#include <afsconfig.h>
#include "afs/param.h"
-RCSID
- ("$Header$");
-#if defined(AFS_SUN_ENV) || defined(AFS_SUN5_ENV)
/*
* SOLARIS/osi_vnodeops.c
*
#include <vm/seg_map.h>
#include <vm/seg_vn.h>
#include <vm/rm.h>
-#if defined(AFS_SUN5_ENV)
+#if defined(AFS_SUN511_ENV)
+#include <sys/vfs_opreg.h>
+#endif
#include <sys/modctl.h>
#include <sys/syscall.h>
-#else
-#include <vm/swap.h>
-#endif
#include <sys/debug.h>
-#if defined(AFS_SUN5_ENV)
#include <sys/fs_subr.h>
-#endif
-
-#if defined(AFS_SUN5_ENV)
-/*
- * XXX Temporary fix for problems with Solaris rw_tryupgrade() lock.
- * It isn't very persistent in getting the upgrade when others are
- * waiting for it and returns 0. So the UpgradeSToW() macro that the
- * rw_tryupgrade used to map to wasn't good enough and we need to use
- * the following code instead. Obviously this isn't the proper place
- * for it but it's only called from here for now
- *
- */
-#ifndef AFS_SUN54_ENV
-AFS_TRYUP(lock)
- afs_rwlock_t *lock;
-{
- if (!rw_tryupgrade(lock)) {
- rw_exit(lock);
- rw_enter(lock, RW_WRITER);
- }
-}
-#endif
-#endif
-
/* Translate a faultcode_t as returned by some of the vm routines
* into a suitable errno value.
int afs_pvn_vptrunc;
-#ifdef AFS_SUN5_ENV
-
int
-afs_addmap(avp, offset, asp, addr, length, prot, maxprot, flags, credp)
- register struct vnode *avp;
- offset_t offset;
- struct as *asp;
- caddr_t addr;
- int length, prot, maxprot, flags;
- struct AFS_UCRED *credp;
+afs_addmap(struct vnode *avp, offset_t offset, struct as *asp,
+ caddr_t addr, int length, int prot, int maxprot, int flags,
+ afs_ucred_t *credp)
{
/* XXX What should we do here?? XXX */
return (0);
}
int
-afs_delmap(avp, offset, asp, addr, length, prot, maxprot, flags, credp)
- register struct vnode *avp;
- offset_t offset;
- struct as *asp;
- caddr_t addr;
- int length, prot, maxprot, flags;
- struct AFS_UCRED *credp;
+afs_delmap(struct vnode *avp, offset_t offset, struct as *asp,
+ caddr_t addr, int length, int prot, int maxprot, int flags,
+ afs_ucred_t *credp)
{
/* XXX What should we do here?? XXX */
return (0);
#ifdef AFS_SUN510_ENV
int
-afs_vmread(avp, auio, ioflag, acred, ct)
- register struct vnode *avp;
- struct uio *auio;
- int ioflag;
- struct AFS_UCRED *acred;
- caller_context_t *ct;
+afs_vmread(struct vnode *avp, struct uio *auio, int ioflag,
+ afs_ucred_t *acred, caller_context_t *ct)
#else
int
-afs_vmread(avp, auio, ioflag, acred)
- register struct vnode *avp;
- struct uio *auio;
- int ioflag;
- struct AFS_UCRED *acred;
+afs_vmread(struct vnode *avp, struct uio *auio, int ioflag,
+ afs_ucred_t *acred)
#endif
{
- register int code;
+ int code;
if (!RW_READ_HELD(&(VTOAFS(avp))->rwlock))
osi_Panic("afs_vmread: !rwlock");
#ifdef AFS_SUN510_ENV
int
-afs_vmwrite(avp, auio, ioflag, acred, ct)
- register struct vnode *avp;
- struct uio *auio;
- int ioflag;
- struct AFS_UCRED *acred;
- caller_context_t *ct;
+afs_vmwrite(struct vnode *avp, struct uio *auio, int ioflag,
+ afs_ucred_t *acred, caller_context_t *ct)
#else
int
-afs_vmwrite(avp, auio, ioflag, acred)
- register struct vnode *avp;
- struct uio *auio;
- int ioflag;
- struct AFS_UCRED *acred;
+afs_vmwrite(struct vnode *avp, struct uio *auio, int ioflag,
+ afs_ucred_t *acred)
#endif
{
- register int code;
+ int code;
if (!RW_WRITE_HELD(&(VTOAFS(avp))->rwlock))
osi_Panic("afs_vmwrite: !rwlock");
return code;
}
-#endif /* AFS_SUN5_ENV */
-
int
-afs_getpage(vp, off, len, protp, pl, plsz, seg, addr, rw, acred)
- struct vnode *vp;
- u_int len;
- u_int *protp;
- struct page *pl[];
- u_int plsz;
- struct seg *seg;
-#ifdef AFS_SUN5_ENV
- offset_t off;
- caddr_t addr;
-#else
- u_int off;
- addr_t addr;
-#endif
- enum seg_rw rw;
- struct AFS_UCRED *acred;
+afs_getpage(struct vnode *vp, offset_t off, u_int len, u_int *protp,
+ struct page *pl[], u_int plsz, struct seg *seg, caddr_t addr,
+ enum seg_rw rw, afs_ucred_t *acred)
{
- register afs_int32 code = 0;
+ afs_int32 code = 0;
AFS_STATCNT(afs_getpage);
-#ifdef AFS_SUN5_ENV
if (vp->v_flag & VNOMAP) /* File doesn't allow mapping */
return (ENOSYS);
-#endif
AFS_GLOCK();
-#if defined(AFS_SUN56_ENV)
if (len <= PAGESIZE)
code =
- afs_GetOnePage(vp, off, len, protp, pl, plsz, seg, addr, rw,
- acred);
-#else
-#ifdef AFS_SUN5_ENV
- if (len <= PAGESIZE)
- code =
- afs_GetOnePage(vp, (u_int) off, len, protp, pl, plsz, seg, addr,
- rw, acred);
-#else
- if (len == PAGESIZE)
- code = afs_GetOnePage(vp, off, protp, pl, plsz, seg, addr, rw, acred);
-#endif
-#endif
+ afs_GetOnePage(vp, off, len, protp, pl, plsz, seg, addr, rw, acred);
else {
+ struct multiPage_range range;
struct vcache *vcp = VTOAFS(vp);
-#ifdef AFS_SUN5_ENV
+
+ /* We've been asked to get more than one page. We must return all
+ * requested pages at once, all of them locked, which means all of
+ * these dcache entries cannot be kicked out of the cache before we
+ * return (since their pages cannot be invalidated).
+ *
+ * afs_GetOnePage will be called multiple times by pvn_getpages in
+ * order to get all of the requested pages. One of the later
+ * afs_GetOnePage calls may need to evict some cache entries in order
+ * to perform its read. If we try to kick out one of the entries an
+ * earlier afs_GetOnePage call used, we will deadlock since we have
+ * the page locked. So, to tell afs_GetDownD that it should skip over
+ * any entries we've read in due to this afs_getpage call, record the
+ * offset and length in avc->multiPage.
+ *
+ * Ideally we would just set something in each dcache as we get it,
+ * but that is rather difficult, since pvn_getpages doesn't let us
+ * retain any information between calls to afs_GetOnePage. So instead
+ * just record the offset and length, and let afs_GetDownD calculate
+ * which dcache entries should be skipped. */
+
+ range.off = off;
+ range.len = len;
+
ObtainWriteLock(&vcp->vlock, 548);
- vcp->multiPage++;
+ QAdd(&vcp->multiPage, &range.q);
ReleaseWriteLock(&vcp->vlock);
-#endif
- afs_BozonLock(&vcp->pvnLock, vcp);
-#if defined(AFS_SUN56_ENV)
- code =
- pvn_getpages(afs_GetOnePage, vp, off, len, protp, pl, plsz, seg,
- addr, rw, acred);
-#else
code =
- pvn_getpages(afs_GetOnePage, vp, (u_int) off, len, protp, pl,
- plsz, seg, addr, rw, acred);
-#endif
- afs_BozonUnlock(&vcp->pvnLock, vcp);
-#ifdef AFS_SUN5_ENV
+ pvn_getpages(afs_GetOnePage, vp, off, len, protp, pl, plsz, seg, addr, rw, acred);
ObtainWriteLock(&vcp->vlock, 549);
- vcp->multiPage--;
+ QRemove(&range.q);
ReleaseWriteLock(&vcp->vlock);
-#endif
}
AFS_GUNLOCK();
return code;
}
/* Return all the pages from [off..off+len) in file */
-#ifdef AFS_SUN5_ENV
int
-afs_GetOnePage(vp, off, alen, protp, pl, plsz, seg, addr, rw, acred)
- u_int alen;
-#else
-int
-afs_GetOnePage(vp, off, protp, pl, plsz, seg, addr, rw, acred)
-#endif
- struct vnode *vp;
-#if defined(AFS_SUN56_ENV)
- u_offset_t off;
-#else
- u_int off;
-#endif
- u_int *protp;
- struct page *pl[];
- u_int plsz;
- struct seg *seg;
-#ifdef AFS_SUN5_ENV
- caddr_t addr;
-#else
- addr_t addr;
-#endif
- enum seg_rw rw;
- struct AFS_UCRED *acred;
+afs_GetOnePage(struct vnode *vp, u_offset_t off, u_int alen, u_int *protp,
+ struct page *pl[], u_int plsz, struct seg *seg, caddr_t addr,
+ enum seg_rw rw, afs_ucred_t *acred)
{
- register struct page *page;
- register afs_int32 code = 0;
+ struct page *page;
+ afs_int32 code = 0;
u_int len;
struct buf *buf;
afs_int32 tlen;
- register struct vcache *avc;
- register struct dcache *tdc;
+ struct vcache *avc;
+ struct dcache *tdc;
int i, s, pexists;
int slot;
- afs_size_t offset, nlen;
+ afs_size_t offset, nlen = 0;
struct vrequest treq;
afs_int32 mapForRead = 0, Code = 0;
-#if defined(AFS_SUN56_ENV)
u_offset_t toffset;
-#else
- afs_int32 toffset;
-#endif
if (!acred)
-#ifdef AFS_SUN5_ENV
osi_Panic("GetOnePage: !acred");
-#else
- acred = u.u_cred; /* better than nothing */
-#endif
avc = VTOAFS(vp); /* cast to afs vnode */
-#ifdef AFS_SUN5_ENV
if (avc->credp /*&& AFS_NFSXLATORREQ(acred) */
&& AFS_NFSXLATORREQ(avc->credp)) {
acred = avc->credp;
}
-#endif
if (code = afs_InitReq(&treq, acred))
return code;
if (!pl) {
/* This is a read-ahead request, e.g. due to madvise. */
-#ifdef AFS_SUN5_ENV
int plen = alen;
-#else
- int plen = PAGESIZE;
-#endif
ObtainReadLock(&avc->lock);
while (plen > 0 && !afs_BBusy()) {
tdc->mflags |= DFFetchReq;
bp = afs_BQueue(BOP_FETCH, avc, B_DONTWAIT, 0, acred,
- (afs_size_t) off, (afs_size_t) 1, tdc);
+ (afs_size_t) off, (afs_size_t) 1, tdc,
+ (void *)0, (void *)0);
if (!bp) {
/* Unable to start background fetch; might as well stop */
tdc->mflags &= ~DFFetchReq;
if (protp)
*protp = PROT_ALL;
-#ifndef AFS_SUN5_ENV
- if (AFS_NFSXLATORREQ(acred)) {
- if (rw == S_READ) {
- if (!afs_AccessOK
- (avc, PRSFS_READ, &treq,
- CHECK_MODE_BITS | CMB_ALLOW_EXEC_AS_READ)) {
- return EACCES;
- }
- }
- }
-#endif
retry:
-#ifdef AFS_SUN5_ENV
if (rw == S_WRITE || rw == S_CREATE)
tdc = afs_GetDCache(avc, (afs_offs_t) off, &treq, &offset, &nlen, 5);
else
tdc = afs_GetDCache(avc, (afs_offs_t) off, &treq, &offset, &nlen, 1);
if (!tdc)
- return EINVAL;
-#endif
+ return afs_CheckCode(EINVAL, &treq, 62);
code = afs_VerifyVCache(avc, &treq);
if (code) {
-#ifdef AFS_SUN5_ENV
afs_PutDCache(tdc);
-#endif
return afs_CheckCode(code, &treq, 44); /* failed to get it */
}
- afs_BozonLock(&avc->pvnLock, avc);
ObtainReadLock(&avc->lock);
afs_Trace4(afs_iclSetp, CM_TRACE_PAGEIN, ICL_TYPE_POINTER, (afs_int32) vp,
tlen = len;
slot = 0;
toffset = off;
-#ifdef AFS_SUN5_ENV
/* Check to see if we're in the middle of a VM purge, and if we are, release
* the locks and try again when the VM purge is done. */
ObtainWriteLock(&avc->vlock, 550);
if (avc->activeV) {
ReleaseReadLock(&avc->lock);
ReleaseWriteLock(&avc->vlock);
- afs_BozonUnlock(&avc->pvnLock, avc);
afs_PutDCache(tdc);
/* Check activeV again, it may have been turned off
* while we were waiting for a lock in afs_PutDCache */
goto retry;
}
ReleaseWriteLock(&avc->vlock);
-#endif
/* We're about to do stuff with our dcache entry.. Lock it. */
ObtainReadLock(&tdc->lock);
/* Check to see whether the cache entry is still valid */
- if (!(avc->states & CStatd)
- || !hsame(avc->m.DataVersion, tdc->f.versionNo)) {
+ if (!(avc->f.states & CStatd)
+ || !hsame(avc->f.m.DataVersion, tdc->f.versionNo)) {
ReleaseReadLock(&tdc->lock);
ReleaseReadLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
afs_PutDCache(tdc);
goto retry;
}
/* if we make it here, we can't find the page in memory. Do a real disk read
* from the cache to get the data */
Code |= 0x200; /* XXX */
-#ifdef AFS_SUN5_ENV
-#if defined(AFS_SUN54_ENV)
/* use PG_EXCL because we know the page does not exist already. If it
* actually does exist, we have somehow raced between lookup and create.
* As of 4/98, that shouldn't be possible, but we'll be defensive here
* in case someone tries to relax all the serialization of read and write
* operations with harmless things like stat. */
-#if defined(AFS_SUN58_ENV)
page =
page_create_va(vp, toffset, PAGESIZE, PG_WAIT | PG_EXCL, seg,
addr);
-#else
- page =
- page_create_va(vp, toffset, PAGESIZE, PG_WAIT | PG_EXCL,
- seg->s_as, addr);
-#endif
-#else
- page = page_create(vp, toffset, PAGESIZE, PG_WAIT);
-#endif
if (!page) {
continue;
}
if (alen < PAGESIZE)
pagezero(page, alen, PAGESIZE - alen);
-#else
- page = rm_allocpage(seg, addr, PAGESIZE, 1); /* can't fail */
- if (!page)
- osi_Panic("afs_getpage alloc page");
- /* we get a circularly-linked list of pages back, but we expect only
- * one, since that's what we asked for */
- if (page->p_next != page)
- osi_Panic("afs_getpage list");
- /* page enter returns a locked page; we'll drop the lock as a side-effect
- * of the pvn_done done by afs_ustrategy. If we decide not to call
- * strategy, we must be sure to call pvn_fail, at least, to release the
- * page locks and otherwise reset the pages. The page, while locked, is
- * not held, for what it is worth */
- page->p_intrans = 1; /* set appropriate flags */
- page->p_pagein = 1;
- /* next call shouldn't fail, since we have pvnLock set */
- if (page_enter(page, vp, toffset))
- osi_Panic("afs_getpage enter race");
-#endif /* AFS_SUN5_ENV */
-
-#ifdef AFS_SUN5_ENV
+
if (rw == S_CREATE) {
/* XXX Don't read from AFS in write only cases XXX */
page_io_unlock(page);
} else
-#else
- if (0) {
- /* XXX Don't read from AFS in write only cases XXX */
- page->p_intrans = page->p_pagein = 0;
- page_unlock(page); /* XXX */
- } else
-#endif
{
-#ifndef AFS_SUN5_ENV
- PAGE_HOLD(page);
-#endif
/* now it is time to start I/O operation */
buf = pageio_setup(page, PAGESIZE, vp, B_READ); /* allocate a buf structure */
-#if defined(AFS_SUN5_ENV)
buf->b_edev = 0;
-#endif
buf->b_dev = 0;
- buf->b_blkno = btodb(toffset);
+ buf->b_lblkno = lbtodb(toffset);
bp_mapin(buf); /* map it in to our address space */
-#if defined(AFS_SUN5_ENV)
AFS_GLOCK();
/* afs_ustrategy will want to lock the dcache entry */
ReleaseReadLock(&tdc->lock);
code = afs_ustrategy(buf, acred); /* do the I/O */
ObtainReadLock(&tdc->lock);
AFS_GUNLOCK();
-#else
- ReleaseReadLock(&tdc->lock);
- ReleaseReadLock(&avc->lock);
- code = afs_ustrategy(buf); /* do the I/O */
- ObtainReadLock(&avc->lock);
- ObtainReadLock(&tdc->lock);
-#endif
-#ifdef AFS_SUN5_ENV
/* Before freeing unmap the buffer */
bp_mapout(buf);
pageio_done(buf);
-#endif
if (code) {
-#ifndef AFS_SUN5_ENV
- PAGE_RELE(page);
-#endif
goto bad;
}
-#ifdef AFS_SUN5_ENV
page_io_unlock(page);
-#endif
}
/* come here when we have another page (already held) to enter */
nextpage:
/* put page in array and continue */
-#ifdef AFS_SUN5_ENV
/* The p_selock must be downgraded to a shared lock after the page is read */
-#if defined(AFS_SUN56_ENV)
- if ((rw != S_CREATE) && !(PAGE_SHARED(page)))
-#else
- if ((rw != S_CREATE) && !(se_shared_assert(&page->p_selock)))
-#endif
- {
+ if ((rw != S_CREATE) && !(PAGE_SHARED(page))) {
page_downgrade(page);
}
-#endif
pl[slot++] = page;
-#ifdef AFS_SUN5_ENV
code = page_iolock_assert(page);
-#endif
code = 0;
toffset += PAGESIZE;
addr += PAGESIZE;
}
ReleaseReadLock(&avc->lock);
-#ifdef AFS_SUN5_ENV
ObtainWriteLock(&afs_xdcache, 246);
if (!mapForRead) {
/* track that we have dirty (or dirty-able) pages for this chunk. */
}
afs_indexFlags[tdc->index] |= IFAnyPages;
ReleaseWriteLock(&afs_xdcache);
-#endif
- afs_BozonUnlock(&avc->pvnLock, avc);
-#ifdef AFS_SUN5_ENV
afs_PutDCache(tdc);
-#endif
afs_Trace3(afs_iclSetp, CM_TRACE_PAGEINDONE, ICL_TYPE_LONG, code,
ICL_TYPE_LONG, (int)page, ICL_TYPE_LONG, Code);
return 0;
afs_Trace3(afs_iclSetp, CM_TRACE_PAGEINDONE, ICL_TYPE_LONG, code,
ICL_TYPE_LONG, (int)page, ICL_TYPE_LONG, Code);
/* release all pages, drop locks, return code */
-#ifdef AFS_SUN5_ENV
if (page)
pvn_read_done(page, B_ERROR);
-#else
- for (i = 0; i < slot; i++)
- PAGE_RELE(pl[i]);
-#endif
ReleaseReadLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
-#ifdef AFS_SUN5_ENV
ReleaseReadLock(&tdc->lock);
afs_PutDCache(tdc);
-#endif
return code;
}
-#ifdef AFS_SUN5_ENV
int
-afs_putpage(vp, off, len, flags, cred)
- struct vnode *vp;
- offset_t off;
- u_int len;
- int flags;
- struct AFS_UCRED *cred;
+afs_putpage(struct vnode *vp, offset_t off, u_int len, int flags,
+ afs_ucred_t *cred)
{
struct vcache *avc;
struct page *pages;
afs_int32 code = 0;
-#if defined(AFS_SUN58_ENV)
size_t tlen;
-#else
- afs_int32 tlen;
-#endif
afs_offs_t endPos;
afs_int32 NPages = 0;
-#if defined(AFS_SUN56_ENV)
u_offset_t toff = off;
-#else
- int toff = (int)off;
-#endif
int didWriteLock;
AFS_STATCNT(afs_putpage);
(afs_int32) vp, ICL_TYPE_OFFSET, ICL_HANDLE_OFFSET(off),
ICL_TYPE_INT32, (afs_int32) len, ICL_TYPE_LONG, (int)flags);
avc = VTOAFS(vp);
- afs_BozonLock(&avc->pvnLock, avc);
ObtainSharedLock(&avc->lock, 247);
didWriteLock = 0;
if (len) {
endPos = (afs_offs_t) off + len; /* position we're supposed to write up to */
while ((afs_offs_t) toff < endPos
- && (afs_offs_t) toff < avc->m.Length) {
+ && (afs_offs_t) toff < avc->f.m.Length) {
/* If not invalidating pages use page_lookup_nowait to avoid reclaiming
* them from the free list
*/
}
AFS_GUNLOCK();
-#if defined(AFS_SUN56_ENV)
code = pvn_vplist_dirty(vp, toff, afs_putapage, flags, cred);
-#else
- code = pvn_vplist_dirty(vp, (u_int) off, afs_putapage, flags, cred);
-#endif
AFS_GLOCK();
}
ReleaseWriteLock(&avc->lock);
else
ReleaseSharedLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
afs_Trace2(afs_iclSetp, CM_TRACE_PAGEOUTDONE, ICL_TYPE_LONG, code,
ICL_TYPE_LONG, NPages);
AFS_GUNLOCK();
int
-afs_putapage(struct vnode *vp, struct page *pages,
-#if defined(AFS_SUN56_ENV)
- u_offset_t * offp,
-#else
- u_int * offp,
-#endif
-#if defined(AFS_SUN58_ENV)
- size_t * lenp,
-#else
- u_int * lenp,
-#endif
- int flags, struct AFS_UCRED *credp)
+afs_putapage(struct vnode *vp, struct page *pages, u_offset_t * offp,
+ size_t * lenp, int flags, afs_ucred_t *credp)
{
struct buf *tbuf;
struct vcache *avc = VTOAFS(vp);
* XXX Find a kluster that fits in one block (or page). We also
* adjust the i/o if the file space is less than a while page. XXX
*/
- if (off + tlen > avc->m.Length) {
- tlen = avc->m.Length - off;
+ if (off + tlen > avc->f.m.Length) {
+ tlen = avc->f.m.Length - off;
}
/* can't call mapout with 0 length buffers (rmfree panics) */
if (((tlen >> 24) & 0xff) == 0xff) {
return (ENOMEM);
tbuf->b_dev = 0;
- tbuf->b_blkno = btodb(pages->p_offset);
+ tbuf->b_lblkno = lbtodb(pages->p_offset);
bp_mapin(tbuf);
AFS_GLOCK();
afs_Trace4(afs_iclSetp, CM_TRACE_PAGEOUTONE, ICL_TYPE_LONG, avc,
return code;
}
-#else /* AFS_SUN5_ENV */
-
-int
-afs_putpage(vp, off, len, flags, cred)
- struct vnode *vp;
- u_int off;
- u_int len;
- int flags;
- struct AFS_UCRED *cred;
-{
- int wholeEnchilada; /* true if we must get all of the pages */
- struct vcache *avc;
- struct page *pages;
- struct page *tpage;
- struct buf *tbuf;
- afs_int32 tlen;
- afs_int32 code = 0, rcode;
- afs_int32 poffset;
- afs_int32 clusterStart, clusterEnd, endPos;
-
- /* In the wholeEnchilada case, we must ensure that we get all of the pages
- * from the system, since we're doing this to shutdown the use of a vnode */
-
- AFS_STATCNT(afs_putpage);
- wholeEnchilada = (off == 0 && len == 0
- && (flags & (B_INVAL | B_ASYNC)) == B_INVAL);
-
- avc = VTOAFS(vp);
- afs_BozonLock(&avc->pvnLock, avc);
- ObtainWriteLock(&avc->lock, 248);
-
- while (1) {
- /* in whole enchilada case, loop until call to pvn_getdirty can't find
- * any more modified pages */
-
- /* first we try to get a list of modified (or whatever) pages */
- if (len == 0) {
- pages = pvn_vplist_dirty(vp, off, flags);
- } else {
- endPos = off + len; /* position we're supposed to write up to */
- if (endPos > avc->m.Length)
- endPos = avc->m.Length; /* bound by this */
- clusterStart = off & ~(PAGESIZE - 1); /* round down to nearest page */
- clusterEnd = ((endPos - 1) | (PAGESIZE - 1)) + 1; /* round up to nearest page */
- pages =
- pvn_range_dirty(vp, off, endPos, clusterStart, clusterEnd,
- flags);
- }
-
- /* Now we've got the modified pages. All pages are locked and held */
- rcode = 0; /* return code */
- while (pages) { /* look over all pages in the returned set */
- tpage = pages; /* get first page in the list */
-
- /* write out the page */
- poffset = tpage->p_offset; /* where the page starts in the file */
- /* tlen will represent the end of the range to write, for a while */
- tlen = PAGESIZE + poffset; /* basic place to end tpage write */
- /* but we also don't want to write past end of off..off+len range */
- if (len != 0 && tlen > off + len)
- tlen = off + len;
- /* and we don't want to write past the end of the file */
- if (tlen > avc->m.Length)
- tlen = avc->m.Length;
- /* and we don't want to write at all if page starts after end */
- if (poffset >= tlen) {
- pvn_fail(pages, B_WRITE | flags);
- goto done;
- }
- /* finally change tlen from end position to length */
- tlen -= poffset; /* compute bytes to write from this page */
- page_sub(&pages, tpage); /* remove tpage from "pages" list */
- tbuf = pageio_setup(tpage, tlen, vp, B_WRITE | flags);
- if (!tbuf) {
- pvn_fail(tpage, B_WRITE | flags);
- pvn_fail(pages, B_WRITE | flags);
- goto done;
- }
- tbuf->b_dev = 0;
- tbuf->b_blkno = btodb(tpage->p_offset);
- bp_mapin(tbuf);
- ReleaseWriteLock(&avc->lock); /* can't hold during strategy call */
- code = afs_ustrategy(tbuf); /* unlocks page */
- ObtainWriteLock(&avc->lock, 249); /* re-obtain */
- if (code) {
- /* unlocking of tpage is done by afs_ustrategy */
- rcode = code;
- if (pages) /* may have already removed last page */
- pvn_fail(pages, B_WRITE | flags);
- goto done;
- }
- } /* for (tpage=pages....) */
-
- /* see if we've gotten all of the pages in the whole enchilada case */
- if (!wholeEnchilada || !vp->v_pages)
- break;
- } /* while(1) obtaining all pages */
-
- /*
- * If low on chunks, and if writing the last byte of a chunk, try to
- * free some. Note that afs_DoPartialWrite calls osi_SyncVM which now
- * calls afs_putpage, so this is recursion. It stops there because we
- * insist on len being non-zero.
- */
- if (afs_stats_cmperf.cacheCurrDirtyChunks >
- afs_stats_cmperf.cacheMaxDirtyChunks && len != 0
- && AFS_CHUNKOFFSET((off + len)) == 0) {
- struct vrequest treq;
- if (!afs_InitReq(&treq, cred ? cred : u.u_cred)) {
- rcode = afs_DoPartialWrite(avc, &treq); /* XXX */
- }
- }
-
- done:
-
- if (rcode && !avc->vc_error)
- avc->vc_error = rcode;
-
- /* when we're here, we just return code. */
- ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
- return rcode;
-}
-
-#endif /* AFS_SUN5_ENV */
-
int
-afs_nfsrdwr(avc, auio, arw, ioflag, acred)
- register struct vcache *avc;
- struct uio *auio;
- enum uio_rw arw;
- int ioflag;
- struct AFS_UCRED *acred;
+afs_nfsrdwr(struct vcache *avc, struct uio *auio, enum uio_rw arw,
+ int ioflag, afs_ucred_t *acred)
{
- register afs_int32 code;
+ afs_int32 code;
afs_int32 code2;
int counter;
afs_int32 mode, sflags;
- register char *data;
+ char *data;
struct dcache *dcp, *dcp_newpage;
afs_size_t fileBase, size;
afs_size_t pageBase;
- register afs_int32 tsize;
- register afs_int32 pageOffset, extraResid = 0;
- register afs_size_t origLength; /* length when reading/writing started */
- register long appendLength; /* length when this call will finish */
+ afs_int32 tsize;
+ afs_int32 pageOffset, extraResid = 0;
+ afs_size_t origLength; /* length when reading/writing started */
+ long appendLength; /* length when this call will finish */
int created; /* created pages instead of faulting them */
int lockCode;
int didFakeOpen, eof;
afs_Trace4(afs_iclSetp, CM_TRACE_VMRW, ICL_TYPE_POINTER, (afs_int32) avc,
ICL_TYPE_LONG, (arw == UIO_WRITE ? 1 : 0), ICL_TYPE_OFFSET,
- ICL_HANDLE_OFFSET(auio->uio_offset), ICL_TYPE_OFFSET,
+ ICL_HANDLE_OFFSET(auio->uio_loffset), ICL_TYPE_OFFSET,
ICL_HANDLE_OFFSET(auio->uio_resid));
#ifndef AFS_64BIT_CLIENT
return (EFBIG);
#endif
-#ifdef AFS_SUN5_ENV
if (!acred)
osi_Panic("rdwr: !acred");
-#else
- if (!acred)
- acred = u.u_cred;
-#endif
+
if (code = afs_InitReq(&treq, acred))
return code;
*/
afs_MaybeWakeupTruncateDaemon();
while ((arw == UIO_WRITE)
- && (afs_blocksUsed > (CM_WAITFORDRAINPCT * afs_cacheBlocks) / 100)) {
+ && (afs_blocksUsed > PERCENT(CM_WAITFORDRAINPCT, afs_cacheBlocks))) {
if (afs_blocksUsed - afs_blocksDiscarded >
- (CM_WAITFORDRAINPCT * afs_cacheBlocks) / 100) {
+ PERCENT(CM_WAITFORDRAINPCT, afs_cacheBlocks)) {
afs_WaitForCacheDrain = 1;
afs_osi_Sleep(&afs_WaitForCacheDrain);
}
if (code)
return afs_CheckCode(code, &treq, 45);
- afs_BozonLock(&avc->pvnLock, avc);
- osi_FlushPages(avc, acred); /* hold bozon lock, but not basic vnode lock */
+ osi_FlushPages(avc, acred);
ObtainWriteLock(&avc->lock, 250);
/* adjust parameters when appending files */
if ((ioflag & IO_APPEND) && arw == UIO_WRITE) {
-#if defined(AFS_SUN56_ENV)
- auio->uio_loffset = 0;
-#endif
- auio->uio_offset = avc->m.Length; /* write at EOF position */
+ auio->uio_loffset = avc->f.m.Length; /* write at EOF position */
}
- if (auio->uio_offset < 0 || (auio->uio_offset + auio->uio_resid) < 0) {
+ if (auio->afsio_offset < 0 || (auio->afsio_offset + auio->uio_resid) < 0) {
ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
return EINVAL;
}
#ifndef AFS_64BIT_CLIENT
/* file is larger than 2GB */
if (AfsLargeFileSize(auio->uio_offset, auio->uio_resid)) {
ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
return EFBIG;
}
#endif
didFakeOpen = 0; /* keep track of open so we can do close */
if (arw == UIO_WRITE) {
/* do ulimit processing; shrink resid or fail */
-#if defined(AFS_SUN56_ENV)
if (auio->uio_loffset + auio->afsio_resid > auio->uio_llimit) {
- if (auio->uio_llimit >= auio->uio_llimit) {
+ if (auio->uio_loffset >= auio->uio_llimit) {
ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
return EFBIG;
} else {
/* track # of bytes we should write, but won't because of
extraResid -= auio->uio_resid;
}
}
-#else
-#ifdef AFS_SUN52_ENV
- if (auio->afsio_offset + auio->afsio_resid > auio->uio_limit) {
- if (auio->afsio_offset >= auio->uio_limit) {
- ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
- return EFBIG;
- } else {
- /* track # of bytes we should write, but won't because of
- * ulimit; we must add this into the final resid value
- * so caller knows we punted some data.
- */
- extraResid = auio->uio_resid;
- auio->uio_resid = auio->uio_limit - auio->afsio_offset;
- extraResid -= auio->uio_resid;
- }
- }
-#endif
-#endif /* SUN56 */
mode = S_WRITE; /* segment map-in mode */
afs_FakeOpen(avc); /* do this for writes, so data gets put back
* when we want it to be put back */
* to hold the results (since afs_putpage will be called to force the I/O */
size = auio->afsio_resid + auio->afsio_offset; /* new file size */
appendLength = size;
- origLength = avc->m.Length;
- if (size > avc->m.Length) {
+ origLength = avc->f.m.Length;
+ if (size > avc->f.m.Length) {
afs_Trace4(afs_iclSetp, CM_TRACE_SETLENGTH, ICL_TYPE_STRING,
__FILE__, ICL_TYPE_LONG, __LINE__, ICL_TYPE_OFFSET,
- ICL_HANDLE_OFFSET(avc->m.Length), ICL_TYPE_OFFSET,
+ ICL_HANDLE_OFFSET(avc->f.m.Length), ICL_TYPE_OFFSET,
ICL_HANDLE_OFFSET(size));
- avc->m.Length = size; /* file grew */
+ avc->f.m.Length = size; /* file grew */
}
- avc->states |= CDirty; /* Set the dirty bit */
- avc->m.Date = osi_Time(); /* Set file date (for ranlib) */
+ avc->f.states |= CDirty; /* Set the dirty bit */
+ avc->f.m.Date = osi_Time(); /* Set file date (for ranlib) */
} else {
mode = S_READ; /* map-in read-only */
- origLength = avc->m.Length;
+ origLength = avc->f.m.Length;
}
if (acred && AFS_NFSXLATORREQ(acred)) {
(avc, PRSFS_READ, &treq,
CHECK_MODE_BITS | CMB_ALLOW_EXEC_AS_READ)) {
ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
return EACCES;
}
}
-#ifdef AFS_SUN5_ENV
crhold(acred);
if (avc->credp) {
crfree(avc->credp);
}
avc->credp = acred;
-#endif
}
counter = 0; /* don't call afs_DoPartialWrite first time through. */
while (1) {
* call it with an offset based on blocks smaller than MAXBSIZE
* (implying that it should be named BSIZE, since it is clearly both a
* max and a min). */
- size = auio->afsio_resid; /* transfer size */
- fileBase = auio->afsio_offset; /* start file position for xfr */
+ size = auio->afsio_resid; /* transfer size */
+ fileBase = ((arw == UIO_READ) && (origLength < auio->uio_offset)) ?
+ origLength : auio->afsio_offset; /* start file position for xfr */
pageBase = fileBase & ~(MAXBSIZE - 1); /* file position of the page */
pageOffset = fileBase & (MAXBSIZE - 1); /* xfr start's offset within page */
tsize = MAXBSIZE - pageOffset; /* how much more fits in this page */
}
sflags = 0;
} else {
-#ifdef AFS_SUN5_ENV
/* Purge dirty chunks of file if there are too many dirty
* chunks. Inside the write loop, we only do this at a chunk
* boundary. Clean up partial chunk if necessary at end of loop.
if (code)
break;
}
-#endif /* AFS_SUN5_ENV */
/* write case, we ask segmap_release to call putpage. Really, we
* don't have to do this on every page mapin, but for now we're
* lazy, and don't modify the rest of AFS to scan for modified
code = 0;
break; /* nothing to transfer, we're done */
}
-#ifdef AFS_SUN5_ENV
if (arw == UIO_WRITE)
- avc->states |= CDirty; /* may have been cleared by DoPartialWrite */
+ avc->f.states |= CDirty; /* may have been cleared by DoPartialWrite */
/* Before dropping lock, hold the chunk (create it if necessary). This
* serves two purposes: (1) Ensure Cache Truncate Daemon doesn't try
break;
}
}
-#endif
ReleaseWriteLock(&avc->lock); /* uiomove may page fault */
AFS_GUNLOCK();
-#if defined(AFS_SUN56_ENV)
data = segmap_getmap(segkmap, AFSTOV(avc), (u_offset_t) pageBase);
-#else
- data = segmap_getmap(segkmap, AFSTOV(avc), pageBase);
-#endif
-#ifndef AFS_SUN5_ENV
- code =
- afs_fc2errno(as_fault
- (&kas, data + pageOffset, tsize, F_SOFTLOCK, mode));
- if (code == 0) {
- AFS_UIOMOVE(data + pageOffset, tsize, arw, auio, code);
- as_fault(&kas, data + pageOffset, tsize, F_SOFTUNLOCK, mode);
- code2 = segmap_release(segkmap, data, sflags);
- if (!code)
- code = code2;
- } else {
- (void)segmap_release(segkmap, data, 0);
- }
-#else
-#if defined(AFS_SUN56_ENV)
raddr = (caddr_t) (((uintptr_t) data + pageOffset) & PAGEMASK);
-#else
- raddr = (caddr_t) (((u_int) data + pageOffset) & PAGEMASK);
-#endif
rsize =
(((u_int) data + pageOffset + tsize + PAGEOFFSET) & PAGEMASK) -
(u_int) raddr;
AFS_GLOCK();
dcp_newpage = afs_FindDCache(avc, pageBase);
if (dcp_newpage
- && hsame(avc->m.DataVersion, dcp_newpage->f.versionNo)) {
+ && hsame(avc->f.m.DataVersion, dcp_newpage->f.versionNo)) {
ObtainWriteLock(&avc->lock, 251);
ObtainWriteLock(&avc->vlock, 576);
ObtainReadLock(&dcp_newpage->lock);
if ((avc->activeV == 0)
- && hsame(avc->m.DataVersion, dcp_newpage->f.versionNo)
+ && hsame(avc->f.m.DataVersion, dcp_newpage->f.versionNo)
&& !(dcp_newpage->dflags & (DFFetching))) {
AFS_GUNLOCK();
segmap_pagecreate(segkmap, raddr, rsize, 1);
} else {
(void)segmap_release(segkmap, data, 0);
}
-#endif /* AFS_SUN5_ENV */
AFS_GLOCK();
ObtainWriteLock(&avc->lock, 253);
-#ifdef AFS_SUN5_ENV
counter++;
if (dcp)
afs_PutDCache(dcp);
-#endif /* AFS_SUN5_ENV */
if (code)
break;
}
if (didFakeOpen) {
afs_FakeClose(avc, acred);
}
-#ifdef AFS_SUN5_ENV
- if (arw == UIO_WRITE && (avc->states & CDirty)) {
+ if (arw == UIO_WRITE && (avc->f.states & CDirty)) {
code2 = afs_DoPartialWrite(avc, &treq);
if (!code)
code = code2;
}
-#endif /* AFS_SUN5_ENV */
if (!code && avc->vc_error) {
code = avc->vc_error;
}
ReleaseWriteLock(&avc->lock);
- afs_BozonUnlock(&avc->pvnLock, avc);
if (!code) {
-#ifdef AFS_SUN53_ENV
if ((ioflag & FSYNC) && (arw == UIO_WRITE)
&& !AFS_NFSXLATORREQ(acred))
code = afs_fsync(avc, 0, acred);
-#else
- if ((ioflag & IO_SYNC) && (arw == UIO_WRITE)
- && !AFS_NFSXLATORREQ(acred))
- code = afs_fsync(avc, acred);
-#endif
}
-#ifdef AFS_SUN52_ENV
/*
* If things worked, add in as remaining in request any bytes
* we didn't write due to file size ulimit.
*/
if (code == 0 && extraResid > 0)
auio->uio_resid += extraResid;
-#endif
return afs_CheckCode(code, &treq, 46);
}
-afs_map(vp, off, as, addr, len, prot, maxprot, flags, cred)
- struct vnode *vp;
- struct as *as;
-#ifdef AFS_SUN5_ENV
- offset_t off;
- caddr_t *addr;
-#else
- u_int off;
- addr_t *addr;
-#endif
- u_int len;
-#ifdef AFS_SUN5_ENV
- u_char prot, maxprot;
-#else
- u_int prot, maxprot;
-#endif
- u_int flags;
- struct AFS_UCRED *cred;
+int
+afs_map(struct vnode *vp, offset_t off, struct as *as, caddr_t *addr, u_int len, u_char prot, u_char maxprot, u_int flags, afs_ucred_t *cred)
{
struct segvn_crargs crargs;
- register afs_int32 code;
+ afs_int32 code;
struct vrequest treq;
- register struct vcache *avc = VTOAFS(vp);
+ struct vcache *avc = VTOAFS(vp);
AFS_STATCNT(afs_map);
}
#endif
-#if defined(AFS_SUN5_ENV)
if (vp->v_flag & VNOMAP) /* File isn't allowed to be mapped */
return (ENOSYS);
if (vp->v_filocks) /* if locked, disallow mapping */
return (EAGAIN);
-#endif
+
AFS_GLOCK();
if (code = afs_InitReq(&treq, cred))
goto out;
if (code) {
goto out;
}
- afs_BozonLock(&avc->pvnLock, avc);
osi_FlushPages(avc, cred); /* ensure old pages are gone */
- avc->states |= CMAPPED; /* flag cleared at afs_inactive */
- afs_BozonUnlock(&avc->pvnLock, avc);
+ avc->f.states |= CMAPPED; /* flag cleared at afs_inactive */
AFS_GUNLOCK();
-#ifdef AFS_SUN5_ENV
as_rangelock(as);
-#endif
if ((flags & MAP_FIXED) == 0) {
-#if defined(AFS_SUN57_ENV)
map_addr(addr, len, off, 1, flags);
-#elif defined(AFS_SUN56_ENV)
- map_addr(addr, len, off, 1);
-#else
- map_addr(addr, len, (off_t) off, 1);
-#endif
if (*addr == NULL) {
-#ifdef AFS_SUN5_ENV
as_rangeunlock(as);
-#endif
code = ENOMEM;
goto out1;
}
crargs.prot = prot;
crargs.maxprot = maxprot;
crargs.amp = (struct anon_map *)0;
-#if defined(AFS_SUN5_ENV)
crargs.flags = flags & ~MAP_TYPE;
-#endif
code = as_map(as, *addr, len, segvn_create, (char *)&crargs);
-#ifdef AFS_SUN5_ENV
as_rangeunlock(as);
-#endif
out1:
AFS_GLOCK();
code = afs_CheckCode(code, &treq, 47);
return code;
}
-/* Sun 4.0.X-specific code. It computes the number of bytes that need
- to be zeroed at the end of a page by pvn_vptrunc, given that you're
- trying to get vptrunc to truncate a file to alen bytes. The result
- will be passed to pvn_vptrunc by the truncate code */
-#ifndef AFS_SUN5_ENV /* Not good for Solaris */
-afs_PageLeft(alen)
- register afs_int32 alen;
-{
- register afs_int32 nbytes;
-
- AFS_STATCNT(afs_PageLeft);
- nbytes = PAGESIZE - (alen & PAGEOFFSET); /* amount to zap in last page */
- /* now check if we'd zero the entire last page. Don't need to do this
- * since pvn_vptrunc will handle this case properly (it will invalidate
- * this page) */
- if (nbytes == PAGESIZE)
- nbytes = 0;
- if (nbytes < 0)
- nbytes = 0; /* just in case */
- return nbytes;
-}
-#endif
-
/*
* For Now We use standard local kernel params for AFS system values. Change this
* at some point.
*/
-#if defined(AFS_SUN5_ENV)
-afs_pathconf(vp, cmd, outdatap, credp)
- register struct AFS_UCRED *credp;
+int
+#ifdef AFS_SUN511_ENV
+afs_pathconf(struct vnode *vp, int cmd, u_long *outdatap,
+ afs_ucred_t *credp, caller_context_t *ct)
#else
-afs_cntl(vp, cmd, indatap, outdatap, inflag, outflag)
- int inflag, outflag;
- char *indatap;
-#endif
- struct vnode *vp;
- int cmd;
- u_long *outdatap;
+afs_pathconf(struct vnode *vp, int cmd, u_long *outdatap,
+ afs_ucred_t *credp)
+#endif /* AFS_SUN511_ENV */
{
AFS_STATCNT(afs_cntl);
switch (cmd) {
case _PC_NO_TRUNC:
*outdatap = 1;
break;
-#if !defined(AFS_SUN5_ENV)
- case _PC_MAX_CANON:
- *outdatap = CANBSIZ;
- break;
- case _PC_VDISABLE:
- *outdatap = VDISABLE;
- break;
- case _PC_PIPE_BUF:
- return EINVAL;
- break;
+ case _PC_FILESIZEBITS:
+#ifdef AFS_64BIT_CLIENT
+ *outdatap = 64;
+#else
+ *outdatap = 32;
#endif
+ break;
default:
- return EINVAL;
+#ifdef AFS_SUN511_ENV
+ return fs_pathconf(vp, cmd, outdatap, credp, ct);
+#else
+ return fs_pathconf(vp, cmd, outdatap, credp);
+#endif /* AFS_SUN511_ENV */
}
return 0;
}
-#endif /* AFS_SUN_ENV */
-
-#if defined(AFS_SUN5_ENV)
-
-afs_ioctl(vnp, com, arg, flag, credp, rvalp)
- struct vnode *vnp;
- int com, arg, flag;
- cred_t *credp;
- int *rvalp;
+int
+afs_ioctl(struct vnode *vnp, int com, int arg, int flag, cred_t *credp,
+ int *rvalp)
{
return (ENOTTY);
}
void
-afs_rwlock(vnp, wlock)
- struct vnode *vnp;
- int wlock;
+afs_rwlock(struct vnode *vnp, int wlock)
{
rw_enter(&(VTOAFS(vnp))->rwlock, (wlock ? RW_WRITER : RW_READER));
}
void
-afs_rwunlock(vnp, wlock)
- struct vnode *vnp;
- int wlock;
+afs_rwunlock(struct vnode *vnp, int wlock)
{
rw_exit(&(VTOAFS(vnp))->rwlock);
}
/* NOT SUPPORTED */
-afs_seek(vnp, ooff, noffp)
- struct vnode *vnp;
- offset_t ooff;
- offset_t *noffp;
+int
+afs_seek(struct vnode *vnp, offset_t ooff, offset_t *noffp)
{
- register int code = 0;
+ int code = 0;
+
+#ifndef AFS_64BIT_CLIENT
+# define __MAXOFF_T MAXOFF_T
+#else
+# define __MAXOFF_T MAXOFFSET_T
+#endif
- if ((*noffp < 0 || *noffp > MAXOFF_T))
+ if ((*noffp < 0 || *noffp > __MAXOFF_T))
code = EINVAL;
return code;
}
int
-afs_frlock(vnp, cmd, ap, flag, off,
#ifdef AFS_SUN59_ENV
- flkcb,
-#endif
- credp)
- struct vnode *vnp;
- int cmd;
-#if defined(AFS_SUN56_ENV)
- struct flock64 *ap;
+afs_frlock(struct vnode *vnp, int cmd, struct flock64 *ap, int flag,
+ offset_t off, struct flk_callback *flkcb, afs_ucred_t *credp)
#else
- struct flock *ap;
+afs_frlock(struct vnode *vnp, int cmd, struct flock64 *ap, int flag,
+ offset_t off, afs_ucred_t *credp)
#endif
- int flag;
- offset_t off;
-#ifdef AFS_SUN59_ENV
- struct flk_callback *flkcb;
-#endif
- struct AFS_UCRED *credp;
{
- register afs_int32 code = 0;
+ afs_int32 code = 0;
/*
* Implement based on afs_lockctl
*/
#endif
if ((cmd == F_GETLK) || (cmd == F_O_GETLK) || (cmd == F_SETLK)
|| (cmd == F_SETLKW)) {
-#ifdef AFS_SUN53_ENV
ap->l_pid = ttoproc(curthread)->p_pid;
ap->l_sysid = 0;
-#else
- ap->l_pid = ttoproc(curthread)->p_epid;
- ap->l_sysid = ttoproc(curthread)->p_sysid;
-#endif
AFS_GUNLOCK();
-#ifdef AFS_SUN56_ENV
code = convoff(vnp, ap, 0, off);
-#else
- code = convoff(vnp, ap, 0, (off_t) off);
-#endif
if (code)
return code;
AFS_GLOCK();
int
-afs_space(vnp, cmd, ap, flag, off, credp)
- struct vnode *vnp;
- int cmd;
-#if defined(AFS_SUN56_ENV)
- struct flock64 *ap;
-#else
- struct flock *ap;
-#endif
- int flag;
- offset_t off;
- struct AFS_UCRED *credp;
+afs_space(struct vnode *vnp, int cmd, struct flock64 *ap, int flag,
+ offset_t off, afs_ucred_t *credp)
{
- register afs_int32 code = EINVAL;
+ afs_int32 code = EINVAL;
struct vattr vattr;
if ((cmd == F_FREESP)
-#ifdef AFS_SUN56_ENV
&& ((code = convoff(vnp, ap, 0, off)) == 0)) {
-#else
- && ((code = convoff(vnp, ap, 0, (off_t) off)) == 0)) {
-#endif
AFS_GLOCK();
if (!ap->l_len) {
vattr.va_mask = AT_SIZE;
return (code);
}
-
-#endif
-
int
-afs_dump(vp, addr, i1, i2)
- struct vnode *vp;
- caddr_t addr;
- int i1, i2;
+afs_dump(struct vnode *vp, caddr_t addr, int i1, int i2)
{
AFS_STATCNT(afs_dump);
afs_warn("AFS_DUMP. MUST IMPLEMENT THIS!!!\n");
/* Nothing fancy here; just compare if vnodes are identical ones */
-afs_cmp(vp1, vp2)
- struct vnode *vp1, *vp2;
+int
+afs_cmp(struct vnode *vp1, struct vnode *vp2)
{
AFS_STATCNT(afs_cmp);
return (vp1 == vp2);
int
-afs_pageio(vp, pp, ui1, ui2, i1, credp)
- struct vnode *vp;
- struct page *pp;
- u_int ui1, ui2;
- int i1;
- struct cred *credp;
+afs_pageio(struct vnode *vp, struct page *pp, u_int ui1, u_int ui2, int i1,
+ struct cred *credp)
{
afs_warn("afs_pageio: Not implemented\n");
return EINVAL;
}
int
-afs_dumpctl(vp, i
-#ifdef AFS_SUN59_ENV
- , blkp
-#endif
- )
- struct vnode *vp;
- int i;
#ifdef AFS_SUN59_ENV
- int *blkp;
+afs_dumpctl(struct vnode *vp, int i, int *blkp)
+#else
+afs_dumpctl(struct vnode *vp, int i)
#endif
{
afs_warn("afs_dumpctl: Not implemented\n");
return EINVAL;
}
-#ifdef AFS_SUN54_ENV
+#ifdef AFS_SUN511_ENV
+extern void
+afs_dispose(struct vnode *vp, struct page *p, int fl, int dn, struct cred *cr, struct caller_context_t *ct)
+{
+ fs_dispose(vp, p, fl, dn, cr,ct);
+}
+
+int
+afs_setsecattr(struct vnode *vp, vsecattr_t *vsecattr, int flag, struct cred *creds, struct caller_context_t *ct)
+{
+ return ENOSYS;
+}
+
+int
+afs_getsecattr(struct vnode *vp, vsecattr_t *vsecattr, int flag, struct cred *creds, struct caller_context_t *ct)
+{
+ return fs_fab_acl(vp, vsecattr, flag, creds,ct);
+}
+#else
extern void
-afs_dispose(vp, p, fl, dn, cr)
- struct vnode *vp;
- struct page *p;
- int fl, dn;
- struct cred *cr;
+afs_dispose(struct vnode *vp, struct page *p, int fl, int dn, struct cred *cr)
{
fs_dispose(vp, p, fl, dn, cr);
}
int
-afs_setsecattr(vp, vsecattr, flag, creds)
- struct vnode *vp;
- vsecattr_t *vsecattr;
- int flag;
- struct cred *creds;
+afs_setsecattr(struct vnode *vp, vsecattr_t *vsecattr, int flag,
+ struct cred *creds)
{
return ENOSYS;
}
int
-afs_getsecattr(vp, vsecattr, flag, creds)
- struct vnode *vp;
- vsecattr_t *vsecattr;
- int flag;
- struct cred *creds;
+afs_getsecattr(struct vnode *vp, vsecattr_t *vsecattr, int flag, struct cred *creds)
{
return fs_fab_acl(vp, vsecattr, flag, creds);
}
#endif
#ifdef AFS_GLOBAL_SUNLOCK
-extern int gafs_open(), gafs_close(), afs_ioctl(), gafs_access();
-extern int gafs_getattr(), gafs_setattr(), gafs_lookup(), gafs_create();
-extern int gafs_remove(), gafs_link(), gafs_rename(), gafs_mkdir();
-extern int gafs_rmdir(), gafs_readdir(), gafs_fsync(), gafs_symlink();
-extern int gafs_fid(), gafs_readlink(), fs_setfl(), afs_pathconf();
-extern int afs_lockctl();
-extern void gafs_inactive();
-
-#ifdef AFS_SUN510_ENV
-struct fs_operation_def afs_vnodeops_template[] = {
- { VOPNAME_OPEN, gafs_open },
- { VOPNAME_CLOSE, gafs_close },
- { VOPNAME_READ, afs_vmread },
- { VOPNAME_WRITE, afs_vmwrite },
- { VOPNAME_IOCTL, afs_ioctl },
- { VOPNAME_SETFL, fs_setfl },
- { VOPNAME_GETATTR, gafs_getattr },
- { VOPNAME_SETATTR, gafs_setattr },
- { VOPNAME_ACCESS, gafs_access },
- { VOPNAME_LOOKUP, gafs_lookup },
- { VOPNAME_CREATE, gafs_create },
- { VOPNAME_REMOVE, gafs_remove },
- { VOPNAME_LINK, gafs_link },
- { VOPNAME_RENAME, gafs_rename },
- { VOPNAME_MKDIR, gafs_mkdir },
- { VOPNAME_RMDIR, gafs_rmdir },
- { VOPNAME_READDIR, gafs_readdir },
- { VOPNAME_SYMLINK, gafs_symlink },
- { VOPNAME_READLINK, gafs_readlink },
- { VOPNAME_FSYNC, gafs_fsync },
- { VOPNAME_INACTIVE, gafs_inactive },
- { VOPNAME_FID, gafs_fid },
- { VOPNAME_RWLOCK, afs_rwlock },
- { VOPNAME_RWUNLOCK, afs_rwunlock },
- { VOPNAME_SEEK, afs_seek },
- { VOPNAME_CMP, afs_cmp },
- { VOPNAME_FRLOCK, afs_frlock },
- { VOPNAME_SPACE, afs_space },
- { VOPNAME_REALVP, afs_realvp },
- { VOPNAME_GETPAGE, afs_getpage },
- { VOPNAME_PUTPAGE, afs_putpage },
- { VOPNAME_MAP, afs_map },
- { VOPNAME_ADDMAP, afs_addmap },
- { VOPNAME_DELMAP, afs_delmap },
- { VOPNAME_POLL, fs_poll },
- { VOPNAME_DUMP, afs_dump },
- { VOPNAME_PATHCONF, afs_pathconf },
- { VOPNAME_PAGEIO, afs_pageio },
- { VOPNAME_DUMPCTL, afs_dumpctl },
- { VOPNAME_DISPOSE, afs_dispose },
- { VOPNAME_GETSECATTR, afs_getsecattr },
- { VOPNAME_SETSECATTR, afs_setsecattr },
- { VOPNAME_SHRLOCK, fs_shrlock },
- NULL,
+extern int gafs_open(struct vcache **avcp, afs_int32 aflags,
+ afs_ucred_t *acred);
+extern int gafs_close(struct vcache *avc, afs_int32 aflags,
+ int count, offset_t offset, afs_ucred_t *acred);
+extern int afs_ioctl(struct vnode *vnp, int com, int arg, int flag,
+ cred_t *credp, int *rvalp);
+extern int gafs_access(struct vcache *avc, afs_int32 amode,
+ int flags, afs_ucred_t *acred);
+extern int gafs_getattr(struct vcache *avc,
+ struct vattr *attrs, int flags,
+ afs_ucred_t *acred);
+extern int gafs_setattr(struct vcache *avc,
+ struct vattr *attrs, int flags,
+ afs_ucred_t *acred);
+extern int gafs_lookup(struct vcache *adp, char *aname,
+ struct vcache **avcp, struct pathname *pnp,
+ int flags, struct vnode *rdir, afs_ucred_t *acred);
+extern int gafs_remove(struct vcache *adp, char *aname,
+ afs_ucred_t *acred);
+extern int gafs_link(struct vcache *adp, struct vcache *avc,
+ char *aname, afs_ucred_t *acred);
+extern int gafs_rename(struct vcache *aodp, char *aname1,
+ struct vcache *andp, char *aname2,
+ afs_ucred_t *acred);
+extern int gafs_symlink(struct vcache *adp, char *aname,
+ struct vattr *attrs, char *atargetName,
+ afs_ucred_t *acred);
+extern int gafs_rmdir(struct vcache *adp, char *aname,
+ struct vnode *cdirp, afs_ucred_t *acred);
+extern int gafs_mkdir(struct vcache *adp, char *aname,
+ struct vattr *attrs, struct vcache **avcp,
+ afs_ucred_t *acred);
+extern int gafs_fsync(struct vcache *avc, int flag, afs_ucred_t *acred);
+extern int gafs_readlink(struct vcache *avc, struct uio *auio,
+ afs_ucred_t *acred);
+extern int gafs_readdir(struct vcache *avc, struct uio *auio,
+ afs_ucred_t *acred, int *eofp);
+extern void gafs_inactive(struct vcache *avc,
+ afs_ucred_t *acred);
+extern int gafs_fid(struct vcache *avc, struct fid **fidpp);
+extern int gafs_create(struct vcache *adp, char *aname,
+ struct vattr *attrs, enum vcexcl aexcl, int amode,
+ struct vcache **avcp, afs_ucred_t *acred);
+#ifdef AFS_SUN511_ENV
+extern int afs_pathconf(struct vnode *vp, int cmd, u_long *outdatap,
+ afs_ucred_t *credp, caller_context_t *ct);
+#else
+extern int afs_pathconf(struct vnode *vp, int cmd, u_long *outdatap,
+ afs_ucred_t *credp);
+#endif /* AFS_SUN511_ENV */
+
+#if defined(AFS_SUN511_ENV)
+/* The following list must always be NULL-terminated */
+const fs_operation_def_t afs_vnodeops_template[] = {
+ VOPNAME_OPEN, { .vop_open = gafs_open },
+ VOPNAME_CLOSE, { .vop_close = gafs_close },
+ VOPNAME_READ, { .vop_read = afs_vmread },
+ VOPNAME_WRITE, { .vop_write = afs_vmwrite },
+ VOPNAME_IOCTL, { .vop_ioctl = afs_ioctl },
+ VOPNAME_SETFL, { .vop_setfl = fs_setfl },
+ VOPNAME_GETATTR, { .vop_getattr = gafs_getattr },
+ VOPNAME_SETATTR, { .vop_setattr = gafs_setattr },
+ VOPNAME_ACCESS, { .vop_access = gafs_access },
+ VOPNAME_LOOKUP, { .vop_lookup = gafs_lookup },
+ VOPNAME_CREATE, { .vop_create = gafs_create },
+ VOPNAME_REMOVE, { .vop_remove = gafs_remove },
+ VOPNAME_LINK, { .vop_link = gafs_link },
+ VOPNAME_RENAME, { .vop_rename = gafs_rename },
+ VOPNAME_MKDIR, { .vop_mkdir = gafs_mkdir },
+ VOPNAME_RMDIR, { .vop_rmdir = gafs_rmdir },
+ VOPNAME_READDIR, { .vop_readdir = gafs_readdir },
+ VOPNAME_SYMLINK, { .vop_symlink = gafs_symlink },
+ VOPNAME_READLINK, { .vop_readlink = gafs_readlink },
+ VOPNAME_FSYNC, { .vop_fsync = gafs_fsync },
+ VOPNAME_INACTIVE, { .vop_inactive = gafs_inactive },
+ VOPNAME_FID, { .vop_fid = gafs_fid },
+ VOPNAME_RWLOCK, { .vop_rwlock = afs_rwlock },
+ VOPNAME_RWUNLOCK, { .vop_rwunlock = afs_rwunlock },
+ VOPNAME_SEEK, { .vop_seek = afs_seek },
+ VOPNAME_CMP, { .vop_cmp = afs_cmp },
+ VOPNAME_FRLOCK, { .vop_frlock = afs_frlock },
+ VOPNAME_SPACE, { .vop_space = afs_space },
+ VOPNAME_REALVP, { .vop_realvp = afs_realvp },
+ VOPNAME_GETPAGE, { .vop_getpage = afs_getpage },
+ VOPNAME_PUTPAGE, { .vop_putpage = afs_putpage },
+ VOPNAME_MAP, { .vop_map = afs_map },
+ VOPNAME_ADDMAP, { .vop_addmap = afs_addmap },
+ VOPNAME_DELMAP, { .vop_delmap = afs_delmap },
+ VOPNAME_POLL, { .vop_poll = fs_poll },
+ VOPNAME_PATHCONF, { .vop_pathconf = afs_pathconf },
+ VOPNAME_PAGEIO, { .vop_pageio = afs_pageio },
+ VOPNAME_DUMP, { .vop_dump = afs_dump },
+ VOPNAME_DUMPCTL, { .vop_dumpctl = afs_dumpctl },
+ VOPNAME_DISPOSE, { .vop_dispose = afs_dispose },
+ VOPNAME_GETSECATTR, { .vop_getsecattr = afs_getsecattr },
+ VOPNAME_SETSECATTR, { .vop_setsecattr = afs_setsecattr },
+ VOPNAME_SHRLOCK, { .vop_shrlock = fs_shrlock },
+ NULL, NULL
+};
+vnodeops_t *afs_ops;
+#elif defined(AFS_SUN510_ENV)
+/* The following list must always be NULL-terminated */
+const fs_operation_def_t afs_vnodeops_template[] = {
+ VOPNAME_OPEN, gafs_open,
+ VOPNAME_CLOSE, gafs_close,
+ VOPNAME_READ, afs_vmread,
+ VOPNAME_WRITE, afs_vmwrite,
+ VOPNAME_IOCTL, afs_ioctl,
+ VOPNAME_SETFL, fs_setfl,
+ VOPNAME_GETATTR, gafs_getattr,
+ VOPNAME_SETATTR, gafs_setattr,
+ VOPNAME_ACCESS, gafs_access,
+ VOPNAME_LOOKUP, gafs_lookup,
+ VOPNAME_CREATE, gafs_create,
+ VOPNAME_REMOVE, gafs_remove,
+ VOPNAME_LINK, gafs_link,
+ VOPNAME_RENAME, gafs_rename,
+ VOPNAME_MKDIR, gafs_mkdir,
+ VOPNAME_RMDIR, gafs_rmdir,
+ VOPNAME_READDIR, gafs_readdir,
+ VOPNAME_SYMLINK, gafs_symlink,
+ VOPNAME_READLINK, gafs_readlink,
+ VOPNAME_FSYNC, gafs_fsync,
+ VOPNAME_INACTIVE, gafs_inactive,
+ VOPNAME_FID, gafs_fid,
+ VOPNAME_RWLOCK, afs_rwlock,
+ VOPNAME_RWUNLOCK, afs_rwunlock,
+ VOPNAME_SEEK, afs_seek,
+ VOPNAME_CMP, afs_cmp,
+ VOPNAME_FRLOCK, afs_frlock,
+ VOPNAME_SPACE, afs_space,
+ VOPNAME_REALVP, afs_realvp,
+ VOPNAME_GETPAGE, afs_getpage,
+ VOPNAME_PUTPAGE, afs_putpage,
+ VOPNAME_MAP, afs_map,
+ VOPNAME_ADDMAP, afs_addmap,
+ VOPNAME_DELMAP, afs_delmap,
+ VOPNAME_POLL, fs_poll,
+ VOPNAME_DUMP, afs_dump,
+ VOPNAME_PATHCONF, afs_pathconf,
+ VOPNAME_PAGEIO, afs_pageio,
+ VOPNAME_DUMPCTL, afs_dumpctl,
+ VOPNAME_DISPOSE, afs_dispose,
+ VOPNAME_GETSECATTR, afs_getsecattr,
+ VOPNAME_SETSECATTR, afs_setsecattr,
+ VOPNAME_SHRLOCK, fs_shrlock,
+ NULL, NULL
};
struct vnodeops *afs_ops;
#else
afs_pathconf,
afs_pageio,
afs_dumpctl,
-#ifdef AFS_SUN54_ENV
afs_dispose,
afs_setsecattr,
afs_getsecattr,
-#endif
-#if defined(AFS_SUN56_ENV)
fs_shrlock,
-#endif
};
struct vnodeops *afs_ops = &Afs_vnodeops;
#endif
-
-
-gafs_open(avcp, aflags, acred)
- register struct vcache **avcp;
- afs_int32 aflags;
- struct AFS_UCRED *acred;
+int
+gafs_open(struct vcache **avcp, afs_int32 aflags,
+ afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_open(avcp, aflags, acred);
return (code);
}
-
-gafs_close(avc, aflags, count, offset, acred)
- offset_t offset;
- int count;
- register struct vcache *avc;
- afs_int32 aflags;
- struct AFS_UCRED *acred;
+int
+gafs_close(struct vcache *avc, afs_int32 aflags, int count,
+ offset_t offset, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_close(avc, aflags, count, offset, acred);
return (code);
}
-
-gafs_getattr(avc, attrs, flags, acred)
- int flags;
- register struct vcache *avc;
- register struct vattr *attrs;
- struct AFS_UCRED *acred;
+int
+gafs_getattr(struct vcache *avc, struct vattr *attrs,
+ int flags, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_getattr(avc, attrs, flags, acred);
}
-gafs_setattr(avc, attrs, flags, acred)
- int flags;
- register struct vcache *avc;
- register struct vattr *attrs;
- struct AFS_UCRED *acred;
+int
+gafs_setattr(struct vcache *avc, struct vattr *attrs,
+ int flags, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_setattr(avc, attrs, flags, acred);
}
-gafs_access(avc, amode, flags, acred)
- int flags;
- register struct vcache *avc;
- register afs_int32 amode;
- struct AFS_UCRED *acred;
+int
+gafs_access(struct vcache *avc, afs_int32 amode, int flags,
+ afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_access(avc, amode, flags, acred);
}
-gafs_lookup(adp, aname, avcp, pnp, flags, rdir, acred)
- struct pathname *pnp;
- int flags;
- struct vnode *rdir;
- register struct vcache *adp, **avcp;
- char *aname;
- struct AFS_UCRED *acred;
+int
+gafs_lookup(struct vcache *adp, char *aname,
+ struct vcache **avcp, struct pathname *pnp, int flags,
+ struct vnode *rdir, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_lookup(adp, aname, avcp, pnp, flags, rdir, acred);
}
-gafs_create(adp, aname, attrs, aexcl, amode, avcp, acred)
- register struct vcache *adp;
- char *aname;
- struct vattr *attrs;
- enum vcexcl aexcl;
- int amode;
- struct vcache **avcp;
- struct AFS_UCRED *acred;
+int
+gafs_create(struct vcache *adp, char *aname, struct vattr *attrs,
+ enum vcexcl aexcl, int amode, struct vcache **avcp,
+ afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_create(adp, aname, attrs, aexcl, amode, avcp, acred);
return (code);
}
-gafs_remove(adp, aname, acred)
- register struct vcache *adp;
- char *aname;
- struct AFS_UCRED *acred;
+int
+gafs_remove(struct vcache *adp, char *aname, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_remove(adp, aname, acred);
return (code);
}
-gafs_link(adp, avc, aname, acred)
- register struct vcache *avc;
- register struct vcache *adp;
- char *aname;
- struct AFS_UCRED *acred;
+int
+gafs_link(struct vcache *adp, struct vcache *avc,
+ char *aname, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_link(adp, avc, aname, acred);
return (code);
}
-gafs_rename(aodp, aname1, andp, aname2, acred)
- register struct vcache *aodp, *andp;
- char *aname1, *aname2;
- struct AFS_UCRED *acred;
+int
+gafs_rename(struct vcache *aodp, char *aname1,
+ struct vcache *andp, char *aname2,
+ afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_rename(aodp, aname1, andp, aname2, acred);
+#ifdef AFS_SUN510_ENV
+ if (code == 0) {
+ struct vcache *avcp = NULL;
+
+ (void) afs_lookup(andp, aname2, &avcp, NULL, 0, NULL, acred);
+ if (avcp) {
+ struct vnode *vp = AFSTOV(avcp), *pvp = AFSTOV(andp);
+
+# ifdef HAVE_VN_RENAMEPATH
+ vn_renamepath(pvp, vp, aname2, strlen(aname2));
+# else
+ mutex_enter(&vp->v_lock);
+ if (vp->v_path != NULL) {
+ kmem_free(vp->v_path, strlen(vp->v_path) + 1);
+ vp->v_path = NULL;
+ }
+ mutex_exit(&vp->v_lock);
+ vn_setpath(afs_globalVp, pvp, vp, aname2, strlen(aname2));
+# endif /* !HAVE_VN_RENAMEPATH */
+
+ AFS_RELE(avcp);
+ }
+ }
+#endif
AFS_GUNLOCK();
return (code);
}
-gafs_mkdir(adp, aname, attrs, avcp, acred)
- register struct vcache *adp;
- register struct vcache **avcp;
- char *aname;
- struct vattr *attrs;
- struct AFS_UCRED *acred;
+int
+gafs_mkdir(struct vcache *adp, char *aname, struct vattr *attrs,
+ struct vcache **avcp, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_mkdir(adp, aname, attrs, avcp, acred);
return (code);
}
-
-gafs_rmdir(adp, aname, cdirp, acred)
- struct vnode *cdirp;
- register struct vcache *adp;
- char *aname;
- struct AFS_UCRED *acred;
+int
+gafs_rmdir(struct vcache *adp, char *aname, struct vnode *cdirp,
+ afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_rmdir(adp, aname, cdirp, acred);
}
-gafs_readdir(avc, auio, acred, eofp)
- int *eofp;
- register struct vcache *avc;
- struct uio *auio;
- struct AFS_UCRED *acred;
+int
+gafs_readdir(struct vcache *avc, struct uio *auio,
+ afs_ucred_t *acred, int *eofp)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_readdir(avc, auio, acred, eofp);
return (code);
}
-gafs_symlink(adp, aname, attrs, atargetName, acred)
- register struct vcache *adp;
- register char *atargetName;
- char *aname;
- struct vattr *attrs;
- struct AFS_UCRED *acred;
+int
+gafs_symlink(struct vcache *adp, char *aname, struct vattr *attrs,
+ char *atargetName, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_symlink(adp, aname, attrs, atargetName, acred);
}
-gafs_readlink(avc, auio, acred)
- register struct vcache *avc;
- struct uio *auio;
- struct AFS_UCRED *acred;
+int
+gafs_readlink(struct vcache *avc, struct uio *auio, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_readlink(avc, auio, acred);
return (code);
}
-#ifdef AFS_SUN53_ENV
-gafs_fsync(avc, flag, acred)
- int flag;
-#else
-gafs_fsync(avc, acred)
-#endif
- register struct vcache *avc;
- struct AFS_UCRED *acred;
+int
+gafs_fsync(struct vcache *avc, int flag, afs_ucred_t *acred)
{
- register int code;
+ int code;
AFS_GLOCK();
-#ifdef AFS_SUN53_ENV
code = afs_fsync(avc, flag, acred);
-#else
- code = afs_fsync(avc, acred);
-#endif
AFS_GUNLOCK();
return (code);
}
-void
-afs_inactive(struct vcache *avc, struct AFS_UCRED *acred)
+int
+afs_inactive(struct vcache *avc, afs_ucred_t *acred)
{
struct vnode *vp = AFSTOV(avc);
if (afs_shuttingdown)
- return;
+ return 0;
/*
* In Solaris and HPUX s800 and HP-UX10.0 they actually call us with
vp->v_count--;
if (vp->v_count > 0) {
mutex_exit(&vp->v_lock);
- return;
+ return 0;
}
mutex_exit(&vp->v_lock);
+#ifndef AFS_SUN511_ENV
/*
* Solaris calls VOP_OPEN on exec, but doesn't call VOP_CLOSE when
* the executable exits. So we clean up the open count here.
* lose the open count for volume roots (mvstat 2), even though they
* will get VOP_INACTIVE'd when released by afs_PutFakeStat().
*/
- if (avc->opens > 0 && avc->mvstat == 0 && !(avc->states & CCore))
+ if (avc->opens > 0 && avc->mvstat == 0 && !(avc->f.states & CCore))
avc->opens = avc->execsOrWriters = 0;
+#endif
afs_InactiveVCache(avc, acred);
+
+ AFS_GUNLOCK();
+ /* VFS_RELE must be called outside of GLOCK, since it can potentially
+ * call afs_freevfs, which acquires GLOCK */
+ VFS_RELE(afs_globalVFS);
+ AFS_GLOCK();
+
+ return 0;
}
void
-gafs_inactive(avc, acred)
- register struct vcache *avc;
- struct AFS_UCRED *acred;
+gafs_inactive(struct vcache *avc, afs_ucred_t *acred)
{
AFS_GLOCK();
- afs_inactive(avc, acred);
+ (void)afs_inactive(avc, acred);
AFS_GUNLOCK();
}
-gafs_fid(avc, fidpp)
- struct vcache *avc;
- struct fid **fidpp;
+int
+gafs_fid(struct vcache *avc, struct fid **fidpp)
{
- register int code;
+ int code;
AFS_GLOCK();
code = afs_fid(avc, fidpp);