1 // SPDX-License-Identifier: GPL-2.0-only
4 * Copyright (C) 2014 Red Hat, Inc.
5 * Copyright (C) 2015 Arrikto, Inc.
6 * Copyright (C) 2017 Chinamobile, Inc.
9 #include <linux/spinlock.h>
10 #include <linux/module.h>
11 #include <linux/kernel.h>
12 #include <linux/timer.h>
13 #include <linux/parser.h>
14 #include <linux/vmalloc.h>
15 #include <linux/uio_driver.h>
16 #include <linux/xarray.h>
17 #include <linux/stringify.h>
18 #include <linux/bitops.h>
19 #include <linux/highmem.h>
20 #include <linux/configfs.h>
21 #include <linux/mutex.h>
22 #include <linux/workqueue.h>
23 #include <linux/pagemap.h>
24 #include <net/genetlink.h>
25 #include <scsi/scsi_common.h>
26 #include <scsi/scsi_proto.h>
27 #include <target/target_core_base.h>
28 #include <target/target_core_fabric.h>
29 #include <target/target_core_backend.h>
31 #include <linux/target_core_user.h>
38 * Define a shared-memory interface for LIO to pass SCSI commands and
39 * data to userspace for processing. This is to allow backends that
40 * are too complex for in-kernel support to be possible.
42 * It uses the UIO framework to do a lot of the device-creation and
43 * introspection work for us.
45 * See the .h file for how the ring is laid out. Note that while the
46 * command ring is defined, the particulars of the data area are
47 * not. Offset values in the command entry point to other locations
48 * internal to the mmap-ed area. There is separate space outside the
49 * command ring for data buffers. This leaves maximum flexibility for
50 * moving buffer allocations, or even page flipping or other
51 * allocation techniques, without altering the command ring layout.
54 * The user process must be assumed to be malicious. There's no way to
55 * prevent it breaking the command ring protocol if it wants, but in
56 * order to prevent other issues we must only ever read *data* from
57 * the shared memory area, not offsets or sizes. This applies to
58 * command ring entries as well as the mailbox. Extra code needed for
59 * this may have a 'UAM' comment.
62 #define TCMU_TIME_OUT (30 * MSEC_PER_SEC)
64 /* For mailbox plus cmd ring, the size is fixed 8MB */
65 #define MB_CMDR_SIZE_DEF (8 * 1024 * 1024)
66 /* Offset of cmd ring is size of mailbox */
67 #define CMDR_OFF ((__u32)sizeof(struct tcmu_mailbox))
68 #define CMDR_SIZE_DEF (MB_CMDR_SIZE_DEF - CMDR_OFF)
71 * For data area, the default block size is PAGE_SIZE and
72 * the default total size is 256K * PAGE_SIZE.
74 #define DATA_PAGES_PER_BLK_DEF 1
75 #define DATA_AREA_PAGES_DEF (256 * 1024)
77 #define TCMU_MBS_TO_PAGES(_mbs) ((size_t)_mbs << (20 - PAGE_SHIFT))
78 #define TCMU_PAGES_TO_MBS(_pages) (_pages >> (20 - PAGE_SHIFT))
81 * Default number of global data blocks(512K * PAGE_SIZE)
82 * when the unmap thread will be started.
84 #define TCMU_GLOBAL_MAX_PAGES_DEF (512 * 1024)
86 static u8 tcmu_kern_cmd_reply_supported;
87 static u8 tcmu_netlink_blocked;
89 static struct device *tcmu_root_device;
95 #define TCMU_CONFIG_LEN 256
97 static DEFINE_MUTEX(tcmu_nl_cmd_mutex);
98 static LIST_HEAD(tcmu_nl_cmd_list);
103 /* wake up thread waiting for reply */
104 struct completion complete;
105 struct list_head nl_list;
106 struct tcmu_dev *udev;
112 struct list_head node;
115 struct se_device se_dev;
116 struct se_dev_plug se_plug;
121 #define TCMU_DEV_BIT_OPEN 0
122 #define TCMU_DEV_BIT_BROKEN 1
123 #define TCMU_DEV_BIT_BLOCKED 2
124 #define TCMU_DEV_BIT_TMR_NOTIFY 3
125 #define TCMU_DEV_BIT_PLUGGED 4
128 struct uio_info uio_info;
134 struct tcmu_mailbox *mb_addr;
137 u32 cmdr_last_cleaned;
138 /* Offset of data area from start of mb */
139 /* Must add data_off and mb_addr to get the address */
145 struct mutex cmdr_lock;
146 struct list_head qfull_queue;
147 struct list_head tmr_queue;
151 unsigned long *data_bitmap;
152 struct xarray data_pages;
153 uint32_t data_pages_per_blk;
154 uint32_t data_blk_size;
156 struct xarray commands;
158 struct timer_list cmd_timer;
159 unsigned int cmd_time_out;
160 struct list_head inflight_queue;
162 struct timer_list qfull_timer;
165 struct list_head timedout_entry;
167 struct tcmu_nl_cmd curr_nl_cmd;
169 char dev_config[TCMU_CONFIG_LEN];
171 int nl_reply_supported;
174 #define TCMU_DEV(_se_dev) container_of(_se_dev, struct tcmu_dev, se_dev)
177 struct se_cmd *se_cmd;
178 struct tcmu_dev *tcmu_dev;
179 struct list_head queue_entry;
183 /* Can't use se_cmd when cleaning up expired cmds, because if
184 cmd has been completed then accessing se_cmd is off limits */
186 uint32_t dbi_bidi_cnt;
190 uint32_t data_len_bidi;
192 unsigned long deadline;
194 #define TCMU_CMD_BIT_EXPIRED 0
195 #define TCMU_CMD_BIT_KEEP_BUF 1
200 struct list_head queue_entry;
203 uint32_t tmr_cmd_cnt;
204 int16_t tmr_cmd_ids[];
208 * To avoid dead lock the mutex lock order should always be:
210 * mutex_lock(&root_udev_mutex);
212 * mutex_lock(&tcmu_dev->cmdr_lock);
213 * mutex_unlock(&tcmu_dev->cmdr_lock);
215 * mutex_unlock(&root_udev_mutex);
217 static DEFINE_MUTEX(root_udev_mutex);
218 static LIST_HEAD(root_udev);
220 static DEFINE_SPINLOCK(timed_out_udevs_lock);
221 static LIST_HEAD(timed_out_udevs);
223 static struct kmem_cache *tcmu_cmd_cache;
225 static atomic_t global_page_count = ATOMIC_INIT(0);
226 static struct delayed_work tcmu_unmap_work;
227 static int tcmu_global_max_pages = TCMU_GLOBAL_MAX_PAGES_DEF;
229 static int tcmu_set_global_max_data_area(const char *str,
230 const struct kernel_param *kp)
232 int ret, max_area_mb;
234 ret = kstrtoint(str, 10, &max_area_mb);
238 if (max_area_mb <= 0) {
239 pr_err("global_max_data_area must be larger than 0.\n");
243 tcmu_global_max_pages = TCMU_MBS_TO_PAGES(max_area_mb);
244 if (atomic_read(&global_page_count) > tcmu_global_max_pages)
245 schedule_delayed_work(&tcmu_unmap_work, 0);
247 cancel_delayed_work_sync(&tcmu_unmap_work);
252 static int tcmu_get_global_max_data_area(char *buffer,
253 const struct kernel_param *kp)
255 return sprintf(buffer, "%d\n", TCMU_PAGES_TO_MBS(tcmu_global_max_pages));
258 static const struct kernel_param_ops tcmu_global_max_data_area_op = {
259 .set = tcmu_set_global_max_data_area,
260 .get = tcmu_get_global_max_data_area,
263 module_param_cb(global_max_data_area_mb, &tcmu_global_max_data_area_op, NULL,
265 MODULE_PARM_DESC(global_max_data_area_mb,
266 "Max MBs allowed to be allocated to all the tcmu device's "
269 static int tcmu_get_block_netlink(char *buffer,
270 const struct kernel_param *kp)
272 return sprintf(buffer, "%s\n", tcmu_netlink_blocked ?
273 "blocked" : "unblocked");
276 static int tcmu_set_block_netlink(const char *str,
277 const struct kernel_param *kp)
282 ret = kstrtou8(str, 0, &val);
287 pr_err("Invalid block netlink value %u\n", val);
291 tcmu_netlink_blocked = val;
295 static const struct kernel_param_ops tcmu_block_netlink_op = {
296 .set = tcmu_set_block_netlink,
297 .get = tcmu_get_block_netlink,
300 module_param_cb(block_netlink, &tcmu_block_netlink_op, NULL, S_IWUSR | S_IRUGO);
301 MODULE_PARM_DESC(block_netlink, "Block new netlink commands.");
303 static int tcmu_fail_netlink_cmd(struct tcmu_nl_cmd *nl_cmd)
305 struct tcmu_dev *udev = nl_cmd->udev;
307 if (!tcmu_netlink_blocked) {
308 pr_err("Could not reset device's netlink interface. Netlink is not blocked.\n");
312 if (nl_cmd->cmd != TCMU_CMD_UNSPEC) {
313 pr_debug("Aborting nl cmd %d on %s\n", nl_cmd->cmd, udev->name);
314 nl_cmd->status = -EINTR;
315 list_del(&nl_cmd->nl_list);
316 complete(&nl_cmd->complete);
321 static int tcmu_set_reset_netlink(const char *str,
322 const struct kernel_param *kp)
324 struct tcmu_nl_cmd *nl_cmd, *tmp_cmd;
328 ret = kstrtou8(str, 0, &val);
333 pr_err("Invalid reset netlink value %u\n", val);
337 mutex_lock(&tcmu_nl_cmd_mutex);
338 list_for_each_entry_safe(nl_cmd, tmp_cmd, &tcmu_nl_cmd_list, nl_list) {
339 ret = tcmu_fail_netlink_cmd(nl_cmd);
343 mutex_unlock(&tcmu_nl_cmd_mutex);
348 static const struct kernel_param_ops tcmu_reset_netlink_op = {
349 .set = tcmu_set_reset_netlink,
352 module_param_cb(reset_netlink, &tcmu_reset_netlink_op, NULL, S_IWUSR);
353 MODULE_PARM_DESC(reset_netlink, "Reset netlink commands.");
355 /* multicast group */
356 enum tcmu_multicast_groups {
360 static const struct genl_multicast_group tcmu_mcgrps[] = {
361 [TCMU_MCGRP_CONFIG] = { .name = "config", },
364 static struct nla_policy tcmu_attr_policy[TCMU_ATTR_MAX+1] = {
365 [TCMU_ATTR_DEVICE] = { .type = NLA_STRING },
366 [TCMU_ATTR_MINOR] = { .type = NLA_U32 },
367 [TCMU_ATTR_CMD_STATUS] = { .type = NLA_S32 },
368 [TCMU_ATTR_DEVICE_ID] = { .type = NLA_U32 },
369 [TCMU_ATTR_SUPP_KERN_CMD_REPLY] = { .type = NLA_U8 },
372 static int tcmu_genl_cmd_done(struct genl_info *info, int completed_cmd)
374 struct tcmu_dev *udev = NULL;
375 struct tcmu_nl_cmd *nl_cmd;
376 int dev_id, rc, ret = 0;
378 if (!info->attrs[TCMU_ATTR_CMD_STATUS] ||
379 !info->attrs[TCMU_ATTR_DEVICE_ID]) {
380 printk(KERN_ERR "TCMU_ATTR_CMD_STATUS or TCMU_ATTR_DEVICE_ID not set, doing nothing\n");
384 dev_id = nla_get_u32(info->attrs[TCMU_ATTR_DEVICE_ID]);
385 rc = nla_get_s32(info->attrs[TCMU_ATTR_CMD_STATUS]);
387 mutex_lock(&tcmu_nl_cmd_mutex);
388 list_for_each_entry(nl_cmd, &tcmu_nl_cmd_list, nl_list) {
389 if (nl_cmd->udev->se_dev.dev_index == dev_id) {
396 pr_err("tcmu nl cmd %u/%d completion could not find device with dev id %u.\n",
397 completed_cmd, rc, dev_id);
401 list_del(&nl_cmd->nl_list);
403 pr_debug("%s genl cmd done got id %d curr %d done %d rc %d stat %d\n",
404 udev->name, dev_id, nl_cmd->cmd, completed_cmd, rc,
407 if (nl_cmd->cmd != completed_cmd) {
408 pr_err("Mismatched commands on %s (Expecting reply for %d. Current %d).\n",
409 udev->name, completed_cmd, nl_cmd->cmd);
415 complete(&nl_cmd->complete);
417 mutex_unlock(&tcmu_nl_cmd_mutex);
421 static int tcmu_genl_rm_dev_done(struct sk_buff *skb, struct genl_info *info)
423 return tcmu_genl_cmd_done(info, TCMU_CMD_REMOVED_DEVICE);
426 static int tcmu_genl_add_dev_done(struct sk_buff *skb, struct genl_info *info)
428 return tcmu_genl_cmd_done(info, TCMU_CMD_ADDED_DEVICE);
431 static int tcmu_genl_reconfig_dev_done(struct sk_buff *skb,
432 struct genl_info *info)
434 return tcmu_genl_cmd_done(info, TCMU_CMD_RECONFIG_DEVICE);
437 static int tcmu_genl_set_features(struct sk_buff *skb, struct genl_info *info)
439 if (info->attrs[TCMU_ATTR_SUPP_KERN_CMD_REPLY]) {
440 tcmu_kern_cmd_reply_supported =
441 nla_get_u8(info->attrs[TCMU_ATTR_SUPP_KERN_CMD_REPLY]);
442 printk(KERN_INFO "tcmu daemon: command reply support %u.\n",
443 tcmu_kern_cmd_reply_supported);
449 static const struct genl_small_ops tcmu_genl_ops[] = {
451 .cmd = TCMU_CMD_SET_FEATURES,
452 .validate = GENL_DONT_VALIDATE_STRICT | GENL_DONT_VALIDATE_DUMP,
453 .flags = GENL_ADMIN_PERM,
454 .doit = tcmu_genl_set_features,
457 .cmd = TCMU_CMD_ADDED_DEVICE_DONE,
458 .validate = GENL_DONT_VALIDATE_STRICT | GENL_DONT_VALIDATE_DUMP,
459 .flags = GENL_ADMIN_PERM,
460 .doit = tcmu_genl_add_dev_done,
463 .cmd = TCMU_CMD_REMOVED_DEVICE_DONE,
464 .validate = GENL_DONT_VALIDATE_STRICT | GENL_DONT_VALIDATE_DUMP,
465 .flags = GENL_ADMIN_PERM,
466 .doit = tcmu_genl_rm_dev_done,
469 .cmd = TCMU_CMD_RECONFIG_DEVICE_DONE,
470 .validate = GENL_DONT_VALIDATE_STRICT | GENL_DONT_VALIDATE_DUMP,
471 .flags = GENL_ADMIN_PERM,
472 .doit = tcmu_genl_reconfig_dev_done,
476 /* Our generic netlink family */
477 static struct genl_family tcmu_genl_family __ro_after_init = {
478 .module = THIS_MODULE,
482 .maxattr = TCMU_ATTR_MAX,
483 .policy = tcmu_attr_policy,
484 .mcgrps = tcmu_mcgrps,
485 .n_mcgrps = ARRAY_SIZE(tcmu_mcgrps),
487 .small_ops = tcmu_genl_ops,
488 .n_small_ops = ARRAY_SIZE(tcmu_genl_ops),
491 #define tcmu_cmd_set_dbi_cur(cmd, index) ((cmd)->dbi_cur = (index))
492 #define tcmu_cmd_reset_dbi_cur(cmd) tcmu_cmd_set_dbi_cur(cmd, 0)
493 #define tcmu_cmd_set_dbi(cmd, index) ((cmd)->dbi[(cmd)->dbi_cur++] = (index))
494 #define tcmu_cmd_get_dbi(cmd) ((cmd)->dbi[(cmd)->dbi_cur++])
496 static void tcmu_cmd_free_data(struct tcmu_cmd *tcmu_cmd, uint32_t len)
498 struct tcmu_dev *udev = tcmu_cmd->tcmu_dev;
501 for (i = 0; i < len; i++)
502 clear_bit(tcmu_cmd->dbi[i], udev->data_bitmap);
505 static inline int tcmu_get_empty_block(struct tcmu_dev *udev,
506 struct tcmu_cmd *tcmu_cmd,
507 int prev_dbi, int length, int *iov_cnt)
509 XA_STATE(xas, &udev->data_pages, 0);
511 int i, cnt, dbi, dpi;
512 int page_cnt = DIV_ROUND_UP(length, PAGE_SIZE);
514 dbi = find_first_zero_bit(udev->data_bitmap, udev->dbi_thresh);
515 if (dbi == udev->dbi_thresh)
518 dpi = dbi * udev->data_pages_per_blk;
519 /* Count the number of already allocated pages */
522 for (cnt = 0; xas_next(&xas) && cnt < page_cnt;)
526 for (i = cnt; i < page_cnt; i++) {
527 /* try to get new zeroed page from the mm */
528 page = alloc_page(GFP_NOIO | __GFP_ZERO);
532 if (xa_store(&udev->data_pages, dpi + i, page, GFP_NOIO)) {
537 if (atomic_add_return(i - cnt, &global_page_count) >
538 tcmu_global_max_pages)
539 schedule_delayed_work(&tcmu_unmap_work, 0);
541 if (i && dbi > udev->dbi_max)
544 set_bit(dbi, udev->data_bitmap);
545 tcmu_cmd_set_dbi(tcmu_cmd, dbi);
547 if (dbi != prev_dbi + 1)
550 return i == page_cnt ? dbi : -1;
553 static int tcmu_get_empty_blocks(struct tcmu_dev *udev,
554 struct tcmu_cmd *tcmu_cmd, int length)
556 /* start value of dbi + 1 must not be a valid dbi */
558 int blk_data_len, iov_cnt = 0;
559 uint32_t blk_size = udev->data_blk_size;
561 for (; length > 0; length -= blk_size) {
562 blk_data_len = min_t(uint32_t, length, blk_size);
563 dbi = tcmu_get_empty_block(udev, tcmu_cmd, dbi, blk_data_len,
571 static inline void tcmu_free_cmd(struct tcmu_cmd *tcmu_cmd)
573 kfree(tcmu_cmd->dbi);
574 kmem_cache_free(tcmu_cmd_cache, tcmu_cmd);
577 static inline void tcmu_cmd_set_block_cnts(struct tcmu_cmd *cmd)
580 struct se_cmd *se_cmd = cmd->se_cmd;
581 uint32_t blk_size = cmd->tcmu_dev->data_blk_size;
583 cmd->dbi_cnt = DIV_ROUND_UP(se_cmd->data_length, blk_size);
585 if (se_cmd->se_cmd_flags & SCF_BIDI) {
586 BUG_ON(!(se_cmd->t_bidi_data_sg && se_cmd->t_bidi_data_nents));
587 for (i = 0, len = 0; i < se_cmd->t_bidi_data_nents; i++)
588 len += se_cmd->t_bidi_data_sg[i].length;
589 cmd->dbi_bidi_cnt = DIV_ROUND_UP(len, blk_size);
590 cmd->dbi_cnt += cmd->dbi_bidi_cnt;
591 cmd->data_len_bidi = len;
595 static int new_block_to_iov(struct tcmu_dev *udev, struct tcmu_cmd *cmd,
596 struct iovec **iov, int prev_dbi, int len)
598 /* Get the next dbi */
599 int dbi = tcmu_cmd_get_dbi(cmd);
601 /* Do not add more than udev->data_blk_size to iov */
602 len = min_t(int, len, udev->data_blk_size);
605 * The following code will gather and map the blocks to the same iovec
606 * when the blocks are all next to each other.
608 if (dbi != prev_dbi + 1) {
609 /* dbi is not next to previous dbi, so start new iov */
612 /* write offset relative to mb_addr */
613 (*iov)->iov_base = (void __user *)
614 (udev->data_off + dbi * udev->data_blk_size);
616 (*iov)->iov_len += len;
621 static void tcmu_setup_iovs(struct tcmu_dev *udev, struct tcmu_cmd *cmd,
622 struct iovec **iov, int data_length)
624 /* start value of dbi + 1 must not be a valid dbi */
627 /* We prepare the IOVs for DMA_FROM_DEVICE transfer direction */
628 for (; data_length > 0; data_length -= udev->data_blk_size)
629 dbi = new_block_to_iov(udev, cmd, iov, dbi, data_length);
632 static struct tcmu_cmd *tcmu_alloc_cmd(struct se_cmd *se_cmd)
634 struct se_device *se_dev = se_cmd->se_dev;
635 struct tcmu_dev *udev = TCMU_DEV(se_dev);
636 struct tcmu_cmd *tcmu_cmd;
638 tcmu_cmd = kmem_cache_zalloc(tcmu_cmd_cache, GFP_NOIO);
642 INIT_LIST_HEAD(&tcmu_cmd->queue_entry);
643 tcmu_cmd->se_cmd = se_cmd;
644 tcmu_cmd->tcmu_dev = udev;
646 tcmu_cmd_set_block_cnts(tcmu_cmd);
647 tcmu_cmd->dbi = kcalloc(tcmu_cmd->dbi_cnt, sizeof(uint32_t),
649 if (!tcmu_cmd->dbi) {
650 kmem_cache_free(tcmu_cmd_cache, tcmu_cmd);
657 static inline void tcmu_flush_dcache_range(void *vaddr, size_t size)
659 unsigned long offset = offset_in_page(vaddr);
660 void *start = vaddr - offset;
662 size = round_up(size+offset, PAGE_SIZE);
665 flush_dcache_page(vmalloc_to_page(start));
672 * Some ring helper functions. We don't assume size is a power of 2 so
673 * we can't use circ_buf.h.
675 static inline size_t spc_used(size_t head, size_t tail, size_t size)
677 int diff = head - tail;
685 static inline size_t spc_free(size_t head, size_t tail, size_t size)
687 /* Keep 1 byte unused or we can't tell full from empty */
688 return (size - spc_used(head, tail, size) - 1);
691 static inline size_t head_to_end(size_t head, size_t size)
696 #define UPDATE_HEAD(head, used, size) smp_store_release(&head, ((head % size) + used) % size)
698 #define TCMU_SG_TO_DATA_AREA 1
699 #define TCMU_DATA_AREA_TO_SG 2
701 static inline void tcmu_copy_data(struct tcmu_dev *udev,
702 struct tcmu_cmd *tcmu_cmd, uint32_t direction,
703 struct scatterlist *sg, unsigned int sg_nents,
704 struct iovec **iov, size_t data_len)
706 /* start value of dbi + 1 must not be a valid dbi */
708 size_t page_remaining, cp_len;
709 int page_cnt, page_inx, dpi;
710 struct sg_mapping_iter sg_iter;
711 unsigned int sg_flags;
713 void *data_page_start, *data_addr;
715 if (direction == TCMU_SG_TO_DATA_AREA)
716 sg_flags = SG_MITER_ATOMIC | SG_MITER_FROM_SG;
718 sg_flags = SG_MITER_ATOMIC | SG_MITER_TO_SG;
719 sg_miter_start(&sg_iter, sg, sg_nents, sg_flags);
722 if (direction == TCMU_SG_TO_DATA_AREA)
723 dbi = new_block_to_iov(udev, tcmu_cmd, iov, dbi,
726 dbi = tcmu_cmd_get_dbi(tcmu_cmd);
728 page_cnt = DIV_ROUND_UP(data_len, PAGE_SIZE);
729 if (page_cnt > udev->data_pages_per_blk)
730 page_cnt = udev->data_pages_per_blk;
732 dpi = dbi * udev->data_pages_per_blk;
733 for (page_inx = 0; page_inx < page_cnt && data_len;
735 page = xa_load(&udev->data_pages, dpi);
737 if (direction == TCMU_DATA_AREA_TO_SG)
738 flush_dcache_page(page);
739 data_page_start = kmap_atomic(page);
740 page_remaining = PAGE_SIZE;
742 while (page_remaining && data_len) {
743 if (!sg_miter_next(&sg_iter)) {
744 /* set length to 0 to abort outer loop */
746 pr_debug("%s: aborting data copy due to exhausted sg_list\n",
750 cp_len = min3(sg_iter.length, page_remaining,
753 data_addr = data_page_start +
754 PAGE_SIZE - page_remaining;
755 if (direction == TCMU_SG_TO_DATA_AREA)
756 memcpy(data_addr, sg_iter.addr, cp_len);
758 memcpy(sg_iter.addr, data_addr, cp_len);
761 page_remaining -= cp_len;
762 sg_iter.consumed = cp_len;
764 sg_miter_stop(&sg_iter);
766 kunmap_atomic(data_page_start);
767 if (direction == TCMU_SG_TO_DATA_AREA)
768 flush_dcache_page(page);
773 static void scatter_data_area(struct tcmu_dev *udev, struct tcmu_cmd *tcmu_cmd,
776 struct se_cmd *se_cmd = tcmu_cmd->se_cmd;
778 tcmu_copy_data(udev, tcmu_cmd, TCMU_SG_TO_DATA_AREA, se_cmd->t_data_sg,
779 se_cmd->t_data_nents, iov, se_cmd->data_length);
782 static void gather_data_area(struct tcmu_dev *udev, struct tcmu_cmd *tcmu_cmd,
783 bool bidi, uint32_t read_len)
785 struct se_cmd *se_cmd = tcmu_cmd->se_cmd;
786 struct scatterlist *data_sg;
787 unsigned int data_nents;
790 data_sg = se_cmd->t_data_sg;
791 data_nents = se_cmd->t_data_nents;
794 * For bidi case, the first count blocks are for Data-Out
795 * buffer blocks, and before gathering the Data-In buffer
796 * the Data-Out buffer blocks should be skipped.
798 tcmu_cmd_set_dbi_cur(tcmu_cmd,
799 tcmu_cmd->dbi_cnt - tcmu_cmd->dbi_bidi_cnt);
801 data_sg = se_cmd->t_bidi_data_sg;
802 data_nents = se_cmd->t_bidi_data_nents;
805 tcmu_copy_data(udev, tcmu_cmd, TCMU_DATA_AREA_TO_SG, data_sg,
806 data_nents, NULL, read_len);
809 static inline size_t spc_bitmap_free(unsigned long *bitmap, uint32_t thresh)
811 return thresh - bitmap_weight(bitmap, thresh);
815 * We can't queue a command until we have space available on the cmd ring.
817 * Called with ring lock held.
819 static bool is_ring_space_avail(struct tcmu_dev *udev, size_t cmd_size)
821 struct tcmu_mailbox *mb = udev->mb_addr;
822 size_t space, cmd_needed;
825 tcmu_flush_dcache_range(mb, sizeof(*mb));
827 cmd_head = mb->cmd_head % udev->cmdr_size; /* UAM */
830 * If cmd end-of-ring space is too small then we need space for a NOP plus
831 * original cmd - cmds are internally contiguous.
833 if (head_to_end(cmd_head, udev->cmdr_size) >= cmd_size)
834 cmd_needed = cmd_size;
836 cmd_needed = cmd_size + head_to_end(cmd_head, udev->cmdr_size);
838 space = spc_free(cmd_head, udev->cmdr_last_cleaned, udev->cmdr_size);
839 if (space < cmd_needed) {
840 pr_debug("no cmd space: %u %u %u\n", cmd_head,
841 udev->cmdr_last_cleaned, udev->cmdr_size);
848 * We have to allocate data buffers before we can queue a command.
849 * Returns -1 on error (not enough space) or number of needed iovs on success
851 * Called with ring lock held.
853 static int tcmu_alloc_data_space(struct tcmu_dev *udev, struct tcmu_cmd *cmd,
856 int space, iov_cnt = 0, ret = 0;
861 /* try to check and get the data blocks as needed */
862 space = spc_bitmap_free(udev->data_bitmap, udev->dbi_thresh);
863 if (space < cmd->dbi_cnt) {
864 unsigned long blocks_left =
865 (udev->max_blocks - udev->dbi_thresh) + space;
867 if (blocks_left < cmd->dbi_cnt) {
868 pr_debug("no data space: only %lu available, but ask for %u\n",
869 blocks_left * udev->data_blk_size,
870 cmd->dbi_cnt * udev->data_blk_size);
874 udev->dbi_thresh += cmd->dbi_cnt;
875 if (udev->dbi_thresh > udev->max_blocks)
876 udev->dbi_thresh = udev->max_blocks;
879 iov_cnt = tcmu_get_empty_blocks(udev, cmd, cmd->se_cmd->data_length);
883 if (cmd->dbi_bidi_cnt) {
884 ret = tcmu_get_empty_blocks(udev, cmd, cmd->data_len_bidi);
890 return iov_cnt + ret;
893 static inline size_t tcmu_cmd_get_base_cmd_size(size_t iov_cnt)
895 return max(offsetof(struct tcmu_cmd_entry, req.iov[iov_cnt]),
896 sizeof(struct tcmu_cmd_entry));
899 static inline size_t tcmu_cmd_get_cmd_size(struct tcmu_cmd *tcmu_cmd,
900 size_t base_command_size)
902 struct se_cmd *se_cmd = tcmu_cmd->se_cmd;
905 command_size = base_command_size +
906 round_up(scsi_command_size(se_cmd->t_task_cdb),
909 WARN_ON(command_size & (TCMU_OP_ALIGN_SIZE-1));
914 static void tcmu_setup_cmd_timer(struct tcmu_cmd *tcmu_cmd, unsigned int tmo,
915 struct timer_list *timer)
920 tcmu_cmd->deadline = round_jiffies_up(jiffies + msecs_to_jiffies(tmo));
921 if (!timer_pending(timer))
922 mod_timer(timer, tcmu_cmd->deadline);
924 pr_debug("Timeout set up for cmd %p, dev = %s, tmo = %lu\n", tcmu_cmd,
925 tcmu_cmd->tcmu_dev->name, tmo / MSEC_PER_SEC);
928 static int add_to_qfull_queue(struct tcmu_cmd *tcmu_cmd)
930 struct tcmu_dev *udev = tcmu_cmd->tcmu_dev;
934 * For backwards compat if qfull_time_out is not set use
935 * cmd_time_out and if that's not set use the default time out.
937 if (!udev->qfull_time_out)
939 else if (udev->qfull_time_out > 0)
940 tmo = udev->qfull_time_out;
941 else if (udev->cmd_time_out)
942 tmo = udev->cmd_time_out;
946 tcmu_setup_cmd_timer(tcmu_cmd, tmo, &udev->qfull_timer);
948 list_add_tail(&tcmu_cmd->queue_entry, &udev->qfull_queue);
949 pr_debug("adding cmd %p on dev %s to ring space wait queue\n",
950 tcmu_cmd, udev->name);
954 static uint32_t ring_insert_padding(struct tcmu_dev *udev, size_t cmd_size)
956 struct tcmu_cmd_entry_hdr *hdr;
957 struct tcmu_mailbox *mb = udev->mb_addr;
958 uint32_t cmd_head = mb->cmd_head % udev->cmdr_size; /* UAM */
960 /* Insert a PAD if end-of-ring space is too small */
961 if (head_to_end(cmd_head, udev->cmdr_size) < cmd_size) {
962 size_t pad_size = head_to_end(cmd_head, udev->cmdr_size);
964 hdr = udev->cmdr + cmd_head;
965 tcmu_hdr_set_op(&hdr->len_op, TCMU_OP_PAD);
966 tcmu_hdr_set_len(&hdr->len_op, pad_size);
967 hdr->cmd_id = 0; /* not used for PAD */
970 tcmu_flush_dcache_range(hdr, sizeof(*hdr));
972 UPDATE_HEAD(mb->cmd_head, pad_size, udev->cmdr_size);
973 tcmu_flush_dcache_range(mb, sizeof(*mb));
975 cmd_head = mb->cmd_head % udev->cmdr_size; /* UAM */
976 WARN_ON(cmd_head != 0);
982 static void tcmu_unplug_device(struct se_dev_plug *se_plug)
984 struct se_device *se_dev = se_plug->se_dev;
985 struct tcmu_dev *udev = TCMU_DEV(se_dev);
987 clear_bit(TCMU_DEV_BIT_PLUGGED, &udev->flags);
988 uio_event_notify(&udev->uio_info);
991 static struct se_dev_plug *tcmu_plug_device(struct se_device *se_dev)
993 struct tcmu_dev *udev = TCMU_DEV(se_dev);
995 if (!test_and_set_bit(TCMU_DEV_BIT_PLUGGED, &udev->flags))
996 return &udev->se_plug;
1002 * queue_cmd_ring - queue cmd to ring or internally
1003 * @tcmu_cmd: cmd to queue
1004 * @scsi_err: TCM error code if failure (-1) returned.
1007 * -1 we cannot queue internally or to the ring.
1009 * 1 internally queued to wait for ring memory to free.
1011 static int queue_cmd_ring(struct tcmu_cmd *tcmu_cmd, sense_reason_t *scsi_err)
1013 struct tcmu_dev *udev = tcmu_cmd->tcmu_dev;
1014 struct se_cmd *se_cmd = tcmu_cmd->se_cmd;
1015 size_t base_command_size, command_size;
1016 struct tcmu_mailbox *mb = udev->mb_addr;
1017 struct tcmu_cmd_entry *entry;
1019 int iov_cnt, iov_bidi_cnt;
1020 uint32_t cmd_id, cmd_head;
1022 uint32_t blk_size = udev->data_blk_size;
1023 /* size of data buffer needed */
1024 size_t data_length = (size_t)tcmu_cmd->dbi_cnt * blk_size;
1026 *scsi_err = TCM_NO_SENSE;
1028 if (test_bit(TCMU_DEV_BIT_BLOCKED, &udev->flags)) {
1029 *scsi_err = TCM_LUN_BUSY;
1033 if (test_bit(TCMU_DEV_BIT_BROKEN, &udev->flags)) {
1034 *scsi_err = TCM_LOGICAL_UNIT_COMMUNICATION_FAILURE;
1038 if (!list_empty(&udev->qfull_queue))
1041 if (data_length > (size_t)udev->max_blocks * blk_size) {
1042 pr_warn("TCMU: Request of size %zu is too big for %zu data area\n",
1043 data_length, (size_t)udev->max_blocks * blk_size);
1044 *scsi_err = TCM_INVALID_CDB_FIELD;
1048 iov_cnt = tcmu_alloc_data_space(udev, tcmu_cmd, &iov_bidi_cnt);
1050 goto free_and_queue;
1053 * Must be a certain minimum size for response sense info, but
1054 * also may be larger if the iov array is large.
1056 base_command_size = tcmu_cmd_get_base_cmd_size(iov_cnt);
1057 command_size = tcmu_cmd_get_cmd_size(tcmu_cmd, base_command_size);
1059 if (command_size > (udev->cmdr_size / 2)) {
1060 pr_warn("TCMU: Request of size %zu is too big for %u cmd ring\n",
1061 command_size, udev->cmdr_size);
1062 tcmu_cmd_free_data(tcmu_cmd, tcmu_cmd->dbi_cur);
1063 *scsi_err = TCM_INVALID_CDB_FIELD;
1067 if (!is_ring_space_avail(udev, command_size))
1069 * Don't leave commands partially setup because the unmap
1070 * thread might need the blocks to make forward progress.
1072 goto free_and_queue;
1074 if (xa_alloc(&udev->commands, &cmd_id, tcmu_cmd, XA_LIMIT(1, 0xffff),
1076 pr_err("tcmu: Could not allocate cmd id.\n");
1078 tcmu_cmd_free_data(tcmu_cmd, tcmu_cmd->dbi_cnt);
1079 *scsi_err = TCM_OUT_OF_RESOURCES;
1082 tcmu_cmd->cmd_id = cmd_id;
1084 pr_debug("allocated cmd id %u for cmd %p dev %s\n", tcmu_cmd->cmd_id,
1085 tcmu_cmd, udev->name);
1087 cmd_head = ring_insert_padding(udev, command_size);
1089 entry = udev->cmdr + cmd_head;
1090 memset(entry, 0, command_size);
1091 tcmu_hdr_set_op(&entry->hdr.len_op, TCMU_OP_CMD);
1093 /* prepare iov list and copy data to data area if necessary */
1094 tcmu_cmd_reset_dbi_cur(tcmu_cmd);
1095 iov = &entry->req.iov[0];
1097 if (se_cmd->data_direction == DMA_TO_DEVICE ||
1098 se_cmd->se_cmd_flags & SCF_BIDI)
1099 scatter_data_area(udev, tcmu_cmd, &iov);
1101 tcmu_setup_iovs(udev, tcmu_cmd, &iov, se_cmd->data_length);
1103 entry->req.iov_cnt = iov_cnt - iov_bidi_cnt;
1105 /* Handle BIDI commands */
1106 if (se_cmd->se_cmd_flags & SCF_BIDI) {
1108 tcmu_setup_iovs(udev, tcmu_cmd, &iov, tcmu_cmd->data_len_bidi);
1109 entry->req.iov_bidi_cnt = iov_bidi_cnt;
1112 tcmu_setup_cmd_timer(tcmu_cmd, udev->cmd_time_out, &udev->cmd_timer);
1114 entry->hdr.cmd_id = tcmu_cmd->cmd_id;
1116 tcmu_hdr_set_len(&entry->hdr.len_op, command_size);
1118 /* All offsets relative to mb_addr, not start of entry! */
1119 cdb_off = CMDR_OFF + cmd_head + base_command_size;
1120 memcpy((void *) mb + cdb_off, se_cmd->t_task_cdb, scsi_command_size(se_cmd->t_task_cdb));
1121 entry->req.cdb_off = cdb_off;
1122 tcmu_flush_dcache_range(entry, command_size);
1124 UPDATE_HEAD(mb->cmd_head, command_size, udev->cmdr_size);
1125 tcmu_flush_dcache_range(mb, sizeof(*mb));
1127 list_add_tail(&tcmu_cmd->queue_entry, &udev->inflight_queue);
1129 if (!test_bit(TCMU_DEV_BIT_PLUGGED, &udev->flags))
1130 uio_event_notify(&udev->uio_info);
1135 tcmu_cmd_free_data(tcmu_cmd, tcmu_cmd->dbi_cur);
1136 tcmu_cmd_reset_dbi_cur(tcmu_cmd);
1139 if (add_to_qfull_queue(tcmu_cmd)) {
1140 *scsi_err = TCM_OUT_OF_RESOURCES;
1148 * queue_tmr_ring - queue tmr info to ring or internally
1149 * @udev: related tcmu_dev
1150 * @tmr: tcmu_tmr containing tmr info to queue
1154 * 1 internally queued to wait for ring memory to free.
1157 queue_tmr_ring(struct tcmu_dev *udev, struct tcmu_tmr *tmr)
1159 struct tcmu_tmr_entry *entry;
1162 struct tcmu_mailbox *mb = udev->mb_addr;
1165 if (test_bit(TCMU_DEV_BIT_BROKEN, &udev->flags))
1168 id_list_sz = sizeof(tmr->tmr_cmd_ids[0]) * tmr->tmr_cmd_cnt;
1169 cmd_size = round_up(sizeof(*entry) + id_list_sz, TCMU_OP_ALIGN_SIZE);
1171 if (!list_empty(&udev->tmr_queue) ||
1172 !is_ring_space_avail(udev, cmd_size)) {
1173 list_add_tail(&tmr->queue_entry, &udev->tmr_queue);
1174 pr_debug("adding tmr %p on dev %s to TMR ring space wait queue\n",
1179 cmd_head = ring_insert_padding(udev, cmd_size);
1181 entry = udev->cmdr + cmd_head;
1182 memset(entry, 0, cmd_size);
1183 tcmu_hdr_set_op(&entry->hdr.len_op, TCMU_OP_TMR);
1184 tcmu_hdr_set_len(&entry->hdr.len_op, cmd_size);
1185 entry->tmr_type = tmr->tmr_type;
1186 entry->cmd_cnt = tmr->tmr_cmd_cnt;
1187 memcpy(&entry->cmd_ids[0], &tmr->tmr_cmd_ids[0], id_list_sz);
1188 tcmu_flush_dcache_range(entry, cmd_size);
1190 UPDATE_HEAD(mb->cmd_head, cmd_size, udev->cmdr_size);
1191 tcmu_flush_dcache_range(mb, sizeof(*mb));
1193 uio_event_notify(&udev->uio_info);
1201 static sense_reason_t
1202 tcmu_queue_cmd(struct se_cmd *se_cmd)
1204 struct se_device *se_dev = se_cmd->se_dev;
1205 struct tcmu_dev *udev = TCMU_DEV(se_dev);
1206 struct tcmu_cmd *tcmu_cmd;
1207 sense_reason_t scsi_ret = TCM_CHECK_CONDITION_ABORT_CMD;
1210 tcmu_cmd = tcmu_alloc_cmd(se_cmd);
1212 return TCM_LOGICAL_UNIT_COMMUNICATION_FAILURE;
1214 mutex_lock(&udev->cmdr_lock);
1215 if (!(se_cmd->transport_state & CMD_T_ABORTED))
1216 ret = queue_cmd_ring(tcmu_cmd, &scsi_ret);
1218 tcmu_free_cmd(tcmu_cmd);
1220 se_cmd->priv = tcmu_cmd;
1221 mutex_unlock(&udev->cmdr_lock);
1225 static void tcmu_set_next_deadline(struct list_head *queue,
1226 struct timer_list *timer)
1228 struct tcmu_cmd *cmd;
1230 if (!list_empty(queue)) {
1231 cmd = list_first_entry(queue, struct tcmu_cmd, queue_entry);
1232 mod_timer(timer, cmd->deadline);
1238 tcmu_tmr_type(enum tcm_tmreq_table tmf)
1241 case TMR_ABORT_TASK: return TCMU_TMR_ABORT_TASK;
1242 case TMR_ABORT_TASK_SET: return TCMU_TMR_ABORT_TASK_SET;
1243 case TMR_CLEAR_ACA: return TCMU_TMR_CLEAR_ACA;
1244 case TMR_CLEAR_TASK_SET: return TCMU_TMR_CLEAR_TASK_SET;
1245 case TMR_LUN_RESET: return TCMU_TMR_LUN_RESET;
1246 case TMR_TARGET_WARM_RESET: return TCMU_TMR_TARGET_WARM_RESET;
1247 case TMR_TARGET_COLD_RESET: return TCMU_TMR_TARGET_COLD_RESET;
1248 case TMR_LUN_RESET_PRO: return TCMU_TMR_LUN_RESET_PRO;
1249 default: return TCMU_TMR_UNKNOWN;
1254 tcmu_tmr_notify(struct se_device *se_dev, enum tcm_tmreq_table tmf,
1255 struct list_head *cmd_list)
1257 int i = 0, cmd_cnt = 0;
1258 bool unqueued = false;
1259 struct tcmu_cmd *cmd;
1260 struct se_cmd *se_cmd;
1261 struct tcmu_tmr *tmr;
1262 struct tcmu_dev *udev = TCMU_DEV(se_dev);
1264 mutex_lock(&udev->cmdr_lock);
1266 /* First we check for aborted commands in qfull_queue */
1267 list_for_each_entry(se_cmd, cmd_list, state_list) {
1272 /* Commands on qfull queue have no id yet */
1277 pr_debug("Removing aborted command %p from queue on dev %s.\n",
1280 list_del_init(&cmd->queue_entry);
1282 se_cmd->priv = NULL;
1283 target_complete_cmd(se_cmd, SAM_STAT_TASK_ABORTED);
1287 tcmu_set_next_deadline(&udev->qfull_queue, &udev->qfull_timer);
1289 if (!test_bit(TCMU_DEV_BIT_TMR_NOTIFY, &udev->flags))
1292 pr_debug("TMR event %d on dev %s, aborted cmds %d, afflicted cmd_ids %d\n",
1293 tcmu_tmr_type(tmf), udev->name, i, cmd_cnt);
1295 tmr = kmalloc(struct_size(tmr, tmr_cmd_ids, cmd_cnt), GFP_NOIO);
1299 tmr->tmr_type = tcmu_tmr_type(tmf);
1300 tmr->tmr_cmd_cnt = cmd_cnt;
1304 list_for_each_entry(se_cmd, cmd_list, state_list) {
1309 tmr->tmr_cmd_ids[cmd_cnt++] = cmd->cmd_id;
1313 queue_tmr_ring(udev, tmr);
1316 mutex_unlock(&udev->cmdr_lock);
1319 static bool tcmu_handle_completion(struct tcmu_cmd *cmd,
1320 struct tcmu_cmd_entry *entry, bool keep_buf)
1322 struct se_cmd *se_cmd = cmd->se_cmd;
1323 struct tcmu_dev *udev = cmd->tcmu_dev;
1324 bool read_len_valid = false;
1329 * cmd has been completed already from timeout, just reclaim
1330 * data area space and free cmd
1332 if (test_bit(TCMU_CMD_BIT_EXPIRED, &cmd->flags)) {
1333 WARN_ON_ONCE(se_cmd);
1336 if (test_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags)) {
1337 pr_err("cmd_id %u already completed with KEEP_BUF, ring is broken\n",
1339 set_bit(TCMU_DEV_BIT_BROKEN, &udev->flags);
1344 list_del_init(&cmd->queue_entry);
1346 tcmu_cmd_reset_dbi_cur(cmd);
1348 if (entry->hdr.uflags & TCMU_UFLAG_UNKNOWN_OP) {
1349 pr_warn("TCMU: Userspace set UNKNOWN_OP flag on se_cmd %p\n",
1351 entry->rsp.scsi_status = SAM_STAT_CHECK_CONDITION;
1355 read_len = se_cmd->data_length;
1356 if (se_cmd->data_direction == DMA_FROM_DEVICE &&
1357 (entry->hdr.uflags & TCMU_UFLAG_READ_LEN) && entry->rsp.read_len) {
1358 read_len_valid = true;
1359 if (entry->rsp.read_len < read_len)
1360 read_len = entry->rsp.read_len;
1363 if (entry->rsp.scsi_status == SAM_STAT_CHECK_CONDITION) {
1364 transport_copy_sense_to_cmd(se_cmd, entry->rsp.sense_buffer);
1365 if (!read_len_valid )
1368 se_cmd->se_cmd_flags |= SCF_TREAT_READ_AS_NORMAL;
1370 if (se_cmd->se_cmd_flags & SCF_BIDI) {
1371 /* Get Data-In buffer before clean up */
1372 gather_data_area(udev, cmd, true, read_len);
1373 } else if (se_cmd->data_direction == DMA_FROM_DEVICE) {
1374 gather_data_area(udev, cmd, false, read_len);
1375 } else if (se_cmd->data_direction == DMA_TO_DEVICE) {
1377 } else if (se_cmd->data_direction != DMA_NONE) {
1378 pr_warn("TCMU: data direction was %d!\n",
1379 se_cmd->data_direction);
1383 se_cmd->priv = NULL;
1384 if (read_len_valid) {
1385 pr_debug("read_len = %d\n", read_len);
1386 target_complete_cmd_with_length(cmd->se_cmd,
1387 entry->rsp.scsi_status, read_len);
1389 target_complete_cmd(cmd->se_cmd, entry->rsp.scsi_status);
1393 tcmu_cmd_free_data(cmd, cmd->dbi_cnt);
1397 * Keep this command after completion, since userspace still
1398 * needs the data buffer. Mark it with TCMU_CMD_BIT_KEEP_BUF
1399 * and reset potential TCMU_CMD_BIT_EXPIRED, so we don't accept
1400 * a second completion later.
1401 * Userspace can free the buffer later by writing the cmd_id
1402 * to new action attribute free_kept_buf.
1404 clear_bit(TCMU_CMD_BIT_EXPIRED, &cmd->flags);
1405 set_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags);
1410 static int tcmu_run_tmr_queue(struct tcmu_dev *udev)
1412 struct tcmu_tmr *tmr, *tmp;
1415 if (list_empty(&udev->tmr_queue))
1418 pr_debug("running %s's tmr queue\n", udev->name);
1420 list_splice_init(&udev->tmr_queue, &tmrs);
1422 list_for_each_entry_safe(tmr, tmp, &tmrs, queue_entry) {
1423 list_del_init(&tmr->queue_entry);
1425 pr_debug("removing tmr %p on dev %s from queue\n",
1428 if (queue_tmr_ring(udev, tmr)) {
1429 pr_debug("ran out of space during tmr queue run\n");
1431 * tmr was requeued, so just put all tmrs back in
1434 list_splice_tail(&tmrs, &udev->tmr_queue);
1442 static bool tcmu_handle_completions(struct tcmu_dev *udev)
1444 struct tcmu_mailbox *mb;
1445 struct tcmu_cmd *cmd;
1446 bool free_space = false;
1448 if (test_bit(TCMU_DEV_BIT_BROKEN, &udev->flags)) {
1449 pr_err("ring broken, not handling completions\n");
1454 tcmu_flush_dcache_range(mb, sizeof(*mb));
1456 while (udev->cmdr_last_cleaned != READ_ONCE(mb->cmd_tail)) {
1458 struct tcmu_cmd_entry *entry = udev->cmdr + udev->cmdr_last_cleaned;
1462 * Flush max. up to end of cmd ring since current entry might
1463 * be a padding that is shorter than sizeof(*entry)
1465 size_t ring_left = head_to_end(udev->cmdr_last_cleaned,
1467 tcmu_flush_dcache_range(entry, ring_left < sizeof(*entry) ?
1468 ring_left : sizeof(*entry));
1472 if (tcmu_hdr_get_op(entry->hdr.len_op) == TCMU_OP_PAD ||
1473 tcmu_hdr_get_op(entry->hdr.len_op) == TCMU_OP_TMR) {
1474 UPDATE_HEAD(udev->cmdr_last_cleaned,
1475 tcmu_hdr_get_len(entry->hdr.len_op),
1479 WARN_ON(tcmu_hdr_get_op(entry->hdr.len_op) != TCMU_OP_CMD);
1481 keep_buf = !!(entry->hdr.uflags & TCMU_UFLAG_KEEP_BUF);
1483 cmd = xa_load(&udev->commands, entry->hdr.cmd_id);
1485 cmd = xa_erase(&udev->commands, entry->hdr.cmd_id);
1487 pr_err("cmd_id %u not found, ring is broken\n",
1489 set_bit(TCMU_DEV_BIT_BROKEN, &udev->flags);
1493 if (!tcmu_handle_completion(cmd, entry, keep_buf))
1496 UPDATE_HEAD(udev->cmdr_last_cleaned,
1497 tcmu_hdr_get_len(entry->hdr.len_op),
1501 free_space = tcmu_run_tmr_queue(udev);
1503 if (atomic_read(&global_page_count) > tcmu_global_max_pages &&
1504 xa_empty(&udev->commands) && list_empty(&udev->qfull_queue)) {
1506 * Allocated blocks exceeded global block limit, currently no
1507 * more pending or waiting commands so try to reclaim blocks.
1509 schedule_delayed_work(&tcmu_unmap_work, 0);
1511 if (udev->cmd_time_out)
1512 tcmu_set_next_deadline(&udev->inflight_queue, &udev->cmd_timer);
1517 static void tcmu_check_expired_ring_cmd(struct tcmu_cmd *cmd)
1519 struct se_cmd *se_cmd;
1521 if (!time_after_eq(jiffies, cmd->deadline))
1524 set_bit(TCMU_CMD_BIT_EXPIRED, &cmd->flags);
1525 list_del_init(&cmd->queue_entry);
1526 se_cmd = cmd->se_cmd;
1527 se_cmd->priv = NULL;
1530 pr_debug("Timing out inflight cmd %u on dev %s.\n",
1531 cmd->cmd_id, cmd->tcmu_dev->name);
1533 target_complete_cmd(se_cmd, SAM_STAT_CHECK_CONDITION);
1536 static void tcmu_check_expired_queue_cmd(struct tcmu_cmd *cmd)
1538 struct se_cmd *se_cmd;
1540 if (!time_after_eq(jiffies, cmd->deadline))
1543 pr_debug("Timing out queued cmd %p on dev %s.\n",
1544 cmd, cmd->tcmu_dev->name);
1546 list_del_init(&cmd->queue_entry);
1547 se_cmd = cmd->se_cmd;
1550 se_cmd->priv = NULL;
1551 target_complete_cmd(se_cmd, SAM_STAT_TASK_SET_FULL);
1554 static void tcmu_device_timedout(struct tcmu_dev *udev)
1556 spin_lock(&timed_out_udevs_lock);
1557 if (list_empty(&udev->timedout_entry))
1558 list_add_tail(&udev->timedout_entry, &timed_out_udevs);
1559 spin_unlock(&timed_out_udevs_lock);
1561 schedule_delayed_work(&tcmu_unmap_work, 0);
1564 static void tcmu_cmd_timedout(struct timer_list *t)
1566 struct tcmu_dev *udev = from_timer(udev, t, cmd_timer);
1568 pr_debug("%s cmd timeout has expired\n", udev->name);
1569 tcmu_device_timedout(udev);
1572 static void tcmu_qfull_timedout(struct timer_list *t)
1574 struct tcmu_dev *udev = from_timer(udev, t, qfull_timer);
1576 pr_debug("%s qfull timeout has expired\n", udev->name);
1577 tcmu_device_timedout(udev);
1580 static int tcmu_attach_hba(struct se_hba *hba, u32 host_id)
1582 struct tcmu_hba *tcmu_hba;
1584 tcmu_hba = kzalloc(sizeof(struct tcmu_hba), GFP_KERNEL);
1588 tcmu_hba->host_id = host_id;
1589 hba->hba_ptr = tcmu_hba;
1594 static void tcmu_detach_hba(struct se_hba *hba)
1596 kfree(hba->hba_ptr);
1597 hba->hba_ptr = NULL;
1600 static struct se_device *tcmu_alloc_device(struct se_hba *hba, const char *name)
1602 struct tcmu_dev *udev;
1604 udev = kzalloc(sizeof(struct tcmu_dev), GFP_KERNEL);
1607 kref_init(&udev->kref);
1609 udev->name = kstrdup(name, GFP_KERNEL);
1616 udev->cmd_time_out = TCMU_TIME_OUT;
1617 udev->qfull_time_out = -1;
1619 udev->data_pages_per_blk = DATA_PAGES_PER_BLK_DEF;
1620 udev->max_blocks = DATA_AREA_PAGES_DEF / udev->data_pages_per_blk;
1621 udev->cmdr_size = CMDR_SIZE_DEF;
1622 udev->data_area_mb = TCMU_PAGES_TO_MBS(DATA_AREA_PAGES_DEF);
1624 mutex_init(&udev->cmdr_lock);
1626 INIT_LIST_HEAD(&udev->node);
1627 INIT_LIST_HEAD(&udev->timedout_entry);
1628 INIT_LIST_HEAD(&udev->qfull_queue);
1629 INIT_LIST_HEAD(&udev->tmr_queue);
1630 INIT_LIST_HEAD(&udev->inflight_queue);
1631 xa_init_flags(&udev->commands, XA_FLAGS_ALLOC1);
1633 timer_setup(&udev->qfull_timer, tcmu_qfull_timedout, 0);
1634 timer_setup(&udev->cmd_timer, tcmu_cmd_timedout, 0);
1636 xa_init(&udev->data_pages);
1638 return &udev->se_dev;
1641 static void tcmu_dev_call_rcu(struct rcu_head *p)
1643 struct se_device *dev = container_of(p, struct se_device, rcu_head);
1644 struct tcmu_dev *udev = TCMU_DEV(dev);
1646 kfree(udev->uio_info.name);
1651 static int tcmu_check_and_free_pending_cmd(struct tcmu_cmd *cmd)
1653 if (test_bit(TCMU_CMD_BIT_EXPIRED, &cmd->flags) ||
1654 test_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags)) {
1655 kmem_cache_free(tcmu_cmd_cache, cmd);
1661 static u32 tcmu_blocks_release(struct tcmu_dev *udev, unsigned long first,
1666 u32 pages_freed = 0;
1668 first = first * udev->data_pages_per_blk;
1669 last = (last + 1) * udev->data_pages_per_blk - 1;
1670 xa_for_each_range(&udev->data_pages, dpi, page, first, last) {
1671 xa_erase(&udev->data_pages, dpi);
1673 * While reaching here there may be page faults occurring on
1674 * the to-be-released pages. A race condition may occur if
1675 * unmap_mapping_range() is called before page faults on these
1676 * pages have completed; a valid but stale map is created.
1678 * If another command subsequently runs and needs to extend
1679 * dbi_thresh, it may reuse the slot corresponding to the
1680 * previous page in data_bitmap. Though we will allocate a new
1681 * page for the slot in data_area, no page fault will happen
1682 * because we have a valid map. Therefore the command's data
1685 * We lock and unlock pages that are to be released to ensure
1686 * all page faults have completed. This way
1687 * unmap_mapping_range() can ensure stale maps are cleanly
1696 atomic_sub(pages_freed, &global_page_count);
1701 static void tcmu_remove_all_queued_tmr(struct tcmu_dev *udev)
1703 struct tcmu_tmr *tmr, *tmp;
1705 list_for_each_entry_safe(tmr, tmp, &udev->tmr_queue, queue_entry) {
1706 list_del_init(&tmr->queue_entry);
1711 static void tcmu_dev_kref_release(struct kref *kref)
1713 struct tcmu_dev *udev = container_of(kref, struct tcmu_dev, kref);
1714 struct se_device *dev = &udev->se_dev;
1715 struct tcmu_cmd *cmd;
1716 bool all_expired = true;
1719 vfree(udev->mb_addr);
1720 udev->mb_addr = NULL;
1722 spin_lock_bh(&timed_out_udevs_lock);
1723 if (!list_empty(&udev->timedout_entry))
1724 list_del(&udev->timedout_entry);
1725 spin_unlock_bh(&timed_out_udevs_lock);
1727 /* Upper layer should drain all requests before calling this */
1728 mutex_lock(&udev->cmdr_lock);
1729 xa_for_each(&udev->commands, i, cmd) {
1730 if (tcmu_check_and_free_pending_cmd(cmd) != 0)
1731 all_expired = false;
1733 /* There can be left over TMR cmds. Remove them. */
1734 tcmu_remove_all_queued_tmr(udev);
1735 if (!list_empty(&udev->qfull_queue))
1736 all_expired = false;
1737 xa_destroy(&udev->commands);
1738 WARN_ON(!all_expired);
1740 tcmu_blocks_release(udev, 0, udev->dbi_max);
1741 bitmap_free(udev->data_bitmap);
1742 mutex_unlock(&udev->cmdr_lock);
1744 pr_debug("dev_kref_release\n");
1746 call_rcu(&dev->rcu_head, tcmu_dev_call_rcu);
1749 static void run_qfull_queue(struct tcmu_dev *udev, bool fail)
1751 struct tcmu_cmd *tcmu_cmd, *tmp_cmd;
1753 sense_reason_t scsi_ret;
1756 if (list_empty(&udev->qfull_queue))
1759 pr_debug("running %s's cmdr queue forcefail %d\n", udev->name, fail);
1761 list_splice_init(&udev->qfull_queue, &cmds);
1763 list_for_each_entry_safe(tcmu_cmd, tmp_cmd, &cmds, queue_entry) {
1764 list_del_init(&tcmu_cmd->queue_entry);
1766 pr_debug("removing cmd %p on dev %s from queue\n",
1767 tcmu_cmd, udev->name);
1771 * We were not able to even start the command, so
1772 * fail with busy to allow a retry in case runner
1773 * was only temporarily down. If the device is being
1774 * removed then LIO core will do the right thing and
1777 tcmu_cmd->se_cmd->priv = NULL;
1778 target_complete_cmd(tcmu_cmd->se_cmd, SAM_STAT_BUSY);
1779 tcmu_free_cmd(tcmu_cmd);
1783 ret = queue_cmd_ring(tcmu_cmd, &scsi_ret);
1785 pr_debug("cmd %p on dev %s failed with %u\n",
1786 tcmu_cmd, udev->name, scsi_ret);
1788 * Ignore scsi_ret for now. target_complete_cmd
1791 tcmu_cmd->se_cmd->priv = NULL;
1792 target_complete_cmd(tcmu_cmd->se_cmd,
1793 SAM_STAT_CHECK_CONDITION);
1794 tcmu_free_cmd(tcmu_cmd);
1795 } else if (ret > 0) {
1796 pr_debug("ran out of space during cmdr queue run\n");
1798 * cmd was requeued, so just put all cmds back in
1801 list_splice_tail(&cmds, &udev->qfull_queue);
1806 tcmu_set_next_deadline(&udev->qfull_queue, &udev->qfull_timer);
1809 static int tcmu_irqcontrol(struct uio_info *info, s32 irq_on)
1811 struct tcmu_dev *udev = container_of(info, struct tcmu_dev, uio_info);
1813 mutex_lock(&udev->cmdr_lock);
1814 if (tcmu_handle_completions(udev))
1815 run_qfull_queue(udev, false);
1816 mutex_unlock(&udev->cmdr_lock);
1822 * mmap code from uio.c. Copied here because we want to hook mmap()
1823 * and this stuff must come along.
1825 static int tcmu_find_mem_index(struct vm_area_struct *vma)
1827 struct tcmu_dev *udev = vma->vm_private_data;
1828 struct uio_info *info = &udev->uio_info;
1830 if (vma->vm_pgoff < MAX_UIO_MAPS) {
1831 if (info->mem[vma->vm_pgoff].size == 0)
1833 return (int)vma->vm_pgoff;
1838 static struct page *tcmu_try_get_data_page(struct tcmu_dev *udev, uint32_t dpi)
1842 mutex_lock(&udev->cmdr_lock);
1843 page = xa_load(&udev->data_pages, dpi);
1847 mutex_unlock(&udev->cmdr_lock);
1852 * Userspace messed up and passed in a address not in the
1853 * data iov passed to it.
1855 pr_err("Invalid addr to data page mapping (dpi %u) on device %s\n",
1857 mutex_unlock(&udev->cmdr_lock);
1862 static void tcmu_vma_open(struct vm_area_struct *vma)
1864 struct tcmu_dev *udev = vma->vm_private_data;
1866 pr_debug("vma_open\n");
1868 kref_get(&udev->kref);
1871 static void tcmu_vma_close(struct vm_area_struct *vma)
1873 struct tcmu_dev *udev = vma->vm_private_data;
1875 pr_debug("vma_close\n");
1877 /* release ref from tcmu_vma_open */
1878 kref_put(&udev->kref, tcmu_dev_kref_release);
1881 static vm_fault_t tcmu_vma_fault(struct vm_fault *vmf)
1883 struct tcmu_dev *udev = vmf->vma->vm_private_data;
1884 struct uio_info *info = &udev->uio_info;
1886 unsigned long offset;
1890 int mi = tcmu_find_mem_index(vmf->vma);
1892 return VM_FAULT_SIGBUS;
1895 * We need to subtract mi because userspace uses offset = N*PAGE_SIZE
1898 offset = (vmf->pgoff - mi) << PAGE_SHIFT;
1900 if (offset < udev->data_off) {
1901 /* For the vmalloc()ed cmd area pages */
1902 addr = (void *)(unsigned long)info->mem[mi].addr + offset;
1903 page = vmalloc_to_page(addr);
1908 /* For the dynamically growing data area pages */
1909 dpi = (offset - udev->data_off) / PAGE_SIZE;
1910 page = tcmu_try_get_data_page(udev, dpi);
1912 return VM_FAULT_SIGBUS;
1913 ret = VM_FAULT_LOCKED;
1920 static const struct vm_operations_struct tcmu_vm_ops = {
1921 .open = tcmu_vma_open,
1922 .close = tcmu_vma_close,
1923 .fault = tcmu_vma_fault,
1926 static int tcmu_mmap(struct uio_info *info, struct vm_area_struct *vma)
1928 struct tcmu_dev *udev = container_of(info, struct tcmu_dev, uio_info);
1930 vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
1931 vma->vm_ops = &tcmu_vm_ops;
1933 vma->vm_private_data = udev;
1935 /* Ensure the mmap is exactly the right size */
1936 if (vma_pages(vma) != udev->mmap_pages)
1944 static int tcmu_open(struct uio_info *info, struct inode *inode)
1946 struct tcmu_dev *udev = container_of(info, struct tcmu_dev, uio_info);
1948 /* O_EXCL not supported for char devs, so fake it? */
1949 if (test_and_set_bit(TCMU_DEV_BIT_OPEN, &udev->flags))
1952 udev->inode = inode;
1959 static int tcmu_release(struct uio_info *info, struct inode *inode)
1961 struct tcmu_dev *udev = container_of(info, struct tcmu_dev, uio_info);
1962 struct tcmu_cmd *cmd;
1966 mutex_lock(&udev->cmdr_lock);
1968 xa_for_each(&udev->commands, i, cmd) {
1969 /* Cmds with KEEP_BUF set are no longer on the ring, but
1970 * userspace still holds the data buffer. If userspace closes
1971 * we implicitly free these cmds and buffers, since after new
1972 * open the (new ?) userspace cannot find the cmd in the ring
1973 * and thus never will release the buffer by writing cmd_id to
1974 * free_kept_buf action attribute.
1976 if (!test_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags))
1978 pr_debug("removing KEEP_BUF cmd %u on dev %s from ring\n",
1979 cmd->cmd_id, udev->name);
1982 xa_erase(&udev->commands, i);
1983 tcmu_cmd_free_data(cmd, cmd->dbi_cnt);
1987 * We only freed data space, not ring space. Therefore we dont call
1988 * run_tmr_queue, but call run_qfull_queue if tmr_list is empty.
1990 if (freed && list_empty(&udev->tmr_queue))
1991 run_qfull_queue(udev, false);
1993 mutex_unlock(&udev->cmdr_lock);
1995 clear_bit(TCMU_DEV_BIT_OPEN, &udev->flags);
1997 pr_debug("close\n");
2002 static int tcmu_init_genl_cmd_reply(struct tcmu_dev *udev, int cmd)
2004 struct tcmu_nl_cmd *nl_cmd = &udev->curr_nl_cmd;
2006 if (!tcmu_kern_cmd_reply_supported)
2009 if (udev->nl_reply_supported <= 0)
2012 mutex_lock(&tcmu_nl_cmd_mutex);
2014 if (tcmu_netlink_blocked) {
2015 mutex_unlock(&tcmu_nl_cmd_mutex);
2016 pr_warn("Failing nl cmd %d on %s. Interface is blocked.\n", cmd,
2021 if (nl_cmd->cmd != TCMU_CMD_UNSPEC) {
2022 mutex_unlock(&tcmu_nl_cmd_mutex);
2023 pr_warn("netlink cmd %d already executing on %s\n",
2024 nl_cmd->cmd, udev->name);
2028 memset(nl_cmd, 0, sizeof(*nl_cmd));
2030 nl_cmd->udev = udev;
2031 init_completion(&nl_cmd->complete);
2032 INIT_LIST_HEAD(&nl_cmd->nl_list);
2034 list_add_tail(&nl_cmd->nl_list, &tcmu_nl_cmd_list);
2036 mutex_unlock(&tcmu_nl_cmd_mutex);
2040 static void tcmu_destroy_genl_cmd_reply(struct tcmu_dev *udev)
2042 struct tcmu_nl_cmd *nl_cmd = &udev->curr_nl_cmd;
2044 if (!tcmu_kern_cmd_reply_supported)
2047 if (udev->nl_reply_supported <= 0)
2050 mutex_lock(&tcmu_nl_cmd_mutex);
2052 list_del(&nl_cmd->nl_list);
2053 memset(nl_cmd, 0, sizeof(*nl_cmd));
2055 mutex_unlock(&tcmu_nl_cmd_mutex);
2058 static int tcmu_wait_genl_cmd_reply(struct tcmu_dev *udev)
2060 struct tcmu_nl_cmd *nl_cmd = &udev->curr_nl_cmd;
2063 if (!tcmu_kern_cmd_reply_supported)
2066 if (udev->nl_reply_supported <= 0)
2069 pr_debug("sleeping for nl reply\n");
2070 wait_for_completion(&nl_cmd->complete);
2072 mutex_lock(&tcmu_nl_cmd_mutex);
2073 nl_cmd->cmd = TCMU_CMD_UNSPEC;
2074 ret = nl_cmd->status;
2075 mutex_unlock(&tcmu_nl_cmd_mutex);
2080 static int tcmu_netlink_event_init(struct tcmu_dev *udev,
2081 enum tcmu_genl_cmd cmd,
2082 struct sk_buff **buf, void **hdr)
2084 struct sk_buff *skb;
2088 skb = genlmsg_new(NLMSG_GOODSIZE, GFP_KERNEL);
2092 msg_header = genlmsg_put(skb, 0, 0, &tcmu_genl_family, 0, cmd);
2096 ret = nla_put_string(skb, TCMU_ATTR_DEVICE, udev->uio_info.name);
2100 ret = nla_put_u32(skb, TCMU_ATTR_MINOR, udev->uio_info.uio_dev->minor);
2104 ret = nla_put_u32(skb, TCMU_ATTR_DEVICE_ID, udev->se_dev.dev_index);
2117 static int tcmu_netlink_event_send(struct tcmu_dev *udev,
2118 enum tcmu_genl_cmd cmd,
2119 struct sk_buff *skb, void *msg_header)
2123 genlmsg_end(skb, msg_header);
2125 ret = tcmu_init_genl_cmd_reply(udev, cmd);
2131 ret = genlmsg_multicast_allns(&tcmu_genl_family, skb, 0,
2132 TCMU_MCGRP_CONFIG, GFP_KERNEL);
2134 /* Wait during an add as the listener may not be up yet */
2136 (ret == -ESRCH && cmd == TCMU_CMD_ADDED_DEVICE))
2137 return tcmu_wait_genl_cmd_reply(udev);
2139 tcmu_destroy_genl_cmd_reply(udev);
2144 static int tcmu_send_dev_add_event(struct tcmu_dev *udev)
2146 struct sk_buff *skb = NULL;
2147 void *msg_header = NULL;
2150 ret = tcmu_netlink_event_init(udev, TCMU_CMD_ADDED_DEVICE, &skb,
2154 return tcmu_netlink_event_send(udev, TCMU_CMD_ADDED_DEVICE, skb,
2158 static int tcmu_send_dev_remove_event(struct tcmu_dev *udev)
2160 struct sk_buff *skb = NULL;
2161 void *msg_header = NULL;
2164 ret = tcmu_netlink_event_init(udev, TCMU_CMD_REMOVED_DEVICE,
2168 return tcmu_netlink_event_send(udev, TCMU_CMD_REMOVED_DEVICE,
2172 static int tcmu_update_uio_info(struct tcmu_dev *udev)
2174 struct tcmu_hba *hba = udev->hba->hba_ptr;
2175 struct uio_info *info;
2178 info = &udev->uio_info;
2180 if (udev->dev_config[0])
2181 str = kasprintf(GFP_KERNEL, "tcm-user/%u/%s/%s", hba->host_id,
2182 udev->name, udev->dev_config);
2184 str = kasprintf(GFP_KERNEL, "tcm-user/%u/%s", hba->host_id,
2189 /* If the old string exists, free it */
2196 static int tcmu_configure_device(struct se_device *dev)
2198 struct tcmu_dev *udev = TCMU_DEV(dev);
2199 struct uio_info *info;
2200 struct tcmu_mailbox *mb;
2204 ret = tcmu_update_uio_info(udev);
2208 info = &udev->uio_info;
2210 mutex_lock(&udev->cmdr_lock);
2211 udev->data_bitmap = bitmap_zalloc(udev->max_blocks, GFP_KERNEL);
2212 mutex_unlock(&udev->cmdr_lock);
2213 if (!udev->data_bitmap) {
2215 goto err_bitmap_alloc;
2218 mb = vzalloc(udev->cmdr_size + CMDR_OFF);
2224 /* mailbox fits in first part of CMDR space */
2226 udev->cmdr = (void *)mb + CMDR_OFF;
2227 udev->data_off = udev->cmdr_size + CMDR_OFF;
2228 data_size = TCMU_MBS_TO_PAGES(udev->data_area_mb) << PAGE_SHIFT;
2229 udev->mmap_pages = (data_size + udev->cmdr_size + CMDR_OFF) >> PAGE_SHIFT;
2230 udev->data_blk_size = udev->data_pages_per_blk * PAGE_SIZE;
2231 udev->dbi_thresh = 0; /* Default in Idle state */
2233 /* Initialise the mailbox of the ring buffer */
2234 mb->version = TCMU_MAILBOX_VERSION;
2235 mb->flags = TCMU_MAILBOX_FLAG_CAP_OOOC |
2236 TCMU_MAILBOX_FLAG_CAP_READ_LEN |
2237 TCMU_MAILBOX_FLAG_CAP_TMR |
2238 TCMU_MAILBOX_FLAG_CAP_KEEP_BUF;
2239 mb->cmdr_off = CMDR_OFF;
2240 mb->cmdr_size = udev->cmdr_size;
2242 WARN_ON(!PAGE_ALIGNED(udev->data_off));
2243 WARN_ON(data_size % PAGE_SIZE);
2245 info->version = __stringify(TCMU_MAILBOX_VERSION);
2247 info->mem[0].name = "tcm-user command & data buffer";
2248 info->mem[0].addr = (phys_addr_t)(uintptr_t)udev->mb_addr;
2249 info->mem[0].size = data_size + udev->cmdr_size + CMDR_OFF;
2250 info->mem[0].memtype = UIO_MEM_NONE;
2252 info->irqcontrol = tcmu_irqcontrol;
2253 info->irq = UIO_IRQ_CUSTOM;
2255 info->mmap = tcmu_mmap;
2256 info->open = tcmu_open;
2257 info->release = tcmu_release;
2259 ret = uio_register_device(tcmu_root_device, info);
2263 /* User can set hw_block_size before enable the device */
2264 if (dev->dev_attrib.hw_block_size == 0)
2265 dev->dev_attrib.hw_block_size = 512;
2266 /* Other attributes can be configured in userspace */
2267 if (!dev->dev_attrib.hw_max_sectors)
2268 dev->dev_attrib.hw_max_sectors = 128;
2269 if (!dev->dev_attrib.emulate_write_cache)
2270 dev->dev_attrib.emulate_write_cache = 0;
2271 dev->dev_attrib.hw_queue_depth = 128;
2273 /* If user didn't explicitly disable netlink reply support, use
2274 * module scope setting.
2276 if (udev->nl_reply_supported >= 0)
2277 udev->nl_reply_supported = tcmu_kern_cmd_reply_supported;
2280 * Get a ref incase userspace does a close on the uio device before
2281 * LIO has initiated tcmu_free_device.
2283 kref_get(&udev->kref);
2285 ret = tcmu_send_dev_add_event(udev);
2289 mutex_lock(&root_udev_mutex);
2290 list_add(&udev->node, &root_udev);
2291 mutex_unlock(&root_udev_mutex);
2296 kref_put(&udev->kref, tcmu_dev_kref_release);
2297 uio_unregister_device(&udev->uio_info);
2299 vfree(udev->mb_addr);
2300 udev->mb_addr = NULL;
2302 bitmap_free(udev->data_bitmap);
2303 udev->data_bitmap = NULL;
2311 static void tcmu_free_device(struct se_device *dev)
2313 struct tcmu_dev *udev = TCMU_DEV(dev);
2315 /* release ref from init */
2316 kref_put(&udev->kref, tcmu_dev_kref_release);
2319 static void tcmu_destroy_device(struct se_device *dev)
2321 struct tcmu_dev *udev = TCMU_DEV(dev);
2323 del_timer_sync(&udev->cmd_timer);
2324 del_timer_sync(&udev->qfull_timer);
2326 mutex_lock(&root_udev_mutex);
2327 list_del(&udev->node);
2328 mutex_unlock(&root_udev_mutex);
2330 tcmu_send_dev_remove_event(udev);
2332 uio_unregister_device(&udev->uio_info);
2334 /* release ref from configure */
2335 kref_put(&udev->kref, tcmu_dev_kref_release);
2338 static void tcmu_unblock_dev(struct tcmu_dev *udev)
2340 mutex_lock(&udev->cmdr_lock);
2341 clear_bit(TCMU_DEV_BIT_BLOCKED, &udev->flags);
2342 mutex_unlock(&udev->cmdr_lock);
2345 static void tcmu_block_dev(struct tcmu_dev *udev)
2347 mutex_lock(&udev->cmdr_lock);
2349 if (test_and_set_bit(TCMU_DEV_BIT_BLOCKED, &udev->flags))
2352 /* complete IO that has executed successfully */
2353 tcmu_handle_completions(udev);
2354 /* fail IO waiting to be queued */
2355 run_qfull_queue(udev, true);
2358 mutex_unlock(&udev->cmdr_lock);
2361 static void tcmu_reset_ring(struct tcmu_dev *udev, u8 err_level)
2363 struct tcmu_mailbox *mb;
2364 struct tcmu_cmd *cmd;
2367 mutex_lock(&udev->cmdr_lock);
2369 xa_for_each(&udev->commands, i, cmd) {
2370 pr_debug("removing cmd %u on dev %s from ring %s\n",
2371 cmd->cmd_id, udev->name,
2372 test_bit(TCMU_CMD_BIT_EXPIRED, &cmd->flags) ?
2374 (test_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags) ?
2375 "(is keep buffer)" : ""));
2377 xa_erase(&udev->commands, i);
2378 if (!test_bit(TCMU_CMD_BIT_EXPIRED, &cmd->flags) &&
2379 !test_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags)) {
2380 WARN_ON(!cmd->se_cmd);
2381 list_del_init(&cmd->queue_entry);
2382 cmd->se_cmd->priv = NULL;
2383 if (err_level == 1) {
2385 * Userspace was not able to start the
2386 * command or it is retryable.
2388 target_complete_cmd(cmd->se_cmd, SAM_STAT_BUSY);
2391 target_complete_cmd(cmd->se_cmd,
2392 SAM_STAT_CHECK_CONDITION);
2395 tcmu_cmd_free_data(cmd, cmd->dbi_cnt);
2400 tcmu_flush_dcache_range(mb, sizeof(*mb));
2401 pr_debug("mb last %u head %u tail %u\n", udev->cmdr_last_cleaned,
2402 mb->cmd_tail, mb->cmd_head);
2404 udev->cmdr_last_cleaned = 0;
2407 tcmu_flush_dcache_range(mb, sizeof(*mb));
2408 clear_bit(TCMU_DEV_BIT_BROKEN, &udev->flags);
2410 del_timer(&udev->cmd_timer);
2413 * ring is empty and qfull queue never contains aborted commands.
2414 * So TMRs in tmr queue do not contain relevant cmd_ids.
2415 * After a ring reset userspace should do a fresh start, so
2416 * even LUN RESET message is no longer relevant.
2417 * Therefore remove all TMRs from qfull queue
2419 tcmu_remove_all_queued_tmr(udev);
2421 run_qfull_queue(udev, false);
2423 mutex_unlock(&udev->cmdr_lock);
2427 Opt_dev_config, Opt_dev_size, Opt_hw_block_size, Opt_hw_max_sectors,
2428 Opt_nl_reply_supported, Opt_max_data_area_mb, Opt_data_pages_per_blk,
2429 Opt_cmd_ring_size_mb, Opt_err,
2432 static match_table_t tokens = {
2433 {Opt_dev_config, "dev_config=%s"},
2434 {Opt_dev_size, "dev_size=%s"},
2435 {Opt_hw_block_size, "hw_block_size=%d"},
2436 {Opt_hw_max_sectors, "hw_max_sectors=%d"},
2437 {Opt_nl_reply_supported, "nl_reply_supported=%d"},
2438 {Opt_max_data_area_mb, "max_data_area_mb=%d"},
2439 {Opt_data_pages_per_blk, "data_pages_per_blk=%d"},
2440 {Opt_cmd_ring_size_mb, "cmd_ring_size_mb=%d"},
2444 static int tcmu_set_dev_attrib(substring_t *arg, u32 *dev_attrib)
2448 ret = match_int(arg, &val);
2450 pr_err("match_int() failed for dev attrib. Error %d.\n",
2456 pr_err("Invalid dev attrib value %d. Must be greater than zero.\n",
2464 static int tcmu_set_max_blocks_param(struct tcmu_dev *udev, substring_t *arg)
2467 uint32_t pages_per_blk = udev->data_pages_per_blk;
2469 ret = match_int(arg, &val);
2471 pr_err("match_int() failed for max_data_area_mb=. Error %d.\n",
2476 pr_err("Invalid max_data_area %d.\n", val);
2479 if (val > TCMU_PAGES_TO_MBS(tcmu_global_max_pages)) {
2480 pr_err("%d is too large. Adjusting max_data_area_mb to global limit of %u\n",
2481 val, TCMU_PAGES_TO_MBS(tcmu_global_max_pages));
2482 val = TCMU_PAGES_TO_MBS(tcmu_global_max_pages);
2484 if (TCMU_MBS_TO_PAGES(val) < pages_per_blk) {
2485 pr_err("Invalid max_data_area %d (%zu pages): smaller than data_pages_per_blk (%u pages).\n",
2486 val, TCMU_MBS_TO_PAGES(val), pages_per_blk);
2490 mutex_lock(&udev->cmdr_lock);
2491 if (udev->data_bitmap) {
2492 pr_err("Cannot set max_data_area_mb after it has been enabled.\n");
2497 udev->data_area_mb = val;
2498 udev->max_blocks = TCMU_MBS_TO_PAGES(val) / pages_per_blk;
2501 mutex_unlock(&udev->cmdr_lock);
2505 static int tcmu_set_data_pages_per_blk(struct tcmu_dev *udev, substring_t *arg)
2509 ret = match_int(arg, &val);
2511 pr_err("match_int() failed for data_pages_per_blk=. Error %d.\n",
2516 if (val > TCMU_MBS_TO_PAGES(udev->data_area_mb)) {
2517 pr_err("Invalid data_pages_per_blk %d: greater than max_data_area_mb %d -> %zd pages).\n",
2518 val, udev->data_area_mb,
2519 TCMU_MBS_TO_PAGES(udev->data_area_mb));
2523 mutex_lock(&udev->cmdr_lock);
2524 if (udev->data_bitmap) {
2525 pr_err("Cannot set data_pages_per_blk after it has been enabled.\n");
2530 udev->data_pages_per_blk = val;
2531 udev->max_blocks = TCMU_MBS_TO_PAGES(udev->data_area_mb) / val;
2534 mutex_unlock(&udev->cmdr_lock);
2538 static int tcmu_set_cmd_ring_size(struct tcmu_dev *udev, substring_t *arg)
2542 ret = match_int(arg, &val);
2544 pr_err("match_int() failed for cmd_ring_size_mb=. Error %d.\n",
2550 pr_err("Invalid cmd_ring_size_mb %d.\n", val);
2554 mutex_lock(&udev->cmdr_lock);
2555 if (udev->data_bitmap) {
2556 pr_err("Cannot set cmd_ring_size_mb after it has been enabled.\n");
2561 udev->cmdr_size = (val << 20) - CMDR_OFF;
2562 if (val > (MB_CMDR_SIZE_DEF >> 20)) {
2563 pr_err("%d is too large. Adjusting cmd_ring_size_mb to global limit of %u\n",
2564 val, (MB_CMDR_SIZE_DEF >> 20));
2565 udev->cmdr_size = CMDR_SIZE_DEF;
2569 mutex_unlock(&udev->cmdr_lock);
2573 static ssize_t tcmu_set_configfs_dev_params(struct se_device *dev,
2574 const char *page, ssize_t count)
2576 struct tcmu_dev *udev = TCMU_DEV(dev);
2577 char *orig, *ptr, *opts;
2578 substring_t args[MAX_OPT_ARGS];
2581 opts = kstrdup(page, GFP_KERNEL);
2587 while ((ptr = strsep(&opts, ",\n")) != NULL) {
2591 token = match_token(ptr, tokens, args);
2593 case Opt_dev_config:
2594 if (match_strlcpy(udev->dev_config, &args[0],
2595 TCMU_CONFIG_LEN) == 0) {
2599 pr_debug("TCMU: Referencing Path: %s\n", udev->dev_config);
2602 ret = match_u64(&args[0], &udev->dev_size);
2604 pr_err("match_u64() failed for dev_size=. Error %d.\n",
2607 case Opt_hw_block_size:
2608 ret = tcmu_set_dev_attrib(&args[0],
2609 &(dev->dev_attrib.hw_block_size));
2611 case Opt_hw_max_sectors:
2612 ret = tcmu_set_dev_attrib(&args[0],
2613 &(dev->dev_attrib.hw_max_sectors));
2615 case Opt_nl_reply_supported:
2616 ret = match_int(&args[0], &udev->nl_reply_supported);
2618 pr_err("match_int() failed for nl_reply_supported=. Error %d.\n",
2621 case Opt_max_data_area_mb:
2622 ret = tcmu_set_max_blocks_param(udev, &args[0]);
2624 case Opt_data_pages_per_blk:
2625 ret = tcmu_set_data_pages_per_blk(udev, &args[0]);
2627 case Opt_cmd_ring_size_mb:
2628 ret = tcmu_set_cmd_ring_size(udev, &args[0]);
2639 return (!ret) ? count : ret;
2642 static ssize_t tcmu_show_configfs_dev_params(struct se_device *dev, char *b)
2644 struct tcmu_dev *udev = TCMU_DEV(dev);
2647 bl = sprintf(b + bl, "Config: %s ",
2648 udev->dev_config[0] ? udev->dev_config : "NULL");
2649 bl += sprintf(b + bl, "Size: %llu ", udev->dev_size);
2650 bl += sprintf(b + bl, "MaxDataAreaMB: %u ", udev->data_area_mb);
2651 bl += sprintf(b + bl, "DataPagesPerBlk: %u ", udev->data_pages_per_blk);
2652 bl += sprintf(b + bl, "CmdRingSizeMB: %u\n",
2653 (udev->cmdr_size + CMDR_OFF) >> 20);
2658 static sector_t tcmu_get_blocks(struct se_device *dev)
2660 struct tcmu_dev *udev = TCMU_DEV(dev);
2662 return div_u64(udev->dev_size - dev->dev_attrib.block_size,
2663 dev->dev_attrib.block_size);
2666 static sense_reason_t
2667 tcmu_parse_cdb(struct se_cmd *cmd)
2669 return passthrough_parse_cdb(cmd, tcmu_queue_cmd);
2672 static ssize_t tcmu_cmd_time_out_show(struct config_item *item, char *page)
2674 struct se_dev_attrib *da = container_of(to_config_group(item),
2675 struct se_dev_attrib, da_group);
2676 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2678 return snprintf(page, PAGE_SIZE, "%lu\n", udev->cmd_time_out / MSEC_PER_SEC);
2681 static ssize_t tcmu_cmd_time_out_store(struct config_item *item, const char *page,
2684 struct se_dev_attrib *da = container_of(to_config_group(item),
2685 struct se_dev_attrib, da_group);
2686 struct tcmu_dev *udev = container_of(da->da_dev,
2687 struct tcmu_dev, se_dev);
2691 if (da->da_dev->export_count) {
2692 pr_err("Unable to set tcmu cmd_time_out while exports exist\n");
2696 ret = kstrtou32(page, 0, &val);
2700 udev->cmd_time_out = val * MSEC_PER_SEC;
2703 CONFIGFS_ATTR(tcmu_, cmd_time_out);
2705 static ssize_t tcmu_qfull_time_out_show(struct config_item *item, char *page)
2707 struct se_dev_attrib *da = container_of(to_config_group(item),
2708 struct se_dev_attrib, da_group);
2709 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2711 return snprintf(page, PAGE_SIZE, "%ld\n", udev->qfull_time_out <= 0 ?
2712 udev->qfull_time_out :
2713 udev->qfull_time_out / MSEC_PER_SEC);
2716 static ssize_t tcmu_qfull_time_out_store(struct config_item *item,
2717 const char *page, size_t count)
2719 struct se_dev_attrib *da = container_of(to_config_group(item),
2720 struct se_dev_attrib, da_group);
2721 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2725 ret = kstrtos32(page, 0, &val);
2730 udev->qfull_time_out = val * MSEC_PER_SEC;
2731 } else if (val == -1) {
2732 udev->qfull_time_out = val;
2734 printk(KERN_ERR "Invalid qfull timeout value %d\n", val);
2739 CONFIGFS_ATTR(tcmu_, qfull_time_out);
2741 static ssize_t tcmu_max_data_area_mb_show(struct config_item *item, char *page)
2743 struct se_dev_attrib *da = container_of(to_config_group(item),
2744 struct se_dev_attrib, da_group);
2745 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2747 return snprintf(page, PAGE_SIZE, "%u\n", udev->data_area_mb);
2749 CONFIGFS_ATTR_RO(tcmu_, max_data_area_mb);
2751 static ssize_t tcmu_data_pages_per_blk_show(struct config_item *item,
2754 struct se_dev_attrib *da = container_of(to_config_group(item),
2755 struct se_dev_attrib, da_group);
2756 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2758 return snprintf(page, PAGE_SIZE, "%u\n", udev->data_pages_per_blk);
2760 CONFIGFS_ATTR_RO(tcmu_, data_pages_per_blk);
2762 static ssize_t tcmu_cmd_ring_size_mb_show(struct config_item *item, char *page)
2764 struct se_dev_attrib *da = container_of(to_config_group(item),
2765 struct se_dev_attrib, da_group);
2766 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2768 return snprintf(page, PAGE_SIZE, "%u\n",
2769 (udev->cmdr_size + CMDR_OFF) >> 20);
2771 CONFIGFS_ATTR_RO(tcmu_, cmd_ring_size_mb);
2773 static ssize_t tcmu_dev_config_show(struct config_item *item, char *page)
2775 struct se_dev_attrib *da = container_of(to_config_group(item),
2776 struct se_dev_attrib, da_group);
2777 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2779 return snprintf(page, PAGE_SIZE, "%s\n", udev->dev_config);
2782 static int tcmu_send_dev_config_event(struct tcmu_dev *udev,
2783 const char *reconfig_data)
2785 struct sk_buff *skb = NULL;
2786 void *msg_header = NULL;
2789 ret = tcmu_netlink_event_init(udev, TCMU_CMD_RECONFIG_DEVICE,
2793 ret = nla_put_string(skb, TCMU_ATTR_DEV_CFG, reconfig_data);
2798 return tcmu_netlink_event_send(udev, TCMU_CMD_RECONFIG_DEVICE,
2803 static ssize_t tcmu_dev_config_store(struct config_item *item, const char *page,
2806 struct se_dev_attrib *da = container_of(to_config_group(item),
2807 struct se_dev_attrib, da_group);
2808 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2812 if (!len || len > TCMU_CONFIG_LEN - 1)
2815 /* Check if device has been configured before */
2816 if (target_dev_configured(&udev->se_dev)) {
2817 ret = tcmu_send_dev_config_event(udev, page);
2819 pr_err("Unable to reconfigure device\n");
2822 strlcpy(udev->dev_config, page, TCMU_CONFIG_LEN);
2824 ret = tcmu_update_uio_info(udev);
2829 strlcpy(udev->dev_config, page, TCMU_CONFIG_LEN);
2833 CONFIGFS_ATTR(tcmu_, dev_config);
2835 static ssize_t tcmu_dev_size_show(struct config_item *item, char *page)
2837 struct se_dev_attrib *da = container_of(to_config_group(item),
2838 struct se_dev_attrib, da_group);
2839 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2841 return snprintf(page, PAGE_SIZE, "%llu\n", udev->dev_size);
2844 static int tcmu_send_dev_size_event(struct tcmu_dev *udev, u64 size)
2846 struct sk_buff *skb = NULL;
2847 void *msg_header = NULL;
2850 ret = tcmu_netlink_event_init(udev, TCMU_CMD_RECONFIG_DEVICE,
2854 ret = nla_put_u64_64bit(skb, TCMU_ATTR_DEV_SIZE,
2855 size, TCMU_ATTR_PAD);
2860 return tcmu_netlink_event_send(udev, TCMU_CMD_RECONFIG_DEVICE,
2864 static ssize_t tcmu_dev_size_store(struct config_item *item, const char *page,
2867 struct se_dev_attrib *da = container_of(to_config_group(item),
2868 struct se_dev_attrib, da_group);
2869 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2873 ret = kstrtou64(page, 0, &val);
2877 /* Check if device has been configured before */
2878 if (target_dev_configured(&udev->se_dev)) {
2879 ret = tcmu_send_dev_size_event(udev, val);
2881 pr_err("Unable to reconfigure device\n");
2885 udev->dev_size = val;
2888 CONFIGFS_ATTR(tcmu_, dev_size);
2890 static ssize_t tcmu_nl_reply_supported_show(struct config_item *item,
2893 struct se_dev_attrib *da = container_of(to_config_group(item),
2894 struct se_dev_attrib, da_group);
2895 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2897 return snprintf(page, PAGE_SIZE, "%d\n", udev->nl_reply_supported);
2900 static ssize_t tcmu_nl_reply_supported_store(struct config_item *item,
2901 const char *page, size_t count)
2903 struct se_dev_attrib *da = container_of(to_config_group(item),
2904 struct se_dev_attrib, da_group);
2905 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2909 ret = kstrtos8(page, 0, &val);
2913 udev->nl_reply_supported = val;
2916 CONFIGFS_ATTR(tcmu_, nl_reply_supported);
2918 static ssize_t tcmu_emulate_write_cache_show(struct config_item *item,
2921 struct se_dev_attrib *da = container_of(to_config_group(item),
2922 struct se_dev_attrib, da_group);
2924 return snprintf(page, PAGE_SIZE, "%i\n", da->emulate_write_cache);
2927 static int tcmu_send_emulate_write_cache(struct tcmu_dev *udev, u8 val)
2929 struct sk_buff *skb = NULL;
2930 void *msg_header = NULL;
2933 ret = tcmu_netlink_event_init(udev, TCMU_CMD_RECONFIG_DEVICE,
2937 ret = nla_put_u8(skb, TCMU_ATTR_WRITECACHE, val);
2942 return tcmu_netlink_event_send(udev, TCMU_CMD_RECONFIG_DEVICE,
2946 static ssize_t tcmu_emulate_write_cache_store(struct config_item *item,
2947 const char *page, size_t count)
2949 struct se_dev_attrib *da = container_of(to_config_group(item),
2950 struct se_dev_attrib, da_group);
2951 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2955 ret = kstrtou8(page, 0, &val);
2959 /* Check if device has been configured before */
2960 if (target_dev_configured(&udev->se_dev)) {
2961 ret = tcmu_send_emulate_write_cache(udev, val);
2963 pr_err("Unable to reconfigure device\n");
2968 da->emulate_write_cache = val;
2971 CONFIGFS_ATTR(tcmu_, emulate_write_cache);
2973 static ssize_t tcmu_tmr_notification_show(struct config_item *item, char *page)
2975 struct se_dev_attrib *da = container_of(to_config_group(item),
2976 struct se_dev_attrib, da_group);
2977 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2979 return snprintf(page, PAGE_SIZE, "%i\n",
2980 test_bit(TCMU_DEV_BIT_TMR_NOTIFY, &udev->flags));
2983 static ssize_t tcmu_tmr_notification_store(struct config_item *item,
2984 const char *page, size_t count)
2986 struct se_dev_attrib *da = container_of(to_config_group(item),
2987 struct se_dev_attrib, da_group);
2988 struct tcmu_dev *udev = TCMU_DEV(da->da_dev);
2992 ret = kstrtou8(page, 0, &val);
2999 set_bit(TCMU_DEV_BIT_TMR_NOTIFY, &udev->flags);
3001 clear_bit(TCMU_DEV_BIT_TMR_NOTIFY, &udev->flags);
3004 CONFIGFS_ATTR(tcmu_, tmr_notification);
3006 static ssize_t tcmu_block_dev_show(struct config_item *item, char *page)
3008 struct se_device *se_dev = container_of(to_config_group(item),
3011 struct tcmu_dev *udev = TCMU_DEV(se_dev);
3013 if (test_bit(TCMU_DEV_BIT_BLOCKED, &udev->flags))
3014 return snprintf(page, PAGE_SIZE, "%s\n", "blocked");
3016 return snprintf(page, PAGE_SIZE, "%s\n", "unblocked");
3019 static ssize_t tcmu_block_dev_store(struct config_item *item, const char *page,
3022 struct se_device *se_dev = container_of(to_config_group(item),
3025 struct tcmu_dev *udev = TCMU_DEV(se_dev);
3029 if (!target_dev_configured(&udev->se_dev)) {
3030 pr_err("Device is not configured.\n");
3034 ret = kstrtou8(page, 0, &val);
3039 pr_err("Invalid block value %d\n", val);
3044 tcmu_unblock_dev(udev);
3046 tcmu_block_dev(udev);
3049 CONFIGFS_ATTR(tcmu_, block_dev);
3051 static ssize_t tcmu_reset_ring_store(struct config_item *item, const char *page,
3054 struct se_device *se_dev = container_of(to_config_group(item),
3057 struct tcmu_dev *udev = TCMU_DEV(se_dev);
3061 if (!target_dev_configured(&udev->se_dev)) {
3062 pr_err("Device is not configured.\n");
3066 ret = kstrtou8(page, 0, &val);
3070 if (val != 1 && val != 2) {
3071 pr_err("Invalid reset ring value %d\n", val);
3075 tcmu_reset_ring(udev, val);
3078 CONFIGFS_ATTR_WO(tcmu_, reset_ring);
3080 static ssize_t tcmu_free_kept_buf_store(struct config_item *item, const char *page,
3083 struct se_device *se_dev = container_of(to_config_group(item),
3086 struct tcmu_dev *udev = TCMU_DEV(se_dev);
3087 struct tcmu_cmd *cmd;
3091 if (!target_dev_configured(&udev->se_dev)) {
3092 pr_err("Device is not configured.\n");
3096 ret = kstrtou16(page, 0, &cmd_id);
3100 mutex_lock(&udev->cmdr_lock);
3103 XA_STATE(xas, &udev->commands, cmd_id);
3106 cmd = xas_load(&xas);
3108 pr_err("free_kept_buf: cmd_id %d not found\n", cmd_id);
3113 if (!test_bit(TCMU_CMD_BIT_KEEP_BUF, &cmd->flags)) {
3114 pr_err("free_kept_buf: cmd_id %d was not completed with KEEP_BUF\n",
3120 xas_store(&xas, NULL);
3124 tcmu_cmd_free_data(cmd, cmd->dbi_cnt);
3127 * We only freed data space, not ring space. Therefore we dont call
3128 * run_tmr_queue, but call run_qfull_queue if tmr_list is empty.
3130 if (list_empty(&udev->tmr_queue))
3131 run_qfull_queue(udev, false);
3134 mutex_unlock(&udev->cmdr_lock);
3137 CONFIGFS_ATTR_WO(tcmu_, free_kept_buf);
3139 static struct configfs_attribute *tcmu_attrib_attrs[] = {
3140 &tcmu_attr_cmd_time_out,
3141 &tcmu_attr_qfull_time_out,
3142 &tcmu_attr_max_data_area_mb,
3143 &tcmu_attr_data_pages_per_blk,
3144 &tcmu_attr_cmd_ring_size_mb,
3145 &tcmu_attr_dev_config,
3146 &tcmu_attr_dev_size,
3147 &tcmu_attr_emulate_write_cache,
3148 &tcmu_attr_tmr_notification,
3149 &tcmu_attr_nl_reply_supported,
3153 static struct configfs_attribute **tcmu_attrs;
3155 static struct configfs_attribute *tcmu_action_attrs[] = {
3156 &tcmu_attr_block_dev,
3157 &tcmu_attr_reset_ring,
3158 &tcmu_attr_free_kept_buf,
3162 static struct target_backend_ops tcmu_ops = {
3164 .owner = THIS_MODULE,
3165 .transport_flags_default = TRANSPORT_FLAG_PASSTHROUGH,
3166 .transport_flags_changeable = TRANSPORT_FLAG_PASSTHROUGH_PGR |
3167 TRANSPORT_FLAG_PASSTHROUGH_ALUA,
3168 .attach_hba = tcmu_attach_hba,
3169 .detach_hba = tcmu_detach_hba,
3170 .alloc_device = tcmu_alloc_device,
3171 .configure_device = tcmu_configure_device,
3172 .destroy_device = tcmu_destroy_device,
3173 .free_device = tcmu_free_device,
3174 .unplug_device = tcmu_unplug_device,
3175 .plug_device = tcmu_plug_device,
3176 .parse_cdb = tcmu_parse_cdb,
3177 .tmr_notify = tcmu_tmr_notify,
3178 .set_configfs_dev_params = tcmu_set_configfs_dev_params,
3179 .show_configfs_dev_params = tcmu_show_configfs_dev_params,
3180 .get_device_type = sbc_get_device_type,
3181 .get_blocks = tcmu_get_blocks,
3182 .tb_dev_action_attrs = tcmu_action_attrs,
3185 static void find_free_blocks(void)
3187 struct tcmu_dev *udev;
3189 u32 pages_freed, total_pages_freed = 0;
3190 u32 start, end, block, total_blocks_freed = 0;
3192 if (atomic_read(&global_page_count) <= tcmu_global_max_pages)
3195 mutex_lock(&root_udev_mutex);
3196 list_for_each_entry(udev, &root_udev, node) {
3197 mutex_lock(&udev->cmdr_lock);
3199 if (!target_dev_configured(&udev->se_dev)) {
3200 mutex_unlock(&udev->cmdr_lock);
3204 /* Try to complete the finished commands first */
3205 if (tcmu_handle_completions(udev))
3206 run_qfull_queue(udev, false);
3208 /* Skip the udevs in idle */
3209 if (!udev->dbi_thresh) {
3210 mutex_unlock(&udev->cmdr_lock);
3214 end = udev->dbi_max + 1;
3215 block = find_last_bit(udev->data_bitmap, end);
3216 if (block == udev->dbi_max) {
3218 * The last bit is dbi_max, so it is not possible
3219 * reclaim any blocks.
3221 mutex_unlock(&udev->cmdr_lock);
3223 } else if (block == end) {
3224 /* The current udev will goto idle state */
3225 udev->dbi_thresh = start = 0;
3228 udev->dbi_thresh = start = block + 1;
3229 udev->dbi_max = block;
3233 * Release the block pages.
3235 * Also note that since tcmu_vma_fault() gets an extra page
3236 * refcount, tcmu_blocks_release() won't free pages if pages
3237 * are mapped. This means it is safe to call
3238 * tcmu_blocks_release() before unmap_mapping_range() which
3239 * drops the refcount of any pages it unmaps and thus releases
3242 pages_freed = tcmu_blocks_release(udev, start, end - 1);
3244 /* Here will truncate the data area from off */
3245 off = udev->data_off + (loff_t)start * udev->data_blk_size;
3246 unmap_mapping_range(udev->inode->i_mapping, off, 0, 1);
3248 mutex_unlock(&udev->cmdr_lock);
3250 total_pages_freed += pages_freed;
3251 total_blocks_freed += end - start;
3252 pr_debug("Freed %u pages (total %u) from %u blocks (total %u) from %s.\n",
3253 pages_freed, total_pages_freed, end - start,
3254 total_blocks_freed, udev->name);
3256 mutex_unlock(&root_udev_mutex);
3258 if (atomic_read(&global_page_count) > tcmu_global_max_pages)
3259 schedule_delayed_work(&tcmu_unmap_work, msecs_to_jiffies(5000));
3262 static void check_timedout_devices(void)
3264 struct tcmu_dev *udev, *tmp_dev;
3265 struct tcmu_cmd *cmd, *tmp_cmd;
3268 spin_lock_bh(&timed_out_udevs_lock);
3269 list_splice_init(&timed_out_udevs, &devs);
3271 list_for_each_entry_safe(udev, tmp_dev, &devs, timedout_entry) {
3272 list_del_init(&udev->timedout_entry);
3273 spin_unlock_bh(&timed_out_udevs_lock);
3275 mutex_lock(&udev->cmdr_lock);
3278 * If cmd_time_out is disabled but qfull is set deadline
3279 * will only reflect the qfull timeout. Ignore it.
3281 if (udev->cmd_time_out) {
3282 list_for_each_entry_safe(cmd, tmp_cmd,
3283 &udev->inflight_queue,
3285 tcmu_check_expired_ring_cmd(cmd);
3287 tcmu_set_next_deadline(&udev->inflight_queue,
3290 list_for_each_entry_safe(cmd, tmp_cmd, &udev->qfull_queue,
3292 tcmu_check_expired_queue_cmd(cmd);
3294 tcmu_set_next_deadline(&udev->qfull_queue, &udev->qfull_timer);
3296 mutex_unlock(&udev->cmdr_lock);
3298 spin_lock_bh(&timed_out_udevs_lock);
3301 spin_unlock_bh(&timed_out_udevs_lock);
3304 static void tcmu_unmap_work_fn(struct work_struct *work)
3306 check_timedout_devices();
3310 static int __init tcmu_module_init(void)
3312 int ret, i, k, len = 0;
3314 BUILD_BUG_ON((sizeof(struct tcmu_cmd_entry) % TCMU_OP_ALIGN_SIZE) != 0);
3316 INIT_DELAYED_WORK(&tcmu_unmap_work, tcmu_unmap_work_fn);
3318 tcmu_cmd_cache = kmem_cache_create("tcmu_cmd_cache",
3319 sizeof(struct tcmu_cmd),
3320 __alignof__(struct tcmu_cmd),
3322 if (!tcmu_cmd_cache)
3325 tcmu_root_device = root_device_register("tcm_user");
3326 if (IS_ERR(tcmu_root_device)) {
3327 ret = PTR_ERR(tcmu_root_device);
3328 goto out_free_cache;
3331 ret = genl_register_family(&tcmu_genl_family);
3333 goto out_unreg_device;
3336 for (i = 0; passthrough_attrib_attrs[i] != NULL; i++)
3337 len += sizeof(struct configfs_attribute *);
3338 for (i = 0; passthrough_pr_attrib_attrs[i] != NULL; i++)
3339 len += sizeof(struct configfs_attribute *);
3340 for (i = 0; tcmu_attrib_attrs[i] != NULL; i++)
3341 len += sizeof(struct configfs_attribute *);
3342 len += sizeof(struct configfs_attribute *);
3344 tcmu_attrs = kzalloc(len, GFP_KERNEL);
3347 goto out_unreg_genl;
3350 for (i = 0; passthrough_attrib_attrs[i] != NULL; i++)
3351 tcmu_attrs[i] = passthrough_attrib_attrs[i];
3352 for (k = 0; passthrough_pr_attrib_attrs[k] != NULL; k++)
3353 tcmu_attrs[i++] = passthrough_pr_attrib_attrs[k];
3354 for (k = 0; tcmu_attrib_attrs[k] != NULL; k++)
3355 tcmu_attrs[i++] = tcmu_attrib_attrs[k];
3356 tcmu_ops.tb_dev_attrib_attrs = tcmu_attrs;
3358 ret = transport_backend_register(&tcmu_ops);
3367 genl_unregister_family(&tcmu_genl_family);
3369 root_device_unregister(tcmu_root_device);
3371 kmem_cache_destroy(tcmu_cmd_cache);
3376 static void __exit tcmu_module_exit(void)
3378 cancel_delayed_work_sync(&tcmu_unmap_work);
3379 target_backend_unregister(&tcmu_ops);
3381 genl_unregister_family(&tcmu_genl_family);
3382 root_device_unregister(tcmu_root_device);
3383 kmem_cache_destroy(tcmu_cmd_cache);
3386 MODULE_DESCRIPTION("TCM USER subsystem plugin");
3389 MODULE_LICENSE("GPL");
3391 module_init(tcmu_module_init);
3392 module_exit(tcmu_module_exit);