ref: ffa663fec1eec67cf8f81fe2882e7393076ff235
dir: /fs.c/
#include <u.h> #include <libc.h> #include <auth.h> #include <fcall.h> #include <avl.h> #include <bio.h> #include "dat.h" #include "fns.h" static char* clearb(Fid*, vlong, vlong); // FIXME: hack. We sync way too often. static char* updatemount(Mount *mnt) { Tree *t, *n; char *e; t = mnt->root; if(!t->dirty) return nil; if((n = newsnap(t)) == nil){ fprint(2, "snap: save %s: %s\n", mnt->name, "create snap"); abort(); } if((e = labelsnap(mnt->name, t->gen)) != nil){ fprint(2, "snap: save %s: %s\n", mnt->name, e); abort(); } if(t->dead[0].prev != -1){ if((e = unrefsnap(t->dead[0].prev, t->gen)) != nil){ fprint(2, "snap: unref old: %s\n", e); abort(); } } lock(mnt); mnt->root = n; unlock(mnt); closesnap(t); return nil; } static void snapfs(int fd, char *old, char *new) { Tree *t, *u; char *e; u = openlabel(new); if((t = openlabel(old)) == nil){ fprint(fd, "snap: open %s: does not exist\n", old); return; } if((e = labelsnap(new, t->gen)) != nil){ fprint(fd, "snap: label %s: %s\n", new, e); return; } if(u != nil){ if((e = unrefsnap(u->gen, -1)) != nil){ fprint(fd, "snap: unref %s: %s\n", new, e); return; } } if(u != nil) closesnap(u); closesnap(t); /* we probably want explicit snapshots to be resilient */ sync(); fprint(fd, "snap taken: %s\n", new); } static void freemsg(Fmsg *m) { free(m->a); free(m); } static int okname(char *name) { int i; if(name[0] == 0) return -1; if(strcmp(name, ".") == 0 || strcmp(name, "..") == 0) return -1; for(i = 0; i < Maxname; i++){ if(name[i] == 0) return 0; if((name[i]&0xff) < 0x20 || name[i] == '/') return -1; } return -1; } Chan* mkchan(int size) { Chan *c; if((c = mallocz(sizeof(Chan) + size*sizeof(void*), 1)) == nil) sysfatal("create channel"); c->size = size; c->avail = size; c->count = 0; c->rp = c->args; c->wp = c->args; return c; } Fmsg* chrecv(Chan *c) { void *a; long v; v = c->count; if(v == 0 || cas(&c->count, v, v-1) == 0) semacquire(&c->count, 1); lock(&c->rl); a = *c->rp; if(++c->rp >= &c->args[c->size]) c->rp = c->args; unlock(&c->rl); semrelease(&c->avail, 1); return a; } void chsend(Chan *c, Fmsg *m) { long v; v = c->avail; if(v == 0 || cas(&c->avail, v, v-1) == 0) semacquire(&c->avail, 1); lock(&c->wl); *c->wp = m; if(++c->wp >= &c->args[c->size]) c->wp = c->args; unlock(&c->wl); semrelease(&c->count, 1); } static void fshangup(int fd, char *fmt, ...) { va_list ap; va_start(ap, fmt); vfprint(2, fmt, ap); va_end(ap); close(fd); abort(); } static void respond(Fmsg *m, Fcall *r) { uchar buf[Max9p]; int w, n; r->tag = m->tag; dprint("→ %F\n", r); if((n = convS2M(r, buf, sizeof(buf))) == 0){ fprint(2, "wut: %r\n"); abort(); } w = write(m->fd, buf, n); if(w != n) fshangup(m->fd, Eio); free(m); } static void rerror(Fmsg *m, char *fmt, ...) { char buf[128]; va_list ap; Fcall r; va_start(ap, fmt); vsnprint(buf, sizeof(buf), fmt, ap); va_end(ap); r.type = Rerror; r.ename = buf; respond(m, &r); } static char* lookup(Fid *f, Key *k, Kvp *kv, char *buf, int nbuf, int lk) { char *e; Tree *r; if(f->mnt == nil) return Eattach; if(lk) rlock(f->dent); lock(f->mnt); r = f->mnt->root; unlock(f->mnt); e = btlookup(r, k, kv, buf, nbuf); if(lk) runlock(f->dent); return e; } /* * Clears all blocks in that intersect with * the range listed. */ static char* clearb(Fid *f, vlong o, vlong sz) { char *e, buf[Offksz]; Msg m; o &= ~(Blksz - 1); for(; o < sz; o += Blksz){ m.k = buf; m.nk = sizeof(buf); m.op = Oclearb; m.k[0] = Kdat; PBIT64(m.k+1, f->qpath); PBIT64(m.k+9, o); m.v = nil; m.nv = 0; if((e = btupsert(f->mnt->root, &m, 1)) != nil) return e; } return nil; } static int readb(Fid *f, char *d, vlong o, vlong n, int sz) { char *e, buf[17], kvbuf[17+32]; vlong fb, fo; Bptr bp; Blk *b; Key k; Kvp kv; if(o >= sz) return 0; fb = o & ~(Blksz-1); fo = o & (Blksz-1); k.k = buf; k.nk = sizeof(buf); k.k[0] = Kdat; PBIT64(k.k+1, f->qpath); PBIT64(k.k+9, fb); e = lookup(f, &k, &kv, kvbuf, sizeof(kvbuf), 0); if(e != nil && e != Eexist){ werrstr(e); return -1; } bp = unpackbp(kv.v, kv.nv); if((b = getblk(bp, GBraw)) == nil) return -1; if(fo+n > Blksz) n = Blksz-fo; if(b != nil){ memcpy(d, b->buf+fo, n); putblk(b); }else memset(d, 0, n); return n; } static int writeb(Fid *f, Msg *m, Bptr *ret, char *s, vlong o, vlong n, vlong sz) { char buf[Kvmax]; vlong fb, fo; Blk *b, *t; Bptr bp; Kvp kv; fb = o & ~(Blksz-1); fo = o & (Blksz-1); m->k[0] = Kdat; PBIT64(m->k+1, f->qpath); PBIT64(m->k+9, fb); b = newblk(Traw); if(b == nil) return -1; if(fb < sz && (fo != 0 || n != Blksz)){ if(lookup(f, m, &kv, buf, sizeof(buf), 0) != nil) return -1; bp = unpackbp(kv.v, kv.nv); if((t = getblk(bp, GBraw)) == nil) return -1; memcpy(b->buf, t->buf, Blksz); freeblk(f->mnt->root, t); putblk(t); } if(fo+n > Blksz) n = Blksz-fo; memcpy(b->buf+fo, s, n); enqueue(b); packbp(m->v, m->nv, &b->bp); *ret = b->bp; putblk(b); return n; } static Dent* getdent(vlong pqid, Xdir *d) { Dent *de; char *e; u32int h; h = ihash(d->qid.path) % Ndtab; lock(&fs->dtablk); for(de = fs->dtab[h]; de != nil; de = de->next){ if(de->qid.path == d->qid.path){ ainc(&de->ref); unlock(&fs->dtablk); return de; } } if((de = mallocz(sizeof(Dent), 1)) == nil) return nil; de->Xdir = *d; de->ref = 1; de->qid = d->qid; de->length = d->length; if((e = packdkey(de->buf, sizeof(de->buf), pqid, d->name)) == nil) return nil; de->k = de->buf; de->nk = e - de->buf; de->next = fs->dtab[h]; fs->dtab[h] = de; unlock(&fs->dtablk); return de; } static void clunkmount(Mount *mnt) { if(mnt != nil && adec(&mnt->ref) == 0) free(mnt); } static void clunkdent(Dent *de) { Dent *e, **pe; u32int h; if(adec(&de->ref) == 0){ h = ihash(de->qid.path) % Ndtab; lock(&fs->dtablk); pe = &fs->dtab[h]; for(e = fs->dtab[h]; e != nil; e = e->next){ if(e == de){ *pe = e->next; unlock(&fs->dtablk); free(de); return; } pe = &e->next; } abort(); } } void showfid(int fd, char**, int) { int i; Fid *f; lock(&fs->fidtablk); fprint(fd, "fids:---\n"); for(i = 0; i < Nfidtab; i++) for(f = fs->fidtab[i]; f != nil; f = f->next){ rlock(f->dent); fprint(fd, "\tfid[%d]: %d [refs=%ld, k=%K, qid=%Q]\n", i, f->fid, f->dent->ref, &f->dent->Key, f->dent->qid); runlock(f->dent); } unlock(&fs->fidtablk); } static Fid* getfid(u32int fid) { u32int h; Fid *f; h = ihash(fid) % Nfidtab; lock(&fs->fidtablk); for(f = fs->fidtab[h]; f != nil; f = f->next) if(f->fid == fid) break; unlock(&fs->fidtablk); if(f != nil) ainc(&f->ref); return f; } static void putfid(Fid *f) { if(adec(&f->ref) != 0) return; clunkmount(f->mnt); clunkdent(f->dent); free(f); } static Fid* dupfid(int new, Fid *f) { Fid *n, *o; u32int h; h = ihash(new) % Nfidtab; if((n = malloc(sizeof(Fid))) == nil) return nil; *n = *f; n->fid = new; n->ref = 2; /* one for dup, one for clunk */ n->mode = -1; n->next = nil; if(n->mnt != nil) ainc(&n->mnt->ref); lock(&fs->fidtablk); ainc(&n->dent->ref); for(o = fs->fidtab[h]; o != nil; o = o->next) if(o->fid == new) break; if(o == nil){ n->next = fs->fidtab[h]; fs->fidtab[h] = n; } unlock(&fs->fidtablk); if(o != nil){ fprint(2, "fid in use: %d == %d", o->fid, new); abort(); free(n); return nil; } return n; } static void clunkfid(Fid *fid) { Fid *f, **pf; u32int h; lock(&fs->fidtablk); h = ihash(fid->fid) % Nfidtab; pf = &fs->fidtab[h]; for(f = fs->fidtab[h]; f != nil; f = f->next){ if(f == fid){ assert(adec(&f->ref) != 0); *pf = f->next; break; } pf = &f->next; } unlock(&fs->fidtablk); } static Fmsg* readmsg(int fd, int max) { char szbuf[4]; int sz; Fmsg *m; if(readn(fd, szbuf, 4) != 4) return nil; sz = GBIT32(szbuf); if(sz > max) return nil; if((m = malloc(sizeof(Fmsg)+sz)) == nil) return nil; if(readn(fd, m->buf+4, sz-4) != sz-4){ werrstr("short read: %r"); free(m); return nil; } m->fd = fd; m->sz = sz; m->a = nil; PBIT32(m->buf, sz); return m; } static void fsversion(Fmsg *m, int *msz) { Fcall r; memset(&r, 0, sizeof(Fcall)); if(strcmp(m->version, "9P2000") == 0){ if(m->msize < *msz) *msz = m->msize; r.type = Rversion; r.msize = *msz; }else{ r.type = Rversion; r.version = "unknown"; } respond(m, &r); } void authfree(AuthRpc *auth) { AuthRpc *rpc; if(rpc = auth){ close(rpc->afd); auth_freerpc(rpc); } } AuthRpc* authnew(void) { static char *keyspec = "proto=p9any role=server"; AuthRpc *rpc; int fd; if(access("/mnt/factotum", 0) < 0) if((fd = open("/srv/factotum", ORDWR)) >= 0) mount(fd, -1, "/mnt", MBEFORE, ""); if((fd = open("/mnt/factotum/rpc", ORDWR)) < 0) return nil; if((rpc = auth_allocrpc(fd)) == nil){ close(fd); return nil; } if(auth_rpc(rpc, "start", keyspec, strlen(keyspec)) != ARok){ authfree(rpc); return nil; } return rpc; } static void fsauth(Fmsg *m, int iounit) { Dent *de; Fcall r; Fid f; if(fs->noauth){ rerror(m, Eauth); return; } if((de = mallocz(sizeof(Dent), 1)) == nil){ rerror(m, Enomem); return; } memset(de, 0, sizeof(Dent)); de->ref = 1; de->qid.type = QTAUTH; de->qid.path = inc64(&fs->nextqid, 1); de->qid.vers = 0; de->length = 0; de->k = nil; de->nk = 0; memset(&f, 0, sizeof(Fid)); f.fid = NOFID; f.mnt = nil; f.qpath = de->qid.path; f.pqpath = de->qid.path; f.mode = -1; f.iounit = iounit; f.dent = de; f.uid = -1; f.duid = -1; f.dgid = -1; f.dmode = 0600; f.auth = authnew(); if(dupfid(m->afid, &f) == nil){ rerror(m, Enomem); return; } r.type = Rauth; r.aqid = de->qid; respond(m, &r); } static int ingroup(int uid, int gid) { User *u, *g; int i, in; rlock(&fs->userlk); in = 0; u = uid2user(uid); g = uid2user(gid); if(u != nil && g != nil) for(i = 0; i < g->nmemb; i++) if(u->id == g->memb[i]) in = 1; runlock(&fs->userlk); return in; } static int mode2bits(int req) { int m; m = 0; switch(req&0xf){ case OREAD: m = DMREAD; break; case OWRITE: m = DMWRITE; break; case ORDWR: m = DMREAD|DMWRITE; break; case OEXEC: m = DMREAD|DMEXEC; break; } if(req&OTRUNC) m |= DMWRITE; return m; } static int fsaccess(Fid *f, int fmode, int fuid, int fgid, int m) { /* uid none gets only other permissions */ if(f->uid != 0) { if(f->uid == fuid) if((m & (fmode>>6)) == m) return 0; if(ingroup(f->uid, fgid)) if((m & (fmode>>3)) == m) return 0; } if(m & fmode) { if((fmode & DMDIR) && (m == DMEXEC)) return 0; if(!ingroup(f->uid, 9999)) return 0; } return -1; } static void fsattach(Fmsg *m, int iounit) { char *e, *p, dbuf[Kvmax], kvbuf[Kvmax]; Mount *mnt; Dent *de; User *u; Fcall r; Xdir d; Kvp kv; Key dk; Fid f; if((mnt = mallocz(sizeof(Mount), 1)) == nil){ rerror(m, Emem); return; } if((mnt->name = strdup(m->aname)) == nil){ rerror(m, Emem); return; } rlock(&fs->userlk); if((u = name2user(m->uname)) == nil){ rerror(m, Enouser); runlock(&fs->userlk); return; } runlock(&fs->userlk); if((mnt->root = openlabel(m->aname)) == nil){ rerror(m, Enosnap); return; } if((p = packdkey(dbuf, sizeof(dbuf), -1ULL, "")) == nil){ rerror(m, Elength); return; } dk.k = dbuf; dk.nk = p - dbuf; if((e = btlookup(mnt->root, &dk, &kv, kvbuf, sizeof(kvbuf))) != nil){ rerror(m, e); return; } if(kv2dir(&kv, &d) == -1){ rerror(m, Efs); return; } if((de = getdent(-1, &d)) == nil){ rerror(m, Efs); return; } /* * A bit of a hack; we're duping a fid * that doesn't exist, so we'd be off * by one on the refcount. Adjust to * compensate for the dup. */ adec(&de->ref); memset(&f, 0, sizeof(Fid)); f.fid = NOFID; f.mnt = mnt; f.qpath = d.qid.path; f.pqpath = d.qid.path; f.mode = -1; f.iounit = iounit; f.dent = de; f.uid = u->id; f.duid = u->id; f.dgid = d.gid; f.dmode = d.mode; if(dupfid(m->fid, &f) == nil){ rerror(m, Enomem); return; } mnt->next = fs->mounts; fs->mounts = mnt; r.type = Rattach; r.qid = d.qid; respond(m, &r); return; } static char* findparent(Fid *f, vlong *qpath, char **name, char *buf, int nbuf) { char *p, *e, kbuf[Keymax]; Kvp kv; Key k; if((p = packsuper(kbuf, sizeof(kbuf), f->pqpath)) == nil) return Elength; k.k = kbuf; k.nk = p - kbuf; if((e = lookup(f, &k, &kv, buf, nbuf, 0)) != nil) return e; if((*name = unpackdkey(kv.v, kv.nv, qpath)) == nil) return Efs; return nil; } static void fswalk(Fmsg *m) { char *p, *e, *name, kbuf[Maxent], kvbuf[Kvmax]; int duid, dgid, dmode; vlong up, prev; Fid *o, *f; Dent *dent; Fcall r; Xdir d; Kvp kv; Key k; int i; if((o = getfid(m->fid)) == nil){ rerror(m, Efid); return; } if(o->mode != -1){ rerror(m, Einuse); return; } e = nil; up = o->qpath; prev = o->qpath; d = *o->dent; duid = d.uid; dgid = d.gid; dmode = d.mode; r.type = Rwalk; for(i = 0; i < m->nwname; i++){ name = m->wname[i]; if(strcmp(m->wname[i], "..") == 0){ if((e = findparent(o, &prev, &name, kbuf, sizeof(kbuf))) != nil){ rerror(m, e); putfid(o); return; } } if((p = packdkey(kbuf, sizeof(kbuf), prev, name)) == nil){ rerror(m, Elength); putfid(o); return; } k.k = kbuf; k.nk = p - kbuf; if((e = lookup(o, &k, &kv, kvbuf, sizeof(kvbuf), 0)) != nil) break; duid = d.uid; dgid = d.gid; dmode = d.mode; if(kv2dir(&kv, &d) == -1){ rerror(m, Efs); putfid(o); return; } up = prev; prev = d.qid.path; r.wqid[i] = d.qid; } r.nwqid = i; if(i == 0 && m->nwname != 0){ rerror(m, e); putfid(o); return; } f = o; if(m->fid != m->newfid && i == m->nwname){ if((f = dupfid(m->newfid, o)) == nil){ rerror(m, Emem); putfid(o); return; } putfid(o); } if(i > 0){ dent = getdent(up, &d); if(dent == nil){ if(m->fid != m->newfid) clunkfid(f); rerror(m, Enomem); putfid(f); return; } if(i == m->nwname){ f->qpath = r.wqid[i-1].path; f->pqpath = up; f->dent = dent; f->duid = duid; f->dgid = dgid; f->dmode = dmode; } } respond(m, &r); putfid(f); } static void fsstat(Fmsg *m) { char *err, buf[STATMAX], kvbuf[Kvmax]; Fcall r; Fid *f; Kvp kv; int n; if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } if((err = btlookup(f->mnt->root, f->dent, &kv, kvbuf, sizeof(kvbuf))) != nil){ rerror(m, err); putfid(f); return; } if((n = kv2statbuf(&kv, buf, sizeof(buf))) == -1){ rerror(m, "stat: %r"); putfid(f); return; } r.type = Rstat; r.stat = (uchar*)buf; r.nstat = n; respond(m, &r); putfid(f); } static void fswstat(Fmsg *m) { char *p, *e, strs[65535], rnbuf[Kvmax], opbuf[Kvmax], kvbuf[Kvmax]; int op, nm, sync, rename; vlong up; Fcall r; Dent *de; Msg mb[3]; Xdir o; Dir d; Fid *f; Kvp kv; Key k; nm = 0; sync = 1; rename = 0; if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } de = f->dent; k = f->dent->Key; wlock(de); if(f->dent->qid.type != QTDIR && f->dent->qid.type != QTFILE){ rerror(m, Efid); goto Out; } if(convM2D(m->stat, m->nstat, &d, strs) <= BIT16SZ){ rerror(m, Edir); goto Out; } if(fsaccess(f, de->mode, de->uid, de->gid, DMWRITE) == -1){ rerror(m, Eperm); goto Out; } /* A nop qid change is allowed. */ if(d.qid.path != ~0 || d.qid.vers != ~0){ if(d.qid.path != de->qid.path){ rerror(m, Ewstatp); goto Out; } if(d.qid.vers != de->qid.vers){ rerror(m, Ewstatv); goto Out; } sync = 0; } /* * rename: verify name is valid, same name renames are nops. * this is inserted into the tree as a pair of delete/create * messages. */ if(d.name != nil && *d.name != '\0'){ if(okname(d.name) == -1){ rerror(m, Ename); goto Out; } /* renaming to the same name is a nop. */ mb[nm].op = Odelete; mb[nm].Key = f->dent->Key; mb[nm].v = nil; mb[nm].nv = 0; nm++; if((e = btlookup(f->mnt->root, de, &kv, kvbuf, sizeof(kvbuf))) != nil){ rerror(m, e); goto Out; } if(kv2dir(&kv, &o) == -1){ rerror(m, "stat: %r"); goto Out; } o.name = d.name; mb[nm].op = Oinsert; up = GBIT64(f->dent->k+1); if(dir2kv(up, &o, &mb[nm], rnbuf, sizeof(rnbuf)) == -1){ rerror(m, Efs); goto Out; } k = mb[nm].Key; rename = 1; sync = 0; nm++; } p = opbuf+1; op = 0; mb[nm].Key = k; mb[nm].op = Owstat; de->qid.vers++; if(d.length != ~0){ op |= Owsize; de->length = d.length; PBIT64(p, d.length); p += 8; sync = 0; } if(d.mode != ~0){ op |= Owmode; de->mode = d.mode; PBIT32(p, d.mode); p += 4; sync = 0; } if(d.mtime != ~0){ op |= Owmtime; de->mtime = d.mtime; PBIT64(p, (vlong)d.mtime*Nsec); p += 8; sync = 0; } op |= Owmuid; de->muid = f->uid; PBIT32(p, f->uid); p += 4; opbuf[0] = op; mb[nm].v = opbuf; mb[nm].nv = p - opbuf; nm++; if(sync){ rerror(m, Eimpl); }else{ if((e = btupsert(f->mnt->root, mb, nm)) != nil){ rerror(m, e); goto Out; } r.type = Rwstat; respond(m, &r); } if(rename) cpkey(f->dent, &k, f->dent->buf, sizeof(f->dent->buf)); Out: wunlock(de); putfid(f); } static void fsclunk(Fmsg *m) { Fcall r; Fid *f; if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } lock(f); if(f->scan != nil){ btdone(f->scan); f->scan = nil; } unlock(f); clunkfid(f); r.type = Rclunk; respond(m, &r); putfid(f); } static void fscreate(Fmsg *m) { char *p, *e, buf[Kvmax], upkbuf[Keymax], upvbuf[Inlmax]; Dent *de; Fcall r; Msg mb[2]; Fid *f; Xdir d; int nm; if(okname(m->name) == -1){ rerror(m, Ename); return; } if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } if(m->perm & (DMMOUNT|DMAUTH)){ rerror(m, "unknown permission"); return; } de = f->dent; rlock(de); if(fsaccess(f, de->mode, de->uid, de->gid, DMWRITE) == -1){ rerror(m, Eperm); runlock(de); return; } runlock(de); nm = 0; d.qid.type = 0; if(m->perm & DMDIR) d.qid.type |= QTDIR; if(m->perm & DMAPPEND) d.qid.type |= QTAPPEND; if(m->perm & DMEXCL) d.qid.type |= QTEXCL; if(m->perm & DMTMP) d.qid.type |= QTTMP; d.qid.path = inc64(&fs->nextqid, 1); d.qid.vers = 0; d.mode = m->perm; d.name = m->name; d.atime = nsec(); d.mtime = d.atime; d.length = 0; d.uid = f->uid; d.gid = f->dgid; d.muid = f->uid; mb[nm].op = Oinsert; if(dir2kv(f->qpath, &d, &mb[nm], buf, sizeof(buf)) == -1){ rerror(m, Efs); putfid(f); return; } nm++; if(m->perm & DMDIR){ mb[nm].op = Oinsert; if((p = packsuper(upkbuf, sizeof(upkbuf), d.qid.path)) == nil) sysfatal("ream: pack super"); mb[nm].k = upkbuf; mb[nm].nk = p - upkbuf; if((p = packdkey(upvbuf, sizeof(upvbuf), f->qpath, d.name)) == nil) sysfatal("ream: pack super"); mb[nm].v = upvbuf; mb[nm].nv = p - upvbuf; nm++; } if((e = btupsert(f->mnt->root, mb, nm)) != nil){ rerror(m, e); putfid(f); return; } de = getdent(f->qpath, &d); if(de == nil){ if(m->fid != m->newfid) clunkfid(f); rerror(m, Enomem); putfid(f); return; }else{ wlock(de); de->length = 0; wunlock(de); } lock(f); if(f->mode != -1){ unlock(f); clunkdent(de); rerror(m, Einuse); putfid(f); return; } f->mode = mode2bits(m->mode); f->qpath = d.qid.path; f->dent = de; wlock(de); if((e = clearb(f, 0, de->length)) != nil){ unlock(f); clunkdent(de); rerror(m, e); putfid(f); return; } de->length = 0; wunlock(de); unlock(f); r.type = Rcreate; r.qid = d.qid; r.iounit = f->iounit; respond(m, &r); putfid(f); } static char* candelete(Fid *f) { char *e, pfx[Dpfxsz]; int done; Scan *s; if(f->dent->qid.type == QTFILE) return nil; if((s = mallocz(sizeof(Scan), 1)) == nil) return Enomem; pfx[0] = Kent; PBIT64(pfx+1, f->qpath); if((e = btscan(f->mnt->root, s, pfx, sizeof(pfx))) != nil){ btdone(s); free(s); return e; } done = 0; if((e = btnext(s, &s->kv, &done)) != nil) return e; btdone(s); if(done) return nil; return Enempty; } static void fsremove(Fmsg *m) { Fcall r; Msg mb; Fid *f; char *e; if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } rlock(f->dent); if((e = candelete(f)) != nil){ runlock(f->dent); rerror(m, e); clunkfid(f); return; } if(fsaccess(f, f->dmode, f->duid, f->dgid, OWRITE) == -1){ rerror(m, Eperm); runlock(f->dent); return; } mb.op = Odelete; mb.k = f->dent->k; mb.nk = f->dent->nk; mb.nv = 0; if((e = btupsert(f->mnt->root, &mb, 1)) != nil){ runlock(f->dent); rerror(m, e); clunkfid(f); return; } if(f->dent->qid.type == QTFILE){ if((e = clearb(f, 0, f->dent->length)) != nil){ runlock(f->dent); rerror(m, e); clunkfid(f); return; } } runlock(f->dent); r.type = Rremove; respond(m, &r); clunkfid(f); } static void fsopen(Fmsg *m) { char *p, *e, buf[Kvmax]; int mbits; Fcall r; Xdir d; Fid *f; Kvp kv; Msg mb; mbits = mode2bits(m->mode); if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } if((e = lookup(f, f->dent, &kv, buf, sizeof(buf), 0)) != nil){ rerror(m, e); putfid(f); return; } if(kv2dir(&kv, &d) == -1){ rerror(m, Efs); putfid(f); return; } if(fsaccess(f, d.mode, d.uid, d.gid, mbits) == -1){ rerror(m, Eperm); putfid(f); return; } wlock(f->dent); f->dent->length = d.length; wunlock(f->dent); r.type = Ropen; r.qid = d.qid; r.iounit = f->iounit; lock(f); if(f->mode != -1){ rerror(m, Einuse); unlock(f); putfid(f); return; } f->mode = mode2bits(m->mode); // if(!fs->rdonly && (m->mode == OEXEC)){ // lock(&fs->root.lk); // f->root = fs->root; // refblk(fs->root.bp); // unlock(&fs->root.lk); // } if(m->mode & OTRUNC){ wlock(f->dent); f->dent->muid = f->uid; f->dent->qid.vers++; f->dent->length = 0; mb.op = Owstat; p = buf; p[0] = Owsize|Owmuid; p += 1; PBIT64(p, 0); p += 8; PBIT32(p, f->uid); p += 4; mb.k = f->dent->k; mb.nk = f->dent->nk; mb.v = buf; mb.nv = p - buf; clearb(f, 0, f->dent->length); if((e = btupsert(f->mnt->root, &mb, 1)) != nil){ wunlock(f->dent); rerror(m, e); return; } wunlock(f->dent); } unlock(f); respond(m, &r); putfid(f); } static char* readauth(Fmsg *m, Fid *f, Fcall *r) { AuthInfo *ai; AuthRpc *rpc; User *u; if((rpc = f->auth) == nil) return Etype; switch(auth_rpc(rpc, "read", nil, 0)){ default: return Eauthp; case ARdone: if((ai = auth_getinfo(rpc)) == nil) goto Phase; u = name2user(ai->cuid); auth_freeAI(ai); if(u == nil) return Enouser; f->uid = u->id; return nil; case ARok: if(m->count < rpc->narg) return Eauthd; if((r->data = malloc(rpc->narg)) == nil) return Emem; memmove(r->data, rpc->arg, rpc->narg); r->count = rpc->narg; return nil; case ARphase: Phase: return Ephase; } } static char* readdir(Fmsg *m, Fid *f, Fcall *r) { char pfx[Dpfxsz], *p, *e; int n, ns, done; Scan *s; s = f->scan; if(s != nil && s->offset != 0 && s->offset != m->offset) return Edscan; if((r->data = malloc(m->count)) == nil) return Enomem; if(s == nil || m->offset == 0){ if((s = mallocz(sizeof(Scan), 1)) == nil) return Enomem; pfx[0] = Kent; PBIT64(pfx+1, f->qpath); if((e = btscan(f->mnt->root, s, pfx, sizeof(pfx))) != nil){ btdone(s); return e; } lock(f); if(f->scan != nil) btdone(f->scan); f->scan = s; unlock(f); } if(s->done){ r->count = 0; return nil; } p = r->data; n = m->count; if(s->overflow){ if((ns = kv2statbuf(&s->kv, p, n)) == -1) return Edscan; s->overflow = 0; p += ns; n -= ns; } while(1){ if((e = btnext(s, &s->kv, &done)) != nil) return e; if(done) break; if((ns = kv2statbuf(&s->kv, p, n)) == -1){ s->overflow = 1; break; } p += ns; n -= ns; } r->count = p - r->data; return nil; } static char* readfile(Fmsg *m, Fid *f, Fcall *r) { vlong n, c, o; char *p; Dent *e; e = f->dent; rlock(e); if(m->offset > e->length){ runlock(e); return nil; } p = r->data; c = m->count; o = m->offset; if(m->offset + m->count > e->length) c = e->length - m->offset; while(c != 0){ n = readb(f, p, o, c, e->length); if(n == -1){ fprint(2, "read %K [%Q]@%lld+%lld: %r\n", &e->Key, e->qid, o, c); runlock(e); return Efs; } r->count += n; if(n == 0) break; p += n; o += n; c -= n; } runlock(e); return nil; } static void fsread(Fmsg *m) { char *e; Fcall r; Fid *f; if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } r.type = Rread; r.count = 0; if((r.data = malloc(m->count)) == nil){ rerror(m, Emem); putfid(f); return; } if(f->dent->qid.type & QTAUTH) e = readauth(m, f, &r); else if(f->dent->qid.type & QTDIR) e = readdir(m, f, &r); else e = readfile(m, f, &r); if(e != nil) rerror(m, e); else respond(m, &r); free(r.data); putfid(f); } static char* writeauth(Fmsg *m, Fid *f, Fcall *r) { AuthRpc *rpc; if((rpc = f->auth) == nil) return Etype; if(auth_rpc(rpc, "write", m->data, m->count) != ARok) return Ebotch; r->type = Rwrite; r->count = m->count; return nil; } static void fswrite(Fmsg *m) { char sbuf[Wstatmax], kbuf[4][Offksz], vbuf[4][Ptrsz]; char *p, *e; vlong n, o, c; int i, j; Bptr bp[4]; Msg kv[4]; Fcall r; Fid *f; if((f = getfid(m->fid)) == nil){ rerror(m, Efid); return; } if(!(f->mode & DMWRITE)){ rerror(m, Einuse); putfid(f); return; } if(f->dent->qid.type == QTAUTH){ e = writeauth(m, f, &r); if(e != nil) rerror(m, e); else respond(m, &r); putfid(f); return; } wlock(f->dent); p = m->data; o = m->offset; c = m->count; for(i = 0; i < nelem(kv)-1 && c != 0; i++){ kv[i].op = Oinsert; kv[i].k = kbuf[i]; kv[i].nk = sizeof(kbuf[i]); kv[i].v = vbuf[i]; kv[i].nv = sizeof(vbuf[i]); n = writeb(f, &kv[i], &bp[i], p, o, c, f->dent->length); if(n == -1){ for(j = 0; j < i; j++) freebp(f->mnt->root, bp[i]); wunlock(f->dent); rerror(m, "%r"); putfid(f); abort(); return; } p += n; o += n; c -= n; } p = sbuf; kv[i].op = Owstat; kv[i].k = f->dent->k; kv[i].nk = f->dent->nk; n = m->offset+m->count; *p++ = 0; if(n > f->dent->length){ sbuf[0] |= Owsize; PBIT64(p, n); p += 8; f->dent->length = m->offset+m->count; } sbuf[0] |= Owmuid; PBIT32(p, f->uid); p += 4; kv[i].v = sbuf; kv[i].nv = p - sbuf; if((e = btupsert(f->mnt->root, kv, i+1)) != nil){ rerror(m, e); putfid(f); abort(); return; } wunlock(f->dent); r.type = Rwrite; r.count = m->count; respond(m, &r); putfid(f); } void runfs(int wid, void *pfd) { int fd, msgmax, versioned; char err[128]; Fcall r; Fmsg *m; fd = (uintptr)pfd; msgmax = Max9p; versioned = 0; while(1){ if((m = readmsg(fd, msgmax)) == nil){ fshangup(fd, "truncated message: %r"); return; } quiesce(wid); if(convM2S(m->buf, m->sz, m) == 0){ fshangup(fd, "invalid message: %r"); return; } if(m->type != Tversion && !versioned){ fshangup(fd, "version required"); return; } versioned = 1; dprint("← %F\n", &m->Fcall); switch(m->type){ /* sync setup */ case Tversion: fsversion(m, &msgmax); break; case Tauth: fsauth(m, msgmax); break; case Tclunk: fsclunk(m); break; case Tattach: fsattach(m, msgmax); break; /* mutators */ case Tcreate: chsend(fs->wrchan, m); break; case Twrite: chsend(fs->wrchan, m); break; case Twstat: chsend(fs->wrchan, m); break; case Tremove: chsend(fs->wrchan, m); break; /* reads */ case Tflush: chsend(fs->rdchan, m); break; case Twalk: chsend(fs->rdchan, m); break; case Tread: chsend(fs->rdchan, m); break; case Tstat: chsend(fs->rdchan, m); break; /* both */ case Topen: if(m->mode & OTRUNC) chsend(fs->wrchan, m); else chsend(fs->rdchan, m); break; default: fprint(2, "unknown message %F\n", &m->Fcall); snprint(err, sizeof(err), "unknown message: %F", &m->Fcall); r.type = Rerror; r.ename = err; respond(m, &r); break; } quiesce(wid); } } void runwrite(int wid, void *) { Mount *mnt; Fmsg *m; int ao; while(1){ m = chrecv(fs->wrchan); quiesce(wid); ao = (m->a == nil) ? AOnone : m->a->op; switch(ao){ case AOnone: if(fs->rdonly){ rerror(m, Erdonly); return; } if(fs->broken){ rerror(m, Efs); return; } switch(m->type){ case Tcreate: fscreate(m); break; case Twrite: fswrite(m); break; case Twstat: fswstat(m); break; case Tremove: fsremove(m); break; case Topen: fsopen(m); break; } break; case AOsync: if(m->a->fd != -1) fprint(m->a->fd, "syncing [readonly: %d]\n", m->a->halt); if(m->a->halt) ainc(&fs->rdonly); for(mnt = fs->mounts; mnt != nil; mnt = mnt->next) updatemount(mnt); sync(); freemsg(m); break; case AOsnap: snapfs(m->a->fd, m->a->old, m->a->new); freemsg(m); break; } quiesce(wid); } } void runread(int wid, void *) { Fmsg *m; while(1){ m = chrecv(fs->rdchan); quiesce(wid); switch(m->type){ case Tflush: rerror(m, Eimpl); break; case Twalk: fswalk(m); break; case Tread: fsread(m); break; case Tstat: fsstat(m); break; case Topen: fsopen(m); break; } quiesce(wid); } } void runtasks(int, void *) { Fmsg *m; Amsg *a; while(1){ sleep(5000); m = mallocz(sizeof(Fmsg), 1); a = mallocz(sizeof(Amsg), 1); if(m == nil || a == nil){ fprint(2, "alloc sync msg: %r\n"); free(m); free(a); return; } a->op = AOsync; a->halt = 0; a->fd = -1; m->a = a; chsend(fs->wrchan, m); } }