xref: /qemu/block/qed.c (revision eabba580)
175411d23SStefan Hajnoczi /*
275411d23SStefan Hajnoczi  * QEMU Enhanced Disk Format
375411d23SStefan Hajnoczi  *
475411d23SStefan Hajnoczi  * Copyright IBM, Corp. 2010
575411d23SStefan Hajnoczi  *
675411d23SStefan Hajnoczi  * Authors:
775411d23SStefan Hajnoczi  *  Stefan Hajnoczi   <stefanha@linux.vnet.ibm.com>
875411d23SStefan Hajnoczi  *  Anthony Liguori   <aliguori@us.ibm.com>
975411d23SStefan Hajnoczi  *
1075411d23SStefan Hajnoczi  * This work is licensed under the terms of the GNU LGPL, version 2 or later.
1175411d23SStefan Hajnoczi  * See the COPYING.LIB file in the top-level directory.
1275411d23SStefan Hajnoczi  *
1375411d23SStefan Hajnoczi  */
1475411d23SStefan Hajnoczi 
15*eabba580SStefan Hajnoczi #include "trace.h"
1675411d23SStefan Hajnoczi #include "qed.h"
1775411d23SStefan Hajnoczi 
18*eabba580SStefan Hajnoczi static void qed_aio_cancel(BlockDriverAIOCB *blockacb)
19*eabba580SStefan Hajnoczi {
20*eabba580SStefan Hajnoczi     QEDAIOCB *acb = (QEDAIOCB *)blockacb;
21*eabba580SStefan Hajnoczi     bool finished = false;
22*eabba580SStefan Hajnoczi 
23*eabba580SStefan Hajnoczi     /* Wait for the request to finish */
24*eabba580SStefan Hajnoczi     acb->finished = &finished;
25*eabba580SStefan Hajnoczi     while (!finished) {
26*eabba580SStefan Hajnoczi         qemu_aio_wait();
27*eabba580SStefan Hajnoczi     }
28*eabba580SStefan Hajnoczi }
29*eabba580SStefan Hajnoczi 
30*eabba580SStefan Hajnoczi static AIOPool qed_aio_pool = {
31*eabba580SStefan Hajnoczi     .aiocb_size         = sizeof(QEDAIOCB),
32*eabba580SStefan Hajnoczi     .cancel             = qed_aio_cancel,
33*eabba580SStefan Hajnoczi };
34*eabba580SStefan Hajnoczi 
3575411d23SStefan Hajnoczi static int bdrv_qed_probe(const uint8_t *buf, int buf_size,
3675411d23SStefan Hajnoczi                           const char *filename)
3775411d23SStefan Hajnoczi {
3875411d23SStefan Hajnoczi     const QEDHeader *header = (const QEDHeader *)buf;
3975411d23SStefan Hajnoczi 
4075411d23SStefan Hajnoczi     if (buf_size < sizeof(*header)) {
4175411d23SStefan Hajnoczi         return 0;
4275411d23SStefan Hajnoczi     }
4375411d23SStefan Hajnoczi     if (le32_to_cpu(header->magic) != QED_MAGIC) {
4475411d23SStefan Hajnoczi         return 0;
4575411d23SStefan Hajnoczi     }
4675411d23SStefan Hajnoczi     return 100;
4775411d23SStefan Hajnoczi }
4875411d23SStefan Hajnoczi 
4975411d23SStefan Hajnoczi /**
5075411d23SStefan Hajnoczi  * Check whether an image format is raw
5175411d23SStefan Hajnoczi  *
5275411d23SStefan Hajnoczi  * @fmt:    Backing file format, may be NULL
5375411d23SStefan Hajnoczi  */
5475411d23SStefan Hajnoczi static bool qed_fmt_is_raw(const char *fmt)
5575411d23SStefan Hajnoczi {
5675411d23SStefan Hajnoczi     return fmt && strcmp(fmt, "raw") == 0;
5775411d23SStefan Hajnoczi }
5875411d23SStefan Hajnoczi 
5975411d23SStefan Hajnoczi static void qed_header_le_to_cpu(const QEDHeader *le, QEDHeader *cpu)
6075411d23SStefan Hajnoczi {
6175411d23SStefan Hajnoczi     cpu->magic = le32_to_cpu(le->magic);
6275411d23SStefan Hajnoczi     cpu->cluster_size = le32_to_cpu(le->cluster_size);
6375411d23SStefan Hajnoczi     cpu->table_size = le32_to_cpu(le->table_size);
6475411d23SStefan Hajnoczi     cpu->header_size = le32_to_cpu(le->header_size);
6575411d23SStefan Hajnoczi     cpu->features = le64_to_cpu(le->features);
6675411d23SStefan Hajnoczi     cpu->compat_features = le64_to_cpu(le->compat_features);
6775411d23SStefan Hajnoczi     cpu->autoclear_features = le64_to_cpu(le->autoclear_features);
6875411d23SStefan Hajnoczi     cpu->l1_table_offset = le64_to_cpu(le->l1_table_offset);
6975411d23SStefan Hajnoczi     cpu->image_size = le64_to_cpu(le->image_size);
7075411d23SStefan Hajnoczi     cpu->backing_filename_offset = le32_to_cpu(le->backing_filename_offset);
7175411d23SStefan Hajnoczi     cpu->backing_filename_size = le32_to_cpu(le->backing_filename_size);
7275411d23SStefan Hajnoczi }
7375411d23SStefan Hajnoczi 
7475411d23SStefan Hajnoczi static void qed_header_cpu_to_le(const QEDHeader *cpu, QEDHeader *le)
7575411d23SStefan Hajnoczi {
7675411d23SStefan Hajnoczi     le->magic = cpu_to_le32(cpu->magic);
7775411d23SStefan Hajnoczi     le->cluster_size = cpu_to_le32(cpu->cluster_size);
7875411d23SStefan Hajnoczi     le->table_size = cpu_to_le32(cpu->table_size);
7975411d23SStefan Hajnoczi     le->header_size = cpu_to_le32(cpu->header_size);
8075411d23SStefan Hajnoczi     le->features = cpu_to_le64(cpu->features);
8175411d23SStefan Hajnoczi     le->compat_features = cpu_to_le64(cpu->compat_features);
8275411d23SStefan Hajnoczi     le->autoclear_features = cpu_to_le64(cpu->autoclear_features);
8375411d23SStefan Hajnoczi     le->l1_table_offset = cpu_to_le64(cpu->l1_table_offset);
8475411d23SStefan Hajnoczi     le->image_size = cpu_to_le64(cpu->image_size);
8575411d23SStefan Hajnoczi     le->backing_filename_offset = cpu_to_le32(cpu->backing_filename_offset);
8675411d23SStefan Hajnoczi     le->backing_filename_size = cpu_to_le32(cpu->backing_filename_size);
8775411d23SStefan Hajnoczi }
8875411d23SStefan Hajnoczi 
8975411d23SStefan Hajnoczi static int qed_write_header_sync(BDRVQEDState *s)
9075411d23SStefan Hajnoczi {
9175411d23SStefan Hajnoczi     QEDHeader le;
9275411d23SStefan Hajnoczi     int ret;
9375411d23SStefan Hajnoczi 
9475411d23SStefan Hajnoczi     qed_header_cpu_to_le(&s->header, &le);
9575411d23SStefan Hajnoczi     ret = bdrv_pwrite(s->bs->file, 0, &le, sizeof(le));
9675411d23SStefan Hajnoczi     if (ret != sizeof(le)) {
9775411d23SStefan Hajnoczi         return ret;
9875411d23SStefan Hajnoczi     }
9975411d23SStefan Hajnoczi     return 0;
10075411d23SStefan Hajnoczi }
10175411d23SStefan Hajnoczi 
10275411d23SStefan Hajnoczi static uint64_t qed_max_image_size(uint32_t cluster_size, uint32_t table_size)
10375411d23SStefan Hajnoczi {
10475411d23SStefan Hajnoczi     uint64_t table_entries;
10575411d23SStefan Hajnoczi     uint64_t l2_size;
10675411d23SStefan Hajnoczi 
10775411d23SStefan Hajnoczi     table_entries = (table_size * cluster_size) / sizeof(uint64_t);
10875411d23SStefan Hajnoczi     l2_size = table_entries * cluster_size;
10975411d23SStefan Hajnoczi 
11075411d23SStefan Hajnoczi     return l2_size * table_entries;
11175411d23SStefan Hajnoczi }
11275411d23SStefan Hajnoczi 
11375411d23SStefan Hajnoczi static bool qed_is_cluster_size_valid(uint32_t cluster_size)
11475411d23SStefan Hajnoczi {
11575411d23SStefan Hajnoczi     if (cluster_size < QED_MIN_CLUSTER_SIZE ||
11675411d23SStefan Hajnoczi         cluster_size > QED_MAX_CLUSTER_SIZE) {
11775411d23SStefan Hajnoczi         return false;
11875411d23SStefan Hajnoczi     }
11975411d23SStefan Hajnoczi     if (cluster_size & (cluster_size - 1)) {
12075411d23SStefan Hajnoczi         return false; /* not power of 2 */
12175411d23SStefan Hajnoczi     }
12275411d23SStefan Hajnoczi     return true;
12375411d23SStefan Hajnoczi }
12475411d23SStefan Hajnoczi 
12575411d23SStefan Hajnoczi static bool qed_is_table_size_valid(uint32_t table_size)
12675411d23SStefan Hajnoczi {
12775411d23SStefan Hajnoczi     if (table_size < QED_MIN_TABLE_SIZE ||
12875411d23SStefan Hajnoczi         table_size > QED_MAX_TABLE_SIZE) {
12975411d23SStefan Hajnoczi         return false;
13075411d23SStefan Hajnoczi     }
13175411d23SStefan Hajnoczi     if (table_size & (table_size - 1)) {
13275411d23SStefan Hajnoczi         return false; /* not power of 2 */
13375411d23SStefan Hajnoczi     }
13475411d23SStefan Hajnoczi     return true;
13575411d23SStefan Hajnoczi }
13675411d23SStefan Hajnoczi 
13775411d23SStefan Hajnoczi static bool qed_is_image_size_valid(uint64_t image_size, uint32_t cluster_size,
13875411d23SStefan Hajnoczi                                     uint32_t table_size)
13975411d23SStefan Hajnoczi {
14075411d23SStefan Hajnoczi     if (image_size % BDRV_SECTOR_SIZE != 0) {
14175411d23SStefan Hajnoczi         return false; /* not multiple of sector size */
14275411d23SStefan Hajnoczi     }
14375411d23SStefan Hajnoczi     if (image_size > qed_max_image_size(cluster_size, table_size)) {
14475411d23SStefan Hajnoczi         return false; /* image is too large */
14575411d23SStefan Hajnoczi     }
14675411d23SStefan Hajnoczi     return true;
14775411d23SStefan Hajnoczi }
14875411d23SStefan Hajnoczi 
14975411d23SStefan Hajnoczi /**
15075411d23SStefan Hajnoczi  * Read a string of known length from the image file
15175411d23SStefan Hajnoczi  *
15275411d23SStefan Hajnoczi  * @file:       Image file
15375411d23SStefan Hajnoczi  * @offset:     File offset to start of string, in bytes
15475411d23SStefan Hajnoczi  * @n:          String length in bytes
15575411d23SStefan Hajnoczi  * @buf:        Destination buffer
15675411d23SStefan Hajnoczi  * @buflen:     Destination buffer length in bytes
15775411d23SStefan Hajnoczi  * @ret:        0 on success, -errno on failure
15875411d23SStefan Hajnoczi  *
15975411d23SStefan Hajnoczi  * The string is NUL-terminated.
16075411d23SStefan Hajnoczi  */
16175411d23SStefan Hajnoczi static int qed_read_string(BlockDriverState *file, uint64_t offset, size_t n,
16275411d23SStefan Hajnoczi                            char *buf, size_t buflen)
16375411d23SStefan Hajnoczi {
16475411d23SStefan Hajnoczi     int ret;
16575411d23SStefan Hajnoczi     if (n >= buflen) {
16675411d23SStefan Hajnoczi         return -EINVAL;
16775411d23SStefan Hajnoczi     }
16875411d23SStefan Hajnoczi     ret = bdrv_pread(file, offset, buf, n);
16975411d23SStefan Hajnoczi     if (ret < 0) {
17075411d23SStefan Hajnoczi         return ret;
17175411d23SStefan Hajnoczi     }
17275411d23SStefan Hajnoczi     buf[n] = '\0';
17375411d23SStefan Hajnoczi     return 0;
17475411d23SStefan Hajnoczi }
17575411d23SStefan Hajnoczi 
176*eabba580SStefan Hajnoczi /**
177*eabba580SStefan Hajnoczi  * Allocate new clusters
178*eabba580SStefan Hajnoczi  *
179*eabba580SStefan Hajnoczi  * @s:          QED state
180*eabba580SStefan Hajnoczi  * @n:          Number of contiguous clusters to allocate
181*eabba580SStefan Hajnoczi  * @ret:        Offset of first allocated cluster
182*eabba580SStefan Hajnoczi  *
183*eabba580SStefan Hajnoczi  * This function only produces the offset where the new clusters should be
184*eabba580SStefan Hajnoczi  * written.  It updates BDRVQEDState but does not make any changes to the image
185*eabba580SStefan Hajnoczi  * file.
186*eabba580SStefan Hajnoczi  */
187*eabba580SStefan Hajnoczi static uint64_t qed_alloc_clusters(BDRVQEDState *s, unsigned int n)
188*eabba580SStefan Hajnoczi {
189*eabba580SStefan Hajnoczi     uint64_t offset = s->file_size;
190*eabba580SStefan Hajnoczi     s->file_size += n * s->header.cluster_size;
191*eabba580SStefan Hajnoczi     return offset;
192*eabba580SStefan Hajnoczi }
193*eabba580SStefan Hajnoczi 
194298800caSStefan Hajnoczi QEDTable *qed_alloc_table(BDRVQEDState *s)
195298800caSStefan Hajnoczi {
196298800caSStefan Hajnoczi     /* Honor O_DIRECT memory alignment requirements */
197298800caSStefan Hajnoczi     return qemu_blockalign(s->bs,
198298800caSStefan Hajnoczi                            s->header.cluster_size * s->header.table_size);
199298800caSStefan Hajnoczi }
200298800caSStefan Hajnoczi 
201*eabba580SStefan Hajnoczi /**
202*eabba580SStefan Hajnoczi  * Allocate a new zeroed L2 table
203*eabba580SStefan Hajnoczi  */
204*eabba580SStefan Hajnoczi static CachedL2Table *qed_new_l2_table(BDRVQEDState *s)
205*eabba580SStefan Hajnoczi {
206*eabba580SStefan Hajnoczi     CachedL2Table *l2_table = qed_alloc_l2_cache_entry(&s->l2_cache);
207*eabba580SStefan Hajnoczi 
208*eabba580SStefan Hajnoczi     l2_table->table = qed_alloc_table(s);
209*eabba580SStefan Hajnoczi     l2_table->offset = qed_alloc_clusters(s, s->header.table_size);
210*eabba580SStefan Hajnoczi 
211*eabba580SStefan Hajnoczi     memset(l2_table->table->offsets, 0,
212*eabba580SStefan Hajnoczi            s->header.cluster_size * s->header.table_size);
213*eabba580SStefan Hajnoczi     return l2_table;
214*eabba580SStefan Hajnoczi }
215*eabba580SStefan Hajnoczi 
216*eabba580SStefan Hajnoczi static void qed_aio_next_io(void *opaque, int ret);
217*eabba580SStefan Hajnoczi 
21875411d23SStefan Hajnoczi static int bdrv_qed_open(BlockDriverState *bs, int flags)
21975411d23SStefan Hajnoczi {
22075411d23SStefan Hajnoczi     BDRVQEDState *s = bs->opaque;
22175411d23SStefan Hajnoczi     QEDHeader le_header;
22275411d23SStefan Hajnoczi     int64_t file_size;
22375411d23SStefan Hajnoczi     int ret;
22475411d23SStefan Hajnoczi 
22575411d23SStefan Hajnoczi     s->bs = bs;
226*eabba580SStefan Hajnoczi     QSIMPLEQ_INIT(&s->allocating_write_reqs);
22775411d23SStefan Hajnoczi 
22875411d23SStefan Hajnoczi     ret = bdrv_pread(bs->file, 0, &le_header, sizeof(le_header));
22975411d23SStefan Hajnoczi     if (ret < 0) {
23075411d23SStefan Hajnoczi         return ret;
23175411d23SStefan Hajnoczi     }
23275411d23SStefan Hajnoczi     ret = 0; /* ret should always be 0 or -errno */
23375411d23SStefan Hajnoczi     qed_header_le_to_cpu(&le_header, &s->header);
23475411d23SStefan Hajnoczi 
23575411d23SStefan Hajnoczi     if (s->header.magic != QED_MAGIC) {
23675411d23SStefan Hajnoczi         return -EINVAL;
23775411d23SStefan Hajnoczi     }
23875411d23SStefan Hajnoczi     if (s->header.features & ~QED_FEATURE_MASK) {
23975411d23SStefan Hajnoczi         return -ENOTSUP; /* image uses unsupported feature bits */
24075411d23SStefan Hajnoczi     }
24175411d23SStefan Hajnoczi     if (!qed_is_cluster_size_valid(s->header.cluster_size)) {
24275411d23SStefan Hajnoczi         return -EINVAL;
24375411d23SStefan Hajnoczi     }
24475411d23SStefan Hajnoczi 
24575411d23SStefan Hajnoczi     /* Round down file size to the last cluster */
24675411d23SStefan Hajnoczi     file_size = bdrv_getlength(bs->file);
24775411d23SStefan Hajnoczi     if (file_size < 0) {
24875411d23SStefan Hajnoczi         return file_size;
24975411d23SStefan Hajnoczi     }
25075411d23SStefan Hajnoczi     s->file_size = qed_start_of_cluster(s, file_size);
25175411d23SStefan Hajnoczi 
25275411d23SStefan Hajnoczi     if (!qed_is_table_size_valid(s->header.table_size)) {
25375411d23SStefan Hajnoczi         return -EINVAL;
25475411d23SStefan Hajnoczi     }
25575411d23SStefan Hajnoczi     if (!qed_is_image_size_valid(s->header.image_size,
25675411d23SStefan Hajnoczi                                  s->header.cluster_size,
25775411d23SStefan Hajnoczi                                  s->header.table_size)) {
25875411d23SStefan Hajnoczi         return -EINVAL;
25975411d23SStefan Hajnoczi     }
26075411d23SStefan Hajnoczi     if (!qed_check_table_offset(s, s->header.l1_table_offset)) {
26175411d23SStefan Hajnoczi         return -EINVAL;
26275411d23SStefan Hajnoczi     }
26375411d23SStefan Hajnoczi 
26475411d23SStefan Hajnoczi     s->table_nelems = (s->header.cluster_size * s->header.table_size) /
26575411d23SStefan Hajnoczi                       sizeof(uint64_t);
26675411d23SStefan Hajnoczi     s->l2_shift = ffs(s->header.cluster_size) - 1;
26775411d23SStefan Hajnoczi     s->l2_mask = s->table_nelems - 1;
26875411d23SStefan Hajnoczi     s->l1_shift = s->l2_shift + ffs(s->table_nelems) - 1;
26975411d23SStefan Hajnoczi 
27075411d23SStefan Hajnoczi     if ((s->header.features & QED_F_BACKING_FILE)) {
27175411d23SStefan Hajnoczi         if ((uint64_t)s->header.backing_filename_offset +
27275411d23SStefan Hajnoczi             s->header.backing_filename_size >
27375411d23SStefan Hajnoczi             s->header.cluster_size * s->header.header_size) {
27475411d23SStefan Hajnoczi             return -EINVAL;
27575411d23SStefan Hajnoczi         }
27675411d23SStefan Hajnoczi 
27775411d23SStefan Hajnoczi         ret = qed_read_string(bs->file, s->header.backing_filename_offset,
27875411d23SStefan Hajnoczi                               s->header.backing_filename_size, bs->backing_file,
27975411d23SStefan Hajnoczi                               sizeof(bs->backing_file));
28075411d23SStefan Hajnoczi         if (ret < 0) {
28175411d23SStefan Hajnoczi             return ret;
28275411d23SStefan Hajnoczi         }
28375411d23SStefan Hajnoczi 
28475411d23SStefan Hajnoczi         if (s->header.features & QED_F_BACKING_FORMAT_NO_PROBE) {
28575411d23SStefan Hajnoczi             pstrcpy(bs->backing_format, sizeof(bs->backing_format), "raw");
28675411d23SStefan Hajnoczi         }
28775411d23SStefan Hajnoczi     }
28875411d23SStefan Hajnoczi 
28975411d23SStefan Hajnoczi     /* Reset unknown autoclear feature bits.  This is a backwards
29075411d23SStefan Hajnoczi      * compatibility mechanism that allows images to be opened by older
29175411d23SStefan Hajnoczi      * programs, which "knock out" unknown feature bits.  When an image is
29275411d23SStefan Hajnoczi      * opened by a newer program again it can detect that the autoclear
29375411d23SStefan Hajnoczi      * feature is no longer valid.
29475411d23SStefan Hajnoczi      */
29575411d23SStefan Hajnoczi     if ((s->header.autoclear_features & ~QED_AUTOCLEAR_FEATURE_MASK) != 0 &&
29675411d23SStefan Hajnoczi         !bdrv_is_read_only(bs->file)) {
29775411d23SStefan Hajnoczi         s->header.autoclear_features &= QED_AUTOCLEAR_FEATURE_MASK;
29875411d23SStefan Hajnoczi 
29975411d23SStefan Hajnoczi         ret = qed_write_header_sync(s);
30075411d23SStefan Hajnoczi         if (ret) {
30175411d23SStefan Hajnoczi             return ret;
30275411d23SStefan Hajnoczi         }
30375411d23SStefan Hajnoczi 
30475411d23SStefan Hajnoczi         /* From here on only known autoclear feature bits are valid */
30575411d23SStefan Hajnoczi         bdrv_flush(bs->file);
30675411d23SStefan Hajnoczi     }
30775411d23SStefan Hajnoczi 
308298800caSStefan Hajnoczi     s->l1_table = qed_alloc_table(s);
309298800caSStefan Hajnoczi     qed_init_l2_cache(&s->l2_cache);
310298800caSStefan Hajnoczi 
311298800caSStefan Hajnoczi     ret = qed_read_l1_table_sync(s);
312298800caSStefan Hajnoczi     if (ret) {
313298800caSStefan Hajnoczi         qed_free_l2_cache(&s->l2_cache);
314298800caSStefan Hajnoczi         qemu_vfree(s->l1_table);
315298800caSStefan Hajnoczi     }
31675411d23SStefan Hajnoczi     return ret;
31775411d23SStefan Hajnoczi }
31875411d23SStefan Hajnoczi 
31975411d23SStefan Hajnoczi static void bdrv_qed_close(BlockDriverState *bs)
32075411d23SStefan Hajnoczi {
321298800caSStefan Hajnoczi     BDRVQEDState *s = bs->opaque;
322298800caSStefan Hajnoczi 
323298800caSStefan Hajnoczi     qed_free_l2_cache(&s->l2_cache);
324298800caSStefan Hajnoczi     qemu_vfree(s->l1_table);
32575411d23SStefan Hajnoczi }
32675411d23SStefan Hajnoczi 
32775411d23SStefan Hajnoczi static int bdrv_qed_flush(BlockDriverState *bs)
32875411d23SStefan Hajnoczi {
32975411d23SStefan Hajnoczi     return bdrv_flush(bs->file);
33075411d23SStefan Hajnoczi }
33175411d23SStefan Hajnoczi 
33275411d23SStefan Hajnoczi static int qed_create(const char *filename, uint32_t cluster_size,
33375411d23SStefan Hajnoczi                       uint64_t image_size, uint32_t table_size,
33475411d23SStefan Hajnoczi                       const char *backing_file, const char *backing_fmt)
33575411d23SStefan Hajnoczi {
33675411d23SStefan Hajnoczi     QEDHeader header = {
33775411d23SStefan Hajnoczi         .magic = QED_MAGIC,
33875411d23SStefan Hajnoczi         .cluster_size = cluster_size,
33975411d23SStefan Hajnoczi         .table_size = table_size,
34075411d23SStefan Hajnoczi         .header_size = 1,
34175411d23SStefan Hajnoczi         .features = 0,
34275411d23SStefan Hajnoczi         .compat_features = 0,
34375411d23SStefan Hajnoczi         .l1_table_offset = cluster_size,
34475411d23SStefan Hajnoczi         .image_size = image_size,
34575411d23SStefan Hajnoczi     };
34675411d23SStefan Hajnoczi     QEDHeader le_header;
34775411d23SStefan Hajnoczi     uint8_t *l1_table = NULL;
34875411d23SStefan Hajnoczi     size_t l1_size = header.cluster_size * header.table_size;
34975411d23SStefan Hajnoczi     int ret = 0;
35075411d23SStefan Hajnoczi     BlockDriverState *bs = NULL;
35175411d23SStefan Hajnoczi 
35275411d23SStefan Hajnoczi     ret = bdrv_create_file(filename, NULL);
35375411d23SStefan Hajnoczi     if (ret < 0) {
35475411d23SStefan Hajnoczi         return ret;
35575411d23SStefan Hajnoczi     }
35675411d23SStefan Hajnoczi 
35775411d23SStefan Hajnoczi     ret = bdrv_file_open(&bs, filename, BDRV_O_RDWR | BDRV_O_CACHE_WB);
35875411d23SStefan Hajnoczi     if (ret < 0) {
35975411d23SStefan Hajnoczi         return ret;
36075411d23SStefan Hajnoczi     }
36175411d23SStefan Hajnoczi 
36275411d23SStefan Hajnoczi     if (backing_file) {
36375411d23SStefan Hajnoczi         header.features |= QED_F_BACKING_FILE;
36475411d23SStefan Hajnoczi         header.backing_filename_offset = sizeof(le_header);
36575411d23SStefan Hajnoczi         header.backing_filename_size = strlen(backing_file);
36675411d23SStefan Hajnoczi 
36775411d23SStefan Hajnoczi         if (qed_fmt_is_raw(backing_fmt)) {
36875411d23SStefan Hajnoczi             header.features |= QED_F_BACKING_FORMAT_NO_PROBE;
36975411d23SStefan Hajnoczi         }
37075411d23SStefan Hajnoczi     }
37175411d23SStefan Hajnoczi 
37275411d23SStefan Hajnoczi     qed_header_cpu_to_le(&header, &le_header);
37375411d23SStefan Hajnoczi     ret = bdrv_pwrite(bs, 0, &le_header, sizeof(le_header));
37475411d23SStefan Hajnoczi     if (ret < 0) {
37575411d23SStefan Hajnoczi         goto out;
37675411d23SStefan Hajnoczi     }
37775411d23SStefan Hajnoczi     ret = bdrv_pwrite(bs, sizeof(le_header), backing_file,
37875411d23SStefan Hajnoczi                       header.backing_filename_size);
37975411d23SStefan Hajnoczi     if (ret < 0) {
38075411d23SStefan Hajnoczi         goto out;
38175411d23SStefan Hajnoczi     }
38275411d23SStefan Hajnoczi 
38375411d23SStefan Hajnoczi     l1_table = qemu_mallocz(l1_size);
38475411d23SStefan Hajnoczi     ret = bdrv_pwrite(bs, header.l1_table_offset, l1_table, l1_size);
38575411d23SStefan Hajnoczi     if (ret < 0) {
38675411d23SStefan Hajnoczi         goto out;
38775411d23SStefan Hajnoczi     }
38875411d23SStefan Hajnoczi 
38975411d23SStefan Hajnoczi     ret = 0; /* success */
39075411d23SStefan Hajnoczi out:
39175411d23SStefan Hajnoczi     qemu_free(l1_table);
39275411d23SStefan Hajnoczi     bdrv_delete(bs);
39375411d23SStefan Hajnoczi     return ret;
39475411d23SStefan Hajnoczi }
39575411d23SStefan Hajnoczi 
39675411d23SStefan Hajnoczi static int bdrv_qed_create(const char *filename, QEMUOptionParameter *options)
39775411d23SStefan Hajnoczi {
39875411d23SStefan Hajnoczi     uint64_t image_size = 0;
39975411d23SStefan Hajnoczi     uint32_t cluster_size = QED_DEFAULT_CLUSTER_SIZE;
40075411d23SStefan Hajnoczi     uint32_t table_size = QED_DEFAULT_TABLE_SIZE;
40175411d23SStefan Hajnoczi     const char *backing_file = NULL;
40275411d23SStefan Hajnoczi     const char *backing_fmt = NULL;
40375411d23SStefan Hajnoczi 
40475411d23SStefan Hajnoczi     while (options && options->name) {
40575411d23SStefan Hajnoczi         if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
40675411d23SStefan Hajnoczi             image_size = options->value.n;
40775411d23SStefan Hajnoczi         } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) {
40875411d23SStefan Hajnoczi             backing_file = options->value.s;
40975411d23SStefan Hajnoczi         } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FMT)) {
41075411d23SStefan Hajnoczi             backing_fmt = options->value.s;
41175411d23SStefan Hajnoczi         } else if (!strcmp(options->name, BLOCK_OPT_CLUSTER_SIZE)) {
41275411d23SStefan Hajnoczi             if (options->value.n) {
41375411d23SStefan Hajnoczi                 cluster_size = options->value.n;
41475411d23SStefan Hajnoczi             }
41575411d23SStefan Hajnoczi         } else if (!strcmp(options->name, BLOCK_OPT_TABLE_SIZE)) {
41675411d23SStefan Hajnoczi             if (options->value.n) {
41775411d23SStefan Hajnoczi                 table_size = options->value.n;
41875411d23SStefan Hajnoczi             }
41975411d23SStefan Hajnoczi         }
42075411d23SStefan Hajnoczi         options++;
42175411d23SStefan Hajnoczi     }
42275411d23SStefan Hajnoczi 
42375411d23SStefan Hajnoczi     if (!qed_is_cluster_size_valid(cluster_size)) {
42475411d23SStefan Hajnoczi         fprintf(stderr, "QED cluster size must be within range [%u, %u] and power of 2\n",
42575411d23SStefan Hajnoczi                 QED_MIN_CLUSTER_SIZE, QED_MAX_CLUSTER_SIZE);
42675411d23SStefan Hajnoczi         return -EINVAL;
42775411d23SStefan Hajnoczi     }
42875411d23SStefan Hajnoczi     if (!qed_is_table_size_valid(table_size)) {
42975411d23SStefan Hajnoczi         fprintf(stderr, "QED table size must be within range [%u, %u] and power of 2\n",
43075411d23SStefan Hajnoczi                 QED_MIN_TABLE_SIZE, QED_MAX_TABLE_SIZE);
43175411d23SStefan Hajnoczi         return -EINVAL;
43275411d23SStefan Hajnoczi     }
43375411d23SStefan Hajnoczi     if (!qed_is_image_size_valid(image_size, cluster_size, table_size)) {
43475411d23SStefan Hajnoczi         fprintf(stderr, "QED image size must be a non-zero multiple of "
43575411d23SStefan Hajnoczi                         "cluster size and less than %" PRIu64 " bytes\n",
43675411d23SStefan Hajnoczi                 qed_max_image_size(cluster_size, table_size));
43775411d23SStefan Hajnoczi         return -EINVAL;
43875411d23SStefan Hajnoczi     }
43975411d23SStefan Hajnoczi 
44075411d23SStefan Hajnoczi     return qed_create(filename, cluster_size, image_size, table_size,
44175411d23SStefan Hajnoczi                       backing_file, backing_fmt);
44275411d23SStefan Hajnoczi }
44375411d23SStefan Hajnoczi 
444298800caSStefan Hajnoczi typedef struct {
445298800caSStefan Hajnoczi     int is_allocated;
446298800caSStefan Hajnoczi     int *pnum;
447298800caSStefan Hajnoczi } QEDIsAllocatedCB;
448298800caSStefan Hajnoczi 
449298800caSStefan Hajnoczi static void qed_is_allocated_cb(void *opaque, int ret, uint64_t offset, size_t len)
450298800caSStefan Hajnoczi {
451298800caSStefan Hajnoczi     QEDIsAllocatedCB *cb = opaque;
452298800caSStefan Hajnoczi     *cb->pnum = len / BDRV_SECTOR_SIZE;
453298800caSStefan Hajnoczi     cb->is_allocated = ret == QED_CLUSTER_FOUND;
454298800caSStefan Hajnoczi }
455298800caSStefan Hajnoczi 
45675411d23SStefan Hajnoczi static int bdrv_qed_is_allocated(BlockDriverState *bs, int64_t sector_num,
45775411d23SStefan Hajnoczi                                   int nb_sectors, int *pnum)
45875411d23SStefan Hajnoczi {
459298800caSStefan Hajnoczi     BDRVQEDState *s = bs->opaque;
460298800caSStefan Hajnoczi     uint64_t pos = (uint64_t)sector_num * BDRV_SECTOR_SIZE;
461298800caSStefan Hajnoczi     size_t len = (size_t)nb_sectors * BDRV_SECTOR_SIZE;
462298800caSStefan Hajnoczi     QEDIsAllocatedCB cb = {
463298800caSStefan Hajnoczi         .is_allocated = -1,
464298800caSStefan Hajnoczi         .pnum = pnum,
465298800caSStefan Hajnoczi     };
466298800caSStefan Hajnoczi     QEDRequest request = { .l2_table = NULL };
467298800caSStefan Hajnoczi 
468298800caSStefan Hajnoczi     async_context_push();
469298800caSStefan Hajnoczi 
470298800caSStefan Hajnoczi     qed_find_cluster(s, &request, pos, len, qed_is_allocated_cb, &cb);
471298800caSStefan Hajnoczi 
472298800caSStefan Hajnoczi     while (cb.is_allocated == -1) {
473298800caSStefan Hajnoczi         qemu_aio_wait();
474298800caSStefan Hajnoczi     }
475298800caSStefan Hajnoczi 
476298800caSStefan Hajnoczi     async_context_pop();
477298800caSStefan Hajnoczi 
478298800caSStefan Hajnoczi     qed_unref_l2_cache_entry(request.l2_table);
479298800caSStefan Hajnoczi 
480298800caSStefan Hajnoczi     return cb.is_allocated;
48175411d23SStefan Hajnoczi }
48275411d23SStefan Hajnoczi 
48375411d23SStefan Hajnoczi static int bdrv_qed_make_empty(BlockDriverState *bs)
48475411d23SStefan Hajnoczi {
48575411d23SStefan Hajnoczi     return -ENOTSUP;
48675411d23SStefan Hajnoczi }
48775411d23SStefan Hajnoczi 
488*eabba580SStefan Hajnoczi static BDRVQEDState *acb_to_s(QEDAIOCB *acb)
489*eabba580SStefan Hajnoczi {
490*eabba580SStefan Hajnoczi     return acb->common.bs->opaque;
491*eabba580SStefan Hajnoczi }
492*eabba580SStefan Hajnoczi 
493*eabba580SStefan Hajnoczi /**
494*eabba580SStefan Hajnoczi  * Read from the backing file or zero-fill if no backing file
495*eabba580SStefan Hajnoczi  *
496*eabba580SStefan Hajnoczi  * @s:          QED state
497*eabba580SStefan Hajnoczi  * @pos:        Byte position in device
498*eabba580SStefan Hajnoczi  * @qiov:       Destination I/O vector
499*eabba580SStefan Hajnoczi  * @cb:         Completion function
500*eabba580SStefan Hajnoczi  * @opaque:     User data for completion function
501*eabba580SStefan Hajnoczi  *
502*eabba580SStefan Hajnoczi  * This function reads qiov->size bytes starting at pos from the backing file.
503*eabba580SStefan Hajnoczi  * If there is no backing file then zeroes are read.
504*eabba580SStefan Hajnoczi  */
505*eabba580SStefan Hajnoczi static void qed_read_backing_file(BDRVQEDState *s, uint64_t pos,
506*eabba580SStefan Hajnoczi                                   QEMUIOVector *qiov,
507*eabba580SStefan Hajnoczi                                   BlockDriverCompletionFunc *cb, void *opaque)
508*eabba580SStefan Hajnoczi {
509*eabba580SStefan Hajnoczi     BlockDriverAIOCB *aiocb;
510*eabba580SStefan Hajnoczi     uint64_t backing_length = 0;
511*eabba580SStefan Hajnoczi     size_t size;
512*eabba580SStefan Hajnoczi 
513*eabba580SStefan Hajnoczi     /* If there is a backing file, get its length.  Treat the absence of a
514*eabba580SStefan Hajnoczi      * backing file like a zero length backing file.
515*eabba580SStefan Hajnoczi      */
516*eabba580SStefan Hajnoczi     if (s->bs->backing_hd) {
517*eabba580SStefan Hajnoczi         int64_t l = bdrv_getlength(s->bs->backing_hd);
518*eabba580SStefan Hajnoczi         if (l < 0) {
519*eabba580SStefan Hajnoczi             cb(opaque, l);
520*eabba580SStefan Hajnoczi             return;
521*eabba580SStefan Hajnoczi         }
522*eabba580SStefan Hajnoczi         backing_length = l;
523*eabba580SStefan Hajnoczi     }
524*eabba580SStefan Hajnoczi 
525*eabba580SStefan Hajnoczi     /* Zero all sectors if reading beyond the end of the backing file */
526*eabba580SStefan Hajnoczi     if (pos >= backing_length ||
527*eabba580SStefan Hajnoczi         pos + qiov->size > backing_length) {
528*eabba580SStefan Hajnoczi         qemu_iovec_memset(qiov, 0, qiov->size);
529*eabba580SStefan Hajnoczi     }
530*eabba580SStefan Hajnoczi 
531*eabba580SStefan Hajnoczi     /* Complete now if there are no backing file sectors to read */
532*eabba580SStefan Hajnoczi     if (pos >= backing_length) {
533*eabba580SStefan Hajnoczi         cb(opaque, 0);
534*eabba580SStefan Hajnoczi         return;
535*eabba580SStefan Hajnoczi     }
536*eabba580SStefan Hajnoczi 
537*eabba580SStefan Hajnoczi     /* If the read straddles the end of the backing file, shorten it */
538*eabba580SStefan Hajnoczi     size = MIN((uint64_t)backing_length - pos, qiov->size);
539*eabba580SStefan Hajnoczi 
540*eabba580SStefan Hajnoczi     BLKDBG_EVENT(s->bs->file, BLKDBG_READ_BACKING);
541*eabba580SStefan Hajnoczi     aiocb = bdrv_aio_readv(s->bs->backing_hd, pos / BDRV_SECTOR_SIZE,
542*eabba580SStefan Hajnoczi                            qiov, size / BDRV_SECTOR_SIZE, cb, opaque);
543*eabba580SStefan Hajnoczi     if (!aiocb) {
544*eabba580SStefan Hajnoczi         cb(opaque, -EIO);
545*eabba580SStefan Hajnoczi     }
546*eabba580SStefan Hajnoczi }
547*eabba580SStefan Hajnoczi 
548*eabba580SStefan Hajnoczi typedef struct {
549*eabba580SStefan Hajnoczi     GenericCB gencb;
550*eabba580SStefan Hajnoczi     BDRVQEDState *s;
551*eabba580SStefan Hajnoczi     QEMUIOVector qiov;
552*eabba580SStefan Hajnoczi     struct iovec iov;
553*eabba580SStefan Hajnoczi     uint64_t offset;
554*eabba580SStefan Hajnoczi } CopyFromBackingFileCB;
555*eabba580SStefan Hajnoczi 
556*eabba580SStefan Hajnoczi static void qed_copy_from_backing_file_cb(void *opaque, int ret)
557*eabba580SStefan Hajnoczi {
558*eabba580SStefan Hajnoczi     CopyFromBackingFileCB *copy_cb = opaque;
559*eabba580SStefan Hajnoczi     qemu_vfree(copy_cb->iov.iov_base);
560*eabba580SStefan Hajnoczi     gencb_complete(&copy_cb->gencb, ret);
561*eabba580SStefan Hajnoczi }
562*eabba580SStefan Hajnoczi 
563*eabba580SStefan Hajnoczi static void qed_copy_from_backing_file_write(void *opaque, int ret)
564*eabba580SStefan Hajnoczi {
565*eabba580SStefan Hajnoczi     CopyFromBackingFileCB *copy_cb = opaque;
566*eabba580SStefan Hajnoczi     BDRVQEDState *s = copy_cb->s;
567*eabba580SStefan Hajnoczi     BlockDriverAIOCB *aiocb;
568*eabba580SStefan Hajnoczi 
569*eabba580SStefan Hajnoczi     if (ret) {
570*eabba580SStefan Hajnoczi         qed_copy_from_backing_file_cb(copy_cb, ret);
571*eabba580SStefan Hajnoczi         return;
572*eabba580SStefan Hajnoczi     }
573*eabba580SStefan Hajnoczi 
574*eabba580SStefan Hajnoczi     BLKDBG_EVENT(s->bs->file, BLKDBG_COW_WRITE);
575*eabba580SStefan Hajnoczi     aiocb = bdrv_aio_writev(s->bs->file, copy_cb->offset / BDRV_SECTOR_SIZE,
576*eabba580SStefan Hajnoczi                             &copy_cb->qiov,
577*eabba580SStefan Hajnoczi                             copy_cb->qiov.size / BDRV_SECTOR_SIZE,
578*eabba580SStefan Hajnoczi                             qed_copy_from_backing_file_cb, copy_cb);
579*eabba580SStefan Hajnoczi     if (!aiocb) {
580*eabba580SStefan Hajnoczi         qed_copy_from_backing_file_cb(copy_cb, -EIO);
581*eabba580SStefan Hajnoczi     }
582*eabba580SStefan Hajnoczi }
583*eabba580SStefan Hajnoczi 
584*eabba580SStefan Hajnoczi /**
585*eabba580SStefan Hajnoczi  * Copy data from backing file into the image
586*eabba580SStefan Hajnoczi  *
587*eabba580SStefan Hajnoczi  * @s:          QED state
588*eabba580SStefan Hajnoczi  * @pos:        Byte position in device
589*eabba580SStefan Hajnoczi  * @len:        Number of bytes
590*eabba580SStefan Hajnoczi  * @offset:     Byte offset in image file
591*eabba580SStefan Hajnoczi  * @cb:         Completion function
592*eabba580SStefan Hajnoczi  * @opaque:     User data for completion function
593*eabba580SStefan Hajnoczi  */
594*eabba580SStefan Hajnoczi static void qed_copy_from_backing_file(BDRVQEDState *s, uint64_t pos,
595*eabba580SStefan Hajnoczi                                        uint64_t len, uint64_t offset,
596*eabba580SStefan Hajnoczi                                        BlockDriverCompletionFunc *cb,
597*eabba580SStefan Hajnoczi                                        void *opaque)
598*eabba580SStefan Hajnoczi {
599*eabba580SStefan Hajnoczi     CopyFromBackingFileCB *copy_cb;
600*eabba580SStefan Hajnoczi 
601*eabba580SStefan Hajnoczi     /* Skip copy entirely if there is no work to do */
602*eabba580SStefan Hajnoczi     if (len == 0) {
603*eabba580SStefan Hajnoczi         cb(opaque, 0);
604*eabba580SStefan Hajnoczi         return;
605*eabba580SStefan Hajnoczi     }
606*eabba580SStefan Hajnoczi 
607*eabba580SStefan Hajnoczi     copy_cb = gencb_alloc(sizeof(*copy_cb), cb, opaque);
608*eabba580SStefan Hajnoczi     copy_cb->s = s;
609*eabba580SStefan Hajnoczi     copy_cb->offset = offset;
610*eabba580SStefan Hajnoczi     copy_cb->iov.iov_base = qemu_blockalign(s->bs, len);
611*eabba580SStefan Hajnoczi     copy_cb->iov.iov_len = len;
612*eabba580SStefan Hajnoczi     qemu_iovec_init_external(&copy_cb->qiov, &copy_cb->iov, 1);
613*eabba580SStefan Hajnoczi 
614*eabba580SStefan Hajnoczi     qed_read_backing_file(s, pos, &copy_cb->qiov,
615*eabba580SStefan Hajnoczi                           qed_copy_from_backing_file_write, copy_cb);
616*eabba580SStefan Hajnoczi }
617*eabba580SStefan Hajnoczi 
618*eabba580SStefan Hajnoczi /**
619*eabba580SStefan Hajnoczi  * Link one or more contiguous clusters into a table
620*eabba580SStefan Hajnoczi  *
621*eabba580SStefan Hajnoczi  * @s:              QED state
622*eabba580SStefan Hajnoczi  * @table:          L2 table
623*eabba580SStefan Hajnoczi  * @index:          First cluster index
624*eabba580SStefan Hajnoczi  * @n:              Number of contiguous clusters
625*eabba580SStefan Hajnoczi  * @cluster:        First cluster byte offset in image file
626*eabba580SStefan Hajnoczi  */
627*eabba580SStefan Hajnoczi static void qed_update_l2_table(BDRVQEDState *s, QEDTable *table, int index,
628*eabba580SStefan Hajnoczi                                 unsigned int n, uint64_t cluster)
629*eabba580SStefan Hajnoczi {
630*eabba580SStefan Hajnoczi     int i;
631*eabba580SStefan Hajnoczi     for (i = index; i < index + n; i++) {
632*eabba580SStefan Hajnoczi         table->offsets[i] = cluster;
633*eabba580SStefan Hajnoczi         cluster += s->header.cluster_size;
634*eabba580SStefan Hajnoczi     }
635*eabba580SStefan Hajnoczi }
636*eabba580SStefan Hajnoczi 
637*eabba580SStefan Hajnoczi static void qed_aio_complete_bh(void *opaque)
638*eabba580SStefan Hajnoczi {
639*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
640*eabba580SStefan Hajnoczi     BlockDriverCompletionFunc *cb = acb->common.cb;
641*eabba580SStefan Hajnoczi     void *user_opaque = acb->common.opaque;
642*eabba580SStefan Hajnoczi     int ret = acb->bh_ret;
643*eabba580SStefan Hajnoczi     bool *finished = acb->finished;
644*eabba580SStefan Hajnoczi 
645*eabba580SStefan Hajnoczi     qemu_bh_delete(acb->bh);
646*eabba580SStefan Hajnoczi     qemu_aio_release(acb);
647*eabba580SStefan Hajnoczi 
648*eabba580SStefan Hajnoczi     /* Invoke callback */
649*eabba580SStefan Hajnoczi     cb(user_opaque, ret);
650*eabba580SStefan Hajnoczi 
651*eabba580SStefan Hajnoczi     /* Signal cancel completion */
652*eabba580SStefan Hajnoczi     if (finished) {
653*eabba580SStefan Hajnoczi         *finished = true;
654*eabba580SStefan Hajnoczi     }
655*eabba580SStefan Hajnoczi }
656*eabba580SStefan Hajnoczi 
657*eabba580SStefan Hajnoczi static void qed_aio_complete(QEDAIOCB *acb, int ret)
658*eabba580SStefan Hajnoczi {
659*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
660*eabba580SStefan Hajnoczi 
661*eabba580SStefan Hajnoczi     trace_qed_aio_complete(s, acb, ret);
662*eabba580SStefan Hajnoczi 
663*eabba580SStefan Hajnoczi     /* Free resources */
664*eabba580SStefan Hajnoczi     qemu_iovec_destroy(&acb->cur_qiov);
665*eabba580SStefan Hajnoczi     qed_unref_l2_cache_entry(acb->request.l2_table);
666*eabba580SStefan Hajnoczi 
667*eabba580SStefan Hajnoczi     /* Arrange for a bh to invoke the completion function */
668*eabba580SStefan Hajnoczi     acb->bh_ret = ret;
669*eabba580SStefan Hajnoczi     acb->bh = qemu_bh_new(qed_aio_complete_bh, acb);
670*eabba580SStefan Hajnoczi     qemu_bh_schedule(acb->bh);
671*eabba580SStefan Hajnoczi 
672*eabba580SStefan Hajnoczi     /* Start next allocating write request waiting behind this one.  Note that
673*eabba580SStefan Hajnoczi      * requests enqueue themselves when they first hit an unallocated cluster
674*eabba580SStefan Hajnoczi      * but they wait until the entire request is finished before waking up the
675*eabba580SStefan Hajnoczi      * next request in the queue.  This ensures that we don't cycle through
676*eabba580SStefan Hajnoczi      * requests multiple times but rather finish one at a time completely.
677*eabba580SStefan Hajnoczi      */
678*eabba580SStefan Hajnoczi     if (acb == QSIMPLEQ_FIRST(&s->allocating_write_reqs)) {
679*eabba580SStefan Hajnoczi         QSIMPLEQ_REMOVE_HEAD(&s->allocating_write_reqs, next);
680*eabba580SStefan Hajnoczi         acb = QSIMPLEQ_FIRST(&s->allocating_write_reqs);
681*eabba580SStefan Hajnoczi         if (acb) {
682*eabba580SStefan Hajnoczi             qed_aio_next_io(acb, 0);
683*eabba580SStefan Hajnoczi         }
684*eabba580SStefan Hajnoczi     }
685*eabba580SStefan Hajnoczi }
686*eabba580SStefan Hajnoczi 
687*eabba580SStefan Hajnoczi /**
688*eabba580SStefan Hajnoczi  * Commit the current L2 table to the cache
689*eabba580SStefan Hajnoczi  */
690*eabba580SStefan Hajnoczi static void qed_commit_l2_update(void *opaque, int ret)
691*eabba580SStefan Hajnoczi {
692*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
693*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
694*eabba580SStefan Hajnoczi     CachedL2Table *l2_table = acb->request.l2_table;
695*eabba580SStefan Hajnoczi 
696*eabba580SStefan Hajnoczi     qed_commit_l2_cache_entry(&s->l2_cache, l2_table);
697*eabba580SStefan Hajnoczi 
698*eabba580SStefan Hajnoczi     /* This is guaranteed to succeed because we just committed the entry to the
699*eabba580SStefan Hajnoczi      * cache.
700*eabba580SStefan Hajnoczi      */
701*eabba580SStefan Hajnoczi     acb->request.l2_table = qed_find_l2_cache_entry(&s->l2_cache,
702*eabba580SStefan Hajnoczi                                                     l2_table->offset);
703*eabba580SStefan Hajnoczi     assert(acb->request.l2_table != NULL);
704*eabba580SStefan Hajnoczi 
705*eabba580SStefan Hajnoczi     qed_aio_next_io(opaque, ret);
706*eabba580SStefan Hajnoczi }
707*eabba580SStefan Hajnoczi 
708*eabba580SStefan Hajnoczi /**
709*eabba580SStefan Hajnoczi  * Update L1 table with new L2 table offset and write it out
710*eabba580SStefan Hajnoczi  */
711*eabba580SStefan Hajnoczi static void qed_aio_write_l1_update(void *opaque, int ret)
712*eabba580SStefan Hajnoczi {
713*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
714*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
715*eabba580SStefan Hajnoczi     int index;
716*eabba580SStefan Hajnoczi 
717*eabba580SStefan Hajnoczi     if (ret) {
718*eabba580SStefan Hajnoczi         qed_aio_complete(acb, ret);
719*eabba580SStefan Hajnoczi         return;
720*eabba580SStefan Hajnoczi     }
721*eabba580SStefan Hajnoczi 
722*eabba580SStefan Hajnoczi     index = qed_l1_index(s, acb->cur_pos);
723*eabba580SStefan Hajnoczi     s->l1_table->offsets[index] = acb->request.l2_table->offset;
724*eabba580SStefan Hajnoczi 
725*eabba580SStefan Hajnoczi     qed_write_l1_table(s, index, 1, qed_commit_l2_update, acb);
726*eabba580SStefan Hajnoczi }
727*eabba580SStefan Hajnoczi 
728*eabba580SStefan Hajnoczi /**
729*eabba580SStefan Hajnoczi  * Update L2 table with new cluster offsets and write them out
730*eabba580SStefan Hajnoczi  */
731*eabba580SStefan Hajnoczi static void qed_aio_write_l2_update(void *opaque, int ret)
732*eabba580SStefan Hajnoczi {
733*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
734*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
735*eabba580SStefan Hajnoczi     bool need_alloc = acb->find_cluster_ret == QED_CLUSTER_L1;
736*eabba580SStefan Hajnoczi     int index;
737*eabba580SStefan Hajnoczi 
738*eabba580SStefan Hajnoczi     if (ret) {
739*eabba580SStefan Hajnoczi         goto err;
740*eabba580SStefan Hajnoczi     }
741*eabba580SStefan Hajnoczi 
742*eabba580SStefan Hajnoczi     if (need_alloc) {
743*eabba580SStefan Hajnoczi         qed_unref_l2_cache_entry(acb->request.l2_table);
744*eabba580SStefan Hajnoczi         acb->request.l2_table = qed_new_l2_table(s);
745*eabba580SStefan Hajnoczi     }
746*eabba580SStefan Hajnoczi 
747*eabba580SStefan Hajnoczi     index = qed_l2_index(s, acb->cur_pos);
748*eabba580SStefan Hajnoczi     qed_update_l2_table(s, acb->request.l2_table->table, index, acb->cur_nclusters,
749*eabba580SStefan Hajnoczi                          acb->cur_cluster);
750*eabba580SStefan Hajnoczi 
751*eabba580SStefan Hajnoczi     if (need_alloc) {
752*eabba580SStefan Hajnoczi         /* Write out the whole new L2 table */
753*eabba580SStefan Hajnoczi         qed_write_l2_table(s, &acb->request, 0, s->table_nelems, true,
754*eabba580SStefan Hajnoczi                             qed_aio_write_l1_update, acb);
755*eabba580SStefan Hajnoczi     } else {
756*eabba580SStefan Hajnoczi         /* Write out only the updated part of the L2 table */
757*eabba580SStefan Hajnoczi         qed_write_l2_table(s, &acb->request, index, acb->cur_nclusters, false,
758*eabba580SStefan Hajnoczi                             qed_aio_next_io, acb);
759*eabba580SStefan Hajnoczi     }
760*eabba580SStefan Hajnoczi     return;
761*eabba580SStefan Hajnoczi 
762*eabba580SStefan Hajnoczi err:
763*eabba580SStefan Hajnoczi     qed_aio_complete(acb, ret);
764*eabba580SStefan Hajnoczi }
765*eabba580SStefan Hajnoczi 
766*eabba580SStefan Hajnoczi /**
767*eabba580SStefan Hajnoczi  * Flush new data clusters before updating the L2 table
768*eabba580SStefan Hajnoczi  *
769*eabba580SStefan Hajnoczi  * This flush is necessary when a backing file is in use.  A crash during an
770*eabba580SStefan Hajnoczi  * allocating write could result in empty clusters in the image.  If the write
771*eabba580SStefan Hajnoczi  * only touched a subregion of the cluster, then backing image sectors have
772*eabba580SStefan Hajnoczi  * been lost in the untouched region.  The solution is to flush after writing a
773*eabba580SStefan Hajnoczi  * new data cluster and before updating the L2 table.
774*eabba580SStefan Hajnoczi  */
775*eabba580SStefan Hajnoczi static void qed_aio_write_flush_before_l2_update(void *opaque, int ret)
776*eabba580SStefan Hajnoczi {
777*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
778*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
779*eabba580SStefan Hajnoczi 
780*eabba580SStefan Hajnoczi     if (!bdrv_aio_flush(s->bs->file, qed_aio_write_l2_update, opaque)) {
781*eabba580SStefan Hajnoczi         qed_aio_complete(acb, -EIO);
782*eabba580SStefan Hajnoczi     }
783*eabba580SStefan Hajnoczi }
784*eabba580SStefan Hajnoczi 
785*eabba580SStefan Hajnoczi /**
786*eabba580SStefan Hajnoczi  * Write data to the image file
787*eabba580SStefan Hajnoczi  */
788*eabba580SStefan Hajnoczi static void qed_aio_write_main(void *opaque, int ret)
789*eabba580SStefan Hajnoczi {
790*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
791*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
792*eabba580SStefan Hajnoczi     uint64_t offset = acb->cur_cluster +
793*eabba580SStefan Hajnoczi                       qed_offset_into_cluster(s, acb->cur_pos);
794*eabba580SStefan Hajnoczi     BlockDriverCompletionFunc *next_fn;
795*eabba580SStefan Hajnoczi     BlockDriverAIOCB *file_acb;
796*eabba580SStefan Hajnoczi 
797*eabba580SStefan Hajnoczi     trace_qed_aio_write_main(s, acb, ret, offset, acb->cur_qiov.size);
798*eabba580SStefan Hajnoczi 
799*eabba580SStefan Hajnoczi     if (ret) {
800*eabba580SStefan Hajnoczi         qed_aio_complete(acb, ret);
801*eabba580SStefan Hajnoczi         return;
802*eabba580SStefan Hajnoczi     }
803*eabba580SStefan Hajnoczi 
804*eabba580SStefan Hajnoczi     if (acb->find_cluster_ret == QED_CLUSTER_FOUND) {
805*eabba580SStefan Hajnoczi         next_fn = qed_aio_next_io;
806*eabba580SStefan Hajnoczi     } else {
807*eabba580SStefan Hajnoczi         if (s->bs->backing_hd) {
808*eabba580SStefan Hajnoczi             next_fn = qed_aio_write_flush_before_l2_update;
809*eabba580SStefan Hajnoczi         } else {
810*eabba580SStefan Hajnoczi             next_fn = qed_aio_write_l2_update;
811*eabba580SStefan Hajnoczi         }
812*eabba580SStefan Hajnoczi     }
813*eabba580SStefan Hajnoczi 
814*eabba580SStefan Hajnoczi     BLKDBG_EVENT(s->bs->file, BLKDBG_WRITE_AIO);
815*eabba580SStefan Hajnoczi     file_acb = bdrv_aio_writev(s->bs->file, offset / BDRV_SECTOR_SIZE,
816*eabba580SStefan Hajnoczi                                &acb->cur_qiov,
817*eabba580SStefan Hajnoczi                                acb->cur_qiov.size / BDRV_SECTOR_SIZE,
818*eabba580SStefan Hajnoczi                                next_fn, acb);
819*eabba580SStefan Hajnoczi     if (!file_acb) {
820*eabba580SStefan Hajnoczi         qed_aio_complete(acb, -EIO);
821*eabba580SStefan Hajnoczi     }
822*eabba580SStefan Hajnoczi }
823*eabba580SStefan Hajnoczi 
824*eabba580SStefan Hajnoczi /**
825*eabba580SStefan Hajnoczi  * Populate back untouched region of new data cluster
826*eabba580SStefan Hajnoczi  */
827*eabba580SStefan Hajnoczi static void qed_aio_write_postfill(void *opaque, int ret)
828*eabba580SStefan Hajnoczi {
829*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
830*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
831*eabba580SStefan Hajnoczi     uint64_t start = acb->cur_pos + acb->cur_qiov.size;
832*eabba580SStefan Hajnoczi     uint64_t len =
833*eabba580SStefan Hajnoczi         qed_start_of_cluster(s, start + s->header.cluster_size - 1) - start;
834*eabba580SStefan Hajnoczi     uint64_t offset = acb->cur_cluster +
835*eabba580SStefan Hajnoczi                       qed_offset_into_cluster(s, acb->cur_pos) +
836*eabba580SStefan Hajnoczi                       acb->cur_qiov.size;
837*eabba580SStefan Hajnoczi 
838*eabba580SStefan Hajnoczi     if (ret) {
839*eabba580SStefan Hajnoczi         qed_aio_complete(acb, ret);
840*eabba580SStefan Hajnoczi         return;
841*eabba580SStefan Hajnoczi     }
842*eabba580SStefan Hajnoczi 
843*eabba580SStefan Hajnoczi     trace_qed_aio_write_postfill(s, acb, start, len, offset);
844*eabba580SStefan Hajnoczi     qed_copy_from_backing_file(s, start, len, offset,
845*eabba580SStefan Hajnoczi                                 qed_aio_write_main, acb);
846*eabba580SStefan Hajnoczi }
847*eabba580SStefan Hajnoczi 
848*eabba580SStefan Hajnoczi /**
849*eabba580SStefan Hajnoczi  * Populate front untouched region of new data cluster
850*eabba580SStefan Hajnoczi  */
851*eabba580SStefan Hajnoczi static void qed_aio_write_prefill(void *opaque, int ret)
852*eabba580SStefan Hajnoczi {
853*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
854*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
855*eabba580SStefan Hajnoczi     uint64_t start = qed_start_of_cluster(s, acb->cur_pos);
856*eabba580SStefan Hajnoczi     uint64_t len = qed_offset_into_cluster(s, acb->cur_pos);
857*eabba580SStefan Hajnoczi 
858*eabba580SStefan Hajnoczi     trace_qed_aio_write_prefill(s, acb, start, len, acb->cur_cluster);
859*eabba580SStefan Hajnoczi     qed_copy_from_backing_file(s, start, len, acb->cur_cluster,
860*eabba580SStefan Hajnoczi                                 qed_aio_write_postfill, acb);
861*eabba580SStefan Hajnoczi }
862*eabba580SStefan Hajnoczi 
863*eabba580SStefan Hajnoczi /**
864*eabba580SStefan Hajnoczi  * Write new data cluster
865*eabba580SStefan Hajnoczi  *
866*eabba580SStefan Hajnoczi  * @acb:        Write request
867*eabba580SStefan Hajnoczi  * @len:        Length in bytes
868*eabba580SStefan Hajnoczi  *
869*eabba580SStefan Hajnoczi  * This path is taken when writing to previously unallocated clusters.
870*eabba580SStefan Hajnoczi  */
871*eabba580SStefan Hajnoczi static void qed_aio_write_alloc(QEDAIOCB *acb, size_t len)
872*eabba580SStefan Hajnoczi {
873*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
874*eabba580SStefan Hajnoczi 
875*eabba580SStefan Hajnoczi     /* Freeze this request if another allocating write is in progress */
876*eabba580SStefan Hajnoczi     if (acb != QSIMPLEQ_FIRST(&s->allocating_write_reqs)) {
877*eabba580SStefan Hajnoczi         QSIMPLEQ_INSERT_TAIL(&s->allocating_write_reqs, acb, next);
878*eabba580SStefan Hajnoczi     }
879*eabba580SStefan Hajnoczi     if (acb != QSIMPLEQ_FIRST(&s->allocating_write_reqs)) {
880*eabba580SStefan Hajnoczi         return; /* wait for existing request to finish */
881*eabba580SStefan Hajnoczi     }
882*eabba580SStefan Hajnoczi 
883*eabba580SStefan Hajnoczi     acb->cur_nclusters = qed_bytes_to_clusters(s,
884*eabba580SStefan Hajnoczi             qed_offset_into_cluster(s, acb->cur_pos) + len);
885*eabba580SStefan Hajnoczi     acb->cur_cluster = qed_alloc_clusters(s, acb->cur_nclusters);
886*eabba580SStefan Hajnoczi     qemu_iovec_copy(&acb->cur_qiov, acb->qiov, acb->qiov_offset, len);
887*eabba580SStefan Hajnoczi 
888*eabba580SStefan Hajnoczi     /* Write new cluster */
889*eabba580SStefan Hajnoczi     qed_aio_write_prefill(acb, 0);
890*eabba580SStefan Hajnoczi }
891*eabba580SStefan Hajnoczi 
892*eabba580SStefan Hajnoczi /**
893*eabba580SStefan Hajnoczi  * Write data cluster in place
894*eabba580SStefan Hajnoczi  *
895*eabba580SStefan Hajnoczi  * @acb:        Write request
896*eabba580SStefan Hajnoczi  * @offset:     Cluster offset in bytes
897*eabba580SStefan Hajnoczi  * @len:        Length in bytes
898*eabba580SStefan Hajnoczi  *
899*eabba580SStefan Hajnoczi  * This path is taken when writing to already allocated clusters.
900*eabba580SStefan Hajnoczi  */
901*eabba580SStefan Hajnoczi static void qed_aio_write_inplace(QEDAIOCB *acb, uint64_t offset, size_t len)
902*eabba580SStefan Hajnoczi {
903*eabba580SStefan Hajnoczi     /* Calculate the I/O vector */
904*eabba580SStefan Hajnoczi     acb->cur_cluster = offset;
905*eabba580SStefan Hajnoczi     qemu_iovec_copy(&acb->cur_qiov, acb->qiov, acb->qiov_offset, len);
906*eabba580SStefan Hajnoczi 
907*eabba580SStefan Hajnoczi     /* Do the actual write */
908*eabba580SStefan Hajnoczi     qed_aio_write_main(acb, 0);
909*eabba580SStefan Hajnoczi }
910*eabba580SStefan Hajnoczi 
911*eabba580SStefan Hajnoczi /**
912*eabba580SStefan Hajnoczi  * Write data cluster
913*eabba580SStefan Hajnoczi  *
914*eabba580SStefan Hajnoczi  * @opaque:     Write request
915*eabba580SStefan Hajnoczi  * @ret:        QED_CLUSTER_FOUND, QED_CLUSTER_L2, QED_CLUSTER_L1,
916*eabba580SStefan Hajnoczi  *              or -errno
917*eabba580SStefan Hajnoczi  * @offset:     Cluster offset in bytes
918*eabba580SStefan Hajnoczi  * @len:        Length in bytes
919*eabba580SStefan Hajnoczi  *
920*eabba580SStefan Hajnoczi  * Callback from qed_find_cluster().
921*eabba580SStefan Hajnoczi  */
922*eabba580SStefan Hajnoczi static void qed_aio_write_data(void *opaque, int ret,
923*eabba580SStefan Hajnoczi                                uint64_t offset, size_t len)
924*eabba580SStefan Hajnoczi {
925*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
926*eabba580SStefan Hajnoczi 
927*eabba580SStefan Hajnoczi     trace_qed_aio_write_data(acb_to_s(acb), acb, ret, offset, len);
928*eabba580SStefan Hajnoczi 
929*eabba580SStefan Hajnoczi     acb->find_cluster_ret = ret;
930*eabba580SStefan Hajnoczi 
931*eabba580SStefan Hajnoczi     switch (ret) {
932*eabba580SStefan Hajnoczi     case QED_CLUSTER_FOUND:
933*eabba580SStefan Hajnoczi         qed_aio_write_inplace(acb, offset, len);
934*eabba580SStefan Hajnoczi         break;
935*eabba580SStefan Hajnoczi 
936*eabba580SStefan Hajnoczi     case QED_CLUSTER_L2:
937*eabba580SStefan Hajnoczi     case QED_CLUSTER_L1:
938*eabba580SStefan Hajnoczi         qed_aio_write_alloc(acb, len);
939*eabba580SStefan Hajnoczi         break;
940*eabba580SStefan Hajnoczi 
941*eabba580SStefan Hajnoczi     default:
942*eabba580SStefan Hajnoczi         qed_aio_complete(acb, ret);
943*eabba580SStefan Hajnoczi         break;
944*eabba580SStefan Hajnoczi     }
945*eabba580SStefan Hajnoczi }
946*eabba580SStefan Hajnoczi 
947*eabba580SStefan Hajnoczi /**
948*eabba580SStefan Hajnoczi  * Read data cluster
949*eabba580SStefan Hajnoczi  *
950*eabba580SStefan Hajnoczi  * @opaque:     Read request
951*eabba580SStefan Hajnoczi  * @ret:        QED_CLUSTER_FOUND, QED_CLUSTER_L2, QED_CLUSTER_L1,
952*eabba580SStefan Hajnoczi  *              or -errno
953*eabba580SStefan Hajnoczi  * @offset:     Cluster offset in bytes
954*eabba580SStefan Hajnoczi  * @len:        Length in bytes
955*eabba580SStefan Hajnoczi  *
956*eabba580SStefan Hajnoczi  * Callback from qed_find_cluster().
957*eabba580SStefan Hajnoczi  */
958*eabba580SStefan Hajnoczi static void qed_aio_read_data(void *opaque, int ret,
959*eabba580SStefan Hajnoczi                               uint64_t offset, size_t len)
960*eabba580SStefan Hajnoczi {
961*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
962*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
963*eabba580SStefan Hajnoczi     BlockDriverState *bs = acb->common.bs;
964*eabba580SStefan Hajnoczi     BlockDriverAIOCB *file_acb;
965*eabba580SStefan Hajnoczi 
966*eabba580SStefan Hajnoczi     /* Adjust offset into cluster */
967*eabba580SStefan Hajnoczi     offset += qed_offset_into_cluster(s, acb->cur_pos);
968*eabba580SStefan Hajnoczi 
969*eabba580SStefan Hajnoczi     trace_qed_aio_read_data(s, acb, ret, offset, len);
970*eabba580SStefan Hajnoczi 
971*eabba580SStefan Hajnoczi     if (ret < 0) {
972*eabba580SStefan Hajnoczi         goto err;
973*eabba580SStefan Hajnoczi     }
974*eabba580SStefan Hajnoczi 
975*eabba580SStefan Hajnoczi     qemu_iovec_copy(&acb->cur_qiov, acb->qiov, acb->qiov_offset, len);
976*eabba580SStefan Hajnoczi 
977*eabba580SStefan Hajnoczi     /* Handle backing file and unallocated sparse hole reads */
978*eabba580SStefan Hajnoczi     if (ret != QED_CLUSTER_FOUND) {
979*eabba580SStefan Hajnoczi         qed_read_backing_file(s, acb->cur_pos, &acb->cur_qiov,
980*eabba580SStefan Hajnoczi                               qed_aio_next_io, acb);
981*eabba580SStefan Hajnoczi         return;
982*eabba580SStefan Hajnoczi     }
983*eabba580SStefan Hajnoczi 
984*eabba580SStefan Hajnoczi     BLKDBG_EVENT(bs->file, BLKDBG_READ_AIO);
985*eabba580SStefan Hajnoczi     file_acb = bdrv_aio_readv(bs->file, offset / BDRV_SECTOR_SIZE,
986*eabba580SStefan Hajnoczi                               &acb->cur_qiov,
987*eabba580SStefan Hajnoczi                               acb->cur_qiov.size / BDRV_SECTOR_SIZE,
988*eabba580SStefan Hajnoczi                               qed_aio_next_io, acb);
989*eabba580SStefan Hajnoczi     if (!file_acb) {
990*eabba580SStefan Hajnoczi         ret = -EIO;
991*eabba580SStefan Hajnoczi         goto err;
992*eabba580SStefan Hajnoczi     }
993*eabba580SStefan Hajnoczi     return;
994*eabba580SStefan Hajnoczi 
995*eabba580SStefan Hajnoczi err:
996*eabba580SStefan Hajnoczi     qed_aio_complete(acb, ret);
997*eabba580SStefan Hajnoczi }
998*eabba580SStefan Hajnoczi 
999*eabba580SStefan Hajnoczi /**
1000*eabba580SStefan Hajnoczi  * Begin next I/O or complete the request
1001*eabba580SStefan Hajnoczi  */
1002*eabba580SStefan Hajnoczi static void qed_aio_next_io(void *opaque, int ret)
1003*eabba580SStefan Hajnoczi {
1004*eabba580SStefan Hajnoczi     QEDAIOCB *acb = opaque;
1005*eabba580SStefan Hajnoczi     BDRVQEDState *s = acb_to_s(acb);
1006*eabba580SStefan Hajnoczi     QEDFindClusterFunc *io_fn =
1007*eabba580SStefan Hajnoczi         acb->is_write ? qed_aio_write_data : qed_aio_read_data;
1008*eabba580SStefan Hajnoczi 
1009*eabba580SStefan Hajnoczi     trace_qed_aio_next_io(s, acb, ret, acb->cur_pos + acb->cur_qiov.size);
1010*eabba580SStefan Hajnoczi 
1011*eabba580SStefan Hajnoczi     /* Handle I/O error */
1012*eabba580SStefan Hajnoczi     if (ret) {
1013*eabba580SStefan Hajnoczi         qed_aio_complete(acb, ret);
1014*eabba580SStefan Hajnoczi         return;
1015*eabba580SStefan Hajnoczi     }
1016*eabba580SStefan Hajnoczi 
1017*eabba580SStefan Hajnoczi     acb->qiov_offset += acb->cur_qiov.size;
1018*eabba580SStefan Hajnoczi     acb->cur_pos += acb->cur_qiov.size;
1019*eabba580SStefan Hajnoczi     qemu_iovec_reset(&acb->cur_qiov);
1020*eabba580SStefan Hajnoczi 
1021*eabba580SStefan Hajnoczi     /* Complete request */
1022*eabba580SStefan Hajnoczi     if (acb->cur_pos >= acb->end_pos) {
1023*eabba580SStefan Hajnoczi         qed_aio_complete(acb, 0);
1024*eabba580SStefan Hajnoczi         return;
1025*eabba580SStefan Hajnoczi     }
1026*eabba580SStefan Hajnoczi 
1027*eabba580SStefan Hajnoczi     /* Find next cluster and start I/O */
1028*eabba580SStefan Hajnoczi     qed_find_cluster(s, &acb->request,
1029*eabba580SStefan Hajnoczi                       acb->cur_pos, acb->end_pos - acb->cur_pos,
1030*eabba580SStefan Hajnoczi                       io_fn, acb);
1031*eabba580SStefan Hajnoczi }
1032*eabba580SStefan Hajnoczi 
1033*eabba580SStefan Hajnoczi static BlockDriverAIOCB *qed_aio_setup(BlockDriverState *bs,
1034*eabba580SStefan Hajnoczi                                        int64_t sector_num,
1035*eabba580SStefan Hajnoczi                                        QEMUIOVector *qiov, int nb_sectors,
1036*eabba580SStefan Hajnoczi                                        BlockDriverCompletionFunc *cb,
1037*eabba580SStefan Hajnoczi                                        void *opaque, bool is_write)
1038*eabba580SStefan Hajnoczi {
1039*eabba580SStefan Hajnoczi     QEDAIOCB *acb = qemu_aio_get(&qed_aio_pool, bs, cb, opaque);
1040*eabba580SStefan Hajnoczi 
1041*eabba580SStefan Hajnoczi     trace_qed_aio_setup(bs->opaque, acb, sector_num, nb_sectors,
1042*eabba580SStefan Hajnoczi                          opaque, is_write);
1043*eabba580SStefan Hajnoczi 
1044*eabba580SStefan Hajnoczi     acb->is_write = is_write;
1045*eabba580SStefan Hajnoczi     acb->finished = NULL;
1046*eabba580SStefan Hajnoczi     acb->qiov = qiov;
1047*eabba580SStefan Hajnoczi     acb->qiov_offset = 0;
1048*eabba580SStefan Hajnoczi     acb->cur_pos = (uint64_t)sector_num * BDRV_SECTOR_SIZE;
1049*eabba580SStefan Hajnoczi     acb->end_pos = acb->cur_pos + nb_sectors * BDRV_SECTOR_SIZE;
1050*eabba580SStefan Hajnoczi     acb->request.l2_table = NULL;
1051*eabba580SStefan Hajnoczi     qemu_iovec_init(&acb->cur_qiov, qiov->niov);
1052*eabba580SStefan Hajnoczi 
1053*eabba580SStefan Hajnoczi     /* Start request */
1054*eabba580SStefan Hajnoczi     qed_aio_next_io(acb, 0);
1055*eabba580SStefan Hajnoczi     return &acb->common;
1056*eabba580SStefan Hajnoczi }
1057*eabba580SStefan Hajnoczi 
105875411d23SStefan Hajnoczi static BlockDriverAIOCB *bdrv_qed_aio_readv(BlockDriverState *bs,
105975411d23SStefan Hajnoczi                                             int64_t sector_num,
106075411d23SStefan Hajnoczi                                             QEMUIOVector *qiov, int nb_sectors,
106175411d23SStefan Hajnoczi                                             BlockDriverCompletionFunc *cb,
106275411d23SStefan Hajnoczi                                             void *opaque)
106375411d23SStefan Hajnoczi {
1064*eabba580SStefan Hajnoczi     return qed_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, false);
106575411d23SStefan Hajnoczi }
106675411d23SStefan Hajnoczi 
106775411d23SStefan Hajnoczi static BlockDriverAIOCB *bdrv_qed_aio_writev(BlockDriverState *bs,
106875411d23SStefan Hajnoczi                                              int64_t sector_num,
106975411d23SStefan Hajnoczi                                              QEMUIOVector *qiov, int nb_sectors,
107075411d23SStefan Hajnoczi                                              BlockDriverCompletionFunc *cb,
107175411d23SStefan Hajnoczi                                              void *opaque)
107275411d23SStefan Hajnoczi {
1073*eabba580SStefan Hajnoczi     return qed_aio_setup(bs, sector_num, qiov, nb_sectors, cb, opaque, true);
107475411d23SStefan Hajnoczi }
107575411d23SStefan Hajnoczi 
107675411d23SStefan Hajnoczi static BlockDriverAIOCB *bdrv_qed_aio_flush(BlockDriverState *bs,
107775411d23SStefan Hajnoczi                                             BlockDriverCompletionFunc *cb,
107875411d23SStefan Hajnoczi                                             void *opaque)
107975411d23SStefan Hajnoczi {
108075411d23SStefan Hajnoczi     return bdrv_aio_flush(bs->file, cb, opaque);
108175411d23SStefan Hajnoczi }
108275411d23SStefan Hajnoczi 
108375411d23SStefan Hajnoczi static int bdrv_qed_truncate(BlockDriverState *bs, int64_t offset)
108475411d23SStefan Hajnoczi {
108575411d23SStefan Hajnoczi     return -ENOTSUP;
108675411d23SStefan Hajnoczi }
108775411d23SStefan Hajnoczi 
108875411d23SStefan Hajnoczi static int64_t bdrv_qed_getlength(BlockDriverState *bs)
108975411d23SStefan Hajnoczi {
109075411d23SStefan Hajnoczi     BDRVQEDState *s = bs->opaque;
109175411d23SStefan Hajnoczi     return s->header.image_size;
109275411d23SStefan Hajnoczi }
109375411d23SStefan Hajnoczi 
109475411d23SStefan Hajnoczi static int bdrv_qed_get_info(BlockDriverState *bs, BlockDriverInfo *bdi)
109575411d23SStefan Hajnoczi {
109675411d23SStefan Hajnoczi     BDRVQEDState *s = bs->opaque;
109775411d23SStefan Hajnoczi 
109875411d23SStefan Hajnoczi     memset(bdi, 0, sizeof(*bdi));
109975411d23SStefan Hajnoczi     bdi->cluster_size = s->header.cluster_size;
110075411d23SStefan Hajnoczi     return 0;
110175411d23SStefan Hajnoczi }
110275411d23SStefan Hajnoczi 
110375411d23SStefan Hajnoczi static int bdrv_qed_change_backing_file(BlockDriverState *bs,
110475411d23SStefan Hajnoczi                                         const char *backing_file,
110575411d23SStefan Hajnoczi                                         const char *backing_fmt)
110675411d23SStefan Hajnoczi {
110775411d23SStefan Hajnoczi     BDRVQEDState *s = bs->opaque;
110875411d23SStefan Hajnoczi     QEDHeader new_header, le_header;
110975411d23SStefan Hajnoczi     void *buffer;
111075411d23SStefan Hajnoczi     size_t buffer_len, backing_file_len;
111175411d23SStefan Hajnoczi     int ret;
111275411d23SStefan Hajnoczi 
111375411d23SStefan Hajnoczi     /* Refuse to set backing filename if unknown compat feature bits are
111475411d23SStefan Hajnoczi      * active.  If the image uses an unknown compat feature then we may not
111575411d23SStefan Hajnoczi      * know the layout of data following the header structure and cannot safely
111675411d23SStefan Hajnoczi      * add a new string.
111775411d23SStefan Hajnoczi      */
111875411d23SStefan Hajnoczi     if (backing_file && (s->header.compat_features &
111975411d23SStefan Hajnoczi                          ~QED_COMPAT_FEATURE_MASK)) {
112075411d23SStefan Hajnoczi         return -ENOTSUP;
112175411d23SStefan Hajnoczi     }
112275411d23SStefan Hajnoczi 
112375411d23SStefan Hajnoczi     memcpy(&new_header, &s->header, sizeof(new_header));
112475411d23SStefan Hajnoczi 
112575411d23SStefan Hajnoczi     new_header.features &= ~(QED_F_BACKING_FILE |
112675411d23SStefan Hajnoczi                              QED_F_BACKING_FORMAT_NO_PROBE);
112775411d23SStefan Hajnoczi 
112875411d23SStefan Hajnoczi     /* Adjust feature flags */
112975411d23SStefan Hajnoczi     if (backing_file) {
113075411d23SStefan Hajnoczi         new_header.features |= QED_F_BACKING_FILE;
113175411d23SStefan Hajnoczi 
113275411d23SStefan Hajnoczi         if (qed_fmt_is_raw(backing_fmt)) {
113375411d23SStefan Hajnoczi             new_header.features |= QED_F_BACKING_FORMAT_NO_PROBE;
113475411d23SStefan Hajnoczi         }
113575411d23SStefan Hajnoczi     }
113675411d23SStefan Hajnoczi 
113775411d23SStefan Hajnoczi     /* Calculate new header size */
113875411d23SStefan Hajnoczi     backing_file_len = 0;
113975411d23SStefan Hajnoczi 
114075411d23SStefan Hajnoczi     if (backing_file) {
114175411d23SStefan Hajnoczi         backing_file_len = strlen(backing_file);
114275411d23SStefan Hajnoczi     }
114375411d23SStefan Hajnoczi 
114475411d23SStefan Hajnoczi     buffer_len = sizeof(new_header);
114575411d23SStefan Hajnoczi     new_header.backing_filename_offset = buffer_len;
114675411d23SStefan Hajnoczi     new_header.backing_filename_size = backing_file_len;
114775411d23SStefan Hajnoczi     buffer_len += backing_file_len;
114875411d23SStefan Hajnoczi 
114975411d23SStefan Hajnoczi     /* Make sure we can rewrite header without failing */
115075411d23SStefan Hajnoczi     if (buffer_len > new_header.header_size * new_header.cluster_size) {
115175411d23SStefan Hajnoczi         return -ENOSPC;
115275411d23SStefan Hajnoczi     }
115375411d23SStefan Hajnoczi 
115475411d23SStefan Hajnoczi     /* Prepare new header */
115575411d23SStefan Hajnoczi     buffer = qemu_malloc(buffer_len);
115675411d23SStefan Hajnoczi 
115775411d23SStefan Hajnoczi     qed_header_cpu_to_le(&new_header, &le_header);
115875411d23SStefan Hajnoczi     memcpy(buffer, &le_header, sizeof(le_header));
115975411d23SStefan Hajnoczi     buffer_len = sizeof(le_header);
116075411d23SStefan Hajnoczi 
116175411d23SStefan Hajnoczi     memcpy(buffer + buffer_len, backing_file, backing_file_len);
116275411d23SStefan Hajnoczi     buffer_len += backing_file_len;
116375411d23SStefan Hajnoczi 
116475411d23SStefan Hajnoczi     /* Write new header */
116575411d23SStefan Hajnoczi     ret = bdrv_pwrite_sync(bs->file, 0, buffer, buffer_len);
116675411d23SStefan Hajnoczi     qemu_free(buffer);
116775411d23SStefan Hajnoczi     if (ret == 0) {
116875411d23SStefan Hajnoczi         memcpy(&s->header, &new_header, sizeof(new_header));
116975411d23SStefan Hajnoczi     }
117075411d23SStefan Hajnoczi     return ret;
117175411d23SStefan Hajnoczi }
117275411d23SStefan Hajnoczi 
117375411d23SStefan Hajnoczi static int bdrv_qed_check(BlockDriverState *bs, BdrvCheckResult *result)
117475411d23SStefan Hajnoczi {
117575411d23SStefan Hajnoczi     return -ENOTSUP;
117675411d23SStefan Hajnoczi }
117775411d23SStefan Hajnoczi 
117875411d23SStefan Hajnoczi static QEMUOptionParameter qed_create_options[] = {
117975411d23SStefan Hajnoczi     {
118075411d23SStefan Hajnoczi         .name = BLOCK_OPT_SIZE,
118175411d23SStefan Hajnoczi         .type = OPT_SIZE,
118275411d23SStefan Hajnoczi         .help = "Virtual disk size (in bytes)"
118375411d23SStefan Hajnoczi     }, {
118475411d23SStefan Hajnoczi         .name = BLOCK_OPT_BACKING_FILE,
118575411d23SStefan Hajnoczi         .type = OPT_STRING,
118675411d23SStefan Hajnoczi         .help = "File name of a base image"
118775411d23SStefan Hajnoczi     }, {
118875411d23SStefan Hajnoczi         .name = BLOCK_OPT_BACKING_FMT,
118975411d23SStefan Hajnoczi         .type = OPT_STRING,
119075411d23SStefan Hajnoczi         .help = "Image format of the base image"
119175411d23SStefan Hajnoczi     }, {
119275411d23SStefan Hajnoczi         .name = BLOCK_OPT_CLUSTER_SIZE,
119375411d23SStefan Hajnoczi         .type = OPT_SIZE,
119475411d23SStefan Hajnoczi         .help = "Cluster size (in bytes)"
119575411d23SStefan Hajnoczi     }, {
119675411d23SStefan Hajnoczi         .name = BLOCK_OPT_TABLE_SIZE,
119775411d23SStefan Hajnoczi         .type = OPT_SIZE,
119875411d23SStefan Hajnoczi         .help = "L1/L2 table size (in clusters)"
119975411d23SStefan Hajnoczi     },
120075411d23SStefan Hajnoczi     { /* end of list */ }
120175411d23SStefan Hajnoczi };
120275411d23SStefan Hajnoczi 
120375411d23SStefan Hajnoczi static BlockDriver bdrv_qed = {
120475411d23SStefan Hajnoczi     .format_name              = "qed",
120575411d23SStefan Hajnoczi     .instance_size            = sizeof(BDRVQEDState),
120675411d23SStefan Hajnoczi     .create_options           = qed_create_options,
120775411d23SStefan Hajnoczi 
120875411d23SStefan Hajnoczi     .bdrv_probe               = bdrv_qed_probe,
120975411d23SStefan Hajnoczi     .bdrv_open                = bdrv_qed_open,
121075411d23SStefan Hajnoczi     .bdrv_close               = bdrv_qed_close,
121175411d23SStefan Hajnoczi     .bdrv_create              = bdrv_qed_create,
121275411d23SStefan Hajnoczi     .bdrv_flush               = bdrv_qed_flush,
121375411d23SStefan Hajnoczi     .bdrv_is_allocated        = bdrv_qed_is_allocated,
121475411d23SStefan Hajnoczi     .bdrv_make_empty          = bdrv_qed_make_empty,
121575411d23SStefan Hajnoczi     .bdrv_aio_readv           = bdrv_qed_aio_readv,
121675411d23SStefan Hajnoczi     .bdrv_aio_writev          = bdrv_qed_aio_writev,
121775411d23SStefan Hajnoczi     .bdrv_aio_flush           = bdrv_qed_aio_flush,
121875411d23SStefan Hajnoczi     .bdrv_truncate            = bdrv_qed_truncate,
121975411d23SStefan Hajnoczi     .bdrv_getlength           = bdrv_qed_getlength,
122075411d23SStefan Hajnoczi     .bdrv_get_info            = bdrv_qed_get_info,
122175411d23SStefan Hajnoczi     .bdrv_change_backing_file = bdrv_qed_change_backing_file,
122275411d23SStefan Hajnoczi     .bdrv_check               = bdrv_qed_check,
122375411d23SStefan Hajnoczi };
122475411d23SStefan Hajnoczi 
122575411d23SStefan Hajnoczi static void bdrv_qed_init(void)
122675411d23SStefan Hajnoczi {
122775411d23SStefan Hajnoczi     bdrv_register(&bdrv_qed);
122875411d23SStefan Hajnoczi }
122975411d23SStefan Hajnoczi 
123075411d23SStefan Hajnoczi block_init(bdrv_qed_init);
1231