xref: /qemu/block/qcow2.c (revision 73c632edc4e28d0a8cae3b34abf7ae46fa33bf1e)
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 
65*73c632edSKevin Wolf #define MIN_CLUSTER_BITS 9
66*73c632edSKevin Wolf #define MAX_CLUSTER_BITS 16
67*73c632edSKevin 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);
176585f8587Sbellard static void 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 ||
306*73c632edSKevin Wolf         header.cluster_bits < MIN_CLUSTER_BITS ||
307*73c632edSKevin 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 
1232585f8587Sbellard static int qcow_write(BlockDriverState *bs, int64_t sector_num,
1233585f8587Sbellard                      const uint8_t *buf, int nb_sectors)
1234585f8587Sbellard {
1235585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1236585f8587Sbellard     int ret, index_in_cluster, n;
1237585f8587Sbellard     uint64_t cluster_offset;
1238095a9c58Saliguori     int n_end;
1239e976c6a1Saliguori     QCowL2Meta l2meta;
1240585f8587Sbellard 
1241585f8587Sbellard     while (nb_sectors > 0) {
1242585f8587Sbellard         index_in_cluster = sector_num & (s->cluster_sectors - 1);
1243095a9c58Saliguori         n_end = index_in_cluster + nb_sectors;
1244095a9c58Saliguori         if (s->crypt_method &&
1245095a9c58Saliguori             n_end > QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors)
1246095a9c58Saliguori             n_end = QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors;
124752d893ecSaliguori         cluster_offset = alloc_cluster_offset(bs, sector_num << 9,
1248585f8587Sbellard                                               index_in_cluster,
1249e976c6a1Saliguori                                               n_end, &n, &l2meta);
1250585f8587Sbellard         if (!cluster_offset)
1251585f8587Sbellard             return -1;
1252585f8587Sbellard         if (s->crypt_method) {
1253585f8587Sbellard             encrypt_sectors(s, sector_num, s->cluster_data, buf, n, 1,
1254585f8587Sbellard                             &s->aes_encrypt_key);
1255585f8587Sbellard             ret = bdrv_pwrite(s->hd, cluster_offset + index_in_cluster * 512,
1256585f8587Sbellard                               s->cluster_data, n * 512);
1257585f8587Sbellard         } else {
1258585f8587Sbellard             ret = bdrv_pwrite(s->hd, cluster_offset + index_in_cluster * 512, buf, n * 512);
1259585f8587Sbellard         }
1260e976c6a1Saliguori         if (ret != n * 512 || alloc_cluster_link_l2(bs, cluster_offset, &l2meta) < 0) {
1261e976c6a1Saliguori             free_any_clusters(bs, cluster_offset, l2meta.nb_clusters);
1262585f8587Sbellard             return -1;
1263e976c6a1Saliguori         }
1264585f8587Sbellard         nb_sectors -= n;
1265585f8587Sbellard         sector_num += n;
1266585f8587Sbellard         buf += n * 512;
1267585f8587Sbellard     }
1268585f8587Sbellard     s->cluster_cache_offset = -1; /* disable compressed cache */
1269585f8587Sbellard     return 0;
1270585f8587Sbellard }
1271585f8587Sbellard 
1272ce1a14dcSpbrook typedef struct QCowAIOCB {
1273ce1a14dcSpbrook     BlockDriverAIOCB common;
1274585f8587Sbellard     int64_t sector_num;
1275f141eafeSaliguori     QEMUIOVector *qiov;
1276585f8587Sbellard     uint8_t *buf;
1277f141eafeSaliguori     void *orig_buf;
1278585f8587Sbellard     int nb_sectors;
1279585f8587Sbellard     int n;
1280585f8587Sbellard     uint64_t cluster_offset;
1281585f8587Sbellard     uint8_t *cluster_data;
1282585f8587Sbellard     BlockDriverAIOCB *hd_aiocb;
1283c87c0672Saliguori     struct iovec hd_iov;
1284c87c0672Saliguori     QEMUIOVector hd_qiov;
12851490791fSaliguori     QEMUBH *bh;
1286e976c6a1Saliguori     QCowL2Meta l2meta;
1287585f8587Sbellard } QCowAIOCB;
1288585f8587Sbellard 
12891490791fSaliguori static void qcow_aio_read_cb(void *opaque, int ret);
12901490791fSaliguori static void qcow_aio_read_bh(void *opaque)
12911490791fSaliguori {
12921490791fSaliguori     QCowAIOCB *acb = opaque;
12931490791fSaliguori     qemu_bh_delete(acb->bh);
12941490791fSaliguori     acb->bh = NULL;
12951490791fSaliguori     qcow_aio_read_cb(opaque, 0);
12961490791fSaliguori }
12971490791fSaliguori 
1298a32ef786Saliguori static int qcow_schedule_bh(QEMUBHFunc *cb, QCowAIOCB *acb)
1299a32ef786Saliguori {
1300a32ef786Saliguori     if (acb->bh)
1301a32ef786Saliguori         return -EIO;
1302a32ef786Saliguori 
1303a32ef786Saliguori     acb->bh = qemu_bh_new(cb, acb);
1304a32ef786Saliguori     if (!acb->bh)
1305a32ef786Saliguori         return -EIO;
1306a32ef786Saliguori 
1307a32ef786Saliguori     qemu_bh_schedule(acb->bh);
1308a32ef786Saliguori 
1309a32ef786Saliguori     return 0;
1310a32ef786Saliguori }
1311a32ef786Saliguori 
1312585f8587Sbellard static void qcow_aio_read_cb(void *opaque, int ret)
1313585f8587Sbellard {
1314ce1a14dcSpbrook     QCowAIOCB *acb = opaque;
1315ce1a14dcSpbrook     BlockDriverState *bs = acb->common.bs;
1316585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1317a9465922Sbellard     int index_in_cluster, n1;
1318585f8587Sbellard 
1319ce1a14dcSpbrook     acb->hd_aiocb = NULL;
1320f141eafeSaliguori     if (ret < 0)
1321f141eafeSaliguori         goto done;
1322585f8587Sbellard 
1323585f8587Sbellard     /* post process the read buffer */
1324ce1a14dcSpbrook     if (!acb->cluster_offset) {
1325585f8587Sbellard         /* nothing to do */
1326ce1a14dcSpbrook     } else if (acb->cluster_offset & QCOW_OFLAG_COMPRESSED) {
1327585f8587Sbellard         /* nothing to do */
1328585f8587Sbellard     } else {
1329585f8587Sbellard         if (s->crypt_method) {
1330ce1a14dcSpbrook             encrypt_sectors(s, acb->sector_num, acb->buf, acb->buf,
1331ce1a14dcSpbrook                             acb->n, 0,
1332585f8587Sbellard                             &s->aes_decrypt_key);
1333585f8587Sbellard         }
1334585f8587Sbellard     }
1335585f8587Sbellard 
1336ce1a14dcSpbrook     acb->nb_sectors -= acb->n;
1337ce1a14dcSpbrook     acb->sector_num += acb->n;
1338ce1a14dcSpbrook     acb->buf += acb->n * 512;
1339585f8587Sbellard 
1340ce1a14dcSpbrook     if (acb->nb_sectors == 0) {
1341585f8587Sbellard         /* request completed */
1342f141eafeSaliguori         ret = 0;
1343f141eafeSaliguori         goto done;
1344585f8587Sbellard     }
1345585f8587Sbellard 
1346585f8587Sbellard     /* prepare next AIO request */
1347ce1a14dcSpbrook     acb->n = acb->nb_sectors;
1348095a9c58Saliguori     acb->cluster_offset = get_cluster_offset(bs, acb->sector_num << 9, &acb->n);
1349095a9c58Saliguori     index_in_cluster = acb->sector_num & (s->cluster_sectors - 1);
1350585f8587Sbellard 
1351ce1a14dcSpbrook     if (!acb->cluster_offset) {
1352585f8587Sbellard         if (bs->backing_hd) {
1353585f8587Sbellard             /* read from the base image */
1354ce1a14dcSpbrook             n1 = backing_read1(bs->backing_hd, acb->sector_num,
1355ce1a14dcSpbrook                                acb->buf, acb->n);
1356a9465922Sbellard             if (n1 > 0) {
13573f4cb3d3Sblueswir1                 acb->hd_iov.iov_base = (void *)acb->buf;
1358c87c0672Saliguori                 acb->hd_iov.iov_len = acb->n * 512;
1359c87c0672Saliguori                 qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1);
1360c87c0672Saliguori                 acb->hd_aiocb = bdrv_aio_readv(bs->backing_hd, acb->sector_num,
1361c87c0672Saliguori                                     &acb->hd_qiov, acb->n,
1362c87c0672Saliguori 				    qcow_aio_read_cb, acb);
1363ce1a14dcSpbrook                 if (acb->hd_aiocb == NULL)
1364f141eafeSaliguori                     goto done;
1365585f8587Sbellard             } else {
1366a32ef786Saliguori                 ret = qcow_schedule_bh(qcow_aio_read_bh, acb);
1367a32ef786Saliguori                 if (ret < 0)
1368f141eafeSaliguori                     goto done;
13691490791fSaliguori             }
1370a9465922Sbellard         } else {
1371585f8587Sbellard             /* Note: in this case, no need to wait */
1372ce1a14dcSpbrook             memset(acb->buf, 0, 512 * acb->n);
1373a32ef786Saliguori             ret = qcow_schedule_bh(qcow_aio_read_bh, acb);
1374a32ef786Saliguori             if (ret < 0)
1375f141eafeSaliguori                 goto done;
13761490791fSaliguori         }
1377ce1a14dcSpbrook     } else if (acb->cluster_offset & QCOW_OFLAG_COMPRESSED) {
1378585f8587Sbellard         /* add AIO support for compressed blocks ? */
1379ce1a14dcSpbrook         if (decompress_cluster(s, acb->cluster_offset) < 0)
1380f141eafeSaliguori             goto done;
1381ce1a14dcSpbrook         memcpy(acb->buf,
1382ce1a14dcSpbrook                s->cluster_cache + index_in_cluster * 512, 512 * acb->n);
1383a32ef786Saliguori         ret = qcow_schedule_bh(qcow_aio_read_bh, acb);
1384a32ef786Saliguori         if (ret < 0)
1385f141eafeSaliguori             goto done;
1386585f8587Sbellard     } else {
1387ce1a14dcSpbrook         if ((acb->cluster_offset & 511) != 0) {
1388585f8587Sbellard             ret = -EIO;
1389f141eafeSaliguori             goto done;
1390585f8587Sbellard         }
1391c87c0672Saliguori 
13923f4cb3d3Sblueswir1         acb->hd_iov.iov_base = (void *)acb->buf;
1393c87c0672Saliguori         acb->hd_iov.iov_len = acb->n * 512;
1394c87c0672Saliguori         qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1);
1395c87c0672Saliguori         acb->hd_aiocb = bdrv_aio_readv(s->hd,
1396ce1a14dcSpbrook                             (acb->cluster_offset >> 9) + index_in_cluster,
1397c87c0672Saliguori                             &acb->hd_qiov, acb->n, qcow_aio_read_cb, acb);
1398ce1a14dcSpbrook         if (acb->hd_aiocb == NULL)
1399f141eafeSaliguori             goto done;
1400585f8587Sbellard     }
1401f141eafeSaliguori 
1402f141eafeSaliguori     return;
1403f141eafeSaliguori done:
1404f141eafeSaliguori     if (acb->qiov->niov > 1) {
1405f141eafeSaliguori         qemu_iovec_from_buffer(acb->qiov, acb->orig_buf, acb->qiov->size);
1406f141eafeSaliguori         qemu_vfree(acb->orig_buf);
1407f141eafeSaliguori     }
1408f141eafeSaliguori     acb->common.cb(acb->common.opaque, ret);
1409f141eafeSaliguori     qemu_aio_release(acb);
1410585f8587Sbellard }
1411585f8587Sbellard 
1412ce1a14dcSpbrook static QCowAIOCB *qcow_aio_setup(BlockDriverState *bs,
1413f141eafeSaliguori         int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
1414f141eafeSaliguori         BlockDriverCompletionFunc *cb, void *opaque, int is_write)
1415585f8587Sbellard {
1416ce1a14dcSpbrook     QCowAIOCB *acb;
1417585f8587Sbellard 
1418ce1a14dcSpbrook     acb = qemu_aio_get(bs, cb, opaque);
1419ce1a14dcSpbrook     if (!acb)
1420ce1a14dcSpbrook         return NULL;
1421ce1a14dcSpbrook     acb->hd_aiocb = NULL;
1422ce1a14dcSpbrook     acb->sector_num = sector_num;
1423f141eafeSaliguori     acb->qiov = qiov;
1424f141eafeSaliguori     if (qiov->niov > 1) {
1425e268ca52Saliguori         acb->buf = acb->orig_buf = qemu_blockalign(bs, qiov->size);
1426f141eafeSaliguori         if (is_write)
1427f141eafeSaliguori             qemu_iovec_to_buffer(qiov, acb->buf);
14283f4cb3d3Sblueswir1     } else {
14293f4cb3d3Sblueswir1         acb->buf = (uint8_t *)qiov->iov->iov_base;
14303f4cb3d3Sblueswir1     }
1431ce1a14dcSpbrook     acb->nb_sectors = nb_sectors;
1432ce1a14dcSpbrook     acb->n = 0;
1433ce1a14dcSpbrook     acb->cluster_offset = 0;
1434e976c6a1Saliguori     acb->l2meta.nb_clusters = 0;
1435ce1a14dcSpbrook     return acb;
1436ce1a14dcSpbrook }
1437ce1a14dcSpbrook 
1438f141eafeSaliguori static BlockDriverAIOCB *qcow_aio_readv(BlockDriverState *bs,
1439f141eafeSaliguori         int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
1440ce1a14dcSpbrook         BlockDriverCompletionFunc *cb, void *opaque)
1441ce1a14dcSpbrook {
1442ce1a14dcSpbrook     QCowAIOCB *acb;
1443ce1a14dcSpbrook 
1444f141eafeSaliguori     acb = qcow_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 0);
1445ce1a14dcSpbrook     if (!acb)
1446ce1a14dcSpbrook         return NULL;
1447585f8587Sbellard 
1448585f8587Sbellard     qcow_aio_read_cb(acb, 0);
1449ce1a14dcSpbrook     return &acb->common;
1450585f8587Sbellard }
1451585f8587Sbellard 
1452585f8587Sbellard static void qcow_aio_write_cb(void *opaque, int ret)
1453585f8587Sbellard {
1454ce1a14dcSpbrook     QCowAIOCB *acb = opaque;
1455ce1a14dcSpbrook     BlockDriverState *bs = acb->common.bs;
1456585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1457585f8587Sbellard     int index_in_cluster;
1458585f8587Sbellard     const uint8_t *src_buf;
1459095a9c58Saliguori     int n_end;
1460585f8587Sbellard 
1461ce1a14dcSpbrook     acb->hd_aiocb = NULL;
1462ce1a14dcSpbrook 
1463f141eafeSaliguori     if (ret < 0)
1464f141eafeSaliguori         goto done;
1465585f8587Sbellard 
1466e976c6a1Saliguori     if (alloc_cluster_link_l2(bs, acb->cluster_offset, &acb->l2meta) < 0) {
1467e976c6a1Saliguori         free_any_clusters(bs, acb->cluster_offset, acb->l2meta.nb_clusters);
1468f141eafeSaliguori         goto done;
1469e976c6a1Saliguori     }
1470e976c6a1Saliguori 
1471ce1a14dcSpbrook     acb->nb_sectors -= acb->n;
1472ce1a14dcSpbrook     acb->sector_num += acb->n;
1473ce1a14dcSpbrook     acb->buf += acb->n * 512;
1474585f8587Sbellard 
1475ce1a14dcSpbrook     if (acb->nb_sectors == 0) {
1476585f8587Sbellard         /* request completed */
1477f141eafeSaliguori         ret = 0;
1478f141eafeSaliguori         goto done;
1479585f8587Sbellard     }
1480585f8587Sbellard 
1481ce1a14dcSpbrook     index_in_cluster = acb->sector_num & (s->cluster_sectors - 1);
1482095a9c58Saliguori     n_end = index_in_cluster + acb->nb_sectors;
1483095a9c58Saliguori     if (s->crypt_method &&
1484095a9c58Saliguori         n_end > QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors)
1485095a9c58Saliguori         n_end = QCOW_MAX_CRYPT_CLUSTERS * s->cluster_sectors;
1486095a9c58Saliguori 
1487e976c6a1Saliguori     acb->cluster_offset = alloc_cluster_offset(bs, acb->sector_num << 9,
1488585f8587Sbellard                                           index_in_cluster,
1489e976c6a1Saliguori                                           n_end, &acb->n, &acb->l2meta);
1490e976c6a1Saliguori     if (!acb->cluster_offset || (acb->cluster_offset & 511) != 0) {
1491585f8587Sbellard         ret = -EIO;
1492f141eafeSaliguori         goto done;
1493585f8587Sbellard     }
1494585f8587Sbellard     if (s->crypt_method) {
1495ce1a14dcSpbrook         if (!acb->cluster_data) {
1496095a9c58Saliguori             acb->cluster_data = qemu_mallocz(QCOW_MAX_CRYPT_CLUSTERS *
1497095a9c58Saliguori                                              s->cluster_size);
1498585f8587Sbellard         }
1499ce1a14dcSpbrook         encrypt_sectors(s, acb->sector_num, acb->cluster_data, acb->buf,
1500ce1a14dcSpbrook                         acb->n, 1, &s->aes_encrypt_key);
1501ce1a14dcSpbrook         src_buf = acb->cluster_data;
1502585f8587Sbellard     } else {
1503ce1a14dcSpbrook         src_buf = acb->buf;
1504585f8587Sbellard     }
1505c87c0672Saliguori     acb->hd_iov.iov_base = (void *)src_buf;
1506c87c0672Saliguori     acb->hd_iov.iov_len = acb->n * 512;
1507c87c0672Saliguori     qemu_iovec_init_external(&acb->hd_qiov, &acb->hd_iov, 1);
1508c87c0672Saliguori     acb->hd_aiocb = bdrv_aio_writev(s->hd,
1509e976c6a1Saliguori                                     (acb->cluster_offset >> 9) + index_in_cluster,
1510c87c0672Saliguori                                     &acb->hd_qiov, acb->n,
1511585f8587Sbellard                                     qcow_aio_write_cb, acb);
1512ce1a14dcSpbrook     if (acb->hd_aiocb == NULL)
1513f141eafeSaliguori         goto done;
1514f141eafeSaliguori 
1515f141eafeSaliguori     return;
1516f141eafeSaliguori 
1517f141eafeSaliguori done:
1518f141eafeSaliguori     if (acb->qiov->niov > 1)
1519f141eafeSaliguori         qemu_vfree(acb->orig_buf);
1520f141eafeSaliguori     acb->common.cb(acb->common.opaque, ret);
1521f141eafeSaliguori     qemu_aio_release(acb);
1522585f8587Sbellard }
1523585f8587Sbellard 
1524f141eafeSaliguori static BlockDriverAIOCB *qcow_aio_writev(BlockDriverState *bs,
1525f141eafeSaliguori         int64_t sector_num, QEMUIOVector *qiov, int nb_sectors,
1526ce1a14dcSpbrook         BlockDriverCompletionFunc *cb, void *opaque)
1527585f8587Sbellard {
1528585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1529ce1a14dcSpbrook     QCowAIOCB *acb;
1530585f8587Sbellard 
1531585f8587Sbellard     s->cluster_cache_offset = -1; /* disable compressed cache */
1532585f8587Sbellard 
1533f141eafeSaliguori     acb = qcow_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, 1);
1534ce1a14dcSpbrook     if (!acb)
1535ce1a14dcSpbrook         return NULL;
1536585f8587Sbellard 
1537585f8587Sbellard     qcow_aio_write_cb(acb, 0);
1538ce1a14dcSpbrook     return &acb->common;
1539585f8587Sbellard }
1540585f8587Sbellard 
1541ce1a14dcSpbrook static void qcow_aio_cancel(BlockDriverAIOCB *blockacb)
1542585f8587Sbellard {
1543ce1a14dcSpbrook     QCowAIOCB *acb = (QCowAIOCB *)blockacb;
1544ce1a14dcSpbrook     if (acb->hd_aiocb)
1545ce1a14dcSpbrook         bdrv_aio_cancel(acb->hd_aiocb);
1546ce1a14dcSpbrook     qemu_aio_release(acb);
1547585f8587Sbellard }
1548585f8587Sbellard 
1549585f8587Sbellard static void qcow_close(BlockDriverState *bs)
1550585f8587Sbellard {
1551585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1552585f8587Sbellard     qemu_free(s->l1_table);
1553585f8587Sbellard     qemu_free(s->l2_cache);
1554585f8587Sbellard     qemu_free(s->cluster_cache);
1555585f8587Sbellard     qemu_free(s->cluster_data);
1556585f8587Sbellard     refcount_close(bs);
1557585f8587Sbellard     bdrv_delete(s->hd);
1558585f8587Sbellard }
1559585f8587Sbellard 
1560585f8587Sbellard /* XXX: use std qcow open function ? */
1561585f8587Sbellard typedef struct QCowCreateState {
1562585f8587Sbellard     int cluster_size;
1563585f8587Sbellard     int cluster_bits;
1564585f8587Sbellard     uint16_t *refcount_block;
1565585f8587Sbellard     uint64_t *refcount_table;
1566585f8587Sbellard     int64_t l1_table_offset;
1567585f8587Sbellard     int64_t refcount_table_offset;
1568585f8587Sbellard     int64_t refcount_block_offset;
1569585f8587Sbellard } QCowCreateState;
1570585f8587Sbellard 
1571585f8587Sbellard static void create_refcount_update(QCowCreateState *s,
1572585f8587Sbellard                                    int64_t offset, int64_t size)
1573585f8587Sbellard {
1574585f8587Sbellard     int refcount;
1575585f8587Sbellard     int64_t start, last, cluster_offset;
1576585f8587Sbellard     uint16_t *p;
1577585f8587Sbellard 
1578585f8587Sbellard     start = offset & ~(s->cluster_size - 1);
1579585f8587Sbellard     last = (offset + size - 1)  & ~(s->cluster_size - 1);
1580585f8587Sbellard     for(cluster_offset = start; cluster_offset <= last;
1581585f8587Sbellard         cluster_offset += s->cluster_size) {
1582585f8587Sbellard         p = &s->refcount_block[cluster_offset >> s->cluster_bits];
1583585f8587Sbellard         refcount = be16_to_cpu(*p);
1584585f8587Sbellard         refcount++;
1585585f8587Sbellard         *p = cpu_to_be16(refcount);
1586585f8587Sbellard     }
1587585f8587Sbellard }
1588585f8587Sbellard 
1589*73c632edSKevin Wolf static int get_bits_from_size(size_t size)
1590*73c632edSKevin Wolf {
1591*73c632edSKevin Wolf     int res = 0;
1592*73c632edSKevin Wolf 
1593*73c632edSKevin Wolf     if (size == 0) {
1594*73c632edSKevin Wolf         return -1;
1595*73c632edSKevin Wolf     }
1596*73c632edSKevin Wolf 
1597*73c632edSKevin Wolf     while (size != 1) {
1598*73c632edSKevin Wolf         /* Not a power of two */
1599*73c632edSKevin Wolf         if (size & 1) {
1600*73c632edSKevin Wolf             return -1;
1601*73c632edSKevin Wolf         }
1602*73c632edSKevin Wolf 
1603*73c632edSKevin Wolf         size >>= 1;
1604*73c632edSKevin Wolf         res++;
1605*73c632edSKevin Wolf     }
1606*73c632edSKevin Wolf 
1607*73c632edSKevin Wolf     return res;
1608*73c632edSKevin Wolf }
1609*73c632edSKevin Wolf 
1610f965509cSaliguori static int qcow_create2(const char *filename, int64_t total_size,
1611f965509cSaliguori                         const char *backing_file, const char *backing_format,
1612*73c632edSKevin Wolf                         int flags, size_t cluster_size)
1613585f8587Sbellard {
1614f965509cSaliguori 
1615585f8587Sbellard     int fd, header_size, backing_filename_len, l1_size, i, shift, l2_bits;
16162d2431f0Saliguori     int ref_clusters, backing_format_len = 0;
1617585f8587Sbellard     QCowHeader header;
1618585f8587Sbellard     uint64_t tmp, offset;
1619585f8587Sbellard     QCowCreateState s1, *s = &s1;
1620f965509cSaliguori     QCowExtension ext_bf = {0, 0};
1621f965509cSaliguori 
1622585f8587Sbellard 
1623585f8587Sbellard     memset(s, 0, sizeof(*s));
1624585f8587Sbellard 
1625585f8587Sbellard     fd = open(filename, O_WRONLY | O_CREAT | O_TRUNC | O_BINARY, 0644);
1626585f8587Sbellard     if (fd < 0)
1627585f8587Sbellard         return -1;
1628585f8587Sbellard     memset(&header, 0, sizeof(header));
1629585f8587Sbellard     header.magic = cpu_to_be32(QCOW_MAGIC);
1630585f8587Sbellard     header.version = cpu_to_be32(QCOW_VERSION);
1631585f8587Sbellard     header.size = cpu_to_be64(total_size * 512);
1632585f8587Sbellard     header_size = sizeof(header);
1633585f8587Sbellard     backing_filename_len = 0;
1634585f8587Sbellard     if (backing_file) {
1635f965509cSaliguori         if (backing_format) {
1636f965509cSaliguori             ext_bf.magic = QCOW_EXT_MAGIC_BACKING_FORMAT;
1637f965509cSaliguori             backing_format_len = strlen(backing_format);
1638f965509cSaliguori             ext_bf.len = (backing_format_len + 7) & ~7;
1639f965509cSaliguori             header_size += ((sizeof(ext_bf) + ext_bf.len + 7) & ~7);
1640f965509cSaliguori         }
1641585f8587Sbellard         header.backing_file_offset = cpu_to_be64(header_size);
1642585f8587Sbellard         backing_filename_len = strlen(backing_file);
1643585f8587Sbellard         header.backing_file_size = cpu_to_be32(backing_filename_len);
1644585f8587Sbellard         header_size += backing_filename_len;
1645585f8587Sbellard     }
1646*73c632edSKevin Wolf 
1647*73c632edSKevin Wolf     /* Cluster size */
1648*73c632edSKevin Wolf     s->cluster_bits = get_bits_from_size(cluster_size);
1649*73c632edSKevin Wolf     if (s->cluster_bits < MIN_CLUSTER_BITS ||
1650*73c632edSKevin Wolf         s->cluster_bits > MAX_CLUSTER_BITS)
1651*73c632edSKevin Wolf     {
1652*73c632edSKevin Wolf         fprintf(stderr, "Cluster size must be a power of two between "
1653*73c632edSKevin Wolf             "%d and %dk\n",
1654*73c632edSKevin Wolf             1 << MIN_CLUSTER_BITS,
1655*73c632edSKevin Wolf             1 << (MAX_CLUSTER_BITS - 10));
1656*73c632edSKevin Wolf         return -EINVAL;
1657*73c632edSKevin Wolf     }
1658585f8587Sbellard     s->cluster_size = 1 << s->cluster_bits;
1659*73c632edSKevin Wolf 
1660585f8587Sbellard     header.cluster_bits = cpu_to_be32(s->cluster_bits);
1661585f8587Sbellard     header_size = (header_size + 7) & ~7;
1662ec36ba14Sths     if (flags & BLOCK_FLAG_ENCRYPT) {
1663585f8587Sbellard         header.crypt_method = cpu_to_be32(QCOW_CRYPT_AES);
1664585f8587Sbellard     } else {
1665585f8587Sbellard         header.crypt_method = cpu_to_be32(QCOW_CRYPT_NONE);
1666585f8587Sbellard     }
1667585f8587Sbellard     l2_bits = s->cluster_bits - 3;
1668585f8587Sbellard     shift = s->cluster_bits + l2_bits;
1669585f8587Sbellard     l1_size = (((total_size * 512) + (1LL << shift) - 1) >> shift);
1670585f8587Sbellard     offset = align_offset(header_size, s->cluster_size);
1671585f8587Sbellard     s->l1_table_offset = offset;
1672585f8587Sbellard     header.l1_table_offset = cpu_to_be64(s->l1_table_offset);
1673585f8587Sbellard     header.l1_size = cpu_to_be32(l1_size);
167415e6690aSbellard     offset += align_offset(l1_size * sizeof(uint64_t), s->cluster_size);
1675585f8587Sbellard 
1676585f8587Sbellard     s->refcount_table = qemu_mallocz(s->cluster_size);
1677585f8587Sbellard 
1678585f8587Sbellard     s->refcount_table_offset = offset;
1679585f8587Sbellard     header.refcount_table_offset = cpu_to_be64(offset);
1680585f8587Sbellard     header.refcount_table_clusters = cpu_to_be32(1);
1681585f8587Sbellard     offset += s->cluster_size;
1682585f8587Sbellard     s->refcount_block_offset = offset;
16832d2431f0Saliguori 
16842d2431f0Saliguori     /* count how many refcount blocks needed */
16852d2431f0Saliguori     tmp = offset >> s->cluster_bits;
16862d2431f0Saliguori     ref_clusters = (tmp >> (s->cluster_bits - REFCOUNT_SHIFT)) + 1;
16872d2431f0Saliguori     for (i=0; i < ref_clusters; i++) {
16882d2431f0Saliguori         s->refcount_table[i] = cpu_to_be64(offset);
1689585f8587Sbellard         offset += s->cluster_size;
16902d2431f0Saliguori     }
16912d2431f0Saliguori 
16922d2431f0Saliguori     s->refcount_block = qemu_mallocz(ref_clusters * s->cluster_size);
1693585f8587Sbellard 
1694585f8587Sbellard     /* update refcounts */
1695585f8587Sbellard     create_refcount_update(s, 0, header_size);
169615e6690aSbellard     create_refcount_update(s, s->l1_table_offset, l1_size * sizeof(uint64_t));
1697585f8587Sbellard     create_refcount_update(s, s->refcount_table_offset, s->cluster_size);
16982d2431f0Saliguori     create_refcount_update(s, s->refcount_block_offset, ref_clusters * s->cluster_size);
1699585f8587Sbellard 
1700585f8587Sbellard     /* write all the data */
1701585f8587Sbellard     write(fd, &header, sizeof(header));
1702585f8587Sbellard     if (backing_file) {
1703f965509cSaliguori         if (backing_format_len) {
1704f965509cSaliguori             char zero[16];
1705f965509cSaliguori             int d = ext_bf.len - backing_format_len;
1706f965509cSaliguori 
1707f965509cSaliguori             memset(zero, 0, sizeof(zero));
1708f965509cSaliguori             cpu_to_be32s(&ext_bf.magic);
1709f965509cSaliguori             cpu_to_be32s(&ext_bf.len);
1710f965509cSaliguori             write(fd, &ext_bf, sizeof(ext_bf));
1711f965509cSaliguori             write(fd, backing_format, backing_format_len);
1712f965509cSaliguori             if (d>0) {
1713f965509cSaliguori                 write(fd, zero, d);
1714f965509cSaliguori             }
1715f965509cSaliguori         }
1716585f8587Sbellard         write(fd, backing_file, backing_filename_len);
1717585f8587Sbellard     }
1718585f8587Sbellard     lseek(fd, s->l1_table_offset, SEEK_SET);
1719585f8587Sbellard     tmp = 0;
1720585f8587Sbellard     for(i = 0;i < l1_size; i++) {
1721585f8587Sbellard         write(fd, &tmp, sizeof(tmp));
1722585f8587Sbellard     }
1723585f8587Sbellard     lseek(fd, s->refcount_table_offset, SEEK_SET);
1724585f8587Sbellard     write(fd, s->refcount_table, s->cluster_size);
1725585f8587Sbellard 
1726585f8587Sbellard     lseek(fd, s->refcount_block_offset, SEEK_SET);
17272d2431f0Saliguori     write(fd, s->refcount_block, ref_clusters * s->cluster_size);
1728585f8587Sbellard 
1729585f8587Sbellard     qemu_free(s->refcount_table);
1730585f8587Sbellard     qemu_free(s->refcount_block);
1731585f8587Sbellard     close(fd);
1732585f8587Sbellard     return 0;
1733585f8587Sbellard }
1734585f8587Sbellard 
17350e7e1989SKevin Wolf static int qcow_create(const char *filename, QEMUOptionParameter *options)
1736f965509cSaliguori {
17370e7e1989SKevin Wolf     const char *backing_file = NULL;
17380e7e1989SKevin Wolf     const char *backing_fmt = NULL;
17390e7e1989SKevin Wolf     uint64_t sectors = 0;
17400e7e1989SKevin Wolf     int flags = 0;
1741*73c632edSKevin Wolf     size_t cluster_size = 4096;
17420e7e1989SKevin Wolf 
17430e7e1989SKevin Wolf     /* Read out options */
17440e7e1989SKevin Wolf     while (options && options->name) {
17450e7e1989SKevin Wolf         if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
17460e7e1989SKevin Wolf             sectors = options->value.n / 512;
17470e7e1989SKevin Wolf         } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) {
17480e7e1989SKevin Wolf             backing_file = options->value.s;
17490e7e1989SKevin Wolf         } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FMT)) {
17500e7e1989SKevin Wolf             backing_fmt = options->value.s;
17510e7e1989SKevin Wolf         } else if (!strcmp(options->name, BLOCK_OPT_ENCRYPT)) {
17520e7e1989SKevin Wolf             flags |= options->value.n ? BLOCK_FLAG_ENCRYPT : 0;
1753*73c632edSKevin Wolf         } else if (!strcmp(options->name, BLOCK_OPT_CLUSTER_SIZE)) {
1754*73c632edSKevin Wolf             if (options->value.n) {
1755*73c632edSKevin Wolf                 cluster_size = options->value.n;
1756*73c632edSKevin Wolf             }
17570e7e1989SKevin Wolf         }
17580e7e1989SKevin Wolf         options++;
17590e7e1989SKevin Wolf     }
17600e7e1989SKevin Wolf 
1761*73c632edSKevin Wolf     return qcow_create2(filename, sectors, backing_file, backing_fmt, flags,
1762*73c632edSKevin Wolf         cluster_size);
1763f965509cSaliguori }
1764f965509cSaliguori 
1765585f8587Sbellard static int qcow_make_empty(BlockDriverState *bs)
1766585f8587Sbellard {
1767585f8587Sbellard #if 0
1768585f8587Sbellard     /* XXX: not correct */
1769585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1770585f8587Sbellard     uint32_t l1_length = s->l1_size * sizeof(uint64_t);
1771585f8587Sbellard     int ret;
1772585f8587Sbellard 
1773585f8587Sbellard     memset(s->l1_table, 0, l1_length);
1774585f8587Sbellard     if (bdrv_pwrite(s->hd, s->l1_table_offset, s->l1_table, l1_length) < 0)
1775585f8587Sbellard         return -1;
1776585f8587Sbellard     ret = bdrv_truncate(s->hd, s->l1_table_offset + l1_length);
1777585f8587Sbellard     if (ret < 0)
1778585f8587Sbellard         return ret;
1779585f8587Sbellard 
1780585f8587Sbellard     l2_cache_reset(bs);
1781585f8587Sbellard #endif
1782585f8587Sbellard     return 0;
1783585f8587Sbellard }
1784585f8587Sbellard 
1785585f8587Sbellard /* XXX: put compressed sectors first, then all the cluster aligned
1786585f8587Sbellard    tables to avoid losing bytes in alignment */
1787585f8587Sbellard static int qcow_write_compressed(BlockDriverState *bs, int64_t sector_num,
1788585f8587Sbellard                                  const uint8_t *buf, int nb_sectors)
1789585f8587Sbellard {
1790585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1791585f8587Sbellard     z_stream strm;
1792585f8587Sbellard     int ret, out_len;
1793585f8587Sbellard     uint8_t *out_buf;
1794585f8587Sbellard     uint64_t cluster_offset;
1795585f8587Sbellard 
1796585f8587Sbellard     if (nb_sectors == 0) {
1797585f8587Sbellard         /* align end of file to a sector boundary to ease reading with
1798585f8587Sbellard            sector based I/Os */
1799585f8587Sbellard         cluster_offset = bdrv_getlength(s->hd);
1800585f8587Sbellard         cluster_offset = (cluster_offset + 511) & ~511;
1801585f8587Sbellard         bdrv_truncate(s->hd, cluster_offset);
1802585f8587Sbellard         return 0;
1803585f8587Sbellard     }
1804585f8587Sbellard 
1805585f8587Sbellard     if (nb_sectors != s->cluster_sectors)
1806585f8587Sbellard         return -EINVAL;
1807585f8587Sbellard 
1808585f8587Sbellard     out_buf = qemu_malloc(s->cluster_size + (s->cluster_size / 1000) + 128);
1809585f8587Sbellard 
1810585f8587Sbellard     /* best compression, small window, no zlib header */
1811585f8587Sbellard     memset(&strm, 0, sizeof(strm));
1812585f8587Sbellard     ret = deflateInit2(&strm, Z_DEFAULT_COMPRESSION,
1813585f8587Sbellard                        Z_DEFLATED, -12,
1814585f8587Sbellard                        9, Z_DEFAULT_STRATEGY);
1815585f8587Sbellard     if (ret != 0) {
1816585f8587Sbellard         qemu_free(out_buf);
1817585f8587Sbellard         return -1;
1818585f8587Sbellard     }
1819585f8587Sbellard 
1820585f8587Sbellard     strm.avail_in = s->cluster_size;
1821585f8587Sbellard     strm.next_in = (uint8_t *)buf;
1822585f8587Sbellard     strm.avail_out = s->cluster_size;
1823585f8587Sbellard     strm.next_out = out_buf;
1824585f8587Sbellard 
1825585f8587Sbellard     ret = deflate(&strm, Z_FINISH);
1826585f8587Sbellard     if (ret != Z_STREAM_END && ret != Z_OK) {
1827585f8587Sbellard         qemu_free(out_buf);
1828585f8587Sbellard         deflateEnd(&strm);
1829585f8587Sbellard         return -1;
1830585f8587Sbellard     }
1831585f8587Sbellard     out_len = strm.next_out - out_buf;
1832585f8587Sbellard 
1833585f8587Sbellard     deflateEnd(&strm);
1834585f8587Sbellard 
1835585f8587Sbellard     if (ret != Z_STREAM_END || out_len >= s->cluster_size) {
1836585f8587Sbellard         /* could not compress: write normal cluster */
1837585f8587Sbellard         qcow_write(bs, sector_num, buf, s->cluster_sectors);
1838585f8587Sbellard     } else {
183952d893ecSaliguori         cluster_offset = alloc_compressed_cluster_offset(bs, sector_num << 9,
184052d893ecSaliguori                                               out_len);
184152d893ecSaliguori         if (!cluster_offset)
184252d893ecSaliguori             return -1;
1843585f8587Sbellard         cluster_offset &= s->cluster_offset_mask;
1844585f8587Sbellard         if (bdrv_pwrite(s->hd, cluster_offset, out_buf, out_len) != out_len) {
1845585f8587Sbellard             qemu_free(out_buf);
1846585f8587Sbellard             return -1;
1847585f8587Sbellard         }
1848585f8587Sbellard     }
1849585f8587Sbellard 
1850585f8587Sbellard     qemu_free(out_buf);
1851585f8587Sbellard     return 0;
1852585f8587Sbellard }
1853585f8587Sbellard 
1854585f8587Sbellard static void qcow_flush(BlockDriverState *bs)
1855585f8587Sbellard {
1856585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1857585f8587Sbellard     bdrv_flush(s->hd);
1858585f8587Sbellard }
1859585f8587Sbellard 
1860585f8587Sbellard static int qcow_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
1861585f8587Sbellard {
1862585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1863585f8587Sbellard     bdi->cluster_size = s->cluster_size;
1864585f8587Sbellard     bdi->vm_state_offset = (int64_t)s->l1_vm_state_index <<
1865585f8587Sbellard         (s->cluster_bits + s->l2_bits);
1866585f8587Sbellard     return 0;
1867585f8587Sbellard }
1868585f8587Sbellard 
1869585f8587Sbellard /*********************************************************/
1870585f8587Sbellard /* snapshot support */
1871585f8587Sbellard 
1872585f8587Sbellard /* update the refcounts of snapshots and the copied flag */
1873585f8587Sbellard static int update_snapshot_refcount(BlockDriverState *bs,
1874585f8587Sbellard                                     int64_t l1_table_offset,
1875585f8587Sbellard                                     int l1_size,
1876585f8587Sbellard                                     int addend)
1877585f8587Sbellard {
1878585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1879585f8587Sbellard     uint64_t *l1_table, *l2_table, l2_offset, offset, l1_size2, l1_allocated;
1880585f8587Sbellard     int64_t old_offset, old_l2_offset;
1881585f8587Sbellard     int l2_size, i, j, l1_modified, l2_modified, nb_csectors, refcount;
1882585f8587Sbellard 
1883585f8587Sbellard     l2_cache_reset(bs);
1884585f8587Sbellard 
1885585f8587Sbellard     l2_table = NULL;
1886585f8587Sbellard     l1_table = NULL;
1887585f8587Sbellard     l1_size2 = l1_size * sizeof(uint64_t);
1888585f8587Sbellard     l1_allocated = 0;
1889585f8587Sbellard     if (l1_table_offset != s->l1_table_offset) {
1890585f8587Sbellard         l1_table = qemu_malloc(l1_size2);
1891585f8587Sbellard         l1_allocated = 1;
1892585f8587Sbellard         if (bdrv_pread(s->hd, l1_table_offset,
1893585f8587Sbellard                        l1_table, l1_size2) != l1_size2)
1894585f8587Sbellard             goto fail;
1895585f8587Sbellard         for(i = 0;i < l1_size; i++)
1896585f8587Sbellard             be64_to_cpus(&l1_table[i]);
1897585f8587Sbellard     } else {
1898585f8587Sbellard         assert(l1_size == s->l1_size);
1899585f8587Sbellard         l1_table = s->l1_table;
1900585f8587Sbellard         l1_allocated = 0;
1901585f8587Sbellard     }
1902585f8587Sbellard 
1903585f8587Sbellard     l2_size = s->l2_size * sizeof(uint64_t);
1904585f8587Sbellard     l2_table = qemu_malloc(l2_size);
1905585f8587Sbellard     l1_modified = 0;
1906585f8587Sbellard     for(i = 0; i < l1_size; i++) {
1907585f8587Sbellard         l2_offset = l1_table[i];
1908585f8587Sbellard         if (l2_offset) {
1909585f8587Sbellard             old_l2_offset = l2_offset;
1910585f8587Sbellard             l2_offset &= ~QCOW_OFLAG_COPIED;
1911585f8587Sbellard             l2_modified = 0;
1912585f8587Sbellard             if (bdrv_pread(s->hd, l2_offset, l2_table, l2_size) != l2_size)
1913585f8587Sbellard                 goto fail;
1914585f8587Sbellard             for(j = 0; j < s->l2_size; j++) {
1915585f8587Sbellard                 offset = be64_to_cpu(l2_table[j]);
1916585f8587Sbellard                 if (offset != 0) {
1917585f8587Sbellard                     old_offset = offset;
1918585f8587Sbellard                     offset &= ~QCOW_OFLAG_COPIED;
1919585f8587Sbellard                     if (offset & QCOW_OFLAG_COMPRESSED) {
1920585f8587Sbellard                         nb_csectors = ((offset >> s->csize_shift) &
1921585f8587Sbellard                                        s->csize_mask) + 1;
1922585f8587Sbellard                         if (addend != 0)
1923585f8587Sbellard                             update_refcount(bs, (offset & s->cluster_offset_mask) & ~511,
1924585f8587Sbellard                                             nb_csectors * 512, addend);
1925585f8587Sbellard                         /* compressed clusters are never modified */
1926585f8587Sbellard                         refcount = 2;
1927585f8587Sbellard                     } else {
1928585f8587Sbellard                         if (addend != 0) {
1929585f8587Sbellard                             refcount = update_cluster_refcount(bs, offset >> s->cluster_bits, addend);
1930585f8587Sbellard                         } else {
1931585f8587Sbellard                             refcount = get_refcount(bs, offset >> s->cluster_bits);
1932585f8587Sbellard                         }
1933585f8587Sbellard                     }
1934585f8587Sbellard 
1935585f8587Sbellard                     if (refcount == 1) {
1936585f8587Sbellard                         offset |= QCOW_OFLAG_COPIED;
1937585f8587Sbellard                     }
1938585f8587Sbellard                     if (offset != old_offset) {
1939585f8587Sbellard                         l2_table[j] = cpu_to_be64(offset);
1940585f8587Sbellard                         l2_modified = 1;
1941585f8587Sbellard                     }
1942585f8587Sbellard                 }
1943585f8587Sbellard             }
1944585f8587Sbellard             if (l2_modified) {
1945585f8587Sbellard                 if (bdrv_pwrite(s->hd,
1946585f8587Sbellard                                 l2_offset, l2_table, l2_size) != l2_size)
1947585f8587Sbellard                     goto fail;
1948585f8587Sbellard             }
1949585f8587Sbellard 
1950585f8587Sbellard             if (addend != 0) {
1951585f8587Sbellard                 refcount = update_cluster_refcount(bs, l2_offset >> s->cluster_bits, addend);
1952585f8587Sbellard             } else {
1953585f8587Sbellard                 refcount = get_refcount(bs, l2_offset >> s->cluster_bits);
1954585f8587Sbellard             }
1955585f8587Sbellard             if (refcount == 1) {
1956585f8587Sbellard                 l2_offset |= QCOW_OFLAG_COPIED;
1957585f8587Sbellard             }
1958585f8587Sbellard             if (l2_offset != old_l2_offset) {
1959585f8587Sbellard                 l1_table[i] = l2_offset;
1960585f8587Sbellard                 l1_modified = 1;
1961585f8587Sbellard             }
1962585f8587Sbellard         }
1963585f8587Sbellard     }
1964585f8587Sbellard     if (l1_modified) {
1965585f8587Sbellard         for(i = 0; i < l1_size; i++)
1966585f8587Sbellard             cpu_to_be64s(&l1_table[i]);
1967585f8587Sbellard         if (bdrv_pwrite(s->hd, l1_table_offset, l1_table,
1968585f8587Sbellard                         l1_size2) != l1_size2)
1969585f8587Sbellard             goto fail;
1970585f8587Sbellard         for(i = 0; i < l1_size; i++)
1971585f8587Sbellard             be64_to_cpus(&l1_table[i]);
1972585f8587Sbellard     }
1973585f8587Sbellard     if (l1_allocated)
1974585f8587Sbellard         qemu_free(l1_table);
1975585f8587Sbellard     qemu_free(l2_table);
1976585f8587Sbellard     return 0;
1977585f8587Sbellard  fail:
1978585f8587Sbellard     if (l1_allocated)
1979585f8587Sbellard         qemu_free(l1_table);
1980585f8587Sbellard     qemu_free(l2_table);
1981585f8587Sbellard     return -EIO;
1982585f8587Sbellard }
1983585f8587Sbellard 
1984585f8587Sbellard static void qcow_free_snapshots(BlockDriverState *bs)
1985585f8587Sbellard {
1986585f8587Sbellard     BDRVQcowState *s = bs->opaque;
1987585f8587Sbellard     int i;
1988585f8587Sbellard 
1989585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
1990585f8587Sbellard         qemu_free(s->snapshots[i].name);
1991585f8587Sbellard         qemu_free(s->snapshots[i].id_str);
1992585f8587Sbellard     }
1993585f8587Sbellard     qemu_free(s->snapshots);
1994585f8587Sbellard     s->snapshots = NULL;
1995585f8587Sbellard     s->nb_snapshots = 0;
1996585f8587Sbellard }
1997585f8587Sbellard 
1998585f8587Sbellard static int qcow_read_snapshots(BlockDriverState *bs)
1999585f8587Sbellard {
2000585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2001585f8587Sbellard     QCowSnapshotHeader h;
2002585f8587Sbellard     QCowSnapshot *sn;
2003585f8587Sbellard     int i, id_str_size, name_size;
2004585f8587Sbellard     int64_t offset;
2005585f8587Sbellard     uint32_t extra_data_size;
2006585f8587Sbellard 
200763c75dcdSmalc     if (!s->nb_snapshots) {
200863c75dcdSmalc         s->snapshots = NULL;
200963c75dcdSmalc         s->snapshots_size = 0;
201063c75dcdSmalc         return 0;
201163c75dcdSmalc     }
201263c75dcdSmalc 
2013585f8587Sbellard     offset = s->snapshots_offset;
2014585f8587Sbellard     s->snapshots = qemu_mallocz(s->nb_snapshots * sizeof(QCowSnapshot));
2015585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2016585f8587Sbellard         offset = align_offset(offset, 8);
2017585f8587Sbellard         if (bdrv_pread(s->hd, offset, &h, sizeof(h)) != sizeof(h))
2018585f8587Sbellard             goto fail;
2019585f8587Sbellard         offset += sizeof(h);
2020585f8587Sbellard         sn = s->snapshots + i;
2021585f8587Sbellard         sn->l1_table_offset = be64_to_cpu(h.l1_table_offset);
2022585f8587Sbellard         sn->l1_size = be32_to_cpu(h.l1_size);
2023585f8587Sbellard         sn->vm_state_size = be32_to_cpu(h.vm_state_size);
2024585f8587Sbellard         sn->date_sec = be32_to_cpu(h.date_sec);
2025585f8587Sbellard         sn->date_nsec = be32_to_cpu(h.date_nsec);
2026585f8587Sbellard         sn->vm_clock_nsec = be64_to_cpu(h.vm_clock_nsec);
2027585f8587Sbellard         extra_data_size = be32_to_cpu(h.extra_data_size);
2028585f8587Sbellard 
2029585f8587Sbellard         id_str_size = be16_to_cpu(h.id_str_size);
2030585f8587Sbellard         name_size = be16_to_cpu(h.name_size);
2031585f8587Sbellard 
2032585f8587Sbellard         offset += extra_data_size;
2033585f8587Sbellard 
2034585f8587Sbellard         sn->id_str = qemu_malloc(id_str_size + 1);
2035585f8587Sbellard         if (bdrv_pread(s->hd, offset, sn->id_str, id_str_size) != id_str_size)
2036585f8587Sbellard             goto fail;
2037585f8587Sbellard         offset += id_str_size;
2038585f8587Sbellard         sn->id_str[id_str_size] = '\0';
2039585f8587Sbellard 
2040585f8587Sbellard         sn->name = qemu_malloc(name_size + 1);
2041585f8587Sbellard         if (bdrv_pread(s->hd, offset, sn->name, name_size) != name_size)
2042585f8587Sbellard             goto fail;
2043585f8587Sbellard         offset += name_size;
2044585f8587Sbellard         sn->name[name_size] = '\0';
2045585f8587Sbellard     }
2046585f8587Sbellard     s->snapshots_size = offset - s->snapshots_offset;
2047585f8587Sbellard     return 0;
2048585f8587Sbellard  fail:
2049585f8587Sbellard     qcow_free_snapshots(bs);
2050585f8587Sbellard     return -1;
2051585f8587Sbellard }
2052585f8587Sbellard 
2053585f8587Sbellard /* add at the end of the file a new list of snapshots */
2054585f8587Sbellard static int qcow_write_snapshots(BlockDriverState *bs)
2055585f8587Sbellard {
2056585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2057585f8587Sbellard     QCowSnapshot *sn;
2058585f8587Sbellard     QCowSnapshotHeader h;
2059585f8587Sbellard     int i, name_size, id_str_size, snapshots_size;
2060585f8587Sbellard     uint64_t data64;
2061585f8587Sbellard     uint32_t data32;
2062585f8587Sbellard     int64_t offset, snapshots_offset;
2063585f8587Sbellard 
2064585f8587Sbellard     /* compute the size of the snapshots */
2065585f8587Sbellard     offset = 0;
2066585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2067585f8587Sbellard         sn = s->snapshots + i;
2068585f8587Sbellard         offset = align_offset(offset, 8);
2069585f8587Sbellard         offset += sizeof(h);
2070585f8587Sbellard         offset += strlen(sn->id_str);
2071585f8587Sbellard         offset += strlen(sn->name);
2072585f8587Sbellard     }
2073585f8587Sbellard     snapshots_size = offset;
2074585f8587Sbellard 
2075585f8587Sbellard     snapshots_offset = alloc_clusters(bs, snapshots_size);
2076585f8587Sbellard     offset = snapshots_offset;
2077585f8587Sbellard 
2078585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2079585f8587Sbellard         sn = s->snapshots + i;
2080585f8587Sbellard         memset(&h, 0, sizeof(h));
2081585f8587Sbellard         h.l1_table_offset = cpu_to_be64(sn->l1_table_offset);
2082585f8587Sbellard         h.l1_size = cpu_to_be32(sn->l1_size);
2083585f8587Sbellard         h.vm_state_size = cpu_to_be32(sn->vm_state_size);
2084585f8587Sbellard         h.date_sec = cpu_to_be32(sn->date_sec);
2085585f8587Sbellard         h.date_nsec = cpu_to_be32(sn->date_nsec);
2086585f8587Sbellard         h.vm_clock_nsec = cpu_to_be64(sn->vm_clock_nsec);
2087585f8587Sbellard 
2088585f8587Sbellard         id_str_size = strlen(sn->id_str);
2089585f8587Sbellard         name_size = strlen(sn->name);
2090585f8587Sbellard         h.id_str_size = cpu_to_be16(id_str_size);
2091585f8587Sbellard         h.name_size = cpu_to_be16(name_size);
2092585f8587Sbellard         offset = align_offset(offset, 8);
2093585f8587Sbellard         if (bdrv_pwrite(s->hd, offset, &h, sizeof(h)) != sizeof(h))
2094585f8587Sbellard             goto fail;
2095585f8587Sbellard         offset += sizeof(h);
2096585f8587Sbellard         if (bdrv_pwrite(s->hd, offset, sn->id_str, id_str_size) != id_str_size)
2097585f8587Sbellard             goto fail;
2098585f8587Sbellard         offset += id_str_size;
2099585f8587Sbellard         if (bdrv_pwrite(s->hd, offset, sn->name, name_size) != name_size)
2100585f8587Sbellard             goto fail;
2101585f8587Sbellard         offset += name_size;
2102585f8587Sbellard     }
2103585f8587Sbellard 
2104585f8587Sbellard     /* update the various header fields */
2105585f8587Sbellard     data64 = cpu_to_be64(snapshots_offset);
2106585f8587Sbellard     if (bdrv_pwrite(s->hd, offsetof(QCowHeader, snapshots_offset),
2107585f8587Sbellard                     &data64, sizeof(data64)) != sizeof(data64))
2108585f8587Sbellard         goto fail;
2109585f8587Sbellard     data32 = cpu_to_be32(s->nb_snapshots);
2110585f8587Sbellard     if (bdrv_pwrite(s->hd, offsetof(QCowHeader, nb_snapshots),
2111585f8587Sbellard                     &data32, sizeof(data32)) != sizeof(data32))
2112585f8587Sbellard         goto fail;
2113585f8587Sbellard 
2114585f8587Sbellard     /* free the old snapshot table */
2115585f8587Sbellard     free_clusters(bs, s->snapshots_offset, s->snapshots_size);
2116585f8587Sbellard     s->snapshots_offset = snapshots_offset;
2117585f8587Sbellard     s->snapshots_size = snapshots_size;
2118585f8587Sbellard     return 0;
2119585f8587Sbellard  fail:
2120585f8587Sbellard     return -1;
2121585f8587Sbellard }
2122585f8587Sbellard 
2123585f8587Sbellard static void find_new_snapshot_id(BlockDriverState *bs,
2124585f8587Sbellard                                  char *id_str, int id_str_size)
2125585f8587Sbellard {
2126585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2127585f8587Sbellard     QCowSnapshot *sn;
2128585f8587Sbellard     int i, id, id_max = 0;
2129585f8587Sbellard 
2130585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2131585f8587Sbellard         sn = s->snapshots + i;
2132585f8587Sbellard         id = strtoul(sn->id_str, NULL, 10);
2133585f8587Sbellard         if (id > id_max)
2134585f8587Sbellard             id_max = id;
2135585f8587Sbellard     }
2136585f8587Sbellard     snprintf(id_str, id_str_size, "%d", id_max + 1);
2137585f8587Sbellard }
2138585f8587Sbellard 
2139585f8587Sbellard static int find_snapshot_by_id(BlockDriverState *bs, const char *id_str)
2140585f8587Sbellard {
2141585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2142585f8587Sbellard     int i;
2143585f8587Sbellard 
2144585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2145585f8587Sbellard         if (!strcmp(s->snapshots[i].id_str, id_str))
2146585f8587Sbellard             return i;
2147585f8587Sbellard     }
2148585f8587Sbellard     return -1;
2149585f8587Sbellard }
2150585f8587Sbellard 
2151585f8587Sbellard static int find_snapshot_by_id_or_name(BlockDriverState *bs, const char *name)
2152585f8587Sbellard {
2153585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2154585f8587Sbellard     int i, ret;
2155585f8587Sbellard 
2156585f8587Sbellard     ret = find_snapshot_by_id(bs, name);
2157585f8587Sbellard     if (ret >= 0)
2158585f8587Sbellard         return ret;
2159585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2160585f8587Sbellard         if (!strcmp(s->snapshots[i].name, name))
2161585f8587Sbellard             return i;
2162585f8587Sbellard     }
2163585f8587Sbellard     return -1;
2164585f8587Sbellard }
2165585f8587Sbellard 
2166585f8587Sbellard /* if no id is provided, a new one is constructed */
2167585f8587Sbellard static int qcow_snapshot_create(BlockDriverState *bs,
2168585f8587Sbellard                                 QEMUSnapshotInfo *sn_info)
2169585f8587Sbellard {
2170585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2171585f8587Sbellard     QCowSnapshot *snapshots1, sn1, *sn = &sn1;
2172585f8587Sbellard     int i, ret;
2173585f8587Sbellard     uint64_t *l1_table = NULL;
2174585f8587Sbellard 
2175585f8587Sbellard     memset(sn, 0, sizeof(*sn));
2176585f8587Sbellard 
2177585f8587Sbellard     if (sn_info->id_str[0] == '\0') {
2178585f8587Sbellard         /* compute a new id */
2179585f8587Sbellard         find_new_snapshot_id(bs, sn_info->id_str, sizeof(sn_info->id_str));
2180585f8587Sbellard     }
2181585f8587Sbellard 
2182585f8587Sbellard     /* check that the ID is unique */
2183585f8587Sbellard     if (find_snapshot_by_id(bs, sn_info->id_str) >= 0)
2184585f8587Sbellard         return -ENOENT;
2185585f8587Sbellard 
2186585f8587Sbellard     sn->id_str = qemu_strdup(sn_info->id_str);
2187585f8587Sbellard     if (!sn->id_str)
2188585f8587Sbellard         goto fail;
2189585f8587Sbellard     sn->name = qemu_strdup(sn_info->name);
2190585f8587Sbellard     if (!sn->name)
2191585f8587Sbellard         goto fail;
2192585f8587Sbellard     sn->vm_state_size = sn_info->vm_state_size;
2193585f8587Sbellard     sn->date_sec = sn_info->date_sec;
2194585f8587Sbellard     sn->date_nsec = sn_info->date_nsec;
2195585f8587Sbellard     sn->vm_clock_nsec = sn_info->vm_clock_nsec;
2196585f8587Sbellard 
2197585f8587Sbellard     ret = update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, 1);
2198585f8587Sbellard     if (ret < 0)
2199585f8587Sbellard         goto fail;
2200585f8587Sbellard 
2201585f8587Sbellard     /* create the L1 table of the snapshot */
2202585f8587Sbellard     sn->l1_table_offset = alloc_clusters(bs, s->l1_size * sizeof(uint64_t));
2203585f8587Sbellard     sn->l1_size = s->l1_size;
2204585f8587Sbellard 
2205585f8587Sbellard     l1_table = qemu_malloc(s->l1_size * sizeof(uint64_t));
2206585f8587Sbellard     for(i = 0; i < s->l1_size; i++) {
2207585f8587Sbellard         l1_table[i] = cpu_to_be64(s->l1_table[i]);
2208585f8587Sbellard     }
2209585f8587Sbellard     if (bdrv_pwrite(s->hd, sn->l1_table_offset,
2210585f8587Sbellard                     l1_table, s->l1_size * sizeof(uint64_t)) !=
2211585f8587Sbellard         (s->l1_size * sizeof(uint64_t)))
2212585f8587Sbellard         goto fail;
2213585f8587Sbellard     qemu_free(l1_table);
2214585f8587Sbellard     l1_table = NULL;
2215585f8587Sbellard 
2216585f8587Sbellard     snapshots1 = qemu_malloc((s->nb_snapshots + 1) * sizeof(QCowSnapshot));
221763c75dcdSmalc     if (s->snapshots) {
2218585f8587Sbellard         memcpy(snapshots1, s->snapshots, s->nb_snapshots * sizeof(QCowSnapshot));
221954c16572Saliguori         qemu_free(s->snapshots);
222063c75dcdSmalc     }
2221585f8587Sbellard     s->snapshots = snapshots1;
2222585f8587Sbellard     s->snapshots[s->nb_snapshots++] = *sn;
2223585f8587Sbellard 
2224585f8587Sbellard     if (qcow_write_snapshots(bs) < 0)
2225585f8587Sbellard         goto fail;
2226585f8587Sbellard #ifdef DEBUG_ALLOC
2227585f8587Sbellard     check_refcounts(bs);
2228585f8587Sbellard #endif
2229585f8587Sbellard     return 0;
2230585f8587Sbellard  fail:
2231585f8587Sbellard     qemu_free(sn->name);
2232585f8587Sbellard     qemu_free(l1_table);
2233585f8587Sbellard     return -1;
2234585f8587Sbellard }
2235585f8587Sbellard 
2236585f8587Sbellard /* copy the snapshot 'snapshot_name' into the current disk image */
2237585f8587Sbellard static int qcow_snapshot_goto(BlockDriverState *bs,
2238585f8587Sbellard                               const char *snapshot_id)
2239585f8587Sbellard {
2240585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2241585f8587Sbellard     QCowSnapshot *sn;
2242585f8587Sbellard     int i, snapshot_index, l1_size2;
2243585f8587Sbellard 
2244585f8587Sbellard     snapshot_index = find_snapshot_by_id_or_name(bs, snapshot_id);
2245585f8587Sbellard     if (snapshot_index < 0)
2246585f8587Sbellard         return -ENOENT;
2247585f8587Sbellard     sn = &s->snapshots[snapshot_index];
2248585f8587Sbellard 
2249585f8587Sbellard     if (update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, -1) < 0)
2250585f8587Sbellard         goto fail;
2251585f8587Sbellard 
2252585f8587Sbellard     if (grow_l1_table(bs, sn->l1_size) < 0)
2253585f8587Sbellard         goto fail;
2254585f8587Sbellard 
2255585f8587Sbellard     s->l1_size = sn->l1_size;
2256585f8587Sbellard     l1_size2 = s->l1_size * sizeof(uint64_t);
2257585f8587Sbellard     /* copy the snapshot l1 table to the current l1 table */
2258585f8587Sbellard     if (bdrv_pread(s->hd, sn->l1_table_offset,
2259585f8587Sbellard                    s->l1_table, l1_size2) != l1_size2)
2260585f8587Sbellard         goto fail;
2261585f8587Sbellard     if (bdrv_pwrite(s->hd, s->l1_table_offset,
2262585f8587Sbellard                     s->l1_table, l1_size2) != l1_size2)
2263585f8587Sbellard         goto fail;
2264585f8587Sbellard     for(i = 0;i < s->l1_size; i++) {
2265585f8587Sbellard         be64_to_cpus(&s->l1_table[i]);
2266585f8587Sbellard     }
2267585f8587Sbellard 
2268585f8587Sbellard     if (update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, 1) < 0)
2269585f8587Sbellard         goto fail;
2270585f8587Sbellard 
2271585f8587Sbellard #ifdef DEBUG_ALLOC
2272585f8587Sbellard     check_refcounts(bs);
2273585f8587Sbellard #endif
2274585f8587Sbellard     return 0;
2275585f8587Sbellard  fail:
2276585f8587Sbellard     return -EIO;
2277585f8587Sbellard }
2278585f8587Sbellard 
2279585f8587Sbellard static int qcow_snapshot_delete(BlockDriverState *bs, const char *snapshot_id)
2280585f8587Sbellard {
2281585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2282585f8587Sbellard     QCowSnapshot *sn;
2283585f8587Sbellard     int snapshot_index, ret;
2284585f8587Sbellard 
2285585f8587Sbellard     snapshot_index = find_snapshot_by_id_or_name(bs, snapshot_id);
2286585f8587Sbellard     if (snapshot_index < 0)
2287585f8587Sbellard         return -ENOENT;
2288585f8587Sbellard     sn = &s->snapshots[snapshot_index];
2289585f8587Sbellard 
2290585f8587Sbellard     ret = update_snapshot_refcount(bs, sn->l1_table_offset, sn->l1_size, -1);
2291585f8587Sbellard     if (ret < 0)
2292585f8587Sbellard         return ret;
2293585f8587Sbellard     /* must update the copied flag on the current cluster offsets */
2294585f8587Sbellard     ret = update_snapshot_refcount(bs, s->l1_table_offset, s->l1_size, 0);
2295585f8587Sbellard     if (ret < 0)
2296585f8587Sbellard         return ret;
2297585f8587Sbellard     free_clusters(bs, sn->l1_table_offset, sn->l1_size * sizeof(uint64_t));
2298585f8587Sbellard 
2299585f8587Sbellard     qemu_free(sn->id_str);
2300585f8587Sbellard     qemu_free(sn->name);
2301585f8587Sbellard     memmove(sn, sn + 1, (s->nb_snapshots - snapshot_index - 1) * sizeof(*sn));
2302585f8587Sbellard     s->nb_snapshots--;
2303585f8587Sbellard     ret = qcow_write_snapshots(bs);
2304585f8587Sbellard     if (ret < 0) {
2305585f8587Sbellard         /* XXX: restore snapshot if error ? */
2306585f8587Sbellard         return ret;
2307585f8587Sbellard     }
2308585f8587Sbellard #ifdef DEBUG_ALLOC
2309585f8587Sbellard     check_refcounts(bs);
2310585f8587Sbellard #endif
2311585f8587Sbellard     return 0;
2312585f8587Sbellard }
2313585f8587Sbellard 
2314585f8587Sbellard static int qcow_snapshot_list(BlockDriverState *bs,
2315585f8587Sbellard                               QEMUSnapshotInfo **psn_tab)
2316585f8587Sbellard {
2317585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2318585f8587Sbellard     QEMUSnapshotInfo *sn_tab, *sn_info;
2319585f8587Sbellard     QCowSnapshot *sn;
2320585f8587Sbellard     int i;
2321585f8587Sbellard 
2322eb0b64f7Smalc     if (!s->nb_snapshots) {
2323eb0b64f7Smalc         *psn_tab = NULL;
2324eb0b64f7Smalc         return s->nb_snapshots;
2325eb0b64f7Smalc     }
2326eb0b64f7Smalc 
2327585f8587Sbellard     sn_tab = qemu_mallocz(s->nb_snapshots * sizeof(QEMUSnapshotInfo));
2328585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2329585f8587Sbellard         sn_info = sn_tab + i;
2330585f8587Sbellard         sn = s->snapshots + i;
2331585f8587Sbellard         pstrcpy(sn_info->id_str, sizeof(sn_info->id_str),
2332585f8587Sbellard                 sn->id_str);
2333585f8587Sbellard         pstrcpy(sn_info->name, sizeof(sn_info->name),
2334585f8587Sbellard                 sn->name);
2335585f8587Sbellard         sn_info->vm_state_size = sn->vm_state_size;
2336585f8587Sbellard         sn_info->date_sec = sn->date_sec;
2337585f8587Sbellard         sn_info->date_nsec = sn->date_nsec;
2338585f8587Sbellard         sn_info->vm_clock_nsec = sn->vm_clock_nsec;
2339585f8587Sbellard     }
2340585f8587Sbellard     *psn_tab = sn_tab;
2341585f8587Sbellard     return s->nb_snapshots;
2342585f8587Sbellard }
2343585f8587Sbellard 
2344585f8587Sbellard /*********************************************************/
2345585f8587Sbellard /* refcount handling */
2346585f8587Sbellard 
2347585f8587Sbellard static int refcount_init(BlockDriverState *bs)
2348585f8587Sbellard {
2349585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2350585f8587Sbellard     int ret, refcount_table_size2, i;
2351585f8587Sbellard 
2352585f8587Sbellard     s->refcount_block_cache = qemu_malloc(s->cluster_size);
2353585f8587Sbellard     refcount_table_size2 = s->refcount_table_size * sizeof(uint64_t);
2354585f8587Sbellard     s->refcount_table = qemu_malloc(refcount_table_size2);
2355585f8587Sbellard     if (s->refcount_table_size > 0) {
2356585f8587Sbellard         ret = bdrv_pread(s->hd, s->refcount_table_offset,
2357585f8587Sbellard                          s->refcount_table, refcount_table_size2);
2358585f8587Sbellard         if (ret != refcount_table_size2)
2359585f8587Sbellard             goto fail;
2360585f8587Sbellard         for(i = 0; i < s->refcount_table_size; i++)
2361585f8587Sbellard             be64_to_cpus(&s->refcount_table[i]);
2362585f8587Sbellard     }
2363585f8587Sbellard     return 0;
2364585f8587Sbellard  fail:
2365585f8587Sbellard     return -ENOMEM;
2366585f8587Sbellard }
2367585f8587Sbellard 
2368585f8587Sbellard static void refcount_close(BlockDriverState *bs)
2369585f8587Sbellard {
2370585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2371585f8587Sbellard     qemu_free(s->refcount_block_cache);
2372585f8587Sbellard     qemu_free(s->refcount_table);
2373585f8587Sbellard }
2374585f8587Sbellard 
2375585f8587Sbellard 
2376585f8587Sbellard static int load_refcount_block(BlockDriverState *bs,
2377585f8587Sbellard                                int64_t refcount_block_offset)
2378585f8587Sbellard {
2379585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2380585f8587Sbellard     int ret;
2381585f8587Sbellard     ret = bdrv_pread(s->hd, refcount_block_offset, s->refcount_block_cache,
2382585f8587Sbellard                      s->cluster_size);
2383585f8587Sbellard     if (ret != s->cluster_size)
2384585f8587Sbellard         return -EIO;
2385585f8587Sbellard     s->refcount_block_cache_offset = refcount_block_offset;
2386585f8587Sbellard     return 0;
2387585f8587Sbellard }
2388585f8587Sbellard 
2389585f8587Sbellard static int get_refcount(BlockDriverState *bs, int64_t cluster_index)
2390585f8587Sbellard {
2391585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2392585f8587Sbellard     int refcount_table_index, block_index;
2393585f8587Sbellard     int64_t refcount_block_offset;
2394585f8587Sbellard 
2395585f8587Sbellard     refcount_table_index = cluster_index >> (s->cluster_bits - REFCOUNT_SHIFT);
2396585f8587Sbellard     if (refcount_table_index >= s->refcount_table_size)
2397585f8587Sbellard         return 0;
2398585f8587Sbellard     refcount_block_offset = s->refcount_table[refcount_table_index];
2399585f8587Sbellard     if (!refcount_block_offset)
2400585f8587Sbellard         return 0;
2401585f8587Sbellard     if (refcount_block_offset != s->refcount_block_cache_offset) {
2402585f8587Sbellard         /* better than nothing: return allocated if read error */
2403585f8587Sbellard         if (load_refcount_block(bs, refcount_block_offset) < 0)
2404585f8587Sbellard             return 1;
2405585f8587Sbellard     }
2406585f8587Sbellard     block_index = cluster_index &
2407585f8587Sbellard         ((1 << (s->cluster_bits - REFCOUNT_SHIFT)) - 1);
2408585f8587Sbellard     return be16_to_cpu(s->refcount_block_cache[block_index]);
2409585f8587Sbellard }
2410585f8587Sbellard 
2411585f8587Sbellard /* return < 0 if error */
2412585f8587Sbellard static int64_t alloc_clusters_noref(BlockDriverState *bs, int64_t size)
2413585f8587Sbellard {
2414585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2415585f8587Sbellard     int i, nb_clusters;
2416585f8587Sbellard 
24176db6c638Saliguori     nb_clusters = size_to_clusters(s, size);
24186db6c638Saliguori retry:
24196db6c638Saliguori     for(i = 0; i < nb_clusters; i++) {
24206db6c638Saliguori         int64_t i = s->free_cluster_index++;
24216db6c638Saliguori         if (get_refcount(bs, i) != 0)
24226db6c638Saliguori             goto retry;
2423585f8587Sbellard     }
2424585f8587Sbellard #ifdef DEBUG_ALLOC2
2425585f8587Sbellard     printf("alloc_clusters: size=%lld -> %lld\n",
2426585f8587Sbellard             size,
2427585f8587Sbellard             (s->free_cluster_index - nb_clusters) << s->cluster_bits);
2428585f8587Sbellard #endif
2429585f8587Sbellard     return (s->free_cluster_index - nb_clusters) << s->cluster_bits;
2430585f8587Sbellard }
2431585f8587Sbellard 
2432585f8587Sbellard static int64_t alloc_clusters(BlockDriverState *bs, int64_t size)
2433585f8587Sbellard {
2434585f8587Sbellard     int64_t offset;
2435585f8587Sbellard 
2436585f8587Sbellard     offset = alloc_clusters_noref(bs, size);
2437585f8587Sbellard     update_refcount(bs, offset, size, 1);
2438585f8587Sbellard     return offset;
2439585f8587Sbellard }
2440585f8587Sbellard 
2441585f8587Sbellard /* only used to allocate compressed sectors. We try to allocate
2442585f8587Sbellard    contiguous sectors. size must be <= cluster_size */
2443585f8587Sbellard static int64_t alloc_bytes(BlockDriverState *bs, int size)
2444585f8587Sbellard {
2445585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2446585f8587Sbellard     int64_t offset, cluster_offset;
2447585f8587Sbellard     int free_in_cluster;
2448585f8587Sbellard 
2449585f8587Sbellard     assert(size > 0 && size <= s->cluster_size);
2450585f8587Sbellard     if (s->free_byte_offset == 0) {
2451585f8587Sbellard         s->free_byte_offset = alloc_clusters(bs, s->cluster_size);
2452585f8587Sbellard     }
2453585f8587Sbellard  redo:
2454585f8587Sbellard     free_in_cluster = s->cluster_size -
2455585f8587Sbellard         (s->free_byte_offset & (s->cluster_size - 1));
2456585f8587Sbellard     if (size <= free_in_cluster) {
2457585f8587Sbellard         /* enough space in current cluster */
2458585f8587Sbellard         offset = s->free_byte_offset;
2459585f8587Sbellard         s->free_byte_offset += size;
2460585f8587Sbellard         free_in_cluster -= size;
2461585f8587Sbellard         if (free_in_cluster == 0)
2462585f8587Sbellard             s->free_byte_offset = 0;
2463585f8587Sbellard         if ((offset & (s->cluster_size - 1)) != 0)
2464585f8587Sbellard             update_cluster_refcount(bs, offset >> s->cluster_bits, 1);
2465585f8587Sbellard     } else {
2466585f8587Sbellard         offset = alloc_clusters(bs, s->cluster_size);
2467585f8587Sbellard         cluster_offset = s->free_byte_offset & ~(s->cluster_size - 1);
2468585f8587Sbellard         if ((cluster_offset + s->cluster_size) == offset) {
2469585f8587Sbellard             /* we are lucky: contiguous data */
2470585f8587Sbellard             offset = s->free_byte_offset;
2471585f8587Sbellard             update_cluster_refcount(bs, offset >> s->cluster_bits, 1);
2472585f8587Sbellard             s->free_byte_offset += size;
2473585f8587Sbellard         } else {
2474585f8587Sbellard             s->free_byte_offset = offset;
2475585f8587Sbellard             goto redo;
2476585f8587Sbellard         }
2477585f8587Sbellard     }
2478585f8587Sbellard     return offset;
2479585f8587Sbellard }
2480585f8587Sbellard 
2481585f8587Sbellard static void free_clusters(BlockDriverState *bs,
2482585f8587Sbellard                           int64_t offset, int64_t size)
2483585f8587Sbellard {
2484585f8587Sbellard     update_refcount(bs, offset, size, -1);
2485585f8587Sbellard }
2486585f8587Sbellard 
2487585f8587Sbellard static int grow_refcount_table(BlockDriverState *bs, int min_size)
2488585f8587Sbellard {
2489585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2490585f8587Sbellard     int new_table_size, new_table_size2, refcount_table_clusters, i, ret;
2491585f8587Sbellard     uint64_t *new_table;
2492585f8587Sbellard     int64_t table_offset;
2493643e5399Saliguori     uint8_t data[12];
249423be50f1Sths     int old_table_size;
249523be50f1Sths     int64_t old_table_offset;
2496585f8587Sbellard 
2497585f8587Sbellard     if (min_size <= s->refcount_table_size)
2498585f8587Sbellard         return 0;
2499585f8587Sbellard     /* compute new table size */
2500585f8587Sbellard     refcount_table_clusters = s->refcount_table_size >> (s->cluster_bits - 3);
2501585f8587Sbellard     for(;;) {
2502585f8587Sbellard         if (refcount_table_clusters == 0) {
2503585f8587Sbellard             refcount_table_clusters = 1;
2504585f8587Sbellard         } else {
2505585f8587Sbellard             refcount_table_clusters = (refcount_table_clusters * 3 + 1) / 2;
2506585f8587Sbellard         }
2507585f8587Sbellard         new_table_size = refcount_table_clusters << (s->cluster_bits - 3);
2508585f8587Sbellard         if (min_size <= new_table_size)
2509585f8587Sbellard             break;
2510585f8587Sbellard     }
251115e6690aSbellard #ifdef DEBUG_ALLOC2
251215e6690aSbellard     printf("grow_refcount_table from %d to %d\n",
251315e6690aSbellard            s->refcount_table_size,
251415e6690aSbellard            new_table_size);
251515e6690aSbellard #endif
2516585f8587Sbellard     new_table_size2 = new_table_size * sizeof(uint64_t);
2517585f8587Sbellard     new_table = qemu_mallocz(new_table_size2);
2518585f8587Sbellard     memcpy(new_table, s->refcount_table,
2519585f8587Sbellard            s->refcount_table_size * sizeof(uint64_t));
2520585f8587Sbellard     for(i = 0; i < s->refcount_table_size; i++)
2521585f8587Sbellard         cpu_to_be64s(&new_table[i]);
2522585f8587Sbellard     /* Note: we cannot update the refcount now to avoid recursion */
2523585f8587Sbellard     table_offset = alloc_clusters_noref(bs, new_table_size2);
2524585f8587Sbellard     ret = bdrv_pwrite(s->hd, table_offset, new_table, new_table_size2);
2525585f8587Sbellard     if (ret != new_table_size2)
2526585f8587Sbellard         goto fail;
2527585f8587Sbellard     for(i = 0; i < s->refcount_table_size; i++)
2528585f8587Sbellard         be64_to_cpus(&new_table[i]);
2529585f8587Sbellard 
2530643e5399Saliguori     cpu_to_be64w((uint64_t*)data, table_offset);
2531643e5399Saliguori     cpu_to_be32w((uint32_t*)(data + 8), refcount_table_clusters);
2532585f8587Sbellard     if (bdrv_pwrite(s->hd, offsetof(QCowHeader, refcount_table_offset),
2533643e5399Saliguori                     data, sizeof(data)) != sizeof(data))
2534585f8587Sbellard         goto fail;
2535585f8587Sbellard     qemu_free(s->refcount_table);
253623be50f1Sths     old_table_offset = s->refcount_table_offset;
253723be50f1Sths     old_table_size = s->refcount_table_size;
2538585f8587Sbellard     s->refcount_table = new_table;
2539585f8587Sbellard     s->refcount_table_size = new_table_size;
2540a4080eceSths     s->refcount_table_offset = table_offset;
2541585f8587Sbellard 
2542585f8587Sbellard     update_refcount(bs, table_offset, new_table_size2, 1);
254323be50f1Sths     free_clusters(bs, old_table_offset, old_table_size * sizeof(uint64_t));
2544585f8587Sbellard     return 0;
2545585f8587Sbellard  fail:
2546585f8587Sbellard     free_clusters(bs, table_offset, new_table_size2);
2547585f8587Sbellard     qemu_free(new_table);
2548585f8587Sbellard     return -EIO;
2549585f8587Sbellard }
2550585f8587Sbellard 
2551585f8587Sbellard /* addend must be 1 or -1 */
2552585f8587Sbellard /* XXX: cache several refcount block clusters ? */
2553585f8587Sbellard static int update_cluster_refcount(BlockDriverState *bs,
2554585f8587Sbellard                                    int64_t cluster_index,
2555585f8587Sbellard                                    int addend)
2556585f8587Sbellard {
2557585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2558585f8587Sbellard     int64_t offset, refcount_block_offset;
2559585f8587Sbellard     int ret, refcount_table_index, block_index, refcount;
2560585f8587Sbellard     uint64_t data64;
2561585f8587Sbellard 
2562585f8587Sbellard     refcount_table_index = cluster_index >> (s->cluster_bits - REFCOUNT_SHIFT);
2563585f8587Sbellard     if (refcount_table_index >= s->refcount_table_size) {
2564585f8587Sbellard         if (addend < 0)
2565585f8587Sbellard             return -EINVAL;
2566585f8587Sbellard         ret = grow_refcount_table(bs, refcount_table_index + 1);
2567585f8587Sbellard         if (ret < 0)
2568585f8587Sbellard             return ret;
2569585f8587Sbellard     }
2570585f8587Sbellard     refcount_block_offset = s->refcount_table[refcount_table_index];
2571585f8587Sbellard     if (!refcount_block_offset) {
2572585f8587Sbellard         if (addend < 0)
2573585f8587Sbellard             return -EINVAL;
2574585f8587Sbellard         /* create a new refcount block */
2575585f8587Sbellard         /* Note: we cannot update the refcount now to avoid recursion */
2576585f8587Sbellard         offset = alloc_clusters_noref(bs, s->cluster_size);
2577585f8587Sbellard         memset(s->refcount_block_cache, 0, s->cluster_size);
2578585f8587Sbellard         ret = bdrv_pwrite(s->hd, offset, s->refcount_block_cache, s->cluster_size);
2579585f8587Sbellard         if (ret != s->cluster_size)
2580585f8587Sbellard             return -EINVAL;
2581585f8587Sbellard         s->refcount_table[refcount_table_index] = offset;
2582585f8587Sbellard         data64 = cpu_to_be64(offset);
2583585f8587Sbellard         ret = bdrv_pwrite(s->hd, s->refcount_table_offset +
2584585f8587Sbellard                           refcount_table_index * sizeof(uint64_t),
2585585f8587Sbellard                           &data64, sizeof(data64));
2586585f8587Sbellard         if (ret != sizeof(data64))
2587585f8587Sbellard             return -EINVAL;
2588585f8587Sbellard 
2589585f8587Sbellard         refcount_block_offset = offset;
2590585f8587Sbellard         s->refcount_block_cache_offset = offset;
2591585f8587Sbellard         update_refcount(bs, offset, s->cluster_size, 1);
2592585f8587Sbellard     } else {
2593585f8587Sbellard         if (refcount_block_offset != s->refcount_block_cache_offset) {
2594585f8587Sbellard             if (load_refcount_block(bs, refcount_block_offset) < 0)
2595585f8587Sbellard                 return -EIO;
2596585f8587Sbellard         }
2597585f8587Sbellard     }
2598585f8587Sbellard     /* we can update the count and save it */
2599585f8587Sbellard     block_index = cluster_index &
2600585f8587Sbellard         ((1 << (s->cluster_bits - REFCOUNT_SHIFT)) - 1);
2601585f8587Sbellard     refcount = be16_to_cpu(s->refcount_block_cache[block_index]);
2602585f8587Sbellard     refcount += addend;
2603585f8587Sbellard     if (refcount < 0 || refcount > 0xffff)
2604585f8587Sbellard         return -EINVAL;
2605585f8587Sbellard     if (refcount == 0 && cluster_index < s->free_cluster_index) {
2606585f8587Sbellard         s->free_cluster_index = cluster_index;
2607585f8587Sbellard     }
2608585f8587Sbellard     s->refcount_block_cache[block_index] = cpu_to_be16(refcount);
2609585f8587Sbellard     if (bdrv_pwrite(s->hd,
2610585f8587Sbellard                     refcount_block_offset + (block_index << REFCOUNT_SHIFT),
2611585f8587Sbellard                     &s->refcount_block_cache[block_index], 2) != 2)
2612585f8587Sbellard         return -EIO;
2613585f8587Sbellard     return refcount;
2614585f8587Sbellard }
2615585f8587Sbellard 
2616585f8587Sbellard static void update_refcount(BlockDriverState *bs,
2617585f8587Sbellard                             int64_t offset, int64_t length,
2618585f8587Sbellard                             int addend)
2619585f8587Sbellard {
2620585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2621585f8587Sbellard     int64_t start, last, cluster_offset;
2622585f8587Sbellard 
2623585f8587Sbellard #ifdef DEBUG_ALLOC2
2624585f8587Sbellard     printf("update_refcount: offset=%lld size=%lld addend=%d\n",
2625585f8587Sbellard            offset, length, addend);
2626585f8587Sbellard #endif
2627585f8587Sbellard     if (length <= 0)
2628585f8587Sbellard         return;
2629585f8587Sbellard     start = offset & ~(s->cluster_size - 1);
2630585f8587Sbellard     last = (offset + length - 1) & ~(s->cluster_size - 1);
2631585f8587Sbellard     for(cluster_offset = start; cluster_offset <= last;
2632585f8587Sbellard         cluster_offset += s->cluster_size) {
2633585f8587Sbellard         update_cluster_refcount(bs, cluster_offset >> s->cluster_bits, addend);
2634585f8587Sbellard     }
2635585f8587Sbellard }
2636585f8587Sbellard 
2637e97fc193Saliguori /*
2638e97fc193Saliguori  * Increases the refcount for a range of clusters in a given refcount table.
2639e97fc193Saliguori  * This is used to construct a temporary refcount table out of L1 and L2 tables
2640e97fc193Saliguori  * which can be compared the the refcount table saved in the image.
2641e97fc193Saliguori  *
2642e97fc193Saliguori  * Returns the number of errors in the image that were found
2643e97fc193Saliguori  */
2644e97fc193Saliguori static int inc_refcounts(BlockDriverState *bs,
2645585f8587Sbellard                           uint16_t *refcount_table,
2646585f8587Sbellard                           int refcount_table_size,
2647585f8587Sbellard                           int64_t offset, int64_t size)
2648585f8587Sbellard {
2649585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2650585f8587Sbellard     int64_t start, last, cluster_offset;
2651585f8587Sbellard     int k;
2652e97fc193Saliguori     int errors = 0;
2653585f8587Sbellard 
2654585f8587Sbellard     if (size <= 0)
2655e97fc193Saliguori         return 0;
2656585f8587Sbellard 
2657585f8587Sbellard     start = offset & ~(s->cluster_size - 1);
2658585f8587Sbellard     last = (offset + size - 1) & ~(s->cluster_size - 1);
2659585f8587Sbellard     for(cluster_offset = start; cluster_offset <= last;
2660585f8587Sbellard         cluster_offset += s->cluster_size) {
2661585f8587Sbellard         k = cluster_offset >> s->cluster_bits;
2662585f8587Sbellard         if (k < 0 || k >= refcount_table_size) {
26638ddbc04fSaliguori             fprintf(stderr, "ERROR: invalid cluster offset=0x%" PRIx64 "\n",
26648ddbc04fSaliguori                 cluster_offset);
2665e97fc193Saliguori             errors++;
2666585f8587Sbellard         } else {
2667585f8587Sbellard             if (++refcount_table[k] == 0) {
26688ddbc04fSaliguori                 fprintf(stderr, "ERROR: overflow cluster offset=0x%" PRIx64
26698ddbc04fSaliguori                     "\n", cluster_offset);
2670e97fc193Saliguori                 errors++;
2671585f8587Sbellard             }
2672585f8587Sbellard         }
2673585f8587Sbellard     }
2674e97fc193Saliguori 
2675e97fc193Saliguori     return errors;
2676585f8587Sbellard }
2677585f8587Sbellard 
2678ae2f14afSaliguori /*
2679ae2f14afSaliguori  * Increases the refcount in the given refcount table for the all clusters
2680ae2f14afSaliguori  * referenced in the L2 table. While doing so, performs some checks on L2
2681ae2f14afSaliguori  * entries.
2682ae2f14afSaliguori  *
2683ae2f14afSaliguori  * Returns the number of errors found by the checks or -errno if an internal
2684ae2f14afSaliguori  * error occurred.
2685ae2f14afSaliguori  */
2686ae2f14afSaliguori static int check_refcounts_l2(BlockDriverState *bs,
2687ae2f14afSaliguori     uint16_t *refcount_table, int refcount_table_size, int64_t l2_offset,
2688585f8587Sbellard     int check_copied)
2689585f8587Sbellard {
2690585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2691ae2f14afSaliguori     uint64_t *l2_table, offset;
2692ae2f14afSaliguori     int i, l2_size, nb_csectors, refcount;
2693e97fc193Saliguori     int errors = 0;
2694585f8587Sbellard 
2695ae2f14afSaliguori     /* Read L2 table from disk */
2696585f8587Sbellard     l2_size = s->l2_size * sizeof(uint64_t);
2697585f8587Sbellard     l2_table = qemu_malloc(l2_size);
2698ae2f14afSaliguori 
2699585f8587Sbellard     if (bdrv_pread(s->hd, l2_offset, l2_table, l2_size) != l2_size)
2700585f8587Sbellard         goto fail;
2701ae2f14afSaliguori 
2702ae2f14afSaliguori     /* Do the actual checks */
2703ae2f14afSaliguori     for(i = 0; i < s->l2_size; i++) {
2704ae2f14afSaliguori         offset = be64_to_cpu(l2_table[i]);
2705585f8587Sbellard         if (offset != 0) {
2706585f8587Sbellard             if (offset & QCOW_OFLAG_COMPRESSED) {
2707ae2f14afSaliguori                 /* Compressed clusters don't have QCOW_OFLAG_COPIED */
2708585f8587Sbellard                 if (offset & QCOW_OFLAG_COPIED) {
27098ddbc04fSaliguori                     fprintf(stderr, "ERROR: cluster %" PRId64 ": "
27108ddbc04fSaliguori                         "copied flag must never be set for compressed "
27118ddbc04fSaliguori                         "clusters\n", offset >> s->cluster_bits);
2712585f8587Sbellard                     offset &= ~QCOW_OFLAG_COPIED;
2713e97fc193Saliguori                     errors++;
2714585f8587Sbellard                 }
2715ae2f14afSaliguori 
2716ae2f14afSaliguori                 /* Mark cluster as used */
2717585f8587Sbellard                 nb_csectors = ((offset >> s->csize_shift) &
2718585f8587Sbellard                                s->csize_mask) + 1;
2719585f8587Sbellard                 offset &= s->cluster_offset_mask;
2720e97fc193Saliguori                 errors += inc_refcounts(bs, refcount_table,
2721585f8587Sbellard                               refcount_table_size,
2722585f8587Sbellard                               offset & ~511, nb_csectors * 512);
2723585f8587Sbellard             } else {
2724ae2f14afSaliguori                 /* QCOW_OFLAG_COPIED must be set iff refcount == 1 */
2725585f8587Sbellard                 if (check_copied) {
2726ae2f14afSaliguori                     uint64_t entry = offset;
2727ae2f14afSaliguori                     offset &= ~QCOW_OFLAG_COPIED;
2728ae2f14afSaliguori                     refcount = get_refcount(bs, offset >> s->cluster_bits);
2729ae2f14afSaliguori                     if ((refcount == 1) != ((entry & QCOW_OFLAG_COPIED) != 0)) {
27308ddbc04fSaliguori                         fprintf(stderr, "ERROR OFLAG_COPIED: offset=%"
2731ae2f14afSaliguori                             PRIx64 " refcount=%d\n", entry, refcount);
2732e97fc193Saliguori                         errors++;
2733585f8587Sbellard                     }
2734585f8587Sbellard                 }
2735ae2f14afSaliguori 
2736ae2f14afSaliguori                 /* Mark cluster as used */
2737585f8587Sbellard                 offset &= ~QCOW_OFLAG_COPIED;
2738e97fc193Saliguori                 errors += inc_refcounts(bs, refcount_table,
2739585f8587Sbellard                               refcount_table_size,
2740585f8587Sbellard                               offset, s->cluster_size);
274154c42368Saliguori 
274254c42368Saliguori                 /* Correct offsets are cluster aligned */
274354c42368Saliguori                 if (offset & (s->cluster_size - 1)) {
274454c42368Saliguori                     fprintf(stderr, "ERROR offset=%" PRIx64 ": Cluster is not "
274554c42368Saliguori                         "properly aligned; L2 entry corrupted.\n", offset);
274654c42368Saliguori                     errors++;
274754c42368Saliguori                 }
2748585f8587Sbellard             }
2749585f8587Sbellard         }
2750585f8587Sbellard     }
2751ae2f14afSaliguori 
2752ae2f14afSaliguori     qemu_free(l2_table);
2753ae2f14afSaliguori     return errors;
2754ae2f14afSaliguori 
2755ae2f14afSaliguori fail:
2756ae2f14afSaliguori     fprintf(stderr, "ERROR: I/O error in check_refcounts_l1\n");
2757ae2f14afSaliguori     qemu_free(l2_table);
2758ae2f14afSaliguori     return -EIO;
2759ae2f14afSaliguori }
2760ae2f14afSaliguori 
2761ae2f14afSaliguori /*
2762ae2f14afSaliguori  * Increases the refcount for the L1 table, its L2 tables and all referenced
2763ae2f14afSaliguori  * clusters in the given refcount table. While doing so, performs some checks
2764ae2f14afSaliguori  * on L1 and L2 entries.
2765ae2f14afSaliguori  *
2766ae2f14afSaliguori  * Returns the number of errors found by the checks or -errno if an internal
2767ae2f14afSaliguori  * error occurred.
2768ae2f14afSaliguori  */
2769ae2f14afSaliguori static int check_refcounts_l1(BlockDriverState *bs,
2770ae2f14afSaliguori                               uint16_t *refcount_table,
2771ae2f14afSaliguori                               int refcount_table_size,
2772ae2f14afSaliguori                               int64_t l1_table_offset, int l1_size,
2773ae2f14afSaliguori                               int check_copied)
2774ae2f14afSaliguori {
2775ae2f14afSaliguori     BDRVQcowState *s = bs->opaque;
2776ae2f14afSaliguori     uint64_t *l1_table, l2_offset, l1_size2;
2777ae2f14afSaliguori     int i, refcount, ret;
2778ae2f14afSaliguori     int errors = 0;
2779ae2f14afSaliguori 
2780ae2f14afSaliguori     l1_size2 = l1_size * sizeof(uint64_t);
2781ae2f14afSaliguori 
2782ae2f14afSaliguori     /* Mark L1 table as used */
2783ae2f14afSaliguori     errors += inc_refcounts(bs, refcount_table, refcount_table_size,
2784ae2f14afSaliguori                   l1_table_offset, l1_size2);
2785ae2f14afSaliguori 
2786ae2f14afSaliguori     /* Read L1 table entries from disk */
2787ae2f14afSaliguori     l1_table = qemu_malloc(l1_size2);
2788ae2f14afSaliguori     if (bdrv_pread(s->hd, l1_table_offset,
2789ae2f14afSaliguori                    l1_table, l1_size2) != l1_size2)
2790ae2f14afSaliguori         goto fail;
2791ae2f14afSaliguori     for(i = 0;i < l1_size; i++)
2792ae2f14afSaliguori         be64_to_cpus(&l1_table[i]);
2793ae2f14afSaliguori 
2794ae2f14afSaliguori     /* Do the actual checks */
2795ae2f14afSaliguori     for(i = 0; i < l1_size; i++) {
2796ae2f14afSaliguori         l2_offset = l1_table[i];
2797ae2f14afSaliguori         if (l2_offset) {
2798ae2f14afSaliguori             /* QCOW_OFLAG_COPIED must be set iff refcount == 1 */
2799ae2f14afSaliguori             if (check_copied) {
2800ae2f14afSaliguori                 refcount = get_refcount(bs, (l2_offset & ~QCOW_OFLAG_COPIED)
2801ae2f14afSaliguori                     >> s->cluster_bits);
2802ae2f14afSaliguori                 if ((refcount == 1) != ((l2_offset & QCOW_OFLAG_COPIED) != 0)) {
2803ae2f14afSaliguori                     fprintf(stderr, "ERROR OFLAG_COPIED: l2_offset=%" PRIx64
2804ae2f14afSaliguori                         " refcount=%d\n", l2_offset, refcount);
2805ae2f14afSaliguori                     errors++;
2806ae2f14afSaliguori                 }
2807ae2f14afSaliguori             }
2808ae2f14afSaliguori 
2809ae2f14afSaliguori             /* Mark L2 table as used */
2810ae2f14afSaliguori             l2_offset &= ~QCOW_OFLAG_COPIED;
2811e97fc193Saliguori             errors += inc_refcounts(bs, refcount_table,
2812585f8587Sbellard                           refcount_table_size,
2813585f8587Sbellard                           l2_offset,
2814585f8587Sbellard                           s->cluster_size);
2815ae2f14afSaliguori 
281654c42368Saliguori             /* L2 tables are cluster aligned */
281754c42368Saliguori             if (l2_offset & (s->cluster_size - 1)) {
281854c42368Saliguori                 fprintf(stderr, "ERROR l2_offset=%" PRIx64 ": Table is not "
281954c42368Saliguori                     "cluster aligned; L1 entry corrupted\n", l2_offset);
282054c42368Saliguori                 errors++;
282154c42368Saliguori             }
282254c42368Saliguori 
2823ae2f14afSaliguori             /* Process and check L2 entries */
2824ae2f14afSaliguori             ret = check_refcounts_l2(bs, refcount_table, refcount_table_size,
2825ae2f14afSaliguori                 l2_offset, check_copied);
2826ae2f14afSaliguori             if (ret < 0) {
2827ae2f14afSaliguori                 goto fail;
2828ae2f14afSaliguori             }
2829ae2f14afSaliguori             errors += ret;
2830585f8587Sbellard         }
2831585f8587Sbellard     }
2832585f8587Sbellard     qemu_free(l1_table);
2833e97fc193Saliguori     return errors;
2834ae2f14afSaliguori 
2835585f8587Sbellard fail:
28368ddbc04fSaliguori     fprintf(stderr, "ERROR: I/O error in check_refcounts_l1\n");
2837585f8587Sbellard     qemu_free(l1_table);
2838585f8587Sbellard     return -EIO;
2839585f8587Sbellard }
2840585f8587Sbellard 
2841e97fc193Saliguori /*
2842e97fc193Saliguori  * Checks an image for refcount consistency.
2843e97fc193Saliguori  *
2844e97fc193Saliguori  * Returns 0 if no errors are found, the number of errors in case the image is
2845e97fc193Saliguori  * detected as corrupted, and -errno when an internal error occured.
2846e97fc193Saliguori  */
2847e97fc193Saliguori static int check_refcounts(BlockDriverState *bs)
2848585f8587Sbellard {
2849585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2850585f8587Sbellard     int64_t size;
2851585f8587Sbellard     int nb_clusters, refcount1, refcount2, i;
2852585f8587Sbellard     QCowSnapshot *sn;
2853585f8587Sbellard     uint16_t *refcount_table;
2854e97fc193Saliguori     int ret, errors = 0;
2855585f8587Sbellard 
2856585f8587Sbellard     size = bdrv_getlength(s->hd);
28576db6c638Saliguori     nb_clusters = size_to_clusters(s, size);
2858585f8587Sbellard     refcount_table = qemu_mallocz(nb_clusters * sizeof(uint16_t));
2859585f8587Sbellard 
2860585f8587Sbellard     /* header */
2861e97fc193Saliguori     errors += inc_refcounts(bs, refcount_table, nb_clusters,
2862585f8587Sbellard                   0, s->cluster_size);
2863585f8587Sbellard 
2864ae2f14afSaliguori     /* current L1 table */
2865e97fc193Saliguori     ret = check_refcounts_l1(bs, refcount_table, nb_clusters,
2866585f8587Sbellard                        s->l1_table_offset, s->l1_size, 1);
2867e97fc193Saliguori     if (ret < 0) {
2868e97fc193Saliguori         return ret;
2869e97fc193Saliguori     }
2870e97fc193Saliguori     errors += ret;
2871585f8587Sbellard 
2872585f8587Sbellard     /* snapshots */
2873585f8587Sbellard     for(i = 0; i < s->nb_snapshots; i++) {
2874585f8587Sbellard         sn = s->snapshots + i;
2875585f8587Sbellard         check_refcounts_l1(bs, refcount_table, nb_clusters,
2876585f8587Sbellard                            sn->l1_table_offset, sn->l1_size, 0);
2877585f8587Sbellard     }
2878e97fc193Saliguori     errors += inc_refcounts(bs, refcount_table, nb_clusters,
2879585f8587Sbellard                   s->snapshots_offset, s->snapshots_size);
2880585f8587Sbellard 
2881585f8587Sbellard     /* refcount data */
2882e97fc193Saliguori     errors += inc_refcounts(bs, refcount_table, nb_clusters,
2883585f8587Sbellard                   s->refcount_table_offset,
2884585f8587Sbellard                   s->refcount_table_size * sizeof(uint64_t));
2885585f8587Sbellard     for(i = 0; i < s->refcount_table_size; i++) {
2886585f8587Sbellard         int64_t offset;
2887585f8587Sbellard         offset = s->refcount_table[i];
2888585f8587Sbellard         if (offset != 0) {
2889e97fc193Saliguori             errors += inc_refcounts(bs, refcount_table, nb_clusters,
2890585f8587Sbellard                           offset, s->cluster_size);
2891585f8587Sbellard         }
2892585f8587Sbellard     }
2893585f8587Sbellard 
2894585f8587Sbellard     /* compare ref counts */
2895585f8587Sbellard     for(i = 0; i < nb_clusters; i++) {
2896585f8587Sbellard         refcount1 = get_refcount(bs, i);
2897585f8587Sbellard         refcount2 = refcount_table[i];
2898e97fc193Saliguori         if (refcount1 != refcount2) {
28998ddbc04fSaliguori             fprintf(stderr, "ERROR cluster %d refcount=%d reference=%d\n",
2900585f8587Sbellard                    i, refcount1, refcount2);
2901e97fc193Saliguori             errors++;
2902e97fc193Saliguori         }
2903585f8587Sbellard     }
2904585f8587Sbellard 
2905585f8587Sbellard     qemu_free(refcount_table);
2906e97fc193Saliguori 
2907e97fc193Saliguori     return errors;
2908e97fc193Saliguori }
2909e97fc193Saliguori 
2910e97fc193Saliguori static int qcow_check(BlockDriverState *bs)
2911e97fc193Saliguori {
2912e97fc193Saliguori     return check_refcounts(bs);
2913585f8587Sbellard }
2914585f8587Sbellard 
2915585f8587Sbellard #if 0
2916585f8587Sbellard static void dump_refcounts(BlockDriverState *bs)
2917585f8587Sbellard {
2918585f8587Sbellard     BDRVQcowState *s = bs->opaque;
2919585f8587Sbellard     int64_t nb_clusters, k, k1, size;
2920585f8587Sbellard     int refcount;
2921585f8587Sbellard 
2922585f8587Sbellard     size = bdrv_getlength(s->hd);
29236db6c638Saliguori     nb_clusters = size_to_clusters(s, size);
2924585f8587Sbellard     for(k = 0; k < nb_clusters;) {
2925585f8587Sbellard         k1 = k;
2926585f8587Sbellard         refcount = get_refcount(bs, k);
2927585f8587Sbellard         k++;
2928585f8587Sbellard         while (k < nb_clusters && get_refcount(bs, k) == refcount)
2929585f8587Sbellard             k++;
2930585f8587Sbellard         printf("%lld: refcount=%d nb=%lld\n", k, refcount, k - k1);
2931585f8587Sbellard     }
2932585f8587Sbellard }
2933585f8587Sbellard #endif
2934585f8587Sbellard 
2935178e08a5Saliguori static int qcow_put_buffer(BlockDriverState *bs, const uint8_t *buf,
2936178e08a5Saliguori                            int64_t pos, int size)
2937178e08a5Saliguori {
2938178e08a5Saliguori     int growable = bs->growable;
2939178e08a5Saliguori 
2940178e08a5Saliguori     bs->growable = 1;
2941178e08a5Saliguori     bdrv_pwrite(bs, pos, buf, size);
2942178e08a5Saliguori     bs->growable = growable;
2943178e08a5Saliguori 
2944178e08a5Saliguori     return size;
2945178e08a5Saliguori }
2946178e08a5Saliguori 
2947178e08a5Saliguori static int qcow_get_buffer(BlockDriverState *bs, uint8_t *buf,
2948178e08a5Saliguori                            int64_t pos, int size)
2949178e08a5Saliguori {
2950178e08a5Saliguori     int growable = bs->growable;
2951178e08a5Saliguori     int ret;
2952178e08a5Saliguori 
2953178e08a5Saliguori     bs->growable = 1;
2954178e08a5Saliguori     ret = bdrv_pread(bs, pos, buf, size);
2955178e08a5Saliguori     bs->growable = growable;
2956178e08a5Saliguori 
2957178e08a5Saliguori     return ret;
2958178e08a5Saliguori }
2959178e08a5Saliguori 
29600e7e1989SKevin Wolf static QEMUOptionParameter qcow_create_options[] = {
29610e7e1989SKevin Wolf     { BLOCK_OPT_SIZE,           OPT_SIZE },
29620e7e1989SKevin Wolf     { BLOCK_OPT_BACKING_FILE,   OPT_STRING },
29630e7e1989SKevin Wolf     { BLOCK_OPT_BACKING_FMT,    OPT_STRING },
29640e7e1989SKevin Wolf     { BLOCK_OPT_ENCRYPT,        OPT_FLAG },
2965*73c632edSKevin Wolf     { BLOCK_OPT_CLUSTER_SIZE,   OPT_SIZE },
29660e7e1989SKevin Wolf     { NULL }
29670e7e1989SKevin Wolf };
29680e7e1989SKevin Wolf 
29695efa9d5aSAnthony Liguori static BlockDriver bdrv_qcow2 = {
2970e60f469cSaurel32     .format_name	= "qcow2",
2971e60f469cSaurel32     .instance_size	= sizeof(BDRVQcowState),
2972e60f469cSaurel32     .bdrv_probe		= qcow_probe,
2973e60f469cSaurel32     .bdrv_open		= qcow_open,
2974e60f469cSaurel32     .bdrv_close		= qcow_close,
2975e60f469cSaurel32     .bdrv_create	= qcow_create,
2976e60f469cSaurel32     .bdrv_flush		= qcow_flush,
2977e60f469cSaurel32     .bdrv_is_allocated	= qcow_is_allocated,
2978e60f469cSaurel32     .bdrv_set_key	= qcow_set_key,
2979e60f469cSaurel32     .bdrv_make_empty	= qcow_make_empty,
2980585f8587Sbellard 
2981f141eafeSaliguori     .bdrv_aio_readv	= qcow_aio_readv,
2982f141eafeSaliguori     .bdrv_aio_writev	= qcow_aio_writev,
2983585f8587Sbellard     .bdrv_aio_cancel	= qcow_aio_cancel,
2984ce1a14dcSpbrook     .aiocb_size		= sizeof(QCowAIOCB),
2985585f8587Sbellard     .bdrv_write_compressed = qcow_write_compressed,
2986585f8587Sbellard 
2987585f8587Sbellard     .bdrv_snapshot_create = qcow_snapshot_create,
2988585f8587Sbellard     .bdrv_snapshot_goto	= qcow_snapshot_goto,
2989585f8587Sbellard     .bdrv_snapshot_delete = qcow_snapshot_delete,
2990585f8587Sbellard     .bdrv_snapshot_list	= qcow_snapshot_list,
2991585f8587Sbellard     .bdrv_get_info	= qcow_get_info,
2992f965509cSaliguori 
2993178e08a5Saliguori     .bdrv_put_buffer    = qcow_put_buffer,
2994178e08a5Saliguori     .bdrv_get_buffer    = qcow_get_buffer,
2995178e08a5Saliguori 
29960e7e1989SKevin Wolf     .create_options = qcow_create_options,
2997e97fc193Saliguori     .bdrv_check = qcow_check,
2998585f8587Sbellard };
29995efa9d5aSAnthony Liguori 
30005efa9d5aSAnthony Liguori static void bdrv_qcow2_init(void)
30015efa9d5aSAnthony Liguori {
30025efa9d5aSAnthony Liguori     bdrv_register(&bdrv_qcow2);
30035efa9d5aSAnthony Liguori }
30045efa9d5aSAnthony Liguori 
30055efa9d5aSAnthony Liguori block_init(bdrv_qcow2_init);
3006