genfs_io.c revision 1.36.2.41 1 1.36.2.31 uebayasi /* $NetBSD: genfs_io.c,v 1.36.2.41 2010/11/19 05:43:30 uebayasi Exp $ */
2 1.1 pooka
3 1.1 pooka /*
4 1.1 pooka * Copyright (c) 1982, 1986, 1989, 1993
5 1.1 pooka * The Regents of the University of California. All rights reserved.
6 1.1 pooka *
7 1.1 pooka * Redistribution and use in source and binary forms, with or without
8 1.1 pooka * modification, are permitted provided that the following conditions
9 1.1 pooka * are met:
10 1.1 pooka * 1. Redistributions of source code must retain the above copyright
11 1.1 pooka * notice, this list of conditions and the following disclaimer.
12 1.1 pooka * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 pooka * notice, this list of conditions and the following disclaimer in the
14 1.1 pooka * documentation and/or other materials provided with the distribution.
15 1.1 pooka * 3. Neither the name of the University nor the names of its contributors
16 1.1 pooka * may be used to endorse or promote products derived from this software
17 1.1 pooka * without specific prior written permission.
18 1.1 pooka *
19 1.1 pooka * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 1.1 pooka * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.1 pooka * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 pooka * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 1.1 pooka * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 pooka * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.1 pooka * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 pooka * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 pooka * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 pooka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 pooka * SUCH DAMAGE.
30 1.1 pooka *
31 1.1 pooka */
32 1.1 pooka
33 1.1 pooka #include <sys/cdefs.h>
34 1.36.2.31 uebayasi __KERNEL_RCSID(0, "$NetBSD: genfs_io.c,v 1.36.2.41 2010/11/19 05:43:30 uebayasi Exp $");
35 1.1 pooka
36 1.36.2.1 uebayasi #include "opt_xip.h"
37 1.36.2.1 uebayasi
38 1.1 pooka #include <sys/param.h>
39 1.1 pooka #include <sys/systm.h>
40 1.1 pooka #include <sys/proc.h>
41 1.1 pooka #include <sys/kernel.h>
42 1.1 pooka #include <sys/mount.h>
43 1.1 pooka #include <sys/namei.h>
44 1.1 pooka #include <sys/vnode.h>
45 1.1 pooka #include <sys/fcntl.h>
46 1.1 pooka #include <sys/kmem.h>
47 1.1 pooka #include <sys/poll.h>
48 1.1 pooka #include <sys/mman.h>
49 1.1 pooka #include <sys/file.h>
50 1.1 pooka #include <sys/kauth.h>
51 1.1 pooka #include <sys/fstrans.h>
52 1.15 pooka #include <sys/buf.h>
53 1.36.2.11 uebayasi #include <sys/once.h>
54 1.1 pooka
55 1.1 pooka #include <miscfs/genfs/genfs.h>
56 1.1 pooka #include <miscfs/genfs/genfs_node.h>
57 1.1 pooka #include <miscfs/specfs/specdev.h>
58 1.1 pooka
59 1.1 pooka #include <uvm/uvm.h>
60 1.1 pooka #include <uvm/uvm_pager.h>
61 1.1 pooka
62 1.36.2.4 uebayasi #ifdef XIP
63 1.36.2.35 uebayasi static int genfs_do_getpages_xip_io(struct vnode *, voff_t, struct vm_page **,
64 1.36.2.35 uebayasi int *, int, vm_prot_t, int, int);
65 1.36.2.24 uebayasi static int genfs_do_putpages_xip(struct vnode *, off_t, off_t, int,
66 1.36.2.24 uebayasi struct vm_page **);
67 1.36.2.4 uebayasi #endif
68 1.1 pooka static int genfs_do_directio(struct vmspace *, vaddr_t, size_t, struct vnode *,
69 1.1 pooka off_t, enum uio_rw);
70 1.1 pooka static void genfs_dio_iodone(struct buf *);
71 1.1 pooka
72 1.1 pooka static int genfs_do_io(struct vnode *, off_t, vaddr_t, size_t, int, enum uio_rw,
73 1.1 pooka void (*)(struct buf *));
74 1.36.2.21 uebayasi static void genfs_rel_pages(struct vm_page **, int);
75 1.36.2.21 uebayasi static void genfs_markdirty(struct vnode *);
76 1.1 pooka
77 1.1 pooka int genfs_maxdio = MAXPHYS;
78 1.1 pooka
79 1.36.2.21 uebayasi static void
80 1.1 pooka genfs_rel_pages(struct vm_page **pgs, int npages)
81 1.1 pooka {
82 1.1 pooka int i;
83 1.1 pooka
84 1.1 pooka for (i = 0; i < npages; i++) {
85 1.1 pooka struct vm_page *pg = pgs[i];
86 1.1 pooka
87 1.1 pooka if (pg == NULL || pg == PGO_DONTCARE)
88 1.1 pooka continue;
89 1.1 pooka if (pg->flags & PG_FAKE) {
90 1.1 pooka pg->flags |= PG_RELEASED;
91 1.1 pooka }
92 1.1 pooka }
93 1.2 ad mutex_enter(&uvm_pageqlock);
94 1.1 pooka uvm_page_unbusy(pgs, npages);
95 1.2 ad mutex_exit(&uvm_pageqlock);
96 1.1 pooka }
97 1.1 pooka
98 1.36.2.21 uebayasi static void
99 1.36.2.21 uebayasi genfs_markdirty(struct vnode *vp)
100 1.36.2.21 uebayasi {
101 1.36.2.21 uebayasi struct genfs_node * const gp = VTOG(vp);
102 1.36.2.21 uebayasi
103 1.36.2.21 uebayasi KASSERT(mutex_owned(&vp->v_interlock));
104 1.36.2.21 uebayasi gp->g_dirtygen++;
105 1.36.2.21 uebayasi if ((vp->v_iflag & VI_ONWORKLST) == 0) {
106 1.36.2.21 uebayasi vn_syncer_add_to_worklist(vp, filedelay);
107 1.36.2.21 uebayasi }
108 1.36.2.21 uebayasi if ((vp->v_iflag & (VI_WRMAP|VI_WRMAPDIRTY)) == VI_WRMAP) {
109 1.36.2.21 uebayasi vp->v_iflag |= VI_WRMAPDIRTY;
110 1.36.2.21 uebayasi }
111 1.36.2.21 uebayasi }
112 1.36.2.21 uebayasi
113 1.1 pooka /*
114 1.1 pooka * generic VM getpages routine.
115 1.1 pooka * Return PG_BUSY pages for the given range,
116 1.1 pooka * reading from backing store if necessary.
117 1.1 pooka */
118 1.1 pooka
119 1.1 pooka int
120 1.1 pooka genfs_getpages(void *v)
121 1.1 pooka {
122 1.36.2.1 uebayasi struct vop_getpages_args /* {
123 1.36.2.1 uebayasi struct vnode *a_vp;
124 1.36.2.1 uebayasi voff_t a_offset;
125 1.36.2.1 uebayasi struct vm_page **a_m;
126 1.36.2.1 uebayasi int *a_count;
127 1.36.2.1 uebayasi int a_centeridx;
128 1.36.2.1 uebayasi vm_prot_t a_access_type;
129 1.36.2.1 uebayasi int a_advice;
130 1.36.2.1 uebayasi int a_flags;
131 1.36.2.1 uebayasi } */ * const ap = v;
132 1.1 pooka
133 1.24 uebayasi off_t diskeof, memeof;
134 1.31 uebayasi int i, error, npages;
135 1.10 yamt const int flags = ap->a_flags;
136 1.22 uebayasi struct vnode * const vp = ap->a_vp;
137 1.22 uebayasi struct uvm_object * const uobj = &vp->v_uobj;
138 1.31 uebayasi kauth_cred_t const cred = curlwp->l_cred; /* XXXUBC curlwp */
139 1.10 yamt const bool async = (flags & PGO_SYNCIO) == 0;
140 1.35 uebayasi const bool memwrite = (ap->a_access_type & VM_PROT_WRITE) != 0;
141 1.1 pooka bool has_trans = false;
142 1.10 yamt const bool overwrite = (flags & PGO_OVERWRITE) != 0;
143 1.35 uebayasi const bool blockalloc = memwrite && (flags & PGO_NOBLOCKALLOC) == 0;
144 1.36.2.27 uebayasi const bool glocked = (flags & PGO_GLOCKHELD) != 0;
145 1.1 pooka UVMHIST_FUNC("genfs_getpages"); UVMHIST_CALLED(ubchist);
146 1.1 pooka
147 1.1 pooka UVMHIST_LOG(ubchist, "vp %p off 0x%x/%x count %d",
148 1.1 pooka vp, ap->a_offset >> 32, ap->a_offset, *ap->a_count);
149 1.1 pooka
150 1.1 pooka KASSERT(vp->v_type == VREG || vp->v_type == VDIR ||
151 1.1 pooka vp->v_type == VLNK || vp->v_type == VBLK);
152 1.1 pooka
153 1.1 pooka startover:
154 1.1 pooka error = 0;
155 1.27 uebayasi const voff_t origvsize = vp->v_size;
156 1.27 uebayasi const off_t origoffset = ap->a_offset;
157 1.29 uebayasi const int orignpages = *ap->a_count;
158 1.33 uebayasi
159 1.1 pooka GOP_SIZE(vp, origvsize, &diskeof, 0);
160 1.1 pooka if (flags & PGO_PASTEOF) {
161 1.24 uebayasi off_t newsize;
162 1.1 pooka #if defined(DIAGNOSTIC)
163 1.1 pooka off_t writeeof;
164 1.1 pooka #endif /* defined(DIAGNOSTIC) */
165 1.1 pooka
166 1.1 pooka newsize = MAX(origvsize,
167 1.1 pooka origoffset + (orignpages << PAGE_SHIFT));
168 1.1 pooka GOP_SIZE(vp, newsize, &memeof, GOP_SIZE_MEM);
169 1.1 pooka #if defined(DIAGNOSTIC)
170 1.1 pooka GOP_SIZE(vp, vp->v_writesize, &writeeof, GOP_SIZE_MEM);
171 1.1 pooka if (newsize > round_page(writeeof)) {
172 1.36.2.27 uebayasi panic("%s: past eof: %" PRId64 " vs. %" PRId64,
173 1.36.2.27 uebayasi __func__, newsize, round_page(writeeof));
174 1.1 pooka }
175 1.1 pooka #endif /* defined(DIAGNOSTIC) */
176 1.1 pooka } else {
177 1.1 pooka GOP_SIZE(vp, origvsize, &memeof, GOP_SIZE_MEM);
178 1.1 pooka }
179 1.1 pooka KASSERT(ap->a_centeridx >= 0 || ap->a_centeridx <= orignpages);
180 1.1 pooka KASSERT((origoffset & (PAGE_SIZE - 1)) == 0 && origoffset >= 0);
181 1.1 pooka KASSERT(orignpages > 0);
182 1.1 pooka
183 1.1 pooka /*
184 1.1 pooka * Bounds-check the request.
185 1.1 pooka */
186 1.1 pooka
187 1.1 pooka if (origoffset + (ap->a_centeridx << PAGE_SHIFT) >= memeof) {
188 1.1 pooka if ((flags & PGO_LOCKED) == 0) {
189 1.2 ad mutex_exit(&uobj->vmobjlock);
190 1.1 pooka }
191 1.1 pooka UVMHIST_LOG(ubchist, "off 0x%x count %d goes past EOF 0x%x",
192 1.1 pooka origoffset, *ap->a_count, memeof,0);
193 1.1 pooka error = EINVAL;
194 1.1 pooka goto out_err;
195 1.1 pooka }
196 1.1 pooka
197 1.1 pooka /* uobj is locked */
198 1.1 pooka
199 1.1 pooka if ((flags & PGO_NOTIMESTAMP) == 0 &&
200 1.1 pooka (vp->v_type != VBLK ||
201 1.1 pooka (vp->v_mount->mnt_flag & MNT_NODEVMTIME) == 0)) {
202 1.1 pooka int updflags = 0;
203 1.1 pooka
204 1.1 pooka if ((vp->v_mount->mnt_flag & MNT_NOATIME) == 0) {
205 1.1 pooka updflags = GOP_UPDATE_ACCESSED;
206 1.1 pooka }
207 1.35 uebayasi if (memwrite) {
208 1.1 pooka updflags |= GOP_UPDATE_MODIFIED;
209 1.1 pooka }
210 1.1 pooka if (updflags != 0) {
211 1.1 pooka GOP_MARKUPDATE(vp, updflags);
212 1.1 pooka }
213 1.1 pooka }
214 1.1 pooka
215 1.1 pooka /*
216 1.1 pooka * For PGO_LOCKED requests, just return whatever's in memory.
217 1.1 pooka */
218 1.1 pooka
219 1.1 pooka if (flags & PGO_LOCKED) {
220 1.36.2.39 uebayasi #if 0
221 1.36.2.39 uebayasi genfs_do_getpages_locked();
222 1.36.2.39 uebayasi } else {
223 1.36.2.39 uebayasi genfs_do_getpages_unlocked();
224 1.36.2.39 uebayasi }
225 1.36.2.39 uebayasi }
226 1.36.2.39 uebayasi
227 1.36.2.39 uebayasi int
228 1.36.2.39 uebayasi genfs_do_getpages_locked()
229 1.36.2.39 uebayasi {
230 1.36.2.39 uebayasi #endif
231 1.1 pooka int nfound;
232 1.31 uebayasi struct vm_page *pg;
233 1.1 pooka
234 1.36.2.39 uebayasi #if 1
235 1.36.2.39 uebayasi if ((ap->a_vp->v_vflag & VV_XIP) != 0) {
236 1.36.2.39 uebayasi *ap->a_count = 0;
237 1.36.2.39 uebayasi return 0;
238 1.36.2.39 uebayasi }
239 1.36.2.39 uebayasi #endif
240 1.36.2.39 uebayasi
241 1.36.2.27 uebayasi KASSERT(!glocked);
242 1.1 pooka npages = *ap->a_count;
243 1.1 pooka #if defined(DEBUG)
244 1.1 pooka for (i = 0; i < npages; i++) {
245 1.1 pooka pg = ap->a_m[i];
246 1.1 pooka KASSERT(pg == NULL || pg == PGO_DONTCARE);
247 1.1 pooka }
248 1.1 pooka #endif /* defined(DEBUG) */
249 1.1 pooka nfound = uvn_findpages(uobj, origoffset, &npages,
250 1.35 uebayasi ap->a_m, UFP_NOWAIT|UFP_NOALLOC|(memwrite ? UFP_NORDONLY : 0));
251 1.1 pooka KASSERT(npages == *ap->a_count);
252 1.1 pooka if (nfound == 0) {
253 1.1 pooka error = EBUSY;
254 1.1 pooka goto out_err;
255 1.1 pooka }
256 1.23 uebayasi if (!genfs_node_rdtrylock(vp)) {
257 1.1 pooka genfs_rel_pages(ap->a_m, npages);
258 1.1 pooka
259 1.1 pooka /*
260 1.1 pooka * restore the array.
261 1.1 pooka */
262 1.1 pooka
263 1.1 pooka for (i = 0; i < npages; i++) {
264 1.1 pooka pg = ap->a_m[i];
265 1.1 pooka
266 1.36.2.30 uebayasi if (pg != NULL && pg != PGO_DONTCARE) {
267 1.1 pooka ap->a_m[i] = NULL;
268 1.1 pooka }
269 1.36.2.30 uebayasi KASSERT(pg == NULL || pg == PGO_DONTCARE);
270 1.1 pooka }
271 1.1 pooka } else {
272 1.23 uebayasi genfs_node_unlock(vp);
273 1.1 pooka }
274 1.1 pooka error = (ap->a_m[ap->a_centeridx] == NULL ? EBUSY : 0);
275 1.36.2.21 uebayasi if (error == 0 && memwrite) {
276 1.36.2.21 uebayasi genfs_markdirty(vp);
277 1.36.2.21 uebayasi }
278 1.1 pooka goto out_err;
279 1.1 pooka }
280 1.2 ad mutex_exit(&uobj->vmobjlock);
281 1.36.2.39 uebayasi #if 0
282 1.36.2.39 uebayasi }
283 1.36.2.39 uebayasi
284 1.36.2.39 uebayasi int
285 1.36.2.39 uebayasi genfs_do_getpages_unlocked()
286 1.36.2.39 uebayasi {
287 1.36.2.39 uebayasi #endif
288 1.36.2.39 uebayasi #if 1
289 1.36.2.39 uebayasi if ((ap->a_vp->v_vflag & VV_XIP) != 0)
290 1.36.2.41 uebayasi return genfs_do_getpages_xip_io(
291 1.36.2.41 uebayasi ap->a_vp,
292 1.36.2.41 uebayasi ap->a_offset,
293 1.36.2.41 uebayasi ap->a_m,
294 1.36.2.41 uebayasi ap->a_count,
295 1.36.2.41 uebayasi ap->a_centeridx,
296 1.36.2.41 uebayasi ap->a_access_type,
297 1.36.2.41 uebayasi ap->a_advice,
298 1.36.2.41 uebayasi ap->a_flags);
299 1.36.2.39 uebayasi #endif
300 1.1 pooka /*
301 1.1 pooka * find the requested pages and make some simple checks.
302 1.1 pooka * leave space in the page array for a whole block.
303 1.1 pooka */
304 1.1 pooka
305 1.27 uebayasi const int fs_bshift = (vp->v_type != VBLK) ?
306 1.27 uebayasi vp->v_mount->mnt_fs_bshift : DEV_BSHIFT;
307 1.27 uebayasi const int dev_bshift = (vp->v_type != VBLK) ?
308 1.27 uebayasi vp->v_mount->mnt_dev_bshift : DEV_BSHIFT;
309 1.27 uebayasi const int fs_bsize = 1 << fs_bshift;
310 1.30 uebayasi #define blk_mask (fs_bsize - 1)
311 1.30 uebayasi #define trunc_blk(x) ((x) & ~blk_mask)
312 1.30 uebayasi #define round_blk(x) (((x) + blk_mask) & ~blk_mask)
313 1.1 pooka
314 1.29 uebayasi const int orignmempages = MIN(orignpages,
315 1.1 pooka round_page(memeof - origoffset) >> PAGE_SHIFT);
316 1.29 uebayasi npages = orignmempages;
317 1.30 uebayasi const off_t startoffset = trunc_blk(origoffset);
318 1.30 uebayasi const off_t endoffset = MIN(
319 1.30 uebayasi round_page(round_blk(origoffset + (npages << PAGE_SHIFT))),
320 1.30 uebayasi round_page(memeof));
321 1.31 uebayasi const int ridx = (origoffset - startoffset) >> PAGE_SHIFT;
322 1.1 pooka
323 1.33 uebayasi const int pgs_size = sizeof(struct vm_page *) *
324 1.1 pooka ((endoffset - startoffset) >> PAGE_SHIFT);
325 1.33 uebayasi struct vm_page **pgs, *pgs_onstack[UBC_MAX_PAGES];
326 1.31 uebayasi
327 1.1 pooka if (pgs_size > sizeof(pgs_onstack)) {
328 1.1 pooka pgs = kmem_zalloc(pgs_size, async ? KM_NOSLEEP : KM_SLEEP);
329 1.1 pooka if (pgs == NULL) {
330 1.1 pooka pgs = pgs_onstack;
331 1.1 pooka error = ENOMEM;
332 1.32 uebayasi goto out_err;
333 1.1 pooka }
334 1.1 pooka } else {
335 1.14 christos pgs = pgs_onstack;
336 1.14 christos (void)memset(pgs, 0, pgs_size);
337 1.1 pooka }
338 1.14 christos
339 1.1 pooka UVMHIST_LOG(ubchist, "ridx %d npages %d startoff %ld endoff %ld",
340 1.1 pooka ridx, npages, startoffset, endoffset);
341 1.1 pooka
342 1.1 pooka if (!has_trans) {
343 1.1 pooka fstrans_start(vp->v_mount, FSTRANS_SHARED);
344 1.1 pooka has_trans = true;
345 1.1 pooka }
346 1.1 pooka
347 1.1 pooka /*
348 1.1 pooka * hold g_glock to prevent a race with truncate.
349 1.1 pooka *
350 1.1 pooka * check if our idea of v_size is still valid.
351 1.1 pooka */
352 1.1 pooka
353 1.36.2.27 uebayasi KASSERT(!glocked || genfs_node_wrlocked(vp));
354 1.36.2.27 uebayasi if (!glocked) {
355 1.36.2.27 uebayasi if (blockalloc) {
356 1.36.2.27 uebayasi genfs_node_wrlock(vp);
357 1.36.2.27 uebayasi } else {
358 1.36.2.27 uebayasi genfs_node_rdlock(vp);
359 1.36.2.27 uebayasi }
360 1.1 pooka }
361 1.2 ad mutex_enter(&uobj->vmobjlock);
362 1.1 pooka if (vp->v_size < origvsize) {
363 1.36.2.27 uebayasi if (!glocked) {
364 1.36.2.27 uebayasi genfs_node_unlock(vp);
365 1.36.2.27 uebayasi }
366 1.1 pooka if (pgs != pgs_onstack)
367 1.1 pooka kmem_free(pgs, pgs_size);
368 1.1 pooka goto startover;
369 1.1 pooka }
370 1.1 pooka
371 1.1 pooka if (uvn_findpages(uobj, origoffset, &npages, &pgs[ridx],
372 1.29 uebayasi async ? UFP_NOWAIT : UFP_ALL) != orignmempages) {
373 1.36.2.27 uebayasi if (!glocked) {
374 1.36.2.27 uebayasi genfs_node_unlock(vp);
375 1.36.2.27 uebayasi }
376 1.1 pooka KASSERT(async != 0);
377 1.29 uebayasi genfs_rel_pages(&pgs[ridx], orignmempages);
378 1.2 ad mutex_exit(&uobj->vmobjlock);
379 1.1 pooka error = EBUSY;
380 1.33 uebayasi goto out_err_free;
381 1.1 pooka }
382 1.1 pooka
383 1.1 pooka /*
384 1.1 pooka * if the pages are already resident, just return them.
385 1.1 pooka */
386 1.1 pooka
387 1.1 pooka for (i = 0; i < npages; i++) {
388 1.31 uebayasi struct vm_page *pg = pgs[ridx + i];
389 1.1 pooka
390 1.31 uebayasi if ((pg->flags & PG_FAKE) ||
391 1.31 uebayasi (blockalloc && (pg->flags & PG_RDONLY))) {
392 1.1 pooka break;
393 1.1 pooka }
394 1.1 pooka }
395 1.1 pooka if (i == npages) {
396 1.36.2.27 uebayasi if (!glocked) {
397 1.36.2.27 uebayasi genfs_node_unlock(vp);
398 1.36.2.27 uebayasi }
399 1.1 pooka UVMHIST_LOG(ubchist, "returning cached pages", 0,0,0,0);
400 1.1 pooka npages += ridx;
401 1.1 pooka goto out;
402 1.1 pooka }
403 1.1 pooka
404 1.1 pooka /*
405 1.1 pooka * if PGO_OVERWRITE is set, don't bother reading the pages.
406 1.1 pooka */
407 1.1 pooka
408 1.1 pooka if (overwrite) {
409 1.36.2.39 uebayasi #if 0
410 1.36.2.39 uebayasi genfs_do_getpages_overwrite();
411 1.36.2.39 uebayasi } else {
412 1.36.2.39 uebayasi genfs_do_getpages_io();
413 1.36.2.39 uebayasi }
414 1.36.2.39 uebayasi }
415 1.36.2.39 uebayasi
416 1.36.2.39 uebayasi int
417 1.36.2.39 uebayasi genfs_do_getpages_overwrite()
418 1.36.2.39 uebayasi {
419 1.36.2.39 uebayasi {
420 1.36.2.39 uebayasi #endif
421 1.36.2.27 uebayasi if (!glocked) {
422 1.36.2.27 uebayasi genfs_node_unlock(vp);
423 1.36.2.27 uebayasi }
424 1.1 pooka UVMHIST_LOG(ubchist, "PGO_OVERWRITE",0,0,0,0);
425 1.1 pooka
426 1.1 pooka for (i = 0; i < npages; i++) {
427 1.31 uebayasi struct vm_page *pg = pgs[ridx + i];
428 1.1 pooka
429 1.31 uebayasi pg->flags &= ~(PG_RDONLY|PG_CLEAN);
430 1.1 pooka }
431 1.1 pooka npages += ridx;
432 1.1 pooka goto out;
433 1.1 pooka }
434 1.36.2.39 uebayasi #if 0
435 1.36.2.39 uebayasi }
436 1.1 pooka
437 1.36.2.39 uebayasi int
438 1.36.2.39 uebayasi genfs_do_getpages_io()
439 1.36.2.39 uebayasi {
440 1.36.2.39 uebayasi #endif
441 1.1 pooka /*
442 1.1 pooka * the page wasn't resident and we're not overwriting,
443 1.1 pooka * so we're going to have to do some i/o.
444 1.1 pooka * find any additional pages needed to cover the expanded range.
445 1.1 pooka */
446 1.1 pooka
447 1.1 pooka npages = (endoffset - startoffset) >> PAGE_SHIFT;
448 1.29 uebayasi if (startoffset != origoffset || npages != orignmempages) {
449 1.31 uebayasi int npgs;
450 1.1 pooka
451 1.1 pooka /*
452 1.1 pooka * we need to avoid deadlocks caused by locking
453 1.1 pooka * additional pages at lower offsets than pages we
454 1.1 pooka * already have locked. unlock them all and start over.
455 1.1 pooka */
456 1.1 pooka
457 1.29 uebayasi genfs_rel_pages(&pgs[ridx], orignmempages);
458 1.1 pooka memset(pgs, 0, pgs_size);
459 1.1 pooka
460 1.1 pooka UVMHIST_LOG(ubchist, "reset npages start 0x%x end 0x%x",
461 1.1 pooka startoffset, endoffset, 0,0);
462 1.1 pooka npgs = npages;
463 1.1 pooka if (uvn_findpages(uobj, startoffset, &npgs, pgs,
464 1.1 pooka async ? UFP_NOWAIT : UFP_ALL) != npages) {
465 1.36.2.27 uebayasi if (!glocked) {
466 1.36.2.27 uebayasi genfs_node_unlock(vp);
467 1.36.2.27 uebayasi }
468 1.1 pooka KASSERT(async != 0);
469 1.1 pooka genfs_rel_pages(pgs, npages);
470 1.2 ad mutex_exit(&uobj->vmobjlock);
471 1.1 pooka error = EBUSY;
472 1.33 uebayasi goto out_err_free;
473 1.1 pooka }
474 1.1 pooka }
475 1.34 uebayasi
476 1.2 ad mutex_exit(&uobj->vmobjlock);
477 1.1 pooka
478 1.34 uebayasi {
479 1.34 uebayasi size_t bytes, iobytes, tailstart, tailbytes, totalbytes, skipbytes;
480 1.34 uebayasi vaddr_t kva;
481 1.34 uebayasi struct buf *bp, *mbp;
482 1.34 uebayasi bool sawhole = false;
483 1.34 uebayasi
484 1.1 pooka /*
485 1.1 pooka * read the desired page(s).
486 1.1 pooka */
487 1.1 pooka
488 1.1 pooka totalbytes = npages << PAGE_SHIFT;
489 1.1 pooka bytes = MIN(totalbytes, MAX(diskeof - startoffset, 0));
490 1.1 pooka tailbytes = totalbytes - bytes;
491 1.1 pooka skipbytes = 0;
492 1.1 pooka
493 1.1 pooka kva = uvm_pagermapin(pgs, npages,
494 1.1 pooka UVMPAGER_MAPIN_READ | UVMPAGER_MAPIN_WAITOK);
495 1.1 pooka
496 1.2 ad mbp = getiobuf(vp, true);
497 1.1 pooka mbp->b_bufsize = totalbytes;
498 1.1 pooka mbp->b_data = (void *)kva;
499 1.1 pooka mbp->b_resid = mbp->b_bcount = bytes;
500 1.2 ad mbp->b_cflags = BC_BUSY;
501 1.2 ad if (async) {
502 1.2 ad mbp->b_flags = B_READ | B_ASYNC;
503 1.2 ad mbp->b_iodone = uvm_aio_biodone;
504 1.2 ad } else {
505 1.2 ad mbp->b_flags = B_READ;
506 1.2 ad mbp->b_iodone = NULL;
507 1.36.2.41 uebayasi }
508 1.1 pooka if (async)
509 1.1 pooka BIO_SETPRIO(mbp, BPRIO_TIMELIMITED);
510 1.1 pooka else
511 1.1 pooka BIO_SETPRIO(mbp, BPRIO_TIMECRITICAL);
512 1.1 pooka
513 1.1 pooka /*
514 1.1 pooka * if EOF is in the middle of the range, zero the part past EOF.
515 1.1 pooka * skip over pages which are not PG_FAKE since in that case they have
516 1.1 pooka * valid data that we need to preserve.
517 1.1 pooka */
518 1.1 pooka
519 1.1 pooka tailstart = bytes;
520 1.1 pooka while (tailbytes > 0) {
521 1.1 pooka const int len = PAGE_SIZE - (tailstart & PAGE_MASK);
522 1.1 pooka
523 1.1 pooka KASSERT(len <= tailbytes);
524 1.1 pooka if ((pgs[tailstart >> PAGE_SHIFT]->flags & PG_FAKE) != 0) {
525 1.1 pooka memset((void *)(kva + tailstart), 0, len);
526 1.1 pooka UVMHIST_LOG(ubchist, "tailbytes %p 0x%x 0x%x",
527 1.1 pooka kva, tailstart, len, 0);
528 1.1 pooka }
529 1.1 pooka tailstart += len;
530 1.1 pooka tailbytes -= len;
531 1.1 pooka }
532 1.1 pooka
533 1.1 pooka /*
534 1.1 pooka * now loop over the pages, reading as needed.
535 1.1 pooka */
536 1.1 pooka
537 1.1 pooka bp = NULL;
538 1.28 uebayasi off_t offset;
539 1.28 uebayasi for (offset = startoffset;
540 1.1 pooka bytes > 0;
541 1.1 pooka offset += iobytes, bytes -= iobytes) {
542 1.30 uebayasi int run;
543 1.25 uebayasi daddr_t lbn, blkno;
544 1.24 uebayasi int pidx;
545 1.26 uebayasi struct vnode *devvp;
546 1.1 pooka
547 1.1 pooka /*
548 1.1 pooka * skip pages which don't need to be read.
549 1.1 pooka */
550 1.1 pooka
551 1.1 pooka pidx = (offset - startoffset) >> PAGE_SHIFT;
552 1.1 pooka while ((pgs[pidx]->flags & PG_FAKE) == 0) {
553 1.1 pooka size_t b;
554 1.1 pooka
555 1.1 pooka KASSERT((offset & (PAGE_SIZE - 1)) == 0);
556 1.1 pooka if ((pgs[pidx]->flags & PG_RDONLY)) {
557 1.1 pooka sawhole = true;
558 1.1 pooka }
559 1.1 pooka b = MIN(PAGE_SIZE, bytes);
560 1.1 pooka offset += b;
561 1.1 pooka bytes -= b;
562 1.1 pooka skipbytes += b;
563 1.1 pooka pidx++;
564 1.1 pooka UVMHIST_LOG(ubchist, "skipping, new offset 0x%x",
565 1.1 pooka offset, 0,0,0);
566 1.1 pooka if (bytes == 0) {
567 1.1 pooka goto loopdone;
568 1.1 pooka }
569 1.1 pooka }
570 1.1 pooka
571 1.1 pooka /*
572 1.1 pooka * bmap the file to find out the blkno to read from and
573 1.1 pooka * how much we can read in one i/o. if bmap returns an error,
574 1.1 pooka * skip the rest of the top-level i/o.
575 1.1 pooka */
576 1.1 pooka
577 1.1 pooka lbn = offset >> fs_bshift;
578 1.1 pooka error = VOP_BMAP(vp, lbn, &devvp, &blkno, &run);
579 1.1 pooka if (error) {
580 1.1 pooka UVMHIST_LOG(ubchist, "VOP_BMAP lbn 0x%x -> %d\n",
581 1.36 uebayasi lbn,error,0,0);
582 1.1 pooka skipbytes += bytes;
583 1.36 uebayasi bytes = 0;
584 1.1 pooka goto loopdone;
585 1.1 pooka }
586 1.1 pooka
587 1.1 pooka /*
588 1.1 pooka * see how many pages can be read with this i/o.
589 1.1 pooka * reduce the i/o size if necessary to avoid
590 1.1 pooka * overwriting pages with valid data.
591 1.1 pooka */
592 1.1 pooka
593 1.1 pooka iobytes = MIN((((off_t)lbn + 1 + run) << fs_bshift) - offset,
594 1.1 pooka bytes);
595 1.1 pooka if (offset + iobytes > round_page(offset)) {
596 1.24 uebayasi int pcount;
597 1.24 uebayasi
598 1.1 pooka pcount = 1;
599 1.1 pooka while (pidx + pcount < npages &&
600 1.1 pooka pgs[pidx + pcount]->flags & PG_FAKE) {
601 1.1 pooka pcount++;
602 1.1 pooka }
603 1.1 pooka iobytes = MIN(iobytes, (pcount << PAGE_SHIFT) -
604 1.1 pooka (offset - trunc_page(offset)));
605 1.1 pooka }
606 1.1 pooka
607 1.1 pooka /*
608 1.1 pooka * if this block isn't allocated, zero it instead of
609 1.1 pooka * reading it. unless we are going to allocate blocks,
610 1.1 pooka * mark the pages we zeroed PG_RDONLY.
611 1.1 pooka */
612 1.1 pooka
613 1.36 uebayasi if (blkno == (daddr_t)-1) {
614 1.1 pooka int holepages = (round_page(offset + iobytes) -
615 1.1 pooka trunc_page(offset)) >> PAGE_SHIFT;
616 1.1 pooka UVMHIST_LOG(ubchist, "lbn 0x%x -> HOLE", lbn,0,0,0);
617 1.1 pooka
618 1.1 pooka sawhole = true;
619 1.1 pooka memset((char *)kva + (offset - startoffset), 0,
620 1.1 pooka iobytes);
621 1.1 pooka skipbytes += iobytes;
622 1.1 pooka
623 1.1 pooka for (i = 0; i < holepages; i++) {
624 1.35 uebayasi if (memwrite) {
625 1.1 pooka pgs[pidx + i]->flags &= ~PG_CLEAN;
626 1.1 pooka }
627 1.1 pooka if (!blockalloc) {
628 1.1 pooka pgs[pidx + i]->flags |= PG_RDONLY;
629 1.1 pooka }
630 1.1 pooka }
631 1.1 pooka continue;
632 1.1 pooka }
633 1.1 pooka
634 1.1 pooka /*
635 1.1 pooka * allocate a sub-buf for this piece of the i/o
636 1.1 pooka * (or just use mbp if there's only 1 piece),
637 1.1 pooka * and start it going.
638 1.1 pooka */
639 1.1 pooka
640 1.1 pooka if (offset == startoffset && iobytes == bytes) {
641 1.1 pooka bp = mbp;
642 1.1 pooka } else {
643 1.36 uebayasi UVMHIST_LOG(ubchist, "vp %p bp %p num now %d",
644 1.36 uebayasi vp, bp, vp->v_numoutput, 0);
645 1.2 ad bp = getiobuf(vp, true);
646 1.1 pooka nestiobuf_setup(mbp, bp, offset - startoffset, iobytes);
647 1.1 pooka }
648 1.1 pooka bp->b_lblkno = 0;
649 1.1 pooka
650 1.1 pooka /* adjust physical blkno for partial blocks */
651 1.1 pooka bp->b_blkno = blkno + ((offset - ((off_t)lbn << fs_bshift)) >>
652 1.1 pooka dev_bshift);
653 1.1 pooka
654 1.1 pooka UVMHIST_LOG(ubchist,
655 1.1 pooka "bp %p offset 0x%x bcount 0x%x blkno 0x%x",
656 1.36 uebayasi bp, offset, bp->b_bcount, bp->b_blkno);
657 1.1 pooka
658 1.1 pooka VOP_STRATEGY(devvp, bp);
659 1.1 pooka }
660 1.1 pooka
661 1.1 pooka loopdone:
662 1.1 pooka nestiobuf_done(mbp, skipbytes, error);
663 1.1 pooka if (async) {
664 1.1 pooka UVMHIST_LOG(ubchist, "returning 0 (async)",0,0,0,0);
665 1.36.2.27 uebayasi if (!glocked) {
666 1.36.2.27 uebayasi genfs_node_unlock(vp);
667 1.36.2.27 uebayasi }
668 1.1 pooka error = 0;
669 1.33 uebayasi goto out_err_free;
670 1.1 pooka }
671 1.1 pooka if (bp != NULL) {
672 1.1 pooka error = biowait(mbp);
673 1.1 pooka }
674 1.1 pooka
675 1.19 rmind /* Remove the mapping (make KVA available as soon as possible) */
676 1.19 rmind uvm_pagermapout(kva, npages);
677 1.19 rmind
678 1.1 pooka /*
679 1.1 pooka * if this we encountered a hole then we have to do a little more work.
680 1.1 pooka * for read faults, we marked the page PG_RDONLY so that future
681 1.1 pooka * write accesses to the page will fault again.
682 1.1 pooka * for write faults, we must make sure that the backing store for
683 1.1 pooka * the page is completely allocated while the pages are locked.
684 1.1 pooka */
685 1.1 pooka
686 1.1 pooka if (!error && sawhole && blockalloc) {
687 1.9 simonb /*
688 1.9 simonb * XXX: This assumes that we come here only via
689 1.9 simonb * the mmio path
690 1.9 simonb */
691 1.11 yamt if (vp->v_mount->mnt_wapbl) {
692 1.9 simonb error = WAPBL_BEGIN(vp->v_mount);
693 1.9 simonb }
694 1.9 simonb
695 1.9 simonb if (!error) {
696 1.9 simonb error = GOP_ALLOC(vp, startoffset,
697 1.9 simonb npages << PAGE_SHIFT, 0, cred);
698 1.11 yamt if (vp->v_mount->mnt_wapbl) {
699 1.9 simonb WAPBL_END(vp->v_mount);
700 1.9 simonb }
701 1.9 simonb }
702 1.9 simonb
703 1.1 pooka UVMHIST_LOG(ubchist, "gop_alloc off 0x%x/0x%x -> %d",
704 1.1 pooka startoffset, npages << PAGE_SHIFT, error,0);
705 1.1 pooka if (!error) {
706 1.1 pooka for (i = 0; i < npages; i++) {
707 1.31 uebayasi struct vm_page *pg = pgs[i];
708 1.31 uebayasi
709 1.31 uebayasi if (pg == NULL) {
710 1.1 pooka continue;
711 1.1 pooka }
712 1.31 uebayasi pg->flags &= ~(PG_CLEAN|PG_RDONLY);
713 1.1 pooka UVMHIST_LOG(ubchist, "mark dirty pg %p",
714 1.31 uebayasi pg,0,0,0);
715 1.1 pooka }
716 1.1 pooka }
717 1.1 pooka }
718 1.36.2.27 uebayasi if (!glocked) {
719 1.36.2.27 uebayasi genfs_node_unlock(vp);
720 1.36.2.27 uebayasi }
721 1.18 rmind
722 1.18 rmind putiobuf(mbp);
723 1.34 uebayasi }
724 1.18 rmind
725 1.2 ad mutex_enter(&uobj->vmobjlock);
726 1.1 pooka
727 1.1 pooka /*
728 1.1 pooka * we're almost done! release the pages...
729 1.1 pooka * for errors, we free the pages.
730 1.1 pooka * otherwise we activate them and mark them as valid and clean.
731 1.1 pooka * also, unbusy pages that were not actually requested.
732 1.1 pooka */
733 1.1 pooka
734 1.1 pooka if (error) {
735 1.1 pooka for (i = 0; i < npages; i++) {
736 1.31 uebayasi struct vm_page *pg = pgs[i];
737 1.31 uebayasi
738 1.31 uebayasi if (pg == NULL) {
739 1.1 pooka continue;
740 1.1 pooka }
741 1.1 pooka UVMHIST_LOG(ubchist, "examining pg %p flags 0x%x",
742 1.31 uebayasi pg, pg->flags, 0,0);
743 1.31 uebayasi if (pg->flags & PG_FAKE) {
744 1.31 uebayasi pg->flags |= PG_RELEASED;
745 1.1 pooka }
746 1.1 pooka }
747 1.2 ad mutex_enter(&uvm_pageqlock);
748 1.1 pooka uvm_page_unbusy(pgs, npages);
749 1.2 ad mutex_exit(&uvm_pageqlock);
750 1.2 ad mutex_exit(&uobj->vmobjlock);
751 1.1 pooka UVMHIST_LOG(ubchist, "returning error %d", error,0,0,0);
752 1.33 uebayasi goto out_err_free;
753 1.1 pooka }
754 1.1 pooka
755 1.1 pooka out:
756 1.1 pooka UVMHIST_LOG(ubchist, "succeeding, npages %d", npages,0,0,0);
757 1.1 pooka error = 0;
758 1.2 ad mutex_enter(&uvm_pageqlock);
759 1.1 pooka for (i = 0; i < npages; i++) {
760 1.31 uebayasi struct vm_page *pg = pgs[i];
761 1.1 pooka if (pg == NULL) {
762 1.1 pooka continue;
763 1.1 pooka }
764 1.1 pooka UVMHIST_LOG(ubchist, "examining pg %p flags 0x%x",
765 1.1 pooka pg, pg->flags, 0,0);
766 1.1 pooka if (pg->flags & PG_FAKE && !overwrite) {
767 1.1 pooka pg->flags &= ~(PG_FAKE);
768 1.1 pooka pmap_clear_modify(pgs[i]);
769 1.1 pooka }
770 1.35 uebayasi KASSERT(!memwrite || !blockalloc || (pg->flags & PG_RDONLY) == 0);
771 1.29 uebayasi if (i < ridx || i >= ridx + orignmempages || async) {
772 1.1 pooka UVMHIST_LOG(ubchist, "unbusy pg %p offset 0x%x",
773 1.1 pooka pg, pg->offset,0,0);
774 1.1 pooka if (pg->flags & PG_WANTED) {
775 1.1 pooka wakeup(pg);
776 1.1 pooka }
777 1.1 pooka if (pg->flags & PG_FAKE) {
778 1.1 pooka KASSERT(overwrite);
779 1.1 pooka uvm_pagezero(pg);
780 1.1 pooka }
781 1.1 pooka if (pg->flags & PG_RELEASED) {
782 1.1 pooka uvm_pagefree(pg);
783 1.1 pooka continue;
784 1.1 pooka }
785 1.1 pooka uvm_pageenqueue(pg);
786 1.1 pooka pg->flags &= ~(PG_WANTED|PG_BUSY|PG_FAKE);
787 1.1 pooka UVM_PAGE_OWN(pg, NULL);
788 1.1 pooka }
789 1.1 pooka }
790 1.2 ad mutex_exit(&uvm_pageqlock);
791 1.36.2.21 uebayasi if (memwrite) {
792 1.36.2.21 uebayasi genfs_markdirty(vp);
793 1.36.2.21 uebayasi }
794 1.2 ad mutex_exit(&uobj->vmobjlock);
795 1.1 pooka if (ap->a_m != NULL) {
796 1.1 pooka memcpy(ap->a_m, &pgs[ridx],
797 1.29 uebayasi orignmempages * sizeof(struct vm_page *));
798 1.1 pooka }
799 1.1 pooka
800 1.33 uebayasi out_err_free:
801 1.14 christos if (pgs != NULL && pgs != pgs_onstack)
802 1.1 pooka kmem_free(pgs, pgs_size);
803 1.33 uebayasi out_err:
804 1.1 pooka if (has_trans)
805 1.1 pooka fstrans_done(vp->v_mount);
806 1.36.2.21 uebayasi return error;
807 1.1 pooka }
808 1.1 pooka
809 1.36.2.1 uebayasi #ifdef XIP
810 1.36.2.9 uebayasi /*
811 1.36.2.41 uebayasi * genfs_do_getpages_xip_io
812 1.36.2.9 uebayasi * Return "direct pages" of XIP vnode. The block addresses of XIP
813 1.36.2.9 uebayasi * vnode pages are returned back to the VM fault handler as the
814 1.36.2.9 uebayasi * actually mapped physical addresses.
815 1.36.2.9 uebayasi */
816 1.36.2.1 uebayasi static int
817 1.36.2.35 uebayasi genfs_do_getpages_xip_io(
818 1.36.2.35 uebayasi struct vnode *vp,
819 1.36.2.35 uebayasi voff_t offset,
820 1.36.2.35 uebayasi struct vm_page **pps,
821 1.36.2.35 uebayasi int *npagesp,
822 1.36.2.35 uebayasi int centeridx,
823 1.36.2.35 uebayasi vm_prot_t access_type,
824 1.36.2.35 uebayasi int advice,
825 1.36.2.35 uebayasi int flags)
826 1.36.2.35 uebayasi {
827 1.36.2.1 uebayasi struct uvm_object * const uobj = &vp->v_uobj;
828 1.36.2.1 uebayasi
829 1.36.2.1 uebayasi int error;
830 1.36.2.1 uebayasi off_t eof, sbkoff, ebkoff, off;
831 1.36.2.1 uebayasi int npages;
832 1.36.2.1 uebayasi int fs_bshift, fs_bsize, dev_bshift, dev_bsize;
833 1.36.2.1 uebayasi int i;
834 1.36.2.1 uebayasi
835 1.36.2.35 uebayasi UVMHIST_FUNC("genfs_do_getpages_xip_io"); UVMHIST_CALLED(ubchist);
836 1.36.2.1 uebayasi
837 1.36.2.1 uebayasi GOP_SIZE(vp, vp->v_size, &eof, GOP_SIZE_MEM);
838 1.36.2.1 uebayasi npages = MIN(*npagesp, round_page(eof - offset) >> PAGE_SHIFT);
839 1.36.2.1 uebayasi
840 1.36.2.1 uebayasi fs_bshift = vp->v_mount->mnt_fs_bshift;
841 1.36.2.1 uebayasi fs_bsize = 1 << fs_bshift;
842 1.36.2.1 uebayasi dev_bshift = vp->v_mount->mnt_dev_bshift;
843 1.36.2.1 uebayasi dev_bsize = 1 << dev_bshift;
844 1.36.2.1 uebayasi
845 1.36.2.1 uebayasi sbkoff = offset & ~(fs_bsize - 1);
846 1.36.2.23 uebayasi ebkoff = ((offset + PAGE_SIZE * npages) + (fs_bsize - 1)) &
847 1.36.2.23 uebayasi ~(fs_bsize - 1);
848 1.36.2.1 uebayasi
849 1.36.2.23 uebayasi UVMHIST_LOG(ubchist, "xip npages=%d sbkoff=%lx ebkoff=%lx",
850 1.36.2.23 uebayasi npages, (long)sbkoff, (long)ebkoff, 0);
851 1.36.2.1 uebayasi
852 1.36.2.1 uebayasi off = offset;
853 1.36.2.13 uebayasi for (i = 0; i < npages; i++) {
854 1.36.2.1 uebayasi daddr_t lbn, blkno;
855 1.36.2.1 uebayasi int run;
856 1.36.2.1 uebayasi struct vnode *devvp;
857 1.36.2.1 uebayasi
858 1.36.2.1 uebayasi lbn = (off & ~(fs_bsize - 1)) >> fs_bshift;
859 1.36.2.1 uebayasi
860 1.36.2.1 uebayasi error = VOP_BMAP(vp, lbn, &devvp, &blkno, &run);
861 1.36.2.1 uebayasi KASSERT(error == 0);
862 1.36.2.23 uebayasi UVMHIST_LOG(ubchist, "xip VOP_BMAP: lbn=%ld blkno=%ld run=%d",
863 1.36.2.23 uebayasi (long)lbn, (long)blkno, run, 0);
864 1.36.2.1 uebayasi
865 1.36.2.12 uebayasi /*
866 1.36.2.12 uebayasi * XIP page metadata assignment
867 1.36.2.12 uebayasi * - Unallocated block is redirected to the dedicated zero'ed
868 1.36.2.12 uebayasi * page.
869 1.36.2.12 uebayasi */
870 1.36.2.1 uebayasi if (blkno < 0) {
871 1.36.2.37 uebayasi panic("XIP hole is not supported yet!");
872 1.36.2.1 uebayasi } else {
873 1.36.2.32 uebayasi daddr_t blk_off, fs_off;
874 1.36.2.13 uebayasi
875 1.36.2.32 uebayasi blk_off = blkno << dev_bshift;
876 1.36.2.32 uebayasi fs_off = off - (lbn << fs_bshift);
877 1.36.2.32 uebayasi
878 1.36.2.34 uebayasi pps[i] = uvn_findpage_xip(devvp, &vp->v_uobj,
879 1.36.2.32 uebayasi blk_off + fs_off);
880 1.36.2.32 uebayasi KASSERT(pps[i] != NULL);
881 1.36.2.1 uebayasi }
882 1.36.2.1 uebayasi
883 1.36.2.1 uebayasi UVMHIST_LOG(ubchist, "xip pgs %d => phys_addr=0x%lx (%p)",
884 1.36.2.1 uebayasi i,
885 1.36.2.22 uebayasi (long)pps[i]->phys_addr,
886 1.36.2.1 uebayasi pps[i],
887 1.36.2.1 uebayasi 0);
888 1.36.2.1 uebayasi
889 1.36.2.1 uebayasi off += PAGE_SIZE;
890 1.36.2.1 uebayasi }
891 1.36.2.1 uebayasi
892 1.36.2.26 uebayasi mutex_enter(&uobj->vmobjlock);
893 1.36.2.13 uebayasi
894 1.36.2.13 uebayasi for (i = 0; i < npages; i++) {
895 1.36.2.13 uebayasi struct vm_page *pg = pps[i];
896 1.36.2.13 uebayasi
897 1.36.2.31 uebayasi KASSERT((pg->flags & PG_RDONLY) != 0);
898 1.36.2.33 uebayasi KASSERT((pg->flags & PG_BUSY) == 0);
899 1.36.2.33 uebayasi KASSERT((pg->flags & PG_CLEAN) != 0);
900 1.36.2.33 uebayasi KASSERT((pg->flags & PG_DEVICE) != 0);
901 1.36.2.33 uebayasi pg->flags |= PG_BUSY;
902 1.36.2.33 uebayasi pg->flags &= ~PG_FAKE;
903 1.36.2.33 uebayasi pg->uobject = &vp->v_uobj;
904 1.36.2.13 uebayasi }
905 1.36.2.13 uebayasi
906 1.36.2.36 uebayasi mutex_exit(&uobj->vmobjlock);
907 1.36.2.13 uebayasi
908 1.36.2.13 uebayasi *npagesp = npages;
909 1.36.2.1 uebayasi
910 1.36.2.1 uebayasi return 0;
911 1.36.2.1 uebayasi }
912 1.36.2.1 uebayasi #endif
913 1.36.2.1 uebayasi
914 1.1 pooka /*
915 1.1 pooka * generic VM putpages routine.
916 1.1 pooka * Write the given range of pages to backing store.
917 1.1 pooka *
918 1.1 pooka * => "offhi == 0" means flush all pages at or after "offlo".
919 1.1 pooka * => object should be locked by caller. we return with the
920 1.1 pooka * object unlocked.
921 1.1 pooka * => if PGO_CLEANIT or PGO_SYNCIO is set, we may block (due to I/O).
922 1.1 pooka * thus, a caller might want to unlock higher level resources
923 1.1 pooka * (e.g. vm_map) before calling flush.
924 1.1 pooka * => if neither PGO_CLEANIT nor PGO_SYNCIO is set, we will not block
925 1.1 pooka * => if PGO_ALLPAGES is set, then all pages in the object will be processed.
926 1.1 pooka * => NOTE: we rely on the fact that the object's memq is a TAILQ and
927 1.1 pooka * that new pages are inserted on the tail end of the list. thus,
928 1.1 pooka * we can make a complete pass through the object in one go by starting
929 1.1 pooka * at the head and working towards the tail (new pages are put in
930 1.1 pooka * front of us).
931 1.1 pooka * => NOTE: we are allowed to lock the page queues, so the caller
932 1.1 pooka * must not be holding the page queue lock.
933 1.1 pooka *
934 1.1 pooka * note on "cleaning" object and PG_BUSY pages:
935 1.1 pooka * this routine is holding the lock on the object. the only time
936 1.1 pooka * that it can run into a PG_BUSY page that it does not own is if
937 1.1 pooka * some other process has started I/O on the page (e.g. either
938 1.1 pooka * a pagein, or a pageout). if the PG_BUSY page is being paged
939 1.1 pooka * in, then it can not be dirty (!PG_CLEAN) because no one has
940 1.1 pooka * had a chance to modify it yet. if the PG_BUSY page is being
941 1.1 pooka * paged out then it means that someone else has already started
942 1.1 pooka * cleaning the page for us (how nice!). in this case, if we
943 1.1 pooka * have syncio specified, then after we make our pass through the
944 1.1 pooka * object we need to wait for the other PG_BUSY pages to clear
945 1.1 pooka * off (i.e. we need to do an iosync). also note that once a
946 1.1 pooka * page is PG_BUSY it must stay in its object until it is un-busyed.
947 1.1 pooka *
948 1.1 pooka * note on page traversal:
949 1.1 pooka * we can traverse the pages in an object either by going down the
950 1.1 pooka * linked list in "uobj->memq", or we can go over the address range
951 1.1 pooka * by page doing hash table lookups for each address. depending
952 1.1 pooka * on how many pages are in the object it may be cheaper to do one
953 1.1 pooka * or the other. we set "by_list" to true if we are using memq.
954 1.1 pooka * if the cost of a hash lookup was equal to the cost of the list
955 1.1 pooka * traversal we could compare the number of pages in the start->stop
956 1.1 pooka * range to the total number of pages in the object. however, it
957 1.1 pooka * seems that a hash table lookup is more expensive than the linked
958 1.1 pooka * list traversal, so we multiply the number of pages in the
959 1.1 pooka * range by an estimate of the relatively higher cost of the hash lookup.
960 1.1 pooka */
961 1.1 pooka
962 1.1 pooka int
963 1.1 pooka genfs_putpages(void *v)
964 1.1 pooka {
965 1.1 pooka struct vop_putpages_args /* {
966 1.1 pooka struct vnode *a_vp;
967 1.1 pooka voff_t a_offlo;
968 1.1 pooka voff_t a_offhi;
969 1.1 pooka int a_flags;
970 1.22 uebayasi } */ * const ap = v;
971 1.1 pooka
972 1.36.2.24 uebayasi #ifdef XIP
973 1.36.2.24 uebayasi if ((ap->a_vp->v_vflag & VV_XIP) != 0)
974 1.36.2.24 uebayasi return genfs_do_putpages_xip(ap->a_vp, ap->a_offlo, ap->a_offhi,
975 1.36.2.24 uebayasi ap->a_flags, NULL);
976 1.36.2.24 uebayasi else
977 1.36.2.24 uebayasi #endif
978 1.1 pooka return genfs_do_putpages(ap->a_vp, ap->a_offlo, ap->a_offhi,
979 1.1 pooka ap->a_flags, NULL);
980 1.1 pooka }
981 1.1 pooka
982 1.1 pooka int
983 1.4 yamt genfs_do_putpages(struct vnode *vp, off_t startoff, off_t endoff,
984 1.4 yamt int origflags, struct vm_page **busypg)
985 1.1 pooka {
986 1.22 uebayasi struct uvm_object * const uobj = &vp->v_uobj;
987 1.22 uebayasi kmutex_t * const slock = &uobj->vmobjlock;
988 1.1 pooka off_t off;
989 1.1 pooka /* Even for strange MAXPHYS, the shift rounds down to a page */
990 1.1 pooka #define maxpages (MAXPHYS >> PAGE_SHIFT)
991 1.2 ad int i, error, npages, nback;
992 1.1 pooka int freeflag;
993 1.1 pooka struct vm_page *pgs[maxpages], *pg, *nextpg, *tpg, curmp, endmp;
994 1.1 pooka bool wasclean, by_list, needs_clean, yld;
995 1.4 yamt bool async = (origflags & PGO_SYNCIO) == 0;
996 1.1 pooka bool pagedaemon = curlwp == uvm.pagedaemon_lwp;
997 1.22 uebayasi struct lwp * const l = curlwp ? curlwp : &lwp0;
998 1.22 uebayasi struct genfs_node * const gp = VTOG(vp);
999 1.4 yamt int flags;
1000 1.1 pooka int dirtygen;
1001 1.4 yamt bool modified;
1002 1.12 hannken bool need_wapbl;
1003 1.4 yamt bool has_trans;
1004 1.1 pooka bool cleanall;
1005 1.4 yamt bool onworklst;
1006 1.1 pooka
1007 1.1 pooka UVMHIST_FUNC("genfs_putpages"); UVMHIST_CALLED(ubchist);
1008 1.1 pooka
1009 1.4 yamt KASSERT(origflags & (PGO_CLEANIT|PGO_FREE|PGO_DEACTIVATE));
1010 1.1 pooka KASSERT((startoff & PAGE_MASK) == 0 && (endoff & PAGE_MASK) == 0);
1011 1.1 pooka KASSERT(startoff < endoff || endoff == 0);
1012 1.1 pooka
1013 1.1 pooka UVMHIST_LOG(ubchist, "vp %p pages %d off 0x%x len 0x%x",
1014 1.1 pooka vp, uobj->uo_npages, startoff, endoff - startoff);
1015 1.1 pooka
1016 1.6 hannken has_trans = false;
1017 1.12 hannken need_wapbl = (!pagedaemon && vp->v_mount && vp->v_mount->mnt_wapbl &&
1018 1.12 hannken (origflags & PGO_JOURNALLOCKED) == 0);
1019 1.6 hannken
1020 1.4 yamt retry:
1021 1.4 yamt modified = false;
1022 1.4 yamt flags = origflags;
1023 1.1 pooka KASSERT((vp->v_iflag & VI_ONWORKLST) != 0 ||
1024 1.1 pooka (vp->v_iflag & VI_WRMAPDIRTY) == 0);
1025 1.1 pooka if (uobj->uo_npages == 0) {
1026 1.1 pooka if (vp->v_iflag & VI_ONWORKLST) {
1027 1.1 pooka vp->v_iflag &= ~VI_WRMAPDIRTY;
1028 1.1 pooka if (LIST_FIRST(&vp->v_dirtyblkhd) == NULL)
1029 1.1 pooka vn_syncer_remove_from_worklist(vp);
1030 1.1 pooka }
1031 1.12 hannken if (has_trans) {
1032 1.12 hannken if (need_wapbl)
1033 1.12 hannken WAPBL_END(vp->v_mount);
1034 1.6 hannken fstrans_done(vp->v_mount);
1035 1.12 hannken }
1036 1.2 ad mutex_exit(slock);
1037 1.1 pooka return (0);
1038 1.1 pooka }
1039 1.1 pooka
1040 1.1 pooka /*
1041 1.1 pooka * the vnode has pages, set up to process the request.
1042 1.1 pooka */
1043 1.1 pooka
1044 1.6 hannken if (!has_trans && (flags & PGO_CLEANIT) != 0) {
1045 1.2 ad mutex_exit(slock);
1046 1.1 pooka if (pagedaemon) {
1047 1.1 pooka error = fstrans_start_nowait(vp->v_mount, FSTRANS_LAZY);
1048 1.1 pooka if (error)
1049 1.1 pooka return error;
1050 1.1 pooka } else
1051 1.1 pooka fstrans_start(vp->v_mount, FSTRANS_LAZY);
1052 1.12 hannken if (need_wapbl) {
1053 1.12 hannken error = WAPBL_BEGIN(vp->v_mount);
1054 1.12 hannken if (error) {
1055 1.12 hannken fstrans_done(vp->v_mount);
1056 1.12 hannken return error;
1057 1.12 hannken }
1058 1.12 hannken }
1059 1.1 pooka has_trans = true;
1060 1.2 ad mutex_enter(slock);
1061 1.6 hannken goto retry;
1062 1.1 pooka }
1063 1.1 pooka
1064 1.1 pooka error = 0;
1065 1.1 pooka wasclean = (vp->v_numoutput == 0);
1066 1.1 pooka off = startoff;
1067 1.1 pooka if (endoff == 0 || flags & PGO_ALLPAGES) {
1068 1.1 pooka endoff = trunc_page(LLONG_MAX);
1069 1.1 pooka }
1070 1.1 pooka by_list = (uobj->uo_npages <=
1071 1.17 yamt ((endoff - startoff) >> PAGE_SHIFT) * UVM_PAGE_TREE_PENALTY);
1072 1.1 pooka
1073 1.1 pooka #if !defined(DEBUG)
1074 1.1 pooka /*
1075 1.1 pooka * if this vnode is known not to have dirty pages,
1076 1.1 pooka * don't bother to clean it out.
1077 1.1 pooka */
1078 1.1 pooka
1079 1.1 pooka if ((vp->v_iflag & VI_ONWORKLST) == 0) {
1080 1.1 pooka if ((flags & (PGO_FREE|PGO_DEACTIVATE)) == 0) {
1081 1.1 pooka goto skip_scan;
1082 1.1 pooka }
1083 1.1 pooka flags &= ~PGO_CLEANIT;
1084 1.1 pooka }
1085 1.1 pooka #endif /* !defined(DEBUG) */
1086 1.1 pooka
1087 1.1 pooka /*
1088 1.1 pooka * start the loop. when scanning by list, hold the last page
1089 1.1 pooka * in the list before we start. pages allocated after we start
1090 1.1 pooka * will be added to the end of the list, so we can stop at the
1091 1.1 pooka * current last page.
1092 1.1 pooka */
1093 1.1 pooka
1094 1.1 pooka cleanall = (flags & PGO_CLEANIT) != 0 && wasclean &&
1095 1.1 pooka startoff == 0 && endoff == trunc_page(LLONG_MAX) &&
1096 1.1 pooka (vp->v_iflag & VI_ONWORKLST) != 0;
1097 1.1 pooka dirtygen = gp->g_dirtygen;
1098 1.1 pooka freeflag = pagedaemon ? PG_PAGEOUT : PG_RELEASED;
1099 1.1 pooka if (by_list) {
1100 1.36.2.21 uebayasi curmp.flags = PG_MARKER;
1101 1.36.2.21 uebayasi endmp.flags = PG_MARKER;
1102 1.1 pooka pg = TAILQ_FIRST(&uobj->memq);
1103 1.8 ad TAILQ_INSERT_TAIL(&uobj->memq, &endmp, listq.queue);
1104 1.1 pooka } else {
1105 1.1 pooka pg = uvm_pagelookup(uobj, off);
1106 1.1 pooka }
1107 1.1 pooka nextpg = NULL;
1108 1.1 pooka while (by_list || off < endoff) {
1109 1.1 pooka
1110 1.1 pooka /*
1111 1.1 pooka * if the current page is not interesting, move on to the next.
1112 1.1 pooka */
1113 1.1 pooka
1114 1.36.2.21 uebayasi KASSERT(pg == NULL || pg->uobject == uobj ||
1115 1.36.2.21 uebayasi (pg->flags & PG_MARKER) != 0);
1116 1.1 pooka KASSERT(pg == NULL ||
1117 1.1 pooka (pg->flags & (PG_RELEASED|PG_PAGEOUT)) == 0 ||
1118 1.36.2.21 uebayasi (pg->flags & (PG_BUSY|PG_MARKER)) != 0);
1119 1.1 pooka if (by_list) {
1120 1.1 pooka if (pg == &endmp) {
1121 1.1 pooka break;
1122 1.1 pooka }
1123 1.36.2.21 uebayasi if (pg->flags & PG_MARKER) {
1124 1.36.2.21 uebayasi pg = TAILQ_NEXT(pg, listq.queue);
1125 1.36.2.21 uebayasi continue;
1126 1.36.2.21 uebayasi }
1127 1.1 pooka if (pg->offset < startoff || pg->offset >= endoff ||
1128 1.1 pooka pg->flags & (PG_RELEASED|PG_PAGEOUT)) {
1129 1.1 pooka if (pg->flags & (PG_RELEASED|PG_PAGEOUT)) {
1130 1.1 pooka wasclean = false;
1131 1.1 pooka }
1132 1.8 ad pg = TAILQ_NEXT(pg, listq.queue);
1133 1.1 pooka continue;
1134 1.1 pooka }
1135 1.1 pooka off = pg->offset;
1136 1.1 pooka } else if (pg == NULL || pg->flags & (PG_RELEASED|PG_PAGEOUT)) {
1137 1.1 pooka if (pg != NULL) {
1138 1.1 pooka wasclean = false;
1139 1.1 pooka }
1140 1.1 pooka off += PAGE_SIZE;
1141 1.1 pooka if (off < endoff) {
1142 1.1 pooka pg = uvm_pagelookup(uobj, off);
1143 1.1 pooka }
1144 1.1 pooka continue;
1145 1.1 pooka }
1146 1.1 pooka
1147 1.1 pooka /*
1148 1.1 pooka * if the current page needs to be cleaned and it's busy,
1149 1.1 pooka * wait for it to become unbusy.
1150 1.1 pooka */
1151 1.1 pooka
1152 1.1 pooka yld = (l->l_cpu->ci_schedstate.spc_flags &
1153 1.1 pooka SPCF_SHOULDYIELD) && !pagedaemon;
1154 1.1 pooka if (pg->flags & PG_BUSY || yld) {
1155 1.1 pooka UVMHIST_LOG(ubchist, "busy %p", pg,0,0,0);
1156 1.1 pooka if (flags & PGO_BUSYFAIL && pg->flags & PG_BUSY) {
1157 1.1 pooka UVMHIST_LOG(ubchist, "busyfail %p", pg, 0,0,0);
1158 1.1 pooka error = EDEADLK;
1159 1.1 pooka if (busypg != NULL)
1160 1.1 pooka *busypg = pg;
1161 1.1 pooka break;
1162 1.1 pooka }
1163 1.1 pooka if (pagedaemon) {
1164 1.1 pooka /*
1165 1.1 pooka * someone has taken the page while we
1166 1.1 pooka * dropped the lock for fstrans_start.
1167 1.1 pooka */
1168 1.1 pooka break;
1169 1.1 pooka }
1170 1.1 pooka if (by_list) {
1171 1.8 ad TAILQ_INSERT_BEFORE(pg, &curmp, listq.queue);
1172 1.1 pooka UVMHIST_LOG(ubchist, "curmp next %p",
1173 1.8 ad TAILQ_NEXT(&curmp, listq.queue), 0,0,0);
1174 1.1 pooka }
1175 1.1 pooka if (yld) {
1176 1.2 ad mutex_exit(slock);
1177 1.1 pooka preempt();
1178 1.2 ad mutex_enter(slock);
1179 1.1 pooka } else {
1180 1.1 pooka pg->flags |= PG_WANTED;
1181 1.1 pooka UVM_UNLOCK_AND_WAIT(pg, slock, 0, "genput", 0);
1182 1.2 ad mutex_enter(slock);
1183 1.1 pooka }
1184 1.1 pooka if (by_list) {
1185 1.1 pooka UVMHIST_LOG(ubchist, "after next %p",
1186 1.8 ad TAILQ_NEXT(&curmp, listq.queue), 0,0,0);
1187 1.8 ad pg = TAILQ_NEXT(&curmp, listq.queue);
1188 1.8 ad TAILQ_REMOVE(&uobj->memq, &curmp, listq.queue);
1189 1.1 pooka } else {
1190 1.1 pooka pg = uvm_pagelookup(uobj, off);
1191 1.1 pooka }
1192 1.1 pooka continue;
1193 1.1 pooka }
1194 1.1 pooka
1195 1.1 pooka /*
1196 1.1 pooka * if we're freeing, remove all mappings of the page now.
1197 1.1 pooka * if we're cleaning, check if the page is needs to be cleaned.
1198 1.1 pooka */
1199 1.1 pooka
1200 1.1 pooka if (flags & PGO_FREE) {
1201 1.1 pooka pmap_page_protect(pg, VM_PROT_NONE);
1202 1.1 pooka } else if (flags & PGO_CLEANIT) {
1203 1.1 pooka
1204 1.1 pooka /*
1205 1.1 pooka * if we still have some hope to pull this vnode off
1206 1.1 pooka * from the syncer queue, write-protect the page.
1207 1.1 pooka */
1208 1.1 pooka
1209 1.1 pooka if (cleanall && wasclean &&
1210 1.1 pooka gp->g_dirtygen == dirtygen) {
1211 1.1 pooka
1212 1.1 pooka /*
1213 1.1 pooka * uobj pages get wired only by uvm_fault
1214 1.1 pooka * where uobj is locked.
1215 1.1 pooka */
1216 1.1 pooka
1217 1.1 pooka if (pg->wire_count == 0) {
1218 1.1 pooka pmap_page_protect(pg,
1219 1.1 pooka VM_PROT_READ|VM_PROT_EXECUTE);
1220 1.1 pooka } else {
1221 1.1 pooka cleanall = false;
1222 1.1 pooka }
1223 1.1 pooka }
1224 1.1 pooka }
1225 1.1 pooka
1226 1.1 pooka if (flags & PGO_CLEANIT) {
1227 1.1 pooka needs_clean = pmap_clear_modify(pg) ||
1228 1.1 pooka (pg->flags & PG_CLEAN) == 0;
1229 1.1 pooka pg->flags |= PG_CLEAN;
1230 1.1 pooka } else {
1231 1.1 pooka needs_clean = false;
1232 1.1 pooka }
1233 1.1 pooka
1234 1.1 pooka /*
1235 1.1 pooka * if we're cleaning, build a cluster.
1236 1.1 pooka * the cluster will consist of pages which are currently dirty,
1237 1.1 pooka * but they will be returned to us marked clean.
1238 1.1 pooka * if not cleaning, just operate on the one page.
1239 1.1 pooka */
1240 1.1 pooka
1241 1.1 pooka if (needs_clean) {
1242 1.1 pooka KDASSERT((vp->v_iflag & VI_ONWORKLST));
1243 1.1 pooka wasclean = false;
1244 1.1 pooka memset(pgs, 0, sizeof(pgs));
1245 1.1 pooka pg->flags |= PG_BUSY;
1246 1.1 pooka UVM_PAGE_OWN(pg, "genfs_putpages");
1247 1.1 pooka
1248 1.1 pooka /*
1249 1.1 pooka * first look backward.
1250 1.1 pooka */
1251 1.1 pooka
1252 1.1 pooka npages = MIN(maxpages >> 1, off >> PAGE_SHIFT);
1253 1.1 pooka nback = npages;
1254 1.1 pooka uvn_findpages(uobj, off - PAGE_SIZE, &nback, &pgs[0],
1255 1.1 pooka UFP_NOWAIT|UFP_NOALLOC|UFP_DIRTYONLY|UFP_BACKWARD);
1256 1.1 pooka if (nback) {
1257 1.1 pooka memmove(&pgs[0], &pgs[npages - nback],
1258 1.1 pooka nback * sizeof(pgs[0]));
1259 1.1 pooka if (npages - nback < nback)
1260 1.1 pooka memset(&pgs[nback], 0,
1261 1.1 pooka (npages - nback) * sizeof(pgs[0]));
1262 1.1 pooka else
1263 1.1 pooka memset(&pgs[npages - nback], 0,
1264 1.1 pooka nback * sizeof(pgs[0]));
1265 1.1 pooka }
1266 1.1 pooka
1267 1.1 pooka /*
1268 1.1 pooka * then plug in our page of interest.
1269 1.1 pooka */
1270 1.1 pooka
1271 1.1 pooka pgs[nback] = pg;
1272 1.1 pooka
1273 1.1 pooka /*
1274 1.1 pooka * then look forward to fill in the remaining space in
1275 1.1 pooka * the array of pages.
1276 1.1 pooka */
1277 1.1 pooka
1278 1.1 pooka npages = maxpages - nback - 1;
1279 1.1 pooka uvn_findpages(uobj, off + PAGE_SIZE, &npages,
1280 1.1 pooka &pgs[nback + 1],
1281 1.1 pooka UFP_NOWAIT|UFP_NOALLOC|UFP_DIRTYONLY);
1282 1.1 pooka npages += nback + 1;
1283 1.1 pooka } else {
1284 1.1 pooka pgs[0] = pg;
1285 1.1 pooka npages = 1;
1286 1.1 pooka nback = 0;
1287 1.1 pooka }
1288 1.1 pooka
1289 1.1 pooka /*
1290 1.1 pooka * apply FREE or DEACTIVATE options if requested.
1291 1.1 pooka */
1292 1.1 pooka
1293 1.1 pooka if (flags & (PGO_DEACTIVATE|PGO_FREE)) {
1294 1.2 ad mutex_enter(&uvm_pageqlock);
1295 1.1 pooka }
1296 1.1 pooka for (i = 0; i < npages; i++) {
1297 1.1 pooka tpg = pgs[i];
1298 1.1 pooka KASSERT(tpg->uobject == uobj);
1299 1.8 ad if (by_list && tpg == TAILQ_NEXT(pg, listq.queue))
1300 1.1 pooka pg = tpg;
1301 1.1 pooka if (tpg->offset < startoff || tpg->offset >= endoff)
1302 1.1 pooka continue;
1303 1.1 pooka if (flags & PGO_DEACTIVATE && tpg->wire_count == 0) {
1304 1.1 pooka uvm_pagedeactivate(tpg);
1305 1.1 pooka } else if (flags & PGO_FREE) {
1306 1.1 pooka pmap_page_protect(tpg, VM_PROT_NONE);
1307 1.1 pooka if (tpg->flags & PG_BUSY) {
1308 1.1 pooka tpg->flags |= freeflag;
1309 1.1 pooka if (pagedaemon) {
1310 1.2 ad uvm_pageout_start(1);
1311 1.1 pooka uvm_pagedequeue(tpg);
1312 1.1 pooka }
1313 1.1 pooka } else {
1314 1.1 pooka
1315 1.1 pooka /*
1316 1.1 pooka * ``page is not busy''
1317 1.1 pooka * implies that npages is 1
1318 1.1 pooka * and needs_clean is false.
1319 1.1 pooka */
1320 1.1 pooka
1321 1.8 ad nextpg = TAILQ_NEXT(tpg, listq.queue);
1322 1.1 pooka uvm_pagefree(tpg);
1323 1.1 pooka if (pagedaemon)
1324 1.1 pooka uvmexp.pdfreed++;
1325 1.1 pooka }
1326 1.1 pooka }
1327 1.1 pooka }
1328 1.1 pooka if (flags & (PGO_DEACTIVATE|PGO_FREE)) {
1329 1.2 ad mutex_exit(&uvm_pageqlock);
1330 1.1 pooka }
1331 1.1 pooka if (needs_clean) {
1332 1.1 pooka modified = true;
1333 1.1 pooka
1334 1.1 pooka /*
1335 1.1 pooka * start the i/o. if we're traversing by list,
1336 1.1 pooka * keep our place in the list with a marker page.
1337 1.1 pooka */
1338 1.1 pooka
1339 1.1 pooka if (by_list) {
1340 1.1 pooka TAILQ_INSERT_AFTER(&uobj->memq, pg, &curmp,
1341 1.8 ad listq.queue);
1342 1.1 pooka }
1343 1.2 ad mutex_exit(slock);
1344 1.1 pooka error = GOP_WRITE(vp, pgs, npages, flags);
1345 1.2 ad mutex_enter(slock);
1346 1.1 pooka if (by_list) {
1347 1.8 ad pg = TAILQ_NEXT(&curmp, listq.queue);
1348 1.8 ad TAILQ_REMOVE(&uobj->memq, &curmp, listq.queue);
1349 1.1 pooka }
1350 1.1 pooka if (error) {
1351 1.1 pooka break;
1352 1.1 pooka }
1353 1.1 pooka if (by_list) {
1354 1.1 pooka continue;
1355 1.1 pooka }
1356 1.1 pooka }
1357 1.1 pooka
1358 1.1 pooka /*
1359 1.1 pooka * find the next page and continue if there was no error.
1360 1.1 pooka */
1361 1.1 pooka
1362 1.1 pooka if (by_list) {
1363 1.1 pooka if (nextpg) {
1364 1.1 pooka pg = nextpg;
1365 1.1 pooka nextpg = NULL;
1366 1.1 pooka } else {
1367 1.8 ad pg = TAILQ_NEXT(pg, listq.queue);
1368 1.1 pooka }
1369 1.1 pooka } else {
1370 1.1 pooka off += (npages - nback) << PAGE_SHIFT;
1371 1.1 pooka if (off < endoff) {
1372 1.1 pooka pg = uvm_pagelookup(uobj, off);
1373 1.1 pooka }
1374 1.1 pooka }
1375 1.1 pooka }
1376 1.1 pooka if (by_list) {
1377 1.8 ad TAILQ_REMOVE(&uobj->memq, &endmp, listq.queue);
1378 1.1 pooka }
1379 1.1 pooka
1380 1.1 pooka if (modified && (vp->v_iflag & VI_WRMAPDIRTY) != 0 &&
1381 1.1 pooka (vp->v_type != VBLK ||
1382 1.1 pooka (vp->v_mount->mnt_flag & MNT_NODEVMTIME) == 0)) {
1383 1.1 pooka GOP_MARKUPDATE(vp, GOP_UPDATE_MODIFIED);
1384 1.1 pooka }
1385 1.1 pooka
1386 1.1 pooka /*
1387 1.1 pooka * if we're cleaning and there was nothing to clean,
1388 1.1 pooka * take us off the syncer list. if we started any i/o
1389 1.1 pooka * and we're doing sync i/o, wait for all writes to finish.
1390 1.1 pooka */
1391 1.1 pooka
1392 1.1 pooka if (cleanall && wasclean && gp->g_dirtygen == dirtygen &&
1393 1.1 pooka (vp->v_iflag & VI_ONWORKLST) != 0) {
1394 1.5 yamt #if defined(DEBUG)
1395 1.8 ad TAILQ_FOREACH(pg, &uobj->memq, listq.queue) {
1396 1.36.2.21 uebayasi if ((pg->flags & PG_MARKER) != 0) {
1397 1.36.2.21 uebayasi continue;
1398 1.36.2.21 uebayasi }
1399 1.5 yamt if ((pg->flags & PG_CLEAN) == 0) {
1400 1.5 yamt printf("%s: %p: !CLEAN\n", __func__, pg);
1401 1.5 yamt }
1402 1.5 yamt if (pmap_is_modified(pg)) {
1403 1.5 yamt printf("%s: %p: modified\n", __func__, pg);
1404 1.5 yamt }
1405 1.5 yamt }
1406 1.5 yamt #endif /* defined(DEBUG) */
1407 1.1 pooka vp->v_iflag &= ~VI_WRMAPDIRTY;
1408 1.1 pooka if (LIST_FIRST(&vp->v_dirtyblkhd) == NULL)
1409 1.1 pooka vn_syncer_remove_from_worklist(vp);
1410 1.1 pooka }
1411 1.1 pooka
1412 1.1 pooka #if !defined(DEBUG)
1413 1.1 pooka skip_scan:
1414 1.1 pooka #endif /* !defined(DEBUG) */
1415 1.2 ad
1416 1.2 ad /* Wait for output to complete. */
1417 1.2 ad if (!wasclean && !async && vp->v_numoutput != 0) {
1418 1.2 ad while (vp->v_numoutput != 0)
1419 1.2 ad cv_wait(&vp->v_cv, slock);
1420 1.1 pooka }
1421 1.4 yamt onworklst = (vp->v_iflag & VI_ONWORKLST) != 0;
1422 1.2 ad mutex_exit(slock);
1423 1.1 pooka
1424 1.4 yamt if ((flags & PGO_RECLAIM) != 0 && onworklst) {
1425 1.4 yamt /*
1426 1.4 yamt * in the case of PGO_RECLAIM, ensure to make the vnode clean.
1427 1.4 yamt * retrying is not a big deal because, in many cases,
1428 1.4 yamt * uobj->uo_npages is already 0 here.
1429 1.4 yamt */
1430 1.4 yamt mutex_enter(slock);
1431 1.4 yamt goto retry;
1432 1.4 yamt }
1433 1.4 yamt
1434 1.12 hannken if (has_trans) {
1435 1.12 hannken if (need_wapbl)
1436 1.12 hannken WAPBL_END(vp->v_mount);
1437 1.6 hannken fstrans_done(vp->v_mount);
1438 1.12 hannken }
1439 1.6 hannken
1440 1.1 pooka return (error);
1441 1.1 pooka }
1442 1.1 pooka
1443 1.36.2.24 uebayasi #ifdef XIP
1444 1.36.2.24 uebayasi int
1445 1.36.2.24 uebayasi genfs_do_putpages_xip(struct vnode *vp, off_t startoff, off_t endoff,
1446 1.36.2.24 uebayasi int flags, struct vm_page **busypg)
1447 1.36.2.24 uebayasi {
1448 1.36.2.24 uebayasi struct uvm_object *uobj = &vp->v_uobj;
1449 1.36.2.25 uebayasi #ifdef DIAGNOSTIC
1450 1.36.2.24 uebayasi struct genfs_node * const gp = VTOG(vp);
1451 1.36.2.25 uebayasi #endif
1452 1.36.2.24 uebayasi
1453 1.36.2.24 uebayasi UVMHIST_FUNC("genfs_do_putpages_xip"); UVMHIST_CALLED(ubchist);
1454 1.36.2.24 uebayasi
1455 1.36.2.24 uebayasi KASSERT(mutex_owned(&uobj->vmobjlock));
1456 1.36.2.24 uebayasi KASSERT((vp->v_iflag & VI_ONWORKLST) == 0);
1457 1.36.2.24 uebayasi KASSERT(vp->v_numoutput == 0);
1458 1.36.2.24 uebayasi KASSERT(gp->g_dirtygen == 0);
1459 1.36.2.24 uebayasi
1460 1.36.2.24 uebayasi UVMHIST_LOG(ubchist, "vp %p pages %d off 0x%x len 0x%x",
1461 1.36.2.24 uebayasi vp, uobj->uo_npages, startoff, endoff - startoff);
1462 1.36.2.24 uebayasi
1463 1.36.2.24 uebayasi /*
1464 1.36.2.24 uebayasi * XIP pages are read-only, and never become dirty. They're also never
1465 1.36.2.24 uebayasi * queued. PGO_DEACTIVATE and PGO_CLEANIT are meaningless for XIP
1466 1.36.2.24 uebayasi * pages, so we ignore them.
1467 1.36.2.24 uebayasi */
1468 1.36.2.24 uebayasi if ((flags & PGO_FREE) == 0)
1469 1.36.2.24 uebayasi goto done;
1470 1.36.2.24 uebayasi
1471 1.36.2.24 uebayasi /*
1472 1.36.2.24 uebayasi * For PGO_FREE (or (PGO_CLEANIT | PGO_FREE)), we invalidate MMU
1473 1.36.2.24 uebayasi * mappings of both XIP pages and XIP zero pages.
1474 1.36.2.24 uebayasi *
1475 1.36.2.24 uebayasi * Zero page is freed when one of its mapped offset is freed, even if
1476 1.36.2.24 uebayasi * one file (vnode) has many holes and mapping its zero page to all
1477 1.36.2.24 uebayasi * of those hole pages.
1478 1.36.2.24 uebayasi *
1479 1.36.2.25 uebayasi * We don't know which pages are currently mapped in the given vnode,
1480 1.36.2.25 uebayasi * because XIP pages are not added to vnode. What we can do is to
1481 1.36.2.25 uebayasi * locate pages by querying the filesystem as done in getpages. Call
1482 1.36.2.40 uebayasi * genfs_do_getpages_xip_io().
1483 1.36.2.24 uebayasi */
1484 1.36.2.24 uebayasi
1485 1.36.2.24 uebayasi off_t off, eof;
1486 1.36.2.24 uebayasi
1487 1.36.2.24 uebayasi off = trunc_page(startoff);
1488 1.36.2.24 uebayasi if (endoff == 0 || (flags & PGO_ALLPAGES))
1489 1.36.2.24 uebayasi GOP_SIZE(vp, vp->v_size, &eof, GOP_SIZE_MEM);
1490 1.36.2.24 uebayasi else
1491 1.36.2.24 uebayasi eof = endoff;
1492 1.36.2.24 uebayasi
1493 1.36.2.24 uebayasi while (off < eof) {
1494 1.36.2.24 uebayasi int npages, orignpages, error, i;
1495 1.36.2.24 uebayasi struct vm_page *pgs[maxpages], *pg;
1496 1.36.2.24 uebayasi
1497 1.36.2.24 uebayasi npages = round_page(eof - off) >> PAGE_SHIFT;
1498 1.36.2.24 uebayasi if (npages > maxpages)
1499 1.36.2.24 uebayasi npages = maxpages;
1500 1.36.2.24 uebayasi
1501 1.36.2.24 uebayasi orignpages = npages;
1502 1.36.2.26 uebayasi KASSERT(mutex_owned(&uobj->vmobjlock));
1503 1.36.2.39 uebayasi mutex_exit(&uobj->vmobjlock);
1504 1.36.2.40 uebayasi error = genfs_do_getpages_xip_io(vp, off, pgs, &npages, 0,
1505 1.36.2.36 uebayasi VM_PROT_ALL, 0, 0);
1506 1.36.2.24 uebayasi KASSERT(error == 0);
1507 1.36.2.24 uebayasi KASSERT(npages == orignpages);
1508 1.36.2.36 uebayasi mutex_enter(&uobj->vmobjlock);
1509 1.36.2.24 uebayasi for (i = 0; i < npages; i++) {
1510 1.36.2.24 uebayasi pg = pgs[i];
1511 1.36.2.24 uebayasi if (pg == NULL || pg == PGO_DONTCARE)
1512 1.36.2.24 uebayasi continue;
1513 1.36.2.33 uebayasi /*
1514 1.36.2.33 uebayasi * Freeing normal XIP pages; nothing to do.
1515 1.36.2.33 uebayasi */
1516 1.36.2.33 uebayasi pmap_page_protect(pg, VM_PROT_NONE);
1517 1.36.2.33 uebayasi KASSERT((pg->flags & PG_BUSY) != 0);
1518 1.36.2.33 uebayasi KASSERT((pg->flags & PG_RDONLY) != 0);
1519 1.36.2.33 uebayasi KASSERT((pg->flags & PG_CLEAN) != 0);
1520 1.36.2.33 uebayasi KASSERT((pg->flags & PG_FAKE) == 0);
1521 1.36.2.33 uebayasi KASSERT((pg->flags & PG_DEVICE) != 0);
1522 1.36.2.33 uebayasi pg->flags &= ~PG_BUSY;
1523 1.36.2.24 uebayasi }
1524 1.36.2.24 uebayasi off += npages << PAGE_SHIFT;
1525 1.36.2.24 uebayasi }
1526 1.36.2.24 uebayasi
1527 1.36.2.24 uebayasi KASSERT(uobj->uo_npages == 0);
1528 1.36.2.24 uebayasi
1529 1.36.2.24 uebayasi done:
1530 1.36.2.26 uebayasi KASSERT(mutex_owned(&uobj->vmobjlock));
1531 1.36.2.24 uebayasi mutex_exit(&uobj->vmobjlock);
1532 1.36.2.24 uebayasi return 0;
1533 1.36.2.24 uebayasi }
1534 1.36.2.24 uebayasi #endif
1535 1.36.2.24 uebayasi
1536 1.1 pooka int
1537 1.1 pooka genfs_gop_write(struct vnode *vp, struct vm_page **pgs, int npages, int flags)
1538 1.1 pooka {
1539 1.1 pooka off_t off;
1540 1.1 pooka vaddr_t kva;
1541 1.1 pooka size_t len;
1542 1.1 pooka int error;
1543 1.1 pooka UVMHIST_FUNC(__func__); UVMHIST_CALLED(ubchist);
1544 1.1 pooka
1545 1.1 pooka UVMHIST_LOG(ubchist, "vp %p pgs %p npages %d flags 0x%x",
1546 1.1 pooka vp, pgs, npages, flags);
1547 1.1 pooka
1548 1.1 pooka off = pgs[0]->offset;
1549 1.1 pooka kva = uvm_pagermapin(pgs, npages,
1550 1.1 pooka UVMPAGER_MAPIN_WRITE | UVMPAGER_MAPIN_WAITOK);
1551 1.1 pooka len = npages << PAGE_SHIFT;
1552 1.1 pooka
1553 1.1 pooka error = genfs_do_io(vp, off, kva, len, flags, UIO_WRITE,
1554 1.1 pooka uvm_aio_biodone);
1555 1.1 pooka
1556 1.1 pooka return error;
1557 1.1 pooka }
1558 1.1 pooka
1559 1.7 reinoud int
1560 1.7 reinoud genfs_gop_write_rwmap(struct vnode *vp, struct vm_page **pgs, int npages, int flags)
1561 1.7 reinoud {
1562 1.7 reinoud off_t off;
1563 1.7 reinoud vaddr_t kva;
1564 1.7 reinoud size_t len;
1565 1.7 reinoud int error;
1566 1.7 reinoud UVMHIST_FUNC(__func__); UVMHIST_CALLED(ubchist);
1567 1.7 reinoud
1568 1.7 reinoud UVMHIST_LOG(ubchist, "vp %p pgs %p npages %d flags 0x%x",
1569 1.7 reinoud vp, pgs, npages, flags);
1570 1.7 reinoud
1571 1.7 reinoud off = pgs[0]->offset;
1572 1.7 reinoud kva = uvm_pagermapin(pgs, npages,
1573 1.7 reinoud UVMPAGER_MAPIN_READ | UVMPAGER_MAPIN_WAITOK);
1574 1.7 reinoud len = npages << PAGE_SHIFT;
1575 1.7 reinoud
1576 1.7 reinoud error = genfs_do_io(vp, off, kva, len, flags, UIO_WRITE,
1577 1.7 reinoud uvm_aio_biodone);
1578 1.7 reinoud
1579 1.7 reinoud return error;
1580 1.7 reinoud }
1581 1.7 reinoud
1582 1.1 pooka /*
1583 1.1 pooka * Backend routine for doing I/O to vnode pages. Pages are already locked
1584 1.1 pooka * and mapped into kernel memory. Here we just look up the underlying
1585 1.1 pooka * device block addresses and call the strategy routine.
1586 1.1 pooka */
1587 1.1 pooka
1588 1.1 pooka static int
1589 1.1 pooka genfs_do_io(struct vnode *vp, off_t off, vaddr_t kva, size_t len, int flags,
1590 1.1 pooka enum uio_rw rw, void (*iodone)(struct buf *))
1591 1.1 pooka {
1592 1.36 uebayasi int s, error;
1593 1.1 pooka int fs_bshift, dev_bshift;
1594 1.1 pooka off_t eof, offset, startoffset;
1595 1.1 pooka size_t bytes, iobytes, skipbytes;
1596 1.1 pooka struct buf *mbp, *bp;
1597 1.35 uebayasi const bool async = (flags & PGO_SYNCIO) == 0;
1598 1.35 uebayasi const bool iowrite = rw == UIO_WRITE;
1599 1.35 uebayasi const int brw = iowrite ? B_WRITE : B_READ;
1600 1.1 pooka UVMHIST_FUNC(__func__); UVMHIST_CALLED(ubchist);
1601 1.1 pooka
1602 1.1 pooka UVMHIST_LOG(ubchist, "vp %p kva %p len 0x%x flags 0x%x",
1603 1.1 pooka vp, kva, len, flags);
1604 1.1 pooka
1605 1.1 pooka KASSERT(vp->v_size <= vp->v_writesize);
1606 1.1 pooka GOP_SIZE(vp, vp->v_writesize, &eof, 0);
1607 1.1 pooka if (vp->v_type != VBLK) {
1608 1.1 pooka fs_bshift = vp->v_mount->mnt_fs_bshift;
1609 1.1 pooka dev_bshift = vp->v_mount->mnt_dev_bshift;
1610 1.1 pooka } else {
1611 1.1 pooka fs_bshift = DEV_BSHIFT;
1612 1.1 pooka dev_bshift = DEV_BSHIFT;
1613 1.1 pooka }
1614 1.1 pooka error = 0;
1615 1.1 pooka startoffset = off;
1616 1.1 pooka bytes = MIN(len, eof - startoffset);
1617 1.1 pooka skipbytes = 0;
1618 1.1 pooka KASSERT(bytes != 0);
1619 1.1 pooka
1620 1.35 uebayasi if (iowrite) {
1621 1.2 ad mutex_enter(&vp->v_interlock);
1622 1.1 pooka vp->v_numoutput += 2;
1623 1.2 ad mutex_exit(&vp->v_interlock);
1624 1.1 pooka }
1625 1.2 ad mbp = getiobuf(vp, true);
1626 1.1 pooka UVMHIST_LOG(ubchist, "vp %p mbp %p num now %d bytes 0x%x",
1627 1.1 pooka vp, mbp, vp->v_numoutput, bytes);
1628 1.1 pooka mbp->b_bufsize = len;
1629 1.1 pooka mbp->b_data = (void *)kva;
1630 1.1 pooka mbp->b_resid = mbp->b_bcount = bytes;
1631 1.2 ad mbp->b_cflags = BC_BUSY | BC_AGE;
1632 1.2 ad if (async) {
1633 1.2 ad mbp->b_flags = brw | B_ASYNC;
1634 1.2 ad mbp->b_iodone = iodone;
1635 1.2 ad } else {
1636 1.2 ad mbp->b_flags = brw;
1637 1.2 ad mbp->b_iodone = NULL;
1638 1.2 ad }
1639 1.1 pooka if (curlwp == uvm.pagedaemon_lwp)
1640 1.1 pooka BIO_SETPRIO(mbp, BPRIO_TIMELIMITED);
1641 1.1 pooka else if (async)
1642 1.1 pooka BIO_SETPRIO(mbp, BPRIO_TIMENONCRITICAL);
1643 1.1 pooka else
1644 1.1 pooka BIO_SETPRIO(mbp, BPRIO_TIMECRITICAL);
1645 1.1 pooka
1646 1.1 pooka bp = NULL;
1647 1.1 pooka for (offset = startoffset;
1648 1.1 pooka bytes > 0;
1649 1.1 pooka offset += iobytes, bytes -= iobytes) {
1650 1.36 uebayasi int run;
1651 1.36 uebayasi daddr_t lbn, blkno;
1652 1.36 uebayasi struct vnode *devvp;
1653 1.36 uebayasi
1654 1.36 uebayasi /*
1655 1.36 uebayasi * bmap the file to find out the blkno to read from and
1656 1.36 uebayasi * how much we can read in one i/o. if bmap returns an error,
1657 1.36 uebayasi * skip the rest of the top-level i/o.
1658 1.36 uebayasi */
1659 1.36 uebayasi
1660 1.1 pooka lbn = offset >> fs_bshift;
1661 1.1 pooka error = VOP_BMAP(vp, lbn, &devvp, &blkno, &run);
1662 1.1 pooka if (error) {
1663 1.36 uebayasi UVMHIST_LOG(ubchist, "VOP_BMAP lbn 0x%x -> %d\n",
1664 1.36 uebayasi lbn,error,0,0);
1665 1.1 pooka skipbytes += bytes;
1666 1.1 pooka bytes = 0;
1667 1.36 uebayasi goto loopdone;
1668 1.1 pooka }
1669 1.1 pooka
1670 1.36 uebayasi /*
1671 1.36 uebayasi * see how many pages can be read with this i/o.
1672 1.36 uebayasi * reduce the i/o size if necessary to avoid
1673 1.36 uebayasi * overwriting pages with valid data.
1674 1.36 uebayasi */
1675 1.36 uebayasi
1676 1.1 pooka iobytes = MIN((((off_t)lbn + 1 + run) << fs_bshift) - offset,
1677 1.1 pooka bytes);
1678 1.36 uebayasi
1679 1.36 uebayasi /*
1680 1.36 uebayasi * if this block isn't allocated, zero it instead of
1681 1.36 uebayasi * reading it. unless we are going to allocate blocks,
1682 1.36 uebayasi * mark the pages we zeroed PG_RDONLY.
1683 1.36 uebayasi */
1684 1.36 uebayasi
1685 1.1 pooka if (blkno == (daddr_t)-1) {
1686 1.35 uebayasi if (!iowrite) {
1687 1.1 pooka memset((char *)kva + (offset - startoffset), 0,
1688 1.36 uebayasi iobytes);
1689 1.1 pooka }
1690 1.1 pooka skipbytes += iobytes;
1691 1.1 pooka continue;
1692 1.1 pooka }
1693 1.1 pooka
1694 1.36 uebayasi /*
1695 1.36 uebayasi * allocate a sub-buf for this piece of the i/o
1696 1.36 uebayasi * (or just use mbp if there's only 1 piece),
1697 1.36 uebayasi * and start it going.
1698 1.36 uebayasi */
1699 1.36 uebayasi
1700 1.1 pooka if (offset == startoffset && iobytes == bytes) {
1701 1.1 pooka bp = mbp;
1702 1.1 pooka } else {
1703 1.1 pooka UVMHIST_LOG(ubchist, "vp %p bp %p num now %d",
1704 1.1 pooka vp, bp, vp->v_numoutput, 0);
1705 1.2 ad bp = getiobuf(vp, true);
1706 1.1 pooka nestiobuf_setup(mbp, bp, offset - startoffset, iobytes);
1707 1.1 pooka }
1708 1.1 pooka bp->b_lblkno = 0;
1709 1.1 pooka
1710 1.1 pooka /* adjust physical blkno for partial blocks */
1711 1.1 pooka bp->b_blkno = blkno + ((offset - ((off_t)lbn << fs_bshift)) >>
1712 1.1 pooka dev_bshift);
1713 1.36 uebayasi
1714 1.1 pooka UVMHIST_LOG(ubchist,
1715 1.36 uebayasi "bp %p offset 0x%x bcount 0x%x blkno 0x%x",
1716 1.36 uebayasi bp, offset, bp->b_bcount, bp->b_blkno);
1717 1.1 pooka
1718 1.1 pooka VOP_STRATEGY(devvp, bp);
1719 1.1 pooka }
1720 1.36 uebayasi
1721 1.36 uebayasi loopdone:
1722 1.1 pooka if (skipbytes) {
1723 1.1 pooka UVMHIST_LOG(ubchist, "skipbytes %d", skipbytes, 0,0,0);
1724 1.1 pooka }
1725 1.1 pooka nestiobuf_done(mbp, skipbytes, error);
1726 1.1 pooka if (async) {
1727 1.1 pooka UVMHIST_LOG(ubchist, "returning 0 (async)", 0,0,0,0);
1728 1.1 pooka return (0);
1729 1.1 pooka }
1730 1.1 pooka UVMHIST_LOG(ubchist, "waiting for mbp %p", mbp,0,0,0);
1731 1.1 pooka error = biowait(mbp);
1732 1.1 pooka s = splbio();
1733 1.1 pooka (*iodone)(mbp);
1734 1.1 pooka splx(s);
1735 1.1 pooka UVMHIST_LOG(ubchist, "returning, error %d", error,0,0,0);
1736 1.1 pooka return (error);
1737 1.1 pooka }
1738 1.1 pooka
1739 1.1 pooka int
1740 1.1 pooka genfs_compat_getpages(void *v)
1741 1.1 pooka {
1742 1.1 pooka struct vop_getpages_args /* {
1743 1.1 pooka struct vnode *a_vp;
1744 1.1 pooka voff_t a_offset;
1745 1.1 pooka struct vm_page **a_m;
1746 1.1 pooka int *a_count;
1747 1.1 pooka int a_centeridx;
1748 1.1 pooka vm_prot_t a_access_type;
1749 1.1 pooka int a_advice;
1750 1.1 pooka int a_flags;
1751 1.1 pooka } */ *ap = v;
1752 1.1 pooka
1753 1.1 pooka off_t origoffset;
1754 1.1 pooka struct vnode *vp = ap->a_vp;
1755 1.1 pooka struct uvm_object *uobj = &vp->v_uobj;
1756 1.1 pooka struct vm_page *pg, **pgs;
1757 1.1 pooka vaddr_t kva;
1758 1.1 pooka int i, error, orignpages, npages;
1759 1.1 pooka struct iovec iov;
1760 1.1 pooka struct uio uio;
1761 1.1 pooka kauth_cred_t cred = curlwp->l_cred;
1762 1.35 uebayasi const bool memwrite = (ap->a_access_type & VM_PROT_WRITE) != 0;
1763 1.1 pooka
1764 1.1 pooka error = 0;
1765 1.1 pooka origoffset = ap->a_offset;
1766 1.1 pooka orignpages = *ap->a_count;
1767 1.1 pooka pgs = ap->a_m;
1768 1.1 pooka
1769 1.1 pooka if (ap->a_flags & PGO_LOCKED) {
1770 1.1 pooka uvn_findpages(uobj, origoffset, ap->a_count, ap->a_m,
1771 1.35 uebayasi UFP_NOWAIT|UFP_NOALLOC| (memwrite ? UFP_NORDONLY : 0));
1772 1.1 pooka
1773 1.36.2.21 uebayasi error = ap->a_m[ap->a_centeridx] == NULL ? EBUSY : 0;
1774 1.36.2.21 uebayasi if (error == 0 && memwrite) {
1775 1.36.2.21 uebayasi genfs_markdirty(vp);
1776 1.36.2.21 uebayasi }
1777 1.36.2.21 uebayasi return error;
1778 1.1 pooka }
1779 1.1 pooka if (origoffset + (ap->a_centeridx << PAGE_SHIFT) >= vp->v_size) {
1780 1.2 ad mutex_exit(&uobj->vmobjlock);
1781 1.36.2.21 uebayasi return EINVAL;
1782 1.1 pooka }
1783 1.1 pooka if ((ap->a_flags & PGO_SYNCIO) == 0) {
1784 1.2 ad mutex_exit(&uobj->vmobjlock);
1785 1.1 pooka return 0;
1786 1.1 pooka }
1787 1.1 pooka npages = orignpages;
1788 1.1 pooka uvn_findpages(uobj, origoffset, &npages, pgs, UFP_ALL);
1789 1.2 ad mutex_exit(&uobj->vmobjlock);
1790 1.1 pooka kva = uvm_pagermapin(pgs, npages,
1791 1.1 pooka UVMPAGER_MAPIN_READ | UVMPAGER_MAPIN_WAITOK);
1792 1.1 pooka for (i = 0; i < npages; i++) {
1793 1.1 pooka pg = pgs[i];
1794 1.1 pooka if ((pg->flags & PG_FAKE) == 0) {
1795 1.1 pooka continue;
1796 1.1 pooka }
1797 1.1 pooka iov.iov_base = (char *)kva + (i << PAGE_SHIFT);
1798 1.1 pooka iov.iov_len = PAGE_SIZE;
1799 1.1 pooka uio.uio_iov = &iov;
1800 1.1 pooka uio.uio_iovcnt = 1;
1801 1.1 pooka uio.uio_offset = origoffset + (i << PAGE_SHIFT);
1802 1.1 pooka uio.uio_rw = UIO_READ;
1803 1.1 pooka uio.uio_resid = PAGE_SIZE;
1804 1.1 pooka UIO_SETUP_SYSSPACE(&uio);
1805 1.1 pooka /* XXX vn_lock */
1806 1.1 pooka error = VOP_READ(vp, &uio, 0, cred);
1807 1.1 pooka if (error) {
1808 1.1 pooka break;
1809 1.1 pooka }
1810 1.1 pooka if (uio.uio_resid) {
1811 1.1 pooka memset(iov.iov_base, 0, uio.uio_resid);
1812 1.1 pooka }
1813 1.1 pooka }
1814 1.1 pooka uvm_pagermapout(kva, npages);
1815 1.2 ad mutex_enter(&uobj->vmobjlock);
1816 1.2 ad mutex_enter(&uvm_pageqlock);
1817 1.1 pooka for (i = 0; i < npages; i++) {
1818 1.1 pooka pg = pgs[i];
1819 1.1 pooka if (error && (pg->flags & PG_FAKE) != 0) {
1820 1.1 pooka pg->flags |= PG_RELEASED;
1821 1.1 pooka } else {
1822 1.1 pooka pmap_clear_modify(pg);
1823 1.1 pooka uvm_pageactivate(pg);
1824 1.1 pooka }
1825 1.1 pooka }
1826 1.1 pooka if (error) {
1827 1.1 pooka uvm_page_unbusy(pgs, npages);
1828 1.1 pooka }
1829 1.2 ad mutex_exit(&uvm_pageqlock);
1830 1.36.2.21 uebayasi if (error == 0 && memwrite) {
1831 1.36.2.21 uebayasi genfs_markdirty(vp);
1832 1.36.2.21 uebayasi }
1833 1.2 ad mutex_exit(&uobj->vmobjlock);
1834 1.36.2.21 uebayasi return error;
1835 1.1 pooka }
1836 1.1 pooka
1837 1.1 pooka int
1838 1.1 pooka genfs_compat_gop_write(struct vnode *vp, struct vm_page **pgs, int npages,
1839 1.1 pooka int flags)
1840 1.1 pooka {
1841 1.1 pooka off_t offset;
1842 1.1 pooka struct iovec iov;
1843 1.1 pooka struct uio uio;
1844 1.1 pooka kauth_cred_t cred = curlwp->l_cred;
1845 1.1 pooka struct buf *bp;
1846 1.1 pooka vaddr_t kva;
1847 1.2 ad int error;
1848 1.1 pooka
1849 1.1 pooka offset = pgs[0]->offset;
1850 1.1 pooka kva = uvm_pagermapin(pgs, npages,
1851 1.1 pooka UVMPAGER_MAPIN_WRITE | UVMPAGER_MAPIN_WAITOK);
1852 1.1 pooka
1853 1.1 pooka iov.iov_base = (void *)kva;
1854 1.1 pooka iov.iov_len = npages << PAGE_SHIFT;
1855 1.1 pooka uio.uio_iov = &iov;
1856 1.1 pooka uio.uio_iovcnt = 1;
1857 1.1 pooka uio.uio_offset = offset;
1858 1.1 pooka uio.uio_rw = UIO_WRITE;
1859 1.1 pooka uio.uio_resid = npages << PAGE_SHIFT;
1860 1.1 pooka UIO_SETUP_SYSSPACE(&uio);
1861 1.1 pooka /* XXX vn_lock */
1862 1.1 pooka error = VOP_WRITE(vp, &uio, 0, cred);
1863 1.1 pooka
1864 1.2 ad mutex_enter(&vp->v_interlock);
1865 1.2 ad vp->v_numoutput++;
1866 1.2 ad mutex_exit(&vp->v_interlock);
1867 1.1 pooka
1868 1.2 ad bp = getiobuf(vp, true);
1869 1.2 ad bp->b_cflags = BC_BUSY | BC_AGE;
1870 1.1 pooka bp->b_lblkno = offset >> vp->v_mount->mnt_fs_bshift;
1871 1.1 pooka bp->b_data = (char *)kva;
1872 1.1 pooka bp->b_bcount = npages << PAGE_SHIFT;
1873 1.1 pooka bp->b_bufsize = npages << PAGE_SHIFT;
1874 1.1 pooka bp->b_resid = 0;
1875 1.1 pooka bp->b_error = error;
1876 1.1 pooka uvm_aio_aiodone(bp);
1877 1.1 pooka return (error);
1878 1.1 pooka }
1879 1.1 pooka
1880 1.1 pooka /*
1881 1.1 pooka * Process a uio using direct I/O. If we reach a part of the request
1882 1.1 pooka * which cannot be processed in this fashion for some reason, just return.
1883 1.1 pooka * The caller must handle some additional part of the request using
1884 1.1 pooka * buffered I/O before trying direct I/O again.
1885 1.1 pooka */
1886 1.1 pooka
1887 1.1 pooka void
1888 1.1 pooka genfs_directio(struct vnode *vp, struct uio *uio, int ioflag)
1889 1.1 pooka {
1890 1.1 pooka struct vmspace *vs;
1891 1.1 pooka struct iovec *iov;
1892 1.1 pooka vaddr_t va;
1893 1.1 pooka size_t len;
1894 1.1 pooka const int mask = DEV_BSIZE - 1;
1895 1.1 pooka int error;
1896 1.16 joerg bool need_wapbl = (vp->v_mount && vp->v_mount->mnt_wapbl &&
1897 1.16 joerg (ioflag & IO_JOURNALLOCKED) == 0);
1898 1.1 pooka
1899 1.1 pooka /*
1900 1.1 pooka * We only support direct I/O to user space for now.
1901 1.1 pooka */
1902 1.1 pooka
1903 1.1 pooka if (VMSPACE_IS_KERNEL_P(uio->uio_vmspace)) {
1904 1.1 pooka return;
1905 1.1 pooka }
1906 1.1 pooka
1907 1.1 pooka /*
1908 1.1 pooka * If the vnode is mapped, we would need to get the getpages lock
1909 1.1 pooka * to stabilize the bmap, but then we would get into trouble whil e
1910 1.1 pooka * locking the pages if the pages belong to this same vnode (or a
1911 1.1 pooka * multi-vnode cascade to the same effect). Just fall back to
1912 1.1 pooka * buffered I/O if the vnode is mapped to avoid this mess.
1913 1.1 pooka */
1914 1.1 pooka
1915 1.1 pooka if (vp->v_vflag & VV_MAPPED) {
1916 1.1 pooka return;
1917 1.1 pooka }
1918 1.1 pooka
1919 1.16 joerg if (need_wapbl) {
1920 1.13 hannken error = WAPBL_BEGIN(vp->v_mount);
1921 1.13 hannken if (error)
1922 1.13 hannken return;
1923 1.13 hannken }
1924 1.13 hannken
1925 1.1 pooka /*
1926 1.1 pooka * Do as much of the uio as possible with direct I/O.
1927 1.1 pooka */
1928 1.1 pooka
1929 1.1 pooka vs = uio->uio_vmspace;
1930 1.1 pooka while (uio->uio_resid) {
1931 1.1 pooka iov = uio->uio_iov;
1932 1.1 pooka if (iov->iov_len == 0) {
1933 1.1 pooka uio->uio_iov++;
1934 1.1 pooka uio->uio_iovcnt--;
1935 1.1 pooka continue;
1936 1.1 pooka }
1937 1.1 pooka va = (vaddr_t)iov->iov_base;
1938 1.1 pooka len = MIN(iov->iov_len, genfs_maxdio);
1939 1.1 pooka len &= ~mask;
1940 1.1 pooka
1941 1.1 pooka /*
1942 1.1 pooka * If the next chunk is smaller than DEV_BSIZE or extends past
1943 1.1 pooka * the current EOF, then fall back to buffered I/O.
1944 1.1 pooka */
1945 1.1 pooka
1946 1.1 pooka if (len == 0 || uio->uio_offset + len > vp->v_size) {
1947 1.13 hannken break;
1948 1.1 pooka }
1949 1.1 pooka
1950 1.1 pooka /*
1951 1.1 pooka * Check alignment. The file offset must be at least
1952 1.1 pooka * sector-aligned. The exact constraint on memory alignment
1953 1.1 pooka * is very hardware-dependent, but requiring sector-aligned
1954 1.1 pooka * addresses there too is safe.
1955 1.1 pooka */
1956 1.1 pooka
1957 1.1 pooka if (uio->uio_offset & mask || va & mask) {
1958 1.13 hannken break;
1959 1.1 pooka }
1960 1.1 pooka error = genfs_do_directio(vs, va, len, vp, uio->uio_offset,
1961 1.1 pooka uio->uio_rw);
1962 1.1 pooka if (error) {
1963 1.1 pooka break;
1964 1.1 pooka }
1965 1.1 pooka iov->iov_base = (char *)iov->iov_base + len;
1966 1.1 pooka iov->iov_len -= len;
1967 1.1 pooka uio->uio_offset += len;
1968 1.1 pooka uio->uio_resid -= len;
1969 1.1 pooka }
1970 1.13 hannken
1971 1.16 joerg if (need_wapbl)
1972 1.13 hannken WAPBL_END(vp->v_mount);
1973 1.1 pooka }
1974 1.1 pooka
1975 1.1 pooka /*
1976 1.1 pooka * Iodone routine for direct I/O. We don't do much here since the request is
1977 1.1 pooka * always synchronous, so the caller will do most of the work after biowait().
1978 1.1 pooka */
1979 1.1 pooka
1980 1.1 pooka static void
1981 1.1 pooka genfs_dio_iodone(struct buf *bp)
1982 1.1 pooka {
1983 1.1 pooka
1984 1.1 pooka KASSERT((bp->b_flags & B_ASYNC) == 0);
1985 1.2 ad if ((bp->b_flags & B_READ) == 0 && (bp->b_cflags & BC_AGE) != 0) {
1986 1.2 ad mutex_enter(bp->b_objlock);
1987 1.1 pooka vwakeup(bp);
1988 1.2 ad mutex_exit(bp->b_objlock);
1989 1.1 pooka }
1990 1.1 pooka putiobuf(bp);
1991 1.1 pooka }
1992 1.1 pooka
1993 1.1 pooka /*
1994 1.1 pooka * Process one chunk of a direct I/O request.
1995 1.1 pooka */
1996 1.1 pooka
1997 1.1 pooka static int
1998 1.1 pooka genfs_do_directio(struct vmspace *vs, vaddr_t uva, size_t len, struct vnode *vp,
1999 1.1 pooka off_t off, enum uio_rw rw)
2000 1.1 pooka {
2001 1.1 pooka struct vm_map *map;
2002 1.1 pooka struct pmap *upm, *kpm;
2003 1.1 pooka size_t klen = round_page(uva + len) - trunc_page(uva);
2004 1.1 pooka off_t spoff, epoff;
2005 1.1 pooka vaddr_t kva, puva;
2006 1.1 pooka paddr_t pa;
2007 1.1 pooka vm_prot_t prot;
2008 1.1 pooka int error, rv, poff, koff;
2009 1.13 hannken const int pgoflags = PGO_CLEANIT | PGO_SYNCIO | PGO_JOURNALLOCKED |
2010 1.1 pooka (rw == UIO_WRITE ? PGO_FREE : 0);
2011 1.1 pooka
2012 1.1 pooka /*
2013 1.1 pooka * For writes, verify that this range of the file already has fully
2014 1.1 pooka * allocated backing store. If there are any holes, just punt and
2015 1.1 pooka * make the caller take the buffered write path.
2016 1.1 pooka */
2017 1.1 pooka
2018 1.1 pooka if (rw == UIO_WRITE) {
2019 1.1 pooka daddr_t lbn, elbn, blkno;
2020 1.1 pooka int bsize, bshift, run;
2021 1.1 pooka
2022 1.1 pooka bshift = vp->v_mount->mnt_fs_bshift;
2023 1.1 pooka bsize = 1 << bshift;
2024 1.1 pooka lbn = off >> bshift;
2025 1.1 pooka elbn = (off + len + bsize - 1) >> bshift;
2026 1.1 pooka while (lbn < elbn) {
2027 1.1 pooka error = VOP_BMAP(vp, lbn, NULL, &blkno, &run);
2028 1.1 pooka if (error) {
2029 1.1 pooka return error;
2030 1.1 pooka }
2031 1.1 pooka if (blkno == (daddr_t)-1) {
2032 1.1 pooka return ENOSPC;
2033 1.1 pooka }
2034 1.1 pooka lbn += 1 + run;
2035 1.1 pooka }
2036 1.1 pooka }
2037 1.1 pooka
2038 1.1 pooka /*
2039 1.1 pooka * Flush any cached pages for parts of the file that we're about to
2040 1.1 pooka * access. If we're writing, invalidate pages as well.
2041 1.1 pooka */
2042 1.1 pooka
2043 1.1 pooka spoff = trunc_page(off);
2044 1.1 pooka epoff = round_page(off + len);
2045 1.2 ad mutex_enter(&vp->v_interlock);
2046 1.1 pooka error = VOP_PUTPAGES(vp, spoff, epoff, pgoflags);
2047 1.1 pooka if (error) {
2048 1.1 pooka return error;
2049 1.1 pooka }
2050 1.1 pooka
2051 1.1 pooka /*
2052 1.1 pooka * Wire the user pages and remap them into kernel memory.
2053 1.1 pooka */
2054 1.1 pooka
2055 1.1 pooka prot = rw == UIO_READ ? VM_PROT_READ | VM_PROT_WRITE : VM_PROT_READ;
2056 1.1 pooka error = uvm_vslock(vs, (void *)uva, len, prot);
2057 1.1 pooka if (error) {
2058 1.1 pooka return error;
2059 1.1 pooka }
2060 1.1 pooka
2061 1.1 pooka map = &vs->vm_map;
2062 1.1 pooka upm = vm_map_pmap(map);
2063 1.1 pooka kpm = vm_map_pmap(kernel_map);
2064 1.1 pooka kva = uvm_km_alloc(kernel_map, klen, 0,
2065 1.1 pooka UVM_KMF_VAONLY | UVM_KMF_WAITVA);
2066 1.1 pooka puva = trunc_page(uva);
2067 1.1 pooka for (poff = 0; poff < klen; poff += PAGE_SIZE) {
2068 1.1 pooka rv = pmap_extract(upm, puva + poff, &pa);
2069 1.1 pooka KASSERT(rv);
2070 1.1 pooka pmap_enter(kpm, kva + poff, pa, prot, prot | PMAP_WIRED);
2071 1.1 pooka }
2072 1.1 pooka pmap_update(kpm);
2073 1.1 pooka
2074 1.1 pooka /*
2075 1.1 pooka * Do the I/O.
2076 1.1 pooka */
2077 1.1 pooka
2078 1.1 pooka koff = uva - trunc_page(uva);
2079 1.1 pooka error = genfs_do_io(vp, off, kva + koff, len, PGO_SYNCIO, rw,
2080 1.1 pooka genfs_dio_iodone);
2081 1.1 pooka
2082 1.1 pooka /*
2083 1.1 pooka * Tear down the kernel mapping.
2084 1.1 pooka */
2085 1.1 pooka
2086 1.1 pooka pmap_remove(kpm, kva, kva + klen);
2087 1.1 pooka pmap_update(kpm);
2088 1.1 pooka uvm_km_free(kernel_map, kva, klen, UVM_KMF_VAONLY);
2089 1.1 pooka
2090 1.1 pooka /*
2091 1.1 pooka * Unwire the user pages.
2092 1.1 pooka */
2093 1.1 pooka
2094 1.1 pooka uvm_vsunlock(vs, (void *)uva, len);
2095 1.1 pooka return error;
2096 1.1 pooka }
2097 1.2 ad
2098