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genfs_io.c revision 1.53.2.11
      1   1.53.2.1      yamt /*	$NetBSD: genfs_io.c,v 1.53.2.11 2012/02/05 05:01:26 yamt 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   1.53.2.1      yamt __KERNEL_RCSID(0, "$NetBSD: genfs_io.c,v 1.53.2.11 2012/02/05 05:01:26 yamt Exp $");
     35        1.1     pooka 
     36        1.1     pooka #include <sys/param.h>
     37        1.1     pooka #include <sys/systm.h>
     38        1.1     pooka #include <sys/proc.h>
     39        1.1     pooka #include <sys/kernel.h>
     40        1.1     pooka #include <sys/mount.h>
     41        1.1     pooka #include <sys/vnode.h>
     42        1.1     pooka #include <sys/kmem.h>
     43        1.1     pooka #include <sys/kauth.h>
     44        1.1     pooka #include <sys/fstrans.h>
     45       1.15     pooka #include <sys/buf.h>
     46   1.53.2.1      yamt #include <sys/radixtree.h>
     47        1.1     pooka 
     48        1.1     pooka #include <miscfs/genfs/genfs.h>
     49        1.1     pooka #include <miscfs/genfs/genfs_node.h>
     50        1.1     pooka #include <miscfs/specfs/specdev.h>
     51       1.47     rmind #include <miscfs/syncfs/syncfs.h>
     52        1.1     pooka 
     53        1.1     pooka #include <uvm/uvm.h>
     54        1.1     pooka #include <uvm/uvm_pager.h>
     55   1.53.2.1      yamt #include <uvm/uvm_page_array.h>
     56        1.1     pooka 
     57        1.1     pooka static int genfs_do_directio(struct vmspace *, vaddr_t, size_t, struct vnode *,
     58        1.1     pooka     off_t, enum uio_rw);
     59        1.1     pooka static void genfs_dio_iodone(struct buf *);
     60        1.1     pooka 
     61        1.1     pooka static int genfs_do_io(struct vnode *, off_t, vaddr_t, size_t, int, enum uio_rw,
     62        1.1     pooka     void (*)(struct buf *));
     63       1.38       chs static void genfs_rel_pages(struct vm_page **, int);
     64       1.38       chs static void genfs_markdirty(struct vnode *);
     65        1.1     pooka 
     66        1.1     pooka int genfs_maxdio = MAXPHYS;
     67        1.1     pooka 
     68       1.38       chs static void
     69        1.1     pooka genfs_rel_pages(struct vm_page **pgs, int npages)
     70        1.1     pooka {
     71        1.1     pooka 	int i;
     72        1.1     pooka 
     73        1.1     pooka 	for (i = 0; i < npages; i++) {
     74        1.1     pooka 		struct vm_page *pg = pgs[i];
     75        1.1     pooka 
     76        1.1     pooka 		if (pg == NULL || pg == PGO_DONTCARE)
     77        1.1     pooka 			continue;
     78        1.1     pooka 		if (pg->flags & PG_FAKE) {
     79        1.1     pooka 			pg->flags |= PG_RELEASED;
     80        1.1     pooka 		}
     81        1.1     pooka 	}
     82        1.2        ad 	mutex_enter(&uvm_pageqlock);
     83        1.1     pooka 	uvm_page_unbusy(pgs, npages);
     84        1.2        ad 	mutex_exit(&uvm_pageqlock);
     85        1.1     pooka }
     86        1.1     pooka 
     87       1.38       chs static void
     88       1.38       chs genfs_markdirty(struct vnode *vp)
     89       1.38       chs {
     90       1.38       chs 
     91       1.49     rmind 	KASSERT(mutex_owned(vp->v_interlock));
     92       1.38       chs 	if ((vp->v_iflag & VI_ONWORKLST) == 0) {
     93       1.38       chs 		vn_syncer_add_to_worklist(vp, filedelay);
     94       1.38       chs 	}
     95       1.38       chs 	if ((vp->v_iflag & (VI_WRMAP|VI_WRMAPDIRTY)) == VI_WRMAP) {
     96       1.38       chs 		vp->v_iflag |= VI_WRMAPDIRTY;
     97       1.38       chs 	}
     98       1.38       chs }
     99       1.38       chs 
    100        1.1     pooka /*
    101        1.1     pooka  * generic VM getpages routine.
    102        1.1     pooka  * Return PG_BUSY pages for the given range,
    103        1.1     pooka  * reading from backing store if necessary.
    104        1.1     pooka  */
    105        1.1     pooka 
    106        1.1     pooka int
    107        1.1     pooka genfs_getpages(void *v)
    108        1.1     pooka {
    109        1.1     pooka 	struct vop_getpages_args /* {
    110        1.1     pooka 		struct vnode *a_vp;
    111        1.1     pooka 		voff_t a_offset;
    112        1.1     pooka 		struct vm_page **a_m;
    113        1.1     pooka 		int *a_count;
    114        1.1     pooka 		int a_centeridx;
    115        1.1     pooka 		vm_prot_t a_access_type;
    116        1.1     pooka 		int a_advice;
    117        1.1     pooka 		int a_flags;
    118       1.22  uebayasi 	} */ * const ap = v;
    119        1.1     pooka 
    120       1.24  uebayasi 	off_t diskeof, memeof;
    121       1.31  uebayasi 	int i, error, npages;
    122       1.10      yamt 	const int flags = ap->a_flags;
    123       1.22  uebayasi 	struct vnode * const vp = ap->a_vp;
    124       1.22  uebayasi 	struct uvm_object * const uobj = &vp->v_uobj;
    125       1.31  uebayasi 	kauth_cred_t const cred = curlwp->l_cred;		/* XXXUBC curlwp */
    126       1.10      yamt 	const bool async = (flags & PGO_SYNCIO) == 0;
    127       1.35  uebayasi 	const bool memwrite = (ap->a_access_type & VM_PROT_WRITE) != 0;
    128       1.10      yamt 	const bool overwrite = (flags & PGO_OVERWRITE) != 0;
    129       1.35  uebayasi 	const bool blockalloc = memwrite && (flags & PGO_NOBLOCKALLOC) == 0;
    130       1.40       chs 	const bool glocked = (flags & PGO_GLOCKHELD) != 0;
    131       1.42   hannken 	const bool need_wapbl = blockalloc && vp->v_mount->mnt_wapbl;
    132       1.42   hannken 	bool has_trans_wapbl = false;
    133        1.1     pooka 	UVMHIST_FUNC("genfs_getpages"); UVMHIST_CALLED(ubchist);
    134        1.1     pooka 
    135        1.1     pooka 	UVMHIST_LOG(ubchist, "vp %p off 0x%x/%x count %d",
    136        1.1     pooka 	    vp, ap->a_offset >> 32, ap->a_offset, *ap->a_count);
    137        1.1     pooka 
    138        1.1     pooka 	KASSERT(vp->v_type == VREG || vp->v_type == VDIR ||
    139        1.1     pooka 	    vp->v_type == VLNK || vp->v_type == VBLK);
    140        1.1     pooka 
    141        1.1     pooka startover:
    142        1.1     pooka 	error = 0;
    143       1.27  uebayasi 	const voff_t origvsize = vp->v_size;
    144       1.27  uebayasi 	const off_t origoffset = ap->a_offset;
    145       1.29  uebayasi 	const int orignpages = *ap->a_count;
    146       1.33  uebayasi 
    147        1.1     pooka 	GOP_SIZE(vp, origvsize, &diskeof, 0);
    148        1.1     pooka 	if (flags & PGO_PASTEOF) {
    149       1.24  uebayasi 		off_t newsize;
    150        1.1     pooka #if defined(DIAGNOSTIC)
    151        1.1     pooka 		off_t writeeof;
    152        1.1     pooka #endif /* defined(DIAGNOSTIC) */
    153        1.1     pooka 
    154        1.1     pooka 		newsize = MAX(origvsize,
    155        1.1     pooka 		    origoffset + (orignpages << PAGE_SHIFT));
    156        1.1     pooka 		GOP_SIZE(vp, newsize, &memeof, GOP_SIZE_MEM);
    157        1.1     pooka #if defined(DIAGNOSTIC)
    158        1.1     pooka 		GOP_SIZE(vp, vp->v_writesize, &writeeof, GOP_SIZE_MEM);
    159        1.1     pooka 		if (newsize > round_page(writeeof)) {
    160       1.39     pooka 			panic("%s: past eof: %" PRId64 " vs. %" PRId64,
    161       1.39     pooka 			    __func__, newsize, round_page(writeeof));
    162        1.1     pooka 		}
    163        1.1     pooka #endif /* defined(DIAGNOSTIC) */
    164        1.1     pooka 	} else {
    165        1.1     pooka 		GOP_SIZE(vp, origvsize, &memeof, GOP_SIZE_MEM);
    166        1.1     pooka 	}
    167        1.1     pooka 	KASSERT(ap->a_centeridx >= 0 || ap->a_centeridx <= orignpages);
    168        1.1     pooka 	KASSERT((origoffset & (PAGE_SIZE - 1)) == 0 && origoffset >= 0);
    169        1.1     pooka 	KASSERT(orignpages > 0);
    170        1.1     pooka 
    171        1.1     pooka 	/*
    172        1.1     pooka 	 * Bounds-check the request.
    173        1.1     pooka 	 */
    174        1.1     pooka 
    175        1.1     pooka 	if (origoffset + (ap->a_centeridx << PAGE_SHIFT) >= memeof) {
    176        1.1     pooka 		if ((flags & PGO_LOCKED) == 0) {
    177       1.49     rmind 			mutex_exit(uobj->vmobjlock);
    178        1.1     pooka 		}
    179        1.1     pooka 		UVMHIST_LOG(ubchist, "off 0x%x count %d goes past EOF 0x%x",
    180        1.1     pooka 		    origoffset, *ap->a_count, memeof,0);
    181        1.1     pooka 		error = EINVAL;
    182        1.1     pooka 		goto out_err;
    183        1.1     pooka 	}
    184        1.1     pooka 
    185        1.1     pooka 	/* uobj is locked */
    186        1.1     pooka 
    187        1.1     pooka 	if ((flags & PGO_NOTIMESTAMP) == 0 &&
    188        1.1     pooka 	    (vp->v_type != VBLK ||
    189        1.1     pooka 	    (vp->v_mount->mnt_flag & MNT_NODEVMTIME) == 0)) {
    190        1.1     pooka 		int updflags = 0;
    191        1.1     pooka 
    192        1.1     pooka 		if ((vp->v_mount->mnt_flag & MNT_NOATIME) == 0) {
    193        1.1     pooka 			updflags = GOP_UPDATE_ACCESSED;
    194        1.1     pooka 		}
    195       1.35  uebayasi 		if (memwrite) {
    196        1.1     pooka 			updflags |= GOP_UPDATE_MODIFIED;
    197        1.1     pooka 		}
    198        1.1     pooka 		if (updflags != 0) {
    199        1.1     pooka 			GOP_MARKUPDATE(vp, updflags);
    200        1.1     pooka 		}
    201        1.1     pooka 	}
    202        1.1     pooka 
    203        1.1     pooka 	/*
    204        1.1     pooka 	 * For PGO_LOCKED requests, just return whatever's in memory.
    205        1.1     pooka 	 */
    206        1.1     pooka 
    207        1.1     pooka 	if (flags & PGO_LOCKED) {
    208        1.1     pooka 		int nfound;
    209       1.31  uebayasi 		struct vm_page *pg;
    210        1.1     pooka 
    211       1.40       chs 		KASSERT(!glocked);
    212        1.1     pooka 		npages = *ap->a_count;
    213        1.1     pooka #if defined(DEBUG)
    214        1.1     pooka 		for (i = 0; i < npages; i++) {
    215        1.1     pooka 			pg = ap->a_m[i];
    216        1.1     pooka 			KASSERT(pg == NULL || pg == PGO_DONTCARE);
    217        1.1     pooka 		}
    218        1.1     pooka #endif /* defined(DEBUG) */
    219        1.1     pooka 		nfound = uvn_findpages(uobj, origoffset, &npages,
    220   1.53.2.6      yamt 		    ap->a_m, NULL,
    221   1.53.2.6      yamt 		    UFP_NOWAIT|UFP_NOALLOC|(memwrite ? UFP_NORDONLY : 0));
    222        1.1     pooka 		KASSERT(npages == *ap->a_count);
    223        1.1     pooka 		if (nfound == 0) {
    224        1.1     pooka 			error = EBUSY;
    225        1.1     pooka 			goto out_err;
    226        1.1     pooka 		}
    227   1.53.2.9      yamt 		/*
    228   1.53.2.9      yamt 		 * lock and unlock g_glock to ensure that no one is truncating
    229   1.53.2.9      yamt 		 * the file behind us.
    230   1.53.2.9      yamt 		 */
    231       1.23  uebayasi 		if (!genfs_node_rdtrylock(vp)) {
    232        1.1     pooka 			genfs_rel_pages(ap->a_m, npages);
    233        1.1     pooka 
    234        1.1     pooka 			/*
    235        1.1     pooka 			 * restore the array.
    236        1.1     pooka 			 */
    237        1.1     pooka 
    238        1.1     pooka 			for (i = 0; i < npages; i++) {
    239        1.1     pooka 				pg = ap->a_m[i];
    240        1.1     pooka 
    241       1.41  uebayasi 				if (pg != NULL && pg != PGO_DONTCARE) {
    242        1.1     pooka 					ap->a_m[i] = NULL;
    243        1.1     pooka 				}
    244       1.46  uebayasi 				KASSERT(ap->a_m[i] == NULL ||
    245       1.46  uebayasi 				    ap->a_m[i] == PGO_DONTCARE);
    246        1.1     pooka 			}
    247        1.1     pooka 		} else {
    248       1.23  uebayasi 			genfs_node_unlock(vp);
    249        1.1     pooka 		}
    250        1.1     pooka 		error = (ap->a_m[ap->a_centeridx] == NULL ? EBUSY : 0);
    251       1.38       chs 		if (error == 0 && memwrite) {
    252   1.53.2.1      yamt 			for (i = 0; i < npages; i++) {
    253   1.53.2.1      yamt 				pg = ap->a_m[i];
    254   1.53.2.1      yamt 				if (pg == NULL || pg == PGO_DONTCARE) {
    255   1.53.2.1      yamt 					continue;
    256   1.53.2.1      yamt 				}
    257   1.53.2.1      yamt 				if (uvm_pagegetdirty(pg) ==
    258   1.53.2.1      yamt 				    UVM_PAGE_STATUS_CLEAN) {
    259   1.53.2.1      yamt 					uvm_pagemarkdirty(pg,
    260   1.53.2.1      yamt 					    UVM_PAGE_STATUS_UNKNOWN);
    261   1.53.2.1      yamt 				}
    262   1.53.2.1      yamt 			}
    263       1.38       chs 			genfs_markdirty(vp);
    264       1.38       chs 		}
    265        1.1     pooka 		goto out_err;
    266        1.1     pooka 	}
    267       1.49     rmind 	mutex_exit(uobj->vmobjlock);
    268        1.1     pooka 
    269        1.1     pooka 	/*
    270        1.1     pooka 	 * find the requested pages and make some simple checks.
    271        1.1     pooka 	 * leave space in the page array for a whole block.
    272        1.1     pooka 	 */
    273        1.1     pooka 
    274       1.27  uebayasi 	const int fs_bshift = (vp->v_type != VBLK) ?
    275       1.27  uebayasi 	    vp->v_mount->mnt_fs_bshift : DEV_BSHIFT;
    276       1.27  uebayasi 	const int dev_bshift = (vp->v_type != VBLK) ?
    277       1.27  uebayasi 	    vp->v_mount->mnt_dev_bshift : DEV_BSHIFT;
    278       1.27  uebayasi 	const int fs_bsize = 1 << fs_bshift;
    279       1.30  uebayasi #define	blk_mask	(fs_bsize - 1)
    280       1.30  uebayasi #define	trunc_blk(x)	((x) & ~blk_mask)
    281       1.30  uebayasi #define	round_blk(x)	(((x) + blk_mask) & ~blk_mask)
    282        1.1     pooka 
    283       1.29  uebayasi 	const int orignmempages = MIN(orignpages,
    284        1.1     pooka 	    round_page(memeof - origoffset) >> PAGE_SHIFT);
    285       1.29  uebayasi 	npages = orignmempages;
    286       1.30  uebayasi 	const off_t startoffset = trunc_blk(origoffset);
    287       1.30  uebayasi 	const off_t endoffset = MIN(
    288       1.30  uebayasi 	    round_page(round_blk(origoffset + (npages << PAGE_SHIFT))),
    289       1.30  uebayasi 	    round_page(memeof));
    290       1.31  uebayasi 	const int ridx = (origoffset - startoffset) >> PAGE_SHIFT;
    291        1.1     pooka 
    292       1.33  uebayasi 	const int pgs_size = sizeof(struct vm_page *) *
    293        1.1     pooka 	    ((endoffset - startoffset) >> PAGE_SHIFT);
    294       1.33  uebayasi 	struct vm_page **pgs, *pgs_onstack[UBC_MAX_PAGES];
    295       1.31  uebayasi 
    296        1.1     pooka 	if (pgs_size > sizeof(pgs_onstack)) {
    297        1.1     pooka 		pgs = kmem_zalloc(pgs_size, async ? KM_NOSLEEP : KM_SLEEP);
    298        1.1     pooka 		if (pgs == NULL) {
    299        1.1     pooka 			pgs = pgs_onstack;
    300        1.1     pooka 			error = ENOMEM;
    301       1.32  uebayasi 			goto out_err;
    302        1.1     pooka 		}
    303        1.1     pooka 	} else {
    304       1.14  christos 		pgs = pgs_onstack;
    305       1.14  christos 		(void)memset(pgs, 0, pgs_size);
    306        1.1     pooka 	}
    307       1.14  christos 
    308        1.1     pooka 	UVMHIST_LOG(ubchist, "ridx %d npages %d startoff %ld endoff %ld",
    309        1.1     pooka 	    ridx, npages, startoffset, endoffset);
    310        1.1     pooka 
    311       1.42   hannken 	if (!has_trans_wapbl) {
    312        1.1     pooka 		fstrans_start(vp->v_mount, FSTRANS_SHARED);
    313       1.42   hannken 		/*
    314       1.42   hannken 		 * XXX: This assumes that we come here only via
    315       1.42   hannken 		 * the mmio path
    316       1.42   hannken 		 */
    317       1.42   hannken 		if (need_wapbl) {
    318       1.42   hannken 			error = WAPBL_BEGIN(vp->v_mount);
    319       1.42   hannken 			if (error) {
    320       1.42   hannken 				fstrans_done(vp->v_mount);
    321       1.42   hannken 				goto out_err_free;
    322       1.42   hannken 			}
    323       1.42   hannken 		}
    324       1.42   hannken 		has_trans_wapbl = true;
    325        1.1     pooka 	}
    326        1.1     pooka 
    327        1.1     pooka 	/*
    328        1.1     pooka 	 * hold g_glock to prevent a race with truncate.
    329        1.1     pooka 	 *
    330        1.1     pooka 	 * check if our idea of v_size is still valid.
    331        1.1     pooka 	 */
    332        1.1     pooka 
    333       1.40       chs 	KASSERT(!glocked || genfs_node_wrlocked(vp));
    334       1.40       chs 	if (!glocked) {
    335       1.40       chs 		if (blockalloc) {
    336       1.40       chs 			genfs_node_wrlock(vp);
    337       1.40       chs 		} else {
    338       1.40       chs 			genfs_node_rdlock(vp);
    339       1.40       chs 		}
    340        1.1     pooka 	}
    341       1.49     rmind 	mutex_enter(uobj->vmobjlock);
    342        1.1     pooka 	if (vp->v_size < origvsize) {
    343       1.40       chs 		if (!glocked) {
    344       1.40       chs 			genfs_node_unlock(vp);
    345       1.40       chs 		}
    346        1.1     pooka 		if (pgs != pgs_onstack)
    347        1.1     pooka 			kmem_free(pgs, pgs_size);
    348        1.1     pooka 		goto startover;
    349        1.1     pooka 	}
    350        1.1     pooka 
    351   1.53.2.6      yamt 	if (uvn_findpages(uobj, origoffset, &npages, &pgs[ridx], NULL,
    352       1.29  uebayasi 	    async ? UFP_NOWAIT : UFP_ALL) != orignmempages) {
    353       1.40       chs 		if (!glocked) {
    354       1.40       chs 			genfs_node_unlock(vp);
    355       1.40       chs 		}
    356        1.1     pooka 		KASSERT(async != 0);
    357       1.29  uebayasi 		genfs_rel_pages(&pgs[ridx], orignmempages);
    358       1.49     rmind 		mutex_exit(uobj->vmobjlock);
    359        1.1     pooka 		error = EBUSY;
    360       1.33  uebayasi 		goto out_err_free;
    361        1.1     pooka 	}
    362        1.1     pooka 
    363        1.1     pooka 	/*
    364   1.53.2.1      yamt 	 * if PGO_OVERWRITE is set, don't bother reading the pages.
    365        1.1     pooka 	 */
    366        1.1     pooka 
    367   1.53.2.1      yamt 	if (overwrite) {
    368       1.40       chs 		if (!glocked) {
    369       1.40       chs 			genfs_node_unlock(vp);
    370       1.40       chs 		}
    371   1.53.2.1      yamt 		UVMHIST_LOG(ubchist, "PGO_OVERWRITE",0,0,0,0);
    372   1.53.2.1      yamt 
    373   1.53.2.1      yamt 		for (i = 0; i < npages; i++) {
    374   1.53.2.1      yamt 			struct vm_page *pg = pgs[ridx + i];
    375   1.53.2.1      yamt 
    376   1.53.2.1      yamt 			/*
    377   1.53.2.7      yamt 			 * it's caller's responsibility to allocate blocks
    378   1.53.2.1      yamt 			 * beforehand for the overwrite case.
    379   1.53.2.1      yamt 			 */
    380   1.53.2.7      yamt 			pg->flags &= ~(PG_RDONLY|PG_HOLE);
    381   1.53.2.1      yamt 			/*
    382   1.53.2.8      yamt 			 * mark the page DIRTY.
    383   1.53.2.1      yamt 			 * otherwise another thread can do putpages and pull
    384   1.53.2.1      yamt 			 * our vnode from syncer's queue before our caller does
    385   1.53.2.8      yamt 			 * ubc_release.  note that putpages won't see CLEAN
    386   1.53.2.8      yamt 			 * pages even if they are BUSY.
    387   1.53.2.1      yamt 			 */
    388   1.53.2.1      yamt 			uvm_pagemarkdirty(pg, UVM_PAGE_STATUS_DIRTY);
    389   1.53.2.1      yamt 		}
    390        1.1     pooka 		npages += ridx;
    391        1.1     pooka 		goto out;
    392        1.1     pooka 	}
    393        1.1     pooka 
    394        1.1     pooka 	/*
    395   1.53.2.1      yamt 	 * if the pages are already resident, just return them.
    396        1.1     pooka 	 */
    397        1.1     pooka 
    398   1.53.2.1      yamt 	for (i = 0; i < npages; i++) {
    399   1.53.2.1      yamt 		struct vm_page *pg = pgs[ridx + i];
    400   1.53.2.1      yamt 
    401   1.53.2.1      yamt 		if ((pg->flags & PG_FAKE) ||
    402   1.53.2.1      yamt 		    (memwrite && (pg->flags & (PG_RDONLY|PG_HOLE)) != 0)) {
    403   1.53.2.1      yamt 			break;
    404   1.53.2.1      yamt 		}
    405   1.53.2.1      yamt 	}
    406   1.53.2.1      yamt 	if (i == npages) {
    407       1.40       chs 		if (!glocked) {
    408       1.40       chs 			genfs_node_unlock(vp);
    409       1.40       chs 		}
    410   1.53.2.1      yamt 		UVMHIST_LOG(ubchist, "returning cached pages", 0,0,0,0);
    411        1.1     pooka 		npages += ridx;
    412        1.1     pooka 		goto out;
    413        1.1     pooka 	}
    414        1.1     pooka 
    415        1.1     pooka 	/*
    416        1.1     pooka 	 * the page wasn't resident and we're not overwriting,
    417        1.1     pooka 	 * so we're going to have to do some i/o.
    418        1.1     pooka 	 * find any additional pages needed to cover the expanded range.
    419        1.1     pooka 	 */
    420        1.1     pooka 
    421        1.1     pooka 	npages = (endoffset - startoffset) >> PAGE_SHIFT;
    422       1.29  uebayasi 	if (startoffset != origoffset || npages != orignmempages) {
    423       1.31  uebayasi 		int npgs;
    424        1.1     pooka 
    425        1.1     pooka 		/*
    426        1.1     pooka 		 * we need to avoid deadlocks caused by locking
    427        1.1     pooka 		 * additional pages at lower offsets than pages we
    428        1.1     pooka 		 * already have locked.  unlock them all and start over.
    429        1.1     pooka 		 */
    430        1.1     pooka 
    431       1.29  uebayasi 		genfs_rel_pages(&pgs[ridx], orignmempages);
    432        1.1     pooka 		memset(pgs, 0, pgs_size);
    433        1.1     pooka 
    434        1.1     pooka 		UVMHIST_LOG(ubchist, "reset npages start 0x%x end 0x%x",
    435        1.1     pooka 		    startoffset, endoffset, 0,0);
    436        1.1     pooka 		npgs = npages;
    437   1.53.2.6      yamt 		if (uvn_findpages(uobj, startoffset, &npgs, pgs, NULL,
    438        1.1     pooka 		    async ? UFP_NOWAIT : UFP_ALL) != npages) {
    439       1.40       chs 			if (!glocked) {
    440       1.40       chs 				genfs_node_unlock(vp);
    441       1.40       chs 			}
    442        1.1     pooka 			KASSERT(async != 0);
    443        1.1     pooka 			genfs_rel_pages(pgs, npages);
    444       1.49     rmind 			mutex_exit(uobj->vmobjlock);
    445        1.1     pooka 			error = EBUSY;
    446       1.33  uebayasi 			goto out_err_free;
    447        1.1     pooka 		}
    448        1.1     pooka 	}
    449       1.34  uebayasi 
    450       1.49     rmind 	mutex_exit(uobj->vmobjlock);
    451        1.1     pooka 
    452       1.34  uebayasi     {
    453       1.34  uebayasi 	size_t bytes, iobytes, tailstart, tailbytes, totalbytes, skipbytes;
    454       1.34  uebayasi 	vaddr_t kva;
    455       1.34  uebayasi 	struct buf *bp, *mbp;
    456       1.34  uebayasi 	bool sawhole = false;
    457       1.34  uebayasi 
    458        1.1     pooka 	/*
    459        1.1     pooka 	 * read the desired page(s).
    460        1.1     pooka 	 */
    461        1.1     pooka 
    462        1.1     pooka 	totalbytes = npages << PAGE_SHIFT;
    463        1.1     pooka 	bytes = MIN(totalbytes, MAX(diskeof - startoffset, 0));
    464        1.1     pooka 	tailbytes = totalbytes - bytes;
    465        1.1     pooka 	skipbytes = 0;
    466        1.1     pooka 
    467        1.1     pooka 	kva = uvm_pagermapin(pgs, npages,
    468        1.1     pooka 	    UVMPAGER_MAPIN_READ | UVMPAGER_MAPIN_WAITOK);
    469        1.1     pooka 
    470        1.2        ad 	mbp = getiobuf(vp, true);
    471        1.1     pooka 	mbp->b_bufsize = totalbytes;
    472        1.1     pooka 	mbp->b_data = (void *)kva;
    473        1.1     pooka 	mbp->b_resid = mbp->b_bcount = bytes;
    474        1.2        ad 	mbp->b_cflags = BC_BUSY;
    475        1.2        ad 	if (async) {
    476        1.2        ad 		mbp->b_flags = B_READ | B_ASYNC;
    477        1.2        ad 		mbp->b_iodone = uvm_aio_biodone;
    478        1.2        ad 	} else {
    479        1.2        ad 		mbp->b_flags = B_READ;
    480        1.2        ad 		mbp->b_iodone = NULL;
    481       1.43  uebayasi 	}
    482        1.1     pooka 	if (async)
    483        1.1     pooka 		BIO_SETPRIO(mbp, BPRIO_TIMELIMITED);
    484        1.1     pooka 	else
    485        1.1     pooka 		BIO_SETPRIO(mbp, BPRIO_TIMECRITICAL);
    486        1.1     pooka 
    487        1.1     pooka 	/*
    488        1.1     pooka 	 * if EOF is in the middle of the range, zero the part past EOF.
    489        1.1     pooka 	 * skip over pages which are not PG_FAKE since in that case they have
    490        1.1     pooka 	 * valid data that we need to preserve.
    491        1.1     pooka 	 */
    492        1.1     pooka 
    493        1.1     pooka 	tailstart = bytes;
    494        1.1     pooka 	while (tailbytes > 0) {
    495        1.1     pooka 		const int len = PAGE_SIZE - (tailstart & PAGE_MASK);
    496        1.1     pooka 
    497        1.1     pooka 		KASSERT(len <= tailbytes);
    498        1.1     pooka 		if ((pgs[tailstart >> PAGE_SHIFT]->flags & PG_FAKE) != 0) {
    499        1.1     pooka 			memset((void *)(kva + tailstart), 0, len);
    500        1.1     pooka 			UVMHIST_LOG(ubchist, "tailbytes %p 0x%x 0x%x",
    501        1.1     pooka 			    kva, tailstart, len, 0);
    502        1.1     pooka 		}
    503        1.1     pooka 		tailstart += len;
    504        1.1     pooka 		tailbytes -= len;
    505        1.1     pooka 	}
    506        1.1     pooka 
    507        1.1     pooka 	/*
    508        1.1     pooka 	 * now loop over the pages, reading as needed.
    509        1.1     pooka 	 */
    510        1.1     pooka 
    511        1.1     pooka 	bp = NULL;
    512       1.28  uebayasi 	off_t offset;
    513       1.28  uebayasi 	for (offset = startoffset;
    514        1.1     pooka 	    bytes > 0;
    515        1.1     pooka 	    offset += iobytes, bytes -= iobytes) {
    516       1.30  uebayasi 		int run;
    517       1.25  uebayasi 		daddr_t lbn, blkno;
    518       1.24  uebayasi 		int pidx;
    519       1.26  uebayasi 		struct vnode *devvp;
    520        1.1     pooka 
    521        1.1     pooka 		/*
    522        1.1     pooka 		 * skip pages which don't need to be read.
    523        1.1     pooka 		 */
    524        1.1     pooka 
    525        1.1     pooka 		pidx = (offset - startoffset) >> PAGE_SHIFT;
    526        1.1     pooka 		while ((pgs[pidx]->flags & PG_FAKE) == 0) {
    527        1.1     pooka 			size_t b;
    528        1.1     pooka 
    529        1.1     pooka 			KASSERT((offset & (PAGE_SIZE - 1)) == 0);
    530   1.53.2.1      yamt 			if ((pgs[pidx]->flags & PG_HOLE)) {
    531        1.1     pooka 				sawhole = true;
    532        1.1     pooka 			}
    533        1.1     pooka 			b = MIN(PAGE_SIZE, bytes);
    534        1.1     pooka 			offset += b;
    535        1.1     pooka 			bytes -= b;
    536        1.1     pooka 			skipbytes += b;
    537        1.1     pooka 			pidx++;
    538        1.1     pooka 			UVMHIST_LOG(ubchist, "skipping, new offset 0x%x",
    539        1.1     pooka 			    offset, 0,0,0);
    540        1.1     pooka 			if (bytes == 0) {
    541        1.1     pooka 				goto loopdone;
    542        1.1     pooka 			}
    543        1.1     pooka 		}
    544        1.1     pooka 
    545        1.1     pooka 		/*
    546        1.1     pooka 		 * bmap the file to find out the blkno to read from and
    547        1.1     pooka 		 * how much we can read in one i/o.  if bmap returns an error,
    548        1.1     pooka 		 * skip the rest of the top-level i/o.
    549        1.1     pooka 		 */
    550        1.1     pooka 
    551        1.1     pooka 		lbn = offset >> fs_bshift;
    552        1.1     pooka 		error = VOP_BMAP(vp, lbn, &devvp, &blkno, &run);
    553        1.1     pooka 		if (error) {
    554        1.1     pooka 			UVMHIST_LOG(ubchist, "VOP_BMAP lbn 0x%x -> %d\n",
    555       1.36  uebayasi 			    lbn,error,0,0);
    556        1.1     pooka 			skipbytes += bytes;
    557       1.36  uebayasi 			bytes = 0;
    558        1.1     pooka 			goto loopdone;
    559        1.1     pooka 		}
    560        1.1     pooka 
    561        1.1     pooka 		/*
    562        1.1     pooka 		 * see how many pages can be read with this i/o.
    563        1.1     pooka 		 * reduce the i/o size if necessary to avoid
    564        1.1     pooka 		 * overwriting pages with valid data.
    565        1.1     pooka 		 */
    566        1.1     pooka 
    567        1.1     pooka 		iobytes = MIN((((off_t)lbn + 1 + run) << fs_bshift) - offset,
    568        1.1     pooka 		    bytes);
    569        1.1     pooka 		if (offset + iobytes > round_page(offset)) {
    570       1.24  uebayasi 			int pcount;
    571       1.24  uebayasi 
    572        1.1     pooka 			pcount = 1;
    573        1.1     pooka 			while (pidx + pcount < npages &&
    574        1.1     pooka 			    pgs[pidx + pcount]->flags & PG_FAKE) {
    575        1.1     pooka 				pcount++;
    576        1.1     pooka 			}
    577        1.1     pooka 			iobytes = MIN(iobytes, (pcount << PAGE_SHIFT) -
    578        1.1     pooka 			    (offset - trunc_page(offset)));
    579        1.1     pooka 		}
    580        1.1     pooka 
    581        1.1     pooka 		/*
    582        1.1     pooka 		 * if this block isn't allocated, zero it instead of
    583        1.1     pooka 		 * reading it.  unless we are going to allocate blocks,
    584   1.53.2.1      yamt 		 * mark the pages we zeroed PG_HOLE.
    585        1.1     pooka 		 */
    586        1.1     pooka 
    587       1.36  uebayasi 		if (blkno == (daddr_t)-1) {
    588        1.1     pooka 			int holepages = (round_page(offset + iobytes) -
    589        1.1     pooka 			    trunc_page(offset)) >> PAGE_SHIFT;
    590        1.1     pooka 			UVMHIST_LOG(ubchist, "lbn 0x%x -> HOLE", lbn,0,0,0);
    591        1.1     pooka 
    592        1.1     pooka 			sawhole = true;
    593        1.1     pooka 			memset((char *)kva + (offset - startoffset), 0,
    594        1.1     pooka 			    iobytes);
    595        1.1     pooka 			skipbytes += iobytes;
    596        1.1     pooka 
    597   1.53.2.9      yamt 			if (!blockalloc) {
    598   1.53.2.9      yamt 				mutex_enter(uobj->vmobjlock);
    599   1.53.2.9      yamt 				for (i = 0; i < holepages; i++) {
    600   1.53.2.1      yamt 					pgs[pidx + i]->flags |= PG_HOLE;
    601        1.1     pooka 				}
    602   1.53.2.9      yamt 				mutex_exit(uobj->vmobjlock);
    603        1.1     pooka 			}
    604        1.1     pooka 			continue;
    605        1.1     pooka 		}
    606        1.1     pooka 
    607        1.1     pooka 		/*
    608        1.1     pooka 		 * allocate a sub-buf for this piece of the i/o
    609        1.1     pooka 		 * (or just use mbp if there's only 1 piece),
    610        1.1     pooka 		 * and start it going.
    611        1.1     pooka 		 */
    612        1.1     pooka 
    613        1.1     pooka 		if (offset == startoffset && iobytes == bytes) {
    614        1.1     pooka 			bp = mbp;
    615        1.1     pooka 		} else {
    616       1.36  uebayasi 			UVMHIST_LOG(ubchist, "vp %p bp %p num now %d",
    617       1.36  uebayasi 			    vp, bp, vp->v_numoutput, 0);
    618        1.2        ad 			bp = getiobuf(vp, true);
    619        1.1     pooka 			nestiobuf_setup(mbp, bp, offset - startoffset, iobytes);
    620        1.1     pooka 		}
    621        1.1     pooka 		bp->b_lblkno = 0;
    622        1.1     pooka 
    623        1.1     pooka 		/* adjust physical blkno for partial blocks */
    624        1.1     pooka 		bp->b_blkno = blkno + ((offset - ((off_t)lbn << fs_bshift)) >>
    625        1.1     pooka 		    dev_bshift);
    626        1.1     pooka 
    627        1.1     pooka 		UVMHIST_LOG(ubchist,
    628        1.1     pooka 		    "bp %p offset 0x%x bcount 0x%x blkno 0x%x",
    629       1.36  uebayasi 		    bp, offset, bp->b_bcount, bp->b_blkno);
    630        1.1     pooka 
    631        1.1     pooka 		VOP_STRATEGY(devvp, bp);
    632        1.1     pooka 	}
    633        1.1     pooka 
    634        1.1     pooka loopdone:
    635        1.1     pooka 	nestiobuf_done(mbp, skipbytes, error);
    636        1.1     pooka 	if (async) {
    637        1.1     pooka 		UVMHIST_LOG(ubchist, "returning 0 (async)",0,0,0,0);
    638       1.40       chs 		if (!glocked) {
    639       1.40       chs 			genfs_node_unlock(vp);
    640       1.40       chs 		}
    641        1.1     pooka 		error = 0;
    642       1.33  uebayasi 		goto out_err_free;
    643        1.1     pooka 	}
    644        1.1     pooka 	if (bp != NULL) {
    645        1.1     pooka 		error = biowait(mbp);
    646        1.1     pooka 	}
    647        1.1     pooka 
    648       1.19     rmind 	/* Remove the mapping (make KVA available as soon as possible) */
    649       1.19     rmind 	uvm_pagermapout(kva, npages);
    650       1.19     rmind 
    651        1.1     pooka 	/*
    652        1.1     pooka 	 * if this we encountered a hole then we have to do a little more work.
    653   1.53.2.1      yamt 	 * if blockalloc is false, we marked the page PG_HOLE so that future
    654        1.1     pooka 	 * write accesses to the page will fault again.
    655   1.53.2.1      yamt 	 * if blockalloc is true, we must make sure that the backing store for
    656        1.1     pooka 	 * the page is completely allocated while the pages are locked.
    657        1.1     pooka 	 */
    658        1.1     pooka 
    659        1.1     pooka 	if (!error && sawhole && blockalloc) {
    660       1.42   hannken 		error = GOP_ALLOC(vp, startoffset,
    661       1.42   hannken 		    npages << PAGE_SHIFT, 0, cred);
    662        1.1     pooka 		UVMHIST_LOG(ubchist, "gop_alloc off 0x%x/0x%x -> %d",
    663        1.1     pooka 		    startoffset, npages << PAGE_SHIFT, error,0);
    664        1.1     pooka 		if (!error) {
    665       1.49     rmind 			mutex_enter(uobj->vmobjlock);
    666        1.1     pooka 			for (i = 0; i < npages; i++) {
    667       1.31  uebayasi 				struct vm_page *pg = pgs[i];
    668       1.31  uebayasi 
    669       1.31  uebayasi 				if (pg == NULL) {
    670        1.1     pooka 					continue;
    671        1.1     pooka 				}
    672   1.53.2.1      yamt 				pg->flags &= ~PG_HOLE;
    673   1.53.2.1      yamt 				uvm_pagemarkdirty(pg, UVM_PAGE_STATUS_DIRTY);
    674        1.1     pooka 				UVMHIST_LOG(ubchist, "mark dirty pg %p",
    675       1.31  uebayasi 				    pg,0,0,0);
    676        1.1     pooka 			}
    677       1.49     rmind 			mutex_exit(uobj->vmobjlock);
    678        1.1     pooka 		}
    679        1.1     pooka 	}
    680       1.40       chs 	if (!glocked) {
    681       1.40       chs 		genfs_node_unlock(vp);
    682       1.40       chs 	}
    683       1.18     rmind 
    684       1.18     rmind 	putiobuf(mbp);
    685       1.34  uebayasi     }
    686       1.18     rmind 
    687       1.49     rmind 	mutex_enter(uobj->vmobjlock);
    688        1.1     pooka 
    689        1.1     pooka 	/*
    690        1.1     pooka 	 * we're almost done!  release the pages...
    691        1.1     pooka 	 * for errors, we free the pages.
    692        1.1     pooka 	 * otherwise we activate them and mark them as valid and clean.
    693        1.1     pooka 	 * also, unbusy pages that were not actually requested.
    694        1.1     pooka 	 */
    695        1.1     pooka 
    696        1.1     pooka 	if (error) {
    697        1.1     pooka 		for (i = 0; i < npages; i++) {
    698       1.31  uebayasi 			struct vm_page *pg = pgs[i];
    699       1.31  uebayasi 
    700       1.31  uebayasi 			if (pg == NULL) {
    701        1.1     pooka 				continue;
    702        1.1     pooka 			}
    703        1.1     pooka 			UVMHIST_LOG(ubchist, "examining pg %p flags 0x%x",
    704       1.31  uebayasi 			    pg, pg->flags, 0,0);
    705       1.31  uebayasi 			if (pg->flags & PG_FAKE) {
    706       1.31  uebayasi 				pg->flags |= PG_RELEASED;
    707        1.1     pooka 			}
    708        1.1     pooka 		}
    709        1.2        ad 		mutex_enter(&uvm_pageqlock);
    710        1.1     pooka 		uvm_page_unbusy(pgs, npages);
    711        1.2        ad 		mutex_exit(&uvm_pageqlock);
    712       1.49     rmind 		mutex_exit(uobj->vmobjlock);
    713        1.1     pooka 		UVMHIST_LOG(ubchist, "returning error %d", error,0,0,0);
    714       1.33  uebayasi 		goto out_err_free;
    715        1.1     pooka 	}
    716        1.1     pooka 
    717        1.1     pooka out:
    718        1.1     pooka 	UVMHIST_LOG(ubchist, "succeeding, npages %d", npages,0,0,0);
    719        1.1     pooka 	error = 0;
    720        1.2        ad 	mutex_enter(&uvm_pageqlock);
    721        1.1     pooka 	for (i = 0; i < npages; i++) {
    722       1.31  uebayasi 		struct vm_page *pg = pgs[i];
    723        1.1     pooka 		if (pg == NULL) {
    724        1.1     pooka 			continue;
    725        1.1     pooka 		}
    726        1.1     pooka 		UVMHIST_LOG(ubchist, "examining pg %p flags 0x%x",
    727        1.1     pooka 		    pg, pg->flags, 0,0);
    728        1.1     pooka 		if (pg->flags & PG_FAKE && !overwrite) {
    729   1.53.2.1      yamt 			/*
    730   1.53.2.1      yamt 			 * we've read page's contents from the backing storage.
    731   1.53.2.1      yamt 			 *
    732   1.53.2.1      yamt 			 * for a read fault, we keep them CLEAN.
    733   1.53.2.1      yamt 			 */
    734   1.53.2.1      yamt 			KASSERT(uvm_pagegetdirty(pg) == UVM_PAGE_STATUS_CLEAN);
    735   1.53.2.1      yamt 			pg->flags &= ~PG_FAKE;
    736        1.1     pooka 		}
    737   1.53.2.1      yamt 		KASSERT(!blockalloc || (pg->flags & PG_HOLE) == 0);
    738       1.29  uebayasi 		if (i < ridx || i >= ridx + orignmempages || async) {
    739        1.1     pooka 			UVMHIST_LOG(ubchist, "unbusy pg %p offset 0x%x",
    740        1.1     pooka 			    pg, pg->offset,0,0);
    741   1.53.2.1      yamt 			KASSERT(!overwrite);
    742        1.1     pooka 			if (pg->flags & PG_WANTED) {
    743        1.1     pooka 				wakeup(pg);
    744        1.1     pooka 			}
    745   1.53.2.1      yamt 			if (pg->flags & PG_FAKE && overwrite) {
    746        1.1     pooka 				uvm_pagezero(pg);
    747        1.1     pooka 			}
    748        1.1     pooka 			if (pg->flags & PG_RELEASED) {
    749        1.1     pooka 				uvm_pagefree(pg);
    750        1.1     pooka 				continue;
    751        1.1     pooka 			}
    752        1.1     pooka 			uvm_pageenqueue(pg);
    753        1.1     pooka 			pg->flags &= ~(PG_WANTED|PG_BUSY|PG_FAKE);
    754        1.1     pooka 			UVM_PAGE_OWN(pg, NULL);
    755   1.53.2.1      yamt 		} else if (memwrite && !overwrite &&
    756   1.53.2.1      yamt 		    uvm_pagegetdirty(pg) == UVM_PAGE_STATUS_CLEAN) {
    757   1.53.2.1      yamt 			/*
    758   1.53.2.1      yamt 			 * for a write fault, start dirtiness tracking of
    759   1.53.2.1      yamt 			 * requested pages.
    760   1.53.2.1      yamt 			 */
    761   1.53.2.1      yamt 			uvm_pagemarkdirty(pg, UVM_PAGE_STATUS_UNKNOWN);
    762        1.1     pooka 		}
    763        1.1     pooka 	}
    764        1.2        ad 	mutex_exit(&uvm_pageqlock);
    765       1.38       chs 	if (memwrite) {
    766       1.38       chs 		genfs_markdirty(vp);
    767       1.38       chs 	}
    768       1.49     rmind 	mutex_exit(uobj->vmobjlock);
    769        1.1     pooka 	if (ap->a_m != NULL) {
    770        1.1     pooka 		memcpy(ap->a_m, &pgs[ridx],
    771       1.29  uebayasi 		    orignmempages * sizeof(struct vm_page *));
    772        1.1     pooka 	}
    773        1.1     pooka 
    774       1.33  uebayasi out_err_free:
    775       1.14  christos 	if (pgs != NULL && pgs != pgs_onstack)
    776        1.1     pooka 		kmem_free(pgs, pgs_size);
    777       1.33  uebayasi out_err:
    778       1.42   hannken 	if (has_trans_wapbl) {
    779       1.42   hannken 		if (need_wapbl)
    780       1.42   hannken 			WAPBL_END(vp->v_mount);
    781        1.1     pooka 		fstrans_done(vp->v_mount);
    782       1.42   hannken 	}
    783       1.38       chs 	return error;
    784        1.1     pooka }
    785        1.1     pooka 
    786        1.1     pooka /*
    787        1.1     pooka  * generic VM putpages routine.
    788        1.1     pooka  * Write the given range of pages to backing store.
    789        1.1     pooka  *
    790        1.1     pooka  * => "offhi == 0" means flush all pages at or after "offlo".
    791        1.1     pooka  * => object should be locked by caller.  we return with the
    792        1.1     pooka  *      object unlocked.
    793        1.1     pooka  * => if PGO_CLEANIT or PGO_SYNCIO is set, we may block (due to I/O).
    794        1.1     pooka  *	thus, a caller might want to unlock higher level resources
    795        1.1     pooka  *	(e.g. vm_map) before calling flush.
    796        1.1     pooka  * => if neither PGO_CLEANIT nor PGO_SYNCIO is set, we will not block
    797        1.1     pooka  * => if PGO_ALLPAGES is set, then all pages in the object will be processed.
    798        1.1     pooka  * => NOTE: we rely on the fact that the object's memq is a TAILQ and
    799        1.1     pooka  *	that new pages are inserted on the tail end of the list.   thus,
    800        1.1     pooka  *	we can make a complete pass through the object in one go by starting
    801        1.1     pooka  *	at the head and working towards the tail (new pages are put in
    802        1.1     pooka  *	front of us).
    803        1.1     pooka  * => NOTE: we are allowed to lock the page queues, so the caller
    804        1.1     pooka  *	must not be holding the page queue lock.
    805        1.1     pooka  *
    806        1.1     pooka  * note on "cleaning" object and PG_BUSY pages:
    807        1.1     pooka  *	this routine is holding the lock on the object.   the only time
    808        1.1     pooka  *	that it can run into a PG_BUSY page that it does not own is if
    809        1.1     pooka  *	some other process has started I/O on the page (e.g. either
    810   1.53.2.1      yamt  *	a pagein, or a pageout).  if the PG_BUSY page is being paged
    811   1.53.2.1      yamt  *	in, then it can not be dirty (!UVM_PAGE_STATUS_CLEAN) because no
    812   1.53.2.1      yamt  *	one has	had a chance to modify it yet.  if the PG_BUSY page is
    813   1.53.2.1      yamt  *	being paged out then it means that someone else has already started
    814   1.53.2.1      yamt  *	cleaning the page for us (how nice!).  in this case, if we
    815        1.1     pooka  *	have syncio specified, then after we make our pass through the
    816        1.1     pooka  *	object we need to wait for the other PG_BUSY pages to clear
    817        1.1     pooka  *	off (i.e. we need to do an iosync).   also note that once a
    818        1.1     pooka  *	page is PG_BUSY it must stay in its object until it is un-busyed.
    819        1.1     pooka  *
    820        1.1     pooka  * note on page traversal:
    821        1.1     pooka  *	we can traverse the pages in an object either by going down the
    822        1.1     pooka  *	linked list in "uobj->memq", or we can go over the address range
    823        1.1     pooka  *	by page doing hash table lookups for each address.    depending
    824        1.1     pooka  *	on how many pages are in the object it may be cheaper to do one
    825        1.1     pooka  *	or the other.   we set "by_list" to true if we are using memq.
    826        1.1     pooka  *	if the cost of a hash lookup was equal to the cost of the list
    827        1.1     pooka  *	traversal we could compare the number of pages in the start->stop
    828        1.1     pooka  *	range to the total number of pages in the object.   however, it
    829        1.1     pooka  *	seems that a hash table lookup is more expensive than the linked
    830        1.1     pooka  *	list traversal, so we multiply the number of pages in the
    831        1.1     pooka  *	range by an estimate of the relatively higher cost of the hash lookup.
    832        1.1     pooka  */
    833        1.1     pooka 
    834        1.1     pooka int
    835        1.1     pooka genfs_putpages(void *v)
    836        1.1     pooka {
    837        1.1     pooka 	struct vop_putpages_args /* {
    838        1.1     pooka 		struct vnode *a_vp;
    839        1.1     pooka 		voff_t a_offlo;
    840        1.1     pooka 		voff_t a_offhi;
    841        1.1     pooka 		int a_flags;
    842       1.22  uebayasi 	} */ * const ap = v;
    843        1.1     pooka 
    844        1.1     pooka 	return genfs_do_putpages(ap->a_vp, ap->a_offlo, ap->a_offhi,
    845        1.1     pooka 	    ap->a_flags, NULL);
    846        1.1     pooka }
    847        1.1     pooka 
    848        1.1     pooka int
    849        1.4      yamt genfs_do_putpages(struct vnode *vp, off_t startoff, off_t endoff,
    850        1.4      yamt     int origflags, struct vm_page **busypg)
    851        1.1     pooka {
    852       1.22  uebayasi 	struct uvm_object * const uobj = &vp->v_uobj;
    853       1.49     rmind 	kmutex_t * const slock = uobj->vmobjlock;
    854   1.53.2.8      yamt 	off_t nextoff;
    855        1.1     pooka 	/* Even for strange MAXPHYS, the shift rounds down to a page */
    856        1.1     pooka #define maxpages (MAXPHYS >> PAGE_SHIFT)
    857  1.53.2.11      yamt 	unsigned int i;
    858   1.53.2.6      yamt 	unsigned int npages, nback;
    859  1.53.2.11      yamt 	unsigned int freeflag;
    860  1.53.2.11      yamt 	int error;
    861   1.53.2.1      yamt 	struct vm_page *pgs[maxpages], *pg;
    862   1.53.2.3      yamt 	struct uvm_page_array a;
    863   1.53.2.1      yamt 	bool wasclean, needs_clean, yld;
    864        1.4      yamt 	bool async = (origflags & PGO_SYNCIO) == 0;
    865        1.1     pooka 	bool pagedaemon = curlwp == uvm.pagedaemon_lwp;
    866       1.22  uebayasi 	struct lwp * const l = curlwp ? curlwp : &lwp0;
    867        1.4      yamt 	int flags;
    868   1.53.2.8      yamt 	bool written;		/* if we write out any pages */
    869       1.12   hannken 	bool need_wapbl;
    870        1.4      yamt 	bool has_trans;
    871   1.53.2.3      yamt 	bool tryclean;		/* try to pull off from the syncer's list */
    872        1.4      yamt 	bool onworklst;
    873   1.53.2.1      yamt 	const bool dirtyonly = (origflags & (PGO_DEACTIVATE|PGO_FREE)) == 0;
    874        1.1     pooka 
    875        1.1     pooka 	UVMHIST_FUNC("genfs_putpages"); UVMHIST_CALLED(ubchist);
    876        1.1     pooka 
    877        1.4      yamt 	KASSERT(origflags & (PGO_CLEANIT|PGO_FREE|PGO_DEACTIVATE));
    878        1.1     pooka 	KASSERT((startoff & PAGE_MASK) == 0 && (endoff & PAGE_MASK) == 0);
    879        1.1     pooka 	KASSERT(startoff < endoff || endoff == 0);
    880        1.1     pooka 
    881        1.1     pooka 	UVMHIST_LOG(ubchist, "vp %p pages %d off 0x%x len 0x%x",
    882        1.1     pooka 	    vp, uobj->uo_npages, startoff, endoff - startoff);
    883        1.1     pooka 
    884        1.6   hannken 	has_trans = false;
    885       1.12   hannken 	need_wapbl = (!pagedaemon && vp->v_mount && vp->v_mount->mnt_wapbl &&
    886       1.12   hannken 	    (origflags & PGO_JOURNALLOCKED) == 0);
    887        1.6   hannken 
    888        1.4      yamt retry:
    889        1.4      yamt 	flags = origflags;
    890        1.1     pooka 	KASSERT((vp->v_iflag & VI_ONWORKLST) != 0 ||
    891        1.1     pooka 	    (vp->v_iflag & VI_WRMAPDIRTY) == 0);
    892   1.53.2.3      yamt 
    893   1.53.2.3      yamt 	/*
    894   1.53.2.3      yamt 	 * shortcut if we have no pages to process.
    895   1.53.2.3      yamt 	 */
    896   1.53.2.3      yamt 
    897   1.53.2.2      yamt 	if (uobj->uo_npages == 0 || (dirtyonly &&
    898   1.53.2.2      yamt 	    radix_tree_empty_tagged_tree_p(&uobj->uo_pages,
    899   1.53.2.2      yamt 	    UVM_PAGE_DIRTY_TAG))) {
    900        1.1     pooka 		if (vp->v_iflag & VI_ONWORKLST) {
    901        1.1     pooka 			vp->v_iflag &= ~VI_WRMAPDIRTY;
    902        1.1     pooka 			if (LIST_FIRST(&vp->v_dirtyblkhd) == NULL)
    903        1.1     pooka 				vn_syncer_remove_from_worklist(vp);
    904        1.1     pooka 		}
    905       1.12   hannken 		if (has_trans) {
    906       1.12   hannken 			if (need_wapbl)
    907       1.12   hannken 				WAPBL_END(vp->v_mount);
    908        1.6   hannken 			fstrans_done(vp->v_mount);
    909       1.12   hannken 		}
    910        1.2        ad 		mutex_exit(slock);
    911        1.1     pooka 		return (0);
    912        1.1     pooka 	}
    913        1.1     pooka 
    914        1.1     pooka 	/*
    915        1.1     pooka 	 * the vnode has pages, set up to process the request.
    916        1.1     pooka 	 */
    917        1.1     pooka 
    918        1.6   hannken 	if (!has_trans && (flags & PGO_CLEANIT) != 0) {
    919        1.2        ad 		mutex_exit(slock);
    920        1.1     pooka 		if (pagedaemon) {
    921        1.1     pooka 			error = fstrans_start_nowait(vp->v_mount, FSTRANS_LAZY);
    922        1.1     pooka 			if (error)
    923        1.1     pooka 				return error;
    924        1.1     pooka 		} else
    925        1.1     pooka 			fstrans_start(vp->v_mount, FSTRANS_LAZY);
    926       1.12   hannken 		if (need_wapbl) {
    927       1.12   hannken 			error = WAPBL_BEGIN(vp->v_mount);
    928       1.12   hannken 			if (error) {
    929       1.12   hannken 				fstrans_done(vp->v_mount);
    930       1.12   hannken 				return error;
    931       1.12   hannken 			}
    932       1.12   hannken 		}
    933        1.1     pooka 		has_trans = true;
    934        1.2        ad 		mutex_enter(slock);
    935        1.6   hannken 		goto retry;
    936        1.1     pooka 	}
    937        1.1     pooka 
    938        1.1     pooka 	error = 0;
    939        1.1     pooka 	wasclean = (vp->v_numoutput == 0);
    940        1.1     pooka 
    941        1.1     pooka 	/*
    942        1.1     pooka 	 * if this vnode is known not to have dirty pages,
    943        1.1     pooka 	 * don't bother to clean it out.
    944        1.1     pooka 	 */
    945        1.1     pooka 
    946        1.1     pooka 	if ((vp->v_iflag & VI_ONWORKLST) == 0) {
    947       1.48      matt #if !defined(DEBUG)
    948   1.53.2.2      yamt 		if (dirtyonly) {
    949        1.1     pooka 			goto skip_scan;
    950        1.1     pooka 		}
    951       1.48      matt #endif /* !defined(DEBUG) */
    952        1.1     pooka 		flags &= ~PGO_CLEANIT;
    953        1.1     pooka 	}
    954        1.1     pooka 
    955        1.1     pooka 	/*
    956   1.53.2.9      yamt 	 * start the loop to scan pages.
    957        1.1     pooka 	 */
    958        1.1     pooka 
    959   1.53.2.9      yamt 	written = false;
    960   1.53.2.9      yamt 	nextoff = startoff;
    961   1.53.2.9      yamt 	if (endoff == 0 || flags & PGO_ALLPAGES) {
    962   1.53.2.9      yamt 		endoff = trunc_page(LLONG_MAX);
    963   1.53.2.9      yamt 	}
    964        1.1     pooka 	freeflag = pagedaemon ? PG_PAGEOUT : PG_RELEASED;
    965   1.53.2.3      yamt 	tryclean = true;
    966   1.53.2.3      yamt 	uvm_page_array_init(&a);
    967   1.53.2.1      yamt 	for (;;) {
    968   1.53.2.1      yamt 		bool protected;
    969   1.53.2.1      yamt 
    970   1.53.2.8      yamt 		pg = uvm_page_array_fill_and_peek(&a, uobj, nextoff, 0,
    971   1.53.2.4      yamt 		    dirtyonly ? UVM_PAGE_ARRAY_FILL_DIRTYONLY : 0);
    972   1.53.2.1      yamt 		if (pg == NULL) {
    973   1.53.2.3      yamt 			break;
    974   1.53.2.1      yamt 		}
    975        1.1     pooka 
    976        1.1     pooka 		/*
    977        1.1     pooka 		 * if the current page is not interesting, move on to the next.
    978        1.1     pooka 		 */
    979        1.1     pooka 
    980   1.53.2.1      yamt 		KASSERT(pg->uobject == uobj);
    981   1.53.2.1      yamt 		KASSERT((pg->flags & (PG_RELEASED|PG_PAGEOUT)) == 0 ||
    982   1.53.2.3      yamt 		    (pg->flags & (PG_BUSY)) != 0);
    983   1.53.2.1      yamt 		KASSERT(pg->offset >= startoff);
    984   1.53.2.8      yamt 		KASSERT(pg->offset >= nextoff);
    985   1.53.2.1      yamt 		KASSERT(!dirtyonly ||
    986   1.53.2.1      yamt 		    uvm_pagegetdirty(pg) != UVM_PAGE_STATUS_CLEAN);
    987   1.53.2.1      yamt 		if (pg->offset >= endoff) {
    988   1.53.2.1      yamt 			break;
    989   1.53.2.1      yamt 		}
    990   1.53.2.1      yamt 		if (pg->flags & (PG_RELEASED|PG_PAGEOUT)) {
    991   1.53.2.1      yamt 			KASSERT((pg->flags & PG_BUSY) != 0);
    992   1.53.2.1      yamt 			wasclean = false;
    993   1.53.2.8      yamt 			nextoff = pg->offset + PAGE_SIZE;
    994   1.53.2.3      yamt 			uvm_page_array_advance(&a);
    995        1.1     pooka 			continue;
    996        1.1     pooka 		}
    997        1.1     pooka 
    998        1.1     pooka 		/*
    999        1.1     pooka 		 * if the current page needs to be cleaned and it's busy,
   1000        1.1     pooka 		 * wait for it to become unbusy.
   1001        1.1     pooka 		 */
   1002        1.1     pooka 
   1003        1.1     pooka 		yld = (l->l_cpu->ci_schedstate.spc_flags &
   1004        1.1     pooka 		    SPCF_SHOULDYIELD) && !pagedaemon;
   1005        1.1     pooka 		if (pg->flags & PG_BUSY || yld) {
   1006        1.1     pooka 			UVMHIST_LOG(ubchist, "busy %p", pg,0,0,0);
   1007        1.1     pooka 			if (flags & PGO_BUSYFAIL && pg->flags & PG_BUSY) {
   1008        1.1     pooka 				UVMHIST_LOG(ubchist, "busyfail %p", pg, 0,0,0);
   1009        1.1     pooka 				error = EDEADLK;
   1010        1.1     pooka 				if (busypg != NULL)
   1011        1.1     pooka 					*busypg = pg;
   1012        1.1     pooka 				break;
   1013        1.1     pooka 			}
   1014        1.1     pooka 			if (pagedaemon) {
   1015        1.1     pooka 				/*
   1016        1.1     pooka 				 * someone has taken the page while we
   1017        1.1     pooka 				 * dropped the lock for fstrans_start.
   1018        1.1     pooka 				 */
   1019        1.1     pooka 				break;
   1020        1.1     pooka 			}
   1021   1.53.2.8      yamt 			nextoff = pg->offset; /* visit this page again */
   1022   1.53.2.3      yamt 			if ((pg->flags & PG_BUSY) != 0) {
   1023        1.1     pooka 				pg->flags |= PG_WANTED;
   1024        1.1     pooka 				UVM_UNLOCK_AND_WAIT(pg, slock, 0, "genput", 0);
   1025   1.53.2.3      yamt 			} else {
   1026   1.53.2.3      yamt 				KASSERT(yld);
   1027   1.53.2.3      yamt 				mutex_exit(slock);
   1028   1.53.2.3      yamt 				preempt();
   1029        1.1     pooka 			}
   1030   1.53.2.1      yamt 			/*
   1031   1.53.2.1      yamt 			 * as we dropped the object lock, our cached pages can
   1032   1.53.2.1      yamt 			 * be stale.
   1033   1.53.2.1      yamt 			 */
   1034   1.53.2.3      yamt 			uvm_page_array_clear(&a);
   1035   1.53.2.1      yamt 			mutex_enter(slock);
   1036        1.1     pooka 			continue;
   1037        1.1     pooka 		}
   1038        1.1     pooka 
   1039   1.53.2.8      yamt 		nextoff = pg->offset + PAGE_SIZE;
   1040   1.53.2.3      yamt 		uvm_page_array_advance(&a);
   1041   1.53.2.1      yamt 
   1042        1.1     pooka 		/*
   1043        1.1     pooka 		 * if we're freeing, remove all mappings of the page now.
   1044  1.53.2.11      yamt 		 * if we're cleaning, check if the page needs to be cleaned.
   1045        1.1     pooka 		 */
   1046        1.1     pooka 
   1047   1.53.2.1      yamt 		protected = false;
   1048        1.1     pooka 		if (flags & PGO_FREE) {
   1049        1.1     pooka 			pmap_page_protect(pg, VM_PROT_NONE);
   1050   1.53.2.1      yamt 			protected = true;
   1051        1.1     pooka 		} else if (flags & PGO_CLEANIT) {
   1052        1.1     pooka 
   1053        1.1     pooka 			/*
   1054        1.1     pooka 			 * if we still have some hope to pull this vnode off
   1055        1.1     pooka 			 * from the syncer queue, write-protect the page.
   1056        1.1     pooka 			 */
   1057        1.1     pooka 
   1058   1.53.2.3      yamt 			if (tryclean && wasclean) {
   1059        1.1     pooka 
   1060        1.1     pooka 				/*
   1061        1.1     pooka 				 * uobj pages get wired only by uvm_fault
   1062        1.1     pooka 				 * where uobj is locked.
   1063        1.1     pooka 				 */
   1064        1.1     pooka 
   1065        1.1     pooka 				if (pg->wire_count == 0) {
   1066        1.1     pooka 					pmap_page_protect(pg,
   1067        1.1     pooka 					    VM_PROT_READ|VM_PROT_EXECUTE);
   1068   1.53.2.1      yamt 					protected = true;
   1069        1.1     pooka 				} else {
   1070   1.53.2.3      yamt 					/*
   1071   1.53.2.3      yamt 					 * give up.
   1072   1.53.2.3      yamt 					 */
   1073   1.53.2.3      yamt 					tryclean = false;
   1074        1.1     pooka 				}
   1075        1.1     pooka 			}
   1076        1.1     pooka 		}
   1077        1.1     pooka 
   1078        1.1     pooka 		if (flags & PGO_CLEANIT) {
   1079   1.53.2.1      yamt 			needs_clean = uvm_pagecheckdirty(pg, protected);
   1080        1.1     pooka 		} else {
   1081        1.1     pooka 			needs_clean = false;
   1082        1.1     pooka 		}
   1083        1.1     pooka 
   1084        1.1     pooka 		/*
   1085        1.1     pooka 		 * if we're cleaning, build a cluster.
   1086   1.53.2.1      yamt 		 * the cluster will consist of pages which are currently dirty.
   1087        1.1     pooka 		 * if not cleaning, just operate on the one page.
   1088        1.1     pooka 		 */
   1089        1.1     pooka 
   1090        1.1     pooka 		if (needs_clean) {
   1091   1.53.2.6      yamt 			unsigned int nforw;
   1092   1.53.2.6      yamt 			unsigned int fpflags;
   1093   1.53.2.6      yamt 
   1094        1.1     pooka 			KDASSERT((vp->v_iflag & VI_ONWORKLST));
   1095        1.1     pooka 			wasclean = false;
   1096        1.1     pooka 			memset(pgs, 0, sizeof(pgs));
   1097        1.1     pooka 			pg->flags |= PG_BUSY;
   1098        1.1     pooka 			UVM_PAGE_OWN(pg, "genfs_putpages");
   1099        1.1     pooka 
   1100   1.53.2.8      yamt 			fpflags = UFP_NOWAIT|UFP_NOALLOC|UFP_DIRTYONLY;
   1101   1.53.2.8      yamt 
   1102        1.1     pooka 			/*
   1103   1.53.2.6      yamt 			 * XXX PG_PAGER1 incompatibility check.
   1104   1.53.2.9      yamt 			 *
   1105   1.53.2.9      yamt 			 * this is a kludge for nfs.  nfs has two kind of dirty
   1106   1.53.2.9      yamt 			 * pages:
   1107   1.53.2.9      yamt 			 *	- not written to the server yet
   1108   1.53.2.9      yamt 			 *	- written to the server but not committed yet
   1109   1.53.2.9      yamt 			 * the latter is marked as PG_NEEDCOMMIT. (== PG_PAGER1)
   1110   1.53.2.9      yamt 			 * nfs doesn't want them being clustered together.
   1111   1.53.2.9      yamt 			 *
   1112   1.53.2.5      yamt 			 * probably it's better to make PG_NEEDCOMMIT a first
   1113   1.53.2.5      yamt 			 * level citizen for uvm/genfs.
   1114        1.1     pooka 			 */
   1115   1.53.2.6      yamt 			if ((pg->flags & PG_PAGER1) != 0) {
   1116   1.53.2.6      yamt 				fpflags |= UFP_ONLYPAGER1;
   1117   1.53.2.6      yamt 			} else {
   1118   1.53.2.6      yamt 				fpflags |= UFP_NOPAGER1;
   1119   1.53.2.6      yamt 			}
   1120        1.1     pooka 
   1121   1.53.2.6      yamt 			/*
   1122   1.53.2.6      yamt 			 * first look backward.
   1123   1.53.2.8      yamt 			 *
   1124   1.53.2.8      yamt 			 * because we always scan pages in the ascending order,
   1125   1.53.2.8      yamt 			 * backward scan can be useful only for the first page
   1126   1.53.2.8      yamt 			 * in the range.
   1127   1.53.2.6      yamt 			 */
   1128   1.53.2.8      yamt 			if (startoff == pg->offset) {
   1129   1.53.2.8      yamt 				npages = MIN(maxpages >> 1,
   1130   1.53.2.8      yamt 				    pg->offset >> PAGE_SHIFT);
   1131   1.53.2.8      yamt 				nback = npages;
   1132   1.53.2.8      yamt 				uvn_findpages(uobj, pg->offset - PAGE_SIZE,
   1133   1.53.2.8      yamt 				    &nback, &pgs[0], NULL,
   1134   1.53.2.8      yamt 				    fpflags | UFP_BACKWARD);
   1135   1.53.2.8      yamt 				if (nback) {
   1136   1.53.2.8      yamt 					memmove(&pgs[0], &pgs[npages - nback],
   1137        1.1     pooka 					    nback * sizeof(pgs[0]));
   1138   1.53.2.8      yamt 					if (npages - nback < nback)
   1139   1.53.2.8      yamt 						memset(&pgs[nback], 0,
   1140   1.53.2.8      yamt 						    (npages - nback) *
   1141   1.53.2.8      yamt 						    sizeof(pgs[0]));
   1142   1.53.2.8      yamt 					else
   1143   1.53.2.8      yamt 						memset(&pgs[npages - nback], 0,
   1144   1.53.2.8      yamt 						    nback * sizeof(pgs[0]));
   1145   1.53.2.8      yamt 				}
   1146   1.53.2.8      yamt 			} else {
   1147   1.53.2.8      yamt 				nback = 0;
   1148        1.1     pooka 			}
   1149        1.1     pooka 
   1150        1.1     pooka 			/*
   1151        1.1     pooka 			 * then plug in our page of interest.
   1152        1.1     pooka 			 */
   1153        1.1     pooka 
   1154        1.1     pooka 			pgs[nback] = pg;
   1155        1.1     pooka 
   1156        1.1     pooka 			/*
   1157        1.1     pooka 			 * then look forward to fill in the remaining space in
   1158        1.1     pooka 			 * the array of pages.
   1159   1.53.2.6      yamt 			 *
   1160   1.53.2.6      yamt 			 * pass our cached array of pages so that hopefully
   1161   1.53.2.6      yamt 			 * uvn_findpages can find some good pages in it.
   1162        1.1     pooka 			 */
   1163        1.1     pooka 
   1164   1.53.2.6      yamt 			nforw = maxpages - nback - 1;
   1165   1.53.2.6      yamt 			uvn_findpages(uobj, pg->offset + PAGE_SIZE,
   1166   1.53.2.6      yamt 			    &nforw, &pgs[nback + 1], &a, fpflags);
   1167   1.53.2.6      yamt 			npages = nback + 1 + nforw;
   1168        1.1     pooka 		} else {
   1169        1.1     pooka 			pgs[0] = pg;
   1170        1.1     pooka 			npages = 1;
   1171        1.1     pooka 			nback = 0;
   1172        1.1     pooka 		}
   1173        1.1     pooka 
   1174        1.1     pooka 		/*
   1175        1.1     pooka 		 * apply FREE or DEACTIVATE options if requested.
   1176        1.1     pooka 		 */
   1177        1.1     pooka 
   1178        1.1     pooka 		if (flags & (PGO_DEACTIVATE|PGO_FREE)) {
   1179        1.2        ad 			mutex_enter(&uvm_pageqlock);
   1180        1.1     pooka 		}
   1181        1.1     pooka 		for (i = 0; i < npages; i++) {
   1182   1.53.2.1      yamt 			struct vm_page *tpg = pgs[i];
   1183   1.53.2.1      yamt 
   1184        1.1     pooka 			KASSERT(tpg->uobject == uobj);
   1185  1.53.2.11      yamt 			KASSERT(i == 0 ||
   1186  1.53.2.11      yamt 			    pgs[i-1]->offset + PAGE_SIZE == tpg->offset);
   1187  1.53.2.11      yamt 			KASSERT(!needs_clean || uvm_pagegetdirty(pgs[i]) !=
   1188  1.53.2.11      yamt 			    UVM_PAGE_STATUS_DIRTY);
   1189        1.1     pooka 			if (tpg->offset < startoff || tpg->offset >= endoff)
   1190        1.1     pooka 				continue;
   1191        1.1     pooka 			if (flags & PGO_DEACTIVATE && tpg->wire_count == 0) {
   1192        1.1     pooka 				uvm_pagedeactivate(tpg);
   1193        1.1     pooka 			} else if (flags & PGO_FREE) {
   1194        1.1     pooka 				pmap_page_protect(tpg, VM_PROT_NONE);
   1195        1.1     pooka 				if (tpg->flags & PG_BUSY) {
   1196        1.1     pooka 					tpg->flags |= freeflag;
   1197        1.1     pooka 					if (pagedaemon) {
   1198        1.2        ad 						uvm_pageout_start(1);
   1199        1.1     pooka 						uvm_pagedequeue(tpg);
   1200        1.1     pooka 					}
   1201        1.1     pooka 				} else {
   1202        1.1     pooka 
   1203        1.1     pooka 					/*
   1204        1.1     pooka 					 * ``page is not busy''
   1205        1.1     pooka 					 * implies that npages is 1
   1206        1.1     pooka 					 * and needs_clean is false.
   1207        1.1     pooka 					 */
   1208        1.1     pooka 
   1209   1.53.2.1      yamt 					KASSERT(npages == 1);
   1210   1.53.2.1      yamt 					KASSERT(!needs_clean);
   1211   1.53.2.1      yamt 					KASSERT(pg == tpg);
   1212   1.53.2.8      yamt 					KASSERT(nextoff ==
   1213   1.53.2.8      yamt 					    tpg->offset + PAGE_SIZE);
   1214        1.1     pooka 					uvm_pagefree(tpg);
   1215        1.1     pooka 					if (pagedaemon)
   1216        1.1     pooka 						uvmexp.pdfreed++;
   1217        1.1     pooka 				}
   1218        1.1     pooka 			}
   1219        1.1     pooka 		}
   1220        1.1     pooka 		if (flags & (PGO_DEACTIVATE|PGO_FREE)) {
   1221        1.2        ad 			mutex_exit(&uvm_pageqlock);
   1222        1.1     pooka 		}
   1223        1.1     pooka 		if (needs_clean) {
   1224   1.53.2.1      yamt 			mutex_exit(slock);
   1225   1.53.2.8      yamt 			KASSERT(nextoff == pg->offset + PAGE_SIZE);
   1226  1.53.2.11      yamt 			KASSERT(nback < npages);
   1227   1.53.2.8      yamt 			nextoff = pg->offset + ((npages - nback) << PAGE_SHIFT);
   1228   1.53.2.8      yamt 			KASSERT(pgs[nback] == pg);
   1229   1.53.2.8      yamt 			KASSERT(nextoff == pgs[npages - 1]->offset + PAGE_SIZE);
   1230        1.1     pooka 
   1231        1.1     pooka 			/*
   1232   1.53.2.1      yamt 			 * start the i/o.
   1233   1.53.2.8      yamt 			 */
   1234   1.53.2.8      yamt 			error = GOP_WRITE(vp, pgs, npages, flags);
   1235   1.53.2.8      yamt 			written = true;
   1236   1.53.2.8      yamt 			/*
   1237   1.53.2.1      yamt 			 * as we dropped the object lock, our cached pages can
   1238   1.53.2.1      yamt 			 * be stale.
   1239        1.1     pooka 			 */
   1240   1.53.2.3      yamt 			uvm_page_array_clear(&a);
   1241        1.2        ad 			mutex_enter(slock);
   1242        1.1     pooka 			if (error) {
   1243        1.1     pooka 				break;
   1244        1.1     pooka 			}
   1245        1.1     pooka 		}
   1246        1.1     pooka 	}
   1247   1.53.2.3      yamt 	uvm_page_array_fini(&a);
   1248        1.1     pooka 
   1249   1.53.2.2      yamt 	/*
   1250   1.53.2.2      yamt 	 * update ctime/mtime if the modification we started writing out might
   1251   1.53.2.2      yamt 	 * be from mmap'ed write.
   1252   1.53.2.2      yamt 	 *
   1253   1.53.2.2      yamt 	 * this is necessary when an application keeps a file mmaped and
   1254   1.53.2.2      yamt 	 * repeatedly modifies it via the window.  note that, because we
   1255   1.53.2.2      yamt 	 * don't always write-protect pages when cleaning, such modifications
   1256   1.53.2.2      yamt 	 * might not involve any page faults.
   1257   1.53.2.2      yamt 	 */
   1258   1.53.2.2      yamt 
   1259   1.53.2.8      yamt 	if (written && (vp->v_iflag & VI_WRMAPDIRTY) != 0 &&
   1260        1.1     pooka 	    (vp->v_type != VBLK ||
   1261        1.1     pooka 	    (vp->v_mount->mnt_flag & MNT_NODEVMTIME) == 0)) {
   1262        1.1     pooka 		GOP_MARKUPDATE(vp, GOP_UPDATE_MODIFIED);
   1263        1.1     pooka 	}
   1264        1.1     pooka 
   1265        1.1     pooka 	/*
   1266   1.53.2.3      yamt 	 * if we no longer have any possibly dirty pages, take us off the
   1267   1.53.2.3      yamt 	 * syncer list.
   1268        1.1     pooka 	 */
   1269        1.1     pooka 
   1270   1.53.2.3      yamt 	if ((vp->v_iflag & VI_ONWORKLST) != 0 &&
   1271   1.53.2.3      yamt 	    radix_tree_empty_tagged_tree_p(&uobj->uo_pages,
   1272   1.53.2.3      yamt 	    UVM_PAGE_DIRTY_TAG)) {
   1273        1.1     pooka 		vp->v_iflag &= ~VI_WRMAPDIRTY;
   1274        1.1     pooka 		if (LIST_FIRST(&vp->v_dirtyblkhd) == NULL)
   1275        1.1     pooka 			vn_syncer_remove_from_worklist(vp);
   1276        1.1     pooka 	}
   1277        1.1     pooka 
   1278        1.1     pooka #if !defined(DEBUG)
   1279        1.1     pooka skip_scan:
   1280        1.1     pooka #endif /* !defined(DEBUG) */
   1281        1.2        ad 
   1282   1.53.2.3      yamt 	/*
   1283  1.53.2.10      yamt 	 * if we found or started any i/o and we're doing sync i/o,
   1284  1.53.2.10      yamt 	 * wait for all writes to finish.
   1285   1.53.2.3      yamt 	 */
   1286   1.53.2.3      yamt 
   1287   1.53.2.3      yamt 	if (!wasclean && !async) {
   1288        1.2        ad 		while (vp->v_numoutput != 0)
   1289        1.2        ad 			cv_wait(&vp->v_cv, slock);
   1290        1.1     pooka 	}
   1291        1.4      yamt 	onworklst = (vp->v_iflag & VI_ONWORKLST) != 0;
   1292        1.2        ad 	mutex_exit(slock);
   1293        1.1     pooka 
   1294        1.4      yamt 	if ((flags & PGO_RECLAIM) != 0 && onworklst) {
   1295        1.4      yamt 		/*
   1296        1.4      yamt 		 * in the case of PGO_RECLAIM, ensure to make the vnode clean.
   1297        1.4      yamt 		 * retrying is not a big deal because, in many cases,
   1298        1.4      yamt 		 * uobj->uo_npages is already 0 here.
   1299        1.4      yamt 		 */
   1300        1.4      yamt 		mutex_enter(slock);
   1301        1.4      yamt 		goto retry;
   1302        1.4      yamt 	}
   1303        1.4      yamt 
   1304       1.12   hannken 	if (has_trans) {
   1305       1.12   hannken 		if (need_wapbl)
   1306       1.12   hannken 			WAPBL_END(vp->v_mount);
   1307        1.6   hannken 		fstrans_done(vp->v_mount);
   1308       1.12   hannken 	}
   1309        1.6   hannken 
   1310        1.1     pooka 	return (error);
   1311        1.1     pooka }
   1312        1.1     pooka 
   1313        1.1     pooka int
   1314        1.1     pooka genfs_gop_write(struct vnode *vp, struct vm_page **pgs, int npages, int flags)
   1315        1.1     pooka {
   1316        1.1     pooka 	off_t off;
   1317        1.1     pooka 	vaddr_t kva;
   1318        1.1     pooka 	size_t len;
   1319        1.1     pooka 	int error;
   1320        1.1     pooka 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(ubchist);
   1321        1.1     pooka 
   1322        1.1     pooka 	UVMHIST_LOG(ubchist, "vp %p pgs %p npages %d flags 0x%x",
   1323        1.1     pooka 	    vp, pgs, npages, flags);
   1324        1.1     pooka 
   1325        1.1     pooka 	off = pgs[0]->offset;
   1326        1.1     pooka 	kva = uvm_pagermapin(pgs, npages,
   1327        1.1     pooka 	    UVMPAGER_MAPIN_WRITE | UVMPAGER_MAPIN_WAITOK);
   1328        1.1     pooka 	len = npages << PAGE_SHIFT;
   1329        1.1     pooka 
   1330        1.1     pooka 	error = genfs_do_io(vp, off, kva, len, flags, UIO_WRITE,
   1331        1.1     pooka 			    uvm_aio_biodone);
   1332        1.1     pooka 
   1333        1.1     pooka 	return error;
   1334        1.1     pooka }
   1335        1.1     pooka 
   1336        1.7   reinoud int
   1337        1.7   reinoud genfs_gop_write_rwmap(struct vnode *vp, struct vm_page **pgs, int npages, int flags)
   1338        1.7   reinoud {
   1339        1.7   reinoud 	off_t off;
   1340        1.7   reinoud 	vaddr_t kva;
   1341        1.7   reinoud 	size_t len;
   1342        1.7   reinoud 	int error;
   1343        1.7   reinoud 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(ubchist);
   1344        1.7   reinoud 
   1345        1.7   reinoud 	UVMHIST_LOG(ubchist, "vp %p pgs %p npages %d flags 0x%x",
   1346        1.7   reinoud 	    vp, pgs, npages, flags);
   1347        1.7   reinoud 
   1348        1.7   reinoud 	off = pgs[0]->offset;
   1349        1.7   reinoud 	kva = uvm_pagermapin(pgs, npages,
   1350        1.7   reinoud 	    UVMPAGER_MAPIN_READ | UVMPAGER_MAPIN_WAITOK);
   1351        1.7   reinoud 	len = npages << PAGE_SHIFT;
   1352        1.7   reinoud 
   1353        1.7   reinoud 	error = genfs_do_io(vp, off, kva, len, flags, UIO_WRITE,
   1354        1.7   reinoud 			    uvm_aio_biodone);
   1355        1.7   reinoud 
   1356        1.7   reinoud 	return error;
   1357        1.7   reinoud }
   1358        1.7   reinoud 
   1359        1.1     pooka /*
   1360        1.1     pooka  * Backend routine for doing I/O to vnode pages.  Pages are already locked
   1361        1.1     pooka  * and mapped into kernel memory.  Here we just look up the underlying
   1362        1.1     pooka  * device block addresses and call the strategy routine.
   1363        1.1     pooka  */
   1364        1.1     pooka 
   1365        1.1     pooka static int
   1366        1.1     pooka genfs_do_io(struct vnode *vp, off_t off, vaddr_t kva, size_t len, int flags,
   1367        1.1     pooka     enum uio_rw rw, void (*iodone)(struct buf *))
   1368        1.1     pooka {
   1369       1.36  uebayasi 	int s, error;
   1370        1.1     pooka 	int fs_bshift, dev_bshift;
   1371        1.1     pooka 	off_t eof, offset, startoffset;
   1372        1.1     pooka 	size_t bytes, iobytes, skipbytes;
   1373        1.1     pooka 	struct buf *mbp, *bp;
   1374       1.35  uebayasi 	const bool async = (flags & PGO_SYNCIO) == 0;
   1375       1.35  uebayasi 	const bool iowrite = rw == UIO_WRITE;
   1376       1.35  uebayasi 	const int brw = iowrite ? B_WRITE : B_READ;
   1377        1.1     pooka 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(ubchist);
   1378        1.1     pooka 
   1379        1.1     pooka 	UVMHIST_LOG(ubchist, "vp %p kva %p len 0x%x flags 0x%x",
   1380        1.1     pooka 	    vp, kva, len, flags);
   1381        1.1     pooka 
   1382        1.1     pooka 	KASSERT(vp->v_size <= vp->v_writesize);
   1383        1.1     pooka 	GOP_SIZE(vp, vp->v_writesize, &eof, 0);
   1384        1.1     pooka 	if (vp->v_type != VBLK) {
   1385        1.1     pooka 		fs_bshift = vp->v_mount->mnt_fs_bshift;
   1386        1.1     pooka 		dev_bshift = vp->v_mount->mnt_dev_bshift;
   1387        1.1     pooka 	} else {
   1388        1.1     pooka 		fs_bshift = DEV_BSHIFT;
   1389        1.1     pooka 		dev_bshift = DEV_BSHIFT;
   1390        1.1     pooka 	}
   1391        1.1     pooka 	error = 0;
   1392        1.1     pooka 	startoffset = off;
   1393        1.1     pooka 	bytes = MIN(len, eof - startoffset);
   1394        1.1     pooka 	skipbytes = 0;
   1395        1.1     pooka 	KASSERT(bytes != 0);
   1396        1.1     pooka 
   1397       1.35  uebayasi 	if (iowrite) {
   1398       1.49     rmind 		mutex_enter(vp->v_interlock);
   1399        1.1     pooka 		vp->v_numoutput += 2;
   1400       1.49     rmind 		mutex_exit(vp->v_interlock);
   1401        1.1     pooka 	}
   1402        1.2        ad 	mbp = getiobuf(vp, true);
   1403        1.1     pooka 	UVMHIST_LOG(ubchist, "vp %p mbp %p num now %d bytes 0x%x",
   1404        1.1     pooka 	    vp, mbp, vp->v_numoutput, bytes);
   1405        1.1     pooka 	mbp->b_bufsize = len;
   1406        1.1     pooka 	mbp->b_data = (void *)kva;
   1407        1.1     pooka 	mbp->b_resid = mbp->b_bcount = bytes;
   1408        1.2        ad 	mbp->b_cflags = BC_BUSY | BC_AGE;
   1409        1.2        ad 	if (async) {
   1410        1.2        ad 		mbp->b_flags = brw | B_ASYNC;
   1411        1.2        ad 		mbp->b_iodone = iodone;
   1412        1.2        ad 	} else {
   1413        1.2        ad 		mbp->b_flags = brw;
   1414        1.2        ad 		mbp->b_iodone = NULL;
   1415        1.2        ad 	}
   1416        1.1     pooka 	if (curlwp == uvm.pagedaemon_lwp)
   1417        1.1     pooka 		BIO_SETPRIO(mbp, BPRIO_TIMELIMITED);
   1418        1.1     pooka 	else if (async)
   1419        1.1     pooka 		BIO_SETPRIO(mbp, BPRIO_TIMENONCRITICAL);
   1420        1.1     pooka 	else
   1421        1.1     pooka 		BIO_SETPRIO(mbp, BPRIO_TIMECRITICAL);
   1422        1.1     pooka 
   1423        1.1     pooka 	bp = NULL;
   1424        1.1     pooka 	for (offset = startoffset;
   1425        1.1     pooka 	    bytes > 0;
   1426        1.1     pooka 	    offset += iobytes, bytes -= iobytes) {
   1427       1.36  uebayasi 		int run;
   1428       1.36  uebayasi 		daddr_t lbn, blkno;
   1429       1.36  uebayasi 		struct vnode *devvp;
   1430       1.36  uebayasi 
   1431       1.36  uebayasi 		/*
   1432       1.36  uebayasi 		 * bmap the file to find out the blkno to read from and
   1433       1.36  uebayasi 		 * how much we can read in one i/o.  if bmap returns an error,
   1434       1.36  uebayasi 		 * skip the rest of the top-level i/o.
   1435       1.36  uebayasi 		 */
   1436       1.36  uebayasi 
   1437        1.1     pooka 		lbn = offset >> fs_bshift;
   1438        1.1     pooka 		error = VOP_BMAP(vp, lbn, &devvp, &blkno, &run);
   1439        1.1     pooka 		if (error) {
   1440       1.36  uebayasi 			UVMHIST_LOG(ubchist, "VOP_BMAP lbn 0x%x -> %d\n",
   1441       1.36  uebayasi 			    lbn,error,0,0);
   1442        1.1     pooka 			skipbytes += bytes;
   1443        1.1     pooka 			bytes = 0;
   1444       1.36  uebayasi 			goto loopdone;
   1445        1.1     pooka 		}
   1446        1.1     pooka 
   1447       1.36  uebayasi 		/*
   1448       1.36  uebayasi 		 * see how many pages can be read with this i/o.
   1449       1.36  uebayasi 		 * reduce the i/o size if necessary to avoid
   1450       1.36  uebayasi 		 * overwriting pages with valid data.
   1451       1.36  uebayasi 		 */
   1452       1.36  uebayasi 
   1453        1.1     pooka 		iobytes = MIN((((off_t)lbn + 1 + run) << fs_bshift) - offset,
   1454        1.1     pooka 		    bytes);
   1455       1.36  uebayasi 
   1456       1.36  uebayasi 		/*
   1457       1.36  uebayasi 		 * if this block isn't allocated, zero it instead of
   1458       1.36  uebayasi 		 * reading it.  unless we are going to allocate blocks,
   1459       1.36  uebayasi 		 * mark the pages we zeroed PG_RDONLY.
   1460       1.36  uebayasi 		 */
   1461       1.36  uebayasi 
   1462        1.1     pooka 		if (blkno == (daddr_t)-1) {
   1463       1.35  uebayasi 			if (!iowrite) {
   1464        1.1     pooka 				memset((char *)kva + (offset - startoffset), 0,
   1465       1.36  uebayasi 				    iobytes);
   1466        1.1     pooka 			}
   1467        1.1     pooka 			skipbytes += iobytes;
   1468        1.1     pooka 			continue;
   1469        1.1     pooka 		}
   1470        1.1     pooka 
   1471       1.36  uebayasi 		/*
   1472       1.36  uebayasi 		 * allocate a sub-buf for this piece of the i/o
   1473       1.36  uebayasi 		 * (or just use mbp if there's only 1 piece),
   1474       1.36  uebayasi 		 * and start it going.
   1475       1.36  uebayasi 		 */
   1476       1.36  uebayasi 
   1477        1.1     pooka 		if (offset == startoffset && iobytes == bytes) {
   1478        1.1     pooka 			bp = mbp;
   1479        1.1     pooka 		} else {
   1480        1.1     pooka 			UVMHIST_LOG(ubchist, "vp %p bp %p num now %d",
   1481        1.1     pooka 			    vp, bp, vp->v_numoutput, 0);
   1482        1.2        ad 			bp = getiobuf(vp, true);
   1483        1.1     pooka 			nestiobuf_setup(mbp, bp, offset - startoffset, iobytes);
   1484        1.1     pooka 		}
   1485        1.1     pooka 		bp->b_lblkno = 0;
   1486        1.1     pooka 
   1487        1.1     pooka 		/* adjust physical blkno for partial blocks */
   1488        1.1     pooka 		bp->b_blkno = blkno + ((offset - ((off_t)lbn << fs_bshift)) >>
   1489        1.1     pooka 		    dev_bshift);
   1490       1.36  uebayasi 
   1491        1.1     pooka 		UVMHIST_LOG(ubchist,
   1492       1.36  uebayasi 		    "bp %p offset 0x%x bcount 0x%x blkno 0x%x",
   1493       1.36  uebayasi 		    bp, offset, bp->b_bcount, bp->b_blkno);
   1494        1.1     pooka 
   1495        1.1     pooka 		VOP_STRATEGY(devvp, bp);
   1496        1.1     pooka 	}
   1497       1.36  uebayasi 
   1498       1.36  uebayasi loopdone:
   1499        1.1     pooka 	if (skipbytes) {
   1500        1.1     pooka 		UVMHIST_LOG(ubchist, "skipbytes %d", skipbytes, 0,0,0);
   1501        1.1     pooka 	}
   1502        1.1     pooka 	nestiobuf_done(mbp, skipbytes, error);
   1503        1.1     pooka 	if (async) {
   1504        1.1     pooka 		UVMHIST_LOG(ubchist, "returning 0 (async)", 0,0,0,0);
   1505        1.1     pooka 		return (0);
   1506        1.1     pooka 	}
   1507        1.1     pooka 	UVMHIST_LOG(ubchist, "waiting for mbp %p", mbp,0,0,0);
   1508        1.1     pooka 	error = biowait(mbp);
   1509        1.1     pooka 	s = splbio();
   1510        1.1     pooka 	(*iodone)(mbp);
   1511        1.1     pooka 	splx(s);
   1512        1.1     pooka 	UVMHIST_LOG(ubchist, "returning, error %d", error,0,0,0);
   1513        1.1     pooka 	return (error);
   1514        1.1     pooka }
   1515        1.1     pooka 
   1516        1.1     pooka int
   1517        1.1     pooka genfs_compat_getpages(void *v)
   1518        1.1     pooka {
   1519        1.1     pooka 	struct vop_getpages_args /* {
   1520        1.1     pooka 		struct vnode *a_vp;
   1521        1.1     pooka 		voff_t a_offset;
   1522        1.1     pooka 		struct vm_page **a_m;
   1523        1.1     pooka 		int *a_count;
   1524        1.1     pooka 		int a_centeridx;
   1525        1.1     pooka 		vm_prot_t a_access_type;
   1526        1.1     pooka 		int a_advice;
   1527        1.1     pooka 		int a_flags;
   1528        1.1     pooka 	} */ *ap = v;
   1529        1.1     pooka 
   1530        1.1     pooka 	off_t origoffset;
   1531        1.1     pooka 	struct vnode *vp = ap->a_vp;
   1532        1.1     pooka 	struct uvm_object *uobj = &vp->v_uobj;
   1533        1.1     pooka 	struct vm_page *pg, **pgs;
   1534        1.1     pooka 	vaddr_t kva;
   1535        1.1     pooka 	int i, error, orignpages, npages;
   1536        1.1     pooka 	struct iovec iov;
   1537        1.1     pooka 	struct uio uio;
   1538        1.1     pooka 	kauth_cred_t cred = curlwp->l_cred;
   1539       1.35  uebayasi 	const bool memwrite = (ap->a_access_type & VM_PROT_WRITE) != 0;
   1540        1.1     pooka 
   1541        1.1     pooka 	error = 0;
   1542        1.1     pooka 	origoffset = ap->a_offset;
   1543        1.1     pooka 	orignpages = *ap->a_count;
   1544        1.1     pooka 	pgs = ap->a_m;
   1545        1.1     pooka 
   1546        1.1     pooka 	if (ap->a_flags & PGO_LOCKED) {
   1547   1.53.2.6      yamt 		uvn_findpages(uobj, origoffset, ap->a_count, ap->a_m, NULL,
   1548       1.35  uebayasi 		    UFP_NOWAIT|UFP_NOALLOC| (memwrite ? UFP_NORDONLY : 0));
   1549        1.1     pooka 
   1550       1.38       chs 		error = ap->a_m[ap->a_centeridx] == NULL ? EBUSY : 0;
   1551       1.38       chs 		if (error == 0 && memwrite) {
   1552       1.38       chs 			genfs_markdirty(vp);
   1553       1.38       chs 		}
   1554       1.38       chs 		return error;
   1555        1.1     pooka 	}
   1556        1.1     pooka 	if (origoffset + (ap->a_centeridx << PAGE_SHIFT) >= vp->v_size) {
   1557       1.49     rmind 		mutex_exit(uobj->vmobjlock);
   1558       1.38       chs 		return EINVAL;
   1559        1.1     pooka 	}
   1560        1.1     pooka 	if ((ap->a_flags & PGO_SYNCIO) == 0) {
   1561       1.49     rmind 		mutex_exit(uobj->vmobjlock);
   1562        1.1     pooka 		return 0;
   1563        1.1     pooka 	}
   1564        1.1     pooka 	npages = orignpages;
   1565   1.53.2.6      yamt 	uvn_findpages(uobj, origoffset, &npages, pgs, NULL, UFP_ALL);
   1566       1.49     rmind 	mutex_exit(uobj->vmobjlock);
   1567        1.1     pooka 	kva = uvm_pagermapin(pgs, npages,
   1568        1.1     pooka 	    UVMPAGER_MAPIN_READ | UVMPAGER_MAPIN_WAITOK);
   1569        1.1     pooka 	for (i = 0; i < npages; i++) {
   1570        1.1     pooka 		pg = pgs[i];
   1571        1.1     pooka 		if ((pg->flags & PG_FAKE) == 0) {
   1572        1.1     pooka 			continue;
   1573        1.1     pooka 		}
   1574        1.1     pooka 		iov.iov_base = (char *)kva + (i << PAGE_SHIFT);
   1575        1.1     pooka 		iov.iov_len = PAGE_SIZE;
   1576        1.1     pooka 		uio.uio_iov = &iov;
   1577        1.1     pooka 		uio.uio_iovcnt = 1;
   1578        1.1     pooka 		uio.uio_offset = origoffset + (i << PAGE_SHIFT);
   1579        1.1     pooka 		uio.uio_rw = UIO_READ;
   1580        1.1     pooka 		uio.uio_resid = PAGE_SIZE;
   1581        1.1     pooka 		UIO_SETUP_SYSSPACE(&uio);
   1582        1.1     pooka 		/* XXX vn_lock */
   1583        1.1     pooka 		error = VOP_READ(vp, &uio, 0, cred);
   1584        1.1     pooka 		if (error) {
   1585        1.1     pooka 			break;
   1586        1.1     pooka 		}
   1587        1.1     pooka 		if (uio.uio_resid) {
   1588        1.1     pooka 			memset(iov.iov_base, 0, uio.uio_resid);
   1589        1.1     pooka 		}
   1590        1.1     pooka 	}
   1591        1.1     pooka 	uvm_pagermapout(kva, npages);
   1592       1.49     rmind 	mutex_enter(uobj->vmobjlock);
   1593        1.2        ad 	mutex_enter(&uvm_pageqlock);
   1594        1.1     pooka 	for (i = 0; i < npages; i++) {
   1595        1.1     pooka 		pg = pgs[i];
   1596        1.1     pooka 		if (error && (pg->flags & PG_FAKE) != 0) {
   1597        1.1     pooka 			pg->flags |= PG_RELEASED;
   1598        1.1     pooka 		} else {
   1599   1.53.2.1      yamt 			uvm_pagemarkdirty(pg, UVM_PAGE_STATUS_UNKNOWN);
   1600        1.1     pooka 			uvm_pageactivate(pg);
   1601        1.1     pooka 		}
   1602        1.1     pooka 	}
   1603        1.1     pooka 	if (error) {
   1604        1.1     pooka 		uvm_page_unbusy(pgs, npages);
   1605        1.1     pooka 	}
   1606        1.2        ad 	mutex_exit(&uvm_pageqlock);
   1607       1.38       chs 	if (error == 0 && memwrite) {
   1608       1.38       chs 		genfs_markdirty(vp);
   1609       1.38       chs 	}
   1610       1.49     rmind 	mutex_exit(uobj->vmobjlock);
   1611       1.38       chs 	return error;
   1612        1.1     pooka }
   1613        1.1     pooka 
   1614        1.1     pooka int
   1615        1.1     pooka genfs_compat_gop_write(struct vnode *vp, struct vm_page **pgs, int npages,
   1616        1.1     pooka     int flags)
   1617        1.1     pooka {
   1618        1.1     pooka 	off_t offset;
   1619        1.1     pooka 	struct iovec iov;
   1620        1.1     pooka 	struct uio uio;
   1621        1.1     pooka 	kauth_cred_t cred = curlwp->l_cred;
   1622        1.1     pooka 	struct buf *bp;
   1623        1.1     pooka 	vaddr_t kva;
   1624        1.2        ad 	int error;
   1625        1.1     pooka 
   1626        1.1     pooka 	offset = pgs[0]->offset;
   1627        1.1     pooka 	kva = uvm_pagermapin(pgs, npages,
   1628        1.1     pooka 	    UVMPAGER_MAPIN_WRITE | UVMPAGER_MAPIN_WAITOK);
   1629        1.1     pooka 
   1630        1.1     pooka 	iov.iov_base = (void *)kva;
   1631        1.1     pooka 	iov.iov_len = npages << PAGE_SHIFT;
   1632        1.1     pooka 	uio.uio_iov = &iov;
   1633        1.1     pooka 	uio.uio_iovcnt = 1;
   1634        1.1     pooka 	uio.uio_offset = offset;
   1635        1.1     pooka 	uio.uio_rw = UIO_WRITE;
   1636        1.1     pooka 	uio.uio_resid = npages << PAGE_SHIFT;
   1637        1.1     pooka 	UIO_SETUP_SYSSPACE(&uio);
   1638        1.1     pooka 	/* XXX vn_lock */
   1639        1.1     pooka 	error = VOP_WRITE(vp, &uio, 0, cred);
   1640        1.1     pooka 
   1641       1.49     rmind 	mutex_enter(vp->v_interlock);
   1642        1.2        ad 	vp->v_numoutput++;
   1643       1.49     rmind 	mutex_exit(vp->v_interlock);
   1644        1.1     pooka 
   1645        1.2        ad 	bp = getiobuf(vp, true);
   1646        1.2        ad 	bp->b_cflags = BC_BUSY | BC_AGE;
   1647        1.1     pooka 	bp->b_lblkno = offset >> vp->v_mount->mnt_fs_bshift;
   1648        1.1     pooka 	bp->b_data = (char *)kva;
   1649        1.1     pooka 	bp->b_bcount = npages << PAGE_SHIFT;
   1650        1.1     pooka 	bp->b_bufsize = npages << PAGE_SHIFT;
   1651        1.1     pooka 	bp->b_resid = 0;
   1652        1.1     pooka 	bp->b_error = error;
   1653        1.1     pooka 	uvm_aio_aiodone(bp);
   1654        1.1     pooka 	return (error);
   1655        1.1     pooka }
   1656        1.1     pooka 
   1657        1.1     pooka /*
   1658        1.1     pooka  * Process a uio using direct I/O.  If we reach a part of the request
   1659        1.1     pooka  * which cannot be processed in this fashion for some reason, just return.
   1660        1.1     pooka  * The caller must handle some additional part of the request using
   1661        1.1     pooka  * buffered I/O before trying direct I/O again.
   1662        1.1     pooka  */
   1663        1.1     pooka 
   1664        1.1     pooka void
   1665        1.1     pooka genfs_directio(struct vnode *vp, struct uio *uio, int ioflag)
   1666        1.1     pooka {
   1667        1.1     pooka 	struct vmspace *vs;
   1668        1.1     pooka 	struct iovec *iov;
   1669        1.1     pooka 	vaddr_t va;
   1670        1.1     pooka 	size_t len;
   1671        1.1     pooka 	const int mask = DEV_BSIZE - 1;
   1672        1.1     pooka 	int error;
   1673       1.16     joerg 	bool need_wapbl = (vp->v_mount && vp->v_mount->mnt_wapbl &&
   1674       1.16     joerg 	    (ioflag & IO_JOURNALLOCKED) == 0);
   1675        1.1     pooka 
   1676        1.1     pooka 	/*
   1677        1.1     pooka 	 * We only support direct I/O to user space for now.
   1678        1.1     pooka 	 */
   1679        1.1     pooka 
   1680        1.1     pooka 	if (VMSPACE_IS_KERNEL_P(uio->uio_vmspace)) {
   1681        1.1     pooka 		return;
   1682        1.1     pooka 	}
   1683        1.1     pooka 
   1684        1.1     pooka 	/*
   1685        1.1     pooka 	 * If the vnode is mapped, we would need to get the getpages lock
   1686       1.53      yamt 	 * to stabilize the bmap, but then we would get into trouble while
   1687        1.1     pooka 	 * locking the pages if the pages belong to this same vnode (or a
   1688        1.1     pooka 	 * multi-vnode cascade to the same effect).  Just fall back to
   1689        1.1     pooka 	 * buffered I/O if the vnode is mapped to avoid this mess.
   1690        1.1     pooka 	 */
   1691        1.1     pooka 
   1692        1.1     pooka 	if (vp->v_vflag & VV_MAPPED) {
   1693        1.1     pooka 		return;
   1694        1.1     pooka 	}
   1695        1.1     pooka 
   1696       1.16     joerg 	if (need_wapbl) {
   1697       1.13   hannken 		error = WAPBL_BEGIN(vp->v_mount);
   1698       1.13   hannken 		if (error)
   1699       1.13   hannken 			return;
   1700       1.13   hannken 	}
   1701       1.13   hannken 
   1702        1.1     pooka 	/*
   1703        1.1     pooka 	 * Do as much of the uio as possible with direct I/O.
   1704        1.1     pooka 	 */
   1705        1.1     pooka 
   1706        1.1     pooka 	vs = uio->uio_vmspace;
   1707        1.1     pooka 	while (uio->uio_resid) {
   1708        1.1     pooka 		iov = uio->uio_iov;
   1709        1.1     pooka 		if (iov->iov_len == 0) {
   1710        1.1     pooka 			uio->uio_iov++;
   1711        1.1     pooka 			uio->uio_iovcnt--;
   1712        1.1     pooka 			continue;
   1713        1.1     pooka 		}
   1714        1.1     pooka 		va = (vaddr_t)iov->iov_base;
   1715        1.1     pooka 		len = MIN(iov->iov_len, genfs_maxdio);
   1716        1.1     pooka 		len &= ~mask;
   1717        1.1     pooka 
   1718        1.1     pooka 		/*
   1719        1.1     pooka 		 * If the next chunk is smaller than DEV_BSIZE or extends past
   1720        1.1     pooka 		 * the current EOF, then fall back to buffered I/O.
   1721        1.1     pooka 		 */
   1722        1.1     pooka 
   1723        1.1     pooka 		if (len == 0 || uio->uio_offset + len > vp->v_size) {
   1724       1.13   hannken 			break;
   1725        1.1     pooka 		}
   1726        1.1     pooka 
   1727        1.1     pooka 		/*
   1728        1.1     pooka 		 * Check alignment.  The file offset must be at least
   1729        1.1     pooka 		 * sector-aligned.  The exact constraint on memory alignment
   1730        1.1     pooka 		 * is very hardware-dependent, but requiring sector-aligned
   1731        1.1     pooka 		 * addresses there too is safe.
   1732        1.1     pooka 		 */
   1733        1.1     pooka 
   1734        1.1     pooka 		if (uio->uio_offset & mask || va & mask) {
   1735       1.13   hannken 			break;
   1736        1.1     pooka 		}
   1737        1.1     pooka 		error = genfs_do_directio(vs, va, len, vp, uio->uio_offset,
   1738        1.1     pooka 					  uio->uio_rw);
   1739        1.1     pooka 		if (error) {
   1740        1.1     pooka 			break;
   1741        1.1     pooka 		}
   1742        1.1     pooka 		iov->iov_base = (char *)iov->iov_base + len;
   1743        1.1     pooka 		iov->iov_len -= len;
   1744        1.1     pooka 		uio->uio_offset += len;
   1745        1.1     pooka 		uio->uio_resid -= len;
   1746        1.1     pooka 	}
   1747       1.13   hannken 
   1748       1.16     joerg 	if (need_wapbl)
   1749       1.13   hannken 		WAPBL_END(vp->v_mount);
   1750        1.1     pooka }
   1751        1.1     pooka 
   1752        1.1     pooka /*
   1753        1.1     pooka  * Iodone routine for direct I/O.  We don't do much here since the request is
   1754        1.1     pooka  * always synchronous, so the caller will do most of the work after biowait().
   1755        1.1     pooka  */
   1756        1.1     pooka 
   1757        1.1     pooka static void
   1758        1.1     pooka genfs_dio_iodone(struct buf *bp)
   1759        1.1     pooka {
   1760        1.1     pooka 
   1761        1.1     pooka 	KASSERT((bp->b_flags & B_ASYNC) == 0);
   1762        1.2        ad 	if ((bp->b_flags & B_READ) == 0 && (bp->b_cflags & BC_AGE) != 0) {
   1763        1.2        ad 		mutex_enter(bp->b_objlock);
   1764        1.1     pooka 		vwakeup(bp);
   1765        1.2        ad 		mutex_exit(bp->b_objlock);
   1766        1.1     pooka 	}
   1767        1.1     pooka 	putiobuf(bp);
   1768        1.1     pooka }
   1769        1.1     pooka 
   1770        1.1     pooka /*
   1771        1.1     pooka  * Process one chunk of a direct I/O request.
   1772        1.1     pooka  */
   1773        1.1     pooka 
   1774        1.1     pooka static int
   1775        1.1     pooka genfs_do_directio(struct vmspace *vs, vaddr_t uva, size_t len, struct vnode *vp,
   1776        1.1     pooka     off_t off, enum uio_rw rw)
   1777        1.1     pooka {
   1778        1.1     pooka 	struct vm_map *map;
   1779        1.1     pooka 	struct pmap *upm, *kpm;
   1780        1.1     pooka 	size_t klen = round_page(uva + len) - trunc_page(uva);
   1781        1.1     pooka 	off_t spoff, epoff;
   1782        1.1     pooka 	vaddr_t kva, puva;
   1783        1.1     pooka 	paddr_t pa;
   1784        1.1     pooka 	vm_prot_t prot;
   1785        1.1     pooka 	int error, rv, poff, koff;
   1786       1.13   hannken 	const int pgoflags = PGO_CLEANIT | PGO_SYNCIO | PGO_JOURNALLOCKED |
   1787        1.1     pooka 		(rw == UIO_WRITE ? PGO_FREE : 0);
   1788        1.1     pooka 
   1789        1.1     pooka 	/*
   1790        1.1     pooka 	 * For writes, verify that this range of the file already has fully
   1791        1.1     pooka 	 * allocated backing store.  If there are any holes, just punt and
   1792        1.1     pooka 	 * make the caller take the buffered write path.
   1793        1.1     pooka 	 */
   1794        1.1     pooka 
   1795        1.1     pooka 	if (rw == UIO_WRITE) {
   1796        1.1     pooka 		daddr_t lbn, elbn, blkno;
   1797        1.1     pooka 		int bsize, bshift, run;
   1798        1.1     pooka 
   1799        1.1     pooka 		bshift = vp->v_mount->mnt_fs_bshift;
   1800        1.1     pooka 		bsize = 1 << bshift;
   1801        1.1     pooka 		lbn = off >> bshift;
   1802        1.1     pooka 		elbn = (off + len + bsize - 1) >> bshift;
   1803        1.1     pooka 		while (lbn < elbn) {
   1804        1.1     pooka 			error = VOP_BMAP(vp, lbn, NULL, &blkno, &run);
   1805        1.1     pooka 			if (error) {
   1806        1.1     pooka 				return error;
   1807        1.1     pooka 			}
   1808        1.1     pooka 			if (blkno == (daddr_t)-1) {
   1809        1.1     pooka 				return ENOSPC;
   1810        1.1     pooka 			}
   1811        1.1     pooka 			lbn += 1 + run;
   1812        1.1     pooka 		}
   1813        1.1     pooka 	}
   1814        1.1     pooka 
   1815        1.1     pooka 	/*
   1816        1.1     pooka 	 * Flush any cached pages for parts of the file that we're about to
   1817        1.1     pooka 	 * access.  If we're writing, invalidate pages as well.
   1818        1.1     pooka 	 */
   1819        1.1     pooka 
   1820        1.1     pooka 	spoff = trunc_page(off);
   1821        1.1     pooka 	epoff = round_page(off + len);
   1822       1.49     rmind 	mutex_enter(vp->v_interlock);
   1823        1.1     pooka 	error = VOP_PUTPAGES(vp, spoff, epoff, pgoflags);
   1824        1.1     pooka 	if (error) {
   1825        1.1     pooka 		return error;
   1826        1.1     pooka 	}
   1827        1.1     pooka 
   1828        1.1     pooka 	/*
   1829        1.1     pooka 	 * Wire the user pages and remap them into kernel memory.
   1830        1.1     pooka 	 */
   1831        1.1     pooka 
   1832        1.1     pooka 	prot = rw == UIO_READ ? VM_PROT_READ | VM_PROT_WRITE : VM_PROT_READ;
   1833        1.1     pooka 	error = uvm_vslock(vs, (void *)uva, len, prot);
   1834        1.1     pooka 	if (error) {
   1835        1.1     pooka 		return error;
   1836        1.1     pooka 	}
   1837        1.1     pooka 
   1838        1.1     pooka 	map = &vs->vm_map;
   1839        1.1     pooka 	upm = vm_map_pmap(map);
   1840        1.1     pooka 	kpm = vm_map_pmap(kernel_map);
   1841        1.1     pooka 	puva = trunc_page(uva);
   1842       1.51      matt 	kva = uvm_km_alloc(kernel_map, klen, atop(puva) & uvmexp.colormask,
   1843       1.51      matt 	    UVM_KMF_VAONLY | UVM_KMF_WAITVA | UVM_KMF_COLORMATCH);
   1844        1.1     pooka 	for (poff = 0; poff < klen; poff += PAGE_SIZE) {
   1845        1.1     pooka 		rv = pmap_extract(upm, puva + poff, &pa);
   1846        1.1     pooka 		KASSERT(rv);
   1847       1.51      matt 		pmap_kenter_pa(kva + poff, pa, prot, PMAP_WIRED);
   1848        1.1     pooka 	}
   1849        1.1     pooka 	pmap_update(kpm);
   1850        1.1     pooka 
   1851        1.1     pooka 	/*
   1852        1.1     pooka 	 * Do the I/O.
   1853        1.1     pooka 	 */
   1854        1.1     pooka 
   1855        1.1     pooka 	koff = uva - trunc_page(uva);
   1856        1.1     pooka 	error = genfs_do_io(vp, off, kva + koff, len, PGO_SYNCIO, rw,
   1857        1.1     pooka 			    genfs_dio_iodone);
   1858        1.1     pooka 
   1859        1.1     pooka 	/*
   1860        1.1     pooka 	 * Tear down the kernel mapping.
   1861        1.1     pooka 	 */
   1862        1.1     pooka 
   1863       1.51      matt 	pmap_kremove(kva, klen);
   1864        1.1     pooka 	pmap_update(kpm);
   1865        1.1     pooka 	uvm_km_free(kernel_map, kva, klen, UVM_KMF_VAONLY);
   1866        1.1     pooka 
   1867        1.1     pooka 	/*
   1868        1.1     pooka 	 * Unwire the user pages.
   1869        1.1     pooka 	 */
   1870        1.1     pooka 
   1871        1.1     pooka 	uvm_vsunlock(vs, (void *)uva, len);
   1872        1.1     pooka 	return error;
   1873        1.1     pooka }
   1874