18839a0e0STejun Heo /* 24fed947cSTejun Heo * Functions to sequence FLUSH and FUA writes. 3ae1b1539STejun Heo * 4ae1b1539STejun Heo * Copyright (C) 2011 Max Planck Institute for Gravitational Physics 5ae1b1539STejun Heo * Copyright (C) 2011 Tejun Heo <tj@kernel.org> 6ae1b1539STejun Heo * 7ae1b1539STejun Heo * This file is released under the GPLv2. 8ae1b1539STejun Heo * 9ae1b1539STejun Heo * REQ_{FLUSH|FUA} requests are decomposed to sequences consisted of three 10ae1b1539STejun Heo * optional steps - PREFLUSH, DATA and POSTFLUSH - according to the request 11ae1b1539STejun Heo * properties and hardware capability. 12ae1b1539STejun Heo * 13ae1b1539STejun Heo * If a request doesn't have data, only REQ_FLUSH makes sense, which 14ae1b1539STejun Heo * indicates a simple flush request. If there is data, REQ_FLUSH indicates 15ae1b1539STejun Heo * that the device cache should be flushed before the data is executed, and 16ae1b1539STejun Heo * REQ_FUA means that the data must be on non-volatile media on request 17ae1b1539STejun Heo * completion. 18ae1b1539STejun Heo * 19ae1b1539STejun Heo * If the device doesn't have writeback cache, FLUSH and FUA don't make any 20ae1b1539STejun Heo * difference. The requests are either completed immediately if there's no 21ae1b1539STejun Heo * data or executed as normal requests otherwise. 22ae1b1539STejun Heo * 23ae1b1539STejun Heo * If the device has writeback cache and supports FUA, REQ_FLUSH is 24ae1b1539STejun Heo * translated to PREFLUSH but REQ_FUA is passed down directly with DATA. 25ae1b1539STejun Heo * 26ae1b1539STejun Heo * If the device has writeback cache and doesn't support FUA, REQ_FLUSH is 27ae1b1539STejun Heo * translated to PREFLUSH and REQ_FUA to POSTFLUSH. 28ae1b1539STejun Heo * 29ae1b1539STejun Heo * The actual execution of flush is double buffered. Whenever a request 30ae1b1539STejun Heo * needs to execute PRE or POSTFLUSH, it queues at 317c94e1c1SMing Lei * fq->flush_queue[fq->flush_pending_idx]. Once certain criteria are met, a 32ae1b1539STejun Heo * flush is issued and the pending_idx is toggled. When the flush 33ae1b1539STejun Heo * completes, all the requests which were pending are proceeded to the next 34ae1b1539STejun Heo * step. This allows arbitrary merging of different types of FLUSH/FUA 35ae1b1539STejun Heo * requests. 36ae1b1539STejun Heo * 37ae1b1539STejun Heo * Currently, the following conditions are used to determine when to issue 38ae1b1539STejun Heo * flush. 39ae1b1539STejun Heo * 40ae1b1539STejun Heo * C1. At any given time, only one flush shall be in progress. This makes 41ae1b1539STejun Heo * double buffering sufficient. 42ae1b1539STejun Heo * 43ae1b1539STejun Heo * C2. Flush is deferred if any request is executing DATA of its sequence. 44ae1b1539STejun Heo * This avoids issuing separate POSTFLUSHes for requests which shared 45ae1b1539STejun Heo * PREFLUSH. 46ae1b1539STejun Heo * 47ae1b1539STejun Heo * C3. The second condition is ignored if there is a request which has 48ae1b1539STejun Heo * waited longer than FLUSH_PENDING_TIMEOUT. This is to avoid 49ae1b1539STejun Heo * starvation in the unlikely case where there are continuous stream of 50ae1b1539STejun Heo * FUA (without FLUSH) requests. 51ae1b1539STejun Heo * 52ae1b1539STejun Heo * For devices which support FUA, it isn't clear whether C2 (and thus C3) 53ae1b1539STejun Heo * is beneficial. 54ae1b1539STejun Heo * 55ae1b1539STejun Heo * Note that a sequenced FLUSH/FUA request with DATA is completed twice. 56ae1b1539STejun Heo * Once while executing DATA and again after the whole sequence is 57ae1b1539STejun Heo * complete. The first completion updates the contained bio but doesn't 58ae1b1539STejun Heo * finish it so that the bio submitter is notified only after the whole 59ae1b1539STejun Heo * sequence is complete. This is implemented by testing REQ_FLUSH_SEQ in 60ae1b1539STejun Heo * req_bio_endio(). 61ae1b1539STejun Heo * 62ae1b1539STejun Heo * The above peculiarity requires that each FLUSH/FUA request has only one 63ae1b1539STejun Heo * bio attached to it, which is guaranteed as they aren't allowed to be 64ae1b1539STejun Heo * merged in the usual way. 658839a0e0STejun Heo */ 66ae1b1539STejun Heo 678839a0e0STejun Heo #include <linux/kernel.h> 688839a0e0STejun Heo #include <linux/module.h> 698839a0e0STejun Heo #include <linux/bio.h> 708839a0e0STejun Heo #include <linux/blkdev.h> 718839a0e0STejun Heo #include <linux/gfp.h> 72320ae51fSJens Axboe #include <linux/blk-mq.h> 738839a0e0STejun Heo 748839a0e0STejun Heo #include "blk.h" 75320ae51fSJens Axboe #include "blk-mq.h" 760048b483SMing Lei #include "blk-mq-tag.h" 778839a0e0STejun Heo 784fed947cSTejun Heo /* FLUSH/FUA sequences */ 794fed947cSTejun Heo enum { 80ae1b1539STejun Heo REQ_FSEQ_PREFLUSH = (1 << 0), /* pre-flushing in progress */ 81ae1b1539STejun Heo REQ_FSEQ_DATA = (1 << 1), /* data write in progress */ 82ae1b1539STejun Heo REQ_FSEQ_POSTFLUSH = (1 << 2), /* post-flushing in progress */ 83ae1b1539STejun Heo REQ_FSEQ_DONE = (1 << 3), 84ae1b1539STejun Heo 85ae1b1539STejun Heo REQ_FSEQ_ACTIONS = REQ_FSEQ_PREFLUSH | REQ_FSEQ_DATA | 86ae1b1539STejun Heo REQ_FSEQ_POSTFLUSH, 87ae1b1539STejun Heo 88ae1b1539STejun Heo /* 89ae1b1539STejun Heo * If flush has been pending longer than the following timeout, 90ae1b1539STejun Heo * it's issued even if flush_data requests are still in flight. 91ae1b1539STejun Heo */ 92ae1b1539STejun Heo FLUSH_PENDING_TIMEOUT = 5 * HZ, 934fed947cSTejun Heo }; 944fed947cSTejun Heo 950bae352dSMing Lei static bool blk_kick_flush(struct request_queue *q, 960bae352dSMing Lei struct blk_flush_queue *fq); 978839a0e0STejun Heo 98c888a8f9SJens Axboe static unsigned int blk_flush_policy(unsigned long fflags, struct request *rq) 998839a0e0STejun Heo { 100ae1b1539STejun Heo unsigned int policy = 0; 101ae1b1539STejun Heo 102fa1bf42fSJeff Moyer if (blk_rq_sectors(rq)) 103fa1bf42fSJeff Moyer policy |= REQ_FSEQ_DATA; 104fa1bf42fSJeff Moyer 105c888a8f9SJens Axboe if (fflags & (1UL << QUEUE_FLAG_WC)) { 106ae1b1539STejun Heo if (rq->cmd_flags & REQ_FLUSH) 107ae1b1539STejun Heo policy |= REQ_FSEQ_PREFLUSH; 108c888a8f9SJens Axboe if (!(fflags & (1UL << QUEUE_FLAG_FUA)) && 109c888a8f9SJens Axboe (rq->cmd_flags & REQ_FUA)) 110ae1b1539STejun Heo policy |= REQ_FSEQ_POSTFLUSH; 111ae1b1539STejun Heo } 112ae1b1539STejun Heo return policy; 1138839a0e0STejun Heo } 1148839a0e0STejun Heo 115ae1b1539STejun Heo static unsigned int blk_flush_cur_seq(struct request *rq) 1168839a0e0STejun Heo { 117ae1b1539STejun Heo return 1 << ffz(rq->flush.seq); 1188839a0e0STejun Heo } 1198839a0e0STejun Heo 120ae1b1539STejun Heo static void blk_flush_restore_request(struct request *rq) 12147f70d5aSTejun Heo { 12247f70d5aSTejun Heo /* 123ae1b1539STejun Heo * After flush data completion, @rq->bio is %NULL but we need to 124ae1b1539STejun Heo * complete the bio again. @rq->biotail is guaranteed to equal the 125ae1b1539STejun Heo * original @rq->bio. Restore it. 12647f70d5aSTejun Heo */ 127ae1b1539STejun Heo rq->bio = rq->biotail; 128ae1b1539STejun Heo 129ae1b1539STejun Heo /* make @rq a normal request */ 130ae1b1539STejun Heo rq->cmd_flags &= ~REQ_FLUSH_SEQ; 1314853abaaSJeff Moyer rq->end_io = rq->flush.saved_end_io; 132320ae51fSJens Axboe } 133320ae51fSJens Axboe 13410beafc1SMike Snitzer static bool blk_flush_queue_rq(struct request *rq, bool add_front) 135320ae51fSJens Axboe { 13618741986SChristoph Hellwig if (rq->q->mq_ops) { 1376fca6a61SChristoph Hellwig struct request_queue *q = rq->q; 1386fca6a61SChristoph Hellwig 1396fca6a61SChristoph Hellwig blk_mq_add_to_requeue_list(rq, add_front); 1406fca6a61SChristoph Hellwig blk_mq_kick_requeue_list(q); 14118741986SChristoph Hellwig return false; 14218741986SChristoph Hellwig } else { 14310beafc1SMike Snitzer if (add_front) 14410beafc1SMike Snitzer list_add(&rq->queuelist, &rq->q->queue_head); 14510beafc1SMike Snitzer else 14618741986SChristoph Hellwig list_add_tail(&rq->queuelist, &rq->q->queue_head); 14718741986SChristoph Hellwig return true; 14818741986SChristoph Hellwig } 14947f70d5aSTejun Heo } 15047f70d5aSTejun Heo 151ae1b1539STejun Heo /** 152ae1b1539STejun Heo * blk_flush_complete_seq - complete flush sequence 153ae1b1539STejun Heo * @rq: FLUSH/FUA request being sequenced 1540bae352dSMing Lei * @fq: flush queue 155ae1b1539STejun Heo * @seq: sequences to complete (mask of %REQ_FSEQ_*, can be zero) 156ae1b1539STejun Heo * @error: whether an error occurred 157ae1b1539STejun Heo * 158ae1b1539STejun Heo * @rq just completed @seq part of its flush sequence, record the 159ae1b1539STejun Heo * completion and trigger the next step. 160ae1b1539STejun Heo * 161ae1b1539STejun Heo * CONTEXT: 1627c94e1c1SMing Lei * spin_lock_irq(q->queue_lock or fq->mq_flush_lock) 163ae1b1539STejun Heo * 164ae1b1539STejun Heo * RETURNS: 165ae1b1539STejun Heo * %true if requests were added to the dispatch queue, %false otherwise. 166ae1b1539STejun Heo */ 1670bae352dSMing Lei static bool blk_flush_complete_seq(struct request *rq, 1680bae352dSMing Lei struct blk_flush_queue *fq, 1690bae352dSMing Lei unsigned int seq, int error) 1708839a0e0STejun Heo { 171ae1b1539STejun Heo struct request_queue *q = rq->q; 1727c94e1c1SMing Lei struct list_head *pending = &fq->flush_queue[fq->flush_pending_idx]; 173320ae51fSJens Axboe bool queued = false, kicked; 1748839a0e0STejun Heo 175ae1b1539STejun Heo BUG_ON(rq->flush.seq & seq); 176ae1b1539STejun Heo rq->flush.seq |= seq; 1778839a0e0STejun Heo 178ae1b1539STejun Heo if (likely(!error)) 179ae1b1539STejun Heo seq = blk_flush_cur_seq(rq); 180ae1b1539STejun Heo else 181ae1b1539STejun Heo seq = REQ_FSEQ_DONE; 1828839a0e0STejun Heo 183ae1b1539STejun Heo switch (seq) { 184ae1b1539STejun Heo case REQ_FSEQ_PREFLUSH: 185ae1b1539STejun Heo case REQ_FSEQ_POSTFLUSH: 186ae1b1539STejun Heo /* queue for flush */ 187ae1b1539STejun Heo if (list_empty(pending)) 1887c94e1c1SMing Lei fq->flush_pending_since = jiffies; 189ae1b1539STejun Heo list_move_tail(&rq->flush.list, pending); 1908839a0e0STejun Heo break; 191ae1b1539STejun Heo 192ae1b1539STejun Heo case REQ_FSEQ_DATA: 1937c94e1c1SMing Lei list_move_tail(&rq->flush.list, &fq->flush_data_in_flight); 19410beafc1SMike Snitzer queued = blk_flush_queue_rq(rq, true); 195ae1b1539STejun Heo break; 196ae1b1539STejun Heo 197ae1b1539STejun Heo case REQ_FSEQ_DONE: 19809d60c70STejun Heo /* 199ae1b1539STejun Heo * @rq was previously adjusted by blk_flush_issue() for 200ae1b1539STejun Heo * flush sequencing and may already have gone through the 201ae1b1539STejun Heo * flush data request completion path. Restore @rq for 202ae1b1539STejun Heo * normal completion and end it. 20309d60c70STejun Heo */ 204ae1b1539STejun Heo BUG_ON(!list_empty(&rq->queuelist)); 205ae1b1539STejun Heo list_del_init(&rq->flush.list); 206ae1b1539STejun Heo blk_flush_restore_request(rq); 207320ae51fSJens Axboe if (q->mq_ops) 208c8a446adSChristoph Hellwig blk_mq_end_request(rq, error); 209320ae51fSJens Axboe else 210ae1b1539STejun Heo __blk_end_request_all(rq, error); 2118839a0e0STejun Heo break; 212ae1b1539STejun Heo 2138839a0e0STejun Heo default: 2148839a0e0STejun Heo BUG(); 2158839a0e0STejun Heo } 216cde4c406SChristoph Hellwig 2170bae352dSMing Lei kicked = blk_kick_flush(q, fq); 218320ae51fSJens Axboe return kicked | queued; 2198839a0e0STejun Heo } 2208839a0e0STejun Heo 221ae1b1539STejun Heo static void flush_end_io(struct request *flush_rq, int error) 2228839a0e0STejun Heo { 223ae1b1539STejun Heo struct request_queue *q = flush_rq->q; 224320ae51fSJens Axboe struct list_head *running; 225ae1b1539STejun Heo bool queued = false; 226ae1b1539STejun Heo struct request *rq, *n; 227320ae51fSJens Axboe unsigned long flags = 0; 228e97c293cSMing Lei struct blk_flush_queue *fq = blk_get_flush_queue(q, flush_rq->mq_ctx); 2298839a0e0STejun Heo 23022302375SShaohua Li if (q->mq_ops) { 2310048b483SMing Lei struct blk_mq_hw_ctx *hctx; 2320048b483SMing Lei 2330048b483SMing Lei /* release the tag's ownership to the req cloned from */ 2347c94e1c1SMing Lei spin_lock_irqsave(&fq->mq_flush_lock, flags); 2350048b483SMing Lei hctx = q->mq_ops->map_queue(q, flush_rq->mq_ctx->cpu); 2360048b483SMing Lei blk_mq_tag_set_rq(hctx, flush_rq->tag, fq->orig_rq); 2377ddab5deSMing Lei flush_rq->tag = -1; 23822302375SShaohua Li } 23918741986SChristoph Hellwig 2407c94e1c1SMing Lei running = &fq->flush_queue[fq->flush_running_idx]; 2417c94e1c1SMing Lei BUG_ON(fq->flush_pending_idx == fq->flush_running_idx); 242ae1b1539STejun Heo 243ae1b1539STejun Heo /* account completion of the flush request */ 2447c94e1c1SMing Lei fq->flush_running_idx ^= 1; 245320ae51fSJens Axboe 246320ae51fSJens Axboe if (!q->mq_ops) 247ae1b1539STejun Heo elv_completed_request(q, flush_rq); 248ae1b1539STejun Heo 249ae1b1539STejun Heo /* and push the waiting requests to the next stage */ 250ae1b1539STejun Heo list_for_each_entry_safe(rq, n, running, flush.list) { 251ae1b1539STejun Heo unsigned int seq = blk_flush_cur_seq(rq); 252ae1b1539STejun Heo 253ae1b1539STejun Heo BUG_ON(seq != REQ_FSEQ_PREFLUSH && seq != REQ_FSEQ_POSTFLUSH); 2540bae352dSMing Lei queued |= blk_flush_complete_seq(rq, fq, seq, error); 255ae1b1539STejun Heo } 256ae1b1539STejun Heo 2578839a0e0STejun Heo /* 2583ac0cc45Sshaohua.li@intel.com * Kick the queue to avoid stall for two cases: 2593ac0cc45Sshaohua.li@intel.com * 1. Moving a request silently to empty queue_head may stall the 2603ac0cc45Sshaohua.li@intel.com * queue. 2613ac0cc45Sshaohua.li@intel.com * 2. When flush request is running in non-queueable queue, the 2623ac0cc45Sshaohua.li@intel.com * queue is hold. Restart the queue after flush request is finished 2633ac0cc45Sshaohua.li@intel.com * to avoid stall. 2643ac0cc45Sshaohua.li@intel.com * This function is called from request completion path and calling 2653ac0cc45Sshaohua.li@intel.com * directly into request_fn may confuse the driver. Always use 2663ac0cc45Sshaohua.li@intel.com * kblockd. 2678839a0e0STejun Heo */ 2687c94e1c1SMing Lei if (queued || fq->flush_queue_delayed) { 26918741986SChristoph Hellwig WARN_ON(q->mq_ops); 27024ecfbe2SChristoph Hellwig blk_run_queue_async(q); 271320ae51fSJens Axboe } 2727c94e1c1SMing Lei fq->flush_queue_delayed = 0; 273320ae51fSJens Axboe if (q->mq_ops) 2747c94e1c1SMing Lei spin_unlock_irqrestore(&fq->mq_flush_lock, flags); 275320ae51fSJens Axboe } 276320ae51fSJens Axboe 277ae1b1539STejun Heo /** 278ae1b1539STejun Heo * blk_kick_flush - consider issuing flush request 279ae1b1539STejun Heo * @q: request_queue being kicked 2800bae352dSMing Lei * @fq: flush queue 2814fed947cSTejun Heo * 282ae1b1539STejun Heo * Flush related states of @q have changed, consider issuing flush request. 283ae1b1539STejun Heo * Please read the comment at the top of this file for more info. 284ae1b1539STejun Heo * 285ae1b1539STejun Heo * CONTEXT: 2867c94e1c1SMing Lei * spin_lock_irq(q->queue_lock or fq->mq_flush_lock) 287ae1b1539STejun Heo * 288ae1b1539STejun Heo * RETURNS: 289ae1b1539STejun Heo * %true if flush was issued, %false otherwise. 2908839a0e0STejun Heo */ 2910bae352dSMing Lei static bool blk_kick_flush(struct request_queue *q, struct blk_flush_queue *fq) 292ae1b1539STejun Heo { 2937c94e1c1SMing Lei struct list_head *pending = &fq->flush_queue[fq->flush_pending_idx]; 294ae1b1539STejun Heo struct request *first_rq = 295ae1b1539STejun Heo list_first_entry(pending, struct request, flush.list); 2967c94e1c1SMing Lei struct request *flush_rq = fq->flush_rq; 297ae1b1539STejun Heo 298ae1b1539STejun Heo /* C1 described at the top of this file */ 2997c94e1c1SMing Lei if (fq->flush_pending_idx != fq->flush_running_idx || list_empty(pending)) 300ae1b1539STejun Heo return false; 301ae1b1539STejun Heo 302ae1b1539STejun Heo /* C2 and C3 */ 3037c94e1c1SMing Lei if (!list_empty(&fq->flush_data_in_flight) && 304ae1b1539STejun Heo time_before(jiffies, 3057c94e1c1SMing Lei fq->flush_pending_since + FLUSH_PENDING_TIMEOUT)) 306ae1b1539STejun Heo return false; 307ae1b1539STejun Heo 308ae1b1539STejun Heo /* 309ae1b1539STejun Heo * Issue flush and toggle pending_idx. This makes pending_idx 310ae1b1539STejun Heo * different from running_idx, which means flush is in flight. 311ae1b1539STejun Heo */ 3127c94e1c1SMing Lei fq->flush_pending_idx ^= 1; 31318741986SChristoph Hellwig 3147ddab5deSMing Lei blk_rq_init(q, flush_rq); 315f70ced09SMing Lei 316f70ced09SMing Lei /* 317f70ced09SMing Lei * Borrow tag from the first request since they can't 3180048b483SMing Lei * be in flight at the same time. And acquire the tag's 3190048b483SMing Lei * ownership for flush req. 320f70ced09SMing Lei */ 321f70ced09SMing Lei if (q->mq_ops) { 3220048b483SMing Lei struct blk_mq_hw_ctx *hctx; 3230048b483SMing Lei 324f70ced09SMing Lei flush_rq->mq_ctx = first_rq->mq_ctx; 325f70ced09SMing Lei flush_rq->tag = first_rq->tag; 3260048b483SMing Lei fq->orig_rq = first_rq; 3270048b483SMing Lei 3280048b483SMing Lei hctx = q->mq_ops->map_queue(q, first_rq->mq_ctx->cpu); 3290048b483SMing Lei blk_mq_tag_set_rq(hctx, first_rq->tag, flush_rq); 330f70ced09SMing Lei } 331320ae51fSJens Axboe 3327ddab5deSMing Lei flush_rq->cmd_type = REQ_TYPE_FS; 3337ddab5deSMing Lei flush_rq->cmd_flags = WRITE_FLUSH | REQ_FLUSH_SEQ; 3347ddab5deSMing Lei flush_rq->rq_disk = first_rq->rq_disk; 3357ddab5deSMing Lei flush_rq->end_io = flush_end_io; 336ae1b1539STejun Heo 3377ddab5deSMing Lei return blk_flush_queue_rq(flush_rq, false); 338ae1b1539STejun Heo } 339ae1b1539STejun Heo 340ae1b1539STejun Heo static void flush_data_end_io(struct request *rq, int error) 341ae1b1539STejun Heo { 342ae1b1539STejun Heo struct request_queue *q = rq->q; 343e97c293cSMing Lei struct blk_flush_queue *fq = blk_get_flush_queue(q, NULL); 344ae1b1539STejun Heo 3458839a0e0STejun Heo /* 346e83a46bbSTejun Heo * After populating an empty queue, kick it to avoid stall. Read 347e83a46bbSTejun Heo * the comment in flush_end_io(). 3488839a0e0STejun Heo */ 3490bae352dSMing Lei if (blk_flush_complete_seq(rq, fq, REQ_FSEQ_DATA, error)) 35024ecfbe2SChristoph Hellwig blk_run_queue_async(q); 351ae1b1539STejun Heo } 352ae1b1539STejun Heo 353320ae51fSJens Axboe static void mq_flush_data_end_io(struct request *rq, int error) 354320ae51fSJens Axboe { 355320ae51fSJens Axboe struct request_queue *q = rq->q; 356320ae51fSJens Axboe struct blk_mq_hw_ctx *hctx; 357e97c293cSMing Lei struct blk_mq_ctx *ctx = rq->mq_ctx; 358320ae51fSJens Axboe unsigned long flags; 359e97c293cSMing Lei struct blk_flush_queue *fq = blk_get_flush_queue(q, ctx); 360320ae51fSJens Axboe 361320ae51fSJens Axboe hctx = q->mq_ops->map_queue(q, ctx->cpu); 362320ae51fSJens Axboe 363320ae51fSJens Axboe /* 364320ae51fSJens Axboe * After populating an empty queue, kick it to avoid stall. Read 365320ae51fSJens Axboe * the comment in flush_end_io(). 366320ae51fSJens Axboe */ 3677c94e1c1SMing Lei spin_lock_irqsave(&fq->mq_flush_lock, flags); 3680bae352dSMing Lei if (blk_flush_complete_seq(rq, fq, REQ_FSEQ_DATA, error)) 369320ae51fSJens Axboe blk_mq_run_hw_queue(hctx, true); 3707c94e1c1SMing Lei spin_unlock_irqrestore(&fq->mq_flush_lock, flags); 371320ae51fSJens Axboe } 372320ae51fSJens Axboe 373ae1b1539STejun Heo /** 374ae1b1539STejun Heo * blk_insert_flush - insert a new FLUSH/FUA request 375ae1b1539STejun Heo * @rq: request to insert 376ae1b1539STejun Heo * 377b710a480SJens Axboe * To be called from __elv_add_request() for %ELEVATOR_INSERT_FLUSH insertions. 378320ae51fSJens Axboe * or __blk_mq_run_hw_queue() to dispatch request. 379ae1b1539STejun Heo * @rq is being submitted. Analyze what needs to be done and put it on the 380ae1b1539STejun Heo * right queue. 381ae1b1539STejun Heo * 382ae1b1539STejun Heo * CONTEXT: 383320ae51fSJens Axboe * spin_lock_irq(q->queue_lock) in !mq case 384ae1b1539STejun Heo */ 385ae1b1539STejun Heo void blk_insert_flush(struct request *rq) 386ae1b1539STejun Heo { 387ae1b1539STejun Heo struct request_queue *q = rq->q; 388c888a8f9SJens Axboe unsigned long fflags = q->queue_flags; /* may change, cache */ 389ae1b1539STejun Heo unsigned int policy = blk_flush_policy(fflags, rq); 390e97c293cSMing Lei struct blk_flush_queue *fq = blk_get_flush_queue(q, rq->mq_ctx); 391ae1b1539STejun Heo 392ae1b1539STejun Heo /* 393ae1b1539STejun Heo * @policy now records what operations need to be done. Adjust 394ae1b1539STejun Heo * REQ_FLUSH and FUA for the driver. 395ae1b1539STejun Heo */ 3964fed947cSTejun Heo rq->cmd_flags &= ~REQ_FLUSH; 397c888a8f9SJens Axboe if (!(fflags & (1UL << QUEUE_FLAG_FUA))) 3984fed947cSTejun Heo rq->cmd_flags &= ~REQ_FUA; 399ae1b1539STejun Heo 400ae1b1539STejun Heo /* 4014853abaaSJeff Moyer * An empty flush handed down from a stacking driver may 4024853abaaSJeff Moyer * translate into nothing if the underlying device does not 4034853abaaSJeff Moyer * advertise a write-back cache. In this case, simply 4044853abaaSJeff Moyer * complete the request. 4054853abaaSJeff Moyer */ 4064853abaaSJeff Moyer if (!policy) { 407320ae51fSJens Axboe if (q->mq_ops) 408c8a446adSChristoph Hellwig blk_mq_end_request(rq, 0); 409320ae51fSJens Axboe else 4104853abaaSJeff Moyer __blk_end_bidi_request(rq, 0, 0, 0); 4114853abaaSJeff Moyer return; 4124853abaaSJeff Moyer } 4134853abaaSJeff Moyer 414834f9f61SJeff Moyer BUG_ON(rq->bio != rq->biotail); /*assumes zero or single bio rq */ 4154853abaaSJeff Moyer 4164853abaaSJeff Moyer /* 417ae1b1539STejun Heo * If there's data but flush is not necessary, the request can be 418ae1b1539STejun Heo * processed directly without going through flush machinery. Queue 419ae1b1539STejun Heo * for normal execution. 420ae1b1539STejun Heo */ 421ae1b1539STejun Heo if ((policy & REQ_FSEQ_DATA) && 422ae1b1539STejun Heo !(policy & (REQ_FSEQ_PREFLUSH | REQ_FSEQ_POSTFLUSH))) { 423320ae51fSJens Axboe if (q->mq_ops) { 424feb71daeSChristoph Hellwig blk_mq_insert_request(rq, false, false, true); 425320ae51fSJens Axboe } else 426dcd8376cSJens Axboe list_add_tail(&rq->queuelist, &q->queue_head); 427ae1b1539STejun Heo return; 4288839a0e0STejun Heo } 4298839a0e0STejun Heo 4308839a0e0STejun Heo /* 431ae1b1539STejun Heo * @rq should go through flush machinery. Mark it part of flush 432ae1b1539STejun Heo * sequence and submit for further processing. 4338839a0e0STejun Heo */ 434ae1b1539STejun Heo memset(&rq->flush, 0, sizeof(rq->flush)); 435ae1b1539STejun Heo INIT_LIST_HEAD(&rq->flush.list); 436ae1b1539STejun Heo rq->cmd_flags |= REQ_FLUSH_SEQ; 4374853abaaSJeff Moyer rq->flush.saved_end_io = rq->end_io; /* Usually NULL */ 438320ae51fSJens Axboe if (q->mq_ops) { 439320ae51fSJens Axboe rq->end_io = mq_flush_data_end_io; 440320ae51fSJens Axboe 4417c94e1c1SMing Lei spin_lock_irq(&fq->mq_flush_lock); 4420bae352dSMing Lei blk_flush_complete_seq(rq, fq, REQ_FSEQ_ACTIONS & ~policy, 0); 4437c94e1c1SMing Lei spin_unlock_irq(&fq->mq_flush_lock); 444320ae51fSJens Axboe return; 445320ae51fSJens Axboe } 446ae1b1539STejun Heo rq->end_io = flush_data_end_io; 447ae1b1539STejun Heo 4480bae352dSMing Lei blk_flush_complete_seq(rq, fq, REQ_FSEQ_ACTIONS & ~policy, 0); 449ae1b1539STejun Heo } 450ae1b1539STejun Heo 451ae1b1539STejun Heo /** 4528839a0e0STejun Heo * blkdev_issue_flush - queue a flush 4538839a0e0STejun Heo * @bdev: blockdev to issue flush for 4548839a0e0STejun Heo * @gfp_mask: memory allocation flags (for bio_alloc) 4558839a0e0STejun Heo * @error_sector: error sector 4568839a0e0STejun Heo * 4578839a0e0STejun Heo * Description: 4588839a0e0STejun Heo * Issue a flush for the block device in question. Caller can supply 4598839a0e0STejun Heo * room for storing the error offset in case of a flush error, if they 4608839a0e0STejun Heo * wish to. If WAIT flag is not passed then caller may check only what 4618839a0e0STejun Heo * request was pushed in some internal queue for later handling. 4628839a0e0STejun Heo */ 4638839a0e0STejun Heo int blkdev_issue_flush(struct block_device *bdev, gfp_t gfp_mask, 464dd3932edSChristoph Hellwig sector_t *error_sector) 4658839a0e0STejun Heo { 4668839a0e0STejun Heo struct request_queue *q; 4678839a0e0STejun Heo struct bio *bio; 4688839a0e0STejun Heo int ret = 0; 4698839a0e0STejun Heo 4708839a0e0STejun Heo if (bdev->bd_disk == NULL) 4718839a0e0STejun Heo return -ENXIO; 4728839a0e0STejun Heo 4738839a0e0STejun Heo q = bdev_get_queue(bdev); 4748839a0e0STejun Heo if (!q) 4758839a0e0STejun Heo return -ENXIO; 4768839a0e0STejun Heo 4778839a0e0STejun Heo /* 4788839a0e0STejun Heo * some block devices may not have their queue correctly set up here 4798839a0e0STejun Heo * (e.g. loop device without a backing file) and so issuing a flush 4808839a0e0STejun Heo * here will panic. Ensure there is a request function before issuing 481d391a2ddSTejun Heo * the flush. 4828839a0e0STejun Heo */ 4838839a0e0STejun Heo if (!q->make_request_fn) 4848839a0e0STejun Heo return -ENXIO; 4858839a0e0STejun Heo 4868839a0e0STejun Heo bio = bio_alloc(gfp_mask, 0); 4878839a0e0STejun Heo bio->bi_bdev = bdev; 48895fe6c1aSMike Christie bio_set_op_attrs(bio, REQ_OP_WRITE, WRITE_FLUSH); 4898839a0e0STejun Heo 4904e49ea4aSMike Christie ret = submit_bio_wait(bio); 491dd3932edSChristoph Hellwig 4928839a0e0STejun Heo /* 4938839a0e0STejun Heo * The driver must store the error location in ->bi_sector, if 4948839a0e0STejun Heo * it supports it. For non-stacked drivers, this should be 4958839a0e0STejun Heo * copied from blk_rq_pos(rq). 4968839a0e0STejun Heo */ 4978839a0e0STejun Heo if (error_sector) 4984f024f37SKent Overstreet *error_sector = bio->bi_iter.bi_sector; 4998839a0e0STejun Heo 5008839a0e0STejun Heo bio_put(bio); 5018839a0e0STejun Heo return ret; 5028839a0e0STejun Heo } 5038839a0e0STejun Heo EXPORT_SYMBOL(blkdev_issue_flush); 504320ae51fSJens Axboe 505f70ced09SMing Lei struct blk_flush_queue *blk_alloc_flush_queue(struct request_queue *q, 506f70ced09SMing Lei int node, int cmd_size) 507320ae51fSJens Axboe { 5087c94e1c1SMing Lei struct blk_flush_queue *fq; 5097c94e1c1SMing Lei int rq_sz = sizeof(struct request); 5101bcb1eadSMing Lei 511f70ced09SMing Lei fq = kzalloc_node(sizeof(*fq), GFP_KERNEL, node); 5127c94e1c1SMing Lei if (!fq) 5137c94e1c1SMing Lei goto fail; 5141bcb1eadSMing Lei 5157c94e1c1SMing Lei if (q->mq_ops) { 5167c94e1c1SMing Lei spin_lock_init(&fq->mq_flush_lock); 517f70ced09SMing Lei rq_sz = round_up(rq_sz + cmd_size, cache_line_size()); 5187c94e1c1SMing Lei } 5197c94e1c1SMing Lei 520f70ced09SMing Lei fq->flush_rq = kzalloc_node(rq_sz, GFP_KERNEL, node); 5217c94e1c1SMing Lei if (!fq->flush_rq) 5227c94e1c1SMing Lei goto fail_rq; 5237c94e1c1SMing Lei 5247c94e1c1SMing Lei INIT_LIST_HEAD(&fq->flush_queue[0]); 5257c94e1c1SMing Lei INIT_LIST_HEAD(&fq->flush_queue[1]); 5267c94e1c1SMing Lei INIT_LIST_HEAD(&fq->flush_data_in_flight); 5277c94e1c1SMing Lei 5287c94e1c1SMing Lei return fq; 5297c94e1c1SMing Lei 5307c94e1c1SMing Lei fail_rq: 5317c94e1c1SMing Lei kfree(fq); 5327c94e1c1SMing Lei fail: 5337c94e1c1SMing Lei return NULL; 5347c94e1c1SMing Lei } 5357c94e1c1SMing Lei 536ba483388SMing Lei void blk_free_flush_queue(struct blk_flush_queue *fq) 5377c94e1c1SMing Lei { 5387c94e1c1SMing Lei /* bio based request queue hasn't flush queue */ 5397c94e1c1SMing Lei if (!fq) 5407c94e1c1SMing Lei return; 5417c94e1c1SMing Lei 5427c94e1c1SMing Lei kfree(fq->flush_rq); 5437c94e1c1SMing Lei kfree(fq); 544320ae51fSJens Axboe } 545