1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51491Sahrens * Common Development and Distribution License (the "License"). 61491Sahrens * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 21789Sahrens /* 221402Sahrens * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 23789Sahrens * Use is subject to license terms. 24789Sahrens */ 25789Sahrens 26789Sahrens #pragma ident "%Z%%M% %I% %E% SMI" 27789Sahrens 28789Sahrens #include <sys/zfs_context.h> 29789Sahrens #include <sys/dbuf.h> 30789Sahrens #include <sys/dnode.h> 31789Sahrens #include <sys/dmu.h> 32789Sahrens #include <sys/dmu_impl.h> 33789Sahrens #include <sys/dmu_tx.h> 34789Sahrens #include <sys/dmu_objset.h> 35789Sahrens #include <sys/dsl_dir.h> 36789Sahrens #include <sys/dsl_dataset.h> 37789Sahrens #include <sys/spa.h> 38789Sahrens #include <sys/zio.h> 39789Sahrens #include <sys/dmu_zfetch.h> 40789Sahrens 41789Sahrens static int free_range_compar(const void *node1, const void *node2); 42789Sahrens 43789Sahrens static kmem_cache_t *dnode_cache; 44789Sahrens 45789Sahrens static dnode_phys_t dnode_phys_zero; 46789Sahrens 47789Sahrens int zfs_default_bs = SPA_MINBLOCKSHIFT; 48789Sahrens int zfs_default_ibs = DN_MAX_INDBLKSHIFT; 49789Sahrens 50789Sahrens /* ARGSUSED */ 51789Sahrens static int 52789Sahrens dnode_cons(void *arg, void *unused, int kmflag) 53789Sahrens { 54789Sahrens int i; 55789Sahrens dnode_t *dn = arg; 56789Sahrens bzero(dn, sizeof (dnode_t)); 57789Sahrens 58789Sahrens rw_init(&dn->dn_struct_rwlock, NULL, RW_DEFAULT, NULL); 59789Sahrens mutex_init(&dn->dn_mtx, NULL, MUTEX_DEFAULT, NULL); 60789Sahrens mutex_init(&dn->dn_dbufs_mtx, NULL, MUTEX_DEFAULT, NULL); 61789Sahrens refcount_create(&dn->dn_holds); 62789Sahrens refcount_create(&dn->dn_tx_holds); 63789Sahrens 64789Sahrens for (i = 0; i < TXG_SIZE; i++) { 65789Sahrens avl_create(&dn->dn_ranges[i], free_range_compar, 66789Sahrens sizeof (free_range_t), 67789Sahrens offsetof(struct free_range, fr_node)); 68789Sahrens list_create(&dn->dn_dirty_dbufs[i], 69789Sahrens sizeof (dmu_buf_impl_t), 70789Sahrens offsetof(dmu_buf_impl_t, db_dirty_node[i])); 71789Sahrens } 72789Sahrens 73789Sahrens list_create(&dn->dn_dbufs, sizeof (dmu_buf_impl_t), 74789Sahrens offsetof(dmu_buf_impl_t, db_link)); 75789Sahrens 76789Sahrens return (0); 77789Sahrens } 78789Sahrens 79789Sahrens /* ARGSUSED */ 80789Sahrens static void 81789Sahrens dnode_dest(void *arg, void *unused) 82789Sahrens { 83789Sahrens int i; 84789Sahrens dnode_t *dn = arg; 85789Sahrens 86789Sahrens rw_destroy(&dn->dn_struct_rwlock); 87789Sahrens mutex_destroy(&dn->dn_mtx); 88789Sahrens mutex_destroy(&dn->dn_dbufs_mtx); 89789Sahrens refcount_destroy(&dn->dn_holds); 90789Sahrens refcount_destroy(&dn->dn_tx_holds); 91789Sahrens 92789Sahrens for (i = 0; i < TXG_SIZE; i++) { 93789Sahrens avl_destroy(&dn->dn_ranges[i]); 94789Sahrens list_destroy(&dn->dn_dirty_dbufs[i]); 95789Sahrens } 96789Sahrens 97789Sahrens list_destroy(&dn->dn_dbufs); 98789Sahrens } 99789Sahrens 100789Sahrens void 101789Sahrens dnode_init(void) 102789Sahrens { 103789Sahrens dnode_cache = kmem_cache_create("dnode_t", 104789Sahrens sizeof (dnode_t), 105789Sahrens 0, dnode_cons, dnode_dest, NULL, NULL, NULL, 0); 106789Sahrens } 107789Sahrens 108789Sahrens void 109789Sahrens dnode_fini(void) 110789Sahrens { 111789Sahrens kmem_cache_destroy(dnode_cache); 112789Sahrens } 113789Sahrens 114789Sahrens 115873Sek110237 #ifdef ZFS_DEBUG 116789Sahrens void 117789Sahrens dnode_verify(dnode_t *dn) 118789Sahrens { 119789Sahrens int drop_struct_lock = FALSE; 120789Sahrens 121789Sahrens ASSERT(dn->dn_phys); 122789Sahrens ASSERT(dn->dn_objset); 123789Sahrens 124789Sahrens ASSERT(dn->dn_phys->dn_type < DMU_OT_NUMTYPES); 125789Sahrens 126789Sahrens if (!(zfs_flags & ZFS_DEBUG_DNODE_VERIFY)) 127789Sahrens return; 128789Sahrens 129789Sahrens if (!RW_WRITE_HELD(&dn->dn_struct_rwlock)) { 130789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_READER); 131789Sahrens drop_struct_lock = TRUE; 132789Sahrens } 133789Sahrens if (dn->dn_phys->dn_type != DMU_OT_NONE || dn->dn_allocated_txg != 0) { 134789Sahrens int i; 135789Sahrens ASSERT3U(dn->dn_indblkshift, >=, 0); 136789Sahrens ASSERT3U(dn->dn_indblkshift, <=, SPA_MAXBLOCKSHIFT); 137789Sahrens if (dn->dn_datablkshift) { 138789Sahrens ASSERT3U(dn->dn_datablkshift, >=, SPA_MINBLOCKSHIFT); 139789Sahrens ASSERT3U(dn->dn_datablkshift, <=, SPA_MAXBLOCKSHIFT); 140789Sahrens ASSERT3U(1<<dn->dn_datablkshift, ==, dn->dn_datablksz); 141789Sahrens } 142789Sahrens ASSERT3U(dn->dn_nlevels, <=, 30); 143789Sahrens ASSERT3U(dn->dn_type, <=, DMU_OT_NUMTYPES); 144789Sahrens ASSERT3U(dn->dn_nblkptr, >=, 1); 145789Sahrens ASSERT3U(dn->dn_nblkptr, <=, DN_MAX_NBLKPTR); 146789Sahrens ASSERT3U(dn->dn_bonuslen, <=, DN_MAX_BONUSLEN); 147789Sahrens ASSERT3U(dn->dn_datablksz, ==, 148789Sahrens dn->dn_datablkszsec << SPA_MINBLOCKSHIFT); 149789Sahrens ASSERT3U(ISP2(dn->dn_datablksz), ==, dn->dn_datablkshift != 0); 150789Sahrens ASSERT3U((dn->dn_nblkptr - 1) * sizeof (blkptr_t) + 151789Sahrens dn->dn_bonuslen, <=, DN_MAX_BONUSLEN); 152789Sahrens for (i = 0; i < TXG_SIZE; i++) { 153789Sahrens ASSERT3U(dn->dn_next_nlevels[i], <=, dn->dn_nlevels); 154789Sahrens } 155789Sahrens } 156789Sahrens if (dn->dn_phys->dn_type != DMU_OT_NONE) 157789Sahrens ASSERT3U(dn->dn_phys->dn_nlevels, <=, dn->dn_nlevels); 1581544Seschrock ASSERT(dn->dn_object == DMU_META_DNODE_OBJECT || dn->dn_dbuf != NULL); 159789Sahrens if (dn->dn_dbuf != NULL) { 160789Sahrens ASSERT3P(dn->dn_phys, ==, 161789Sahrens (dnode_phys_t *)dn->dn_dbuf->db.db_data + 162789Sahrens (dn->dn_object % (dn->dn_dbuf->db.db_size >> DNODE_SHIFT))); 163789Sahrens } 164789Sahrens if (drop_struct_lock) 165789Sahrens rw_exit(&dn->dn_struct_rwlock); 166873Sek110237 } 167789Sahrens #endif 168789Sahrens 169789Sahrens void 170789Sahrens dnode_byteswap(dnode_phys_t *dnp) 171789Sahrens { 172789Sahrens uint64_t *buf64 = (void*)&dnp->dn_blkptr; 173789Sahrens int i; 174789Sahrens 175789Sahrens if (dnp->dn_type == DMU_OT_NONE) { 176789Sahrens bzero(dnp, sizeof (dnode_phys_t)); 177789Sahrens return; 178789Sahrens } 179789Sahrens 180789Sahrens dnp->dn_datablkszsec = BSWAP_16(dnp->dn_datablkszsec); 181789Sahrens dnp->dn_bonuslen = BSWAP_16(dnp->dn_bonuslen); 182789Sahrens dnp->dn_maxblkid = BSWAP_64(dnp->dn_maxblkid); 1832082Seschrock dnp->dn_used = BSWAP_64(dnp->dn_used); 184789Sahrens 185789Sahrens /* 186789Sahrens * dn_nblkptr is only one byte, so it's OK to read it in either 187789Sahrens * byte order. We can't read dn_bouslen. 188789Sahrens */ 189789Sahrens ASSERT(dnp->dn_indblkshift <= SPA_MAXBLOCKSHIFT); 190789Sahrens ASSERT(dnp->dn_nblkptr <= DN_MAX_NBLKPTR); 191789Sahrens for (i = 0; i < dnp->dn_nblkptr * sizeof (blkptr_t)/8; i++) 192789Sahrens buf64[i] = BSWAP_64(buf64[i]); 193789Sahrens 194789Sahrens /* 195789Sahrens * OK to check dn_bonuslen for zero, because it won't matter if 196789Sahrens * we have the wrong byte order. This is necessary because the 197789Sahrens * dnode dnode is smaller than a regular dnode. 198789Sahrens */ 199789Sahrens if (dnp->dn_bonuslen != 0) { 200789Sahrens /* 201789Sahrens * Note that the bonus length calculated here may be 202789Sahrens * longer than the actual bonus buffer. This is because 203789Sahrens * we always put the bonus buffer after the last block 204789Sahrens * pointer (instead of packing it against the end of the 205789Sahrens * dnode buffer). 206789Sahrens */ 207789Sahrens int off = (dnp->dn_nblkptr-1) * sizeof (blkptr_t); 208789Sahrens size_t len = DN_MAX_BONUSLEN - off; 209789Sahrens dmu_ot[dnp->dn_bonustype].ot_byteswap(dnp->dn_bonus + off, len); 210789Sahrens } 211789Sahrens } 212789Sahrens 213789Sahrens void 214789Sahrens dnode_buf_byteswap(void *vbuf, size_t size) 215789Sahrens { 216789Sahrens dnode_phys_t *buf = vbuf; 217789Sahrens int i; 218789Sahrens 219789Sahrens ASSERT3U(sizeof (dnode_phys_t), ==, (1<<DNODE_SHIFT)); 220789Sahrens ASSERT((size & (sizeof (dnode_phys_t)-1)) == 0); 221789Sahrens 222789Sahrens size >>= DNODE_SHIFT; 223789Sahrens for (i = 0; i < size; i++) { 224789Sahrens dnode_byteswap(buf); 225789Sahrens buf++; 226789Sahrens } 227789Sahrens } 228789Sahrens 229789Sahrens static int 230789Sahrens free_range_compar(const void *node1, const void *node2) 231789Sahrens { 232789Sahrens const free_range_t *rp1 = node1; 233789Sahrens const free_range_t *rp2 = node2; 234789Sahrens 235789Sahrens if (rp1->fr_blkid < rp2->fr_blkid) 236789Sahrens return (-1); 237789Sahrens else if (rp1->fr_blkid > rp2->fr_blkid) 238789Sahrens return (1); 239789Sahrens else return (0); 240789Sahrens } 241789Sahrens 242789Sahrens static void 243789Sahrens dnode_setdblksz(dnode_t *dn, int size) 244789Sahrens { 245789Sahrens ASSERT3U(P2PHASE(size, SPA_MINBLOCKSIZE), ==, 0); 246789Sahrens ASSERT3U(size, <=, SPA_MAXBLOCKSIZE); 247789Sahrens ASSERT3U(size, >=, SPA_MINBLOCKSIZE); 248789Sahrens ASSERT3U(size >> SPA_MINBLOCKSHIFT, <, 249789Sahrens 1<<(sizeof (dn->dn_phys->dn_datablkszsec) * 8)); 250789Sahrens dn->dn_datablksz = size; 251789Sahrens dn->dn_datablkszsec = size >> SPA_MINBLOCKSHIFT; 252789Sahrens dn->dn_datablkshift = ISP2(size) ? highbit(size - 1) : 0; 253789Sahrens } 254789Sahrens 255789Sahrens static dnode_t * 256789Sahrens dnode_create(objset_impl_t *os, dnode_phys_t *dnp, dmu_buf_impl_t *db, 257789Sahrens uint64_t object) 258789Sahrens { 259789Sahrens dnode_t *dn = kmem_cache_alloc(dnode_cache, KM_SLEEP); 260789Sahrens (void) dnode_cons(dn, NULL, 0); /* XXX */ 261789Sahrens 262789Sahrens dn->dn_objset = os; 263789Sahrens dn->dn_object = object; 264789Sahrens dn->dn_dbuf = db; 265789Sahrens dn->dn_phys = dnp; 266789Sahrens 267789Sahrens if (dnp->dn_datablkszsec) 268789Sahrens dnode_setdblksz(dn, dnp->dn_datablkszsec << SPA_MINBLOCKSHIFT); 269789Sahrens dn->dn_indblkshift = dnp->dn_indblkshift; 270789Sahrens dn->dn_nlevels = dnp->dn_nlevels; 271789Sahrens dn->dn_type = dnp->dn_type; 272789Sahrens dn->dn_nblkptr = dnp->dn_nblkptr; 273789Sahrens dn->dn_checksum = dnp->dn_checksum; 274789Sahrens dn->dn_compress = dnp->dn_compress; 275789Sahrens dn->dn_bonustype = dnp->dn_bonustype; 276789Sahrens dn->dn_bonuslen = dnp->dn_bonuslen; 277789Sahrens dn->dn_maxblkid = dnp->dn_maxblkid; 278789Sahrens 279789Sahrens dmu_zfetch_init(&dn->dn_zfetch, dn); 280789Sahrens 281789Sahrens ASSERT(dn->dn_phys->dn_type < DMU_OT_NUMTYPES); 282789Sahrens mutex_enter(&os->os_lock); 283789Sahrens list_insert_head(&os->os_dnodes, dn); 284789Sahrens mutex_exit(&os->os_lock); 285789Sahrens 286789Sahrens return (dn); 287789Sahrens } 288789Sahrens 289789Sahrens static void 290789Sahrens dnode_destroy(dnode_t *dn) 291789Sahrens { 292789Sahrens objset_impl_t *os = dn->dn_objset; 293789Sahrens 294*2885Sahrens #ifdef ZFS_DEBUG 295*2885Sahrens int i; 296*2885Sahrens 297*2885Sahrens for (i = 0; i < TXG_SIZE; i++) { 298*2885Sahrens ASSERT(!list_link_active(&dn->dn_dirty_link[i])); 299*2885Sahrens ASSERT(NULL == list_head(&dn->dn_dirty_dbufs[i])); 300*2885Sahrens ASSERT(0 == avl_numnodes(&dn->dn_ranges[i])); 301*2885Sahrens } 302*2885Sahrens ASSERT(NULL == list_head(&dn->dn_dbufs)); 303*2885Sahrens #endif 304*2885Sahrens 305789Sahrens mutex_enter(&os->os_lock); 306789Sahrens list_remove(&os->os_dnodes, dn); 307789Sahrens mutex_exit(&os->os_lock); 308789Sahrens 309789Sahrens if (dn->dn_dirtyctx_firstset) { 310789Sahrens kmem_free(dn->dn_dirtyctx_firstset, 1); 311789Sahrens dn->dn_dirtyctx_firstset = NULL; 312789Sahrens } 313789Sahrens dmu_zfetch_rele(&dn->dn_zfetch); 3141544Seschrock if (dn->dn_bonus) { 3151544Seschrock mutex_enter(&dn->dn_bonus->db_mtx); 3161544Seschrock dbuf_evict(dn->dn_bonus); 3171544Seschrock dn->dn_bonus = NULL; 3181544Seschrock } 319789Sahrens kmem_cache_free(dnode_cache, dn); 320789Sahrens } 321789Sahrens 322789Sahrens void 323789Sahrens dnode_allocate(dnode_t *dn, dmu_object_type_t ot, int blocksize, int ibs, 3241599Sahrens dmu_object_type_t bonustype, int bonuslen, dmu_tx_t *tx) 325789Sahrens { 326789Sahrens int i; 327789Sahrens 328789Sahrens if (blocksize == 0) 329789Sahrens blocksize = 1 << zfs_default_bs; 3301402Sahrens else if (blocksize > SPA_MAXBLOCKSIZE) 3311402Sahrens blocksize = SPA_MAXBLOCKSIZE; 3321402Sahrens else 3331402Sahrens blocksize = P2ROUNDUP(blocksize, SPA_MINBLOCKSIZE); 334789Sahrens 335789Sahrens if (ibs == 0) 336789Sahrens ibs = zfs_default_ibs; 337789Sahrens 338789Sahrens ibs = MIN(MAX(ibs, DN_MIN_INDBLKSHIFT), DN_MAX_INDBLKSHIFT); 339789Sahrens 340789Sahrens dprintf("os=%p obj=%llu txg=%llu blocksize=%d ibs=%d\n", dn->dn_objset, 341789Sahrens dn->dn_object, tx->tx_txg, blocksize, ibs); 342789Sahrens 343789Sahrens ASSERT(dn->dn_type == DMU_OT_NONE); 344789Sahrens ASSERT(bcmp(dn->dn_phys, &dnode_phys_zero, sizeof (dnode_phys_t)) == 0); 345789Sahrens ASSERT(dn->dn_phys->dn_type == DMU_OT_NONE); 346789Sahrens ASSERT(ot != DMU_OT_NONE); 347789Sahrens ASSERT3U(ot, <, DMU_OT_NUMTYPES); 348789Sahrens ASSERT((bonustype == DMU_OT_NONE && bonuslen == 0) || 349789Sahrens (bonustype != DMU_OT_NONE && bonuslen != 0)); 350789Sahrens ASSERT3U(bonustype, <, DMU_OT_NUMTYPES); 351789Sahrens ASSERT3U(bonuslen, <=, DN_MAX_BONUSLEN); 352789Sahrens ASSERT(dn->dn_type == DMU_OT_NONE); 353789Sahrens ASSERT3U(dn->dn_maxblkid, ==, 0); 354789Sahrens ASSERT3U(dn->dn_allocated_txg, ==, 0); 355789Sahrens ASSERT3U(dn->dn_assigned_txg, ==, 0); 356789Sahrens ASSERT(refcount_is_zero(&dn->dn_tx_holds)); 357789Sahrens ASSERT3U(refcount_count(&dn->dn_holds), <=, 1); 358789Sahrens ASSERT3P(list_head(&dn->dn_dbufs), ==, NULL); 359789Sahrens 360789Sahrens for (i = 0; i < TXG_SIZE; i++) { 361789Sahrens ASSERT3U(dn->dn_next_nlevels[i], ==, 0); 362789Sahrens ASSERT3U(dn->dn_next_indblkshift[i], ==, 0); 3631596Sahrens ASSERT3U(dn->dn_next_blksz[i], ==, 0); 3641596Sahrens ASSERT(!list_link_active(&dn->dn_dirty_link[i])); 365789Sahrens ASSERT3P(list_head(&dn->dn_dirty_dbufs[i]), ==, NULL); 366789Sahrens ASSERT3U(avl_numnodes(&dn->dn_ranges[i]), ==, 0); 367789Sahrens } 368789Sahrens 369789Sahrens dn->dn_type = ot; 370789Sahrens dnode_setdblksz(dn, blocksize); 371789Sahrens dn->dn_indblkshift = ibs; 372789Sahrens dn->dn_nlevels = 1; 373789Sahrens dn->dn_nblkptr = 1 + ((DN_MAX_BONUSLEN - bonuslen) >> SPA_BLKPTRSHIFT); 374789Sahrens dn->dn_bonustype = bonustype; 375789Sahrens dn->dn_bonuslen = bonuslen; 376789Sahrens dn->dn_checksum = ZIO_CHECKSUM_INHERIT; 377789Sahrens dn->dn_compress = ZIO_COMPRESS_INHERIT; 378789Sahrens dn->dn_dirtyctx = 0; 379789Sahrens 380789Sahrens dn->dn_free_txg = 0; 381789Sahrens if (dn->dn_dirtyctx_firstset) { 382789Sahrens kmem_free(dn->dn_dirtyctx_firstset, 1); 383789Sahrens dn->dn_dirtyctx_firstset = NULL; 384789Sahrens } 385789Sahrens 386789Sahrens dn->dn_allocated_txg = tx->tx_txg; 3871599Sahrens 388789Sahrens dnode_setdirty(dn, tx); 3891599Sahrens dn->dn_next_indblkshift[tx->tx_txg & TXG_MASK] = ibs; 3901599Sahrens dn->dn_next_blksz[tx->tx_txg & TXG_MASK] = dn->dn_datablksz; 391789Sahrens } 392789Sahrens 393789Sahrens void 394789Sahrens dnode_reallocate(dnode_t *dn, dmu_object_type_t ot, int blocksize, 395789Sahrens dmu_object_type_t bonustype, int bonuslen, dmu_tx_t *tx) 396789Sahrens { 3971596Sahrens int i; 3981596Sahrens 399789Sahrens ASSERT3U(blocksize, >=, SPA_MINBLOCKSIZE); 400789Sahrens ASSERT3U(blocksize, <=, SPA_MAXBLOCKSIZE); 401789Sahrens ASSERT3U(blocksize % SPA_MINBLOCKSIZE, ==, 0); 4021544Seschrock ASSERT(dn->dn_object != DMU_META_DNODE_OBJECT || dmu_tx_private_ok(tx)); 403789Sahrens ASSERT(tx->tx_txg != 0); 404789Sahrens ASSERT((bonustype == DMU_OT_NONE && bonuslen == 0) || 405789Sahrens (bonustype != DMU_OT_NONE && bonuslen != 0)); 406789Sahrens ASSERT3U(bonustype, <, DMU_OT_NUMTYPES); 407789Sahrens ASSERT3U(bonuslen, <=, DN_MAX_BONUSLEN); 4081596Sahrens 4091596Sahrens for (i = 0; i < TXG_SIZE; i++) 4101596Sahrens ASSERT(!list_link_active(&dn->dn_dirty_link[i])); 411789Sahrens 4121544Seschrock /* clean up any unreferenced dbufs */ 4131646Sperrin (void) dnode_evict_dbufs(dn, 0); 4141544Seschrock ASSERT3P(list_head(&dn->dn_dbufs), ==, NULL); 4151544Seschrock 416789Sahrens /* 417789Sahrens * XXX I should really have a generation number to tell if we 418789Sahrens * need to do this... 419789Sahrens */ 420789Sahrens if (blocksize != dn->dn_datablksz || 421789Sahrens dn->dn_bonustype != bonustype || dn->dn_bonuslen != bonuslen) { 422789Sahrens /* free all old data */ 423789Sahrens dnode_free_range(dn, 0, -1ULL, tx); 424789Sahrens } 425789Sahrens 426789Sahrens /* change blocksize */ 427789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_WRITER); 428789Sahrens dnode_setdblksz(dn, blocksize); 429789Sahrens dnode_setdirty(dn, tx); 4301596Sahrens dn->dn_next_blksz[tx->tx_txg&TXG_MASK] = blocksize; 431789Sahrens rw_exit(&dn->dn_struct_rwlock); 432789Sahrens 433789Sahrens /* change type */ 434789Sahrens dn->dn_type = ot; 435789Sahrens 436789Sahrens if (dn->dn_bonuslen != bonuslen) { 4371544Seschrock dmu_buf_impl_t *db = NULL; 4381544Seschrock 439789Sahrens /* change bonus size */ 440789Sahrens if (bonuslen == 0) 441789Sahrens bonuslen = 1; /* XXX */ 4421544Seschrock rw_enter(&dn->dn_struct_rwlock, RW_WRITER); 4431544Seschrock if (dn->dn_bonus == NULL) 4441544Seschrock dn->dn_bonus = dbuf_create_bonus(dn); 4451544Seschrock db = dn->dn_bonus; 4461544Seschrock rw_exit(&dn->dn_struct_rwlock); 4471544Seschrock if (refcount_add(&db->db_holds, FTAG) == 1) 4481544Seschrock dnode_add_ref(dn, db); 4491990Smaybee VERIFY(0 == dbuf_read(db, NULL, DB_RF_MUST_SUCCEED)); 450789Sahrens mutex_enter(&db->db_mtx); 451789Sahrens ASSERT3U(db->db.db_size, ==, dn->dn_bonuslen); 452789Sahrens ASSERT(db->db.db_data != NULL); 453789Sahrens db->db.db_size = bonuslen; 454789Sahrens mutex_exit(&db->db_mtx); 455789Sahrens dbuf_dirty(db, tx); 4561544Seschrock dbuf_rele(db, FTAG); 457789Sahrens } 458789Sahrens 459789Sahrens /* change bonus size and type */ 460789Sahrens mutex_enter(&dn->dn_mtx); 461789Sahrens dn->dn_bonustype = bonustype; 462789Sahrens dn->dn_bonuslen = bonuslen; 463789Sahrens dn->dn_nblkptr = 1 + ((DN_MAX_BONUSLEN - bonuslen) >> SPA_BLKPTRSHIFT); 464789Sahrens dn->dn_checksum = ZIO_CHECKSUM_INHERIT; 465789Sahrens dn->dn_compress = ZIO_COMPRESS_INHERIT; 466789Sahrens ASSERT3U(dn->dn_nblkptr, <=, DN_MAX_NBLKPTR); 467789Sahrens 468789Sahrens dn->dn_allocated_txg = tx->tx_txg; 469789Sahrens mutex_exit(&dn->dn_mtx); 470789Sahrens } 471789Sahrens 472789Sahrens void 473789Sahrens dnode_special_close(dnode_t *dn) 474789Sahrens { 4751544Seschrock /* 4761544Seschrock * Wait for final references to the dnode to clear. This can 4771544Seschrock * only happen if the arc is asyncronously evicting state that 4781544Seschrock * has a hold on this dnode while we are trying to evict this 4791544Seschrock * dnode. 4801544Seschrock */ 4811544Seschrock while (refcount_count(&dn->dn_holds) > 0) 4821544Seschrock delay(1); 483789Sahrens dnode_destroy(dn); 484789Sahrens } 485789Sahrens 486789Sahrens dnode_t * 487789Sahrens dnode_special_open(objset_impl_t *os, dnode_phys_t *dnp, uint64_t object) 488789Sahrens { 489789Sahrens dnode_t *dn = dnode_create(os, dnp, NULL, object); 490873Sek110237 DNODE_VERIFY(dn); 491789Sahrens return (dn); 492789Sahrens } 493789Sahrens 494789Sahrens static void 495789Sahrens dnode_buf_pageout(dmu_buf_t *db, void *arg) 496789Sahrens { 497789Sahrens dnode_t **children_dnodes = arg; 498789Sahrens int i; 499789Sahrens int epb = db->db_size >> DNODE_SHIFT; 500789Sahrens 501789Sahrens for (i = 0; i < epb; i++) { 502789Sahrens dnode_t *dn = children_dnodes[i]; 503789Sahrens int n; 504789Sahrens 505789Sahrens if (dn == NULL) 506789Sahrens continue; 507789Sahrens #ifdef ZFS_DEBUG 508789Sahrens /* 509789Sahrens * If there are holds on this dnode, then there should 510789Sahrens * be holds on the dnode's containing dbuf as well; thus 511789Sahrens * it wouldn't be eligable for eviction and this function 512789Sahrens * would not have been called. 513789Sahrens */ 514789Sahrens ASSERT(refcount_is_zero(&dn->dn_holds)); 515789Sahrens ASSERT(list_head(&dn->dn_dbufs) == NULL); 516789Sahrens ASSERT(refcount_is_zero(&dn->dn_tx_holds)); 517789Sahrens 518789Sahrens for (n = 0; n < TXG_SIZE; n++) 5191596Sahrens ASSERT(!list_link_active(&dn->dn_dirty_link[n])); 520789Sahrens #endif 521789Sahrens children_dnodes[i] = NULL; 522789Sahrens dnode_destroy(dn); 523789Sahrens } 524789Sahrens kmem_free(children_dnodes, epb * sizeof (dnode_t *)); 525789Sahrens } 526789Sahrens 527789Sahrens /* 5281544Seschrock * errors: 5291544Seschrock * EINVAL - invalid object number. 5301544Seschrock * EIO - i/o error. 5311544Seschrock * succeeds even for free dnodes. 532789Sahrens */ 5331544Seschrock int 5341544Seschrock dnode_hold_impl(objset_impl_t *os, uint64_t object, int flag, 5351544Seschrock void *tag, dnode_t **dnp) 536789Sahrens { 5371544Seschrock int epb, idx, err; 538789Sahrens int drop_struct_lock = FALSE; 5391544Seschrock int type; 540789Sahrens uint64_t blk; 541789Sahrens dnode_t *mdn, *dn; 542789Sahrens dmu_buf_impl_t *db; 543789Sahrens dnode_t **children_dnodes; 544789Sahrens 545789Sahrens if (object == 0 || object >= DN_MAX_OBJECT) 5461544Seschrock return (EINVAL); 547789Sahrens 548789Sahrens mdn = os->os_meta_dnode; 549789Sahrens 550873Sek110237 DNODE_VERIFY(mdn); 551789Sahrens 552789Sahrens if (!RW_WRITE_HELD(&mdn->dn_struct_rwlock)) { 553789Sahrens rw_enter(&mdn->dn_struct_rwlock, RW_READER); 554789Sahrens drop_struct_lock = TRUE; 555789Sahrens } 556789Sahrens 557789Sahrens blk = dbuf_whichblock(mdn, object * sizeof (dnode_phys_t)); 558789Sahrens 5591544Seschrock db = dbuf_hold(mdn, blk, FTAG); 560789Sahrens if (drop_struct_lock) 561789Sahrens rw_exit(&mdn->dn_struct_rwlock); 5621544Seschrock if (db == NULL) 5631544Seschrock return (EIO); 5641544Seschrock err = dbuf_read(db, NULL, DB_RF_CANFAIL); 5651544Seschrock if (err) { 5661544Seschrock dbuf_rele(db, FTAG); 5671544Seschrock return (err); 5681544Seschrock } 569789Sahrens 570789Sahrens ASSERT3U(db->db.db_size, >=, 1<<DNODE_SHIFT); 571789Sahrens epb = db->db.db_size >> DNODE_SHIFT; 572789Sahrens 573789Sahrens idx = object & (epb-1); 574789Sahrens 575789Sahrens children_dnodes = dmu_buf_get_user(&db->db); 576789Sahrens if (children_dnodes == NULL) { 577789Sahrens dnode_t **winner; 578789Sahrens children_dnodes = kmem_zalloc(epb * sizeof (dnode_t *), 579789Sahrens KM_SLEEP); 580789Sahrens if (winner = dmu_buf_set_user(&db->db, children_dnodes, NULL, 581789Sahrens dnode_buf_pageout)) { 582789Sahrens kmem_free(children_dnodes, epb * sizeof (dnode_t *)); 583789Sahrens children_dnodes = winner; 584789Sahrens } 585789Sahrens } 586789Sahrens 587789Sahrens if ((dn = children_dnodes[idx]) == NULL) { 588789Sahrens dnode_t *winner; 589789Sahrens dn = dnode_create(os, (dnode_phys_t *)db->db.db_data+idx, 590789Sahrens db, object); 591789Sahrens winner = atomic_cas_ptr(&children_dnodes[idx], NULL, dn); 592789Sahrens if (winner != NULL) { 593789Sahrens dnode_destroy(dn); 594789Sahrens dn = winner; 595789Sahrens } 596789Sahrens } 597789Sahrens 598789Sahrens mutex_enter(&dn->dn_mtx); 5991544Seschrock type = dn->dn_type; 600789Sahrens if (dn->dn_free_txg || 6011544Seschrock ((flag & DNODE_MUST_BE_ALLOCATED) && type == DMU_OT_NONE) || 6021544Seschrock ((flag & DNODE_MUST_BE_FREE) && type != DMU_OT_NONE)) { 603789Sahrens mutex_exit(&dn->dn_mtx); 6041544Seschrock dbuf_rele(db, FTAG); 6051544Seschrock return (type == DMU_OT_NONE ? ENOENT : EEXIST); 606789Sahrens } 607789Sahrens mutex_exit(&dn->dn_mtx); 608789Sahrens 6091544Seschrock if (refcount_add(&dn->dn_holds, tag) == 1) 610789Sahrens dbuf_add_ref(db, dn); 611789Sahrens 612873Sek110237 DNODE_VERIFY(dn); 613789Sahrens ASSERT3P(dn->dn_dbuf, ==, db); 614789Sahrens ASSERT3U(dn->dn_object, ==, object); 6151544Seschrock dbuf_rele(db, FTAG); 616789Sahrens 6171544Seschrock *dnp = dn; 6181544Seschrock return (0); 619789Sahrens } 620789Sahrens 621789Sahrens /* 622789Sahrens * Return held dnode if the object is allocated, NULL if not. 623789Sahrens */ 6241544Seschrock int 6251544Seschrock dnode_hold(objset_impl_t *os, uint64_t object, void *tag, dnode_t **dnp) 626789Sahrens { 6271544Seschrock return (dnode_hold_impl(os, object, DNODE_MUST_BE_ALLOCATED, tag, dnp)); 628789Sahrens } 629789Sahrens 630789Sahrens void 6311544Seschrock dnode_add_ref(dnode_t *dn, void *tag) 632789Sahrens { 633789Sahrens ASSERT(refcount_count(&dn->dn_holds) > 0); 6341544Seschrock (void) refcount_add(&dn->dn_holds, tag); 635789Sahrens } 636789Sahrens 637789Sahrens void 6381544Seschrock dnode_rele(dnode_t *dn, void *tag) 639789Sahrens { 640789Sahrens uint64_t refs; 641789Sahrens 6421544Seschrock refs = refcount_remove(&dn->dn_holds, tag); 643789Sahrens /* NOTE: the DNODE_DNODE does not have a dn_dbuf */ 644789Sahrens if (refs == 0 && dn->dn_dbuf) 6451544Seschrock dbuf_rele(dn->dn_dbuf, dn); 646789Sahrens } 647789Sahrens 648789Sahrens void 649789Sahrens dnode_setdirty(dnode_t *dn, dmu_tx_t *tx) 650789Sahrens { 651789Sahrens objset_impl_t *os = dn->dn_objset; 652789Sahrens uint64_t txg = tx->tx_txg; 653789Sahrens 6541544Seschrock if (dn->dn_object == DMU_META_DNODE_OBJECT) 655789Sahrens return; 656789Sahrens 657873Sek110237 DNODE_VERIFY(dn); 658789Sahrens 659789Sahrens #ifdef ZFS_DEBUG 660789Sahrens mutex_enter(&dn->dn_mtx); 661789Sahrens ASSERT(dn->dn_phys->dn_type || dn->dn_allocated_txg); 662789Sahrens /* ASSERT(dn->dn_free_txg == 0 || dn->dn_free_txg >= txg); */ 663789Sahrens mutex_exit(&dn->dn_mtx); 664789Sahrens #endif 665789Sahrens 666789Sahrens mutex_enter(&os->os_lock); 667789Sahrens 668789Sahrens /* 669789Sahrens * If we are already marked dirty, we're done. 670789Sahrens */ 6711596Sahrens if (list_link_active(&dn->dn_dirty_link[txg & TXG_MASK])) { 672789Sahrens mutex_exit(&os->os_lock); 673789Sahrens return; 674789Sahrens } 675789Sahrens 676789Sahrens ASSERT(!refcount_is_zero(&dn->dn_holds) || list_head(&dn->dn_dbufs)); 677789Sahrens ASSERT(dn->dn_datablksz != 0); 6781599Sahrens ASSERT3U(dn->dn_next_blksz[txg&TXG_MASK], ==, 0); 679789Sahrens 680789Sahrens dprintf_ds(os->os_dsl_dataset, "obj=%llu txg=%llu\n", 681789Sahrens dn->dn_object, txg); 682789Sahrens 683789Sahrens if (dn->dn_free_txg > 0 && dn->dn_free_txg <= txg) { 684789Sahrens list_insert_tail(&os->os_free_dnodes[txg&TXG_MASK], dn); 685789Sahrens } else { 686789Sahrens list_insert_tail(&os->os_dirty_dnodes[txg&TXG_MASK], dn); 687789Sahrens } 688789Sahrens 689789Sahrens mutex_exit(&os->os_lock); 690789Sahrens 691789Sahrens /* 692789Sahrens * The dnode maintains a hold on its containing dbuf as 693789Sahrens * long as there are holds on it. Each instantiated child 694789Sahrens * dbuf maintaines a hold on the dnode. When the last child 695789Sahrens * drops its hold, the dnode will drop its hold on the 696789Sahrens * containing dbuf. We add a "dirty hold" here so that the 697789Sahrens * dnode will hang around after we finish processing its 698789Sahrens * children. 699789Sahrens */ 7001544Seschrock dnode_add_ref(dn, (void *)(uintptr_t)tx->tx_txg); 701789Sahrens 702789Sahrens dbuf_dirty(dn->dn_dbuf, tx); 703789Sahrens 704789Sahrens dsl_dataset_dirty(os->os_dsl_dataset, tx); 705789Sahrens } 706789Sahrens 707789Sahrens void 708789Sahrens dnode_free(dnode_t *dn, dmu_tx_t *tx) 709789Sahrens { 7101596Sahrens int txgoff = tx->tx_txg & TXG_MASK; 7111596Sahrens 712789Sahrens dprintf("dn=%p txg=%llu\n", dn, tx->tx_txg); 713789Sahrens 714789Sahrens /* we should be the only holder... hopefully */ 715789Sahrens /* ASSERT3U(refcount_count(&dn->dn_holds), ==, 1); */ 716789Sahrens 717789Sahrens mutex_enter(&dn->dn_mtx); 718789Sahrens if (dn->dn_type == DMU_OT_NONE || dn->dn_free_txg) { 719789Sahrens mutex_exit(&dn->dn_mtx); 720789Sahrens return; 721789Sahrens } 722789Sahrens dn->dn_free_txg = tx->tx_txg; 723789Sahrens mutex_exit(&dn->dn_mtx); 724789Sahrens 725789Sahrens /* 726789Sahrens * If the dnode is already dirty, it needs to be moved from 727789Sahrens * the dirty list to the free list. 728789Sahrens */ 729789Sahrens mutex_enter(&dn->dn_objset->os_lock); 7301596Sahrens if (list_link_active(&dn->dn_dirty_link[txgoff])) { 7311596Sahrens list_remove(&dn->dn_objset->os_dirty_dnodes[txgoff], dn); 7321596Sahrens list_insert_tail(&dn->dn_objset->os_free_dnodes[txgoff], dn); 733789Sahrens mutex_exit(&dn->dn_objset->os_lock); 734789Sahrens } else { 735789Sahrens mutex_exit(&dn->dn_objset->os_lock); 736789Sahrens dnode_setdirty(dn, tx); 737789Sahrens } 738789Sahrens } 739789Sahrens 740789Sahrens /* 741789Sahrens * Try to change the block size for the indicated dnode. This can only 742789Sahrens * succeed if there are no blocks allocated or dirty beyond first block 743789Sahrens */ 744789Sahrens int 745789Sahrens dnode_set_blksz(dnode_t *dn, uint64_t size, int ibs, dmu_tx_t *tx) 746789Sahrens { 747789Sahrens dmu_buf_impl_t *db, *db_next; 748789Sahrens int have_db0 = FALSE; 749789Sahrens 750789Sahrens if (size == 0) 751789Sahrens size = SPA_MINBLOCKSIZE; 752789Sahrens if (size > SPA_MAXBLOCKSIZE) 753789Sahrens size = SPA_MAXBLOCKSIZE; 754789Sahrens else 755789Sahrens size = P2ROUNDUP(size, SPA_MINBLOCKSIZE); 756789Sahrens 7572445Sahrens if (ibs == dn->dn_indblkshift) 7582445Sahrens ibs = 0; 759789Sahrens 7602445Sahrens if (size >> SPA_MINBLOCKSHIFT == dn->dn_datablkszsec && ibs == 0) 761789Sahrens return (0); 762789Sahrens 763789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_WRITER); 764789Sahrens 765789Sahrens /* Check for any allocated blocks beyond the first */ 766789Sahrens if (dn->dn_phys->dn_maxblkid != 0) 7672445Sahrens goto fail; 768789Sahrens 769789Sahrens mutex_enter(&dn->dn_dbufs_mtx); 770789Sahrens for (db = list_head(&dn->dn_dbufs); db; db = db_next) { 771789Sahrens db_next = list_next(&dn->dn_dbufs, db); 772789Sahrens 773789Sahrens if (db->db_blkid == 0) { 774789Sahrens have_db0 = TRUE; 775789Sahrens } else if (db->db_blkid != DB_BONUS_BLKID) { 776789Sahrens mutex_exit(&dn->dn_dbufs_mtx); 7772445Sahrens goto fail; 778789Sahrens } 779789Sahrens } 780789Sahrens mutex_exit(&dn->dn_dbufs_mtx); 781789Sahrens 7822445Sahrens if (ibs && dn->dn_nlevels != 1) 7832445Sahrens goto fail; 7842445Sahrens 7851596Sahrens db = NULL; 7861596Sahrens if (!BP_IS_HOLE(&dn->dn_phys->dn_blkptr[0]) || have_db0) { 7871596Sahrens /* obtain the old block */ 7881596Sahrens db = dbuf_hold(dn, 0, FTAG); 7891596Sahrens dbuf_new_size(db, size, tx); 790789Sahrens } 791789Sahrens 792789Sahrens dnode_setdblksz(dn, size); 7931596Sahrens dnode_setdirty(dn, tx); 7941596Sahrens dn->dn_next_blksz[tx->tx_txg&TXG_MASK] = size; 7952445Sahrens if (ibs) { 7962445Sahrens dn->dn_indblkshift = ibs; 7972445Sahrens dn->dn_next_indblkshift[tx->tx_txg&TXG_MASK] = ibs; 7982445Sahrens } 7991596Sahrens 8001596Sahrens if (db) 8011596Sahrens dbuf_rele(db, FTAG); 802789Sahrens 803789Sahrens rw_exit(&dn->dn_struct_rwlock); 8042445Sahrens return (0); 8052445Sahrens 8062445Sahrens fail: 8072445Sahrens rw_exit(&dn->dn_struct_rwlock); 8082445Sahrens return (ENOTSUP); 809789Sahrens } 810789Sahrens 811789Sahrens void 812789Sahrens dnode_new_blkid(dnode_t *dn, uint64_t blkid, dmu_tx_t *tx) 813789Sahrens { 814789Sahrens uint64_t txgoff = tx->tx_txg & TXG_MASK; 815789Sahrens int drop_struct_lock = FALSE; 8161596Sahrens int epbs, new_nlevels; 817789Sahrens uint64_t sz; 818789Sahrens 8191596Sahrens ASSERT(blkid != DB_BONUS_BLKID); 820789Sahrens 821789Sahrens if (!RW_WRITE_HELD(&dn->dn_struct_rwlock)) { 822789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_WRITER); 823789Sahrens drop_struct_lock = TRUE; 824789Sahrens } 825789Sahrens 8261596Sahrens if (blkid <= dn->dn_maxblkid) 8271596Sahrens goto out; 8281596Sahrens 8291596Sahrens dn->dn_maxblkid = blkid; 830789Sahrens 831789Sahrens /* 8321596Sahrens * Compute the number of levels necessary to support the new maxblkid. 833789Sahrens */ 834789Sahrens new_nlevels = 1; 835789Sahrens epbs = dn->dn_indblkshift - SPA_BLKPTRSHIFT; 8361596Sahrens for (sz = dn->dn_nblkptr; 8371596Sahrens sz <= blkid && sz >= dn->dn_nblkptr; sz <<= epbs) 838789Sahrens new_nlevels++; 839789Sahrens 8401596Sahrens if (new_nlevels > dn->dn_nlevels) { 8411596Sahrens int old_nlevels = dn->dn_nlevels; 8421596Sahrens dmu_buf_impl_t *db; 8431596Sahrens 8441596Sahrens dn->dn_nlevels = new_nlevels; 8451596Sahrens 8461596Sahrens ASSERT3U(new_nlevels, >, dn->dn_next_nlevels[txgoff]); 847789Sahrens dn->dn_next_nlevels[txgoff] = new_nlevels; 848789Sahrens 8491596Sahrens /* Dirty the left indirects. */ 8501596Sahrens db = dbuf_hold_level(dn, old_nlevels, 0, FTAG); 851789Sahrens dbuf_dirty(db, tx); 8521544Seschrock dbuf_rele(db, FTAG); 8531596Sahrens 854789Sahrens } 855789Sahrens 856789Sahrens out: 857789Sahrens if (drop_struct_lock) 858789Sahrens rw_exit(&dn->dn_struct_rwlock); 859789Sahrens } 860789Sahrens 861789Sahrens void 862789Sahrens dnode_clear_range(dnode_t *dn, uint64_t blkid, uint64_t nblks, dmu_tx_t *tx) 863789Sahrens { 864789Sahrens avl_tree_t *tree = &dn->dn_ranges[tx->tx_txg&TXG_MASK]; 865789Sahrens avl_index_t where; 866789Sahrens free_range_t *rp; 867789Sahrens free_range_t rp_tofind; 868789Sahrens uint64_t endblk = blkid + nblks; 869789Sahrens 870789Sahrens ASSERT(MUTEX_HELD(&dn->dn_mtx)); 871789Sahrens ASSERT(nblks <= UINT64_MAX - blkid); /* no overflow */ 872789Sahrens 873789Sahrens dprintf_dnode(dn, "blkid=%llu nblks=%llu txg=%llu\n", 874789Sahrens blkid, nblks, tx->tx_txg); 875789Sahrens rp_tofind.fr_blkid = blkid; 876789Sahrens rp = avl_find(tree, &rp_tofind, &where); 877789Sahrens if (rp == NULL) 878789Sahrens rp = avl_nearest(tree, where, AVL_BEFORE); 879789Sahrens if (rp == NULL) 880789Sahrens rp = avl_nearest(tree, where, AVL_AFTER); 881789Sahrens 882789Sahrens while (rp && (rp->fr_blkid <= blkid + nblks)) { 883789Sahrens uint64_t fr_endblk = rp->fr_blkid + rp->fr_nblks; 884789Sahrens free_range_t *nrp = AVL_NEXT(tree, rp); 885789Sahrens 886789Sahrens if (blkid <= rp->fr_blkid && endblk >= fr_endblk) { 887789Sahrens /* clear this entire range */ 888789Sahrens avl_remove(tree, rp); 889789Sahrens kmem_free(rp, sizeof (free_range_t)); 890789Sahrens } else if (blkid <= rp->fr_blkid && 891789Sahrens endblk > rp->fr_blkid && endblk < fr_endblk) { 892789Sahrens /* clear the beginning of this range */ 893789Sahrens rp->fr_blkid = endblk; 894789Sahrens rp->fr_nblks = fr_endblk - endblk; 895789Sahrens } else if (blkid > rp->fr_blkid && blkid < fr_endblk && 896789Sahrens endblk >= fr_endblk) { 897789Sahrens /* clear the end of this range */ 898789Sahrens rp->fr_nblks = blkid - rp->fr_blkid; 899789Sahrens } else if (blkid > rp->fr_blkid && endblk < fr_endblk) { 900789Sahrens /* clear a chunk out of this range */ 901789Sahrens free_range_t *new_rp = 902789Sahrens kmem_alloc(sizeof (free_range_t), KM_SLEEP); 903789Sahrens 904789Sahrens new_rp->fr_blkid = endblk; 905789Sahrens new_rp->fr_nblks = fr_endblk - endblk; 906789Sahrens avl_insert_here(tree, new_rp, rp, AVL_AFTER); 907789Sahrens rp->fr_nblks = blkid - rp->fr_blkid; 908789Sahrens } 909789Sahrens /* there may be no overlap */ 910789Sahrens rp = nrp; 911789Sahrens } 912789Sahrens } 913789Sahrens 914789Sahrens void 915789Sahrens dnode_free_range(dnode_t *dn, uint64_t off, uint64_t len, dmu_tx_t *tx) 916789Sahrens { 917789Sahrens dmu_buf_impl_t *db; 9182445Sahrens uint64_t blkoff, blkid, nblks; 9192445Sahrens int blksz, head; 920789Sahrens int trunc = FALSE; 921789Sahrens 922789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_WRITER); 923789Sahrens blksz = dn->dn_datablksz; 924789Sahrens 925789Sahrens /* If the range is past the end of the file, this is a no-op */ 9262445Sahrens if (off >= blksz * (dn->dn_maxblkid+1)) 927789Sahrens goto out; 928789Sahrens if (len == -1ULL) { 929789Sahrens len = UINT64_MAX - off; 930789Sahrens trunc = TRUE; 931789Sahrens } 932789Sahrens 933789Sahrens /* 934789Sahrens * First, block align the region to free: 935789Sahrens */ 9362445Sahrens if (ISP2(blksz)) { 9372445Sahrens head = P2NPHASE(off, blksz); 9382445Sahrens blkoff = P2PHASE(off, blksz); 9392445Sahrens } else { 9402445Sahrens ASSERT(dn->dn_maxblkid == 0); 9412445Sahrens if (off == 0 && len >= blksz) { 9422445Sahrens /* Freeing the whole block; don't do any head. */ 943789Sahrens head = 0; 944789Sahrens } else { 9452445Sahrens /* Freeing part of the block. */ 946789Sahrens head = blksz - off; 947789Sahrens ASSERT3U(head, >, 0); 948789Sahrens } 9492445Sahrens blkoff = off; 950789Sahrens } 951789Sahrens /* zero out any partial block data at the start of the range */ 952789Sahrens if (head) { 9532445Sahrens ASSERT3U(blkoff + head, ==, blksz); 954789Sahrens if (len < head) 955789Sahrens head = len; 956789Sahrens if (dbuf_hold_impl(dn, 0, dbuf_whichblock(dn, off), TRUE, 957789Sahrens FTAG, &db) == 0) { 958789Sahrens caddr_t data; 959789Sahrens 960789Sahrens /* don't dirty if it isn't on disk and isn't dirty */ 961789Sahrens if (db->db_dirtied || 962789Sahrens (db->db_blkptr && !BP_IS_HOLE(db->db_blkptr))) { 963789Sahrens rw_exit(&dn->dn_struct_rwlock); 964789Sahrens dbuf_will_dirty(db, tx); 965789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_WRITER); 966789Sahrens data = db->db.db_data; 9672445Sahrens bzero(data + blkoff, head); 968789Sahrens } 9691544Seschrock dbuf_rele(db, FTAG); 970789Sahrens } 971789Sahrens off += head; 972789Sahrens len -= head; 973789Sahrens } 974789Sahrens 9752445Sahrens /* If the range was less than one block, we're done */ 9762445Sahrens if (len == 0 || off >= blksz * (dn->dn_maxblkid+1)) 977789Sahrens goto out; 978789Sahrens 9792445Sahrens if (!ISP2(blksz)) { 9802445Sahrens /* 9812445Sahrens * They are freeing the whole block of a 9822445Sahrens * non-power-of-two blocksize file. Skip all the messy 9832445Sahrens * math. 9842445Sahrens */ 9852445Sahrens ASSERT3U(off, ==, 0); 9862445Sahrens ASSERT3U(len, >=, blksz); 9872445Sahrens blkid = 0; 9882445Sahrens nblks = 1; 9892445Sahrens } else { 9902445Sahrens int tail; 9912445Sahrens int epbs = dn->dn_indblkshift - SPA_BLKPTRSHIFT; 9922445Sahrens int blkshift = dn->dn_datablkshift; 9932445Sahrens 9942445Sahrens /* If the remaining range is past end of file, we're done */ 9952445Sahrens if (off > dn->dn_maxblkid << blkshift) 9962445Sahrens goto out; 9972445Sahrens 9982445Sahrens if (off + len == UINT64_MAX) 9992445Sahrens tail = 0; 10002445Sahrens else 10012445Sahrens tail = P2PHASE(len, blksz); 1002789Sahrens 10032445Sahrens ASSERT3U(P2PHASE(off, blksz), ==, 0); 10042445Sahrens /* zero out any partial block data at the end of the range */ 10052445Sahrens if (tail) { 10062445Sahrens if (len < tail) 10072445Sahrens tail = len; 10082445Sahrens if (dbuf_hold_impl(dn, 0, dbuf_whichblock(dn, off+len), 10092445Sahrens TRUE, FTAG, &db) == 0) { 10102445Sahrens /* don't dirty if not on disk and not dirty */ 10112445Sahrens if (db->db_dirtied || 10122445Sahrens (db->db_blkptr && 10132445Sahrens !BP_IS_HOLE(db->db_blkptr))) { 10142445Sahrens rw_exit(&dn->dn_struct_rwlock); 10152445Sahrens dbuf_will_dirty(db, tx); 10162445Sahrens rw_enter(&dn->dn_struct_rwlock, 10172445Sahrens RW_WRITER); 10182445Sahrens bzero(db->db.db_data, tail); 10192445Sahrens } 10202445Sahrens dbuf_rele(db, FTAG); 1021789Sahrens } 10222445Sahrens len -= tail; 10232445Sahrens } 10242445Sahrens /* If the range did not include a full block, we are done */ 10252445Sahrens if (len == 0) 10262445Sahrens goto out; 10272445Sahrens 10282445Sahrens /* dirty the left indirects */ 10292445Sahrens if (dn->dn_nlevels > 1 && off != 0) { 10302445Sahrens db = dbuf_hold_level(dn, 1, 10312445Sahrens (off - head) >> (blkshift + epbs), FTAG); 10322445Sahrens dbuf_will_dirty(db, tx); 10331544Seschrock dbuf_rele(db, FTAG); 1034789Sahrens } 1035789Sahrens 10362445Sahrens /* dirty the right indirects */ 10372445Sahrens if (dn->dn_nlevels > 1 && !trunc) { 10382445Sahrens db = dbuf_hold_level(dn, 1, 10392445Sahrens (off + len + tail - 1) >> (blkshift + epbs), FTAG); 10402445Sahrens dbuf_will_dirty(db, tx); 10412445Sahrens dbuf_rele(db, FTAG); 10422445Sahrens } 1043789Sahrens 10442445Sahrens /* 10452445Sahrens * Finally, add this range to the dnode range list, we 10462445Sahrens * will finish up this free operation in the syncing phase. 10472445Sahrens */ 10482445Sahrens ASSERT(IS_P2ALIGNED(off, 1<<blkshift)); 10492445Sahrens ASSERT(off + len == UINT64_MAX || 10502445Sahrens IS_P2ALIGNED(len, 1<<blkshift)); 10512445Sahrens blkid = off >> blkshift; 10522445Sahrens nblks = len >> blkshift; 1053789Sahrens 10542445Sahrens if (trunc) 10552445Sahrens dn->dn_maxblkid = (blkid ? blkid - 1 : 0); 10562445Sahrens } 1057789Sahrens 1058789Sahrens mutex_enter(&dn->dn_mtx); 1059789Sahrens dnode_clear_range(dn, blkid, nblks, tx); 1060789Sahrens { 1061789Sahrens free_range_t *rp, *found; 1062789Sahrens avl_index_t where; 1063789Sahrens avl_tree_t *tree = &dn->dn_ranges[tx->tx_txg&TXG_MASK]; 1064789Sahrens 1065789Sahrens /* Add new range to dn_ranges */ 1066789Sahrens rp = kmem_alloc(sizeof (free_range_t), KM_SLEEP); 1067789Sahrens rp->fr_blkid = blkid; 1068789Sahrens rp->fr_nblks = nblks; 1069789Sahrens found = avl_find(tree, rp, &where); 1070789Sahrens ASSERT(found == NULL); 1071789Sahrens avl_insert(tree, rp, where); 1072789Sahrens dprintf_dnode(dn, "blkid=%llu nblks=%llu txg=%llu\n", 1073789Sahrens blkid, nblks, tx->tx_txg); 1074789Sahrens } 1075789Sahrens mutex_exit(&dn->dn_mtx); 1076789Sahrens 1077789Sahrens dbuf_free_range(dn, blkid, nblks, tx); 1078789Sahrens dnode_setdirty(dn, tx); 1079789Sahrens out: 1080789Sahrens rw_exit(&dn->dn_struct_rwlock); 1081789Sahrens } 1082789Sahrens 1083789Sahrens /* return TRUE if this blkid was freed in a recent txg, or FALSE if it wasn't */ 1084789Sahrens uint64_t 1085789Sahrens dnode_block_freed(dnode_t *dn, uint64_t blkid) 1086789Sahrens { 1087789Sahrens free_range_t range_tofind; 1088789Sahrens void *dp = spa_get_dsl(dn->dn_objset->os_spa); 1089789Sahrens int i; 1090789Sahrens 1091789Sahrens if (blkid == DB_BONUS_BLKID) 1092789Sahrens return (FALSE); 1093789Sahrens 1094789Sahrens /* 1095789Sahrens * If we're in the process of opening the pool, dp will not be 1096789Sahrens * set yet, but there shouldn't be anything dirty. 1097789Sahrens */ 1098789Sahrens if (dp == NULL) 1099789Sahrens return (FALSE); 1100789Sahrens 1101789Sahrens if (dn->dn_free_txg) 1102789Sahrens return (TRUE); 1103789Sahrens 1104789Sahrens /* 1105789Sahrens * If dn_datablkshift is not set, then there's only a single 1106789Sahrens * block, in which case there will never be a free range so it 1107789Sahrens * won't matter. 1108789Sahrens */ 1109789Sahrens range_tofind.fr_blkid = blkid; 1110789Sahrens mutex_enter(&dn->dn_mtx); 1111789Sahrens for (i = 0; i < TXG_SIZE; i++) { 1112789Sahrens free_range_t *range_found; 1113789Sahrens avl_index_t idx; 1114789Sahrens 1115789Sahrens range_found = avl_find(&dn->dn_ranges[i], &range_tofind, &idx); 1116789Sahrens if (range_found) { 1117789Sahrens ASSERT(range_found->fr_nblks > 0); 1118789Sahrens break; 1119789Sahrens } 1120789Sahrens range_found = avl_nearest(&dn->dn_ranges[i], idx, AVL_BEFORE); 1121789Sahrens if (range_found && 1122789Sahrens range_found->fr_blkid + range_found->fr_nblks > blkid) 1123789Sahrens break; 1124789Sahrens } 1125789Sahrens mutex_exit(&dn->dn_mtx); 1126789Sahrens return (i < TXG_SIZE); 1127789Sahrens } 1128789Sahrens 1129789Sahrens /* call from syncing context when we actually write/free space for this dnode */ 1130789Sahrens void 11312082Seschrock dnode_diduse_space(dnode_t *dn, int64_t delta) 1132789Sahrens { 11332082Seschrock uint64_t space; 11342082Seschrock dprintf_dnode(dn, "dn=%p dnp=%p used=%llu delta=%lld\n", 1135789Sahrens dn, dn->dn_phys, 11362082Seschrock (u_longlong_t)dn->dn_phys->dn_used, 11372082Seschrock (longlong_t)delta); 1138789Sahrens 1139789Sahrens mutex_enter(&dn->dn_mtx); 11402082Seschrock space = DN_USED_BYTES(dn->dn_phys); 11412082Seschrock if (delta > 0) { 11422082Seschrock ASSERT3U(space + delta, >=, space); /* no overflow */ 1143789Sahrens } else { 11442082Seschrock ASSERT3U(space, >=, -delta); /* no underflow */ 11452082Seschrock } 11462082Seschrock space += delta; 11472082Seschrock if (spa_version(dn->dn_objset->os_spa) < ZFS_VERSION_DNODE_BYTES) { 11482082Seschrock ASSERT((dn->dn_phys->dn_flags & DNODE_FLAG_USED_BYTES) == 0); 11492082Seschrock ASSERT3U(P2PHASE(space, 1<<DEV_BSHIFT), ==, 0); 11502082Seschrock dn->dn_phys->dn_used = space >> DEV_BSHIFT; 11512082Seschrock } else { 11522082Seschrock dn->dn_phys->dn_used = space; 11532082Seschrock dn->dn_phys->dn_flags |= DNODE_FLAG_USED_BYTES; 1154789Sahrens } 1155789Sahrens mutex_exit(&dn->dn_mtx); 1156789Sahrens } 1157789Sahrens 1158789Sahrens /* 1159789Sahrens * Call when we think we're going to write/free space in open context. 1160789Sahrens * Be conservative (ie. OK to write less than this or free more than 1161789Sahrens * this, but don't write more or free less). 1162789Sahrens */ 1163789Sahrens void 1164789Sahrens dnode_willuse_space(dnode_t *dn, int64_t space, dmu_tx_t *tx) 1165789Sahrens { 1166789Sahrens objset_impl_t *os = dn->dn_objset; 1167789Sahrens dsl_dataset_t *ds = os->os_dsl_dataset; 1168789Sahrens 1169789Sahrens if (space > 0) 1170789Sahrens space = spa_get_asize(os->os_spa, space); 1171789Sahrens 1172789Sahrens if (ds) 1173789Sahrens dsl_dir_willuse_space(ds->ds_dir, space, tx); 1174789Sahrens 1175789Sahrens dmu_tx_willuse_space(tx, space); 1176789Sahrens } 1177789Sahrens 1178789Sahrens static int 1179789Sahrens dnode_next_offset_level(dnode_t *dn, boolean_t hole, uint64_t *offset, 1180789Sahrens int lvl, uint64_t blkfill) 1181789Sahrens { 1182789Sahrens dmu_buf_impl_t *db = NULL; 1183789Sahrens void *data = NULL; 1184789Sahrens uint64_t epbs = dn->dn_phys->dn_indblkshift - SPA_BLKPTRSHIFT; 1185789Sahrens uint64_t epb = 1ULL << epbs; 1186789Sahrens uint64_t minfill, maxfill; 1187789Sahrens int i, error, span; 1188789Sahrens 1189789Sahrens dprintf("probing object %llu offset %llx level %d of %u\n", 1190789Sahrens dn->dn_object, *offset, lvl, dn->dn_phys->dn_nlevels); 1191789Sahrens 1192789Sahrens if (lvl == dn->dn_phys->dn_nlevels) { 1193789Sahrens error = 0; 1194789Sahrens epb = dn->dn_phys->dn_nblkptr; 1195789Sahrens data = dn->dn_phys->dn_blkptr; 1196789Sahrens } else { 1197789Sahrens uint64_t blkid = dbuf_whichblock(dn, *offset) >> (epbs * lvl); 1198789Sahrens error = dbuf_hold_impl(dn, lvl, blkid, TRUE, FTAG, &db); 1199789Sahrens if (error) { 1200789Sahrens if (error == ENOENT) 1201789Sahrens return (hole ? 0 : ESRCH); 1202789Sahrens return (error); 1203789Sahrens } 12041793Sahrens error = dbuf_read(db, NULL, DB_RF_CANFAIL | DB_RF_HAVESTRUCT); 12051793Sahrens if (error) { 12061793Sahrens dbuf_rele(db, FTAG); 12071793Sahrens return (error); 12081793Sahrens } 1209789Sahrens data = db->db.db_data; 1210789Sahrens } 1211789Sahrens 1212789Sahrens if (lvl == 0) { 1213789Sahrens dnode_phys_t *dnp = data; 1214789Sahrens span = DNODE_SHIFT; 1215789Sahrens ASSERT(dn->dn_type == DMU_OT_DNODE); 1216789Sahrens 1217789Sahrens for (i = (*offset >> span) & (blkfill - 1); i < blkfill; i++) { 1218789Sahrens if (!dnp[i].dn_type == hole) 1219789Sahrens break; 1220789Sahrens *offset += 1ULL << span; 1221789Sahrens } 1222789Sahrens if (i == blkfill) 1223789Sahrens error = ESRCH; 1224789Sahrens } else { 1225789Sahrens blkptr_t *bp = data; 1226789Sahrens span = (lvl - 1) * epbs + dn->dn_datablkshift; 1227789Sahrens minfill = 0; 1228789Sahrens maxfill = blkfill << ((lvl - 1) * epbs); 1229789Sahrens 1230789Sahrens if (hole) 1231789Sahrens maxfill--; 1232789Sahrens else 1233789Sahrens minfill++; 1234789Sahrens 1235789Sahrens for (i = (*offset >> span) & ((1ULL << epbs) - 1); 1236789Sahrens i < epb; i++) { 1237789Sahrens if (bp[i].blk_fill >= minfill && 1238789Sahrens bp[i].blk_fill <= maxfill) 1239789Sahrens break; 1240789Sahrens *offset += 1ULL << span; 1241789Sahrens } 1242789Sahrens if (i >= epb) 1243789Sahrens error = ESRCH; 1244789Sahrens } 1245789Sahrens 1246789Sahrens if (db) 12471544Seschrock dbuf_rele(db, FTAG); 1248789Sahrens 1249789Sahrens return (error); 1250789Sahrens } 1251789Sahrens 1252789Sahrens /* 1253789Sahrens * Find the next hole, data, or sparse region at or after *offset. 1254789Sahrens * The value 'blkfill' tells us how many items we expect to find 1255789Sahrens * in an L0 data block; this value is 1 for normal objects, 1256789Sahrens * DNODES_PER_BLOCK for the meta dnode, and some fraction of 1257789Sahrens * DNODES_PER_BLOCK when searching for sparse regions thereof. 1258789Sahrens * Examples: 1259789Sahrens * 1260789Sahrens * dnode_next_offset(dn, hole, offset, 1, 1); 1261789Sahrens * Finds the next hole/data in a file. 1262789Sahrens * Used in dmu_offset_next(). 1263789Sahrens * 1264789Sahrens * dnode_next_offset(mdn, hole, offset, 0, DNODES_PER_BLOCK); 1265789Sahrens * Finds the next free/allocated dnode an objset's meta-dnode. 1266789Sahrens * Used in dmu_object_next(). 1267789Sahrens * 1268789Sahrens * dnode_next_offset(mdn, TRUE, offset, 2, DNODES_PER_BLOCK >> 2); 1269789Sahrens * Finds the next L2 meta-dnode bp that's at most 1/4 full. 1270789Sahrens * Used in dmu_object_alloc(). 1271789Sahrens */ 1272789Sahrens int 1273789Sahrens dnode_next_offset(dnode_t *dn, boolean_t hole, uint64_t *offset, 1274789Sahrens int minlvl, uint64_t blkfill) 1275789Sahrens { 1276789Sahrens int lvl, maxlvl; 1277789Sahrens int error = 0; 1278789Sahrens uint64_t initial_offset = *offset; 1279789Sahrens 1280789Sahrens rw_enter(&dn->dn_struct_rwlock, RW_READER); 1281789Sahrens 1282789Sahrens if (dn->dn_phys->dn_nlevels == 0) { 1283789Sahrens rw_exit(&dn->dn_struct_rwlock); 1284789Sahrens return (ESRCH); 1285789Sahrens } 1286789Sahrens 1287789Sahrens if (dn->dn_datablkshift == 0) { 1288789Sahrens if (*offset < dn->dn_datablksz) { 1289789Sahrens if (hole) 1290789Sahrens *offset = dn->dn_datablksz; 1291789Sahrens } else { 1292789Sahrens error = ESRCH; 1293789Sahrens } 1294789Sahrens rw_exit(&dn->dn_struct_rwlock); 1295789Sahrens return (error); 1296789Sahrens } 1297789Sahrens 1298789Sahrens maxlvl = dn->dn_phys->dn_nlevels; 1299789Sahrens 1300789Sahrens for (lvl = minlvl; lvl <= maxlvl; lvl++) { 1301789Sahrens error = dnode_next_offset_level(dn, hole, offset, lvl, blkfill); 13021793Sahrens if (error != ESRCH) 1303789Sahrens break; 1304789Sahrens } 1305789Sahrens 1306789Sahrens while (--lvl >= minlvl && error == 0) 1307789Sahrens error = dnode_next_offset_level(dn, hole, offset, lvl, blkfill); 1308789Sahrens 1309789Sahrens rw_exit(&dn->dn_struct_rwlock); 1310789Sahrens 13111793Sahrens if (error == 0 && initial_offset > *offset) 13121793Sahrens error = ESRCH; 1313789Sahrens 1314789Sahrens return (error); 1315789Sahrens } 1316