1585f8587Sbellard /* 2585f8587Sbellard * Block driver for the QCOW version 2 format 3585f8587Sbellard * 4585f8587Sbellard * Copyright (c) 2004-2006 Fabrice Bellard 5585f8587Sbellard * 6585f8587Sbellard * Permission is hereby granted, free of charge, to any person obtaining a copy 7585f8587Sbellard * of this software and associated documentation files (the "Software"), to deal 8585f8587Sbellard * in the Software without restriction, including without limitation the rights 9585f8587Sbellard * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 10585f8587Sbellard * copies of the Software, and to permit persons to whom the Software is 11585f8587Sbellard * furnished to do so, subject to the following conditions: 12585f8587Sbellard * 13585f8587Sbellard * The above copyright notice and this permission notice shall be included in 14585f8587Sbellard * all copies or substantial portions of the Software. 15585f8587Sbellard * 16585f8587Sbellard * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 17585f8587Sbellard * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 18585f8587Sbellard * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 19585f8587Sbellard * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 20585f8587Sbellard * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 21585f8587Sbellard * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN 22585f8587Sbellard * THE SOFTWARE. 23585f8587Sbellard */ 24faf07963Spbrook #include "qemu-common.h" 25585f8587Sbellard #include "block_int.h" 265efa9d5aSAnthony Liguori #include "module.h" 27585f8587Sbellard #include <zlib.h> 28585f8587Sbellard #include "aes.h" 29585f8587Sbellard 30585f8587Sbellard /* 31585f8587Sbellard Differences with QCOW: 32585f8587Sbellard 33585f8587Sbellard - Support for multiple incremental snapshots. 34585f8587Sbellard - Memory management by reference counts. 35585f8587Sbellard - Clusters which have a reference count of one have the bit 36585f8587Sbellard QCOW_OFLAG_COPIED to optimize write performance. 37585f8587Sbellard - Size of compressed clusters is stored in sectors to reduce bit usage 38585f8587Sbellard in the cluster offsets. 39585f8587Sbellard - Support for storing additional data (such as the VM state) in the 40585f8587Sbellard snapshots. 41585f8587Sbellard - If a backing store is used, the cluster size is not constrained 42585f8587Sbellard (could be backported to QCOW). 43585f8587Sbellard - L2 tables have always a size of one cluster. 44585f8587Sbellard */ 45585f8587Sbellard 46585f8587Sbellard //#define DEBUG_ALLOC 47585f8587Sbellard //#define DEBUG_ALLOC2 489b80ddf3Saliguori //#define DEBUG_EXT 49585f8587Sbellard 50585f8587Sbellard #define QCOW_MAGIC (('Q' << 24) | ('F' << 16) | ('I' << 8) | 0xfb) 51585f8587Sbellard #define QCOW_VERSION 2 52585f8587Sbellard 53585f8587Sbellard #define QCOW_CRYPT_NONE 0 54585f8587Sbellard #define QCOW_CRYPT_AES 1 55585f8587Sbellard 56095a9c58Saliguori #define QCOW_MAX_CRYPT_CLUSTERS 32 57095a9c58Saliguori 58585f8587Sbellard /* indicate that the refcount of the referenced cluster is exactly one. */ 59585f8587Sbellard #define QCOW_OFLAG_COPIED (1LL << 63) 60585f8587Sbellard /* indicate that the cluster is compressed (they never have the copied flag) */ 61585f8587Sbellard #define QCOW_OFLAG_COMPRESSED (1LL << 62) 62585f8587Sbellard 63585f8587Sbellard #define REFCOUNT_SHIFT 1 /* refcount size is 2 bytes */ 64585f8587Sbellard 6573c632edSKevin Wolf #define MIN_CLUSTER_BITS 9 6673c632edSKevin Wolf #define MAX_CLUSTER_BITS 16 6773c632edSKevin Wolf 68585f8587Sbellard typedef struct QCowHeader { 69585f8587Sbellard uint32_t magic; 70585f8587Sbellard uint32_t version; 71585f8587Sbellard uint64_t backing_file_offset; 72585f8587Sbellard uint32_t backing_file_size; 73585f8587Sbellard uint32_t cluster_bits; 74585f8587Sbellard uint64_t size; /* in bytes */ 75585f8587Sbellard uint32_t crypt_method; 76585f8587Sbellard uint32_t l1_size; /* XXX: save number of clusters instead ? */ 77585f8587Sbellard uint64_t l1_table_offset; 78585f8587Sbellard uint64_t refcount_table_offset; 79585f8587Sbellard uint32_t refcount_table_clusters; 80585f8587Sbellard uint32_t nb_snapshots; 81585f8587Sbellard uint64_t snapshots_offset; 82585f8587Sbellard } QCowHeader; 83585f8587Sbellard 849b80ddf3Saliguori 859b80ddf3Saliguori typedef struct { 869b80ddf3Saliguori uint32_t magic; 879b80ddf3Saliguori uint32_t len; 889b80ddf3Saliguori } QCowExtension; 899b80ddf3Saliguori #define QCOW_EXT_MAGIC_END 0 90f965509cSaliguori #define QCOW_EXT_MAGIC_BACKING_FORMAT 0xE2792ACA 919b80ddf3Saliguori 929b80ddf3Saliguori 93585f8587Sbellard typedef struct __attribute__((packed)) QCowSnapshotHeader { 94585f8587Sbellard /* header is 8 byte aligned */ 95585f8587Sbellard uint64_t l1_table_offset; 96585f8587Sbellard 97585f8587Sbellard uint32_t l1_size; 98585f8587Sbellard uint16_t id_str_size; 99585f8587Sbellard uint16_t name_size; 100585f8587Sbellard 101585f8587Sbellard uint32_t date_sec; 102585f8587Sbellard uint32_t date_nsec; 103585f8587Sbellard 104585f8587Sbellard uint64_t vm_clock_nsec; 105585f8587Sbellard 106585f8587Sbellard uint32_t vm_state_size; 107585f8587Sbellard uint32_t extra_data_size; /* for extension */ 108585f8587Sbellard /* extra data follows */ 109585f8587Sbellard /* id_str follows */ 110585f8587Sbellard /* name follows */ 111585f8587Sbellard } QCowSnapshotHeader; 112585f8587Sbellard 113585f8587Sbellard #define L2_CACHE_SIZE 16 114585f8587Sbellard 115585f8587Sbellard typedef struct QCowSnapshot { 116585f8587Sbellard uint64_t l1_table_offset; 117585f8587Sbellard uint32_t l1_size; 118585f8587Sbellard char *id_str; 119585f8587Sbellard char *name; 120585f8587Sbellard uint32_t vm_state_size; 121585f8587Sbellard uint32_t date_sec; 122585f8587Sbellard uint32_t date_nsec; 123585f8587Sbellard uint64_t vm_clock_nsec; 124585f8587Sbellard } QCowSnapshot; 125585f8587Sbellard 126585f8587Sbellard typedef struct BDRVQcowState { 127585f8587Sbellard BlockDriverState *hd; 128585f8587Sbellard int cluster_bits; 129585f8587Sbellard int cluster_size; 130585f8587Sbellard int cluster_sectors; 131585f8587Sbellard int l2_bits; 132585f8587Sbellard int l2_size; 133585f8587Sbellard int l1_size; 134585f8587Sbellard int l1_vm_state_index; 135585f8587Sbellard int csize_shift; 136585f8587Sbellard int csize_mask; 137585f8587Sbellard uint64_t cluster_offset_mask; 138585f8587Sbellard uint64_t l1_table_offset; 139585f8587Sbellard uint64_t *l1_table; 140585f8587Sbellard uint64_t *l2_cache; 141585f8587Sbellard uint64_t l2_cache_offsets[L2_CACHE_SIZE]; 142585f8587Sbellard uint32_t l2_cache_counts[L2_CACHE_SIZE]; 143585f8587Sbellard uint8_t *cluster_cache; 144585f8587Sbellard uint8_t *cluster_data; 145585f8587Sbellard uint64_t cluster_cache_offset; 146585f8587Sbellard 147585f8587Sbellard uint64_t *refcount_table; 148585f8587Sbellard uint64_t refcount_table_offset; 149585f8587Sbellard uint32_t refcount_table_size; 150585f8587Sbellard uint64_t refcount_block_cache_offset; 151585f8587Sbellard uint16_t *refcount_block_cache; 152585f8587Sbellard int64_t free_cluster_index; 153585f8587Sbellard int64_t free_byte_offset; 154585f8587Sbellard 155585f8587Sbellard uint32_t crypt_method; /* current crypt method, 0 if no key yet */ 156585f8587Sbellard uint32_t crypt_method_header; 157585f8587Sbellard AES_KEY aes_encrypt_key; 158585f8587Sbellard AES_KEY aes_decrypt_key; 159585f8587Sbellard uint64_t snapshots_offset; 160585f8587Sbellard int snapshots_size; 161585f8587Sbellard int nb_snapshots; 162585f8587Sbellard QCowSnapshot *snapshots; 163585f8587Sbellard } BDRVQcowState; 164585f8587Sbellard 165585f8587Sbellard static int decompress_cluster(BDRVQcowState *s, uint64_t cluster_offset); 166585f8587Sbellard static int qcow_read(BlockDriverState *bs, int64_t sector_num, 167585f8587Sbellard uint8_t *buf, int nb_sectors); 168585f8587Sbellard static int qcow_read_snapshots(BlockDriverState *bs); 169585f8587Sbellard static void qcow_free_snapshots(BlockDriverState *bs); 170585f8587Sbellard static int refcount_init(BlockDriverState *bs); 171585f8587Sbellard static void refcount_close(BlockDriverState *bs); 172585f8587Sbellard static int get_refcount(BlockDriverState *bs, int64_t cluster_index); 173585f8587Sbellard static int update_cluster_refcount(BlockDriverState *bs, 174585f8587Sbellard int64_t cluster_index, 175585f8587Sbellard int addend); 17644ff42deSKevin Wolf static int update_refcount(BlockDriverState *bs, 177585f8587Sbellard int64_t offset, int64_t length, 178585f8587Sbellard int addend); 179585f8587Sbellard static int64_t alloc_clusters(BlockDriverState *bs, int64_t size); 180585f8587Sbellard static int64_t alloc_bytes(BlockDriverState *bs, int size); 181585f8587Sbellard static void free_clusters(BlockDriverState *bs, 182585f8587Sbellard int64_t offset, int64_t size); 183e97fc193Saliguori static int check_refcounts(BlockDriverState *bs); 184585f8587Sbellard 185585f8587Sbellard static int qcow_probe(const uint8_t *buf, int buf_size, const char *filename) 186585f8587Sbellard { 187585f8587Sbellard const QCowHeader *cow_header = (const void *)buf; 188585f8587Sbellard 189585f8587Sbellard if (buf_size >= sizeof(QCowHeader) && 190585f8587Sbellard be32_to_cpu(cow_header->magic) == QCOW_MAGIC && 191585f8587Sbellard be32_to_cpu(cow_header->version) == QCOW_VERSION) 192585f8587Sbellard return 100; 193585f8587Sbellard else 194585f8587Sbellard return 0; 195585f8587Sbellard } 196585f8587Sbellard 1979b80ddf3Saliguori 1989b80ddf3Saliguori /* 1999b80ddf3Saliguori * read qcow2 extension and fill bs 2009b80ddf3Saliguori * start reading from start_offset 2019b80ddf3Saliguori * finish reading upon magic of value 0 or when end_offset reached 2029b80ddf3Saliguori * unknown magic is skipped (future extension this version knows nothing about) 2039b80ddf3Saliguori * return 0 upon success, non-0 otherwise 2049b80ddf3Saliguori */ 2059b80ddf3Saliguori static int qcow_read_extensions(BlockDriverState *bs, uint64_t start_offset, 2069b80ddf3Saliguori uint64_t end_offset) 2079b80ddf3Saliguori { 2089b80ddf3Saliguori BDRVQcowState *s = bs->opaque; 2099b80ddf3Saliguori QCowExtension ext; 2109b80ddf3Saliguori uint64_t offset; 2119b80ddf3Saliguori 2129b80ddf3Saliguori #ifdef DEBUG_EXT 2139b80ddf3Saliguori printf("qcow_read_extensions: start=%ld end=%ld\n", start_offset, end_offset); 2149b80ddf3Saliguori #endif 2159b80ddf3Saliguori offset = start_offset; 2169b80ddf3Saliguori while (offset < end_offset) { 2179b80ddf3Saliguori 2189b80ddf3Saliguori #ifdef DEBUG_EXT 2199b80ddf3Saliguori /* Sanity check */ 2209b80ddf3Saliguori if (offset > s->cluster_size) 2219b80ddf3Saliguori printf("qcow_handle_extension: suspicious offset %lu\n", offset); 2229b80ddf3Saliguori 2239b80ddf3Saliguori printf("attemting to read extended header in offset %lu\n", offset); 2249b80ddf3Saliguori #endif 2259b80ddf3Saliguori 2269b80ddf3Saliguori if (bdrv_pread(s->hd, offset, &ext, sizeof(ext)) != sizeof(ext)) { 2274c978075Saliguori fprintf(stderr, "qcow_handle_extension: ERROR: pread fail from offset %llu\n", 2284c978075Saliguori (unsigned long long)offset); 2299b80ddf3Saliguori return 1; 2309b80ddf3Saliguori } 2319b80ddf3Saliguori be32_to_cpus(&ext.magic); 2329b80ddf3Saliguori be32_to_cpus(&ext.len); 2339b80ddf3Saliguori offset += sizeof(ext); 2349b80ddf3Saliguori #ifdef DEBUG_EXT 2359b80ddf3Saliguori printf("ext.magic = 0x%x\n", ext.magic); 2369b80ddf3Saliguori #endif 2379b80ddf3Saliguori switch (ext.magic) { 2389b80ddf3Saliguori case QCOW_EXT_MAGIC_END: 2399b80ddf3Saliguori return 0; 240f965509cSaliguori 241f965509cSaliguori case QCOW_EXT_MAGIC_BACKING_FORMAT: 242f965509cSaliguori if (ext.len >= sizeof(bs->backing_format)) { 243f965509cSaliguori fprintf(stderr, "ERROR: ext_backing_format: len=%u too large" 2444c978075Saliguori " (>=%zu)\n", 245f965509cSaliguori ext.len, sizeof(bs->backing_format)); 246f965509cSaliguori return 2; 247f965509cSaliguori } 248f965509cSaliguori if (bdrv_pread(s->hd, offset , bs->backing_format, 249f965509cSaliguori ext.len) != ext.len) 250f965509cSaliguori return 3; 251f965509cSaliguori bs->backing_format[ext.len] = '\0'; 252f965509cSaliguori #ifdef DEBUG_EXT 253f965509cSaliguori printf("Qcow2: Got format extension %s\n", bs->backing_format); 254f965509cSaliguori #endif 255f965509cSaliguori offset += ((ext.len + 7) & ~7); 256f965509cSaliguori break; 257f965509cSaliguori 2589b80ddf3Saliguori default: 2599b80ddf3Saliguori /* unknown magic -- just skip it */ 2609b80ddf3Saliguori offset += ((ext.len + 7) & ~7); 2619b80ddf3Saliguori break; 2629b80ddf3Saliguori } 2639b80ddf3Saliguori } 2649b80ddf3Saliguori 2659b80ddf3Saliguori return 0; 2669b80ddf3Saliguori } 2679b80ddf3Saliguori 2689b80ddf3Saliguori 269585f8587Sbellard static int qcow_open(BlockDriverState *bs, const char *filename, int flags) 270585f8587Sbellard { 271585f8587Sbellard BDRVQcowState *s = bs->opaque; 272585f8587Sbellard int len, i, shift, ret; 273585f8587Sbellard QCowHeader header; 2749b80ddf3Saliguori uint64_t ext_end; 275585f8587Sbellard 2764dc822d7Saliguori /* Performance is terrible right now with cache=writethrough due mainly 2774dc822d7Saliguori * to reference count updates. If the user does not explicitly specify 2784dc822d7Saliguori * a caching type, force to writeback caching. 2794dc822d7Saliguori */ 2804dc822d7Saliguori if ((flags & BDRV_O_CACHE_DEF)) { 2814dc822d7Saliguori flags |= BDRV_O_CACHE_WB; 2824dc822d7Saliguori flags &= ~BDRV_O_CACHE_DEF; 2834dc822d7Saliguori } 284b5eff355Saurel32 ret = bdrv_file_open(&s->hd, filename, flags); 285585f8587Sbellard if (ret < 0) 286585f8587Sbellard return ret; 287585f8587Sbellard if (bdrv_pread(s->hd, 0, &header, sizeof(header)) != sizeof(header)) 288585f8587Sbellard goto fail; 289585f8587Sbellard be32_to_cpus(&header.magic); 290585f8587Sbellard be32_to_cpus(&header.version); 291585f8587Sbellard be64_to_cpus(&header.backing_file_offset); 292585f8587Sbellard be32_to_cpus(&header.backing_file_size); 293585f8587Sbellard be64_to_cpus(&header.size); 294585f8587Sbellard be32_to_cpus(&header.cluster_bits); 295585f8587Sbellard be32_to_cpus(&header.crypt_method); 296585f8587Sbellard be64_to_cpus(&header.l1_table_offset); 297585f8587Sbellard be32_to_cpus(&header.l1_size); 298585f8587Sbellard be64_to_cpus(&header.refcount_table_offset); 299585f8587Sbellard be32_to_cpus(&header.refcount_table_clusters); 300585f8587Sbellard be64_to_cpus(&header.snapshots_offset); 301585f8587Sbellard be32_to_cpus(&header.nb_snapshots); 302585f8587Sbellard 303585f8587Sbellard if (header.magic != QCOW_MAGIC || header.version != QCOW_VERSION) 304585f8587Sbellard goto fail; 305585f8587Sbellard if (header.size <= 1 || 30673c632edSKevin Wolf header.cluster_bits < MIN_CLUSTER_BITS || 30773c632edSKevin Wolf header.cluster_bits > MAX_CLUSTER_BITS) 308585f8587Sbellard goto fail; 309585f8587Sbellard if (header.crypt_method > QCOW_CRYPT_AES) 310585f8587Sbellard goto fail; 311585f8587Sbellard s->crypt_method_header = header.crypt_method; 312585f8587Sbellard if (s->crypt_method_header) 313585f8587Sbellard bs->encrypted = 1; 314585f8587Sbellard s->cluster_bits = header.cluster_bits; 315585f8587Sbellard s->cluster_size = 1 << s->cluster_bits; 316585f8587Sbellard s->cluster_sectors = 1 << (s->cluster_bits - 9); 317585f8587Sbellard s->l2_bits = s->cluster_bits - 3; /* L2 is always one cluster */ 318585f8587Sbellard s->l2_size = 1 << s->l2_bits; 319585f8587Sbellard bs->total_sectors = header.size / 512; 320585f8587Sbellard s->csize_shift = (62 - (s->cluster_bits - 8)); 321585f8587Sbellard s->csize_mask = (1 << (s->cluster_bits - 8)) - 1; 322585f8587Sbellard s->cluster_offset_mask = (1LL << s->csize_shift) - 1; 323585f8587Sbellard s->refcount_table_offset = header.refcount_table_offset; 324585f8587Sbellard s->refcount_table_size = 325585f8587Sbellard header.refcount_table_clusters << (s->cluster_bits - 3); 326585f8587Sbellard 327585f8587Sbellard s->snapshots_offset = header.snapshots_offset; 328585f8587Sbellard s->nb_snapshots = header.nb_snapshots; 329585f8587Sbellard 330585f8587Sbellard /* read the level 1 table */ 331585f8587Sbellard s->l1_size = header.l1_size; 332585f8587Sbellard shift = s->cluster_bits + s->l2_bits; 333585f8587Sbellard s->l1_vm_state_index = (header.size + (1LL << shift) - 1) >> shift; 334585f8587Sbellard /* the L1 table must contain at least enough entries to put 335585f8587Sbellard header.size bytes */ 336585f8587Sbellard if (s->l1_size < s->l1_vm_state_index) 337585f8587Sbellard goto fail; 338585f8587Sbellard s->l1_table_offset = header.l1_table_offset; 339585f8587Sbellard s->l1_table = qemu_malloc(s->l1_size * sizeof(uint64_t)); 340585f8587Sbellard if (bdrv_pread(s->hd, s->l1_table_offset, s->l1_table, s->l1_size * sizeof(uint64_t)) != 341585f8587Sbellard s->l1_size * sizeof(uint64_t)) 342585f8587Sbellard goto fail; 343585f8587Sbellard for(i = 0;i < s->l1_size; i++) { 344585f8587Sbellard be64_to_cpus(&s->l1_table[i]); 345585f8587Sbellard } 346585f8587Sbellard /* alloc L2 cache */ 347585f8587Sbellard s->l2_cache = qemu_malloc(s->l2_size * L2_CACHE_SIZE * sizeof(uint64_t)); 348585f8587Sbellard s->cluster_cache = qemu_malloc(s->cluster_size); 349585f8587Sbellard /* one more sector for decompressed data alignment */ 350095a9c58Saliguori s->cluster_data = qemu_malloc(QCOW_MAX_CRYPT_CLUSTERS * s->cluster_size 351095a9c58Saliguori + 512); 352585f8587Sbellard s->cluster_cache_offset = -1; 353585f8587Sbellard 354585f8587Sbellard if (refcount_init(bs) < 0) 355585f8587Sbellard goto fail; 356585f8587Sbellard 3579b80ddf3Saliguori /* read qcow2 extensions */ 3589b80ddf3Saliguori if (header.backing_file_offset) 3599b80ddf3Saliguori ext_end = header.backing_file_offset; 3609b80ddf3Saliguori else 3619b80ddf3Saliguori ext_end = s->cluster_size; 3629b80ddf3Saliguori if (qcow_read_extensions(bs, sizeof(header), ext_end)) 3639b80ddf3Saliguori goto fail; 3649b80ddf3Saliguori 365585f8587Sbellard /* read the backing file name */ 366585f8587Sbellard if (header.backing_file_offset != 0) { 367585f8587Sbellard len = header.backing_file_size; 368585f8587Sbellard if (len > 1023) 369585f8587Sbellard len = 1023; 370585f8587Sbellard if (bdrv_pread(s->hd, header.backing_file_offset, bs->backing_file, len) != len) 371585f8587Sbellard goto fail; 372585f8587Sbellard bs->backing_file[len] = '\0'; 373585f8587Sbellard } 374585f8587Sbellard if (qcow_read_snapshots(bs) < 0) 375585f8587Sbellard goto fail; 376585f8587Sbellard 377585f8587Sbellard #ifdef DEBUG_ALLOC 378585f8587Sbellard check_refcounts(bs); 379585f8587Sbellard #endif 380585f8587Sbellard return 0; 381585f8587Sbellard 382585f8587Sbellard fail: 383585f8587Sbellard qcow_free_snapshots(bs); 384585f8587Sbellard refcount_close(bs); 385585f8587Sbellard qemu_free(s->l1_table); 386585f8587Sbellard qemu_free(s->l2_cache); 387585f8587Sbellard qemu_free(s->cluster_cache); 388585f8587Sbellard qemu_free(s->cluster_data); 389585f8587Sbellard bdrv_delete(s->hd); 390585f8587Sbellard return -1; 391585f8587Sbellard } 392585f8587Sbellard 393585f8587Sbellard static int qcow_set_key(BlockDriverState *bs, const char *key) 394585f8587Sbellard { 395585f8587Sbellard BDRVQcowState *s = bs->opaque; 396585f8587Sbellard uint8_t keybuf[16]; 397585f8587Sbellard int len, i; 398585f8587Sbellard 399585f8587Sbellard memset(keybuf, 0, 16); 400585f8587Sbellard len = strlen(key); 401585f8587Sbellard if (len > 16) 402585f8587Sbellard len = 16; 403585f8587Sbellard /* XXX: we could compress the chars to 7 bits to increase 404585f8587Sbellard entropy */ 405585f8587Sbellard for(i = 0;i < len;i++) { 406585f8587Sbellard keybuf[i] = key[i]; 407585f8587Sbellard } 408585f8587Sbellard s->crypt_method = s->crypt_method_header; 409585f8587Sbellard 410585f8587Sbellard if (AES_set_encrypt_key(keybuf, 128, &s->aes_encrypt_key) != 0) 411585f8587Sbellard return -1; 412585f8587Sbellard if (AES_set_decrypt_key(keybuf, 128, &s->aes_decrypt_key) != 0) 413585f8587Sbellard return -1; 414585f8587Sbellard #if 0 415585f8587Sbellard /* test */ 416585f8587Sbellard { 417585f8587Sbellard uint8_t in[16]; 418585f8587Sbellard uint8_t out[16]; 419585f8587Sbellard uint8_t tmp[16]; 420585f8587Sbellard for(i=0;i<16;i++) 421585f8587Sbellard in[i] = i; 422585f8587Sbellard AES_encrypt(in, tmp, &s->aes_encrypt_key); 423585f8587Sbellard AES_decrypt(tmp, out, &s->aes_decrypt_key); 424585f8587Sbellard for(i = 0; i < 16; i++) 425585f8587Sbellard printf(" %02x", tmp[i]); 426585f8587Sbellard printf("\n"); 427585f8587Sbellard for(i = 0; i < 16; i++) 428585f8587Sbellard printf(" %02x", out[i]); 429585f8587Sbellard printf("\n"); 430585f8587Sbellard } 431585f8587Sbellard #endif 432585f8587Sbellard return 0; 433585f8587Sbellard } 434585f8587Sbellard 435585f8587Sbellard /* The crypt function is compatible with the linux cryptoloop 436585f8587Sbellard algorithm for < 4 GB images. NOTE: out_buf == in_buf is 437585f8587Sbellard supported */ 438585f8587Sbellard static void encrypt_sectors(BDRVQcowState *s, int64_t sector_num, 439585f8587Sbellard uint8_t *out_buf, const uint8_t *in_buf, 440585f8587Sbellard int nb_sectors, int enc, 441585f8587Sbellard const AES_KEY *key) 442585f8587Sbellard { 443585f8587Sbellard union { 444585f8587Sbellard uint64_t ll[2]; 445585f8587Sbellard uint8_t b[16]; 446585f8587Sbellard } ivec; 447585f8587Sbellard int i; 448585f8587Sbellard 449585f8587Sbellard for(i = 0; i < nb_sectors; i++) { 450585f8587Sbellard ivec.ll[0] = cpu_to_le64(sector_num); 451585f8587Sbellard ivec.ll[1] = 0; 452585f8587Sbellard AES_cbc_encrypt(in_buf, out_buf, 512, key, 453585f8587Sbellard ivec.b, enc); 454585f8587Sbellard sector_num++; 455585f8587Sbellard in_buf += 512; 456585f8587Sbellard out_buf += 512; 457585f8587Sbellard } 458585f8587Sbellard } 459585f8587Sbellard 460585f8587Sbellard static int copy_sectors(BlockDriverState *bs, uint64_t start_sect, 461585f8587Sbellard uint64_t cluster_offset, int n_start, int n_end) 462585f8587Sbellard { 463585f8587Sbellard BDRVQcowState *s = bs->opaque; 464585f8587Sbellard int n, ret; 465585f8587Sbellard 466585f8587Sbellard n = n_end - n_start; 467585f8587Sbellard if (n <= 0) 468585f8587Sbellard return 0; 469585f8587Sbellard ret = qcow_read(bs, start_sect + n_start, s->cluster_data, n); 470585f8587Sbellard if (ret < 0) 471585f8587Sbellard return ret; 472585f8587Sbellard if (s->crypt_method) { 473585f8587Sbellard encrypt_sectors(s, start_sect + n_start, 474585f8587Sbellard s->cluster_data, 475585f8587Sbellard s->cluster_data, n, 1, 476585f8587Sbellard &s->aes_encrypt_key); 477585f8587Sbellard } 478585f8587Sbellard ret = bdrv_write(s->hd, (cluster_offset >> 9) + n_start, 479585f8587Sbellard s->cluster_data, n); 480585f8587Sbellard if (ret < 0) 481585f8587Sbellard return ret; 482585f8587Sbellard return 0; 483585f8587Sbellard } 484585f8587Sbellard 485585f8587Sbellard static void l2_cache_reset(BlockDriverState *bs) 486585f8587Sbellard { 487585f8587Sbellard BDRVQcowState *s = bs->opaque; 488585f8587Sbellard 489585f8587Sbellard memset(s->l2_cache, 0, s->l2_size * L2_CACHE_SIZE * sizeof(uint64_t)); 490585f8587Sbellard memset(s->l2_cache_offsets, 0, L2_CACHE_SIZE * sizeof(uint64_t)); 491585f8587Sbellard memset(s->l2_cache_counts, 0, L2_CACHE_SIZE * sizeof(uint32_t)); 492585f8587Sbellard } 493585f8587Sbellard 494585f8587Sbellard static inline int l2_cache_new_entry(BlockDriverState *bs) 495585f8587Sbellard { 496585f8587Sbellard BDRVQcowState *s = bs->opaque; 497585f8587Sbellard uint32_t min_count; 498585f8587Sbellard int min_index, i; 499585f8587Sbellard 500585f8587Sbellard /* find a new entry in the least used one */ 501585f8587Sbellard min_index = 0; 502585f8587Sbellard min_count = 0xffffffff; 503585f8587Sbellard for(i = 0; i < L2_CACHE_SIZE; i++) { 504585f8587Sbellard if (s->l2_cache_counts[i] < min_count) { 505585f8587Sbellard min_count = s->l2_cache_counts[i]; 506585f8587Sbellard min_index = i; 507585f8587Sbellard } 508585f8587Sbellard } 509585f8587Sbellard return min_index; 510585f8587Sbellard } 511585f8587Sbellard 512585f8587Sbellard static int64_t align_offset(int64_t offset, int n) 513585f8587Sbellard { 514585f8587Sbellard offset = (offset + n - 1) & ~(n - 1); 515585f8587Sbellard return offset; 516585f8587Sbellard } 517585f8587Sbellard 518585f8587Sbellard static int grow_l1_table(BlockDriverState *bs, int min_size) 519585f8587Sbellard { 520585f8587Sbellard BDRVQcowState *s = bs->opaque; 521585f8587Sbellard int new_l1_size, new_l1_size2, ret, i; 522585f8587Sbellard uint64_t *new_l1_table; 523585f8587Sbellard uint64_t new_l1_table_offset; 524643e5399Saliguori uint8_t data[12]; 525585f8587Sbellard 526585f8587Sbellard new_l1_size = s->l1_size; 527585f8587Sbellard if (min_size <= new_l1_size) 528585f8587Sbellard return 0; 529585f8587Sbellard while (min_size > new_l1_size) { 530585f8587Sbellard new_l1_size = (new_l1_size * 3 + 1) / 2; 531585f8587Sbellard } 532585f8587Sbellard #ifdef DEBUG_ALLOC2 533585f8587Sbellard printf("grow l1_table from %d to %d\n", s->l1_size, new_l1_size); 534585f8587Sbellard #endif 535585f8587Sbellard 536585f8587Sbellard new_l1_size2 = sizeof(uint64_t) * new_l1_size; 537585f8587Sbellard new_l1_table = qemu_mallocz(new_l1_size2); 538585f8587Sbellard memcpy(new_l1_table, s->l1_table, s->l1_size * sizeof(uint64_t)); 539585f8587Sbellard 540585f8587Sbellard /* write new table (align to cluster) */ 541585f8587Sbellard new_l1_table_offset = alloc_clusters(bs, new_l1_size2); 542585f8587Sbellard 543585f8587Sbellard for(i = 0; i < s->l1_size; i++) 544585f8587Sbellard new_l1_table[i] = cpu_to_be64(new_l1_table[i]); 545585f8587Sbellard ret = bdrv_pwrite(s->hd, new_l1_table_offset, new_l1_table, new_l1_size2); 546585f8587Sbellard if (ret != new_l1_size2) 547585f8587Sbellard goto fail; 548585f8587Sbellard for(i = 0; i < s->l1_size; i++) 549585f8587Sbellard new_l1_table[i] = be64_to_cpu(new_l1_table[i]); 550585f8587Sbellard 551585f8587Sbellard /* set new table */ 552643e5399Saliguori cpu_to_be32w((uint32_t*)data, new_l1_size); 553643e5399Saliguori cpu_to_be64w((uint64_t*)(data + 4), new_l1_table_offset); 554643e5399Saliguori if (bdrv_pwrite(s->hd, offsetof(QCowHeader, l1_size), data, 555643e5399Saliguori sizeof(data)) != sizeof(data)) 556585f8587Sbellard goto fail; 557585f8587Sbellard qemu_free(s->l1_table); 558585f8587Sbellard free_clusters(bs, s->l1_table_offset, s->l1_size * sizeof(uint64_t)); 559585f8587Sbellard s->l1_table_offset = new_l1_table_offset; 560585f8587Sbellard s->l1_table = new_l1_table; 561585f8587Sbellard s->l1_size = new_l1_size; 562585f8587Sbellard return 0; 563585f8587Sbellard fail: 564585f8587Sbellard qemu_free(s->l1_table); 565585f8587Sbellard return -EIO; 566585f8587Sbellard } 567585f8587Sbellard 568108534b9Saliguori /* 569108534b9Saliguori * seek_l2_table 570585f8587Sbellard * 571108534b9Saliguori * seek l2_offset in the l2_cache table 572108534b9Saliguori * if not found, return NULL, 573108534b9Saliguori * if found, 574108534b9Saliguori * increments the l2 cache hit count of the entry, 575108534b9Saliguori * if counter overflow, divide by two all counters 576108534b9Saliguori * return the pointer to the l2 cache entry 577585f8587Sbellard * 578585f8587Sbellard */ 579108534b9Saliguori 580108534b9Saliguori static uint64_t *seek_l2_table(BDRVQcowState *s, uint64_t l2_offset) 581585f8587Sbellard { 582108534b9Saliguori int i, j; 583585f8587Sbellard 584585f8587Sbellard for(i = 0; i < L2_CACHE_SIZE; i++) { 585585f8587Sbellard if (l2_offset == s->l2_cache_offsets[i]) { 586585f8587Sbellard /* increment the hit count */ 587585f8587Sbellard if (++s->l2_cache_counts[i] == 0xffffffff) { 588585f8587Sbellard for(j = 0; j < L2_CACHE_SIZE; j++) { 589585f8587Sbellard s->l2_cache_counts[j] >>= 1; 590585f8587Sbellard } 591585f8587Sbellard } 592108534b9Saliguori return s->l2_cache + (i << s->l2_bits); 593585f8587Sbellard } 594585f8587Sbellard } 595108534b9Saliguori return NULL; 596108534b9Saliguori } 597108534b9Saliguori 598108534b9Saliguori /* 599108534b9Saliguori * l2_load 600108534b9Saliguori * 601108534b9Saliguori * Loads a L2 table into memory. If the table is in the cache, the cache 602108534b9Saliguori * is used; otherwise the L2 table is loaded from the image file. 603108534b9Saliguori * 604108534b9Saliguori * Returns a pointer to the L2 table on success, or NULL if the read from 605108534b9Saliguori * the image file failed. 606108534b9Saliguori */ 607108534b9Saliguori 608108534b9Saliguori static uint64_t *l2_load(BlockDriverState *bs, uint64_t l2_offset) 609108534b9Saliguori { 610108534b9Saliguori BDRVQcowState *s = bs->opaque; 611108534b9Saliguori int min_index; 612108534b9Saliguori uint64_t *l2_table; 613108534b9Saliguori 614108534b9Saliguori /* seek if the table for the given offset is in the cache */ 615108534b9Saliguori 616108534b9Saliguori l2_table = seek_l2_table(s, l2_offset); 617108534b9Saliguori if (l2_table != NULL) 618108534b9Saliguori return l2_table; 619108534b9Saliguori 620585f8587Sbellard /* not found: load a new entry in the least used one */ 621108534b9Saliguori 622585f8587Sbellard min_index = l2_cache_new_entry(bs); 623585f8587Sbellard l2_table = s->l2_cache + (min_index << s->l2_bits); 624585f8587Sbellard if (bdrv_pread(s->hd, l2_offset, l2_table, s->l2_size * sizeof(uint64_t)) != 625585f8587Sbellard s->l2_size * sizeof(uint64_t)) 626108534b9Saliguori return NULL; 627585f8587Sbellard s->l2_cache_offsets[min_index] = l2_offset; 628585f8587Sbellard s->l2_cache_counts[min_index] = 1; 629108534b9Saliguori 630108534b9Saliguori return l2_table; 631108534b9Saliguori } 632108534b9Saliguori 633108534b9Saliguori /* 634108534b9Saliguori * l2_allocate 635108534b9Saliguori * 636108534b9Saliguori * Allocate a new l2 entry in the file. If l1_index points to an already 637108534b9Saliguori * used entry in the L2 table (i.e. we are doing a copy on write for the L2 638108534b9Saliguori * table) copy the contents of the old L2 table into the newly allocated one. 639108534b9Saliguori * Otherwise the new table is initialized with zeros. 640108534b9Saliguori * 641108534b9Saliguori */ 642108534b9Saliguori 643108534b9Saliguori static uint64_t *l2_allocate(BlockDriverState *bs, int l1_index) 644108534b9Saliguori { 645108534b9Saliguori BDRVQcowState *s = bs->opaque; 646108534b9Saliguori int min_index; 647108534b9Saliguori uint64_t old_l2_offset, tmp; 648108534b9Saliguori uint64_t *l2_table, l2_offset; 649108534b9Saliguori 650108534b9Saliguori old_l2_offset = s->l1_table[l1_index]; 651108534b9Saliguori 652108534b9Saliguori /* allocate a new l2 entry */ 653108534b9Saliguori 654108534b9Saliguori l2_offset = alloc_clusters(bs, s->l2_size * sizeof(uint64_t)); 655108534b9Saliguori 656108534b9Saliguori /* update the L1 entry */ 657108534b9Saliguori 658108534b9Saliguori s->l1_table[l1_index] = l2_offset | QCOW_OFLAG_COPIED; 659108534b9Saliguori 660108534b9Saliguori tmp = cpu_to_be64(l2_offset | QCOW_OFLAG_COPIED); 661108534b9Saliguori if (bdrv_pwrite(s->hd, s->l1_table_offset + l1_index * sizeof(tmp), 662108534b9Saliguori &tmp, sizeof(tmp)) != sizeof(tmp)) 663108534b9Saliguori return NULL; 664108534b9Saliguori 665108534b9Saliguori /* allocate a new entry in the l2 cache */ 666108534b9Saliguori 667108534b9Saliguori min_index = l2_cache_new_entry(bs); 668108534b9Saliguori l2_table = s->l2_cache + (min_index << s->l2_bits); 669108534b9Saliguori 670108534b9Saliguori if (old_l2_offset == 0) { 671108534b9Saliguori /* if there was no old l2 table, clear the new table */ 672108534b9Saliguori memset(l2_table, 0, s->l2_size * sizeof(uint64_t)); 673108534b9Saliguori } else { 674108534b9Saliguori /* if there was an old l2 table, read it from the disk */ 675108534b9Saliguori if (bdrv_pread(s->hd, old_l2_offset, 676108534b9Saliguori l2_table, s->l2_size * sizeof(uint64_t)) != 677108534b9Saliguori s->l2_size * sizeof(uint64_t)) 678108534b9Saliguori return NULL; 679108534b9Saliguori } 680108534b9Saliguori /* write the l2 table to the file */ 681108534b9Saliguori if (bdrv_pwrite(s->hd, l2_offset, 682108534b9Saliguori l2_table, s->l2_size * sizeof(uint64_t)) != 683108534b9Saliguori s->l2_size * sizeof(uint64_t)) 684108534b9Saliguori return NULL; 685108534b9Saliguori 686108534b9Saliguori /* update the l2 cache entry */ 687108534b9Saliguori 688108534b9Saliguori s->l2_cache_offsets[min_index] = l2_offset; 689108534b9Saliguori s->l2_cache_counts[min_index] = 1; 690108534b9Saliguori 691108534b9Saliguori return l2_table; 692108534b9Saliguori } 693108534b9Saliguori 6946db6c638Saliguori static int size_to_clusters(BDRVQcowState *s, int64_t size) 6956db6c638Saliguori { 6966db6c638Saliguori return (size + (s->cluster_size - 1)) >> s->cluster_bits; 6976db6c638Saliguori } 6986db6c638Saliguori 6996db6c638Saliguori static int count_contiguous_clusters(uint64_t nb_clusters, int cluster_size, 700ff4b91c2Saliguori uint64_t *l2_table, uint64_t start, uint64_t mask) 7016db6c638Saliguori { 7026db6c638Saliguori int i; 7036db6c638Saliguori uint64_t offset = be64_to_cpu(l2_table[0]) & ~mask; 7046db6c638Saliguori 705ab5ccbd6Saliguori if (!offset) 706ab5ccbd6Saliguori return 0; 707ab5ccbd6Saliguori 708ff4b91c2Saliguori for (i = start; i < start + nb_clusters; i++) 7096db6c638Saliguori if (offset + i * cluster_size != (be64_to_cpu(l2_table[i]) & ~mask)) 7106db6c638Saliguori break; 7116db6c638Saliguori 712ff4b91c2Saliguori return (i - start); 7136db6c638Saliguori } 7146db6c638Saliguori 7156db6c638Saliguori static int count_contiguous_free_clusters(uint64_t nb_clusters, uint64_t *l2_table) 7166db6c638Saliguori { 7176db6c638Saliguori int i = 0; 7186db6c638Saliguori 7196db6c638Saliguori while(nb_clusters-- && l2_table[i] == 0) 7206db6c638Saliguori i++; 7216db6c638Saliguori 7226db6c638Saliguori return i; 7236db6c638Saliguori } 7246db6c638Saliguori 72505203524Saliguori /* 72605203524Saliguori * get_cluster_offset 72705203524Saliguori * 72805203524Saliguori * For a given offset of the disk image, return cluster offset in 72905203524Saliguori * qcow2 file. 73005203524Saliguori * 731095a9c58Saliguori * on entry, *num is the number of contiguous clusters we'd like to 732095a9c58Saliguori * access following offset. 733095a9c58Saliguori * 734095a9c58Saliguori * on exit, *num is the number of contiguous clusters we can read. 735095a9c58Saliguori * 73605203524Saliguori * Return 1, if the offset is found 73705203524Saliguori * Return 0, otherwise. 73805203524Saliguori * 73905203524Saliguori */ 74005203524Saliguori 741095a9c58Saliguori static uint64_t get_cluster_offset(BlockDriverState *bs, 742095a9c58Saliguori uint64_t offset, int *num) 74305203524Saliguori { 74405203524Saliguori BDRVQcowState *s = bs->opaque; 74505203524Saliguori int l1_index, l2_index; 7466db6c638Saliguori uint64_t l2_offset, *l2_table, cluster_offset; 7476db6c638Saliguori int l1_bits, c; 7486db6c638Saliguori int index_in_cluster, nb_available, nb_needed, nb_clusters; 749095a9c58Saliguori 750095a9c58Saliguori index_in_cluster = (offset >> 9) & (s->cluster_sectors - 1); 751095a9c58Saliguori nb_needed = *num + index_in_cluster; 752095a9c58Saliguori 753095a9c58Saliguori l1_bits = s->l2_bits + s->cluster_bits; 754095a9c58Saliguori 755095a9c58Saliguori /* compute how many bytes there are between the offset and 7566db6c638Saliguori * the end of the l1 entry 757095a9c58Saliguori */ 758095a9c58Saliguori 759095a9c58Saliguori nb_available = (1 << l1_bits) - (offset & ((1 << l1_bits) - 1)); 760095a9c58Saliguori 761095a9c58Saliguori /* compute the number of available sectors */ 762095a9c58Saliguori 763095a9c58Saliguori nb_available = (nb_available >> 9) + index_in_cluster; 764095a9c58Saliguori 765f8de1660Saliguori if (nb_needed > nb_available) { 766f8de1660Saliguori nb_needed = nb_available; 767f8de1660Saliguori } 768f8de1660Saliguori 769095a9c58Saliguori cluster_offset = 0; 77005203524Saliguori 77105203524Saliguori /* seek the the l2 offset in the l1 table */ 77205203524Saliguori 773095a9c58Saliguori l1_index = offset >> l1_bits; 77405203524Saliguori if (l1_index >= s->l1_size) 775095a9c58Saliguori goto out; 77605203524Saliguori 77705203524Saliguori l2_offset = s->l1_table[l1_index]; 77805203524Saliguori 77905203524Saliguori /* seek the l2 table of the given l2 offset */ 78005203524Saliguori 78105203524Saliguori if (!l2_offset) 782095a9c58Saliguori goto out; 78305203524Saliguori 78405203524Saliguori /* load the l2 table in memory */ 78505203524Saliguori 78605203524Saliguori l2_offset &= ~QCOW_OFLAG_COPIED; 78705203524Saliguori l2_table = l2_load(bs, l2_offset); 78805203524Saliguori if (l2_table == NULL) 789768706a5Saliguori return 0; 79005203524Saliguori 79105203524Saliguori /* find the cluster offset for the given disk offset */ 79205203524Saliguori 79305203524Saliguori l2_index = (offset >> s->cluster_bits) & (s->l2_size - 1); 79405203524Saliguori cluster_offset = be64_to_cpu(l2_table[l2_index]); 7956db6c638Saliguori nb_clusters = size_to_clusters(s, nb_needed << 9); 79605203524Saliguori 797095a9c58Saliguori if (!cluster_offset) { 798095a9c58Saliguori /* how many empty clusters ? */ 7996db6c638Saliguori c = count_contiguous_free_clusters(nb_clusters, &l2_table[l2_index]); 800095a9c58Saliguori } else { 801095a9c58Saliguori /* how many allocated clusters ? */ 8026db6c638Saliguori c = count_contiguous_clusters(nb_clusters, s->cluster_size, 803ff4b91c2Saliguori &l2_table[l2_index], 0, QCOW_OFLAG_COPIED); 804095a9c58Saliguori } 805095a9c58Saliguori 8066db6c638Saliguori nb_available = (c * s->cluster_sectors); 807095a9c58Saliguori out: 808095a9c58Saliguori if (nb_available > nb_needed) 809095a9c58Saliguori nb_available = nb_needed; 810095a9c58Saliguori 811095a9c58Saliguori *num = nb_available - index_in_cluster; 812095a9c58Saliguori 8136db6c638Saliguori return cluster_offset & ~QCOW_OFLAG_COPIED; 81405203524Saliguori } 81505203524Saliguori 81605203524Saliguori /* 81752d893ecSaliguori * free_any_clusters 81805203524Saliguori * 81952d893ecSaliguori * free clusters according to its type: compressed or not 82005203524Saliguori * 82105203524Saliguori */ 82205203524Saliguori 82352d893ecSaliguori static void free_any_clusters(BlockDriverState *bs, 824095a9c58Saliguori uint64_t cluster_offset, int nb_clusters) 82552d893ecSaliguori { 82652d893ecSaliguori BDRVQcowState *s = bs->opaque; 82752d893ecSaliguori 82852d893ecSaliguori /* free the cluster */ 82952d893ecSaliguori 83052d893ecSaliguori if (cluster_offset & QCOW_OFLAG_COMPRESSED) { 83152d893ecSaliguori int nb_csectors; 83252d893ecSaliguori nb_csectors = ((cluster_offset >> s->csize_shift) & 83352d893ecSaliguori s->csize_mask) + 1; 83452d893ecSaliguori free_clusters(bs, (cluster_offset & s->cluster_offset_mask) & ~511, 83552d893ecSaliguori nb_csectors * 512); 83652d893ecSaliguori return; 83752d893ecSaliguori } 83852d893ecSaliguori 839095a9c58Saliguori free_clusters(bs, cluster_offset, nb_clusters << s->cluster_bits); 840095a9c58Saliguori 841095a9c58Saliguori return; 84252d893ecSaliguori } 84352d893ecSaliguori 84452d893ecSaliguori /* 84552d893ecSaliguori * get_cluster_table 84652d893ecSaliguori * 84752d893ecSaliguori * for a given disk offset, load (and allocate if needed) 84852d893ecSaliguori * the l2 table. 84952d893ecSaliguori * 85052d893ecSaliguori * the l2 table offset in the qcow2 file and the cluster index 85152d893ecSaliguori * in the l2 table are given to the caller. 85252d893ecSaliguori * 85352d893ecSaliguori */ 85452d893ecSaliguori 85552d893ecSaliguori static int get_cluster_table(BlockDriverState *bs, uint64_t offset, 85652d893ecSaliguori uint64_t **new_l2_table, 85752d893ecSaliguori uint64_t *new_l2_offset, 85852d893ecSaliguori int *new_l2_index) 859108534b9Saliguori { 860108534b9Saliguori BDRVQcowState *s = bs->opaque; 861108534b9Saliguori int l1_index, l2_index, ret; 86252d893ecSaliguori uint64_t l2_offset, *l2_table; 863108534b9Saliguori 864108534b9Saliguori /* seek the the l2 offset in the l1 table */ 865108534b9Saliguori 866108534b9Saliguori l1_index = offset >> (s->l2_bits + s->cluster_bits); 867108534b9Saliguori if (l1_index >= s->l1_size) { 868108534b9Saliguori ret = grow_l1_table(bs, l1_index + 1); 869108534b9Saliguori if (ret < 0) 870108534b9Saliguori return 0; 871108534b9Saliguori } 872108534b9Saliguori l2_offset = s->l1_table[l1_index]; 873108534b9Saliguori 874108534b9Saliguori /* seek the l2 table of the given l2 offset */ 875108534b9Saliguori 87605203524Saliguori if (l2_offset & QCOW_OFLAG_COPIED) { 877108534b9Saliguori /* load the l2 table in memory */ 878108534b9Saliguori l2_offset &= ~QCOW_OFLAG_COPIED; 879108534b9Saliguori l2_table = l2_load(bs, l2_offset); 880108534b9Saliguori if (l2_table == NULL) 881108534b9Saliguori return 0; 88205203524Saliguori } else { 88305203524Saliguori if (l2_offset) 88405203524Saliguori free_clusters(bs, l2_offset, s->l2_size * sizeof(uint64_t)); 88505203524Saliguori l2_table = l2_allocate(bs, l1_index); 88605203524Saliguori if (l2_table == NULL) 88705203524Saliguori return 0; 88805203524Saliguori l2_offset = s->l1_table[l1_index] & ~QCOW_OFLAG_COPIED; 889108534b9Saliguori } 890108534b9Saliguori 891108534b9Saliguori /* find the cluster offset for the given disk offset */ 892108534b9Saliguori 893585f8587Sbellard l2_index = (offset >> s->cluster_bits) & (s->l2_size - 1); 89405203524Saliguori 89552d893ecSaliguori *new_l2_table = l2_table; 89652d893ecSaliguori *new_l2_offset = l2_offset; 89752d893ecSaliguori *new_l2_index = l2_index; 89852d893ecSaliguori 89952d893ecSaliguori return 1; 90052d893ecSaliguori } 90152d893ecSaliguori 90252d893ecSaliguori /* 90352d893ecSaliguori * alloc_compressed_cluster_offset 90452d893ecSaliguori * 90552d893ecSaliguori * For a given offset of the disk image, return cluster offset in 90652d893ecSaliguori * qcow2 file. 90752d893ecSaliguori * 90852d893ecSaliguori * If the offset is not found, allocate a new compressed cluster. 90952d893ecSaliguori * 91052d893ecSaliguori * Return the cluster offset if successful, 91152d893ecSaliguori * Return 0, otherwise. 91252d893ecSaliguori * 91352d893ecSaliguori */ 91452d893ecSaliguori 91552d893ecSaliguori static uint64_t alloc_compressed_cluster_offset(BlockDriverState *bs, 91652d893ecSaliguori uint64_t offset, 91752d893ecSaliguori int compressed_size) 91852d893ecSaliguori { 91952d893ecSaliguori BDRVQcowState *s = bs->opaque; 92052d893ecSaliguori int l2_index, ret; 92152d893ecSaliguori uint64_t l2_offset, *l2_table, cluster_offset; 92252d893ecSaliguori int nb_csectors; 92352d893ecSaliguori 92452d893ecSaliguori ret = get_cluster_table(bs, offset, &l2_table, &l2_offset, &l2_index); 92552d893ecSaliguori if (ret == 0) 92652d893ecSaliguori return 0; 92752d893ecSaliguori 92852d893ecSaliguori cluster_offset = be64_to_cpu(l2_table[l2_index]); 92905203524Saliguori if (cluster_offset & QCOW_OFLAG_COPIED) 93005203524Saliguori return cluster_offset & ~QCOW_OFLAG_COPIED; 93105203524Saliguori 932095a9c58Saliguori if (cluster_offset) 933095a9c58Saliguori free_any_clusters(bs, cluster_offset, 1); 93405203524Saliguori 93505203524Saliguori cluster_offset = alloc_bytes(bs, compressed_size); 93605203524Saliguori nb_csectors = ((cluster_offset + compressed_size - 1) >> 9) - 93705203524Saliguori (cluster_offset >> 9); 93805203524Saliguori 93905203524Saliguori cluster_offset |= QCOW_OFLAG_COMPRESSED | 94005203524Saliguori ((uint64_t)nb_csectors << s->csize_shift); 94105203524Saliguori 94205203524Saliguori /* update L2 table */ 94305203524Saliguori 94405203524Saliguori /* compressed clusters never have the copied flag */ 94505203524Saliguori 94605203524Saliguori l2_table[l2_index] = cpu_to_be64(cluster_offset); 94705203524Saliguori if (bdrv_pwrite(s->hd, 94805203524Saliguori l2_offset + l2_index * sizeof(uint64_t), 94905203524Saliguori l2_table + l2_index, 95005203524Saliguori sizeof(uint64_t)) != sizeof(uint64_t)) 95105203524Saliguori return 0; 95205203524Saliguori 953585f8587Sbellard return cluster_offset; 954585f8587Sbellard } 955108534b9Saliguori 956e976c6a1Saliguori typedef struct QCowL2Meta 957e976c6a1Saliguori { 958e976c6a1Saliguori uint64_t offset; 959e976c6a1Saliguori int n_start; 960e976c6a1Saliguori int nb_available; 961e976c6a1Saliguori int nb_clusters; 962e976c6a1Saliguori } QCowL2Meta; 963e976c6a1Saliguori 964e976c6a1Saliguori static int alloc_cluster_link_l2(BlockDriverState *bs, uint64_t cluster_offset, 965e976c6a1Saliguori QCowL2Meta *m) 966e976c6a1Saliguori { 967e976c6a1Saliguori BDRVQcowState *s = bs->opaque; 968e976c6a1Saliguori int i, j = 0, l2_index, ret; 969e976c6a1Saliguori uint64_t *old_cluster, start_sect, l2_offset, *l2_table; 970e976c6a1Saliguori 971e976c6a1Saliguori if (m->nb_clusters == 0) 972e976c6a1Saliguori return 0; 973e976c6a1Saliguori 9743ec88e80Saliguori old_cluster = qemu_malloc(m->nb_clusters * sizeof(uint64_t)); 975e976c6a1Saliguori 976e976c6a1Saliguori /* copy content of unmodified sectors */ 977e976c6a1Saliguori start_sect = (m->offset & ~(s->cluster_size - 1)) >> 9; 978e976c6a1Saliguori if (m->n_start) { 979e976c6a1Saliguori ret = copy_sectors(bs, start_sect, cluster_offset, 0, m->n_start); 980e976c6a1Saliguori if (ret < 0) 981e976c6a1Saliguori goto err; 982e976c6a1Saliguori } 983e976c6a1Saliguori 984e976c6a1Saliguori if (m->nb_available & (s->cluster_sectors - 1)) { 985e976c6a1Saliguori uint64_t end = m->nb_available & ~(uint64_t)(s->cluster_sectors - 1); 986e976c6a1Saliguori ret = copy_sectors(bs, start_sect + end, cluster_offset + (end << 9), 987e976c6a1Saliguori m->nb_available - end, s->cluster_sectors); 988e976c6a1Saliguori if (ret < 0) 989e976c6a1Saliguori goto err; 990e976c6a1Saliguori } 991e976c6a1Saliguori 992e976c6a1Saliguori ret = -EIO; 993e976c6a1Saliguori /* update L2 table */ 994e976c6a1Saliguori if (!get_cluster_table(bs, m->offset, &l2_table, &l2_offset, &l2_index)) 995e976c6a1Saliguori goto err; 996e976c6a1Saliguori 997e976c6a1Saliguori for (i = 0; i < m->nb_clusters; i++) { 998d4d698f0SGleb Natapov /* if two concurrent writes happen to the same unallocated cluster 999d4d698f0SGleb Natapov * each write allocates separate cluster and writes data concurrently. 1000d4d698f0SGleb Natapov * The first one to complete updates l2 table with pointer to its 1001d4d698f0SGleb Natapov * cluster the second one has to do RMW (which is done above by 1002d4d698f0SGleb Natapov * copy_sectors()), update l2 table with its cluster pointer and free 1003d4d698f0SGleb Natapov * old cluster. This is what this loop does */ 1004e976c6a1Saliguori if(l2_table[l2_index + i] != 0) 1005e976c6a1Saliguori old_cluster[j++] = l2_table[l2_index + i]; 1006e976c6a1Saliguori 1007e976c6a1Saliguori l2_table[l2_index + i] = cpu_to_be64((cluster_offset + 1008e976c6a1Saliguori (i << s->cluster_bits)) | QCOW_OFLAG_COPIED); 1009e976c6a1Saliguori } 1010e976c6a1Saliguori 1011e976c6a1Saliguori if (bdrv_pwrite(s->hd, l2_offset + l2_index * sizeof(uint64_t), 1012e976c6a1Saliguori l2_table + l2_index, m->nb_clusters * sizeof(uint64_t)) != 1013e976c6a1Saliguori m->nb_clusters * sizeof(uint64_t)) 1014e976c6a1Saliguori goto err; 1015e976c6a1Saliguori 1016e976c6a1Saliguori for (i = 0; i < j; i++) 1017d4d698f0SGleb Natapov free_any_clusters(bs, be64_to_cpu(old_cluster[i]) & ~QCOW_OFLAG_COPIED, 1018d4d698f0SGleb Natapov 1); 1019e976c6a1Saliguori 1020e976c6a1Saliguori ret = 0; 1021e976c6a1Saliguori err: 1022e976c6a1Saliguori qemu_free(old_cluster); 1023e976c6a1Saliguori return ret; 1024e976c6a1Saliguori } 1025e976c6a1Saliguori 102652d893ecSaliguori /* 102752d893ecSaliguori * alloc_cluster_offset 102852d893ecSaliguori * 102952d893ecSaliguori * For a given offset of the disk image, return cluster offset in 103052d893ecSaliguori * qcow2 file. 103152d893ecSaliguori * 103252d893ecSaliguori * If the offset is not found, allocate a new cluster. 103352d893ecSaliguori * 103452d893ecSaliguori * Return the cluster offset if successful, 103552d893ecSaliguori * Return 0, otherwise. 103652d893ecSaliguori * 103752d893ecSaliguori */ 103852d893ecSaliguori 103952d893ecSaliguori static uint64_t alloc_cluster_offset(BlockDriverState *bs, 104052d893ecSaliguori uint64_t offset, 1041095a9c58Saliguori int n_start, int n_end, 1042e976c6a1Saliguori int *num, QCowL2Meta *m) 104352d893ecSaliguori { 104452d893ecSaliguori BDRVQcowState *s = bs->opaque; 104552d893ecSaliguori int l2_index, ret; 104652d893ecSaliguori uint64_t l2_offset, *l2_table, cluster_offset; 1047e976c6a1Saliguori int nb_clusters, i = 0; 104852d893ecSaliguori 104952d893ecSaliguori ret = get_cluster_table(bs, offset, &l2_table, &l2_offset, &l2_index); 105052d893ecSaliguori if (ret == 0) 105152d893ecSaliguori return 0; 105252d893ecSaliguori 10536db6c638Saliguori nb_clusters = size_to_clusters(s, n_end << 9); 10546db6c638Saliguori 1055e976c6a1Saliguori nb_clusters = MIN(nb_clusters, s->l2_size - l2_index); 105652d893ecSaliguori 1057095a9c58Saliguori cluster_offset = be64_to_cpu(l2_table[l2_index]); 1058095a9c58Saliguori 1059095a9c58Saliguori /* We keep all QCOW_OFLAG_COPIED clusters */ 1060095a9c58Saliguori 1061095a9c58Saliguori if (cluster_offset & QCOW_OFLAG_COPIED) { 10626db6c638Saliguori nb_clusters = count_contiguous_clusters(nb_clusters, s->cluster_size, 1063ff4b91c2Saliguori &l2_table[l2_index], 0, 0); 1064095a9c58Saliguori 1065095a9c58Saliguori cluster_offset &= ~QCOW_OFLAG_COPIED; 1066e976c6a1Saliguori m->nb_clusters = 0; 1067095a9c58Saliguori 1068095a9c58Saliguori goto out; 1069095a9c58Saliguori } 1070095a9c58Saliguori 1071095a9c58Saliguori /* for the moment, multiple compressed clusters are not managed */ 1072095a9c58Saliguori 1073095a9c58Saliguori if (cluster_offset & QCOW_OFLAG_COMPRESSED) 1074095a9c58Saliguori nb_clusters = 1; 1075095a9c58Saliguori 1076bc352085Saliguori /* how many available clusters ? */ 1077bc352085Saliguori 1078bc352085Saliguori while (i < nb_clusters) { 1079ab5ccbd6Saliguori i += count_contiguous_clusters(nb_clusters - i, s->cluster_size, 1080ff4b91c2Saliguori &l2_table[l2_index], i, 0); 1081ab5ccbd6Saliguori 1082ab5ccbd6Saliguori if(be64_to_cpu(l2_table[l2_index + i])) 1083ab5ccbd6Saliguori break; 1084ab5ccbd6Saliguori 10856db6c638Saliguori i += count_contiguous_free_clusters(nb_clusters - i, 10866db6c638Saliguori &l2_table[l2_index + i]); 1087bc352085Saliguori 1088f4af02edSaliguori cluster_offset = be64_to_cpu(l2_table[l2_index + i]); 1089bc352085Saliguori 1090bc352085Saliguori if ((cluster_offset & QCOW_OFLAG_COPIED) || 1091bc352085Saliguori (cluster_offset & QCOW_OFLAG_COMPRESSED)) 1092bc352085Saliguori break; 1093095a9c58Saliguori } 1094095a9c58Saliguori nb_clusters = i; 1095095a9c58Saliguori 1096585f8587Sbellard /* allocate a new cluster */ 109705203524Saliguori 1098095a9c58Saliguori cluster_offset = alloc_clusters(bs, nb_clusters * s->cluster_size); 1099585f8587Sbellard 1100e976c6a1Saliguori /* save info needed for meta data update */ 1101e976c6a1Saliguori m->offset = offset; 1102e976c6a1Saliguori m->n_start = n_start; 1103e976c6a1Saliguori m->nb_clusters = nb_clusters; 110405203524Saliguori 1105095a9c58Saliguori out: 1106e976c6a1Saliguori m->nb_available = MIN(nb_clusters << (s->cluster_bits - 9), n_end); 1107e976c6a1Saliguori 1108e976c6a1Saliguori *num = m->nb_available - n_start; 1109095a9c58Saliguori 1110585f8587Sbellard return cluster_offset; 1111585f8587Sbellard } 1112585f8587Sbellard 1113585f8587Sbellard static int qcow_is_allocated(BlockDriverState *bs, int64_t sector_num, 1114585f8587Sbellard int nb_sectors, int *pnum) 1115585f8587Sbellard { 1116585f8587Sbellard uint64_t cluster_offset; 1117585f8587Sbellard 1118095a9c58Saliguori *pnum = nb_sectors; 1119095a9c58Saliguori cluster_offset = get_cluster_offset(bs, sector_num << 9, pnum); 1120095a9c58Saliguori 1121585f8587Sbellard return (cluster_offset != 0); 1122585f8587Sbellard } 1123585f8587Sbellard 1124585f8587Sbellard static int decompress_buffer(uint8_t *out_buf, int out_buf_size, 1125585f8587Sbellard const uint8_t *buf, int buf_size) 1126585f8587Sbellard { 1127585f8587Sbellard z_stream strm1, *strm = &strm1; 1128585f8587Sbellard int ret, out_len; 1129585f8587Sbellard 1130585f8587Sbellard memset(strm, 0, sizeof(*strm)); 1131585f8587Sbellard 1132585f8587Sbellard strm->next_in = (uint8_t *)buf; 1133585f8587Sbellard strm->avail_in = buf_size; 1134585f8587Sbellard strm->next_out = out_buf; 1135585f8587Sbellard strm->avail_out = out_buf_size; 1136585f8587Sbellard 1137585f8587Sbellard ret = inflateInit2(strm, -12); 1138585f8587Sbellard if (ret != Z_OK) 1139585f8587Sbellard return -1; 1140585f8587Sbellard ret = inflate(strm, Z_FINISH); 1141585f8587Sbellard out_len = strm->next_out - out_buf; 1142585f8587Sbellard if ((ret != Z_STREAM_END && ret != Z_BUF_ERROR) || 1143585f8587Sbellard out_len != out_buf_size) { 1144585f8587Sbellard inflateEnd(strm); 1145585f8587Sbellard return -1; 1146585f8587Sbellard } 1147585f8587Sbellard inflateEnd(strm); 1148585f8587Sbellard return 0; 1149585f8587Sbellard } 1150585f8587Sbellard 1151585f8587Sbellard static int decompress_cluster(BDRVQcowState *s, uint64_t cluster_offset) 1152585f8587Sbellard { 1153585f8587Sbellard int ret, csize, nb_csectors, sector_offset; 1154585f8587Sbellard uint64_t coffset; 1155585f8587Sbellard 1156585f8587Sbellard coffset = cluster_offset & s->cluster_offset_mask; 1157585f8587Sbellard if (s->cluster_cache_offset != coffset) { 1158585f8587Sbellard nb_csectors = ((cluster_offset >> s->csize_shift) & s->csize_mask) + 1; 1159585f8587Sbellard sector_offset = coffset & 511; 1160585f8587Sbellard csize = nb_csectors * 512 - sector_offset; 1161585f8587Sbellard ret = bdrv_read(s->hd, coffset >> 9, s->cluster_data, nb_csectors); 1162585f8587Sbellard if (ret < 0) { 1163585f8587Sbellard return -1; 1164585f8587Sbellard } 1165585f8587Sbellard if (decompress_buffer(s->cluster_cache, s->cluster_size, 1166585f8587Sbellard s->cluster_data + sector_offset, csize) < 0) { 1167585f8587Sbellard return -1; 1168585f8587Sbellard } 1169585f8587Sbellard s->cluster_cache_offset = coffset; 1170585f8587Sbellard } 1171585f8587Sbellard return 0; 1172585f8587Sbellard } 1173585f8587Sbellard 1174a9465922Sbellard /* handle reading after the end of the backing file */ 1175a9465922Sbellard static int backing_read1(BlockDriverState *bs, 1176a9465922Sbellard int64_t sector_num, uint8_t *buf, int nb_sectors) 1177a9465922Sbellard { 1178a9465922Sbellard int n1; 1179a9465922Sbellard if ((sector_num + nb_sectors) <= bs->total_sectors) 1180a9465922Sbellard return nb_sectors; 1181a9465922Sbellard if (sector_num >= bs->total_sectors) 1182a9465922Sbellard n1 = 0; 1183a9465922Sbellard else 1184a9465922Sbellard n1 = bs->total_sectors - sector_num; 1185a9465922Sbellard memset(buf + n1 * 512, 0, 512 * (nb_sectors - n1)); 1186a9465922Sbellard return n1; 1187a9465922Sbellard } 1188a9465922Sbellard 1189585f8587Sbellard static int qcow_read(BlockDriverState *bs, int64_t sector_num, 1190585f8587Sbellard uint8_t *buf, int nb_sectors) 1191585f8587Sbellard { 1192585f8587Sbellard BDRVQcowState *s = bs->opaque; 1193a9465922Sbellard int ret, index_in_cluster, n, n1; 1194585f8587Sbellard uint64_t cluster_offset; 1195585f8587Sbellard 1196585f8587Sbellard while (nb_sectors > 0) { 1197585f8587Sbellard n = nb_sectors; 1198095a9c58Saliguori cluster_offset = get_cluster_offset(bs, sector_num << 9, &n); 1199095a9c58Saliguori index_in_cluster = sector_num & (s->cluster_sectors - 1); 1200585f8587Sbellard if (!cluster_offset) { 1201585f8587Sbellard if (bs->backing_hd) { 1202585f8587Sbellard /* read from the base image */ 1203a9465922Sbellard n1 = backing_read1(bs->backing_hd, sector_num, buf, n); 1204a9465922Sbellard if (n1 > 0) { 1205a9465922Sbellard ret = bdrv_read(bs->backing_hd, sector_num, buf, n1); 1206585f8587Sbellard if (ret < 0) 1207585f8587Sbellard return -1; 1208a9465922Sbellard } 1209585f8587Sbellard } else { 1210585f8587Sbellard memset(buf, 0, 512 * n); 1211585f8587Sbellard } 1212585f8587Sbellard } else if (cluster_offset & QCOW_OFLAG_COMPRESSED) { 1213585f8587Sbellard if (decompress_cluster(s, cluster_offset) < 0) 1214585f8587Sbellard return -1; 1215585f8587Sbellard memcpy(buf, s->cluster_cache + index_in_cluster * 512, 512 * n); 1216585f8587Sbellard } else { 1217585f8587Sbellard ret = bdrv_pread(s->hd, cluster_offset + index_in_cluster * 512, buf, n * 512); 1218585f8587Sbellard if (ret != n * 512) 1219585f8587Sbellard return -1; 1220585f8587Sbellard if (s->crypt_method) { 1221585f8587Sbellard encrypt_sectors(s, sector_num, buf, buf, n, 0, 1222585f8587Sbellard &s->aes_decrypt_key); 1223585f8587Sbellard } 1224585f8587Sbellard } 1225585f8587Sbellard nb_sectors -= n; 1226585f8587Sbellard sector_num += n; 1227585f8587Sbellard buf += n * 512; 1228585f8587Sbellard } 1229585f8587Sbellard return 0; 1230585f8587Sbellard } 1231585f8587Sbellard 1232ce1a14dcSpbrook typedef struct QCowAIOCB { 1233ce1a14dcSpbrook BlockDriverAIOCB common; 1234585f8587Sbellard int64_t sector_num; 1235f141eafeSaliguori QEMUIOVector *qiov; 1236585f8587Sbellard uint8_t *buf; 1237f141eafeSaliguori void *orig_buf; 1238585f8587Sbellard int nb_sectors; 1239585f8587Sbellard int n; 1240585f8587Sbellard uint64_t cluster_offset; 1241585f8587Sbellard uint8_t *cluster_data; 1242585f8587Sbellard BlockDriverAIOCB *hd_aiocb; 1243c87c0672Saliguori struct iovec hd_iov; 1244c87c0672Saliguori QEMUIOVector hd_qiov; 12451490791fSaliguori QEMUBH *bh; 1246e976c6a1Saliguori QCowL2Meta l2meta; 1247585f8587Sbellard } QCowAIOCB; 1248585f8587Sbellard 1249c16b5a2cSChristoph Hellwig static void qcow_aio_cancel(BlockDriverAIOCB *blockacb) 1250c16b5a2cSChristoph Hellwig { 1251c16b5a2cSChristoph Hellwig QCowAIOCB *acb = (QCowAIOCB *)blockacb; 1252c16b5a2cSChristoph Hellwig if (acb->hd_aiocb) 1253c16b5a2cSChristoph Hellwig bdrv_aio_cancel(acb->hd_aiocb); 1254c16b5a2cSChristoph Hellwig qemu_aio_release(acb); 1255c16b5a2cSChristoph Hellwig } 1256c16b5a2cSChristoph Hellwig 1257c16b5a2cSChristoph Hellwig static AIOPool qcow_aio_pool = { 1258c16b5a2cSChristoph Hellwig .aiocb_size = sizeof(QCowAIOCB), 1259c16b5a2cSChristoph Hellwig .cancel = qcow_aio_cancel, 1260c16b5a2cSChristoph Hellwig }; 1261c16b5a2cSChristoph Hellwig 12621490791fSaliguori static void qcow_aio_read_cb(void *opaque, int ret); 12631490791fSaliguori static void qcow_aio_read_bh(void *opaque) 12641490791fSaliguori { 12651490791fSaliguori QCowAIOCB *acb = opaque; 12661490791fSaliguori qemu_bh_delete(acb->bh); 12671490791fSaliguori acb->bh = NULL; 12681490791fSaliguori qcow_aio_read_cb(opaque, 0); 12691490791fSaliguori } 12701490791fSaliguori 1271a32ef786Saliguori static int qcow_schedule_bh(QEMUBHFunc *cb, QCowAIOCB *acb) 1272a32ef786Saliguori { 1273a32ef786Saliguori if (acb->bh) 1274a32ef786Saliguori return -EIO; 1275a32ef786Saliguori 1276a32ef786Saliguori acb->bh = qemu_bh_new(cb, acb); 1277a32ef786Saliguori if (!acb->bh) 1278a32ef786Saliguori return -EIO; 1279a32ef786Saliguori 1280a32ef786Saliguori qemu_bh_schedule(acb->bh); 1281a32ef786Saliguori 1282a32ef786Saliguori return 0; 1283a32ef786Saliguori } 1284a32ef786Saliguori 1285585f8587Sbellard static void qcow_aio_read_cb(void *opaque, int ret) 1286585f8587Sbellard { 1287ce1a14dcSpbrook QCowAIOCB *acb = opaque; 1288ce1a14dcSpbrook BlockDriverState *bs = acb->common.bs; 1289585f8587Sbellard BDRVQcowState *s = bs->opaque; 1290a9465922Sbellard int index_in_cluster, n1; 1291585f8587Sbellard 1292ce1a14dcSpbrook acb->hd_aiocb = NULL; 1293f141eafeSaliguori if (ret < 0) 1294f141eafeSaliguori goto done; 1295585f8587Sbellard 1296585f8587Sbellard /* post process the read buffer */ 1297ce1a14dcSpbrook if (!acb->cluster_offset) { 1298585f8587Sbellard /* nothing to do */ 1299ce1a14dcSpbrook } else if (acb->cluster_offset & QCOW_OFLAG_COMPRESSED) { 1300585f8587Sbellard /* nothing to do */ 1301585f8587Sbellard } else { 1302585f8587Sbellard if (s->crypt_method) { 1303ce1a14dcSpbrook encrypt_sectors(s, acb->sector_num, acb->buf, acb->buf, 1304ce1a14dcSpbrook acb->n, 0, 1305585f8587Sbellard &s->aes_decrypt_key); 1306585f8587Sbellard } 1307585f8587Sbellard } 1308585f8587Sbellard 1309ce1a14dcSpbrook acb->nb_sectors -= acb->n; 1310ce1a14dcSpbrook acb->sector_num += acb->n; 1311ce1a14dcSpbrook acb->buf += acb->n * 512; 1312585f8587Sbellard 1313ce1a14dcSpbrook if (acb->nb_sectors == 0) { 1314585f8587Sbellard /* request completed */ 1315f141eafeSaliguori ret = 0; 1316f141eafeSaliguori goto done; 1317585f8587Sbellard } 1318585f8587Sbellard 1319585f8587Sbellard /* prepare next AIO request */ 1320ce1a14dcSpbrook acb->n = acb->nb_sectors; 1321095a9c58Saliguori acb->cluster_offset = get_cluster_offset(bs, acb->sector_num << 9, &acb->n); 1322095a9c58Saliguori index_in_cluster = acb->sector_num & (s->cluster_sectors - 1); 1323585f8587Sbellard 1324ce1a14dcSpbrook if (!acb->cluster_offset) { 1325585f8587Sbellard if (bs->backing_hd) { 1326585f8587Sbellard /* read from the base image */ 1327ce1a14dcSpbrook n1 = backing_read1(bs->backing_hd, acb->sector_num, 1328ce1a14dcSpbrook acb->buf, acb->n); 1329a9465922Sbellard if (n1 > 0) { 13303f4cb3d3Sblueswir1 acb->hd_iov.iov_base = (void *)acb->buf; 1331c87c0672Saliguori acb->hd_iov.iov_len = acb->n * 512; 1332c87c0672Saliguori qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1); 1333c87c0672Saliguori acb->hd_aiocb = bdrv_aio_readv(bs->backing_hd, acb->sector_num, 1334c87c0672Saliguori &acb->hd_qiov, acb->n, 1335c87c0672Saliguori qcow_aio_read_cb, acb); 1336ce1a14dcSpbrook if (acb->hd_aiocb == NULL) 1337f141eafeSaliguori goto done; 1338585f8587Sbellard } else { 1339a32ef786Saliguori ret = qcow_schedule_bh(qcow_aio_read_bh, acb); 1340a32ef786Saliguori if (ret < 0) 1341f141eafeSaliguori goto done; 13421490791fSaliguori } 1343a9465922Sbellard } else { 1344585f8587Sbellard /* Note: in this case, no need to wait */ 1345ce1a14dcSpbrook memset(acb->buf, 0, 512 * acb->n); 1346a32ef786Saliguori ret = qcow_schedule_bh(qcow_aio_read_bh, acb); 1347a32ef786Saliguori if (ret < 0) 1348f141eafeSaliguori goto done; 13491490791fSaliguori } 1350ce1a14dcSpbrook } else if (acb->cluster_offset & QCOW_OFLAG_COMPRESSED) { 1351585f8587Sbellard /* add AIO support for compressed blocks ? */ 1352ce1a14dcSpbrook if (decompress_cluster(s, acb->cluster_offset) < 0) 1353f141eafeSaliguori goto done; 1354ce1a14dcSpbrook memcpy(acb->buf, 1355ce1a14dcSpbrook s->cluster_cache + index_in_cluster * 512, 512 * acb->n); 1356a32ef786Saliguori ret = qcow_schedule_bh(qcow_aio_read_bh, acb); 1357a32ef786Saliguori if (ret < 0) 1358f141eafeSaliguori goto done; 1359585f8587Sbellard } else { 1360ce1a14dcSpbrook if ((acb->cluster_offset & 511) != 0) { 1361585f8587Sbellard ret = -EIO; 1362f141eafeSaliguori goto done; 1363585f8587Sbellard } 1364c87c0672Saliguori 13653f4cb3d3Sblueswir1 acb->hd_iov.iov_base = (void *)acb->buf; 1366c87c0672Saliguori acb->hd_iov.iov_len = acb->n * 512; 1367c87c0672Saliguori qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1); 1368c87c0672Saliguori acb->hd_aiocb = bdrv_aio_readv(s->hd, 1369ce1a14dcSpbrook (acb->cluster_offset >> 9) + index_in_cluster, 1370c87c0672Saliguori &acb->hd_qiov, acb->n, qcow_aio_read_cb, acb); 1371ce1a14dcSpbrook if (acb->hd_aiocb == NULL) 1372f141eafeSaliguori goto done; 1373585f8587Sbellard } 1374f141eafeSaliguori 1375f141eafeSaliguori return; 1376f141eafeSaliguori done: 1377f141eafeSaliguori if (acb->qiov->niov > 1) { 1378f141eafeSaliguori qemu_iovec_from_buffer(acb->qiov, acb->orig_buf, acb->qiov->size); 1379f141eafeSaliguori qemu_vfree(acb->orig_buf); 1380f141eafeSaliguori } 1381f141eafeSaliguori acb->common.cb(acb->common.opaque, ret); 1382f141eafeSaliguori qemu_aio_release(acb); 1383585f8587Sbellard } 1384585f8587Sbellard 1385ce1a14dcSpbrook static QCowAIOCB *qcow_aio_setup(BlockDriverState *bs, 1386f141eafeSaliguori int64_t sector_num, QEMUIOVector *qiov, int nb_sectors, 1387f141eafeSaliguori BlockDriverCompletionFunc *cb, void *opaque, int is_write) 1388585f8587Sbellard { 1389ce1a14dcSpbrook QCowAIOCB *acb; 1390585f8587Sbellard 1391c16b5a2cSChristoph Hellwig acb = qemu_aio_get(&qcow_aio_pool, bs, cb, opaque); 1392ce1a14dcSpbrook if (!acb) 1393ce1a14dcSpbrook return NULL; 1394ce1a14dcSpbrook acb->hd_aiocb = NULL; 1395ce1a14dcSpbrook acb->sector_num = sector_num; 1396f141eafeSaliguori acb->qiov = qiov; 1397f141eafeSaliguori if (qiov->niov > 1) { 1398e268ca52Saliguori acb->buf = acb->orig_buf = qemu_blockalign(bs, qiov->size); 1399f141eafeSaliguori if (is_write) 1400f141eafeSaliguori qemu_iovec_to_buffer(qiov, acb->buf); 14013f4cb3d3Sblueswir1 } else { 14023f4cb3d3Sblueswir1 acb->buf = (uint8_t *)qiov->iov->iov_base; 14033f4cb3d3Sblueswir1 } 1404ce1a14dcSpbrook acb->nb_sectors = nb_sectors; 1405ce1a14dcSpbrook acb->n = 0; 1406ce1a14dcSpbrook acb->cluster_offset = 0; 1407e976c6a1Saliguori acb->l2meta.nb_clusters = 0; 1408ce1a14dcSpbrook return acb; 1409ce1a14dcSpbrook } 1410ce1a14dcSpbrook 1411f141eafeSaliguori static BlockDriverAIOCB *qcow_aio_readv(BlockDriverState *bs, 1412f141eafeSaliguori int64_t sector_num, QEMUIOVector *qiov, int nb_sectors, 1413ce1a14dcSpbrook BlockDriverCompletionFunc *cb, void *opaque) 1414ce1a14dcSpbrook { 1415ce1a14dcSpbrook QCowAIOCB *acb; 1416ce1a14dcSpbrook 1417f141eafeSaliguori acb = qcow_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 0); 1418ce1a14dcSpbrook if (!acb) 1419ce1a14dcSpbrook return NULL; 1420585f8587Sbellard 1421585f8587Sbellard qcow_aio_read_cb(acb, 0); 1422ce1a14dcSpbrook return &acb->common; 1423585f8587Sbellard } 1424585f8587Sbellard 1425585f8587Sbellard static void qcow_aio_write_cb(void *opaque, int ret) 1426585f8587Sbellard { 1427ce1a14dcSpbrook QCowAIOCB *acb = opaque; 1428ce1a14dcSpbrook BlockDriverState *bs = acb->common.bs; 1429585f8587Sbellard BDRVQcowState *s = bs->opaque; 1430585f8587Sbellard int index_in_cluster; 1431585f8587Sbellard const uint8_t *src_buf; 1432095a9c58Saliguori int n_end; 1433585f8587Sbellard 1434ce1a14dcSpbrook acb->hd_aiocb = NULL; 1435ce1a14dcSpbrook 1436f141eafeSaliguori if (ret < 0) 1437f141eafeSaliguori goto done; 1438585f8587Sbellard 1439e976c6a1Saliguori if (alloc_cluster_link_l2(bs, acb->cluster_offset, &acb->l2meta) < 0) { 1440e976c6a1Saliguori free_any_clusters(bs, acb->cluster_offset, acb->l2meta.nb_clusters); 1441f141eafeSaliguori goto done; 1442e976c6a1Saliguori } 1443e976c6a1Saliguori 1444ce1a14dcSpbrook acb->nb_sectors -= acb->n; 1445ce1a14dcSpbrook acb->sector_num += acb->n; 1446ce1a14dcSpbrook acb->buf += acb->n * 512; 1447585f8587Sbellard 1448ce1a14dcSpbrook if (acb->nb_sectors == 0) { 1449585f8587Sbellard /* request completed */ 1450f141eafeSaliguori ret = 0; 1451f141eafeSaliguori goto done; 1452585f8587Sbellard } 1453585f8587Sbellard 1454ce1a14dcSpbrook index_in_cluster = acb->sector_num & (s->cluster_sectors - 1); 1455095a9c58Saliguori n_end = index_in_cluster + acb->nb_sectors; 1456095a9c58Saliguori if (s->crypt_method && 1457095a9c58Saliguori n_end > QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors) 1458095a9c58Saliguori n_end = QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors; 1459095a9c58Saliguori 1460e976c6a1Saliguori acb->cluster_offset = alloc_cluster_offset(bs, acb->sector_num << 9, 1461585f8587Sbellard index_in_cluster, 1462e976c6a1Saliguori n_end, &acb->n, &acb->l2meta); 1463e976c6a1Saliguori if (!acb->cluster_offset || (acb->cluster_offset & 511) != 0) { 1464585f8587Sbellard ret = -EIO; 1465f141eafeSaliguori goto done; 1466585f8587Sbellard } 1467585f8587Sbellard if (s->crypt_method) { 1468ce1a14dcSpbrook if (!acb->cluster_data) { 1469095a9c58Saliguori acb->cluster_data = qemu_mallocz(QCOW_MAX_CRYPT_CLUSTERS * 1470095a9c58Saliguori s->cluster_size); 1471585f8587Sbellard } 1472ce1a14dcSpbrook encrypt_sectors(s, acb->sector_num, acb->cluster_data, acb->buf, 1473ce1a14dcSpbrook acb->n, 1, &s->aes_encrypt_key); 1474ce1a14dcSpbrook src_buf = acb->cluster_data; 1475585f8587Sbellard } else { 1476ce1a14dcSpbrook src_buf = acb->buf; 1477585f8587Sbellard } 1478c87c0672Saliguori acb->hd_iov.iov_base = (void *)src_buf; 1479c87c0672Saliguori acb->hd_iov.iov_len = acb->n * 512; 1480c87c0672Saliguori qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1); 1481c87c0672Saliguori acb->hd_aiocb = bdrv_aio_writev(s->hd, 1482e976c6a1Saliguori (acb->cluster_offset >> 9) + index_in_cluster, 1483c87c0672Saliguori &acb->hd_qiov, acb->n, 1484585f8587Sbellard qcow_aio_write_cb, acb); 1485ce1a14dcSpbrook if (acb->hd_aiocb == NULL) 1486f141eafeSaliguori goto done; 1487f141eafeSaliguori 1488f141eafeSaliguori return; 1489f141eafeSaliguori 1490f141eafeSaliguori done: 1491f141eafeSaliguori if (acb->qiov->niov > 1) 1492f141eafeSaliguori qemu_vfree(acb->orig_buf); 1493f141eafeSaliguori acb->common.cb(acb->common.opaque, ret); 1494f141eafeSaliguori qemu_aio_release(acb); 1495585f8587Sbellard } 1496585f8587Sbellard 1497f141eafeSaliguori static BlockDriverAIOCB *qcow_aio_writev(BlockDriverState *bs, 1498f141eafeSaliguori int64_t sector_num, QEMUIOVector *qiov, int nb_sectors, 1499ce1a14dcSpbrook BlockDriverCompletionFunc *cb, void *opaque) 1500585f8587Sbellard { 1501585f8587Sbellard BDRVQcowState *s = bs->opaque; 1502ce1a14dcSpbrook QCowAIOCB *acb; 1503585f8587Sbellard 1504585f8587Sbellard s->cluster_cache_offset = -1; /* disable compressed cache */ 1505585f8587Sbellard 1506f141eafeSaliguori acb = qcow_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 1); 1507ce1a14dcSpbrook if (!acb) 1508ce1a14dcSpbrook return NULL; 1509585f8587Sbellard 1510585f8587Sbellard qcow_aio_write_cb(acb, 0); 1511ce1a14dcSpbrook return &acb->common; 1512585f8587Sbellard } 1513585f8587Sbellard 1514585f8587Sbellard static void qcow_close(BlockDriverState *bs) 1515585f8587Sbellard { 1516585f8587Sbellard BDRVQcowState *s = bs->opaque; 1517585f8587Sbellard qemu_free(s->l1_table); 1518585f8587Sbellard qemu_free(s->l2_cache); 1519585f8587Sbellard qemu_free(s->cluster_cache); 1520585f8587Sbellard qemu_free(s->cluster_data); 1521585f8587Sbellard refcount_close(bs); 1522585f8587Sbellard bdrv_delete(s->hd); 1523585f8587Sbellard } 1524585f8587Sbellard 1525585f8587Sbellard /* XXX: use std qcow open function ? */ 1526585f8587Sbellard typedef struct QCowCreateState { 1527585f8587Sbellard int cluster_size; 1528585f8587Sbellard int cluster_bits; 1529585f8587Sbellard uint16_t *refcount_block; 1530585f8587Sbellard uint64_t *refcount_table; 1531585f8587Sbellard int64_t l1_table_offset; 1532585f8587Sbellard int64_t refcount_table_offset; 1533585f8587Sbellard int64_t refcount_block_offset; 1534585f8587Sbellard } QCowCreateState; 1535585f8587Sbellard 1536585f8587Sbellard static void create_refcount_update(QCowCreateState *s, 1537585f8587Sbellard int64_t offset, int64_t size) 1538585f8587Sbellard { 1539585f8587Sbellard int refcount; 1540585f8587Sbellard int64_t start, last, cluster_offset; 1541585f8587Sbellard uint16_t *p; 1542585f8587Sbellard 1543585f8587Sbellard start = offset & ~(s->cluster_size - 1); 1544585f8587Sbellard last = (offset + size - 1) & ~(s->cluster_size - 1); 1545585f8587Sbellard for(cluster_offset = start; cluster_offset <= last; 1546585f8587Sbellard cluster_offset += s->cluster_size) { 1547585f8587Sbellard p = &s->refcount_block[cluster_offset >> s->cluster_bits]; 1548585f8587Sbellard refcount = be16_to_cpu(*p); 1549585f8587Sbellard refcount++; 1550585f8587Sbellard *p = cpu_to_be16(refcount); 1551585f8587Sbellard } 1552585f8587Sbellard } 1553585f8587Sbellard 155473c632edSKevin Wolf static int get_bits_from_size(size_t size) 155573c632edSKevin Wolf { 155673c632edSKevin Wolf int res = 0; 155773c632edSKevin Wolf 155873c632edSKevin Wolf if (size == 0) { 155973c632edSKevin Wolf return -1; 156073c632edSKevin Wolf } 156173c632edSKevin Wolf 156273c632edSKevin Wolf while (size != 1) { 156373c632edSKevin Wolf /* Not a power of two */ 156473c632edSKevin Wolf if (size & 1) { 156573c632edSKevin Wolf return -1; 156673c632edSKevin Wolf } 156773c632edSKevin Wolf 156873c632edSKevin Wolf size >>= 1; 156973c632edSKevin Wolf res++; 157073c632edSKevin Wolf } 157173c632edSKevin Wolf 157273c632edSKevin Wolf return res; 157373c632edSKevin Wolf } 157473c632edSKevin Wolf 1575f965509cSaliguori static int qcow_create2(const char *filename, int64_t total_size, 1576f965509cSaliguori const char *backing_file, const char *backing_format, 157773c632edSKevin Wolf int flags, size_t cluster_size) 1578585f8587Sbellard { 1579f965509cSaliguori 1580585f8587Sbellard int fd, header_size, backing_filename_len, l1_size, i, shift, l2_bits; 15812d2431f0Saliguori int ref_clusters, backing_format_len = 0; 1582585f8587Sbellard QCowHeader header; 1583585f8587Sbellard uint64_t tmp, offset; 1584585f8587Sbellard QCowCreateState s1, *s = &s1; 1585f965509cSaliguori QCowExtension ext_bf = {0, 0}; 1586f965509cSaliguori 1587585f8587Sbellard 1588585f8587Sbellard memset(s, 0, sizeof(*s)); 1589585f8587Sbellard 1590585f8587Sbellard fd = open(filename, O_WRONLY | O_CREAT | O_TRUNC | O_BINARY, 0644); 1591585f8587Sbellard if (fd < 0) 1592585f8587Sbellard return -1; 1593585f8587Sbellard memset(&header, 0, sizeof(header)); 1594585f8587Sbellard header.magic = cpu_to_be32(QCOW_MAGIC); 1595585f8587Sbellard header.version = cpu_to_be32(QCOW_VERSION); 1596585f8587Sbellard header.size = cpu_to_be64(total_size * 512); 1597585f8587Sbellard header_size = sizeof(header); 1598585f8587Sbellard backing_filename_len = 0; 1599585f8587Sbellard if (backing_file) { 1600f965509cSaliguori if (backing_format) { 1601f965509cSaliguori ext_bf.magic = QCOW_EXT_MAGIC_BACKING_FORMAT; 1602f965509cSaliguori backing_format_len = strlen(backing_format); 1603f965509cSaliguori ext_bf.len = (backing_format_len + 7) & ~7; 1604f965509cSaliguori header_size += ((sizeof(ext_bf) + ext_bf.len + 7) & ~7); 1605f965509cSaliguori } 1606585f8587Sbellard header.backing_file_offset = cpu_to_be64(header_size); 1607585f8587Sbellard backing_filename_len = strlen(backing_file); 1608585f8587Sbellard header.backing_file_size = cpu_to_be32(backing_filename_len); 1609585f8587Sbellard header_size += backing_filename_len; 1610585f8587Sbellard } 161173c632edSKevin Wolf 161273c632edSKevin Wolf /* Cluster size */ 161373c632edSKevin Wolf s->cluster_bits = get_bits_from_size(cluster_size); 161473c632edSKevin Wolf if (s->cluster_bits < MIN_CLUSTER_BITS || 161573c632edSKevin Wolf s->cluster_bits > MAX_CLUSTER_BITS) 161673c632edSKevin Wolf { 161773c632edSKevin Wolf fprintf(stderr, "Cluster size must be a power of two between " 161873c632edSKevin Wolf "%d and %dk\n", 161973c632edSKevin Wolf 1 << MIN_CLUSTER_BITS, 162073c632edSKevin Wolf 1 << (MAX_CLUSTER_BITS - 10)); 162173c632edSKevin Wolf return -EINVAL; 162273c632edSKevin Wolf } 1623585f8587Sbellard s->cluster_size = 1 << s->cluster_bits; 162473c632edSKevin Wolf 1625585f8587Sbellard header.cluster_bits = cpu_to_be32(s->cluster_bits); 1626585f8587Sbellard header_size = (header_size + 7) & ~7; 1627ec36ba14Sths if (flags & BLOCK_FLAG_ENCRYPT) { 1628585f8587Sbellard header.crypt_method = cpu_to_be32(QCOW_CRYPT_AES); 1629585f8587Sbellard } else { 1630585f8587Sbellard header.crypt_method = cpu_to_be32(QCOW_CRYPT_NONE); 1631585f8587Sbellard } 1632585f8587Sbellard l2_bits = s->cluster_bits - 3; 1633585f8587Sbellard shift = s->cluster_bits + l2_bits; 1634585f8587Sbellard l1_size = (((total_size * 512) + (1LL << shift) - 1) >> shift); 1635585f8587Sbellard offset = align_offset(header_size, s->cluster_size); 1636585f8587Sbellard s->l1_table_offset = offset; 1637585f8587Sbellard header.l1_table_offset = cpu_to_be64(s->l1_table_offset); 1638585f8587Sbellard header.l1_size = cpu_to_be32(l1_size); 163915e6690aSbellard offset += align_offset(l1_size * sizeof(uint64_t), s->cluster_size); 1640585f8587Sbellard 1641585f8587Sbellard s->refcount_table = qemu_mallocz(s->cluster_size); 1642585f8587Sbellard 1643585f8587Sbellard s->refcount_table_offset = offset; 1644585f8587Sbellard header.refcount_table_offset = cpu_to_be64(offset); 1645585f8587Sbellard header.refcount_table_clusters = cpu_to_be32(1); 1646585f8587Sbellard offset += s->cluster_size; 1647585f8587Sbellard s->refcount_block_offset = offset; 16482d2431f0Saliguori 16492d2431f0Saliguori /* count how many refcount blocks needed */ 16502d2431f0Saliguori tmp = offset >> s->cluster_bits; 16512d2431f0Saliguori ref_clusters = (tmp >> (s->cluster_bits - REFCOUNT_SHIFT)) + 1; 16522d2431f0Saliguori for (i=0; i < ref_clusters; i++) { 16532d2431f0Saliguori s->refcount_table[i] = cpu_to_be64(offset); 1654585f8587Sbellard offset += s->cluster_size; 16552d2431f0Saliguori } 16562d2431f0Saliguori 16572d2431f0Saliguori s->refcount_block = qemu_mallocz(ref_clusters * s->cluster_size); 1658585f8587Sbellard 1659585f8587Sbellard /* update refcounts */ 1660585f8587Sbellard create_refcount_update(s, 0, header_size); 166115e6690aSbellard create_refcount_update(s, s->l1_table_offset, l1_size * sizeof(uint64_t)); 1662585f8587Sbellard create_refcount_update(s, s->refcount_table_offset, s->cluster_size); 16632d2431f0Saliguori create_refcount_update(s, s->refcount_block_offset, ref_clusters * s->cluster_size); 1664585f8587Sbellard 1665585f8587Sbellard /* write all the data */ 1666585f8587Sbellard write(fd, &header, sizeof(header)); 1667585f8587Sbellard if (backing_file) { 1668f965509cSaliguori if (backing_format_len) { 1669f965509cSaliguori char zero[16]; 1670f965509cSaliguori int d = ext_bf.len - backing_format_len; 1671f965509cSaliguori 1672f965509cSaliguori memset(zero, 0, sizeof(zero)); 1673f965509cSaliguori cpu_to_be32s(&ext_bf.magic); 1674f965509cSaliguori cpu_to_be32s(&ext_bf.len); 1675f965509cSaliguori write(fd, &ext_bf, sizeof(ext_bf)); 1676f965509cSaliguori write(fd, backing_format, backing_format_len); 1677f965509cSaliguori if (d>0) { 1678f965509cSaliguori write(fd, zero, d); 1679f965509cSaliguori } 1680f965509cSaliguori } 1681585f8587Sbellard write(fd, backing_file, backing_filename_len); 1682585f8587Sbellard } 1683585f8587Sbellard lseek(fd, s->l1_table_offset, SEEK_SET); 1684585f8587Sbellard tmp = 0; 1685585f8587Sbellard for(i = 0;i < l1_size; i++) { 1686585f8587Sbellard write(fd, &tmp, sizeof(tmp)); 1687585f8587Sbellard } 1688585f8587Sbellard lseek(fd, s->refcount_table_offset, SEEK_SET); 1689585f8587Sbellard write(fd, s->refcount_table, s->cluster_size); 1690585f8587Sbellard 1691585f8587Sbellard lseek(fd, s->refcount_block_offset, SEEK_SET); 16922d2431f0Saliguori write(fd, s->refcount_block, ref_clusters * s->cluster_size); 1693585f8587Sbellard 1694585f8587Sbellard qemu_free(s->refcount_table); 1695585f8587Sbellard qemu_free(s->refcount_block); 1696585f8587Sbellard close(fd); 1697585f8587Sbellard return 0; 1698585f8587Sbellard } 1699585f8587Sbellard 17000e7e1989SKevin Wolf static int qcow_create(const char *filename, QEMUOptionParameter *options) 1701f965509cSaliguori { 17020e7e1989SKevin Wolf const char *backing_file = NULL; 17030e7e1989SKevin Wolf const char *backing_fmt = NULL; 17040e7e1989SKevin Wolf uint64_t sectors = 0; 17050e7e1989SKevin Wolf int flags = 0; 1706*9ccb258eSKevin Wolf size_t cluster_size = 65536; 17070e7e1989SKevin Wolf 17080e7e1989SKevin Wolf /* Read out options */ 17090e7e1989SKevin Wolf while (options && options->name) { 17100e7e1989SKevin Wolf if (!strcmp(options->name, BLOCK_OPT_SIZE)) { 17110e7e1989SKevin Wolf sectors = options->value.n / 512; 17120e7e1989SKevin Wolf } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) { 17130e7e1989SKevin Wolf backing_file = options->value.s; 17140e7e1989SKevin Wolf } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FMT)) { 17150e7e1989SKevin Wolf backing_fmt = options->value.s; 17160e7e1989SKevin Wolf } else if (!strcmp(options->name, BLOCK_OPT_ENCRYPT)) { 17170e7e1989SKevin Wolf flags |= options->value.n ? BLOCK_FLAG_ENCRYPT : 0; 171873c632edSKevin Wolf } else if (!strcmp(options->name, BLOCK_OPT_CLUSTER_SIZE)) { 171973c632edSKevin Wolf if (options->value.n) { 172073c632edSKevin Wolf cluster_size = options->value.n; 172173c632edSKevin Wolf } 17220e7e1989SKevin Wolf } 17230e7e1989SKevin Wolf options++; 17240e7e1989SKevin Wolf } 17250e7e1989SKevin Wolf 172673c632edSKevin Wolf return qcow_create2(filename, sectors, backing_file, backing_fmt, flags, 172773c632edSKevin Wolf cluster_size); 1728f965509cSaliguori } 1729f965509cSaliguori 1730585f8587Sbellard static int qcow_make_empty(BlockDriverState *bs) 1731585f8587Sbellard { 1732585f8587Sbellard #if 0 1733585f8587Sbellard /* XXX: not correct */ 1734585f8587Sbellard BDRVQcowState *s = bs->opaque; 1735585f8587Sbellard uint32_t l1_length = s->l1_size * sizeof(uint64_t); 1736585f8587Sbellard int ret; 1737585f8587Sbellard 1738585f8587Sbellard memset(s->l1_table, 0, l1_length); 1739585f8587Sbellard if (bdrv_pwrite(s->hd, s->l1_table_offset, s->l1_table, l1_length) < 0) 1740585f8587Sbellard return -1; 1741585f8587Sbellard ret = bdrv_truncate(s->hd, s->l1_table_offset + l1_length); 1742585f8587Sbellard if (ret < 0) 1743585f8587Sbellard return ret; 1744585f8587Sbellard 1745585f8587Sbellard l2_cache_reset(bs); 1746585f8587Sbellard #endif 1747585f8587Sbellard return 0; 1748585f8587Sbellard } 1749585f8587Sbellard 1750585f8587Sbellard /* XXX: put compressed sectors first, then all the cluster aligned 1751585f8587Sbellard tables to avoid losing bytes in alignment */ 1752585f8587Sbellard static int qcow_write_compressed(BlockDriverState *bs, int64_t sector_num, 1753585f8587Sbellard const uint8_t *buf, int nb_sectors) 1754585f8587Sbellard { 1755585f8587Sbellard BDRVQcowState *s = bs->opaque; 1756585f8587Sbellard z_stream strm; 1757585f8587Sbellard int ret, out_len; 1758585f8587Sbellard uint8_t *out_buf; 1759585f8587Sbellard uint64_t cluster_offset; 1760585f8587Sbellard 1761585f8587Sbellard if (nb_sectors == 0) { 1762585f8587Sbellard /* align end of file to a sector boundary to ease reading with 1763585f8587Sbellard sector based I/Os */ 1764585f8587Sbellard cluster_offset = bdrv_getlength(s->hd); 1765585f8587Sbellard cluster_offset = (cluster_offset + 511) & ~511; 1766585f8587Sbellard bdrv_truncate(s->hd, cluster_offset); 1767585f8587Sbellard return 0; 1768585f8587Sbellard } 1769585f8587Sbellard 1770585f8587Sbellard if (nb_sectors != s->cluster_sectors) 1771585f8587Sbellard return -EINVAL; 1772585f8587Sbellard 1773585f8587Sbellard out_buf = qemu_malloc(s->cluster_size + (s->cluster_size / 1000) + 128); 1774585f8587Sbellard 1775585f8587Sbellard /* best compression, small window, no zlib header */ 1776585f8587Sbellard memset(&strm, 0, sizeof(strm)); 1777585f8587Sbellard ret = deflateInit2(&strm, Z_DEFAULT_COMPRESSION, 1778585f8587Sbellard Z_DEFLATED, -12, 1779585f8587Sbellard 9, Z_DEFAULT_STRATEGY); 1780585f8587Sbellard if (ret != 0) { 1781585f8587Sbellard qemu_free(out_buf); 1782585f8587Sbellard return -1; 1783585f8587Sbellard } 1784585f8587Sbellard 1785585f8587Sbellard strm.avail_in = s->cluster_size; 1786585f8587Sbellard strm.next_in = (uint8_t *)buf; 1787585f8587Sbellard strm.avail_out = s->cluster_size; 1788585f8587Sbellard strm.next_out = out_buf; 1789585f8587Sbellard 1790585f8587Sbellard ret = deflate(&strm, Z_FINISH); 1791585f8587Sbellard if (ret != Z_STREAM_END && ret != Z_OK) { 1792585f8587Sbellard qemu_free(out_buf); 1793585f8587Sbellard deflateEnd(&strm); 1794585f8587Sbellard return -1; 1795585f8587Sbellard } 1796585f8587Sbellard out_len = strm.next_out - out_buf; 1797585f8587Sbellard 1798585f8587Sbellard deflateEnd(&strm); 1799585f8587Sbellard 1800585f8587Sbellard if (ret != Z_STREAM_END || out_len >= s->cluster_size) { 1801585f8587Sbellard /* could not compress: write normal cluster */ 1802ade40677SKevin Wolf bdrv_write(bs, sector_num, buf, s->cluster_sectors); 1803585f8587Sbellard } else { 180452d893ecSaliguori cluster_offset = alloc_compressed_cluster_offset(bs, sector_num << 9, 180552d893ecSaliguori out_len); 180652d893ecSaliguori if (!cluster_offset) 180752d893ecSaliguori return -1; 1808585f8587Sbellard cluster_offset &= s->cluster_offset_mask; 1809585f8587Sbellard if (bdrv_pwrite(s->hd, cluster_offset, out_buf, out_len) != out_len) { 1810585f8587Sbellard qemu_free(out_buf); 1811585f8587Sbellard return -1; 1812585f8587Sbellard } 1813585f8587Sbellard } 1814585f8587Sbellard 1815585f8587Sbellard qemu_free(out_buf); 1816585f8587Sbellard return 0; 1817585f8587Sbellard } 1818585f8587Sbellard 1819585f8587Sbellard static void qcow_flush(BlockDriverState *bs) 1820585f8587Sbellard { 1821585f8587Sbellard BDRVQcowState *s = bs->opaque; 1822585f8587Sbellard bdrv_flush(s->hd); 1823585f8587Sbellard } 1824585f8587Sbellard 1825585f8587Sbellard static int qcow_get_info(BlockDriverState *bs, BlockDriverInfo *bdi) 1826585f8587Sbellard { 1827585f8587Sbellard BDRVQcowState *s = bs->opaque; 1828585f8587Sbellard bdi->cluster_size = s->cluster_size; 1829585f8587Sbellard bdi->vm_state_offset = (int64_t)s->l1_vm_state_index << 1830585f8587Sbellard (s->cluster_bits + s->l2_bits); 1831585f8587Sbellard return 0; 1832585f8587Sbellard } 1833585f8587Sbellard 1834585f8587Sbellard /*********************************************************/ 1835585f8587Sbellard /* snapshot support */ 1836585f8587Sbellard 1837585f8587Sbellard /* update the refcounts of snapshots and the copied flag */ 1838585f8587Sbellard static int update_snapshot_refcount(BlockDriverState *bs, 1839585f8587Sbellard int64_t l1_table_offset, 1840585f8587Sbellard int l1_size, 1841585f8587Sbellard int addend) 1842585f8587Sbellard { 1843585f8587Sbellard BDRVQcowState *s = bs->opaque; 1844585f8587Sbellard uint64_t *l1_table, *l2_table, l2_offset, offset, l1_size2, l1_allocated; 1845585f8587Sbellard int64_t old_offset, old_l2_offset; 1846585f8587Sbellard int l2_size, i, j, l1_modified, l2_modified, nb_csectors, refcount; 1847585f8587Sbellard 1848585f8587Sbellard l2_cache_reset(bs); 1849585f8587Sbellard 1850585f8587Sbellard l2_table = NULL; 1851585f8587Sbellard l1_table = NULL; 1852585f8587Sbellard l1_size2 = l1_size * sizeof(uint64_t); 1853585f8587Sbellard l1_allocated = 0; 1854585f8587Sbellard if (l1_table_offset != s->l1_table_offset) { 1855585f8587Sbellard l1_table = qemu_malloc(l1_size2); 1856585f8587Sbellard l1_allocated = 1; 1857585f8587Sbellard if (bdrv_pread(s->hd, l1_table_offset, 1858585f8587Sbellard l1_table, l1_size2) != l1_size2) 1859585f8587Sbellard goto fail; 1860585f8587Sbellard for(i = 0;i < l1_size; i++) 1861585f8587Sbellard be64_to_cpus(&l1_table[i]); 1862585f8587Sbellard } else { 1863585f8587Sbellard assert(l1_size == s->l1_size); 1864585f8587Sbellard l1_table = s->l1_table; 1865585f8587Sbellard l1_allocated = 0; 1866585f8587Sbellard } 1867585f8587Sbellard 1868585f8587Sbellard l2_size = s->l2_size * sizeof(uint64_t); 1869585f8587Sbellard l2_table = qemu_malloc(l2_size); 1870585f8587Sbellard l1_modified = 0; 1871585f8587Sbellard for(i = 0; i < l1_size; i++) { 1872585f8587Sbellard l2_offset = l1_table[i]; 1873585f8587Sbellard if (l2_offset) { 1874585f8587Sbellard old_l2_offset = l2_offset; 1875585f8587Sbellard l2_offset &= ~QCOW_OFLAG_COPIED; 1876585f8587Sbellard l2_modified = 0; 1877585f8587Sbellard if (bdrv_pread(s->hd, l2_offset, l2_table, l2_size) != l2_size) 1878585f8587Sbellard goto fail; 1879585f8587Sbellard for(j = 0; j < s->l2_size; j++) { 1880585f8587Sbellard offset = be64_to_cpu(l2_table[j]); 1881585f8587Sbellard if (offset != 0) { 1882585f8587Sbellard old_offset = offset; 1883585f8587Sbellard offset &= ~QCOW_OFLAG_COPIED; 1884585f8587Sbellard if (offset & QCOW_OFLAG_COMPRESSED) { 1885585f8587Sbellard nb_csectors = ((offset >> s->csize_shift) & 1886585f8587Sbellard s->csize_mask) + 1; 1887585f8587Sbellard if (addend != 0) 1888585f8587Sbellard update_refcount(bs, (offset & s->cluster_offset_mask) & ~511, 1889585f8587Sbellard nb_csectors * 512, addend); 1890585f8587Sbellard /* compressed clusters are never modified */ 1891585f8587Sbellard refcount = 2; 1892585f8587Sbellard } else { 1893585f8587Sbellard if (addend != 0) { 1894585f8587Sbellard refcount = update_cluster_refcount(bs, offset >> s->cluster_bits, addend); 1895585f8587Sbellard } else { 1896585f8587Sbellard refcount = get_refcount(bs, offset >> s->cluster_bits); 1897585f8587Sbellard } 1898585f8587Sbellard } 1899585f8587Sbellard 1900585f8587Sbellard if (refcount == 1) { 1901585f8587Sbellard offset |= QCOW_OFLAG_COPIED; 1902585f8587Sbellard } 1903585f8587Sbellard if (offset != old_offset) { 1904585f8587Sbellard l2_table[j] = cpu_to_be64(offset); 1905585f8587Sbellard l2_modified = 1; 1906585f8587Sbellard } 1907585f8587Sbellard } 1908585f8587Sbellard } 1909585f8587Sbellard if (l2_modified) { 1910585f8587Sbellard if (bdrv_pwrite(s->hd, 1911585f8587Sbellard l2_offset, l2_table, l2_size) != l2_size) 1912585f8587Sbellard goto fail; 1913585f8587Sbellard } 1914585f8587Sbellard 1915585f8587Sbellard if (addend != 0) { 1916585f8587Sbellard refcount = update_cluster_refcount(bs, l2_offset >> s->cluster_bits, addend); 1917585f8587Sbellard } else { 1918585f8587Sbellard refcount = get_refcount(bs, l2_offset >> s->cluster_bits); 1919585f8587Sbellard } 1920585f8587Sbellard if (refcount == 1) { 1921585f8587Sbellard l2_offset |= QCOW_OFLAG_COPIED; 1922585f8587Sbellard } 1923585f8587Sbellard if (l2_offset != old_l2_offset) { 1924585f8587Sbellard l1_table[i] = l2_offset; 1925585f8587Sbellard l1_modified = 1; 1926585f8587Sbellard } 1927585f8587Sbellard } 1928585f8587Sbellard } 1929585f8587Sbellard if (l1_modified) { 1930585f8587Sbellard for(i = 0; i < l1_size; i++) 1931585f8587Sbellard cpu_to_be64s(&l1_table[i]); 1932585f8587Sbellard if (bdrv_pwrite(s->hd, l1_table_offset, l1_table, 1933585f8587Sbellard l1_size2) != l1_size2) 1934585f8587Sbellard goto fail; 1935585f8587Sbellard for(i = 0; i < l1_size; i++) 1936585f8587Sbellard be64_to_cpus(&l1_table[i]); 1937585f8587Sbellard } 1938585f8587Sbellard if (l1_allocated) 1939585f8587Sbellard qemu_free(l1_table); 1940585f8587Sbellard qemu_free(l2_table); 1941585f8587Sbellard return 0; 1942585f8587Sbellard fail: 1943585f8587Sbellard if (l1_allocated) 1944585f8587Sbellard qemu_free(l1_table); 1945585f8587Sbellard qemu_free(l2_table); 1946585f8587Sbellard return -EIO; 1947585f8587Sbellard } 1948585f8587Sbellard 1949585f8587Sbellard static void qcow_free_snapshots(BlockDriverState *bs) 1950585f8587Sbellard { 1951585f8587Sbellard BDRVQcowState *s = bs->opaque; 1952585f8587Sbellard int i; 1953585f8587Sbellard 1954585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 1955585f8587Sbellard qemu_free(s->snapshots[i].name); 1956585f8587Sbellard qemu_free(s->snapshots[i].id_str); 1957585f8587Sbellard } 1958585f8587Sbellard qemu_free(s->snapshots); 1959585f8587Sbellard s->snapshots = NULL; 1960585f8587Sbellard s->nb_snapshots = 0; 1961585f8587Sbellard } 1962585f8587Sbellard 1963585f8587Sbellard static int qcow_read_snapshots(BlockDriverState *bs) 1964585f8587Sbellard { 1965585f8587Sbellard BDRVQcowState *s = bs->opaque; 1966585f8587Sbellard QCowSnapshotHeader h; 1967585f8587Sbellard QCowSnapshot *sn; 1968585f8587Sbellard int i, id_str_size, name_size; 1969585f8587Sbellard int64_t offset; 1970585f8587Sbellard uint32_t extra_data_size; 1971585f8587Sbellard 197263c75dcdSmalc if (!s->nb_snapshots) { 197363c75dcdSmalc s->snapshots = NULL; 197463c75dcdSmalc s->snapshots_size = 0; 197563c75dcdSmalc return 0; 197663c75dcdSmalc } 197763c75dcdSmalc 1978585f8587Sbellard offset = s->snapshots_offset; 1979585f8587Sbellard s->snapshots = qemu_mallocz(s->nb_snapshots * sizeof(QCowSnapshot)); 1980585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 1981585f8587Sbellard offset = align_offset(offset, 8); 1982585f8587Sbellard if (bdrv_pread(s->hd, offset, &h, sizeof(h)) != sizeof(h)) 1983585f8587Sbellard goto fail; 1984585f8587Sbellard offset += sizeof(h); 1985585f8587Sbellard sn = s->snapshots + i; 1986585f8587Sbellard sn->l1_table_offset = be64_to_cpu(h.l1_table_offset); 1987585f8587Sbellard sn->l1_size = be32_to_cpu(h.l1_size); 1988585f8587Sbellard sn->vm_state_size = be32_to_cpu(h.vm_state_size); 1989585f8587Sbellard sn->date_sec = be32_to_cpu(h.date_sec); 1990585f8587Sbellard sn->date_nsec = be32_to_cpu(h.date_nsec); 1991585f8587Sbellard sn->vm_clock_nsec = be64_to_cpu(h.vm_clock_nsec); 1992585f8587Sbellard extra_data_size = be32_to_cpu(h.extra_data_size); 1993585f8587Sbellard 1994585f8587Sbellard id_str_size = be16_to_cpu(h.id_str_size); 1995585f8587Sbellard name_size = be16_to_cpu(h.name_size); 1996585f8587Sbellard 1997585f8587Sbellard offset += extra_data_size; 1998585f8587Sbellard 1999585f8587Sbellard sn->id_str = qemu_malloc(id_str_size + 1); 2000585f8587Sbellard if (bdrv_pread(s->hd, offset, sn->id_str, id_str_size) != id_str_size) 2001585f8587Sbellard goto fail; 2002585f8587Sbellard offset += id_str_size; 2003585f8587Sbellard sn->id_str[id_str_size] = '\0'; 2004585f8587Sbellard 2005585f8587Sbellard sn->name = qemu_malloc(name_size + 1); 2006585f8587Sbellard if (bdrv_pread(s->hd, offset, sn->name, name_size) != name_size) 2007585f8587Sbellard goto fail; 2008585f8587Sbellard offset += name_size; 2009585f8587Sbellard sn->name[name_size] = '\0'; 2010585f8587Sbellard } 2011585f8587Sbellard s->snapshots_size = offset - s->snapshots_offset; 2012585f8587Sbellard return 0; 2013585f8587Sbellard fail: 2014585f8587Sbellard qcow_free_snapshots(bs); 2015585f8587Sbellard return -1; 2016585f8587Sbellard } 2017585f8587Sbellard 2018585f8587Sbellard /* add at the end of the file a new list of snapshots */ 2019585f8587Sbellard static int qcow_write_snapshots(BlockDriverState *bs) 2020585f8587Sbellard { 2021585f8587Sbellard BDRVQcowState *s = bs->opaque; 2022585f8587Sbellard QCowSnapshot *sn; 2023585f8587Sbellard QCowSnapshotHeader h; 2024585f8587Sbellard int i, name_size, id_str_size, snapshots_size; 2025585f8587Sbellard uint64_t data64; 2026585f8587Sbellard uint32_t data32; 2027585f8587Sbellard int64_t offset, snapshots_offset; 2028585f8587Sbellard 2029585f8587Sbellard /* compute the size of the snapshots */ 2030585f8587Sbellard offset = 0; 2031585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2032585f8587Sbellard sn = s->snapshots + i; 2033585f8587Sbellard offset = align_offset(offset, 8); 2034585f8587Sbellard offset += sizeof(h); 2035585f8587Sbellard offset += strlen(sn->id_str); 2036585f8587Sbellard offset += strlen(sn->name); 2037585f8587Sbellard } 2038585f8587Sbellard snapshots_size = offset; 2039585f8587Sbellard 2040585f8587Sbellard snapshots_offset = alloc_clusters(bs, snapshots_size); 2041585f8587Sbellard offset = snapshots_offset; 2042585f8587Sbellard 2043585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2044585f8587Sbellard sn = s->snapshots + i; 2045585f8587Sbellard memset(&h, 0, sizeof(h)); 2046585f8587Sbellard h.l1_table_offset = cpu_to_be64(sn->l1_table_offset); 2047585f8587Sbellard h.l1_size = cpu_to_be32(sn->l1_size); 2048585f8587Sbellard h.vm_state_size = cpu_to_be32(sn->vm_state_size); 2049585f8587Sbellard h.date_sec = cpu_to_be32(sn->date_sec); 2050585f8587Sbellard h.date_nsec = cpu_to_be32(sn->date_nsec); 2051585f8587Sbellard h.vm_clock_nsec = cpu_to_be64(sn->vm_clock_nsec); 2052585f8587Sbellard 2053585f8587Sbellard id_str_size = strlen(sn->id_str); 2054585f8587Sbellard name_size = strlen(sn->name); 2055585f8587Sbellard h.id_str_size = cpu_to_be16(id_str_size); 2056585f8587Sbellard h.name_size = cpu_to_be16(name_size); 2057585f8587Sbellard offset = align_offset(offset, 8); 2058585f8587Sbellard if (bdrv_pwrite(s->hd, offset, &h, sizeof(h)) != sizeof(h)) 2059585f8587Sbellard goto fail; 2060585f8587Sbellard offset += sizeof(h); 2061585f8587Sbellard if (bdrv_pwrite(s->hd, offset, sn->id_str, id_str_size) != id_str_size) 2062585f8587Sbellard goto fail; 2063585f8587Sbellard offset += id_str_size; 2064585f8587Sbellard if (bdrv_pwrite(s->hd, offset, sn->name, name_size) != name_size) 2065585f8587Sbellard goto fail; 2066585f8587Sbellard offset += name_size; 2067585f8587Sbellard } 2068585f8587Sbellard 2069585f8587Sbellard /* update the various header fields */ 2070585f8587Sbellard data64 = cpu_to_be64(snapshots_offset); 2071585f8587Sbellard if (bdrv_pwrite(s->hd, offsetof(QCowHeader, snapshots_offset), 2072585f8587Sbellard &data64, sizeof(data64)) != sizeof(data64)) 2073585f8587Sbellard goto fail; 2074585f8587Sbellard data32 = cpu_to_be32(s->nb_snapshots); 2075585f8587Sbellard if (bdrv_pwrite(s->hd, offsetof(QCowHeader, nb_snapshots), 2076585f8587Sbellard &data32, sizeof(data32)) != sizeof(data32)) 2077585f8587Sbellard goto fail; 2078585f8587Sbellard 2079585f8587Sbellard /* free the old snapshot table */ 2080585f8587Sbellard free_clusters(bs, s->snapshots_offset, s->snapshots_size); 2081585f8587Sbellard s->snapshots_offset = snapshots_offset; 2082585f8587Sbellard s->snapshots_size = snapshots_size; 2083585f8587Sbellard return 0; 2084585f8587Sbellard fail: 2085585f8587Sbellard return -1; 2086585f8587Sbellard } 2087585f8587Sbellard 2088585f8587Sbellard static void find_new_snapshot_id(BlockDriverState *bs, 2089585f8587Sbellard char *id_str, int id_str_size) 2090585f8587Sbellard { 2091585f8587Sbellard BDRVQcowState *s = bs->opaque; 2092585f8587Sbellard QCowSnapshot *sn; 2093585f8587Sbellard int i, id, id_max = 0; 2094585f8587Sbellard 2095585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2096585f8587Sbellard sn = s->snapshots + i; 2097585f8587Sbellard id = strtoul(sn->id_str, NULL, 10); 2098585f8587Sbellard if (id > id_max) 2099585f8587Sbellard id_max = id; 2100585f8587Sbellard } 2101585f8587Sbellard snprintf(id_str, id_str_size, "%d", id_max + 1); 2102585f8587Sbellard } 2103585f8587Sbellard 2104585f8587Sbellard static int find_snapshot_by_id(BlockDriverState *bs, const char *id_str) 2105585f8587Sbellard { 2106585f8587Sbellard BDRVQcowState *s = bs->opaque; 2107585f8587Sbellard int i; 2108585f8587Sbellard 2109585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2110585f8587Sbellard if (!strcmp(s->snapshots[i].id_str, id_str)) 2111585f8587Sbellard return i; 2112585f8587Sbellard } 2113585f8587Sbellard return -1; 2114585f8587Sbellard } 2115585f8587Sbellard 2116585f8587Sbellard static int find_snapshot_by_id_or_name(BlockDriverState *bs, const char *name) 2117585f8587Sbellard { 2118585f8587Sbellard BDRVQcowState *s = bs->opaque; 2119585f8587Sbellard int i, ret; 2120585f8587Sbellard 2121585f8587Sbellard ret = find_snapshot_by_id(bs, name); 2122585f8587Sbellard if (ret >= 0) 2123585f8587Sbellard return ret; 2124585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2125585f8587Sbellard if (!strcmp(s->snapshots[i].name, name)) 2126585f8587Sbellard return i; 2127585f8587Sbellard } 2128585f8587Sbellard return -1; 2129585f8587Sbellard } 2130585f8587Sbellard 2131585f8587Sbellard /* if no id is provided, a new one is constructed */ 2132585f8587Sbellard static int qcow_snapshot_create(BlockDriverState *bs, 2133585f8587Sbellard QEMUSnapshotInfo *sn_info) 2134585f8587Sbellard { 2135585f8587Sbellard BDRVQcowState *s = bs->opaque; 2136585f8587Sbellard QCowSnapshot *snapshots1, sn1, *sn = &sn1; 2137585f8587Sbellard int i, ret; 2138585f8587Sbellard uint64_t *l1_table = NULL; 2139585f8587Sbellard 2140585f8587Sbellard memset(sn, 0, sizeof(*sn)); 2141585f8587Sbellard 2142585f8587Sbellard if (sn_info->id_str[0] == '\0') { 2143585f8587Sbellard /* compute a new id */ 2144585f8587Sbellard find_new_snapshot_id(bs, sn_info->id_str, sizeof(sn_info->id_str)); 2145585f8587Sbellard } 2146585f8587Sbellard 2147585f8587Sbellard /* check that the ID is unique */ 2148585f8587Sbellard if (find_snapshot_by_id(bs, sn_info->id_str) >= 0) 2149585f8587Sbellard return -ENOENT; 2150585f8587Sbellard 2151585f8587Sbellard sn->id_str = qemu_strdup(sn_info->id_str); 2152585f8587Sbellard if (!sn->id_str) 2153585f8587Sbellard goto fail; 2154585f8587Sbellard sn->name = qemu_strdup(sn_info->name); 2155585f8587Sbellard if (!sn->name) 2156585f8587Sbellard goto fail; 2157585f8587Sbellard sn->vm_state_size = sn_info->vm_state_size; 2158585f8587Sbellard sn->date_sec = sn_info->date_sec; 2159585f8587Sbellard sn->date_nsec = sn_info->date_nsec; 2160585f8587Sbellard sn->vm_clock_nsec = sn_info->vm_clock_nsec; 2161585f8587Sbellard 2162585f8587Sbellard ret = update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, 1); 2163585f8587Sbellard if (ret < 0) 2164585f8587Sbellard goto fail; 2165585f8587Sbellard 2166585f8587Sbellard /* create the L1 table of the snapshot */ 2167585f8587Sbellard sn->l1_table_offset = alloc_clusters(bs, s->l1_size * sizeof(uint64_t)); 2168585f8587Sbellard sn->l1_size = s->l1_size; 2169585f8587Sbellard 2170585f8587Sbellard l1_table = qemu_malloc(s->l1_size * sizeof(uint64_t)); 2171585f8587Sbellard for(i = 0; i < s->l1_size; i++) { 2172585f8587Sbellard l1_table[i] = cpu_to_be64(s->l1_table[i]); 2173585f8587Sbellard } 2174585f8587Sbellard if (bdrv_pwrite(s->hd, sn->l1_table_offset, 2175585f8587Sbellard l1_table, s->l1_size * sizeof(uint64_t)) != 2176585f8587Sbellard (s->l1_size * sizeof(uint64_t))) 2177585f8587Sbellard goto fail; 2178585f8587Sbellard qemu_free(l1_table); 2179585f8587Sbellard l1_table = NULL; 2180585f8587Sbellard 2181585f8587Sbellard snapshots1 = qemu_malloc((s->nb_snapshots + 1) * sizeof(QCowSnapshot)); 218263c75dcdSmalc if (s->snapshots) { 2183585f8587Sbellard memcpy(snapshots1, s->snapshots, s->nb_snapshots * sizeof(QCowSnapshot)); 218454c16572Saliguori qemu_free(s->snapshots); 218563c75dcdSmalc } 2186585f8587Sbellard s->snapshots = snapshots1; 2187585f8587Sbellard s->snapshots[s->nb_snapshots++] = *sn; 2188585f8587Sbellard 2189585f8587Sbellard if (qcow_write_snapshots(bs) < 0) 2190585f8587Sbellard goto fail; 2191585f8587Sbellard #ifdef DEBUG_ALLOC 2192585f8587Sbellard check_refcounts(bs); 2193585f8587Sbellard #endif 2194585f8587Sbellard return 0; 2195585f8587Sbellard fail: 2196585f8587Sbellard qemu_free(sn->name); 2197585f8587Sbellard qemu_free(l1_table); 2198585f8587Sbellard return -1; 2199585f8587Sbellard } 2200585f8587Sbellard 2201585f8587Sbellard /* copy the snapshot 'snapshot_name' into the current disk image */ 2202585f8587Sbellard static int qcow_snapshot_goto(BlockDriverState *bs, 2203585f8587Sbellard const char *snapshot_id) 2204585f8587Sbellard { 2205585f8587Sbellard BDRVQcowState *s = bs->opaque; 2206585f8587Sbellard QCowSnapshot *sn; 2207585f8587Sbellard int i, snapshot_index, l1_size2; 2208585f8587Sbellard 2209585f8587Sbellard snapshot_index = find_snapshot_by_id_or_name(bs, snapshot_id); 2210585f8587Sbellard if (snapshot_index < 0) 2211585f8587Sbellard return -ENOENT; 2212585f8587Sbellard sn = &s->snapshots[snapshot_index]; 2213585f8587Sbellard 2214585f8587Sbellard if (update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, -1) < 0) 2215585f8587Sbellard goto fail; 2216585f8587Sbellard 2217585f8587Sbellard if (grow_l1_table(bs, sn->l1_size) < 0) 2218585f8587Sbellard goto fail; 2219585f8587Sbellard 2220585f8587Sbellard s->l1_size = sn->l1_size; 2221585f8587Sbellard l1_size2 = s->l1_size * sizeof(uint64_t); 2222585f8587Sbellard /* copy the snapshot l1 table to the current l1 table */ 2223585f8587Sbellard if (bdrv_pread(s->hd, sn->l1_table_offset, 2224585f8587Sbellard s->l1_table, l1_size2) != l1_size2) 2225585f8587Sbellard goto fail; 2226585f8587Sbellard if (bdrv_pwrite(s->hd, s->l1_table_offset, 2227585f8587Sbellard s->l1_table, l1_size2) != l1_size2) 2228585f8587Sbellard goto fail; 2229585f8587Sbellard for(i = 0;i < s->l1_size; i++) { 2230585f8587Sbellard be64_to_cpus(&s->l1_table[i]); 2231585f8587Sbellard } 2232585f8587Sbellard 2233585f8587Sbellard if (update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, 1) < 0) 2234585f8587Sbellard goto fail; 2235585f8587Sbellard 2236585f8587Sbellard #ifdef DEBUG_ALLOC 2237585f8587Sbellard check_refcounts(bs); 2238585f8587Sbellard #endif 2239585f8587Sbellard return 0; 2240585f8587Sbellard fail: 2241585f8587Sbellard return -EIO; 2242585f8587Sbellard } 2243585f8587Sbellard 2244585f8587Sbellard static int qcow_snapshot_delete(BlockDriverState *bs, const char *snapshot_id) 2245585f8587Sbellard { 2246585f8587Sbellard BDRVQcowState *s = bs->opaque; 2247585f8587Sbellard QCowSnapshot *sn; 2248585f8587Sbellard int snapshot_index, ret; 2249585f8587Sbellard 2250585f8587Sbellard snapshot_index = find_snapshot_by_id_or_name(bs, snapshot_id); 2251585f8587Sbellard if (snapshot_index < 0) 2252585f8587Sbellard return -ENOENT; 2253585f8587Sbellard sn = &s->snapshots[snapshot_index]; 2254585f8587Sbellard 2255585f8587Sbellard ret = update_snapshot_refcount(bs, sn->l1_table_offset, sn->l1_size, -1); 2256585f8587Sbellard if (ret < 0) 2257585f8587Sbellard return ret; 2258585f8587Sbellard /* must update the copied flag on the current cluster offsets */ 2259585f8587Sbellard ret = update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, 0); 2260585f8587Sbellard if (ret < 0) 2261585f8587Sbellard return ret; 2262585f8587Sbellard free_clusters(bs, sn->l1_table_offset, sn->l1_size * sizeof(uint64_t)); 2263585f8587Sbellard 2264585f8587Sbellard qemu_free(sn->id_str); 2265585f8587Sbellard qemu_free(sn->name); 2266585f8587Sbellard memmove(sn, sn + 1, (s->nb_snapshots - snapshot_index - 1) * sizeof(*sn)); 2267585f8587Sbellard s->nb_snapshots--; 2268585f8587Sbellard ret = qcow_write_snapshots(bs); 2269585f8587Sbellard if (ret < 0) { 2270585f8587Sbellard /* XXX: restore snapshot if error ? */ 2271585f8587Sbellard return ret; 2272585f8587Sbellard } 2273585f8587Sbellard #ifdef DEBUG_ALLOC 2274585f8587Sbellard check_refcounts(bs); 2275585f8587Sbellard #endif 2276585f8587Sbellard return 0; 2277585f8587Sbellard } 2278585f8587Sbellard 2279585f8587Sbellard static int qcow_snapshot_list(BlockDriverState *bs, 2280585f8587Sbellard QEMUSnapshotInfo **psn_tab) 2281585f8587Sbellard { 2282585f8587Sbellard BDRVQcowState *s = bs->opaque; 2283585f8587Sbellard QEMUSnapshotInfo *sn_tab, *sn_info; 2284585f8587Sbellard QCowSnapshot *sn; 2285585f8587Sbellard int i; 2286585f8587Sbellard 2287eb0b64f7Smalc if (!s->nb_snapshots) { 2288eb0b64f7Smalc *psn_tab = NULL; 2289eb0b64f7Smalc return s->nb_snapshots; 2290eb0b64f7Smalc } 2291eb0b64f7Smalc 2292585f8587Sbellard sn_tab = qemu_mallocz(s->nb_snapshots * sizeof(QEMUSnapshotInfo)); 2293585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2294585f8587Sbellard sn_info = sn_tab + i; 2295585f8587Sbellard sn = s->snapshots + i; 2296585f8587Sbellard pstrcpy(sn_info->id_str, sizeof(sn_info->id_str), 2297585f8587Sbellard sn->id_str); 2298585f8587Sbellard pstrcpy(sn_info->name, sizeof(sn_info->name), 2299585f8587Sbellard sn->name); 2300585f8587Sbellard sn_info->vm_state_size = sn->vm_state_size; 2301585f8587Sbellard sn_info->date_sec = sn->date_sec; 2302585f8587Sbellard sn_info->date_nsec = sn->date_nsec; 2303585f8587Sbellard sn_info->vm_clock_nsec = sn->vm_clock_nsec; 2304585f8587Sbellard } 2305585f8587Sbellard *psn_tab = sn_tab; 2306585f8587Sbellard return s->nb_snapshots; 2307585f8587Sbellard } 2308585f8587Sbellard 2309585f8587Sbellard /*********************************************************/ 2310585f8587Sbellard /* refcount handling */ 2311585f8587Sbellard 2312585f8587Sbellard static int refcount_init(BlockDriverState *bs) 2313585f8587Sbellard { 2314585f8587Sbellard BDRVQcowState *s = bs->opaque; 2315585f8587Sbellard int ret, refcount_table_size2, i; 2316585f8587Sbellard 2317585f8587Sbellard s->refcount_block_cache = qemu_malloc(s->cluster_size); 2318585f8587Sbellard refcount_table_size2 = s->refcount_table_size * sizeof(uint64_t); 2319585f8587Sbellard s->refcount_table = qemu_malloc(refcount_table_size2); 2320585f8587Sbellard if (s->refcount_table_size > 0) { 2321585f8587Sbellard ret = bdrv_pread(s->hd, s->refcount_table_offset, 2322585f8587Sbellard s->refcount_table, refcount_table_size2); 2323585f8587Sbellard if (ret != refcount_table_size2) 2324585f8587Sbellard goto fail; 2325585f8587Sbellard for(i = 0; i < s->refcount_table_size; i++) 2326585f8587Sbellard be64_to_cpus(&s->refcount_table[i]); 2327585f8587Sbellard } 2328585f8587Sbellard return 0; 2329585f8587Sbellard fail: 2330585f8587Sbellard return -ENOMEM; 2331585f8587Sbellard } 2332585f8587Sbellard 2333585f8587Sbellard static void refcount_close(BlockDriverState *bs) 2334585f8587Sbellard { 2335585f8587Sbellard BDRVQcowState *s = bs->opaque; 2336585f8587Sbellard qemu_free(s->refcount_block_cache); 2337585f8587Sbellard qemu_free(s->refcount_table); 2338585f8587Sbellard } 2339585f8587Sbellard 2340585f8587Sbellard 2341585f8587Sbellard static int load_refcount_block(BlockDriverState *bs, 2342585f8587Sbellard int64_t refcount_block_offset) 2343585f8587Sbellard { 2344585f8587Sbellard BDRVQcowState *s = bs->opaque; 2345585f8587Sbellard int ret; 2346585f8587Sbellard ret = bdrv_pread(s->hd, refcount_block_offset, s->refcount_block_cache, 2347585f8587Sbellard s->cluster_size); 2348585f8587Sbellard if (ret != s->cluster_size) 2349585f8587Sbellard return -EIO; 2350585f8587Sbellard s->refcount_block_cache_offset = refcount_block_offset; 2351585f8587Sbellard return 0; 2352585f8587Sbellard } 2353585f8587Sbellard 2354585f8587Sbellard static int get_refcount(BlockDriverState *bs, int64_t cluster_index) 2355585f8587Sbellard { 2356585f8587Sbellard BDRVQcowState *s = bs->opaque; 2357585f8587Sbellard int refcount_table_index, block_index; 2358585f8587Sbellard int64_t refcount_block_offset; 2359585f8587Sbellard 2360585f8587Sbellard refcount_table_index = cluster_index >> (s->cluster_bits - REFCOUNT_SHIFT); 2361585f8587Sbellard if (refcount_table_index >= s->refcount_table_size) 2362585f8587Sbellard return 0; 2363585f8587Sbellard refcount_block_offset = s->refcount_table[refcount_table_index]; 2364585f8587Sbellard if (!refcount_block_offset) 2365585f8587Sbellard return 0; 2366585f8587Sbellard if (refcount_block_offset != s->refcount_block_cache_offset) { 2367585f8587Sbellard /* better than nothing: return allocated if read error */ 2368585f8587Sbellard if (load_refcount_block(bs, refcount_block_offset) < 0) 2369585f8587Sbellard return 1; 2370585f8587Sbellard } 2371585f8587Sbellard block_index = cluster_index & 2372585f8587Sbellard ((1 << (s->cluster_bits - REFCOUNT_SHIFT)) - 1); 2373585f8587Sbellard return be16_to_cpu(s->refcount_block_cache[block_index]); 2374585f8587Sbellard } 2375585f8587Sbellard 2376585f8587Sbellard /* return < 0 if error */ 2377585f8587Sbellard static int64_t alloc_clusters_noref(BlockDriverState *bs, int64_t size) 2378585f8587Sbellard { 2379585f8587Sbellard BDRVQcowState *s = bs->opaque; 2380585f8587Sbellard int i, nb_clusters; 2381585f8587Sbellard 23826db6c638Saliguori nb_clusters = size_to_clusters(s, size); 23836db6c638Saliguori retry: 23846db6c638Saliguori for(i = 0; i < nb_clusters; i++) { 23856db6c638Saliguori int64_t i = s->free_cluster_index++; 23866db6c638Saliguori if (get_refcount(bs, i) != 0) 23876db6c638Saliguori goto retry; 2388585f8587Sbellard } 2389585f8587Sbellard #ifdef DEBUG_ALLOC2 2390585f8587Sbellard printf("alloc_clusters: size=%lld -> %lld\n", 2391585f8587Sbellard size, 2392585f8587Sbellard (s->free_cluster_index - nb_clusters) << s->cluster_bits); 2393585f8587Sbellard #endif 2394585f8587Sbellard return (s->free_cluster_index - nb_clusters) << s->cluster_bits; 2395585f8587Sbellard } 2396585f8587Sbellard 2397585f8587Sbellard static int64_t alloc_clusters(BlockDriverState *bs, int64_t size) 2398585f8587Sbellard { 2399585f8587Sbellard int64_t offset; 2400585f8587Sbellard 2401585f8587Sbellard offset = alloc_clusters_noref(bs, size); 2402585f8587Sbellard update_refcount(bs, offset, size, 1); 2403585f8587Sbellard return offset; 2404585f8587Sbellard } 2405585f8587Sbellard 2406585f8587Sbellard /* only used to allocate compressed sectors. We try to allocate 2407585f8587Sbellard contiguous sectors. size must be <= cluster_size */ 2408585f8587Sbellard static int64_t alloc_bytes(BlockDriverState *bs, int size) 2409585f8587Sbellard { 2410585f8587Sbellard BDRVQcowState *s = bs->opaque; 2411585f8587Sbellard int64_t offset, cluster_offset; 2412585f8587Sbellard int free_in_cluster; 2413585f8587Sbellard 2414585f8587Sbellard assert(size > 0 && size <= s->cluster_size); 2415585f8587Sbellard if (s->free_byte_offset == 0) { 2416585f8587Sbellard s->free_byte_offset = alloc_clusters(bs, s->cluster_size); 2417585f8587Sbellard } 2418585f8587Sbellard redo: 2419585f8587Sbellard free_in_cluster = s->cluster_size - 2420585f8587Sbellard (s->free_byte_offset & (s->cluster_size - 1)); 2421585f8587Sbellard if (size <= free_in_cluster) { 2422585f8587Sbellard /* enough space in current cluster */ 2423585f8587Sbellard offset = s->free_byte_offset; 2424585f8587Sbellard s->free_byte_offset += size; 2425585f8587Sbellard free_in_cluster -= size; 2426585f8587Sbellard if (free_in_cluster == 0) 2427585f8587Sbellard s->free_byte_offset = 0; 2428585f8587Sbellard if ((offset & (s->cluster_size - 1)) != 0) 2429585f8587Sbellard update_cluster_refcount(bs, offset >> s->cluster_bits, 1); 2430585f8587Sbellard } else { 2431585f8587Sbellard offset = alloc_clusters(bs, s->cluster_size); 2432585f8587Sbellard cluster_offset = s->free_byte_offset & ~(s->cluster_size - 1); 2433585f8587Sbellard if ((cluster_offset + s->cluster_size) == offset) { 2434585f8587Sbellard /* we are lucky: contiguous data */ 2435585f8587Sbellard offset = s->free_byte_offset; 2436585f8587Sbellard update_cluster_refcount(bs, offset >> s->cluster_bits, 1); 2437585f8587Sbellard s->free_byte_offset += size; 2438585f8587Sbellard } else { 2439585f8587Sbellard s->free_byte_offset = offset; 2440585f8587Sbellard goto redo; 2441585f8587Sbellard } 2442585f8587Sbellard } 2443585f8587Sbellard return offset; 2444585f8587Sbellard } 2445585f8587Sbellard 2446585f8587Sbellard static void free_clusters(BlockDriverState *bs, 2447585f8587Sbellard int64_t offset, int64_t size) 2448585f8587Sbellard { 2449585f8587Sbellard update_refcount(bs, offset, size, -1); 2450585f8587Sbellard } 2451585f8587Sbellard 2452585f8587Sbellard static int grow_refcount_table(BlockDriverState *bs, int min_size) 2453585f8587Sbellard { 2454585f8587Sbellard BDRVQcowState *s = bs->opaque; 2455585f8587Sbellard int new_table_size, new_table_size2, refcount_table_clusters, i, ret; 2456585f8587Sbellard uint64_t *new_table; 2457585f8587Sbellard int64_t table_offset; 2458643e5399Saliguori uint8_t data[12]; 245923be50f1Sths int old_table_size; 246023be50f1Sths int64_t old_table_offset; 2461585f8587Sbellard 2462585f8587Sbellard if (min_size <= s->refcount_table_size) 2463585f8587Sbellard return 0; 2464585f8587Sbellard /* compute new table size */ 2465585f8587Sbellard refcount_table_clusters = s->refcount_table_size >> (s->cluster_bits - 3); 2466585f8587Sbellard for(;;) { 2467585f8587Sbellard if (refcount_table_clusters == 0) { 2468585f8587Sbellard refcount_table_clusters = 1; 2469585f8587Sbellard } else { 2470585f8587Sbellard refcount_table_clusters = (refcount_table_clusters * 3 + 1) / 2; 2471585f8587Sbellard } 2472585f8587Sbellard new_table_size = refcount_table_clusters << (s->cluster_bits - 3); 2473585f8587Sbellard if (min_size <= new_table_size) 2474585f8587Sbellard break; 2475585f8587Sbellard } 247615e6690aSbellard #ifdef DEBUG_ALLOC2 247715e6690aSbellard printf("grow_refcount_table from %d to %d\n", 247815e6690aSbellard s->refcount_table_size, 247915e6690aSbellard new_table_size); 248015e6690aSbellard #endif 2481585f8587Sbellard new_table_size2 = new_table_size * sizeof(uint64_t); 2482585f8587Sbellard new_table = qemu_mallocz(new_table_size2); 2483585f8587Sbellard memcpy(new_table, s->refcount_table, 2484585f8587Sbellard s->refcount_table_size * sizeof(uint64_t)); 2485585f8587Sbellard for(i = 0; i < s->refcount_table_size; i++) 2486585f8587Sbellard cpu_to_be64s(&new_table[i]); 2487585f8587Sbellard /* Note: we cannot update the refcount now to avoid recursion */ 2488585f8587Sbellard table_offset = alloc_clusters_noref(bs, new_table_size2); 2489585f8587Sbellard ret = bdrv_pwrite(s->hd, table_offset, new_table, new_table_size2); 2490585f8587Sbellard if (ret != new_table_size2) 2491585f8587Sbellard goto fail; 2492585f8587Sbellard for(i = 0; i < s->refcount_table_size; i++) 2493585f8587Sbellard be64_to_cpus(&new_table[i]); 2494585f8587Sbellard 2495643e5399Saliguori cpu_to_be64w((uint64_t*)data, table_offset); 2496643e5399Saliguori cpu_to_be32w((uint32_t*)(data + 8), refcount_table_clusters); 2497585f8587Sbellard if (bdrv_pwrite(s->hd, offsetof(QCowHeader, refcount_table_offset), 2498643e5399Saliguori data, sizeof(data)) != sizeof(data)) 2499585f8587Sbellard goto fail; 2500585f8587Sbellard qemu_free(s->refcount_table); 250123be50f1Sths old_table_offset = s->refcount_table_offset; 250223be50f1Sths old_table_size = s->refcount_table_size; 2503585f8587Sbellard s->refcount_table = new_table; 2504585f8587Sbellard s->refcount_table_size = new_table_size; 2505a4080eceSths s->refcount_table_offset = table_offset; 2506585f8587Sbellard 2507585f8587Sbellard update_refcount(bs, table_offset, new_table_size2, 1); 250823be50f1Sths free_clusters(bs, old_table_offset, old_table_size * sizeof(uint64_t)); 2509585f8587Sbellard return 0; 2510585f8587Sbellard fail: 2511585f8587Sbellard free_clusters(bs, table_offset, new_table_size2); 2512585f8587Sbellard qemu_free(new_table); 2513585f8587Sbellard return -EIO; 2514585f8587Sbellard } 2515585f8587Sbellard 251644ff42deSKevin Wolf 251744ff42deSKevin Wolf static int64_t alloc_refcount_block(BlockDriverState *bs, int64_t cluster_index) 2518585f8587Sbellard { 2519585f8587Sbellard BDRVQcowState *s = bs->opaque; 2520585f8587Sbellard int64_t offset, refcount_block_offset; 252144ff42deSKevin Wolf int ret, refcount_table_index; 2522585f8587Sbellard uint64_t data64; 2523585f8587Sbellard 252444ff42deSKevin Wolf /* Find L1 index and grow refcount table if needed */ 2525585f8587Sbellard refcount_table_index = cluster_index >> (s->cluster_bits - REFCOUNT_SHIFT); 2526585f8587Sbellard if (refcount_table_index >= s->refcount_table_size) { 2527585f8587Sbellard ret = grow_refcount_table(bs, refcount_table_index + 1); 2528585f8587Sbellard if (ret < 0) 2529585f8587Sbellard return ret; 2530585f8587Sbellard } 253144ff42deSKevin Wolf 253244ff42deSKevin Wolf /* Load or allocate the refcount block */ 2533585f8587Sbellard refcount_block_offset = s->refcount_table[refcount_table_index]; 2534585f8587Sbellard if (!refcount_block_offset) { 2535585f8587Sbellard /* create a new refcount block */ 2536585f8587Sbellard /* Note: we cannot update the refcount now to avoid recursion */ 2537585f8587Sbellard offset = alloc_clusters_noref(bs, s->cluster_size); 2538585f8587Sbellard memset(s->refcount_block_cache, 0, s->cluster_size); 2539585f8587Sbellard ret = bdrv_pwrite(s->hd, offset, s->refcount_block_cache, s->cluster_size); 2540585f8587Sbellard if (ret != s->cluster_size) 2541585f8587Sbellard return -EINVAL; 2542585f8587Sbellard s->refcount_table[refcount_table_index] = offset; 2543585f8587Sbellard data64 = cpu_to_be64(offset); 2544585f8587Sbellard ret = bdrv_pwrite(s->hd, s->refcount_table_offset + 2545585f8587Sbellard refcount_table_index * sizeof(uint64_t), 2546585f8587Sbellard &data64, sizeof(data64)); 2547585f8587Sbellard if (ret != sizeof(data64)) 2548585f8587Sbellard return -EINVAL; 2549585f8587Sbellard 2550585f8587Sbellard refcount_block_offset = offset; 2551585f8587Sbellard s->refcount_block_cache_offset = offset; 2552585f8587Sbellard update_refcount(bs, offset, s->cluster_size, 1); 2553585f8587Sbellard } else { 2554585f8587Sbellard if (refcount_block_offset != s->refcount_block_cache_offset) { 2555585f8587Sbellard if (load_refcount_block(bs, refcount_block_offset) < 0) 2556585f8587Sbellard return -EIO; 2557585f8587Sbellard } 2558585f8587Sbellard } 255944ff42deSKevin Wolf 256044ff42deSKevin Wolf return refcount_block_offset; 256144ff42deSKevin Wolf } 256244ff42deSKevin Wolf 256344ff42deSKevin Wolf /* addend must be 1 or -1 */ 256444ff42deSKevin Wolf static int update_cluster_refcount(BlockDriverState *bs, 256544ff42deSKevin Wolf int64_t cluster_index, 256644ff42deSKevin Wolf int addend) 256744ff42deSKevin Wolf { 256844ff42deSKevin Wolf BDRVQcowState *s = bs->opaque; 256944ff42deSKevin Wolf int ret; 257044ff42deSKevin Wolf 257144ff42deSKevin Wolf ret = update_refcount(bs, cluster_index << s->cluster_bits, 1, addend); 257244ff42deSKevin Wolf if (ret < 0) { 257344ff42deSKevin Wolf return ret; 257444ff42deSKevin Wolf } 257544ff42deSKevin Wolf 257644ff42deSKevin Wolf return get_refcount(bs, cluster_index); 257744ff42deSKevin Wolf } 257844ff42deSKevin Wolf 257944ff42deSKevin Wolf /* XXX: cache several refcount block clusters ? */ 258044ff42deSKevin Wolf static int update_refcount(BlockDriverState *bs, 258144ff42deSKevin Wolf int64_t offset, int64_t length, 258244ff42deSKevin Wolf int addend) 258344ff42deSKevin Wolf { 258444ff42deSKevin Wolf BDRVQcowState *s = bs->opaque; 258544ff42deSKevin Wolf int64_t start, last, cluster_offset; 2586a980c98cSKevin Wolf int64_t refcount_block_offset = 0; 2587a980c98cSKevin Wolf int64_t table_index = -1, old_table_index; 2588a980c98cSKevin Wolf int first_index = -1, last_index = -1; 258944ff42deSKevin Wolf 259044ff42deSKevin Wolf #ifdef DEBUG_ALLOC2 259144ff42deSKevin Wolf printf("update_refcount: offset=%lld size=%lld addend=%d\n", 259244ff42deSKevin Wolf offset, length, addend); 259344ff42deSKevin Wolf #endif 259444ff42deSKevin Wolf if (length <= 0) 259544ff42deSKevin Wolf return -EINVAL; 259644ff42deSKevin Wolf start = offset & ~(s->cluster_size - 1); 259744ff42deSKevin Wolf last = (offset + length - 1) & ~(s->cluster_size - 1); 259844ff42deSKevin Wolf for(cluster_offset = start; cluster_offset <= last; 259944ff42deSKevin Wolf cluster_offset += s->cluster_size) 260044ff42deSKevin Wolf { 260144ff42deSKevin Wolf int block_index, refcount; 260244ff42deSKevin Wolf int64_t cluster_index = cluster_offset >> s->cluster_bits; 260344ff42deSKevin Wolf 2604a980c98cSKevin Wolf /* Only write refcount block to disk when we are done with it */ 2605a980c98cSKevin Wolf old_table_index = table_index; 2606a980c98cSKevin Wolf table_index = cluster_index >> (s->cluster_bits - REFCOUNT_SHIFT); 2607a980c98cSKevin Wolf if ((old_table_index >= 0) && (table_index != old_table_index)) { 2608a980c98cSKevin Wolf size_t size = (last_index - first_index + 1) << REFCOUNT_SHIFT; 2609a980c98cSKevin Wolf if (bdrv_pwrite(s->hd, 2610a980c98cSKevin Wolf refcount_block_offset + (first_index << REFCOUNT_SHIFT), 2611a980c98cSKevin Wolf &s->refcount_block_cache[first_index], size) != size) 2612a980c98cSKevin Wolf { 2613a980c98cSKevin Wolf return -EIO; 2614a980c98cSKevin Wolf } 2615a980c98cSKevin Wolf 2616a980c98cSKevin Wolf first_index = -1; 2617a980c98cSKevin Wolf last_index = -1; 2618a980c98cSKevin Wolf } 2619a980c98cSKevin Wolf 262044ff42deSKevin Wolf /* Load the refcount block and allocate it if needed */ 262144ff42deSKevin Wolf refcount_block_offset = alloc_refcount_block(bs, cluster_index); 262244ff42deSKevin Wolf if (refcount_block_offset < 0) { 262344ff42deSKevin Wolf return refcount_block_offset; 262444ff42deSKevin Wolf } 262544ff42deSKevin Wolf 2626585f8587Sbellard /* we can update the count and save it */ 2627585f8587Sbellard block_index = cluster_index & 2628585f8587Sbellard ((1 << (s->cluster_bits - REFCOUNT_SHIFT)) - 1); 2629a980c98cSKevin Wolf if (first_index == -1 || block_index < first_index) { 2630a980c98cSKevin Wolf first_index = block_index; 2631a980c98cSKevin Wolf } 2632a980c98cSKevin Wolf if (block_index > last_index) { 2633a980c98cSKevin Wolf last_index = block_index; 2634a980c98cSKevin Wolf } 2635a980c98cSKevin Wolf 2636585f8587Sbellard refcount = be16_to_cpu(s->refcount_block_cache[block_index]); 2637585f8587Sbellard refcount += addend; 2638585f8587Sbellard if (refcount < 0 || refcount > 0xffff) 2639585f8587Sbellard return -EINVAL; 2640585f8587Sbellard if (refcount == 0 && cluster_index < s->free_cluster_index) { 2641585f8587Sbellard s->free_cluster_index = cluster_index; 2642585f8587Sbellard } 2643585f8587Sbellard s->refcount_block_cache[block_index] = cpu_to_be16(refcount); 2644585f8587Sbellard } 2645a980c98cSKevin Wolf 2646a980c98cSKevin Wolf /* Write last changed block to disk */ 2647a980c98cSKevin Wolf if (refcount_block_offset != 0) { 2648a980c98cSKevin Wolf size_t size = (last_index - first_index + 1) << REFCOUNT_SHIFT; 2649a980c98cSKevin Wolf if (bdrv_pwrite(s->hd, 2650a980c98cSKevin Wolf refcount_block_offset + (first_index << REFCOUNT_SHIFT), 2651a980c98cSKevin Wolf &s->refcount_block_cache[first_index], size) != size) 2652a980c98cSKevin Wolf { 2653a980c98cSKevin Wolf return -EIO; 2654a980c98cSKevin Wolf } 2655a980c98cSKevin Wolf } 2656a980c98cSKevin Wolf 265744ff42deSKevin Wolf return 0; 2658585f8587Sbellard } 2659585f8587Sbellard 2660e97fc193Saliguori /* 2661e97fc193Saliguori * Increases the refcount for a range of clusters in a given refcount table. 2662e97fc193Saliguori * This is used to construct a temporary refcount table out of L1 and L2 tables 2663e97fc193Saliguori * which can be compared the the refcount table saved in the image. 2664e97fc193Saliguori * 2665e97fc193Saliguori * Returns the number of errors in the image that were found 2666e97fc193Saliguori */ 2667e97fc193Saliguori static int inc_refcounts(BlockDriverState *bs, 2668585f8587Sbellard uint16_t *refcount_table, 2669585f8587Sbellard int refcount_table_size, 2670585f8587Sbellard int64_t offset, int64_t size) 2671585f8587Sbellard { 2672585f8587Sbellard BDRVQcowState *s = bs->opaque; 2673585f8587Sbellard int64_t start, last, cluster_offset; 2674585f8587Sbellard int k; 2675e97fc193Saliguori int errors = 0; 2676585f8587Sbellard 2677585f8587Sbellard if (size <= 0) 2678e97fc193Saliguori return 0; 2679585f8587Sbellard 2680585f8587Sbellard start = offset & ~(s->cluster_size - 1); 2681585f8587Sbellard last = (offset + size - 1) & ~(s->cluster_size - 1); 2682585f8587Sbellard for(cluster_offset = start; cluster_offset <= last; 2683585f8587Sbellard cluster_offset += s->cluster_size) { 2684585f8587Sbellard k = cluster_offset >> s->cluster_bits; 2685585f8587Sbellard if (k < 0 || k >= refcount_table_size) { 26868ddbc04fSaliguori fprintf(stderr, "ERROR: invalid cluster offset=0x%" PRIx64 "\n", 26878ddbc04fSaliguori cluster_offset); 2688e97fc193Saliguori errors++; 2689585f8587Sbellard } else { 2690585f8587Sbellard if (++refcount_table[k] == 0) { 26918ddbc04fSaliguori fprintf(stderr, "ERROR: overflow cluster offset=0x%" PRIx64 26928ddbc04fSaliguori "\n", cluster_offset); 2693e97fc193Saliguori errors++; 2694585f8587Sbellard } 2695585f8587Sbellard } 2696585f8587Sbellard } 2697e97fc193Saliguori 2698e97fc193Saliguori return errors; 2699585f8587Sbellard } 2700585f8587Sbellard 2701ae2f14afSaliguori /* 2702ae2f14afSaliguori * Increases the refcount in the given refcount table for the all clusters 2703ae2f14afSaliguori * referenced in the L2 table. While doing so, performs some checks on L2 2704ae2f14afSaliguori * entries. 2705ae2f14afSaliguori * 2706ae2f14afSaliguori * Returns the number of errors found by the checks or -errno if an internal 2707ae2f14afSaliguori * error occurred. 2708ae2f14afSaliguori */ 2709ae2f14afSaliguori static int check_refcounts_l2(BlockDriverState *bs, 2710ae2f14afSaliguori uint16_t *refcount_table, int refcount_table_size, int64_t l2_offset, 2711585f8587Sbellard int check_copied) 2712585f8587Sbellard { 2713585f8587Sbellard BDRVQcowState *s = bs->opaque; 2714ae2f14afSaliguori uint64_t *l2_table, offset; 2715ae2f14afSaliguori int i, l2_size, nb_csectors, refcount; 2716e97fc193Saliguori int errors = 0; 2717585f8587Sbellard 2718ae2f14afSaliguori /* Read L2 table from disk */ 2719585f8587Sbellard l2_size = s->l2_size * sizeof(uint64_t); 2720585f8587Sbellard l2_table = qemu_malloc(l2_size); 2721ae2f14afSaliguori 2722585f8587Sbellard if (bdrv_pread(s->hd, l2_offset, l2_table, l2_size) != l2_size) 2723585f8587Sbellard goto fail; 2724ae2f14afSaliguori 2725ae2f14afSaliguori /* Do the actual checks */ 2726ae2f14afSaliguori for(i = 0; i < s->l2_size; i++) { 2727ae2f14afSaliguori offset = be64_to_cpu(l2_table[i]); 2728585f8587Sbellard if (offset != 0) { 2729585f8587Sbellard if (offset & QCOW_OFLAG_COMPRESSED) { 2730ae2f14afSaliguori /* Compressed clusters don't have QCOW_OFLAG_COPIED */ 2731585f8587Sbellard if (offset & QCOW_OFLAG_COPIED) { 27328ddbc04fSaliguori fprintf(stderr, "ERROR: cluster %" PRId64 ": " 27338ddbc04fSaliguori "copied flag must never be set for compressed " 27348ddbc04fSaliguori "clusters\n", offset >> s->cluster_bits); 2735585f8587Sbellard offset &= ~QCOW_OFLAG_COPIED; 2736e97fc193Saliguori errors++; 2737585f8587Sbellard } 2738ae2f14afSaliguori 2739ae2f14afSaliguori /* Mark cluster as used */ 2740585f8587Sbellard nb_csectors = ((offset >> s->csize_shift) & 2741585f8587Sbellard s->csize_mask) + 1; 2742585f8587Sbellard offset &= s->cluster_offset_mask; 2743e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, 2744585f8587Sbellard refcount_table_size, 2745585f8587Sbellard offset & ~511, nb_csectors * 512); 2746585f8587Sbellard } else { 2747ae2f14afSaliguori /* QCOW_OFLAG_COPIED must be set iff refcount == 1 */ 2748585f8587Sbellard if (check_copied) { 2749ae2f14afSaliguori uint64_t entry = offset; 2750ae2f14afSaliguori offset &= ~QCOW_OFLAG_COPIED; 2751ae2f14afSaliguori refcount = get_refcount(bs, offset >> s->cluster_bits); 2752ae2f14afSaliguori if ((refcount == 1) != ((entry & QCOW_OFLAG_COPIED) != 0)) { 27538ddbc04fSaliguori fprintf(stderr, "ERROR OFLAG_COPIED: offset=%" 2754ae2f14afSaliguori PRIx64 " refcount=%d\n", entry, refcount); 2755e97fc193Saliguori errors++; 2756585f8587Sbellard } 2757585f8587Sbellard } 2758ae2f14afSaliguori 2759ae2f14afSaliguori /* Mark cluster as used */ 2760585f8587Sbellard offset &= ~QCOW_OFLAG_COPIED; 2761e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, 2762585f8587Sbellard refcount_table_size, 2763585f8587Sbellard offset, s->cluster_size); 276454c42368Saliguori 276554c42368Saliguori /* Correct offsets are cluster aligned */ 276654c42368Saliguori if (offset & (s->cluster_size - 1)) { 276754c42368Saliguori fprintf(stderr, "ERROR offset=%" PRIx64 ": Cluster is not " 276854c42368Saliguori "properly aligned; L2 entry corrupted.\n", offset); 276954c42368Saliguori errors++; 277054c42368Saliguori } 2771585f8587Sbellard } 2772585f8587Sbellard } 2773585f8587Sbellard } 2774ae2f14afSaliguori 2775ae2f14afSaliguori qemu_free(l2_table); 2776ae2f14afSaliguori return errors; 2777ae2f14afSaliguori 2778ae2f14afSaliguori fail: 2779ae2f14afSaliguori fprintf(stderr, "ERROR: I/O error in check_refcounts_l1\n"); 2780ae2f14afSaliguori qemu_free(l2_table); 2781ae2f14afSaliguori return -EIO; 2782ae2f14afSaliguori } 2783ae2f14afSaliguori 2784ae2f14afSaliguori /* 2785ae2f14afSaliguori * Increases the refcount for the L1 table, its L2 tables and all referenced 2786ae2f14afSaliguori * clusters in the given refcount table. While doing so, performs some checks 2787ae2f14afSaliguori * on L1 and L2 entries. 2788ae2f14afSaliguori * 2789ae2f14afSaliguori * Returns the number of errors found by the checks or -errno if an internal 2790ae2f14afSaliguori * error occurred. 2791ae2f14afSaliguori */ 2792ae2f14afSaliguori static int check_refcounts_l1(BlockDriverState *bs, 2793ae2f14afSaliguori uint16_t *refcount_table, 2794ae2f14afSaliguori int refcount_table_size, 2795ae2f14afSaliguori int64_t l1_table_offset, int l1_size, 2796ae2f14afSaliguori int check_copied) 2797ae2f14afSaliguori { 2798ae2f14afSaliguori BDRVQcowState *s = bs->opaque; 2799ae2f14afSaliguori uint64_t *l1_table, l2_offset, l1_size2; 2800ae2f14afSaliguori int i, refcount, ret; 2801ae2f14afSaliguori int errors = 0; 2802ae2f14afSaliguori 2803ae2f14afSaliguori l1_size2 = l1_size * sizeof(uint64_t); 2804ae2f14afSaliguori 2805ae2f14afSaliguori /* Mark L1 table as used */ 2806ae2f14afSaliguori errors += inc_refcounts(bs, refcount_table, refcount_table_size, 2807ae2f14afSaliguori l1_table_offset, l1_size2); 2808ae2f14afSaliguori 2809ae2f14afSaliguori /* Read L1 table entries from disk */ 2810ae2f14afSaliguori l1_table = qemu_malloc(l1_size2); 2811ae2f14afSaliguori if (bdrv_pread(s->hd, l1_table_offset, 2812ae2f14afSaliguori l1_table, l1_size2) != l1_size2) 2813ae2f14afSaliguori goto fail; 2814ae2f14afSaliguori for(i = 0;i < l1_size; i++) 2815ae2f14afSaliguori be64_to_cpus(&l1_table[i]); 2816ae2f14afSaliguori 2817ae2f14afSaliguori /* Do the actual checks */ 2818ae2f14afSaliguori for(i = 0; i < l1_size; i++) { 2819ae2f14afSaliguori l2_offset = l1_table[i]; 2820ae2f14afSaliguori if (l2_offset) { 2821ae2f14afSaliguori /* QCOW_OFLAG_COPIED must be set iff refcount == 1 */ 2822ae2f14afSaliguori if (check_copied) { 2823ae2f14afSaliguori refcount = get_refcount(bs, (l2_offset & ~QCOW_OFLAG_COPIED) 2824ae2f14afSaliguori >> s->cluster_bits); 2825ae2f14afSaliguori if ((refcount == 1) != ((l2_offset & QCOW_OFLAG_COPIED) != 0)) { 2826ae2f14afSaliguori fprintf(stderr, "ERROR OFLAG_COPIED: l2_offset=%" PRIx64 2827ae2f14afSaliguori " refcount=%d\n", l2_offset, refcount); 2828ae2f14afSaliguori errors++; 2829ae2f14afSaliguori } 2830ae2f14afSaliguori } 2831ae2f14afSaliguori 2832ae2f14afSaliguori /* Mark L2 table as used */ 2833ae2f14afSaliguori l2_offset &= ~QCOW_OFLAG_COPIED; 2834e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, 2835585f8587Sbellard refcount_table_size, 2836585f8587Sbellard l2_offset, 2837585f8587Sbellard s->cluster_size); 2838ae2f14afSaliguori 283954c42368Saliguori /* L2 tables are cluster aligned */ 284054c42368Saliguori if (l2_offset & (s->cluster_size - 1)) { 284154c42368Saliguori fprintf(stderr, "ERROR l2_offset=%" PRIx64 ": Table is not " 284254c42368Saliguori "cluster aligned; L1 entry corrupted\n", l2_offset); 284354c42368Saliguori errors++; 284454c42368Saliguori } 284554c42368Saliguori 2846ae2f14afSaliguori /* Process and check L2 entries */ 2847ae2f14afSaliguori ret = check_refcounts_l2(bs, refcount_table, refcount_table_size, 2848ae2f14afSaliguori l2_offset, check_copied); 2849ae2f14afSaliguori if (ret < 0) { 2850ae2f14afSaliguori goto fail; 2851ae2f14afSaliguori } 2852ae2f14afSaliguori errors += ret; 2853585f8587Sbellard } 2854585f8587Sbellard } 2855585f8587Sbellard qemu_free(l1_table); 2856e97fc193Saliguori return errors; 2857ae2f14afSaliguori 2858585f8587Sbellard fail: 28598ddbc04fSaliguori fprintf(stderr, "ERROR: I/O error in check_refcounts_l1\n"); 2860585f8587Sbellard qemu_free(l1_table); 2861585f8587Sbellard return -EIO; 2862585f8587Sbellard } 2863585f8587Sbellard 2864e97fc193Saliguori /* 2865e97fc193Saliguori * Checks an image for refcount consistency. 2866e97fc193Saliguori * 2867e97fc193Saliguori * Returns 0 if no errors are found, the number of errors in case the image is 2868e97fc193Saliguori * detected as corrupted, and -errno when an internal error occured. 2869e97fc193Saliguori */ 2870e97fc193Saliguori static int check_refcounts(BlockDriverState *bs) 2871585f8587Sbellard { 2872585f8587Sbellard BDRVQcowState *s = bs->opaque; 2873585f8587Sbellard int64_t size; 2874585f8587Sbellard int nb_clusters, refcount1, refcount2, i; 2875585f8587Sbellard QCowSnapshot *sn; 2876585f8587Sbellard uint16_t *refcount_table; 2877e97fc193Saliguori int ret, errors = 0; 2878585f8587Sbellard 2879585f8587Sbellard size = bdrv_getlength(s->hd); 28806db6c638Saliguori nb_clusters = size_to_clusters(s, size); 2881585f8587Sbellard refcount_table = qemu_mallocz(nb_clusters * sizeof(uint16_t)); 2882585f8587Sbellard 2883585f8587Sbellard /* header */ 2884e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, nb_clusters, 2885585f8587Sbellard 0, s->cluster_size); 2886585f8587Sbellard 2887ae2f14afSaliguori /* current L1 table */ 2888e97fc193Saliguori ret = check_refcounts_l1(bs, refcount_table, nb_clusters, 2889585f8587Sbellard s->l1_table_offset, s->l1_size, 1); 2890e97fc193Saliguori if (ret < 0) { 2891e97fc193Saliguori return ret; 2892e97fc193Saliguori } 2893e97fc193Saliguori errors += ret; 2894585f8587Sbellard 2895585f8587Sbellard /* snapshots */ 2896585f8587Sbellard for(i = 0; i < s->nb_snapshots; i++) { 2897585f8587Sbellard sn = s->snapshots + i; 2898585f8587Sbellard check_refcounts_l1(bs, refcount_table, nb_clusters, 2899585f8587Sbellard sn->l1_table_offset, sn->l1_size, 0); 2900585f8587Sbellard } 2901e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, nb_clusters, 2902585f8587Sbellard s->snapshots_offset, s->snapshots_size); 2903585f8587Sbellard 2904585f8587Sbellard /* refcount data */ 2905e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, nb_clusters, 2906585f8587Sbellard s->refcount_table_offset, 2907585f8587Sbellard s->refcount_table_size * sizeof(uint64_t)); 2908585f8587Sbellard for(i = 0; i < s->refcount_table_size; i++) { 2909585f8587Sbellard int64_t offset; 2910585f8587Sbellard offset = s->refcount_table[i]; 2911585f8587Sbellard if (offset != 0) { 2912e97fc193Saliguori errors += inc_refcounts(bs, refcount_table, nb_clusters, 2913585f8587Sbellard offset, s->cluster_size); 2914585f8587Sbellard } 2915585f8587Sbellard } 2916585f8587Sbellard 2917585f8587Sbellard /* compare ref counts */ 2918585f8587Sbellard for(i = 0; i < nb_clusters; i++) { 2919585f8587Sbellard refcount1 = get_refcount(bs, i); 2920585f8587Sbellard refcount2 = refcount_table[i]; 2921e97fc193Saliguori if (refcount1 != refcount2) { 29228ddbc04fSaliguori fprintf(stderr, "ERROR cluster %d refcount=%d reference=%d\n", 2923585f8587Sbellard i, refcount1, refcount2); 2924e97fc193Saliguori errors++; 2925e97fc193Saliguori } 2926585f8587Sbellard } 2927585f8587Sbellard 2928585f8587Sbellard qemu_free(refcount_table); 2929e97fc193Saliguori 2930e97fc193Saliguori return errors; 2931e97fc193Saliguori } 2932e97fc193Saliguori 2933e97fc193Saliguori static int qcow_check(BlockDriverState *bs) 2934e97fc193Saliguori { 2935e97fc193Saliguori return check_refcounts(bs); 2936585f8587Sbellard } 2937585f8587Sbellard 2938585f8587Sbellard #if 0 2939585f8587Sbellard static void dump_refcounts(BlockDriverState *bs) 2940585f8587Sbellard { 2941585f8587Sbellard BDRVQcowState *s = bs->opaque; 2942585f8587Sbellard int64_t nb_clusters, k, k1, size; 2943585f8587Sbellard int refcount; 2944585f8587Sbellard 2945585f8587Sbellard size = bdrv_getlength(s->hd); 29466db6c638Saliguori nb_clusters = size_to_clusters(s, size); 2947585f8587Sbellard for(k = 0; k < nb_clusters;) { 2948585f8587Sbellard k1 = k; 2949585f8587Sbellard refcount = get_refcount(bs, k); 2950585f8587Sbellard k++; 2951585f8587Sbellard while (k < nb_clusters && get_refcount(bs, k) == refcount) 2952585f8587Sbellard k++; 2953585f8587Sbellard printf("%lld: refcount=%d nb=%lld\n", k, refcount, k - k1); 2954585f8587Sbellard } 2955585f8587Sbellard } 2956585f8587Sbellard #endif 2957585f8587Sbellard 2958178e08a5Saliguori static int qcow_put_buffer(BlockDriverState *bs, const uint8_t *buf, 2959178e08a5Saliguori int64_t pos, int size) 2960178e08a5Saliguori { 2961178e08a5Saliguori int growable = bs->growable; 2962178e08a5Saliguori 2963178e08a5Saliguori bs->growable = 1; 2964178e08a5Saliguori bdrv_pwrite(bs, pos, buf, size); 2965178e08a5Saliguori bs->growable = growable; 2966178e08a5Saliguori 2967178e08a5Saliguori return size; 2968178e08a5Saliguori } 2969178e08a5Saliguori 2970178e08a5Saliguori static int qcow_get_buffer(BlockDriverState *bs, uint8_t *buf, 2971178e08a5Saliguori int64_t pos, int size) 2972178e08a5Saliguori { 2973178e08a5Saliguori int growable = bs->growable; 2974178e08a5Saliguori int ret; 2975178e08a5Saliguori 2976178e08a5Saliguori bs->growable = 1; 2977178e08a5Saliguori ret = bdrv_pread(bs, pos, buf, size); 2978178e08a5Saliguori bs->growable = growable; 2979178e08a5Saliguori 2980178e08a5Saliguori return ret; 2981178e08a5Saliguori } 2982178e08a5Saliguori 29830e7e1989SKevin Wolf static QEMUOptionParameter qcow_create_options[] = { 2984db08adf5SKevin Wolf { 2985db08adf5SKevin Wolf .name = BLOCK_OPT_SIZE, 2986db08adf5SKevin Wolf .type = OPT_SIZE, 2987db08adf5SKevin Wolf .help = "Virtual disk size" 2988db08adf5SKevin Wolf }, 2989db08adf5SKevin Wolf { 2990db08adf5SKevin Wolf .name = BLOCK_OPT_BACKING_FILE, 2991db08adf5SKevin Wolf .type = OPT_STRING, 2992db08adf5SKevin Wolf .help = "File name of a base image" 2993db08adf5SKevin Wolf }, 2994db08adf5SKevin Wolf { 2995db08adf5SKevin Wolf .name = BLOCK_OPT_BACKING_FMT, 2996db08adf5SKevin Wolf .type = OPT_STRING, 2997db08adf5SKevin Wolf .help = "Image format of the base image" 2998db08adf5SKevin Wolf }, 2999db08adf5SKevin Wolf { 3000db08adf5SKevin Wolf .name = BLOCK_OPT_ENCRYPT, 3001db08adf5SKevin Wolf .type = OPT_FLAG, 3002db08adf5SKevin Wolf .help = "Encrypt the image" 3003db08adf5SKevin Wolf }, 3004db08adf5SKevin Wolf { 3005db08adf5SKevin Wolf .name = BLOCK_OPT_CLUSTER_SIZE, 3006db08adf5SKevin Wolf .type = OPT_SIZE, 3007db08adf5SKevin Wolf .help = "qcow2 cluster size" 3008db08adf5SKevin Wolf }, 30090e7e1989SKevin Wolf { NULL } 30100e7e1989SKevin Wolf }; 30110e7e1989SKevin Wolf 30125efa9d5aSAnthony Liguori static BlockDriver bdrv_qcow2 = { 3013e60f469cSaurel32 .format_name = "qcow2", 3014e60f469cSaurel32 .instance_size = sizeof(BDRVQcowState), 3015e60f469cSaurel32 .bdrv_probe = qcow_probe, 3016e60f469cSaurel32 .bdrv_open = qcow_open, 3017e60f469cSaurel32 .bdrv_close = qcow_close, 3018e60f469cSaurel32 .bdrv_create = qcow_create, 3019e60f469cSaurel32 .bdrv_flush = qcow_flush, 3020e60f469cSaurel32 .bdrv_is_allocated = qcow_is_allocated, 3021e60f469cSaurel32 .bdrv_set_key = qcow_set_key, 3022e60f469cSaurel32 .bdrv_make_empty = qcow_make_empty, 3023585f8587Sbellard 3024f141eafeSaliguori .bdrv_aio_readv = qcow_aio_readv, 3025f141eafeSaliguori .bdrv_aio_writev = qcow_aio_writev, 3026585f8587Sbellard .bdrv_write_compressed = qcow_write_compressed, 3027585f8587Sbellard 3028585f8587Sbellard .bdrv_snapshot_create = qcow_snapshot_create, 3029585f8587Sbellard .bdrv_snapshot_goto = qcow_snapshot_goto, 3030585f8587Sbellard .bdrv_snapshot_delete = qcow_snapshot_delete, 3031585f8587Sbellard .bdrv_snapshot_list = qcow_snapshot_list, 3032585f8587Sbellard .bdrv_get_info = qcow_get_info, 3033f965509cSaliguori 3034178e08a5Saliguori .bdrv_put_buffer = qcow_put_buffer, 3035178e08a5Saliguori .bdrv_get_buffer = qcow_get_buffer, 3036178e08a5Saliguori 30370e7e1989SKevin Wolf .create_options = qcow_create_options, 3038e97fc193Saliguori .bdrv_check = qcow_check, 3039585f8587Sbellard }; 30405efa9d5aSAnthony Liguori 30415efa9d5aSAnthony Liguori static void bdrv_qcow2_init(void) 30425efa9d5aSAnthony Liguori { 30435efa9d5aSAnthony Liguori bdrv_register(&bdrv_qcow2); 30445efa9d5aSAnthony Liguori } 30455efa9d5aSAnthony Liguori 30465efa9d5aSAnthony Liguori block_init(bdrv_qcow2_init); 3047