.sb_hiwat) ||
654 1.11 mycroft clen > so->so_snd.sb_hiwat)
655 1.11 mycroft snderr(EMSGSIZE);
656 1.11 mycroft if (space < resid + clen && uio &&
657 1.1 cgd (atomic || space < so->so_snd.sb_lowat || space < clen)) {
658 1.1 cgd if (so->so_state & SS_NBIO)
659 1.1 cgd snderr(EWOULDBLOCK);
660 1.1 cgd sbunlock(&so->so_snd);
661 1.1 cgd error = sbwait(&so->so_snd);
662 1.1 cgd splx(s);
663 1.1 cgd if (error)
664 1.1 cgd goto out;
665 1.1 cgd goto restart;
666 1.1 cgd }
667 1.1 cgd splx(s);
668 1.1 cgd mp = ⊤
669 1.1 cgd space -= clen;
670 1.1 cgd do {
671 1.45 tv if (uio == NULL) {
672 1.45 tv /*
673 1.45 tv * Data is prepackaged in "top".
674 1.45 tv */
675 1.45 tv resid = 0;
676 1.45 tv if (flags & MSG_EOR)
677 1.45 tv top->m_flags |= M_EOR;
678 1.45 tv } else do {
679 1.45 tv if (top == 0) {
680 1.45 tv MGETHDR(m, M_WAIT, MT_DATA);
681 1.45 tv mlen = MHLEN;
682 1.45 tv m->m_pkthdr.len = 0;
683 1.45 tv m->m_pkthdr.rcvif = (struct ifnet *)0;
684 1.45 tv } else {
685 1.45 tv MGET(m, M_WAIT, MT_DATA);
686 1.45 tv mlen = MLEN;
687 1.45 tv }
688 1.65 thorpej if (use_sosend_loan &&
689 1.65 thorpej uio->uio_iov->iov_len >= SOCK_LOAN_THRESH &&
690 1.64 thorpej space >= SOCK_LOAN_THRESH &&
691 1.64 thorpej (len = sosend_loan(so, uio, m,
692 1.64 thorpej space)) != 0) {
693 1.64 thorpej SOSEND_COUNTER_INCR(&sosend_loan_big);
694 1.64 thorpej space -= len;
695 1.64 thorpej goto have_data;
696 1.64 thorpej }
697 1.45 tv if (resid >= MINCLSIZE && space >= MCLBYTES) {
698 1.64 thorpej SOSEND_COUNTER_INCR(&sosend_copy_big);
699 1.45 tv MCLGET(m, M_WAIT);
700 1.45 tv if ((m->m_flags & M_EXT) == 0)
701 1.45 tv goto nopages;
702 1.45 tv mlen = MCLBYTES;
703 1.45 tv if (atomic && top == 0) {
704 1.58 jdolecek len = lmin(MCLBYTES - max_hdr,
705 1.54 lukem resid);
706 1.45 tv m->m_data += max_hdr;
707 1.45 tv } else
708 1.58 jdolecek len = lmin(MCLBYTES, resid);
709 1.45 tv space -= len;
710 1.45 tv } else {
711 1.64 thorpej nopages:
712 1.64 thorpej SOSEND_COUNTER_INCR(&sosend_copy_small);
713 1.58 jdolecek len = lmin(lmin(mlen, resid), space);
714 1.45 tv space -= len;
715 1.45 tv /*
716 1.45 tv * For datagram protocols, leave room
717 1.45 tv * for protocol headers in first mbuf.
718 1.45 tv */
719 1.45 tv if (atomic && top == 0 && len < mlen)
720 1.45 tv MH_ALIGN(m, len);
721 1.45 tv }
722 1.54 lukem error = uiomove(mtod(m, caddr_t), (int)len,
723 1.54 lukem uio);
724 1.64 thorpej have_data:
725 1.45 tv resid = uio->uio_resid;
726 1.45 tv m->m_len = len;
727 1.45 tv *mp = m;
728 1.45 tv top->m_pkthdr.len += len;
729 1.45 tv if (error)
730 1.45 tv goto release;
731 1.45 tv mp = &m->m_next;
732 1.45 tv if (resid <= 0) {
733 1.45 tv if (flags & MSG_EOR)
734 1.45 tv top->m_flags |= M_EOR;
735 1.45 tv break;
736 1.45 tv }
737 1.45 tv } while (space > 0 && atomic);
738 1.46 sommerfe
739 1.46 sommerfe s = splsoftnet();
740 1.46 sommerfe
741 1.46 sommerfe if (so->so_state & SS_CANTSENDMORE)
742 1.46 sommerfe snderr(EPIPE);
743 1.45 tv
744 1.45 tv if (dontroute)
745 1.45 tv so->so_options |= SO_DONTROUTE;
746 1.45 tv if (resid > 0)
747 1.45 tv so->so_state |= SS_MORETOCOME;
748 1.46 sommerfe error = (*so->so_proto->pr_usrreq)(so,
749 1.46 sommerfe (flags & MSG_OOB) ? PRU_SENDOOB : PRU_SEND,
750 1.46 sommerfe top, addr, control, p);
751 1.45 tv if (dontroute)
752 1.45 tv so->so_options &= ~SO_DONTROUTE;
753 1.45 tv if (resid > 0)
754 1.45 tv so->so_state &= ~SS_MORETOCOME;
755 1.46 sommerfe splx(s);
756 1.46 sommerfe
757 1.45 tv clen = 0;
758 1.45 tv control = 0;
759 1.45 tv top = 0;
760 1.45 tv mp = ⊤
761 1.1 cgd if (error)
762 1.1 cgd goto release;
763 1.1 cgd } while (resid && space > 0);
764 1.1 cgd } while (resid);
765 1.1 cgd
766 1.54 lukem release:
767 1.1 cgd sbunlock(&so->so_snd);
768 1.54 lukem out:
769 1.1 cgd if (top)
770 1.1 cgd m_freem(top);
771 1.1 cgd if (control)
772 1.1 cgd m_freem(control);
773 1.1 cgd return (error);
774 1.1 cgd }
775 1.1 cgd
776 1.1 cgd /*
777 1.1 cgd * Implement receive operations on a socket.
778 1.1 cgd * We depend on the way that records are added to the sockbuf
779 1.1 cgd * by sbappend*. In particular, each record (mbufs linked through m_next)
780 1.1 cgd * must begin with an address if the protocol so specifies,
781 1.1 cgd * followed by an optional mbuf or mbufs containing ancillary data,
782 1.1 cgd * and then zero or more mbufs of data.
783 1.1 cgd * In order to avoid blocking network interrupts for the entire time here,
784 1.1 cgd * we splx() while doing the actual copy to user space.
785 1.1 cgd * Although the sockbuf is locked, new data may still be appended,
786 1.1 cgd * and thus we must maintain consistency of the sockbuf during that time.
787 1.1 cgd *
788 1.1 cgd * The caller may receive the data as a single mbuf chain by supplying
789 1.1 cgd * an mbuf **mp0 for use in returning the chain. The uio is then used
790 1.1 cgd * only for the count in uio_resid.
791 1.1 cgd */
792 1.3 andrew int
793 1.54 lukem soreceive(struct socket *so, struct mbuf **paddr, struct uio *uio,
794 1.54 lukem struct mbuf **mp0, struct mbuf **controlp, int *flagsp)
795 1.1 cgd {
796 1.54 lukem struct mbuf *m, **mp;
797 1.54 lukem int flags, len, error, s, offset, moff, type, orig_resid;
798 1.54 lukem struct protosw *pr;
799 1.54 lukem struct mbuf *nextrecord;
800 1.64 thorpej
801 1.64 thorpej sodopendfree(so);
802 1.1 cgd
803 1.54 lukem pr = so->so_proto;
804 1.1 cgd mp = mp0;
805 1.54 lukem type = 0;
806 1.54 lukem orig_resid = uio->uio_resid;
807 1.1 cgd if (paddr)
808 1.1 cgd *paddr = 0;
809 1.1 cgd if (controlp)
810 1.1 cgd *controlp = 0;
811 1.1 cgd if (flagsp)
812 1.1 cgd flags = *flagsp &~ MSG_EOR;
813 1.1 cgd else
814 1.1 cgd flags = 0;
815 1.1 cgd if (flags & MSG_OOB) {
816 1.1 cgd m = m_get(M_WAIT, MT_DATA);
817 1.17 cgd error = (*pr->pr_usrreq)(so, PRU_RCVOOB, m,
818 1.22 mycroft (struct mbuf *)(long)(flags & MSG_PEEK), (struct mbuf *)0,
819 1.22 mycroft (struct proc *)0);
820 1.1 cgd if (error)
821 1.1 cgd goto bad;
822 1.1 cgd do {
823 1.1 cgd error = uiomove(mtod(m, caddr_t),
824 1.1 cgd (int) min(uio->uio_resid, m->m_len), uio);
825 1.1 cgd m = m_free(m);
826 1.1 cgd } while (uio->uio_resid && error == 0 && m);
827 1.54 lukem bad:
828 1.1 cgd if (m)
829 1.1 cgd m_freem(m);
830 1.1 cgd return (error);
831 1.1 cgd }
832 1.1 cgd if (mp)
833 1.1 cgd *mp = (struct mbuf *)0;
834 1.1 cgd if (so->so_state & SS_ISCONFIRMING && uio->uio_resid)
835 1.22 mycroft (*pr->pr_usrreq)(so, PRU_RCVD, (struct mbuf *)0,
836 1.22 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct proc *)0);
837 1.1 cgd
838 1.54 lukem restart:
839 1.21 christos if ((error = sblock(&so->so_rcv, SBLOCKWAIT(flags))) != 0)
840 1.1 cgd return (error);
841 1.20 mycroft s = splsoftnet();
842 1.1 cgd
843 1.1 cgd m = so->so_rcv.sb_mb;
844 1.1 cgd /*
845 1.1 cgd * If we have less data than requested, block awaiting more
846 1.1 cgd * (subject to any timeout) if:
847 1.15 mycroft * 1. the current count is less than the low water mark,
848 1.1 cgd * 2. MSG_WAITALL is set, and it is possible to do the entire
849 1.15 mycroft * receive operation at once if we block (resid <= hiwat), or
850 1.15 mycroft * 3. MSG_DONTWAIT is not set.
851 1.1 cgd * If MSG_WAITALL is set but resid is larger than the receive buffer,
852 1.1 cgd * we have to do the receive in sections, and thus risk returning
853 1.1 cgd * a short count if a timeout or signal occurs after we start.
854 1.1 cgd */
855 1.21 christos if (m == 0 || (((flags & MSG_DONTWAIT) == 0 &&
856 1.15 mycroft so->so_rcv.sb_cc < uio->uio_resid) &&
857 1.1 cgd (so->so_rcv.sb_cc < so->so_rcv.sb_lowat ||
858 1.1 cgd ((flags & MSG_WAITALL) && uio->uio_resid <= so->so_rcv.sb_hiwat)) &&
859 1.21 christos m->m_nextpkt == 0 && (pr->pr_flags & PR_ATOMIC) == 0)) {
860 1.1 cgd #ifdef DIAGNOSTIC
861 1.1 cgd if (m == 0 && so->so_rcv.sb_cc)
862 1.1 cgd panic("receive 1");
863 1.1 cgd #endif
864 1.1 cgd if (so->so_error) {
865 1.1 cgd if (m)
866 1.15 mycroft goto dontblock;
867 1.1 cgd error = so->so_error;
868 1.1 cgd if ((flags & MSG_PEEK) == 0)
869 1.1 cgd so->so_error = 0;
870 1.1 cgd goto release;
871 1.1 cgd }
872 1.1 cgd if (so->so_state & SS_CANTRCVMORE) {
873 1.1 cgd if (m)
874 1.15 mycroft goto dontblock;
875 1.1 cgd else
876 1.1 cgd goto release;
877 1.1 cgd }
878 1.1 cgd for (; m; m = m->m_next)
879 1.1 cgd if (m->m_type == MT_OOBDATA || (m->m_flags & M_EOR)) {
880 1.1 cgd m = so->so_rcv.sb_mb;
881 1.1 cgd goto dontblock;
882 1.1 cgd }
883 1.1 cgd if ((so->so_state & (SS_ISCONNECTED|SS_ISCONNECTING)) == 0 &&
884 1.1 cgd (so->so_proto->pr_flags & PR_CONNREQUIRED)) {
885 1.1 cgd error = ENOTCONN;
886 1.1 cgd goto release;
887 1.1 cgd }
888 1.1 cgd if (uio->uio_resid == 0)
889 1.1 cgd goto release;
890 1.15 mycroft if ((so->so_state & SS_NBIO) || (flags & MSG_DONTWAIT)) {
891 1.1 cgd error = EWOULDBLOCK;
892 1.1 cgd goto release;
893 1.1 cgd }
894 1.1 cgd sbunlock(&so->so_rcv);
895 1.1 cgd error = sbwait(&so->so_rcv);
896 1.1 cgd splx(s);
897 1.1 cgd if (error)
898 1.1 cgd return (error);
899 1.1 cgd goto restart;
900 1.1 cgd }
901 1.54 lukem dontblock:
902 1.15 mycroft #ifdef notyet /* XXXX */
903 1.15 mycroft if (uio->uio_procp)
904 1.15 mycroft uio->uio_procp->p_stats->p_ru.ru_msgrcv++;
905 1.15 mycroft #endif
906 1.1 cgd nextrecord = m->m_nextpkt;
907 1.1 cgd if (pr->pr_flags & PR_ADDR) {
908 1.1 cgd #ifdef DIAGNOSTIC
909 1.1 cgd if (m->m_type != MT_SONAME)
910 1.1 cgd panic("receive 1a");
911 1.1 cgd #endif
912 1.3 andrew orig_resid = 0;
913 1.1 cgd if (flags & MSG_PEEK) {
914 1.1 cgd if (paddr)
915 1.1 cgd *paddr = m_copy(m, 0, m->m_len);
916 1.1 cgd m = m->m_next;
917 1.1 cgd } else {
918 1.1 cgd sbfree(&so->so_rcv, m);
919 1.1 cgd if (paddr) {
920 1.1 cgd *paddr = m;
921 1.1 cgd so->so_rcv.sb_mb = m->m_next;
922 1.1 cgd m->m_next = 0;
923 1.1 cgd m = so->so_rcv.sb_mb;
924 1.1 cgd } else {
925 1.1 cgd MFREE(m, so->so_rcv.sb_mb);
926 1.1 cgd m = so->so_rcv.sb_mb;
927 1.1 cgd }
928 1.1 cgd }
929 1.1 cgd }
930 1.1 cgd while (m && m->m_type == MT_CONTROL && error == 0) {
931 1.1 cgd if (flags & MSG_PEEK) {
932 1.1 cgd if (controlp)
933 1.1 cgd *controlp = m_copy(m, 0, m->m_len);
934 1.1 cgd m = m->m_next;
935 1.1 cgd } else {
936 1.1 cgd sbfree(&so->so_rcv, m);
937 1.1 cgd if (controlp) {
938 1.1 cgd if (pr->pr_domain->dom_externalize &&
939 1.1 cgd mtod(m, struct cmsghdr *)->cmsg_type ==
940 1.1 cgd SCM_RIGHTS)
941 1.45 tv error = (*pr->pr_domain->dom_externalize)(m);
942 1.1 cgd *controlp = m;
943 1.1 cgd so->so_rcv.sb_mb = m->m_next;
944 1.1 cgd m->m_next = 0;
945 1.1 cgd m = so->so_rcv.sb_mb;
946 1.1 cgd } else {
947 1.1 cgd MFREE(m, so->so_rcv.sb_mb);
948 1.1 cgd m = so->so_rcv.sb_mb;
949 1.1 cgd }
950 1.1 cgd }
951 1.3 andrew if (controlp) {
952 1.3 andrew orig_resid = 0;
953 1.1 cgd controlp = &(*controlp)->m_next;
954 1.3 andrew }
955 1.1 cgd }
956 1.1 cgd if (m) {
957 1.1 cgd if ((flags & MSG_PEEK) == 0)
958 1.1 cgd m->m_nextpkt = nextrecord;
959 1.1 cgd type = m->m_type;
960 1.1 cgd if (type == MT_OOBDATA)
961 1.1 cgd flags |= MSG_OOB;
962 1.1 cgd }
963 1.1 cgd moff = 0;
964 1.1 cgd offset = 0;
965 1.1 cgd while (m && uio->uio_resid > 0 && error == 0) {
966 1.1 cgd if (m->m_type == MT_OOBDATA) {
967 1.1 cgd if (type != MT_OOBDATA)
968 1.1 cgd break;
969 1.1 cgd } else if (type == MT_OOBDATA)
970 1.1 cgd break;
971 1.1 cgd #ifdef DIAGNOSTIC
972 1.1 cgd else if (m->m_type != MT_DATA && m->m_type != MT_HEADER)
973 1.1 cgd panic("receive 3");
974 1.1 cgd #endif
975 1.1 cgd so->so_state &= ~SS_RCVATMARK;
976 1.1 cgd len = uio->uio_resid;
977 1.1 cgd if (so->so_oobmark && len > so->so_oobmark - offset)
978 1.1 cgd len = so->so_oobmark - offset;
979 1.1 cgd if (len > m->m_len - moff)
980 1.1 cgd len = m->m_len - moff;
981 1.1 cgd /*
982 1.1 cgd * If mp is set, just pass back the mbufs.
983 1.1 cgd * Otherwise copy them out via the uio, then free.
984 1.1 cgd * Sockbuf must be consistent here (points to current mbuf,
985 1.1 cgd * it points to next record) when we drop priority;
986 1.1 cgd * we must note any additions to the sockbuf when we
987 1.1 cgd * block interrupts again.
988 1.1 cgd */
989 1.1 cgd if (mp == 0) {
990 1.1 cgd splx(s);
991 1.1 cgd error = uiomove(mtod(m, caddr_t) + moff, (int)len, uio);
992 1.20 mycroft s = splsoftnet();
993 1.57 jdolecek if (error)
994 1.57 jdolecek goto release;
995 1.1 cgd } else
996 1.1 cgd uio->uio_resid -= len;
997 1.1 cgd if (len == m->m_len - moff) {
998 1.1 cgd if (m->m_flags & M_EOR)
999 1.1 cgd flags |= MSG_EOR;
1000 1.1 cgd if (flags & MSG_PEEK) {
1001 1.1 cgd m = m->m_next;
1002 1.1 cgd moff = 0;
1003 1.1 cgd } else {
1004 1.1 cgd nextrecord = m->m_nextpkt;
1005 1.1 cgd sbfree(&so->so_rcv, m);
1006 1.1 cgd if (mp) {
1007 1.1 cgd *mp = m;
1008 1.1 cgd mp = &m->m_next;
1009 1.1 cgd so->so_rcv.sb_mb = m = m->m_next;
1010 1.1 cgd *mp = (struct mbuf *)0;
1011 1.1 cgd } else {
1012 1.1 cgd MFREE(m, so->so_rcv.sb_mb);
1013 1.1 cgd m = so->so_rcv.sb_mb;
1014 1.1 cgd }
1015 1.1 cgd if (m)
1016 1.1 cgd m->m_nextpkt = nextrecord;
1017 1.1 cgd }
1018 1.1 cgd } else {
1019 1.1 cgd if (flags & MSG_PEEK)
1020 1.1 cgd moff += len;
1021 1.1 cgd else {
1022 1.1 cgd if (mp)
1023 1.1 cgd *mp = m_copym(m, 0, len, M_WAIT);
1024 1.1 cgd m->m_data += len;
1025 1.1 cgd m->m_len -= len;
1026 1.1 cgd so->so_rcv.sb_cc -= len;
1027 1.1 cgd }
1028 1.1 cgd }
1029 1.1 cgd if (so->so_oobmark) {
1030 1.1 cgd if ((flags & MSG_PEEK) == 0) {
1031 1.1 cgd so->so_oobmark -= len;
1032 1.1 cgd if (so->so_oobmark == 0) {
1033 1.1 cgd so->so_state |= SS_RCVATMARK;
1034 1.1 cgd break;
1035 1.1 cgd }
1036 1.7 cgd } else {
1037 1.1 cgd offset += len;
1038 1.7 cgd if (offset == so->so_oobmark)
1039 1.7 cgd break;
1040 1.7 cgd }
1041 1.1 cgd }
1042 1.1 cgd if (flags & MSG_EOR)
1043 1.1 cgd break;
1044 1.1 cgd /*
1045 1.1 cgd * If the MSG_WAITALL flag is set (for non-atomic socket),
1046 1.1 cgd * we must not quit until "uio->uio_resid == 0" or an error
1047 1.1 cgd * termination. If a signal/timeout occurs, return
1048 1.1 cgd * with a short count but without error.
1049 1.1 cgd * Keep sockbuf locked against other readers.
1050 1.1 cgd */
1051 1.1 cgd while (flags & MSG_WAITALL && m == 0 && uio->uio_resid > 0 &&
1052 1.3 andrew !sosendallatonce(so) && !nextrecord) {
1053 1.1 cgd if (so->so_error || so->so_state & SS_CANTRCVMORE)
1054 1.1 cgd break;
1055 1.1 cgd error = sbwait(&so->so_rcv);
1056 1.1 cgd if (error) {
1057 1.1 cgd sbunlock(&so->so_rcv);
1058 1.1 cgd splx(s);
1059 1.1 cgd return (0);
1060 1.1 cgd }
1061 1.21 christos if ((m = so->so_rcv.sb_mb) != NULL)
1062 1.1 cgd nextrecord = m->m_nextpkt;
1063 1.1 cgd }
1064 1.1 cgd }
1065 1.3 andrew
1066 1.3 andrew if (m && pr->pr_flags & PR_ATOMIC) {
1067 1.3 andrew flags |= MSG_TRUNC;
1068 1.3 andrew if ((flags & MSG_PEEK) == 0)
1069 1.3 andrew (void) sbdroprecord(&so->so_rcv);
1070 1.3 andrew }
1071 1.1 cgd if ((flags & MSG_PEEK) == 0) {
1072 1.1 cgd if (m == 0)
1073 1.1 cgd so->so_rcv.sb_mb = nextrecord;
1074 1.1 cgd if (pr->pr_flags & PR_WANTRCVD && so->so_pcb)
1075 1.22 mycroft (*pr->pr_usrreq)(so, PRU_RCVD, (struct mbuf *)0,
1076 1.22 mycroft (struct mbuf *)(long)flags, (struct mbuf *)0,
1077 1.22 mycroft (struct proc *)0);
1078 1.1 cgd }
1079 1.3 andrew if (orig_resid == uio->uio_resid && orig_resid &&
1080 1.3 andrew (flags & MSG_EOR) == 0 && (so->so_state & SS_CANTRCVMORE) == 0) {
1081 1.3 andrew sbunlock(&so->so_rcv);
1082 1.3 andrew splx(s);
1083 1.3 andrew goto restart;
1084 1.3 andrew }
1085 1.3 andrew
1086 1.1 cgd if (flagsp)
1087 1.1 cgd *flagsp |= flags;
1088 1.54 lukem release:
1089 1.1 cgd sbunlock(&so->so_rcv);
1090 1.1 cgd splx(s);
1091 1.1 cgd return (error);
1092 1.1 cgd }
1093 1.1 cgd
1094 1.14 mycroft int
1095 1.54 lukem soshutdown(struct socket *so, int how)
1096 1.1 cgd {
1097 1.54 lukem struct protosw *pr;
1098 1.34 kleink
1099 1.54 lukem pr = so->so_proto;
1100 1.34 kleink if (!(how == SHUT_RD || how == SHUT_WR || how == SHUT_RDWR))
1101 1.34 kleink return (EINVAL);
1102 1.1 cgd
1103 1.34 kleink if (how == SHUT_RD || how == SHUT_RDWR)
1104 1.1 cgd sorflush(so);
1105 1.34 kleink if (how == SHUT_WR || how == SHUT_RDWR)
1106 1.22 mycroft return (*pr->pr_usrreq)(so, PRU_SHUTDOWN, (struct mbuf *)0,
1107 1.22 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct proc *)0);
1108 1.1 cgd return (0);
1109 1.1 cgd }
1110 1.1 cgd
1111 1.14 mycroft void
1112 1.54 lukem sorflush(struct socket *so)
1113 1.1 cgd {
1114 1.54 lukem struct sockbuf *sb, asb;
1115 1.54 lukem struct protosw *pr;
1116 1.54 lukem int s;
1117 1.1 cgd
1118 1.54 lukem sb = &so->so_rcv;
1119 1.54 lukem pr = so->so_proto;
1120 1.1 cgd sb->sb_flags |= SB_NOINTR;
1121 1.15 mycroft (void) sblock(sb, M_WAITOK);
1122 1.56 thorpej s = splnet();
1123 1.1 cgd socantrcvmore(so);
1124 1.1 cgd sbunlock(sb);
1125 1.1 cgd asb = *sb;
1126 1.38 perry memset((caddr_t)sb, 0, sizeof(*sb));
1127 1.1 cgd splx(s);
1128 1.1 cgd if (pr->pr_flags & PR_RIGHTS && pr->pr_domain->dom_dispose)
1129 1.1 cgd (*pr->pr_domain->dom_dispose)(asb.sb_mb);
1130 1.1 cgd sbrelease(&asb);
1131 1.1 cgd }
1132 1.1 cgd
1133 1.14 mycroft int
1134 1.54 lukem sosetopt(struct socket *so, int level, int optname, struct mbuf *m0)
1135 1.1 cgd {
1136 1.54 lukem int error;
1137 1.54 lukem struct mbuf *m;
1138 1.1 cgd
1139 1.54 lukem error = 0;
1140 1.54 lukem m = m0;
1141 1.1 cgd if (level != SOL_SOCKET) {
1142 1.1 cgd if (so->so_proto && so->so_proto->pr_ctloutput)
1143 1.1 cgd return ((*so->so_proto->pr_ctloutput)
1144 1.1 cgd (PRCO_SETOPT, so, level, optname, &m0));
1145 1.1 cgd error = ENOPROTOOPT;
1146 1.1 cgd } else {
1147 1.1 cgd switch (optname) {
1148 1.1 cgd
1149 1.1 cgd case SO_LINGER:
1150 1.36 perry if (m == NULL || m->m_len != sizeof(struct linger)) {
1151 1.1 cgd error = EINVAL;
1152 1.1 cgd goto bad;
1153 1.1 cgd }
1154 1.1 cgd so->so_linger = mtod(m, struct linger *)->l_linger;
1155 1.1 cgd /* fall thru... */
1156 1.1 cgd
1157 1.1 cgd case SO_DEBUG:
1158 1.1 cgd case SO_KEEPALIVE:
1159 1.1 cgd case SO_DONTROUTE:
1160 1.1 cgd case SO_USELOOPBACK:
1161 1.1 cgd case SO_BROADCAST:
1162 1.1 cgd case SO_REUSEADDR:
1163 1.15 mycroft case SO_REUSEPORT:
1164 1.1 cgd case SO_OOBINLINE:
1165 1.26 thorpej case SO_TIMESTAMP:
1166 1.36 perry if (m == NULL || m->m_len < sizeof(int)) {
1167 1.1 cgd error = EINVAL;
1168 1.1 cgd goto bad;
1169 1.1 cgd }
1170 1.1 cgd if (*mtod(m, int *))
1171 1.1 cgd so->so_options |= optname;
1172 1.1 cgd else
1173 1.1 cgd so->so_options &= ~optname;
1174 1.1 cgd break;
1175 1.1 cgd
1176 1.1 cgd case SO_SNDBUF:
1177 1.1 cgd case SO_RCVBUF:
1178 1.1 cgd case SO_SNDLOWAT:
1179 1.1 cgd case SO_RCVLOWAT:
1180 1.28 thorpej {
1181 1.28 thorpej int optval;
1182 1.28 thorpej
1183 1.36 perry if (m == NULL || m->m_len < sizeof(int)) {
1184 1.1 cgd error = EINVAL;
1185 1.1 cgd goto bad;
1186 1.1 cgd }
1187 1.28 thorpej
1188 1.28 thorpej /*
1189 1.28 thorpej * Values < 1 make no sense for any of these
1190 1.28 thorpej * options, so disallow them.
1191 1.28 thorpej */
1192 1.28 thorpej optval = *mtod(m, int *);
1193 1.28 thorpej if (optval < 1) {
1194 1.28 thorpej error = EINVAL;
1195 1.28 thorpej goto bad;
1196 1.28 thorpej }
1197 1.28 thorpej
1198 1.1 cgd switch (optname) {
1199 1.1 cgd
1200 1.1 cgd case SO_SNDBUF:
1201 1.1 cgd case SO_RCVBUF:
1202 1.1 cgd if (sbreserve(optname == SO_SNDBUF ?
1203 1.1 cgd &so->so_snd : &so->so_rcv,
1204 1.28 thorpej (u_long) optval) == 0) {
1205 1.1 cgd error = ENOBUFS;
1206 1.1 cgd goto bad;
1207 1.1 cgd }
1208 1.1 cgd break;
1209 1.1 cgd
1210 1.28 thorpej /*
1211 1.28 thorpej * Make sure the low-water is never greater than
1212 1.28 thorpej * the high-water.
1213 1.28 thorpej */
1214 1.1 cgd case SO_SNDLOWAT:
1215 1.28 thorpej so->so_snd.sb_lowat =
1216 1.28 thorpej (optval > so->so_snd.sb_hiwat) ?
1217 1.28 thorpej so->so_snd.sb_hiwat : optval;
1218 1.1 cgd break;
1219 1.1 cgd case SO_RCVLOWAT:
1220 1.28 thorpej so->so_rcv.sb_lowat =
1221 1.28 thorpej (optval > so->so_rcv.sb_hiwat) ?
1222 1.28 thorpej so->so_rcv.sb_hiwat : optval;
1223 1.1 cgd break;
1224 1.1 cgd }
1225 1.1 cgd break;
1226 1.28 thorpej }
1227 1.1 cgd
1228 1.1 cgd case SO_SNDTIMEO:
1229 1.1 cgd case SO_RCVTIMEO:
1230 1.1 cgd {
1231 1.1 cgd struct timeval *tv;
1232 1.1 cgd short val;
1233 1.1 cgd
1234 1.36 perry if (m == NULL || m->m_len < sizeof(*tv)) {
1235 1.1 cgd error = EINVAL;
1236 1.1 cgd goto bad;
1237 1.1 cgd }
1238 1.1 cgd tv = mtod(m, struct timeval *);
1239 1.19 cgd if (tv->tv_sec * hz + tv->tv_usec / tick > SHRT_MAX) {
1240 1.1 cgd error = EDOM;
1241 1.1 cgd goto bad;
1242 1.1 cgd }
1243 1.1 cgd val = tv->tv_sec * hz + tv->tv_usec / tick;
1244 1.1 cgd
1245 1.1 cgd switch (optname) {
1246 1.1 cgd
1247 1.1 cgd case SO_SNDTIMEO:
1248 1.1 cgd so->so_snd.sb_timeo = val;
1249 1.1 cgd break;
1250 1.1 cgd case SO_RCVTIMEO:
1251 1.1 cgd so->so_rcv.sb_timeo = val;
1252 1.1 cgd break;
1253 1.1 cgd }
1254 1.1 cgd break;
1255 1.1 cgd }
1256 1.1 cgd
1257 1.1 cgd default:
1258 1.1 cgd error = ENOPROTOOPT;
1259 1.1 cgd break;
1260 1.1 cgd }
1261 1.15 mycroft if (error == 0 && so->so_proto && so->so_proto->pr_ctloutput) {
1262 1.15 mycroft (void) ((*so->so_proto->pr_ctloutput)
1263 1.15 mycroft (PRCO_SETOPT, so, level, optname, &m0));
1264 1.15 mycroft m = NULL; /* freed by protocol */
1265 1.15 mycroft }
1266 1.1 cgd }
1267 1.54 lukem bad:
1268 1.1 cgd if (m)
1269 1.1 cgd (void) m_free(m);
1270 1.1 cgd return (error);
1271 1.1 cgd }
1272 1.1 cgd
1273 1.14 mycroft int
1274 1.54 lukem sogetopt(struct socket *so, int level, int optname, struct mbuf **mp)
1275 1.1 cgd {
1276 1.54 lukem struct mbuf *m;
1277 1.1 cgd
1278 1.1 cgd if (level != SOL_SOCKET) {
1279 1.1 cgd if (so->so_proto && so->so_proto->pr_ctloutput) {
1280 1.1 cgd return ((*so->so_proto->pr_ctloutput)
1281 1.1 cgd (PRCO_GETOPT, so, level, optname, mp));
1282 1.1 cgd } else
1283 1.1 cgd return (ENOPROTOOPT);
1284 1.1 cgd } else {
1285 1.1 cgd m = m_get(M_WAIT, MT_SOOPTS);
1286 1.36 perry m->m_len = sizeof(int);
1287 1.1 cgd
1288 1.1 cgd switch (optname) {
1289 1.1 cgd
1290 1.1 cgd case SO_LINGER:
1291 1.36 perry m->m_len = sizeof(struct linger);
1292 1.1 cgd mtod(m, struct linger *)->l_onoff =
1293 1.1 cgd so->so_options & SO_LINGER;
1294 1.1 cgd mtod(m, struct linger *)->l_linger = so->so_linger;
1295 1.1 cgd break;
1296 1.1 cgd
1297 1.1 cgd case SO_USELOOPBACK:
1298 1.1 cgd case SO_DONTROUTE:
1299 1.1 cgd case SO_DEBUG:
1300 1.1 cgd case SO_KEEPALIVE:
1301 1.1 cgd case SO_REUSEADDR:
1302 1.15 mycroft case SO_REUSEPORT:
1303 1.1 cgd case SO_BROADCAST:
1304 1.1 cgd case SO_OOBINLINE:
1305 1.26 thorpej case SO_TIMESTAMP:
1306 1.1 cgd *mtod(m, int *) = so->so_options & optname;
1307 1.1 cgd break;
1308 1.1 cgd
1309 1.1 cgd case SO_TYPE:
1310 1.1 cgd *mtod(m, int *) = so->so_type;
1311 1.1 cgd break;
1312 1.1 cgd
1313 1.1 cgd case SO_ERROR:
1314 1.1 cgd *mtod(m, int *) = so->so_error;
1315 1.1 cgd so->so_error = 0;
1316 1.1 cgd break;
1317 1.1 cgd
1318 1.1 cgd case SO_SNDBUF:
1319 1.1 cgd *mtod(m, int *) = so->so_snd.sb_hiwat;
1320 1.1 cgd break;
1321 1.1 cgd
1322 1.1 cgd case SO_RCVBUF:
1323 1.1 cgd *mtod(m, int *) = so->so_rcv.sb_hiwat;
1324 1.1 cgd break;
1325 1.1 cgd
1326 1.1 cgd case SO_SNDLOWAT:
1327 1.1 cgd *mtod(m, int *) = so->so_snd.sb_lowat;
1328 1.1 cgd break;
1329 1.1 cgd
1330 1.1 cgd case SO_RCVLOWAT:
1331 1.1 cgd *mtod(m, int *) = so->so_rcv.sb_lowat;
1332 1.1 cgd break;
1333 1.1 cgd
1334 1.1 cgd case SO_SNDTIMEO:
1335 1.1 cgd case SO_RCVTIMEO:
1336 1.1 cgd {
1337 1.1 cgd int val = (optname == SO_SNDTIMEO ?
1338 1.1 cgd so->so_snd.sb_timeo : so->so_rcv.sb_timeo);
1339 1.1 cgd
1340 1.1 cgd m->m_len = sizeof(struct timeval);
1341 1.1 cgd mtod(m, struct timeval *)->tv_sec = val / hz;
1342 1.1 cgd mtod(m, struct timeval *)->tv_usec =
1343 1.27 kleink (val % hz) * tick;
1344 1.1 cgd break;
1345 1.1 cgd }
1346 1.1 cgd
1347 1.1 cgd default:
1348 1.1 cgd (void)m_free(m);
1349 1.1 cgd return (ENOPROTOOPT);
1350 1.1 cgd }
1351 1.1 cgd *mp = m;
1352 1.1 cgd return (0);
1353 1.1 cgd }
1354 1.1 cgd }
1355 1.1 cgd
1356 1.14 mycroft void
1357 1.54 lukem sohasoutofband(struct socket *so)
1358 1.1 cgd {
1359 1.1 cgd struct proc *p;
1360 1.1 cgd
1361 1.1 cgd if (so->so_pgid < 0)
1362 1.1 cgd gsignal(-so->so_pgid, SIGURG);
1363 1.1 cgd else if (so->so_pgid > 0 && (p = pfind(so->so_pgid)) != 0)
1364 1.1 cgd psignal(p, SIGURG);
1365 1.2 cgd selwakeup(&so->so_rcv.sb_sel);
1366 1.1 cgd }
1367