edu: mmio: allow 64-bit access in read dispatch
[qemu/ar7.git] / hw / block / xen-block.c
blobef635be4c2e166844e8bbbbcdc673d292c8e0bf9
1 /*
2 * Copyright (c) 2018 Citrix Systems Inc.
4 * This work is licensed under the terms of the GNU GPL, version 2 or later.
5 * See the COPYING file in the top-level directory.
6 */
8 #include "qemu/osdep.h"
9 #include "qemu/cutils.h"
10 #include "qemu/option.h"
11 #include "qapi/error.h"
12 #include "qapi/qapi-commands-block-core.h"
13 #include "qapi/qapi-commands-misc.h"
14 #include "qapi/qapi-visit-block-core.h"
15 #include "qapi/qobject-input-visitor.h"
16 #include "qapi/visitor.h"
17 #include "qapi/qmp/qdict.h"
18 #include "qapi/qmp/qstring.h"
19 #include "hw/hw.h"
20 #include "hw/xen/xen_common.h"
21 #include "hw/block/xen_blkif.h"
22 #include "hw/xen/xen-block.h"
23 #include "hw/xen/xen-backend.h"
24 #include "sysemu/blockdev.h"
25 #include "sysemu/block-backend.h"
26 #include "sysemu/iothread.h"
27 #include "dataplane/xen-block.h"
28 #include "trace.h"
30 static char *xen_block_get_name(XenDevice *xendev, Error **errp)
32 XenBlockDevice *blockdev = XEN_BLOCK_DEVICE(xendev);
33 XenBlockVdev *vdev = &blockdev->props.vdev;
35 return g_strdup_printf("%lu", vdev->number);
38 static void xen_block_disconnect(XenDevice *xendev, Error **errp)
40 XenBlockDevice *blockdev = XEN_BLOCK_DEVICE(xendev);
41 const char *type = object_get_typename(OBJECT(blockdev));
42 XenBlockVdev *vdev = &blockdev->props.vdev;
44 trace_xen_block_disconnect(type, vdev->disk, vdev->partition);
46 xen_block_dataplane_stop(blockdev->dataplane);
49 static void xen_block_connect(XenDevice *xendev, Error **errp)
51 XenBlockDevice *blockdev = XEN_BLOCK_DEVICE(xendev);
52 const char *type = object_get_typename(OBJECT(blockdev));
53 XenBlockVdev *vdev = &blockdev->props.vdev;
54 unsigned int order, nr_ring_ref, *ring_ref, event_channel, protocol;
55 char *str;
57 trace_xen_block_connect(type, vdev->disk, vdev->partition);
59 if (xen_device_frontend_scanf(xendev, "ring-page-order", "%u",
60 &order) != 1) {
61 nr_ring_ref = 1;
62 ring_ref = g_new(unsigned int, nr_ring_ref);
64 if (xen_device_frontend_scanf(xendev, "ring-ref", "%u",
65 &ring_ref[0]) != 1) {
66 error_setg(errp, "failed to read ring-ref");
67 g_free(ring_ref);
68 return;
70 } else if (order <= blockdev->props.max_ring_page_order) {
71 unsigned int i;
73 nr_ring_ref = 1 << order;
74 ring_ref = g_new(unsigned int, nr_ring_ref);
76 for (i = 0; i < nr_ring_ref; i++) {
77 const char *key = g_strdup_printf("ring-ref%u", i);
79 if (xen_device_frontend_scanf(xendev, key, "%u",
80 &ring_ref[i]) != 1) {
81 error_setg(errp, "failed to read %s", key);
82 g_free((gpointer)key);
83 g_free(ring_ref);
84 return;
87 g_free((gpointer)key);
89 } else {
90 error_setg(errp, "invalid ring-page-order (%d)", order);
91 return;
94 if (xen_device_frontend_scanf(xendev, "event-channel", "%u",
95 &event_channel) != 1) {
96 error_setg(errp, "failed to read event-channel");
97 g_free(ring_ref);
98 return;
101 if (xen_device_frontend_scanf(xendev, "protocol", "%ms",
102 &str) != 1) {
103 protocol = BLKIF_PROTOCOL_NATIVE;
104 } else {
105 if (strcmp(str, XEN_IO_PROTO_ABI_X86_32) == 0) {
106 protocol = BLKIF_PROTOCOL_X86_32;
107 } else if (strcmp(str, XEN_IO_PROTO_ABI_X86_64) == 0) {
108 protocol = BLKIF_PROTOCOL_X86_64;
109 } else {
110 protocol = BLKIF_PROTOCOL_NATIVE;
113 free(str);
116 xen_block_dataplane_start(blockdev->dataplane, ring_ref, nr_ring_ref,
117 event_channel, protocol, errp);
119 g_free(ring_ref);
122 static void xen_block_unrealize(XenDevice *xendev, Error **errp)
124 XenBlockDevice *blockdev = XEN_BLOCK_DEVICE(xendev);
125 XenBlockDeviceClass *blockdev_class =
126 XEN_BLOCK_DEVICE_GET_CLASS(xendev);
127 const char *type = object_get_typename(OBJECT(blockdev));
128 XenBlockVdev *vdev = &blockdev->props.vdev;
130 if (vdev->type == XEN_BLOCK_VDEV_TYPE_INVALID) {
131 return;
134 trace_xen_block_unrealize(type, vdev->disk, vdev->partition);
136 /* Disconnect from the frontend in case this has not already happened */
137 xen_block_disconnect(xendev, NULL);
139 xen_block_dataplane_destroy(blockdev->dataplane);
140 blockdev->dataplane = NULL;
142 if (blockdev_class->unrealize) {
143 blockdev_class->unrealize(blockdev, errp);
147 static void xen_block_set_size(XenBlockDevice *blockdev)
149 const char *type = object_get_typename(OBJECT(blockdev));
150 XenBlockVdev *vdev = &blockdev->props.vdev;
151 BlockConf *conf = &blockdev->props.conf;
152 int64_t sectors = blk_getlength(conf->blk) / XEN_BLKIF_SECTOR_SIZE;
153 XenDevice *xendev = XEN_DEVICE(blockdev);
155 trace_xen_block_size(type, vdev->disk, vdev->partition, sectors);
157 xen_device_backend_printf(xendev, "sectors", "%"PRIi64, sectors);
160 static void xen_block_resize_cb(void *opaque)
162 XenBlockDevice *blockdev = opaque;
163 XenDevice *xendev = XEN_DEVICE(blockdev);
164 enum xenbus_state state = xen_device_backend_get_state(xendev);
166 xen_block_set_size(blockdev);
169 * Mimic the behaviour of Linux xen-blkback and re-write the state
170 * to trigger the frontend watch.
172 xen_device_backend_printf(xendev, "state", "%u", state);
175 static const BlockDevOps xen_block_dev_ops = {
176 .resize_cb = xen_block_resize_cb,
179 static void xen_block_realize(XenDevice *xendev, Error **errp)
181 XenBlockDevice *blockdev = XEN_BLOCK_DEVICE(xendev);
182 XenBlockDeviceClass *blockdev_class =
183 XEN_BLOCK_DEVICE_GET_CLASS(xendev);
184 const char *type = object_get_typename(OBJECT(blockdev));
185 XenBlockVdev *vdev = &blockdev->props.vdev;
186 BlockConf *conf = &blockdev->props.conf;
187 Error *local_err = NULL;
189 if (vdev->type == XEN_BLOCK_VDEV_TYPE_INVALID) {
190 error_setg(errp, "vdev property not set");
191 return;
194 trace_xen_block_realize(type, vdev->disk, vdev->partition);
196 if (blockdev_class->realize) {
197 blockdev_class->realize(blockdev, &local_err);
198 if (local_err) {
199 error_propagate(errp, local_err);
200 return;
205 * The blkif protocol does not deal with removable media, so it must
206 * always be present, even for CDRom devices.
208 assert(conf->blk);
209 if (!blk_is_inserted(conf->blk)) {
210 error_setg(errp, "device needs media, but drive is empty");
211 return;
214 if (!blkconf_apply_backend_options(conf, blockdev->info & VDISK_READONLY,
215 true, errp)) {
216 return;
219 if (!(blockdev->info & VDISK_CDROM) &&
220 !blkconf_geometry(conf, NULL, 65535, 255, 255, errp)) {
221 return;
224 blkconf_blocksizes(conf);
226 if (conf->logical_block_size != XEN_BLKIF_SECTOR_SIZE) {
227 error_setg(errp, "logical_block_size != %u not supported",
228 XEN_BLKIF_SECTOR_SIZE);
229 return;
232 if (conf->logical_block_size > conf->physical_block_size) {
233 error_setg(
234 errp, "logical_block_size > physical_block_size not supported");
235 return;
238 blk_set_dev_ops(conf->blk, &xen_block_dev_ops, blockdev);
239 blk_set_guest_block_size(conf->blk, conf->logical_block_size);
241 if (conf->discard_granularity == -1) {
242 conf->discard_granularity = conf->physical_block_size;
245 if (blk_get_flags(conf->blk) & BDRV_O_UNMAP) {
246 xen_device_backend_printf(xendev, "feature-discard", "%u", 1);
247 xen_device_backend_printf(xendev, "discard-granularity", "%u",
248 conf->discard_granularity);
251 xen_device_backend_printf(xendev, "feature-flush-cache", "%u", 1);
252 xen_device_backend_printf(xendev, "max-ring-page-order", "%u",
253 blockdev->props.max_ring_page_order);
254 xen_device_backend_printf(xendev, "info", "%u", blockdev->info);
256 xen_device_frontend_printf(xendev, "virtual-device", "%lu",
257 vdev->number);
258 xen_device_frontend_printf(xendev, "device-type", "%s",
259 blockdev->device_type);
261 xen_device_backend_printf(xendev, "sector-size", "%u",
262 XEN_BLKIF_SECTOR_SIZE);
264 xen_block_set_size(blockdev);
266 blockdev->dataplane =
267 xen_block_dataplane_create(xendev, conf, blockdev->props.iothread);
270 static void xen_block_frontend_changed(XenDevice *xendev,
271 enum xenbus_state frontend_state,
272 Error **errp)
274 enum xenbus_state backend_state = xen_device_backend_get_state(xendev);
275 Error *local_err = NULL;
277 switch (frontend_state) {
278 case XenbusStateInitialised:
279 case XenbusStateConnected:
280 if (backend_state == XenbusStateConnected) {
281 break;
284 xen_block_disconnect(xendev, &local_err);
285 if (local_err) {
286 error_propagate(errp, local_err);
287 break;
290 xen_block_connect(xendev, &local_err);
291 if (local_err) {
292 error_propagate(errp, local_err);
293 break;
296 xen_device_backend_set_state(xendev, XenbusStateConnected);
297 break;
299 case XenbusStateClosing:
300 xen_device_backend_set_state(xendev, XenbusStateClosing);
301 break;
303 case XenbusStateClosed:
304 xen_block_disconnect(xendev, &local_err);
305 if (local_err) {
306 error_propagate(errp, local_err);
307 break;
310 xen_device_backend_set_state(xendev, XenbusStateClosed);
311 break;
313 default:
314 break;
318 static char *disk_to_vbd_name(unsigned int disk)
320 char *name, *prefix = (disk >= 26) ?
321 disk_to_vbd_name((disk / 26) - 1) : g_strdup("");
323 name = g_strdup_printf("%s%c", prefix, 'a' + disk % 26);
324 g_free(prefix);
326 return name;
329 static void xen_block_get_vdev(Object *obj, Visitor *v, const char *name,
330 void *opaque, Error **errp)
332 DeviceState *dev = DEVICE(obj);
333 Property *prop = opaque;
334 XenBlockVdev *vdev = qdev_get_prop_ptr(dev, prop);
335 char *str;
337 switch (vdev->type) {
338 case XEN_BLOCK_VDEV_TYPE_DP:
339 str = g_strdup_printf("d%lup%lu", vdev->disk, vdev->partition);
340 break;
342 case XEN_BLOCK_VDEV_TYPE_XVD:
343 case XEN_BLOCK_VDEV_TYPE_HD:
344 case XEN_BLOCK_VDEV_TYPE_SD: {
345 char *name = disk_to_vbd_name(vdev->disk);
347 str = g_strdup_printf("%s%s%lu",
348 (vdev->type == XEN_BLOCK_VDEV_TYPE_XVD) ?
349 "xvd" :
350 (vdev->type == XEN_BLOCK_VDEV_TYPE_HD) ?
351 "hd" :
352 "sd",
353 name, vdev->partition);
354 g_free(name);
355 break;
357 default:
358 error_setg(errp, "invalid vdev type");
359 return;
362 visit_type_str(v, name, &str, errp);
363 g_free(str);
366 static int vbd_name_to_disk(const char *name, const char **endp,
367 unsigned long *disk)
369 unsigned int n = 0;
371 while (*name != '\0') {
372 if (!g_ascii_isalpha(*name) || !g_ascii_islower(*name)) {
373 break;
376 n *= 26;
377 n += *name++ - 'a' + 1;
379 *endp = name;
381 if (!n) {
382 return -1;
385 *disk = n - 1;
387 return 0;
390 static void xen_block_set_vdev(Object *obj, Visitor *v, const char *name,
391 void *opaque, Error **errp)
393 DeviceState *dev = DEVICE(obj);
394 Property *prop = opaque;
395 XenBlockVdev *vdev = qdev_get_prop_ptr(dev, prop);
396 Error *local_err = NULL;
397 char *str, *p;
398 const char *end;
400 if (dev->realized) {
401 qdev_prop_set_after_realize(dev, name, errp);
402 return;
405 visit_type_str(v, name, &str, &local_err);
406 if (local_err) {
407 error_propagate(errp, local_err);
408 return;
411 p = strchr(str, 'd');
412 if (!p) {
413 goto invalid;
416 *p++ = '\0';
417 if (*str == '\0') {
418 vdev->type = XEN_BLOCK_VDEV_TYPE_DP;
419 } else if (strcmp(str, "xv") == 0) {
420 vdev->type = XEN_BLOCK_VDEV_TYPE_XVD;
421 } else if (strcmp(str, "h") == 0) {
422 vdev->type = XEN_BLOCK_VDEV_TYPE_HD;
423 } else if (strcmp(str, "s") == 0) {
424 vdev->type = XEN_BLOCK_VDEV_TYPE_SD;
425 } else {
426 goto invalid;
429 if (vdev->type == XEN_BLOCK_VDEV_TYPE_DP) {
430 if (qemu_strtoul(p, &end, 10, &vdev->disk)) {
431 goto invalid;
434 if (*end == 'p') {
435 if (*(++end) == '\0') {
436 goto invalid;
439 } else {
440 if (vbd_name_to_disk(p, &end, &vdev->disk)) {
441 goto invalid;
445 if (*end != '\0') {
446 p = (char *)end;
448 if (qemu_strtoul(p, &end, 10, &vdev->partition)) {
449 goto invalid;
452 if (*end != '\0') {
453 goto invalid;
455 } else {
456 vdev->partition = 0;
459 switch (vdev->type) {
460 case XEN_BLOCK_VDEV_TYPE_DP:
461 case XEN_BLOCK_VDEV_TYPE_XVD:
462 if (vdev->disk < (1 << 4) && vdev->partition < (1 << 4)) {
463 vdev->number = (202 << 8) | (vdev->disk << 4) |
464 vdev->partition;
465 } else if (vdev->disk < (1 << 20) && vdev->partition < (1 << 8)) {
466 vdev->number = (1 << 28) | (vdev->disk << 8) |
467 vdev->partition;
468 } else {
469 goto invalid;
471 break;
473 case XEN_BLOCK_VDEV_TYPE_HD:
474 if ((vdev->disk == 0 || vdev->disk == 1) &&
475 vdev->partition < (1 << 6)) {
476 vdev->number = (3 << 8) | (vdev->disk << 6) | vdev->partition;
477 } else if ((vdev->disk == 2 || vdev->disk == 3) &&
478 vdev->partition < (1 << 6)) {
479 vdev->number = (22 << 8) | ((vdev->disk - 2) << 6) |
480 vdev->partition;
481 } else {
482 goto invalid;
484 break;
486 case XEN_BLOCK_VDEV_TYPE_SD:
487 if (vdev->disk < (1 << 4) && vdev->partition < (1 << 4)) {
488 vdev->number = (8 << 8) | (vdev->disk << 4) | vdev->partition;
489 } else {
490 goto invalid;
492 break;
494 default:
495 goto invalid;
498 g_free(str);
499 return;
501 invalid:
502 error_setg(errp, "invalid virtual disk specifier");
504 vdev->type = XEN_BLOCK_VDEV_TYPE_INVALID;
505 g_free(str);
509 * This property deals with 'vdev' names adhering to the Xen VBD naming
510 * scheme described in:
512 * https://xenbits.xen.org/docs/unstable/man/xen-vbd-interface.7.html
514 const PropertyInfo xen_block_prop_vdev = {
515 .name = "str",
516 .description = "Virtual Disk specifier: d*p*/xvd*/hd*/sd*",
517 .get = xen_block_get_vdev,
518 .set = xen_block_set_vdev,
521 static Property xen_block_props[] = {
522 DEFINE_PROP("vdev", XenBlockDevice, props.vdev,
523 xen_block_prop_vdev, XenBlockVdev),
524 DEFINE_BLOCK_PROPERTIES(XenBlockDevice, props.conf),
525 DEFINE_PROP_UINT32("max-ring-page-order", XenBlockDevice,
526 props.max_ring_page_order, 4),
527 DEFINE_PROP_LINK("iothread", XenBlockDevice, props.iothread,
528 TYPE_IOTHREAD, IOThread *),
529 DEFINE_PROP_END_OF_LIST()
532 static void xen_block_class_init(ObjectClass *class, void *data)
534 DeviceClass *dev_class = DEVICE_CLASS(class);
535 XenDeviceClass *xendev_class = XEN_DEVICE_CLASS(class);
537 xendev_class->backend = "qdisk";
538 xendev_class->device = "vbd";
539 xendev_class->get_name = xen_block_get_name;
540 xendev_class->realize = xen_block_realize;
541 xendev_class->frontend_changed = xen_block_frontend_changed;
542 xendev_class->unrealize = xen_block_unrealize;
544 dev_class->props = xen_block_props;
547 static const TypeInfo xen_block_type_info = {
548 .name = TYPE_XEN_BLOCK_DEVICE,
549 .parent = TYPE_XEN_DEVICE,
550 .instance_size = sizeof(XenBlockDevice),
551 .abstract = true,
552 .class_size = sizeof(XenBlockDeviceClass),
553 .class_init = xen_block_class_init,
556 static void xen_disk_unrealize(XenBlockDevice *blockdev, Error **errp)
558 trace_xen_disk_unrealize();
561 static void xen_disk_realize(XenBlockDevice *blockdev, Error **errp)
563 BlockConf *conf = &blockdev->props.conf;
565 trace_xen_disk_realize();
567 blockdev->device_type = "disk";
569 if (!conf->blk) {
570 error_setg(errp, "drive property not set");
571 return;
574 blockdev->info = blk_is_read_only(conf->blk) ? VDISK_READONLY : 0;
577 static void xen_disk_class_init(ObjectClass *class, void *data)
579 DeviceClass *dev_class = DEVICE_CLASS(class);
580 XenBlockDeviceClass *blockdev_class = XEN_BLOCK_DEVICE_CLASS(class);
582 blockdev_class->realize = xen_disk_realize;
583 blockdev_class->unrealize = xen_disk_unrealize;
585 dev_class->desc = "Xen Disk Device";
588 static const TypeInfo xen_disk_type_info = {
589 .name = TYPE_XEN_DISK_DEVICE,
590 .parent = TYPE_XEN_BLOCK_DEVICE,
591 .instance_size = sizeof(XenDiskDevice),
592 .class_init = xen_disk_class_init,
595 static void xen_cdrom_unrealize(XenBlockDevice *blockdev, Error **errp)
597 trace_xen_cdrom_unrealize();
600 static void xen_cdrom_realize(XenBlockDevice *blockdev, Error **errp)
602 BlockConf *conf = &blockdev->props.conf;
604 trace_xen_cdrom_realize();
606 blockdev->device_type = "cdrom";
608 if (!conf->blk) {
609 int rc;
611 /* Set up an empty drive */
612 conf->blk = blk_new(0, BLK_PERM_ALL);
614 rc = blk_attach_dev(conf->blk, DEVICE(blockdev));
615 if (!rc) {
616 error_setg_errno(errp, -rc, "failed to create drive");
617 return;
621 blockdev->info = VDISK_READONLY | VDISK_CDROM;
624 static void xen_cdrom_class_init(ObjectClass *class, void *data)
626 DeviceClass *dev_class = DEVICE_CLASS(class);
627 XenBlockDeviceClass *blockdev_class = XEN_BLOCK_DEVICE_CLASS(class);
629 blockdev_class->realize = xen_cdrom_realize;
630 blockdev_class->unrealize = xen_cdrom_unrealize;
632 dev_class->desc = "Xen CD-ROM Device";
635 static const TypeInfo xen_cdrom_type_info = {
636 .name = TYPE_XEN_CDROM_DEVICE,
637 .parent = TYPE_XEN_BLOCK_DEVICE,
638 .instance_size = sizeof(XenCDRomDevice),
639 .class_init = xen_cdrom_class_init,
642 static void xen_block_register_types(void)
644 type_register_static(&xen_block_type_info);
645 type_register_static(&xen_disk_type_info);
646 type_register_static(&xen_cdrom_type_info);
649 type_init(xen_block_register_types)
651 static void xen_block_blockdev_del(const char *node_name, Error **errp)
653 trace_xen_block_blockdev_del(node_name);
655 qmp_blockdev_del(node_name, errp);
658 static char *xen_block_blockdev_add(const char *id, QDict *qdict,
659 Error **errp)
661 const char *driver = qdict_get_try_str(qdict, "driver");
662 BlockdevOptions *options = NULL;
663 Error *local_err = NULL;
664 char *node_name;
665 Visitor *v;
667 if (!driver) {
668 error_setg(errp, "no 'driver' parameter");
669 return NULL;
672 node_name = g_strdup_printf("%s-%s", id, driver);
673 qdict_put_str(qdict, "node-name", node_name);
675 trace_xen_block_blockdev_add(node_name);
677 v = qobject_input_visitor_new(QOBJECT(qdict));
678 visit_type_BlockdevOptions(v, NULL, &options, &local_err);
679 visit_free(v);
681 if (local_err) {
682 error_propagate(errp, local_err);
683 goto fail;
686 qmp_blockdev_add(options, &local_err);
688 if (local_err) {
689 error_propagate(errp, local_err);
690 goto fail;
693 qapi_free_BlockdevOptions(options);
695 return node_name;
697 fail:
698 if (options) {
699 qapi_free_BlockdevOptions(options);
701 g_free(node_name);
703 return NULL;
706 static void xen_block_drive_destroy(XenBlockDrive *drive, Error **errp)
708 char *node_name = drive->node_name;
710 if (node_name) {
711 Error *local_err = NULL;
713 xen_block_blockdev_del(node_name, &local_err);
714 if (local_err) {
715 error_propagate(errp, local_err);
716 return;
718 g_free(node_name);
719 drive->node_name = NULL;
721 g_free(drive->id);
722 g_free(drive);
725 static XenBlockDrive *xen_block_drive_create(const char *id,
726 const char *device_type,
727 QDict *opts, Error **errp)
729 const char *params = qdict_get_try_str(opts, "params");
730 const char *mode = qdict_get_try_str(opts, "mode");
731 const char *direct_io_safe = qdict_get_try_str(opts, "direct-io-safe");
732 const char *discard_enable = qdict_get_try_str(opts, "discard-enable");
733 char *driver = NULL;
734 char *filename = NULL;
735 XenBlockDrive *drive = NULL;
736 Error *local_err = NULL;
737 QDict *file_layer;
738 QDict *driver_layer;
740 if (params) {
741 char **v = g_strsplit(params, ":", 2);
743 if (v[1] == NULL) {
744 filename = g_strdup(v[0]);
745 driver = g_strdup("raw");
746 } else {
747 if (strcmp(v[0], "aio") == 0) {
748 driver = g_strdup("raw");
749 } else if (strcmp(v[0], "vhd") == 0) {
750 driver = g_strdup("vpc");
751 } else {
752 driver = g_strdup(v[0]);
754 filename = g_strdup(v[1]);
757 g_strfreev(v);
758 } else {
759 error_setg(errp, "no params");
760 goto done;
763 assert(filename);
764 assert(driver);
766 drive = g_new0(XenBlockDrive, 1);
767 drive->id = g_strdup(id);
769 file_layer = qdict_new();
770 driver_layer = qdict_new();
772 qdict_put_str(file_layer, "driver", "file");
773 qdict_put_str(file_layer, "filename", filename);
774 g_free(filename);
776 if (mode && *mode != 'w') {
777 qdict_put_bool(file_layer, "read-only", true);
780 if (direct_io_safe) {
781 unsigned long value;
783 if (!qemu_strtoul(direct_io_safe, NULL, 2, &value) && !!value) {
784 QDict *cache_qdict = qdict_new();
786 qdict_put_bool(cache_qdict, "direct", true);
787 qdict_put(file_layer, "cache", cache_qdict);
789 qdict_put_str(file_layer, "aio", "native");
793 if (discard_enable) {
794 unsigned long value;
796 if (!qemu_strtoul(discard_enable, NULL, 2, &value) && !!value) {
797 qdict_put_str(file_layer, "discard", "unmap");
798 qdict_put_str(driver_layer, "discard", "unmap");
803 * It is necessary to turn file locking off as an emulated device
804 * may have already opened the same image file.
806 qdict_put_str(file_layer, "locking", "off");
808 qdict_put_str(driver_layer, "driver", driver);
809 g_free(driver);
811 qdict_put(driver_layer, "file", file_layer);
813 g_assert(!drive->node_name);
814 drive->node_name = xen_block_blockdev_add(drive->id, driver_layer,
815 &local_err);
817 qobject_unref(driver_layer);
819 done:
820 if (local_err) {
821 error_propagate(errp, local_err);
822 xen_block_drive_destroy(drive, NULL);
823 return NULL;
826 return drive;
829 static const char *xen_block_drive_get_node_name(XenBlockDrive *drive)
831 return drive->node_name ? drive->node_name : "";
834 static void xen_block_iothread_destroy(XenBlockIOThread *iothread,
835 Error **errp)
837 qmp_object_del(iothread->id, errp);
839 g_free(iothread->id);
840 g_free(iothread);
843 static XenBlockIOThread *xen_block_iothread_create(const char *id,
844 Error **errp)
846 XenBlockIOThread *iothread = g_new(XenBlockIOThread, 1);
847 Error *local_err = NULL;
849 iothread->id = g_strdup(id);
851 qmp_object_add(TYPE_IOTHREAD, id, false, NULL, &local_err);
852 if (local_err) {
853 error_propagate(errp, local_err);
855 g_free(iothread->id);
856 g_free(iothread);
857 return NULL;
860 return iothread;
863 static void xen_block_device_create(XenBackendInstance *backend,
864 QDict *opts, Error **errp)
866 XenBus *xenbus = xen_backend_get_bus(backend);
867 const char *name = xen_backend_get_name(backend);
868 unsigned long number;
869 const char *vdev, *device_type;
870 XenBlockDrive *drive = NULL;
871 XenBlockIOThread *iothread = NULL;
872 XenDevice *xendev = NULL;
873 Error *local_err = NULL;
874 const char *type;
875 XenBlockDevice *blockdev;
877 if (qemu_strtoul(name, NULL, 10, &number)) {
878 error_setg(errp, "failed to parse name '%s'", name);
879 goto fail;
882 trace_xen_block_device_create(number);
884 vdev = qdict_get_try_str(opts, "dev");
885 if (!vdev) {
886 error_setg(errp, "no dev parameter");
887 goto fail;
890 device_type = qdict_get_try_str(opts, "device-type");
891 if (!device_type) {
892 error_setg(errp, "no device-type parameter");
893 goto fail;
896 if (!strcmp(device_type, "disk")) {
897 type = TYPE_XEN_DISK_DEVICE;
898 } else if (!strcmp(device_type, "cdrom")) {
899 type = TYPE_XEN_CDROM_DEVICE;
900 } else {
901 error_setg(errp, "invalid device-type parameter '%s'", device_type);
902 goto fail;
905 drive = xen_block_drive_create(vdev, device_type, opts, &local_err);
906 if (!drive) {
907 error_propagate_prepend(errp, local_err, "failed to create drive: ");
908 goto fail;
911 iothread = xen_block_iothread_create(vdev, &local_err);
912 if (local_err) {
913 error_propagate_prepend(errp, local_err,
914 "failed to create iothread: ");
915 goto fail;
918 xendev = XEN_DEVICE(qdev_create(BUS(xenbus), type));
919 blockdev = XEN_BLOCK_DEVICE(xendev);
921 object_property_set_str(OBJECT(xendev), vdev, "vdev", &local_err);
922 if (local_err) {
923 error_propagate_prepend(errp, local_err, "failed to set 'vdev': ");
924 goto fail;
927 object_property_set_str(OBJECT(xendev),
928 xen_block_drive_get_node_name(drive), "drive",
929 &local_err);
930 if (local_err) {
931 error_propagate_prepend(errp, local_err, "failed to set 'drive': ");
932 goto fail;
935 object_property_set_str(OBJECT(xendev), iothread->id, "iothread",
936 &local_err);
937 if (local_err) {
938 error_propagate_prepend(errp, local_err,
939 "failed to set 'iothread': ");
940 goto fail;
943 blockdev->iothread = iothread;
944 blockdev->drive = drive;
946 object_property_set_bool(OBJECT(xendev), true, "realized", &local_err);
947 if (local_err) {
948 error_propagate_prepend(errp, local_err,
949 "realization of device %s failed: ",
950 type);
951 goto fail;
954 xen_backend_set_device(backend, xendev);
955 return;
957 fail:
958 if (xendev) {
959 object_unparent(OBJECT(xendev));
962 if (iothread) {
963 xen_block_iothread_destroy(iothread, NULL);
966 if (drive) {
967 xen_block_drive_destroy(drive, NULL);
971 static void xen_block_device_destroy(XenBackendInstance *backend,
972 Error **errp)
974 XenDevice *xendev = xen_backend_get_device(backend);
975 XenBlockDevice *blockdev = XEN_BLOCK_DEVICE(xendev);
976 XenBlockVdev *vdev = &blockdev->props.vdev;
977 XenBlockDrive *drive = blockdev->drive;
978 XenBlockIOThread *iothread = blockdev->iothread;
980 trace_xen_block_device_destroy(vdev->number);
982 object_unparent(OBJECT(xendev));
984 if (iothread) {
985 Error *local_err = NULL;
987 xen_block_iothread_destroy(iothread, &local_err);
988 if (local_err) {
989 error_propagate_prepend(errp, local_err,
990 "failed to destroy iothread: ");
991 return;
995 if (drive) {
996 Error *local_err = NULL;
998 xen_block_drive_destroy(drive, &local_err);
999 if (local_err) {
1000 error_propagate_prepend(errp, local_err,
1001 "failed to destroy drive: ");
1006 static const XenBackendInfo xen_block_backend_info = {
1007 .type = "qdisk",
1008 .create = xen_block_device_create,
1009 .destroy = xen_block_device_destroy,
1012 static void xen_block_register_backend(void)
1014 xen_backend_register(&xen_block_backend_info);
1017 xen_backend_init(xen_block_register_backend);