1ba6c22ceSWarner Losh /*- 2ba6c22ceSWarner Losh * CAM IO Scheduler Interface 3ba6c22ceSWarner Losh * 4891c6986SWarner Losh * SPDX-License-Identifier: BSD-2-Clause 5f24882ecSPedro F. Giffuni * 6ba6c22ceSWarner Losh * Copyright (c) 2015 Netflix, Inc. 7ba6c22ceSWarner Losh * 8ba6c22ceSWarner Losh * Redistribution and use in source and binary forms, with or without 9ba6c22ceSWarner Losh * modification, are permitted provided that the following conditions 10ba6c22ceSWarner Losh * are met: 11ba6c22ceSWarner Losh * 1. Redistributions of source code must retain the above copyright 12891c6986SWarner Losh * notice, this list of conditions and the following disclaimer. 13891c6986SWarner Losh * 2. Redistributions in binary form must reproduce the above copyright 14891c6986SWarner Losh * notice, this list of conditions and the following disclaimer in the 15891c6986SWarner Losh * documentation and/or other materials provided with the distribution. 16ba6c22ceSWarner Losh * 17ba6c22ceSWarner Losh * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18ba6c22ceSWarner Losh * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19ba6c22ceSWarner Losh * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20891c6986SWarner Losh * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 21891c6986SWarner Losh * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22ba6c22ceSWarner Losh * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23ba6c22ceSWarner Losh * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24ba6c22ceSWarner Losh * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25ba6c22ceSWarner Losh * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26ba6c22ceSWarner Losh * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27ba6c22ceSWarner Losh * SUCH DAMAGE. 28ba6c22ceSWarner Losh */ 29ba6c22ceSWarner Losh 30ba6c22ceSWarner Losh #include "opt_ddb.h" 31ba6c22ceSWarner Losh 32ba6c22ceSWarner Losh #include <sys/param.h> 33ba6c22ceSWarner Losh #include <sys/systm.h> 34ba6c22ceSWarner Losh #include <sys/kernel.h> 35ba6c22ceSWarner Losh #include <sys/bio.h> 36ba6c22ceSWarner Losh #include <sys/lock.h> 37ba6c22ceSWarner Losh #include <sys/malloc.h> 38ba6c22ceSWarner Losh #include <sys/mutex.h> 39cf3ec151SWarner Losh #include <sys/sbuf.h> 40ba6c22ceSWarner Losh #include <sys/sysctl.h> 41ba6c22ceSWarner Losh 42ba6c22ceSWarner Losh #include <cam/cam.h> 43ba6c22ceSWarner Losh #include <cam/cam_ccb.h> 44ba6c22ceSWarner Losh #include <cam/cam_periph.h> 45ba6c22ceSWarner Losh #include <cam/cam_xpt_periph.h> 46cf3ec151SWarner Losh #include <cam/cam_xpt_internal.h> 47ba6c22ceSWarner Losh #include <cam/cam_iosched.h> 48ba6c22ceSWarner Losh 49ba6c22ceSWarner Losh #include <ddb/ddb.h> 50ba6c22ceSWarner Losh 51ba6c22ceSWarner Losh static MALLOC_DEFINE(M_CAMSCHED, "CAM I/O Scheduler", 52ba6c22ceSWarner Losh "CAM I/O Scheduler buffers"); 53ba6c22ceSWarner Losh 5422832069SWarner Losh static SYSCTL_NODE(_kern_cam, OID_AUTO, iosched, CTLFLAG_RD | CTLFLAG_MPSAFE, 0, 5522832069SWarner Losh "CAM I/O Scheduler parameters"); 5622832069SWarner Losh 57ba6c22ceSWarner Losh /* 58ba6c22ceSWarner Losh * Default I/O scheduler for FreeBSD. This implementation is just a thin-vineer 59ba6c22ceSWarner Losh * over the bioq_* interface, with notions of separate calls for normal I/O and 60ba6c22ceSWarner Losh * for trims. 61035ec48eSWarner Losh * 62035ec48eSWarner Losh * When CAM_IOSCHED_DYNAMIC is defined, the scheduler is enhanced to dynamically 63035ec48eSWarner Losh * steer the rate of one type of traffic to help other types of traffic (eg 64035ec48eSWarner Losh * limit writes when read latency deteriorates on SSDs). 65ba6c22ceSWarner Losh */ 66ba6c22ceSWarner Losh 67df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 68ba6c22ceSWarner Losh 6922832069SWarner Losh static bool do_dynamic_iosched = true; 7069cb72b8SZhenlei Huang SYSCTL_BOOL(_kern_cam_iosched, OID_AUTO, dynamic, CTLFLAG_RDTUN, 71035ec48eSWarner Losh &do_dynamic_iosched, 1, 72035ec48eSWarner Losh "Enable Dynamic I/O scheduler optimizations."); 73ba6c22ceSWarner Losh 74cf3ec151SWarner Losh /* 75cf3ec151SWarner Losh * For an EMA, with an alpha of alpha, we know 76cf3ec151SWarner Losh * alpha = 2 / (N + 1) 77cf3ec151SWarner Losh * or 78cf3ec151SWarner Losh * N = 1 + (2 / alpha) 79cf3ec151SWarner Losh * where N is the number of samples that 86% of the current 80cf3ec151SWarner Losh * EMA is derived from. 81cf3ec151SWarner Losh * 82cf3ec151SWarner Losh * So we invent[*] alpha_bits: 83cf3ec151SWarner Losh * alpha_bits = -log_2(alpha) 84cf3ec151SWarner Losh * alpha = 2^-alpha_bits 85cf3ec151SWarner Losh * So 86cf3ec151SWarner Losh * N = 1 + 2^(alpha_bits + 1) 87cf3ec151SWarner Losh * 88cf3ec151SWarner Losh * The default 9 gives a 1025 lookback for 86% of the data. 89cf3ec151SWarner Losh * For a brief intro: https://en.wikipedia.org/wiki/Moving_average 90cf3ec151SWarner Losh * 91cf3ec151SWarner Losh * [*] Steal from the load average code and many other places. 9279d80af2SWarner Losh * Note: See computation of EMA and EMVAR for acceptable ranges of alpha. 93cf3ec151SWarner Losh */ 94ba6c22ceSWarner Losh static int alpha_bits = 9; 9569cb72b8SZhenlei Huang SYSCTL_INT(_kern_cam_iosched, OID_AUTO, alpha_bits, CTLFLAG_RWTUN, 96ba6c22ceSWarner Losh &alpha_bits, 1, 97ba6c22ceSWarner Losh "Bits in EMA's alpha."); 98ba6c22ceSWarner Losh 9922832069SWarner Losh /* 10022832069SWarner Losh * Different parameters for the buckets of latency we keep track of. These are all 10122832069SWarner Losh * published read-only since at present they are compile time constants. 10222832069SWarner Losh * 10322832069SWarner Losh * Bucket base is the upper bounds of the first latency bucket. It's currently 20us. 10422832069SWarner Losh * With 20 buckets (see below), that leads to a geometric progression with a max size 10522832069SWarner Losh * of 5.2s which is safeily larger than 1s to help diagnose extreme outliers better. 10622832069SWarner Losh */ 10722832069SWarner Losh #ifndef BUCKET_BASE 1081d92e81fSWarner Losh #define BUCKET_BASE ((SBT_1S / 50000) + 1) /* 20us */ 10922832069SWarner Losh #endif 11022832069SWarner Losh static sbintime_t bucket_base = BUCKET_BASE; 11122832069SWarner Losh SYSCTL_SBINTIME_USEC(_kern_cam_iosched, OID_AUTO, bucket_base_us, CTLFLAG_RD, 11222832069SWarner Losh &bucket_base, 11322832069SWarner Losh "Size of the smallest latency bucket"); 11422832069SWarner Losh 11522832069SWarner Losh /* 11622832069SWarner Losh * Bucket ratio is the geometric progression for the bucket. For a bucket b_n 11722832069SWarner Losh * the size of bucket b_n+1 is b_n * bucket_ratio / 100. 11822832069SWarner Losh */ 11922832069SWarner Losh static int bucket_ratio = 200; /* Rather hard coded at the moment */ 12022832069SWarner Losh SYSCTL_INT(_kern_cam_iosched, OID_AUTO, bucket_ratio, CTLFLAG_RD, 12122832069SWarner Losh &bucket_ratio, 200, 12222832069SWarner Losh "Latency Bucket Ratio for geometric progression."); 12322832069SWarner Losh 12422832069SWarner Losh /* 12522832069SWarner Losh * Number of total buckets. Starting at BUCKET_BASE, each one is a power of 2. 12622832069SWarner Losh */ 12722832069SWarner Losh #ifndef LAT_BUCKETS 12822832069SWarner Losh #define LAT_BUCKETS 20 /* < 20us < 40us ... < 2^(n-1)*20us >= 2^(n-1)*20us */ 12922832069SWarner Losh #endif 13022832069SWarner Losh static int lat_buckets = LAT_BUCKETS; 13122832069SWarner Losh SYSCTL_INT(_kern_cam_iosched, OID_AUTO, buckets, CTLFLAG_RD, 13222832069SWarner Losh &lat_buckets, LAT_BUCKETS, 13322832069SWarner Losh "Total number of latency buckets published"); 13422832069SWarner Losh 135d592c0dbSWarner Losh /* 136d592c0dbSWarner Losh * Read bias: how many reads do we favor before scheduling a write 137d592c0dbSWarner Losh * when we have a choice. 138d592c0dbSWarner Losh */ 139d592c0dbSWarner Losh static int default_read_bias = 0; 140d592c0dbSWarner Losh SYSCTL_INT(_kern_cam_iosched, OID_AUTO, read_bias, CTLFLAG_RWTUN, 141d592c0dbSWarner Losh &default_read_bias, 0, 142d592c0dbSWarner Losh "Default read bias for new devices."); 143d592c0dbSWarner Losh 144ba6c22ceSWarner Losh struct iop_stats; 145ba6c22ceSWarner Losh struct cam_iosched_softc; 146ba6c22ceSWarner Losh 147ba6c22ceSWarner Losh int iosched_debug = 0; 148ba6c22ceSWarner Losh 149ba6c22ceSWarner Losh typedef enum { 150ba6c22ceSWarner Losh none = 0, /* No limits */ 151ba6c22ceSWarner Losh queue_depth, /* Limit how many ops we queue to SIM */ 152ba6c22ceSWarner Losh iops, /* Limit # of IOPS to the drive */ 153ba6c22ceSWarner Losh bandwidth, /* Limit bandwidth to the drive */ 154ba6c22ceSWarner Losh limiter_max 155ba6c22ceSWarner Losh } io_limiter; 156ba6c22ceSWarner Losh 157ba6c22ceSWarner Losh static const char *cam_iosched_limiter_names[] = 158ba6c22ceSWarner Losh { "none", "queue_depth", "iops", "bandwidth" }; 159ba6c22ceSWarner Losh 160ba6c22ceSWarner Losh /* 161ba6c22ceSWarner Losh * Called to initialize the bits of the iop_stats structure relevant to the 162ba6c22ceSWarner Losh * limiter. Called just after the limiter is set. 163ba6c22ceSWarner Losh */ 164ba6c22ceSWarner Losh typedef int l_init_t(struct iop_stats *); 165ba6c22ceSWarner Losh 166ba6c22ceSWarner Losh /* 167ba6c22ceSWarner Losh * Called every tick. 168ba6c22ceSWarner Losh */ 169ba6c22ceSWarner Losh typedef int l_tick_t(struct iop_stats *); 170ba6c22ceSWarner Losh 171ba6c22ceSWarner Losh /* 172ba6c22ceSWarner Losh * Called to see if the limiter thinks this IOP can be allowed to 1730b4060b0SEd Maste * proceed. If so, the limiter assumes that the IOP proceeded 174ba6c22ceSWarner Losh * and makes any accounting of it that's needed. 175ba6c22ceSWarner Losh */ 176ba6c22ceSWarner Losh typedef int l_iop_t(struct iop_stats *, struct bio *); 177ba6c22ceSWarner Losh 178ba6c22ceSWarner Losh /* 1790b4060b0SEd Maste * Called when an I/O completes so the limiter can update its 180ba6c22ceSWarner Losh * accounting. Pending I/Os may complete in any order (even when 181ba6c22ceSWarner Losh * sent to the hardware at the same time), so the limiter may not 182ba6c22ceSWarner Losh * make any assumptions other than this I/O has completed. If it 183ba6c22ceSWarner Losh * returns 1, then xpt_schedule() needs to be called again. 184ba6c22ceSWarner Losh */ 185ba6c22ceSWarner Losh typedef int l_iodone_t(struct iop_stats *, struct bio *); 186ba6c22ceSWarner Losh 187ba6c22ceSWarner Losh static l_iop_t cam_iosched_qd_iop; 188ba6c22ceSWarner Losh static l_iop_t cam_iosched_qd_caniop; 189ba6c22ceSWarner Losh static l_iodone_t cam_iosched_qd_iodone; 190ba6c22ceSWarner Losh 191ba6c22ceSWarner Losh static l_init_t cam_iosched_iops_init; 192ba6c22ceSWarner Losh static l_tick_t cam_iosched_iops_tick; 193ba6c22ceSWarner Losh static l_iop_t cam_iosched_iops_caniop; 194ba6c22ceSWarner Losh static l_iop_t cam_iosched_iops_iop; 195ba6c22ceSWarner Losh 196ba6c22ceSWarner Losh static l_init_t cam_iosched_bw_init; 197ba6c22ceSWarner Losh static l_tick_t cam_iosched_bw_tick; 198ba6c22ceSWarner Losh static l_iop_t cam_iosched_bw_caniop; 199ba6c22ceSWarner Losh static l_iop_t cam_iosched_bw_iop; 200ba6c22ceSWarner Losh 201b20c0a07SWarner Losh struct limswitch { 202ba6c22ceSWarner Losh l_init_t *l_init; 203ba6c22ceSWarner Losh l_tick_t *l_tick; 204ba6c22ceSWarner Losh l_iop_t *l_iop; 205ba6c22ceSWarner Losh l_iop_t *l_caniop; 206ba6c22ceSWarner Losh l_iodone_t *l_iodone; 207ba6c22ceSWarner Losh } limsw[] = 208ba6c22ceSWarner Losh { 209ba6c22ceSWarner Losh { /* none */ 210ba6c22ceSWarner Losh .l_init = NULL, 211ba6c22ceSWarner Losh .l_tick = NULL, 212ba6c22ceSWarner Losh .l_iop = NULL, 213ba6c22ceSWarner Losh .l_iodone= NULL, 214ba6c22ceSWarner Losh }, 215ba6c22ceSWarner Losh { /* queue_depth */ 216ba6c22ceSWarner Losh .l_init = NULL, 217ba6c22ceSWarner Losh .l_tick = NULL, 218ba6c22ceSWarner Losh .l_caniop = cam_iosched_qd_caniop, 219ba6c22ceSWarner Losh .l_iop = cam_iosched_qd_iop, 220ba6c22ceSWarner Losh .l_iodone= cam_iosched_qd_iodone, 221ba6c22ceSWarner Losh }, 222ba6c22ceSWarner Losh { /* iops */ 223ba6c22ceSWarner Losh .l_init = cam_iosched_iops_init, 224ba6c22ceSWarner Losh .l_tick = cam_iosched_iops_tick, 225ba6c22ceSWarner Losh .l_caniop = cam_iosched_iops_caniop, 226ba6c22ceSWarner Losh .l_iop = cam_iosched_iops_iop, 227ba6c22ceSWarner Losh .l_iodone= NULL, 228ba6c22ceSWarner Losh }, 229ba6c22ceSWarner Losh { /* bandwidth */ 230ba6c22ceSWarner Losh .l_init = cam_iosched_bw_init, 231ba6c22ceSWarner Losh .l_tick = cam_iosched_bw_tick, 232ba6c22ceSWarner Losh .l_caniop = cam_iosched_bw_caniop, 233ba6c22ceSWarner Losh .l_iop = cam_iosched_bw_iop, 234ba6c22ceSWarner Losh .l_iodone= NULL, 235ba6c22ceSWarner Losh }, 236ba6c22ceSWarner Losh }; 237ba6c22ceSWarner Losh 238b20c0a07SWarner Losh struct iop_stats { 239ba6c22ceSWarner Losh /* 240ba6c22ceSWarner Losh * sysctl state for this subnode. 241ba6c22ceSWarner Losh */ 242ba6c22ceSWarner Losh struct sysctl_ctx_list sysctl_ctx; 243ba6c22ceSWarner Losh struct sysctl_oid *sysctl_tree; 244ba6c22ceSWarner Losh 245ba6c22ceSWarner Losh /* 246ba6c22ceSWarner Losh * Information about the current rate limiters, if any 247ba6c22ceSWarner Losh */ 248ba6c22ceSWarner Losh io_limiter limiter; /* How are I/Os being limited */ 249ba6c22ceSWarner Losh int min; /* Low range of limit */ 250ba6c22ceSWarner Losh int max; /* High range of limit */ 251ba6c22ceSWarner Losh int current; /* Current rate limiter */ 252ba6c22ceSWarner Losh int l_value1; /* per-limiter scratch value 1. */ 253ba6c22ceSWarner Losh int l_value2; /* per-limiter scratch value 2. */ 254ba6c22ceSWarner Losh 255ba6c22ceSWarner Losh /* 256ba6c22ceSWarner Losh * Debug information about counts of I/Os that have gone through the 257ba6c22ceSWarner Losh * scheduler. 258ba6c22ceSWarner Losh */ 259ba6c22ceSWarner Losh int pending; /* I/Os pending in the hardware */ 260ba6c22ceSWarner Losh int queued; /* number currently in the queue */ 261ba6c22ceSWarner Losh int total; /* Total for all time -- wraps */ 262ba6c22ceSWarner Losh int in; /* number queued all time -- wraps */ 263ba6c22ceSWarner Losh int out; /* number completed all time -- wraps */ 264c4b72d8bSWarner Losh int errs; /* Number of I/Os completed with error -- wraps */ 265ba6c22ceSWarner Losh 266ba6c22ceSWarner Losh /* 267ba6c22ceSWarner Losh * Statistics on different bits of the process. 268ba6c22ceSWarner Losh */ 269cf3ec151SWarner Losh /* Exp Moving Average, see alpha_bits for more details */ 270ba6c22ceSWarner Losh sbintime_t ema; 27179d80af2SWarner Losh sbintime_t emvar; 272ba6c22ceSWarner Losh sbintime_t sd; /* Last computed sd */ 273ba6c22ceSWarner Losh 274*e82644e5SWarner Losh uint64_t too_long; /* Number of I/Os greater than bad lat threshold */ 275*e82644e5SWarner Losh sbintime_t bad_latency; /* Latency threshold */ 276*e82644e5SWarner Losh 277cf3ec151SWarner Losh uint32_t state_flags; 278cf3ec151SWarner Losh #define IOP_RATE_LIMITED 1u 279cf3ec151SWarner Losh 280cf3ec151SWarner Losh uint64_t latencies[LAT_BUCKETS]; 281cf3ec151SWarner Losh 282ba6c22ceSWarner Losh struct cam_iosched_softc *softc; 283ba6c22ceSWarner Losh }; 284ba6c22ceSWarner Losh 285ba6c22ceSWarner Losh typedef enum { 286ba6c22ceSWarner Losh set_max = 0, /* current = max */ 287ba6c22ceSWarner Losh read_latency, /* Steer read latency by throttling writes */ 288ba6c22ceSWarner Losh cl_max /* Keep last */ 289ba6c22ceSWarner Losh } control_type; 290ba6c22ceSWarner Losh 291ba6c22ceSWarner Losh static const char *cam_iosched_control_type_names[] = 292ba6c22ceSWarner Losh { "set_max", "read_latency" }; 293ba6c22ceSWarner Losh 294b20c0a07SWarner Losh struct control_loop { 295ba6c22ceSWarner Losh /* 296ba6c22ceSWarner Losh * sysctl state for this subnode. 297ba6c22ceSWarner Losh */ 298ba6c22ceSWarner Losh struct sysctl_ctx_list sysctl_ctx; 299ba6c22ceSWarner Losh struct sysctl_oid *sysctl_tree; 300ba6c22ceSWarner Losh 301ba6c22ceSWarner Losh sbintime_t next_steer; /* Time of next steer */ 302ba6c22ceSWarner Losh sbintime_t steer_interval; /* How often do we steer? */ 303ba6c22ceSWarner Losh sbintime_t lolat; 304ba6c22ceSWarner Losh sbintime_t hilat; 305ba6c22ceSWarner Losh int alpha; 306ba6c22ceSWarner Losh control_type type; /* What type of control? */ 307ba6c22ceSWarner Losh int last_count; /* Last I/O count */ 308ba6c22ceSWarner Losh 309ba6c22ceSWarner Losh struct cam_iosched_softc *softc; 310ba6c22ceSWarner Losh }; 311ba6c22ceSWarner Losh 312ba6c22ceSWarner Losh #endif 313ba6c22ceSWarner Losh 314b20c0a07SWarner Losh struct cam_iosched_softc { 315ba6c22ceSWarner Losh struct bio_queue_head bio_queue; 316ba6c22ceSWarner Losh struct bio_queue_head trim_queue; 317ba6c22ceSWarner Losh /* scheduler flags < 16, user flags >= 16 */ 318ba6c22ceSWarner Losh uint32_t flags; 319ba6c22ceSWarner Losh int sort_io_queue; 320d900ade5SWarner Losh int trim_goal; /* # of trims to queue before sending */ 321d900ade5SWarner Losh int trim_ticks; /* Max ticks to hold trims */ 322d900ade5SWarner Losh int last_trim_tick; /* Last 'tick' time ld a trim */ 323d900ade5SWarner Losh int queued_trims; /* Number of trims in the queue */ 324df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 325ba6c22ceSWarner Losh int read_bias; /* Read bias setting */ 326ba6c22ceSWarner Losh int current_read_bias; /* Current read bias state */ 327ba6c22ceSWarner Losh int total_ticks; 328cf3ec151SWarner Losh int load; /* EMA of 'load average' of disk / 2^16 */ 329ba6c22ceSWarner Losh 330ba6c22ceSWarner Losh struct bio_queue_head write_queue; 331ba6c22ceSWarner Losh struct iop_stats read_stats, write_stats, trim_stats; 332ba6c22ceSWarner Losh struct sysctl_ctx_list sysctl_ctx; 333ba6c22ceSWarner Losh struct sysctl_oid *sysctl_tree; 334ba6c22ceSWarner Losh 335ba6c22ceSWarner Losh int quanta; /* Number of quanta per second */ 336ba6c22ceSWarner Losh struct callout ticker; /* Callout for our quota system */ 337ba6c22ceSWarner Losh struct cam_periph *periph; /* cam periph associated with this device */ 338ba6c22ceSWarner Losh uint32_t this_frac; /* Fraction of a second (1024ths) for this tick */ 339ba6c22ceSWarner Losh sbintime_t last_time; /* Last time we ticked */ 340ba6c22ceSWarner Losh struct control_loop cl; 341e5436ab5SWarner Losh sbintime_t max_lat; /* when != 0, if iop latency > max_lat, call max_lat_fcn */ 342e5436ab5SWarner Losh cam_iosched_latfcn_t latfcn; 343e5436ab5SWarner Losh void *latarg; 344ba6c22ceSWarner Losh #endif 345ba6c22ceSWarner Losh }; 346ba6c22ceSWarner Losh 347df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 348ba6c22ceSWarner Losh /* 349ba6c22ceSWarner Losh * helper functions to call the limsw functions. 350ba6c22ceSWarner Losh */ 351ba6c22ceSWarner Losh static int 352ba6c22ceSWarner Losh cam_iosched_limiter_init(struct iop_stats *ios) 353ba6c22ceSWarner Losh { 354ba6c22ceSWarner Losh int lim = ios->limiter; 355ba6c22ceSWarner Losh 356ba6c22ceSWarner Losh /* maybe this should be a kassert */ 357ba6c22ceSWarner Losh if (lim < none || lim >= limiter_max) 358ba6c22ceSWarner Losh return EINVAL; 359ba6c22ceSWarner Losh 360ba6c22ceSWarner Losh if (limsw[lim].l_init) 361ba6c22ceSWarner Losh return limsw[lim].l_init(ios); 362ba6c22ceSWarner Losh 363ba6c22ceSWarner Losh return 0; 364ba6c22ceSWarner Losh } 365ba6c22ceSWarner Losh 366ba6c22ceSWarner Losh static int 367ba6c22ceSWarner Losh cam_iosched_limiter_tick(struct iop_stats *ios) 368ba6c22ceSWarner Losh { 369ba6c22ceSWarner Losh int lim = ios->limiter; 370ba6c22ceSWarner Losh 371ba6c22ceSWarner Losh /* maybe this should be a kassert */ 372ba6c22ceSWarner Losh if (lim < none || lim >= limiter_max) 373ba6c22ceSWarner Losh return EINVAL; 374ba6c22ceSWarner Losh 375ba6c22ceSWarner Losh if (limsw[lim].l_tick) 376ba6c22ceSWarner Losh return limsw[lim].l_tick(ios); 377ba6c22ceSWarner Losh 378ba6c22ceSWarner Losh return 0; 379ba6c22ceSWarner Losh } 380ba6c22ceSWarner Losh 381ba6c22ceSWarner Losh static int 382ba6c22ceSWarner Losh cam_iosched_limiter_iop(struct iop_stats *ios, struct bio *bp) 383ba6c22ceSWarner Losh { 384ba6c22ceSWarner Losh int lim = ios->limiter; 385ba6c22ceSWarner Losh 386ba6c22ceSWarner Losh /* maybe this should be a kassert */ 387ba6c22ceSWarner Losh if (lim < none || lim >= limiter_max) 388ba6c22ceSWarner Losh return EINVAL; 389ba6c22ceSWarner Losh 390ba6c22ceSWarner Losh if (limsw[lim].l_iop) 391ba6c22ceSWarner Losh return limsw[lim].l_iop(ios, bp); 392ba6c22ceSWarner Losh 393ba6c22ceSWarner Losh return 0; 394ba6c22ceSWarner Losh } 395ba6c22ceSWarner Losh 396ba6c22ceSWarner Losh static int 397ba6c22ceSWarner Losh cam_iosched_limiter_caniop(struct iop_stats *ios, struct bio *bp) 398ba6c22ceSWarner Losh { 399ba6c22ceSWarner Losh int lim = ios->limiter; 400ba6c22ceSWarner Losh 401ba6c22ceSWarner Losh /* maybe this should be a kassert */ 402ba6c22ceSWarner Losh if (lim < none || lim >= limiter_max) 403ba6c22ceSWarner Losh return EINVAL; 404ba6c22ceSWarner Losh 405ba6c22ceSWarner Losh if (limsw[lim].l_caniop) 406ba6c22ceSWarner Losh return limsw[lim].l_caniop(ios, bp); 407ba6c22ceSWarner Losh 408ba6c22ceSWarner Losh return 0; 409ba6c22ceSWarner Losh } 410ba6c22ceSWarner Losh 411ba6c22ceSWarner Losh static int 412ba6c22ceSWarner Losh cam_iosched_limiter_iodone(struct iop_stats *ios, struct bio *bp) 413ba6c22ceSWarner Losh { 414ba6c22ceSWarner Losh int lim = ios->limiter; 415ba6c22ceSWarner Losh 416ba6c22ceSWarner Losh /* maybe this should be a kassert */ 417ba6c22ceSWarner Losh if (lim < none || lim >= limiter_max) 418ba6c22ceSWarner Losh return 0; 419ba6c22ceSWarner Losh 420ba6c22ceSWarner Losh if (limsw[lim].l_iodone) 421ba6c22ceSWarner Losh return limsw[lim].l_iodone(ios, bp); 422ba6c22ceSWarner Losh 423ba6c22ceSWarner Losh return 0; 424ba6c22ceSWarner Losh } 425ba6c22ceSWarner Losh 426ba6c22ceSWarner Losh /* 427ba6c22ceSWarner Losh * Functions to implement the different kinds of limiters 428ba6c22ceSWarner Losh */ 429ba6c22ceSWarner Losh 430ba6c22ceSWarner Losh static int 431ba6c22ceSWarner Losh cam_iosched_qd_iop(struct iop_stats *ios, struct bio *bp) 432ba6c22ceSWarner Losh { 433ba6c22ceSWarner Losh 434ba6c22ceSWarner Losh if (ios->current <= 0 || ios->pending < ios->current) 435ba6c22ceSWarner Losh return 0; 436ba6c22ceSWarner Losh 437ba6c22ceSWarner Losh return EAGAIN; 438ba6c22ceSWarner Losh } 439ba6c22ceSWarner Losh 440ba6c22ceSWarner Losh static int 441ba6c22ceSWarner Losh cam_iosched_qd_caniop(struct iop_stats *ios, struct bio *bp) 442ba6c22ceSWarner Losh { 443ba6c22ceSWarner Losh 444ba6c22ceSWarner Losh if (ios->current <= 0 || ios->pending < ios->current) 445ba6c22ceSWarner Losh return 0; 446ba6c22ceSWarner Losh 447ba6c22ceSWarner Losh return EAGAIN; 448ba6c22ceSWarner Losh } 449ba6c22ceSWarner Losh 450ba6c22ceSWarner Losh static int 451ba6c22ceSWarner Losh cam_iosched_qd_iodone(struct iop_stats *ios, struct bio *bp) 452ba6c22ceSWarner Losh { 453ba6c22ceSWarner Losh 454ba6c22ceSWarner Losh if (ios->current <= 0 || ios->pending != ios->current) 455ba6c22ceSWarner Losh return 0; 456ba6c22ceSWarner Losh 457ba6c22ceSWarner Losh return 1; 458ba6c22ceSWarner Losh } 459ba6c22ceSWarner Losh 460ba6c22ceSWarner Losh static int 461ba6c22ceSWarner Losh cam_iosched_iops_init(struct iop_stats *ios) 462ba6c22ceSWarner Losh { 463ba6c22ceSWarner Losh 464ba6c22ceSWarner Losh ios->l_value1 = ios->current / ios->softc->quanta; 465ba6c22ceSWarner Losh if (ios->l_value1 <= 0) 466ba6c22ceSWarner Losh ios->l_value1 = 1; 467f777123bSWarner Losh ios->l_value2 = 0; 468ba6c22ceSWarner Losh 469ba6c22ceSWarner Losh return 0; 470ba6c22ceSWarner Losh } 471ba6c22ceSWarner Losh 472ba6c22ceSWarner Losh static int 473ba6c22ceSWarner Losh cam_iosched_iops_tick(struct iop_stats *ios) 474ba6c22ceSWarner Losh { 47578ed811eSWarner Losh int new_ios; 476ba6c22ceSWarner Losh 477f777123bSWarner Losh /* 478f777123bSWarner Losh * Allow at least one IO per tick until all 479f777123bSWarner Losh * the IOs for this interval have been spent. 480f777123bSWarner Losh */ 48178ed811eSWarner Losh new_ios = (int)((ios->current * (uint64_t)ios->softc->this_frac) >> 16); 48278ed811eSWarner Losh if (new_ios < 1 && ios->l_value2 < ios->current) { 48378ed811eSWarner Losh new_ios = 1; 484f777123bSWarner Losh ios->l_value2++; 485f777123bSWarner Losh } 486ba6c22ceSWarner Losh 48778ed811eSWarner Losh /* 48878ed811eSWarner Losh * If this a new accounting interval, discard any "unspent" ios 48978ed811eSWarner Losh * granted in the previous interval. Otherwise add the new ios to 49078ed811eSWarner Losh * the previously granted ones that haven't been spent yet. 49178ed811eSWarner Losh */ 49278ed811eSWarner Losh if ((ios->softc->total_ticks % ios->softc->quanta) == 0) { 49378ed811eSWarner Losh ios->l_value1 = new_ios; 49478ed811eSWarner Losh ios->l_value2 = 1; 49578ed811eSWarner Losh } else { 49678ed811eSWarner Losh ios->l_value1 += new_ios; 49778ed811eSWarner Losh } 49878ed811eSWarner Losh 499ba6c22ceSWarner Losh return 0; 500ba6c22ceSWarner Losh } 501ba6c22ceSWarner Losh 502ba6c22ceSWarner Losh static int 503ba6c22ceSWarner Losh cam_iosched_iops_caniop(struct iop_stats *ios, struct bio *bp) 504ba6c22ceSWarner Losh { 505ba6c22ceSWarner Losh 506ba6c22ceSWarner Losh /* 507ba6c22ceSWarner Losh * So if we have any more IOPs left, allow it, 5086ca2fb66SWarner Losh * otherwise wait. If current iops is 0, treat that 5096ca2fb66SWarner Losh * as unlimited as a failsafe. 510ba6c22ceSWarner Losh */ 5116ca2fb66SWarner Losh if (ios->current > 0 && ios->l_value1 <= 0) 512ba6c22ceSWarner Losh return EAGAIN; 513ba6c22ceSWarner Losh return 0; 514ba6c22ceSWarner Losh } 515ba6c22ceSWarner Losh 516ba6c22ceSWarner Losh static int 517ba6c22ceSWarner Losh cam_iosched_iops_iop(struct iop_stats *ios, struct bio *bp) 518ba6c22ceSWarner Losh { 519ba6c22ceSWarner Losh int rv; 520ba6c22ceSWarner Losh 521ba6c22ceSWarner Losh rv = cam_iosched_limiter_caniop(ios, bp); 522ba6c22ceSWarner Losh if (rv == 0) 523ba6c22ceSWarner Losh ios->l_value1--; 524ba6c22ceSWarner Losh 525ba6c22ceSWarner Losh return rv; 526ba6c22ceSWarner Losh } 527ba6c22ceSWarner Losh 528ba6c22ceSWarner Losh static int 529ba6c22ceSWarner Losh cam_iosched_bw_init(struct iop_stats *ios) 530ba6c22ceSWarner Losh { 531ba6c22ceSWarner Losh 532ba6c22ceSWarner Losh /* ios->current is in kB/s, so scale to bytes */ 533ba6c22ceSWarner Losh ios->l_value1 = ios->current * 1000 / ios->softc->quanta; 534ba6c22ceSWarner Losh 535ba6c22ceSWarner Losh return 0; 536ba6c22ceSWarner Losh } 537ba6c22ceSWarner Losh 538ba6c22ceSWarner Losh static int 539ba6c22ceSWarner Losh cam_iosched_bw_tick(struct iop_stats *ios) 540ba6c22ceSWarner Losh { 541ba6c22ceSWarner Losh int bw; 542ba6c22ceSWarner Losh 543ba6c22ceSWarner Losh /* 544ba6c22ceSWarner Losh * If we're in the hole for available quota from 545ba6c22ceSWarner Losh * the last time, then add the quantum for this. 546ba6c22ceSWarner Losh * If we have any left over from last quantum, 547ba6c22ceSWarner Losh * then too bad, that's lost. Also, ios->current 548ba6c22ceSWarner Losh * is in kB/s, so scale. 549ba6c22ceSWarner Losh * 550ba6c22ceSWarner Losh * We also allow up to 4 quanta of credits to 551ba6c22ceSWarner Losh * accumulate to deal with burstiness. 4 is extremely 552ba6c22ceSWarner Losh * arbitrary. 553ba6c22ceSWarner Losh */ 554ba6c22ceSWarner Losh bw = (int)((ios->current * 1000ull * (uint64_t)ios->softc->this_frac) >> 16); 555ba6c22ceSWarner Losh if (ios->l_value1 < bw * 4) 556ba6c22ceSWarner Losh ios->l_value1 += bw; 557ba6c22ceSWarner Losh 558ba6c22ceSWarner Losh return 0; 559ba6c22ceSWarner Losh } 560ba6c22ceSWarner Losh 561ba6c22ceSWarner Losh static int 562ba6c22ceSWarner Losh cam_iosched_bw_caniop(struct iop_stats *ios, struct bio *bp) 563ba6c22ceSWarner Losh { 564ba6c22ceSWarner Losh /* 565ba6c22ceSWarner Losh * So if we have any more bw quota left, allow it, 5660b4060b0SEd Maste * otherwise wait. Note, we'll go negative and that's 5670b4060b0SEd Maste * OK. We'll just get a little less next quota. 568ba6c22ceSWarner Losh * 569ba6c22ceSWarner Losh * Note on going negative: that allows us to process 570ba6c22ceSWarner Losh * requests in order better, since we won't allow 571ba6c22ceSWarner Losh * shorter reads to get around the long one that we 572ba6c22ceSWarner Losh * don't have the quota to do just yet. It also prevents 573ba6c22ceSWarner Losh * starvation by being a little more permissive about 574ba6c22ceSWarner Losh * what we let through this quantum (to prevent the 575ba6c22ceSWarner Losh * starvation), at the cost of getting a little less 576ba6c22ceSWarner Losh * next quantum. 5776ca2fb66SWarner Losh * 5786ca2fb66SWarner Losh * Also note that if the current limit is <= 0, 5796ca2fb66SWarner Losh * we treat it as unlimited as a failsafe. 580ba6c22ceSWarner Losh */ 5816ca2fb66SWarner Losh if (ios->current > 0 && ios->l_value1 <= 0) 582ba6c22ceSWarner Losh return EAGAIN; 583ba6c22ceSWarner Losh 584ba6c22ceSWarner Losh return 0; 585ba6c22ceSWarner Losh } 586ba6c22ceSWarner Losh 587ba6c22ceSWarner Losh static int 588ba6c22ceSWarner Losh cam_iosched_bw_iop(struct iop_stats *ios, struct bio *bp) 589ba6c22ceSWarner Losh { 590ba6c22ceSWarner Losh int rv; 591ba6c22ceSWarner Losh 592ba6c22ceSWarner Losh rv = cam_iosched_limiter_caniop(ios, bp); 593ba6c22ceSWarner Losh if (rv == 0) 594ba6c22ceSWarner Losh ios->l_value1 -= bp->bio_length; 595ba6c22ceSWarner Losh 596ba6c22ceSWarner Losh return rv; 597ba6c22ceSWarner Losh } 598ba6c22ceSWarner Losh 599ba6c22ceSWarner Losh static void cam_iosched_cl_maybe_steer(struct control_loop *clp); 600ba6c22ceSWarner Losh 601ba6c22ceSWarner Losh static void 602ba6c22ceSWarner Losh cam_iosched_ticker(void *arg) 603ba6c22ceSWarner Losh { 604ba6c22ceSWarner Losh struct cam_iosched_softc *isc = arg; 605ba6c22ceSWarner Losh sbintime_t now, delta; 606cf3ec151SWarner Losh int pending; 607ba6c22ceSWarner Losh 6083028dd8dSWarner Losh callout_reset(&isc->ticker, hz / isc->quanta, cam_iosched_ticker, isc); 609ba6c22ceSWarner Losh 610ba6c22ceSWarner Losh now = sbinuptime(); 611ba6c22ceSWarner Losh delta = now - isc->last_time; 612ba6c22ceSWarner Losh isc->this_frac = (uint32_t)delta >> 16; /* Note: discards seconds -- should be 0 harmless if not */ 613ba6c22ceSWarner Losh isc->last_time = now; 614ba6c22ceSWarner Losh 615ba6c22ceSWarner Losh cam_iosched_cl_maybe_steer(&isc->cl); 616ba6c22ceSWarner Losh 617ba6c22ceSWarner Losh cam_iosched_limiter_tick(&isc->read_stats); 618ba6c22ceSWarner Losh cam_iosched_limiter_tick(&isc->write_stats); 619ba6c22ceSWarner Losh cam_iosched_limiter_tick(&isc->trim_stats); 620ba6c22ceSWarner Losh 621ba6c22ceSWarner Losh cam_iosched_schedule(isc, isc->periph); 622ba6c22ceSWarner Losh 623cf3ec151SWarner Losh /* 624cf3ec151SWarner Losh * isc->load is an EMA of the pending I/Os at each tick. The number of 625cf3ec151SWarner Losh * pending I/Os is the sum of the I/Os queued to the hardware, and those 626cf3ec151SWarner Losh * in the software queue that could be queued to the hardware if there 627cf3ec151SWarner Losh * were slots. 628cf3ec151SWarner Losh * 629cf3ec151SWarner Losh * ios_stats.pending is a count of requests in the SIM right now for 630cf3ec151SWarner Losh * each of these types of I/O. So the total pending count is the sum of 631cf3ec151SWarner Losh * these I/Os and the sum of the queued I/Os still in the software queue 632cf3ec151SWarner Losh * for those operations that aren't being rate limited at the moment. 633cf3ec151SWarner Losh * 634cf3ec151SWarner Losh * The reason for the rate limiting bit is because those I/Os 635cf3ec151SWarner Losh * aren't part of the software queued load (since we could 636cf3ec151SWarner Losh * give them to hardware, but choose not to). 637cf3ec151SWarner Losh * 638cf3ec151SWarner Losh * Note: due to a bug in counting pending TRIM in the device, we 639cf3ec151SWarner Losh * don't include them in this count. We count each BIO_DELETE in 640cf3ec151SWarner Losh * the pending count, but the periph drivers collapse them down 641cf3ec151SWarner Losh * into one TRIM command. That one trim command gets the completion 642cf3ec151SWarner Losh * so the counts get off. 643cf3ec151SWarner Losh */ 644cf3ec151SWarner Losh pending = isc->read_stats.pending + isc->write_stats.pending /* + isc->trim_stats.pending */; 645cf3ec151SWarner Losh pending += !!(isc->read_stats.state_flags & IOP_RATE_LIMITED) * isc->read_stats.queued + 646cf3ec151SWarner Losh !!(isc->write_stats.state_flags & IOP_RATE_LIMITED) * isc->write_stats.queued /* + 647cf3ec151SWarner Losh !!(isc->trim_stats.state_flags & IOP_RATE_LIMITED) * isc->trim_stats.queued */ ; 648cf3ec151SWarner Losh pending <<= 16; 649cf3ec151SWarner Losh pending /= isc->periph->path->device->ccbq.total_openings; 650cf3ec151SWarner Losh 651cf3ec151SWarner Losh isc->load = (pending + (isc->load << 13) - isc->load) >> 13; /* see above: 13 -> 16139 / 200/s = ~81s ~1 minute */ 652cf3ec151SWarner Losh 653ba6c22ceSWarner Losh isc->total_ticks++; 654ba6c22ceSWarner Losh } 655ba6c22ceSWarner Losh 656ba6c22ceSWarner Losh static void 657ba6c22ceSWarner Losh cam_iosched_cl_init(struct control_loop *clp, struct cam_iosched_softc *isc) 658ba6c22ceSWarner Losh { 659ba6c22ceSWarner Losh 660ba6c22ceSWarner Losh clp->next_steer = sbinuptime(); 661ba6c22ceSWarner Losh clp->softc = isc; 662ba6c22ceSWarner Losh clp->steer_interval = SBT_1S * 5; /* Let's start out steering every 5s */ 663ba6c22ceSWarner Losh clp->lolat = 5 * SBT_1MS; 664ba6c22ceSWarner Losh clp->hilat = 15 * SBT_1MS; 665ba6c22ceSWarner Losh clp->alpha = 20; /* Alpha == gain. 20 = .2 */ 666ba6c22ceSWarner Losh clp->type = set_max; 667ba6c22ceSWarner Losh } 668ba6c22ceSWarner Losh 669ba6c22ceSWarner Losh static void 670ba6c22ceSWarner Losh cam_iosched_cl_maybe_steer(struct control_loop *clp) 671ba6c22ceSWarner Losh { 672ba6c22ceSWarner Losh struct cam_iosched_softc *isc; 673ba6c22ceSWarner Losh sbintime_t now, lat; 674ba6c22ceSWarner Losh int old; 675ba6c22ceSWarner Losh 676ba6c22ceSWarner Losh isc = clp->softc; 677ba6c22ceSWarner Losh now = isc->last_time; 678ba6c22ceSWarner Losh if (now < clp->next_steer) 679ba6c22ceSWarner Losh return; 680ba6c22ceSWarner Losh 681ba6c22ceSWarner Losh clp->next_steer = now + clp->steer_interval; 682ba6c22ceSWarner Losh switch (clp->type) { 683ba6c22ceSWarner Losh case set_max: 684ba6c22ceSWarner Losh if (isc->write_stats.current != isc->write_stats.max) 685ba6c22ceSWarner Losh printf("Steering write from %d kBps to %d kBps\n", 686ba6c22ceSWarner Losh isc->write_stats.current, isc->write_stats.max); 687ba6c22ceSWarner Losh isc->read_stats.current = isc->read_stats.max; 688ba6c22ceSWarner Losh isc->write_stats.current = isc->write_stats.max; 689ba6c22ceSWarner Losh isc->trim_stats.current = isc->trim_stats.max; 690ba6c22ceSWarner Losh break; 691ba6c22ceSWarner Losh case read_latency: 692ba6c22ceSWarner Losh old = isc->write_stats.current; 693ba6c22ceSWarner Losh lat = isc->read_stats.ema; 694ba6c22ceSWarner Losh /* 695ba6c22ceSWarner Losh * Simple PLL-like engine. Since we're steering to a range for 696ba6c22ceSWarner Losh * the SP (set point) that makes things a little more 697ba6c22ceSWarner Losh * complicated. In addition, we're not directly controlling our 698ba6c22ceSWarner Losh * PV (process variable), the read latency, but instead are 699ba6c22ceSWarner Losh * manipulating the write bandwidth limit for our MV 700ba6c22ceSWarner Losh * (manipulation variable), analysis of this code gets a bit 701ba6c22ceSWarner Losh * messy. Also, the MV is a very noisy control surface for read 702ba6c22ceSWarner Losh * latency since it is affected by many hidden processes inside 703ba6c22ceSWarner Losh * the device which change how responsive read latency will be 704ba6c22ceSWarner Losh * in reaction to changes in write bandwidth. Unlike the classic 705ba6c22ceSWarner Losh * boiler control PLL. this may result in over-steering while 706ba6c22ceSWarner Losh * the SSD takes its time to react to the new, lower load. This 707ba6c22ceSWarner Losh * is why we use a relatively low alpha of between .1 and .25 to 708ba6c22ceSWarner Losh * compensate for this effect. At .1, it takes ~22 steering 709ba6c22ceSWarner Losh * intervals to back off by a factor of 10. At .2 it only takes 710ba6c22ceSWarner Losh * ~10. At .25 it only takes ~8. However some preliminary data 711ba6c22ceSWarner Losh * from the SSD drives suggests a reasponse time in 10's of 712ba6c22ceSWarner Losh * seconds before latency drops regardless of the new write 7130b4060b0SEd Maste * rate. Careful observation will be required to tune this 714ba6c22ceSWarner Losh * effectively. 715ba6c22ceSWarner Losh * 716ba6c22ceSWarner Losh * Also, when there's no read traffic, we jack up the write 717ba6c22ceSWarner Losh * limit too regardless of the last read latency. 10 is 718ba6c22ceSWarner Losh * somewhat arbitrary. 719ba6c22ceSWarner Losh */ 720ba6c22ceSWarner Losh if (lat < clp->lolat || isc->read_stats.total - clp->last_count < 10) 721ba6c22ceSWarner Losh isc->write_stats.current = isc->write_stats.current * 722ba6c22ceSWarner Losh (100 + clp->alpha) / 100; /* Scale up */ 723ba6c22ceSWarner Losh else if (lat > clp->hilat) 724ba6c22ceSWarner Losh isc->write_stats.current = isc->write_stats.current * 725ba6c22ceSWarner Losh (100 - clp->alpha) / 100; /* Scale down */ 726ba6c22ceSWarner Losh clp->last_count = isc->read_stats.total; 727ba6c22ceSWarner Losh 728ba6c22ceSWarner Losh /* 729ba6c22ceSWarner Losh * Even if we don't steer, per se, enforce the min/max limits as 730ba6c22ceSWarner Losh * those may have changed. 731ba6c22ceSWarner Losh */ 732ba6c22ceSWarner Losh if (isc->write_stats.current < isc->write_stats.min) 733ba6c22ceSWarner Losh isc->write_stats.current = isc->write_stats.min; 734ba6c22ceSWarner Losh if (isc->write_stats.current > isc->write_stats.max) 735ba6c22ceSWarner Losh isc->write_stats.current = isc->write_stats.max; 7362b5c19f1SWarner Losh if (old != isc->write_stats.current && iosched_debug) 737cf3ec151SWarner Losh printf("Steering write from %d kBps to %d kBps due to latency of %jdus\n", 738ba6c22ceSWarner Losh old, isc->write_stats.current, 7392b5c19f1SWarner Losh (uintmax_t)((uint64_t)1000000 * (uint32_t)lat) >> 32); 740ba6c22ceSWarner Losh break; 741ba6c22ceSWarner Losh case cl_max: 742ba6c22ceSWarner Losh break; 743ba6c22ceSWarner Losh } 744ba6c22ceSWarner Losh } 745ba6c22ceSWarner Losh #endif 746ba6c22ceSWarner Losh 747ece56614SWarner Losh /* 748ece56614SWarner Losh * Trim or similar currently pending completion. Should only be set for 749ece56614SWarner Losh * those drivers wishing only one Trim active at a time. 750ece56614SWarner Losh */ 751ece56614SWarner Losh #define CAM_IOSCHED_FLAG_TRIM_ACTIVE (1ul << 0) 75207e5967aSWarner Losh /* Callout active, and needs to be torn down */ 75307e5967aSWarner Losh #define CAM_IOSCHED_FLAG_CALLOUT_ACTIVE (1ul << 1) 75407e5967aSWarner Losh 75507e5967aSWarner Losh /* Periph drivers set these flags to indicate work */ 75607e5967aSWarner Losh #define CAM_IOSCHED_FLAG_WORK_FLAGS ((0xffffu) << 16) 75707e5967aSWarner Losh 758df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 759ba6c22ceSWarner Losh static void 760ba6c22ceSWarner Losh cam_iosched_io_metric_update(struct cam_iosched_softc *isc, 761ba6c22ceSWarner Losh sbintime_t sim_latency, int cmd, size_t size); 7625ede5b8cSWarner Losh #endif 763ba6c22ceSWarner Losh 7642d87718fSWarner Losh static inline bool 765ba6c22ceSWarner Losh cam_iosched_has_flagged_work(struct cam_iosched_softc *isc) 766ba6c22ceSWarner Losh { 767ba6c22ceSWarner Losh return !!(isc->flags & CAM_IOSCHED_FLAG_WORK_FLAGS); 768ba6c22ceSWarner Losh } 769ba6c22ceSWarner Losh 7702d87718fSWarner Losh static inline bool 771ba6c22ceSWarner Losh cam_iosched_has_io(struct cam_iosched_softc *isc) 772ba6c22ceSWarner Losh { 773df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 774035ec48eSWarner Losh if (do_dynamic_iosched) { 775ba6c22ceSWarner Losh struct bio *rbp = bioq_first(&isc->bio_queue); 776ba6c22ceSWarner Losh struct bio *wbp = bioq_first(&isc->write_queue); 7772d87718fSWarner Losh bool can_write = wbp != NULL && 778ba6c22ceSWarner Losh cam_iosched_limiter_caniop(&isc->write_stats, wbp) == 0; 7792d87718fSWarner Losh bool can_read = rbp != NULL && 780ba6c22ceSWarner Losh cam_iosched_limiter_caniop(&isc->read_stats, rbp) == 0; 781ba6c22ceSWarner Losh if (iosched_debug > 2) { 782ba6c22ceSWarner Losh printf("can write %d: pending_writes %d max_writes %d\n", can_write, isc->write_stats.pending, isc->write_stats.max); 783ba6c22ceSWarner Losh printf("can read %d: read_stats.pending %d max_reads %d\n", can_read, isc->read_stats.pending, isc->read_stats.max); 784ba6c22ceSWarner Losh printf("Queued reads %d writes %d\n", isc->read_stats.queued, isc->write_stats.queued); 785ba6c22ceSWarner Losh } 786ba6c22ceSWarner Losh return can_read || can_write; 787ba6c22ceSWarner Losh } 788ba6c22ceSWarner Losh #endif 789ba6c22ceSWarner Losh return bioq_first(&isc->bio_queue) != NULL; 790ba6c22ceSWarner Losh } 791ba6c22ceSWarner Losh 7922d87718fSWarner Losh static inline bool 793ba6c22ceSWarner Losh cam_iosched_has_more_trim(struct cam_iosched_softc *isc) 794ba6c22ceSWarner Losh { 795c6171b44SWarner Losh struct bio *bp; 796c6171b44SWarner Losh 797c6171b44SWarner Losh bp = bioq_first(&isc->trim_queue); 798c6171b44SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 799c6171b44SWarner Losh if (do_dynamic_iosched) { 800c6171b44SWarner Losh /* 801c6171b44SWarner Losh * If we're limiting trims, then defer action on trims 802c6171b44SWarner Losh * for a bit. 803c6171b44SWarner Losh */ 804c6171b44SWarner Losh if (bp == NULL || cam_iosched_limiter_caniop(&isc->trim_stats, bp) != 0) 805c6171b44SWarner Losh return false; 806c6171b44SWarner Losh } 807c6171b44SWarner Losh #endif 808d900ade5SWarner Losh 809d900ade5SWarner Losh /* 810d900ade5SWarner Losh * If we've set a trim_goal, then if we exceed that allow trims 811d900ade5SWarner Losh * to be passed back to the driver. If we've also set a tick timeout 812d900ade5SWarner Losh * allow trims back to the driver. Otherwise, don't allow trims yet. 813d900ade5SWarner Losh */ 814d900ade5SWarner Losh if (isc->trim_goal > 0) { 815d900ade5SWarner Losh if (isc->queued_trims >= isc->trim_goal) 816d900ade5SWarner Losh return true; 817d900ade5SWarner Losh if (isc->queued_trims > 0 && 818d900ade5SWarner Losh isc->trim_ticks > 0 && 819d900ade5SWarner Losh ticks - isc->last_trim_tick > isc->trim_ticks) 820d900ade5SWarner Losh return true; 821d900ade5SWarner Losh return false; 822d900ade5SWarner Losh } 823d900ade5SWarner Losh 824ece56614SWarner Losh /* NB: Should perhaps have a max trim active independent of I/O limiters */ 825ece56614SWarner Losh return !(isc->flags & CAM_IOSCHED_FLAG_TRIM_ACTIVE) && bp != NULL; 826ba6c22ceSWarner Losh } 827ba6c22ceSWarner Losh 828ba6c22ceSWarner Losh #define cam_iosched_sort_queue(isc) ((isc)->sort_io_queue >= 0 ? \ 829ba6c22ceSWarner Losh (isc)->sort_io_queue : cam_sort_io_queues) 830ba6c22ceSWarner Losh 8312d87718fSWarner Losh static inline bool 832ba6c22ceSWarner Losh cam_iosched_has_work(struct cam_iosched_softc *isc) 833ba6c22ceSWarner Losh { 834df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 835ba6c22ceSWarner Losh if (iosched_debug > 2) 836ba6c22ceSWarner Losh printf("has work: %d %d %d\n", cam_iosched_has_io(isc), 837ba6c22ceSWarner Losh cam_iosched_has_more_trim(isc), 838ba6c22ceSWarner Losh cam_iosched_has_flagged_work(isc)); 839ba6c22ceSWarner Losh #endif 840ba6c22ceSWarner Losh 841ba6c22ceSWarner Losh return cam_iosched_has_io(isc) || 842ba6c22ceSWarner Losh cam_iosched_has_more_trim(isc) || 843ba6c22ceSWarner Losh cam_iosched_has_flagged_work(isc); 844ba6c22ceSWarner Losh } 845ba6c22ceSWarner Losh 846df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 847ba6c22ceSWarner Losh static void 848ba6c22ceSWarner Losh cam_iosched_iop_stats_init(struct cam_iosched_softc *isc, struct iop_stats *ios) 849ba6c22ceSWarner Losh { 850ba6c22ceSWarner Losh 851ba6c22ceSWarner Losh ios->limiter = none; 852ba6c22ceSWarner Losh ios->in = 0; 85389d26636SWarner Losh ios->max = ios->current = 300000; 854ba6c22ceSWarner Losh ios->min = 1; 855ba6c22ceSWarner Losh ios->out = 0; 856c4b72d8bSWarner Losh ios->errs = 0; 857ba6c22ceSWarner Losh ios->pending = 0; 858ba6c22ceSWarner Losh ios->queued = 0; 859ba6c22ceSWarner Losh ios->total = 0; 860ba6c22ceSWarner Losh ios->ema = 0; 86179d80af2SWarner Losh ios->emvar = 0; 862*e82644e5SWarner Losh ios->bad_latency = SBT_1S / 2; /* Default to 500ms */ 863ba6c22ceSWarner Losh ios->softc = isc; 86489d26636SWarner Losh cam_iosched_limiter_init(ios); 865ba6c22ceSWarner Losh } 866ba6c22ceSWarner Losh 867ba6c22ceSWarner Losh static int 868ba6c22ceSWarner Losh cam_iosched_limiter_sysctl(SYSCTL_HANDLER_ARGS) 869ba6c22ceSWarner Losh { 870ba6c22ceSWarner Losh char buf[16]; 871ba6c22ceSWarner Losh struct iop_stats *ios; 872ba6c22ceSWarner Losh struct cam_iosched_softc *isc; 873cf3ec151SWarner Losh int value, i, error; 874ba6c22ceSWarner Losh const char *p; 875ba6c22ceSWarner Losh 876ba6c22ceSWarner Losh ios = arg1; 877ba6c22ceSWarner Losh isc = ios->softc; 878ba6c22ceSWarner Losh value = ios->limiter; 879ba6c22ceSWarner Losh if (value < none || value >= limiter_max) 880ba6c22ceSWarner Losh p = "UNKNOWN"; 881ba6c22ceSWarner Losh else 882ba6c22ceSWarner Losh p = cam_iosched_limiter_names[value]; 883ba6c22ceSWarner Losh 884ba6c22ceSWarner Losh strlcpy(buf, p, sizeof(buf)); 885ba6c22ceSWarner Losh error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 886ba6c22ceSWarner Losh if (error != 0 || req->newptr == NULL) 887ba6c22ceSWarner Losh return error; 888ba6c22ceSWarner Losh 889ba6c22ceSWarner Losh cam_periph_lock(isc->periph); 890ba6c22ceSWarner Losh 891ba6c22ceSWarner Losh for (i = none; i < limiter_max; i++) { 892ba6c22ceSWarner Losh if (strcmp(buf, cam_iosched_limiter_names[i]) != 0) 893ba6c22ceSWarner Losh continue; 894ba6c22ceSWarner Losh ios->limiter = i; 895ba6c22ceSWarner Losh error = cam_iosched_limiter_init(ios); 896ba6c22ceSWarner Losh if (error != 0) { 897ba6c22ceSWarner Losh ios->limiter = value; 898ba6c22ceSWarner Losh cam_periph_unlock(isc->periph); 899ba6c22ceSWarner Losh return error; 900ba6c22ceSWarner Losh } 901cf3ec151SWarner Losh /* Note: disk load averate requires ticker to be always running */ 9023028dd8dSWarner Losh callout_reset(&isc->ticker, hz / isc->quanta, cam_iosched_ticker, isc); 903ba6c22ceSWarner Losh isc->flags |= CAM_IOSCHED_FLAG_CALLOUT_ACTIVE; 904ba6c22ceSWarner Losh 905ba6c22ceSWarner Losh cam_periph_unlock(isc->periph); 906ba6c22ceSWarner Losh return 0; 907ba6c22ceSWarner Losh } 908ba6c22ceSWarner Losh 909ba6c22ceSWarner Losh cam_periph_unlock(isc->periph); 910ba6c22ceSWarner Losh return EINVAL; 911ba6c22ceSWarner Losh } 912ba6c22ceSWarner Losh 913ba6c22ceSWarner Losh static int 914ba6c22ceSWarner Losh cam_iosched_control_type_sysctl(SYSCTL_HANDLER_ARGS) 915ba6c22ceSWarner Losh { 916ba6c22ceSWarner Losh char buf[16]; 917ba6c22ceSWarner Losh struct control_loop *clp; 918ba6c22ceSWarner Losh struct cam_iosched_softc *isc; 919ba6c22ceSWarner Losh int value, i, error; 920ba6c22ceSWarner Losh const char *p; 921ba6c22ceSWarner Losh 922ba6c22ceSWarner Losh clp = arg1; 923ba6c22ceSWarner Losh isc = clp->softc; 924ba6c22ceSWarner Losh value = clp->type; 925ba6c22ceSWarner Losh if (value < none || value >= cl_max) 926ba6c22ceSWarner Losh p = "UNKNOWN"; 927ba6c22ceSWarner Losh else 928ba6c22ceSWarner Losh p = cam_iosched_control_type_names[value]; 929ba6c22ceSWarner Losh 930ba6c22ceSWarner Losh strlcpy(buf, p, sizeof(buf)); 931ba6c22ceSWarner Losh error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 932ba6c22ceSWarner Losh if (error != 0 || req->newptr == NULL) 933ba6c22ceSWarner Losh return error; 934ba6c22ceSWarner Losh 935ba6c22ceSWarner Losh for (i = set_max; i < cl_max; i++) { 936ba6c22ceSWarner Losh if (strcmp(buf, cam_iosched_control_type_names[i]) != 0) 937ba6c22ceSWarner Losh continue; 938ba6c22ceSWarner Losh cam_periph_lock(isc->periph); 939ba6c22ceSWarner Losh clp->type = i; 940ba6c22ceSWarner Losh cam_periph_unlock(isc->periph); 941ba6c22ceSWarner Losh return 0; 942ba6c22ceSWarner Losh } 943ba6c22ceSWarner Losh 944ba6c22ceSWarner Losh return EINVAL; 945ba6c22ceSWarner Losh } 946ba6c22ceSWarner Losh 947ba6c22ceSWarner Losh static int 948ba6c22ceSWarner Losh cam_iosched_sbintime_sysctl(SYSCTL_HANDLER_ARGS) 949ba6c22ceSWarner Losh { 950ba6c22ceSWarner Losh char buf[16]; 951ba6c22ceSWarner Losh sbintime_t value; 952ba6c22ceSWarner Losh int error; 953ba6c22ceSWarner Losh uint64_t us; 954ba6c22ceSWarner Losh 955ba6c22ceSWarner Losh value = *(sbintime_t *)arg1; 956ba6c22ceSWarner Losh us = (uint64_t)value / SBT_1US; 957ba6c22ceSWarner Losh snprintf(buf, sizeof(buf), "%ju", (intmax_t)us); 958ba6c22ceSWarner Losh error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 959ba6c22ceSWarner Losh if (error != 0 || req->newptr == NULL) 960ba6c22ceSWarner Losh return error; 961ba6c22ceSWarner Losh us = strtoul(buf, NULL, 10); 962ba6c22ceSWarner Losh if (us == 0) 963ba6c22ceSWarner Losh return EINVAL; 964ba6c22ceSWarner Losh *(sbintime_t *)arg1 = us * SBT_1US; 965ba6c22ceSWarner Losh return 0; 966ba6c22ceSWarner Losh } 967ba6c22ceSWarner Losh 968cf3ec151SWarner Losh static int 969cf3ec151SWarner Losh cam_iosched_sysctl_latencies(SYSCTL_HANDLER_ARGS) 970cf3ec151SWarner Losh { 971cf3ec151SWarner Losh int i, error; 972cf3ec151SWarner Losh struct sbuf sb; 973cf3ec151SWarner Losh uint64_t *latencies; 974cf3ec151SWarner Losh 975cf3ec151SWarner Losh latencies = arg1; 976cf3ec151SWarner Losh sbuf_new_for_sysctl(&sb, NULL, LAT_BUCKETS * 16, req); 977cf3ec151SWarner Losh 978cf3ec151SWarner Losh for (i = 0; i < LAT_BUCKETS - 1; i++) 979cf3ec151SWarner Losh sbuf_printf(&sb, "%jd,", (intmax_t)latencies[i]); 980cf3ec151SWarner Losh sbuf_printf(&sb, "%jd", (intmax_t)latencies[LAT_BUCKETS - 1]); 981cf3ec151SWarner Losh error = sbuf_finish(&sb); 982cf3ec151SWarner Losh sbuf_delete(&sb); 983cf3ec151SWarner Losh 984cf3ec151SWarner Losh return (error); 985cf3ec151SWarner Losh } 986cf3ec151SWarner Losh 9872d22619aSWarner Losh static int 9882d22619aSWarner Losh cam_iosched_quanta_sysctl(SYSCTL_HANDLER_ARGS) 9892d22619aSWarner Losh { 9902d22619aSWarner Losh int *quanta; 9912d22619aSWarner Losh int error, value; 9922d22619aSWarner Losh 9932d22619aSWarner Losh quanta = (unsigned *)arg1; 9942d22619aSWarner Losh value = *quanta; 9952d22619aSWarner Losh 9962d22619aSWarner Losh error = sysctl_handle_int(oidp, (int *)&value, 0, req); 9972d22619aSWarner Losh if ((error != 0) || (req->newptr == NULL)) 9982d22619aSWarner Losh return (error); 9992d22619aSWarner Losh 10002d22619aSWarner Losh if (value < 1 || value > hz) 10012d22619aSWarner Losh return (EINVAL); 10022d22619aSWarner Losh 10032d22619aSWarner Losh *quanta = value; 10042d22619aSWarner Losh 10052d22619aSWarner Losh return (0); 10062d22619aSWarner Losh } 10072d22619aSWarner Losh 1008ba6c22ceSWarner Losh static void 1009ba6c22ceSWarner Losh cam_iosched_iop_stats_sysctl_init(struct cam_iosched_softc *isc, struct iop_stats *ios, char *name) 1010ba6c22ceSWarner Losh { 1011ba6c22ceSWarner Losh struct sysctl_oid_list *n; 1012ba6c22ceSWarner Losh struct sysctl_ctx_list *ctx; 1013ba6c22ceSWarner Losh 1014ba6c22ceSWarner Losh ios->sysctl_tree = SYSCTL_ADD_NODE(&isc->sysctl_ctx, 1015ba6c22ceSWarner Losh SYSCTL_CHILDREN(isc->sysctl_tree), OID_AUTO, name, 10167029da5cSPawel Biernacki CTLFLAG_RD | CTLFLAG_MPSAFE, 0, name); 1017ba6c22ceSWarner Losh n = SYSCTL_CHILDREN(ios->sysctl_tree); 1018ba6c22ceSWarner Losh ctx = &ios->sysctl_ctx; 1019ba6c22ceSWarner Losh 1020ba6c22ceSWarner Losh SYSCTL_ADD_UQUAD(ctx, n, 1021ba6c22ceSWarner Losh OID_AUTO, "ema", CTLFLAG_RD, 1022ba6c22ceSWarner Losh &ios->ema, 1023ba6c22ceSWarner Losh "Fast Exponentially Weighted Moving Average"); 1024ba6c22ceSWarner Losh SYSCTL_ADD_UQUAD(ctx, n, 102579d80af2SWarner Losh OID_AUTO, "emvar", CTLFLAG_RD, 102679d80af2SWarner Losh &ios->emvar, 102779d80af2SWarner Losh "Fast Exponentially Weighted Moving Variance"); 1028ba6c22ceSWarner Losh 1029ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1030ba6c22ceSWarner Losh OID_AUTO, "pending", CTLFLAG_RD, 1031ba6c22ceSWarner Losh &ios->pending, 0, 1032ba6c22ceSWarner Losh "Instantaneous # of pending transactions"); 1033ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1034ba6c22ceSWarner Losh OID_AUTO, "count", CTLFLAG_RD, 1035ba6c22ceSWarner Losh &ios->total, 0, 1036ba6c22ceSWarner Losh "# of transactions submitted to hardware"); 1037ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1038ba6c22ceSWarner Losh OID_AUTO, "queued", CTLFLAG_RD, 1039ba6c22ceSWarner Losh &ios->queued, 0, 1040ba6c22ceSWarner Losh "# of transactions in the queue"); 1041ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1042ba6c22ceSWarner Losh OID_AUTO, "in", CTLFLAG_RD, 1043ba6c22ceSWarner Losh &ios->in, 0, 1044ba6c22ceSWarner Losh "# of transactions queued to driver"); 1045ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1046ba6c22ceSWarner Losh OID_AUTO, "out", CTLFLAG_RD, 1047ba6c22ceSWarner Losh &ios->out, 0, 1048c4b72d8bSWarner Losh "# of transactions completed (including with error)"); 1049c4b72d8bSWarner Losh SYSCTL_ADD_INT(ctx, n, 1050c4b72d8bSWarner Losh OID_AUTO, "errs", CTLFLAG_RD, 1051c4b72d8bSWarner Losh &ios->errs, 0, 1052c4b72d8bSWarner Losh "# of transactions completed with an error"); 1053*e82644e5SWarner Losh SYSCTL_ADD_U64(ctx, n, 1054*e82644e5SWarner Losh OID_AUTO, "too_long", CTLFLAG_RD, 1055*e82644e5SWarner Losh &ios->too_long, 0, 1056*e82644e5SWarner Losh "# of transactions completed took too long"); 1057*e82644e5SWarner Losh SYSCTL_ADD_PROC(ctx, n, 1058*e82644e5SWarner Losh OID_AUTO, "bad_latency", 1059*e82644e5SWarner Losh CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1060*e82644e5SWarner Losh &ios->bad_latency, 0, cam_iosched_sbintime_sysctl, "A", 1061*e82644e5SWarner Losh "Threshold for counting transactions that took too long (in us)"); 1062ba6c22ceSWarner Losh 1063ba6c22ceSWarner Losh SYSCTL_ADD_PROC(ctx, n, 10647029da5cSPawel Biernacki OID_AUTO, "limiter", 1065303477d3SAlexander Motin CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1066ba6c22ceSWarner Losh ios, 0, cam_iosched_limiter_sysctl, "A", 1067ba6c22ceSWarner Losh "Current limiting type."); 1068ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1069ba6c22ceSWarner Losh OID_AUTO, "min", CTLFLAG_RW, 1070ba6c22ceSWarner Losh &ios->min, 0, 1071ba6c22ceSWarner Losh "min resource"); 1072ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1073ba6c22ceSWarner Losh OID_AUTO, "max", CTLFLAG_RW, 1074ba6c22ceSWarner Losh &ios->max, 0, 1075ba6c22ceSWarner Losh "max resource"); 1076ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1077ba6c22ceSWarner Losh OID_AUTO, "current", CTLFLAG_RW, 1078ba6c22ceSWarner Losh &ios->current, 0, 1079ba6c22ceSWarner Losh "current resource"); 1080ba6c22ceSWarner Losh 1081cf3ec151SWarner Losh SYSCTL_ADD_PROC(ctx, n, 10827029da5cSPawel Biernacki OID_AUTO, "latencies", 1083303477d3SAlexander Motin CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, 1084cf3ec151SWarner Losh &ios->latencies, 0, 1085cf3ec151SWarner Losh cam_iosched_sysctl_latencies, "A", 1086d21c19d4SWarner Losh "Array of latencies, a geometric progresson from\n" 1087d21c19d4SWarner Losh "kern.cam.iosched.bucket_base_us with a ratio of\n" 1088d21c19d4SWarner Losh "kern.cam.iosched.bucket_ration / 100 from one to\n" 1089d21c19d4SWarner Losh "the next. By default 20 steps from 20us to 10.485s\n" 1090d21c19d4SWarner Losh "by doubling."); 1091d21c19d4SWarner Losh 1092ba6c22ceSWarner Losh } 1093ba6c22ceSWarner Losh 1094ba6c22ceSWarner Losh static void 1095ba6c22ceSWarner Losh cam_iosched_iop_stats_fini(struct iop_stats *ios) 1096ba6c22ceSWarner Losh { 1097ba6c22ceSWarner Losh if (ios->sysctl_tree) 1098ba6c22ceSWarner Losh if (sysctl_ctx_free(&ios->sysctl_ctx) != 0) 1099ba6c22ceSWarner Losh printf("can't remove iosched sysctl stats context\n"); 1100ba6c22ceSWarner Losh } 1101ba6c22ceSWarner Losh 1102ba6c22ceSWarner Losh static void 1103ba6c22ceSWarner Losh cam_iosched_cl_sysctl_init(struct cam_iosched_softc *isc) 1104ba6c22ceSWarner Losh { 1105ba6c22ceSWarner Losh struct sysctl_oid_list *n; 1106ba6c22ceSWarner Losh struct sysctl_ctx_list *ctx; 1107ba6c22ceSWarner Losh struct control_loop *clp; 1108ba6c22ceSWarner Losh 1109ba6c22ceSWarner Losh clp = &isc->cl; 1110ba6c22ceSWarner Losh clp->sysctl_tree = SYSCTL_ADD_NODE(&isc->sysctl_ctx, 1111ba6c22ceSWarner Losh SYSCTL_CHILDREN(isc->sysctl_tree), OID_AUTO, "control", 11127029da5cSPawel Biernacki CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "Control loop info"); 1113ba6c22ceSWarner Losh n = SYSCTL_CHILDREN(clp->sysctl_tree); 1114ba6c22ceSWarner Losh ctx = &clp->sysctl_ctx; 1115ba6c22ceSWarner Losh 1116ba6c22ceSWarner Losh SYSCTL_ADD_PROC(ctx, n, 11177029da5cSPawel Biernacki OID_AUTO, "type", 1118303477d3SAlexander Motin CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1119ba6c22ceSWarner Losh clp, 0, cam_iosched_control_type_sysctl, "A", 1120ba6c22ceSWarner Losh "Control loop algorithm"); 1121ba6c22ceSWarner Losh SYSCTL_ADD_PROC(ctx, n, 11227029da5cSPawel Biernacki OID_AUTO, "steer_interval", 1123303477d3SAlexander Motin CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1124ba6c22ceSWarner Losh &clp->steer_interval, 0, cam_iosched_sbintime_sysctl, "A", 1125ba6c22ceSWarner Losh "How often to steer (in us)"); 1126ba6c22ceSWarner Losh SYSCTL_ADD_PROC(ctx, n, 11277029da5cSPawel Biernacki OID_AUTO, "lolat", 1128303477d3SAlexander Motin CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1129ba6c22ceSWarner Losh &clp->lolat, 0, cam_iosched_sbintime_sysctl, "A", 1130ba6c22ceSWarner Losh "Low water mark for Latency (in us)"); 1131ba6c22ceSWarner Losh SYSCTL_ADD_PROC(ctx, n, 11327029da5cSPawel Biernacki OID_AUTO, "hilat", 1133303477d3SAlexander Motin CTLTYPE_STRING | CTLFLAG_RW | CTLFLAG_MPSAFE, 1134ba6c22ceSWarner Losh &clp->hilat, 0, cam_iosched_sbintime_sysctl, "A", 1135ba6c22ceSWarner Losh "Hi water mark for Latency (in us)"); 1136ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1137ba6c22ceSWarner Losh OID_AUTO, "alpha", CTLFLAG_RW, 1138ba6c22ceSWarner Losh &clp->alpha, 0, 1139ba6c22ceSWarner Losh "Alpha for PLL (x100) aka gain"); 1140ba6c22ceSWarner Losh } 1141ba6c22ceSWarner Losh 1142ba6c22ceSWarner Losh static void 1143ba6c22ceSWarner Losh cam_iosched_cl_sysctl_fini(struct control_loop *clp) 1144ba6c22ceSWarner Losh { 1145ba6c22ceSWarner Losh if (clp->sysctl_tree) 1146ba6c22ceSWarner Losh if (sysctl_ctx_free(&clp->sysctl_ctx) != 0) 1147ba6c22ceSWarner Losh printf("can't remove iosched sysctl control loop context\n"); 1148ba6c22ceSWarner Losh } 1149ba6c22ceSWarner Losh #endif 1150ba6c22ceSWarner Losh 1151ba6c22ceSWarner Losh /* 1152ba6c22ceSWarner Losh * Allocate the iosched structure. This also insulates callers from knowing 1153ba6c22ceSWarner Losh * sizeof struct cam_iosched_softc. 1154ba6c22ceSWarner Losh */ 1155ba6c22ceSWarner Losh int 11560028abe6SWarner Losh cam_iosched_init(struct cam_iosched_softc **iscp, struct cam_periph *periph) 1157ba6c22ceSWarner Losh { 1158ba6c22ceSWarner Losh 1159ba6c22ceSWarner Losh *iscp = malloc(sizeof(**iscp), M_CAMSCHED, M_NOWAIT | M_ZERO); 1160ba6c22ceSWarner Losh if (*iscp == NULL) 1161ba6c22ceSWarner Losh return ENOMEM; 1162df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1163ba6c22ceSWarner Losh if (iosched_debug) 1164ba6c22ceSWarner Losh printf("CAM IOSCHEDULER Allocating entry at %p\n", *iscp); 1165ba6c22ceSWarner Losh #endif 1166ba6c22ceSWarner Losh (*iscp)->sort_io_queue = -1; 1167ba6c22ceSWarner Losh bioq_init(&(*iscp)->bio_queue); 1168ba6c22ceSWarner Losh bioq_init(&(*iscp)->trim_queue); 1169df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1170035ec48eSWarner Losh if (do_dynamic_iosched) { 1171ba6c22ceSWarner Losh bioq_init(&(*iscp)->write_queue); 1172d592c0dbSWarner Losh (*iscp)->read_bias = default_read_bias; 1173b65803baSWarner Losh (*iscp)->current_read_bias = 0; 1174d7fa1ab0SWarner Losh (*iscp)->quanta = min(hz, 200); 1175ba6c22ceSWarner Losh cam_iosched_iop_stats_init(*iscp, &(*iscp)->read_stats); 1176ba6c22ceSWarner Losh cam_iosched_iop_stats_init(*iscp, &(*iscp)->write_stats); 1177ba6c22ceSWarner Losh cam_iosched_iop_stats_init(*iscp, &(*iscp)->trim_stats); 1178ba6c22ceSWarner Losh (*iscp)->trim_stats.max = 1; /* Trims are special: one at a time for now */ 1179ba6c22ceSWarner Losh (*iscp)->last_time = sbinuptime(); 1180ba6c22ceSWarner Losh callout_init_mtx(&(*iscp)->ticker, cam_periph_mtx(periph), 0); 1181ba6c22ceSWarner Losh (*iscp)->periph = periph; 1182ba6c22ceSWarner Losh cam_iosched_cl_init(&(*iscp)->cl, *iscp); 11833028dd8dSWarner Losh callout_reset(&(*iscp)->ticker, hz / (*iscp)->quanta, cam_iosched_ticker, *iscp); 1184ba6c22ceSWarner Losh (*iscp)->flags |= CAM_IOSCHED_FLAG_CALLOUT_ACTIVE; 1185ba6c22ceSWarner Losh } 1186ba6c22ceSWarner Losh #endif 1187ba6c22ceSWarner Losh 1188ba6c22ceSWarner Losh return 0; 1189ba6c22ceSWarner Losh } 1190ba6c22ceSWarner Losh 1191ba6c22ceSWarner Losh /* 1192ba6c22ceSWarner Losh * Reclaim all used resources. This assumes that other folks have 1193ba6c22ceSWarner Losh * drained the requests in the hardware. Maybe an unwise assumption. 1194ba6c22ceSWarner Losh */ 1195ba6c22ceSWarner Losh void 1196ba6c22ceSWarner Losh cam_iosched_fini(struct cam_iosched_softc *isc) 1197ba6c22ceSWarner Losh { 1198ba6c22ceSWarner Losh if (isc) { 1199ba6c22ceSWarner Losh cam_iosched_flush(isc, NULL, ENXIO); 1200df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1201ba6c22ceSWarner Losh cam_iosched_iop_stats_fini(&isc->read_stats); 1202ba6c22ceSWarner Losh cam_iosched_iop_stats_fini(&isc->write_stats); 1203ba6c22ceSWarner Losh cam_iosched_iop_stats_fini(&isc->trim_stats); 1204ba6c22ceSWarner Losh cam_iosched_cl_sysctl_fini(&isc->cl); 1205ba6c22ceSWarner Losh if (isc->sysctl_tree) 1206ba6c22ceSWarner Losh if (sysctl_ctx_free(&isc->sysctl_ctx) != 0) 1207ba6c22ceSWarner Losh printf("can't remove iosched sysctl stats context\n"); 1208ba6c22ceSWarner Losh if (isc->flags & CAM_IOSCHED_FLAG_CALLOUT_ACTIVE) { 1209ba6c22ceSWarner Losh callout_drain(&isc->ticker); 1210ba6c22ceSWarner Losh isc->flags &= ~ CAM_IOSCHED_FLAG_CALLOUT_ACTIVE; 1211ba6c22ceSWarner Losh } 1212ba6c22ceSWarner Losh #endif 1213ba6c22ceSWarner Losh free(isc, M_CAMSCHED); 1214ba6c22ceSWarner Losh } 1215ba6c22ceSWarner Losh } 1216ba6c22ceSWarner Losh 1217ba6c22ceSWarner Losh /* 1218ba6c22ceSWarner Losh * After we're sure we're attaching a device, go ahead and add 1219ba6c22ceSWarner Losh * hooks for any sysctl we may wish to honor. 1220ba6c22ceSWarner Losh */ 1221ba6c22ceSWarner Losh void cam_iosched_sysctl_init(struct cam_iosched_softc *isc, 1222ba6c22ceSWarner Losh struct sysctl_ctx_list *ctx, struct sysctl_oid *node) 1223ba6c22ceSWarner Losh { 1224ba6c22ceSWarner Losh struct sysctl_oid_list *n; 1225ba6c22ceSWarner Losh 1226d900ade5SWarner Losh n = SYSCTL_CHILDREN(node); 1227d900ade5SWarner Losh SYSCTL_ADD_INT(ctx, n, 1228ba6c22ceSWarner Losh OID_AUTO, "sort_io_queue", CTLFLAG_RW | CTLFLAG_MPSAFE, 1229ba6c22ceSWarner Losh &isc->sort_io_queue, 0, 1230ba6c22ceSWarner Losh "Sort IO queue to try and optimise disk access patterns"); 1231d900ade5SWarner Losh SYSCTL_ADD_INT(ctx, n, 1232d900ade5SWarner Losh OID_AUTO, "trim_goal", CTLFLAG_RW, 1233d900ade5SWarner Losh &isc->trim_goal, 0, 1234d900ade5SWarner Losh "Number of trims to try to accumulate before sending to hardware"); 1235d900ade5SWarner Losh SYSCTL_ADD_INT(ctx, n, 1236d900ade5SWarner Losh OID_AUTO, "trim_ticks", CTLFLAG_RW, 1237d900ade5SWarner Losh &isc->trim_goal, 0, 1238d900ade5SWarner Losh "IO Schedul qaunta to hold back trims for when accumulating"); 1239ba6c22ceSWarner Losh 1240df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1241035ec48eSWarner Losh if (!do_dynamic_iosched) 1242ba6c22ceSWarner Losh return; 1243ba6c22ceSWarner Losh 1244ba6c22ceSWarner Losh isc->sysctl_tree = SYSCTL_ADD_NODE(&isc->sysctl_ctx, 1245ba6c22ceSWarner Losh SYSCTL_CHILDREN(node), OID_AUTO, "iosched", 12467029da5cSPawel Biernacki CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "I/O scheduler statistics"); 1247ba6c22ceSWarner Losh n = SYSCTL_CHILDREN(isc->sysctl_tree); 1248ba6c22ceSWarner Losh ctx = &isc->sysctl_ctx; 1249ba6c22ceSWarner Losh 1250ba6c22ceSWarner Losh cam_iosched_iop_stats_sysctl_init(isc, &isc->read_stats, "read"); 1251ba6c22ceSWarner Losh cam_iosched_iop_stats_sysctl_init(isc, &isc->write_stats, "write"); 1252ba6c22ceSWarner Losh cam_iosched_iop_stats_sysctl_init(isc, &isc->trim_stats, "trim"); 1253ba6c22ceSWarner Losh cam_iosched_cl_sysctl_init(isc); 1254ba6c22ceSWarner Losh 1255ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1256ba6c22ceSWarner Losh OID_AUTO, "read_bias", CTLFLAG_RW, 1257d592c0dbSWarner Losh &isc->read_bias, default_read_bias, 1258ba6c22ceSWarner Losh "How biased towards read should we be independent of limits"); 1259ba6c22ceSWarner Losh 12602d22619aSWarner Losh SYSCTL_ADD_PROC(ctx, n, 1261303477d3SAlexander Motin OID_AUTO, "quanta", CTLTYPE_UINT | CTLFLAG_RW | CTLFLAG_MPSAFE, 12622d22619aSWarner Losh &isc->quanta, 0, cam_iosched_quanta_sysctl, "I", 1263ba6c22ceSWarner Losh "How many quanta per second do we slice the I/O up into"); 1264ba6c22ceSWarner Losh 1265ba6c22ceSWarner Losh SYSCTL_ADD_INT(ctx, n, 1266ba6c22ceSWarner Losh OID_AUTO, "total_ticks", CTLFLAG_RD, 1267ba6c22ceSWarner Losh &isc->total_ticks, 0, 1268ba6c22ceSWarner Losh "Total number of ticks we've done"); 1269cf3ec151SWarner Losh 1270cf3ec151SWarner Losh SYSCTL_ADD_INT(ctx, n, 1271cf3ec151SWarner Losh OID_AUTO, "load", CTLFLAG_RD, 1272cf3ec151SWarner Losh &isc->load, 0, 1273cf3ec151SWarner Losh "scaled load average / 100"); 1274e5436ab5SWarner Losh 1275e5436ab5SWarner Losh SYSCTL_ADD_U64(ctx, n, 1276e5436ab5SWarner Losh OID_AUTO, "latency_trigger", CTLFLAG_RW, 1277e5436ab5SWarner Losh &isc->max_lat, 0, 1278e5436ab5SWarner Losh "Latency treshold to trigger callbacks"); 1279e5436ab5SWarner Losh #endif 1280e5436ab5SWarner Losh } 1281e5436ab5SWarner Losh 1282e5436ab5SWarner Losh void 1283e5436ab5SWarner Losh cam_iosched_set_latfcn(struct cam_iosched_softc *isc, 1284e5436ab5SWarner Losh cam_iosched_latfcn_t fnp, void *argp) 1285e5436ab5SWarner Losh { 1286e5436ab5SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1287e5436ab5SWarner Losh isc->latfcn = fnp; 1288e5436ab5SWarner Losh isc->latarg = argp; 1289ba6c22ceSWarner Losh #endif 1290ba6c22ceSWarner Losh } 1291ba6c22ceSWarner Losh 1292ba6c22ceSWarner Losh /* 1293d900ade5SWarner Losh * Client drivers can set two parameters. "goal" is the number of BIO_DELETEs 1294d900ade5SWarner Losh * that will be queued up before iosched will "release" the trims to the client 1295d900ade5SWarner Losh * driver to wo with what they will (usually combine as many as possible). If we 1296d900ade5SWarner Losh * don't get this many, after trim_ticks we'll submit the I/O anyway with 1297d900ade5SWarner Losh * whatever we have. We do need an I/O of some kind of to clock the deferred 1298d900ade5SWarner Losh * trims out to disk. Since we will eventually get a write for the super block 1299d900ade5SWarner Losh * or something before we shutdown, the trims will complete. To be safe, when a 1300d900ade5SWarner Losh * BIO_FLUSH is presented to the iosched work queue, we set the ticks time far 1301d900ade5SWarner Losh * enough in the past so we'll present the BIO_DELETEs to the client driver. 1302d900ade5SWarner Losh * There might be a race if no BIO_DELETESs were queued, a BIO_FLUSH comes in 1303d900ade5SWarner Losh * and then a BIO_DELETE is sent down. No know client does this, and there's 1304d900ade5SWarner Losh * already a race between an ordered BIO_FLUSH and any BIO_DELETEs in flight, 1305d900ade5SWarner Losh * but no client depends on the ordering being honored. 1306d900ade5SWarner Losh * 1307d900ade5SWarner Losh * XXX I'm not sure what the interaction between UFS direct BIOs and the BUF 1308d900ade5SWarner Losh * flushing on shutdown. I think there's bufs that would be dependent on the BIO 1309d900ade5SWarner Losh * finishing to write out at least metadata, so we'll be fine. To be safe, keep 1310d900ade5SWarner Losh * the number of ticks low (less than maybe 10s) to avoid shutdown races. 1311d900ade5SWarner Losh */ 1312d900ade5SWarner Losh 1313d900ade5SWarner Losh void 1314d900ade5SWarner Losh cam_iosched_set_trim_goal(struct cam_iosched_softc *isc, int goal) 1315d900ade5SWarner Losh { 1316d900ade5SWarner Losh 1317d900ade5SWarner Losh isc->trim_goal = goal; 1318d900ade5SWarner Losh } 1319d900ade5SWarner Losh 1320d900ade5SWarner Losh void 1321d900ade5SWarner Losh cam_iosched_set_trim_ticks(struct cam_iosched_softc *isc, int trim_ticks) 1322d900ade5SWarner Losh { 1323d900ade5SWarner Losh 1324d900ade5SWarner Losh isc->trim_ticks = trim_ticks; 1325d900ade5SWarner Losh } 1326d900ade5SWarner Losh 1327d900ade5SWarner Losh /* 1328ba6c22ceSWarner Losh * Flush outstanding I/O. Consumers of this library don't know all the 1329ba6c22ceSWarner Losh * queues we may keep, so this allows all I/O to be flushed in one 1330ba6c22ceSWarner Losh * convenient call. 1331ba6c22ceSWarner Losh */ 1332ba6c22ceSWarner Losh void 1333ba6c22ceSWarner Losh cam_iosched_flush(struct cam_iosched_softc *isc, struct devstat *stp, int err) 1334ba6c22ceSWarner Losh { 1335ba6c22ceSWarner Losh bioq_flush(&isc->bio_queue, stp, err); 1336ba6c22ceSWarner Losh bioq_flush(&isc->trim_queue, stp, err); 1337df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1338035ec48eSWarner Losh if (do_dynamic_iosched) 1339ba6c22ceSWarner Losh bioq_flush(&isc->write_queue, stp, err); 1340ba6c22ceSWarner Losh #endif 1341ba6c22ceSWarner Losh } 1342ba6c22ceSWarner Losh 1343df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1344ba6c22ceSWarner Losh static struct bio * 13450028abe6SWarner Losh cam_iosched_get_write(struct cam_iosched_softc *isc) 1346ba6c22ceSWarner Losh { 1347ba6c22ceSWarner Losh struct bio *bp; 1348ba6c22ceSWarner Losh 1349ba6c22ceSWarner Losh /* 1350ba6c22ceSWarner Losh * We control the write rate by controlling how many requests we send 1351ba6c22ceSWarner Losh * down to the drive at any one time. Fewer requests limits the 1352ba6c22ceSWarner Losh * effects of both starvation when the requests take a while and write 1353ba6c22ceSWarner Losh * amplification when each request is causing more than one write to 1354ba6c22ceSWarner Losh * the NAND media. Limiting the queue depth like this will also limit 1355ba6c22ceSWarner Losh * the write throughput and give and reads that want to compete to 1356ba6c22ceSWarner Losh * compete unfairly. 1357ba6c22ceSWarner Losh */ 1358ba6c22ceSWarner Losh bp = bioq_first(&isc->write_queue); 1359ba6c22ceSWarner Losh if (bp == NULL) { 1360ba6c22ceSWarner Losh if (iosched_debug > 3) 1361ba6c22ceSWarner Losh printf("No writes present in write_queue\n"); 1362ba6c22ceSWarner Losh return NULL; 1363ba6c22ceSWarner Losh } 1364ba6c22ceSWarner Losh 1365ba6c22ceSWarner Losh /* 1366ba6c22ceSWarner Losh * If pending read, prefer that based on current read bias 1367ba6c22ceSWarner Losh * setting. 1368ba6c22ceSWarner Losh */ 1369ba6c22ceSWarner Losh if (bioq_first(&isc->bio_queue) && isc->current_read_bias) { 1370ba6c22ceSWarner Losh if (iosched_debug) 1371f2b98850SWarner Losh printf( 1372f2b98850SWarner Losh "Reads present and current_read_bias is %d queued " 1373f2b98850SWarner Losh "writes %d queued reads %d\n", 1374f2b98850SWarner Losh isc->current_read_bias, isc->write_stats.queued, 1375f2b98850SWarner Losh isc->read_stats.queued); 1376ba6c22ceSWarner Losh isc->current_read_bias--; 1377cf3ec151SWarner Losh /* We're not limiting writes, per se, just doing reads first */ 1378ba6c22ceSWarner Losh return NULL; 1379ba6c22ceSWarner Losh } 1380ba6c22ceSWarner Losh 1381ba6c22ceSWarner Losh /* 1382ba6c22ceSWarner Losh * See if our current limiter allows this I/O. 1383ba6c22ceSWarner Losh */ 1384ba6c22ceSWarner Losh if (cam_iosched_limiter_iop(&isc->write_stats, bp) != 0) { 1385ba6c22ceSWarner Losh if (iosched_debug) 1386ba6c22ceSWarner Losh printf("Can't write because limiter says no.\n"); 1387cf3ec151SWarner Losh isc->write_stats.state_flags |= IOP_RATE_LIMITED; 1388ba6c22ceSWarner Losh return NULL; 1389ba6c22ceSWarner Losh } 1390ba6c22ceSWarner Losh 1391ba6c22ceSWarner Losh /* 1392ba6c22ceSWarner Losh * Let's do this: We've passed all the gates and we're a go 1393ba6c22ceSWarner Losh * to schedule the I/O in the SIM. 1394ba6c22ceSWarner Losh */ 1395ba6c22ceSWarner Losh isc->current_read_bias = isc->read_bias; 1396ba6c22ceSWarner Losh bioq_remove(&isc->write_queue, bp); 1397ba6c22ceSWarner Losh if (bp->bio_cmd == BIO_WRITE) { 1398ba6c22ceSWarner Losh isc->write_stats.queued--; 1399ba6c22ceSWarner Losh isc->write_stats.total++; 1400ba6c22ceSWarner Losh isc->write_stats.pending++; 1401ba6c22ceSWarner Losh } 1402ba6c22ceSWarner Losh if (iosched_debug > 9) 1403ba6c22ceSWarner Losh printf("HWQ : %p %#x\n", bp, bp->bio_cmd); 1404cf3ec151SWarner Losh isc->write_stats.state_flags &= ~IOP_RATE_LIMITED; 1405ba6c22ceSWarner Losh return bp; 1406ba6c22ceSWarner Losh } 1407ba6c22ceSWarner Losh #endif 1408ba6c22ceSWarner Losh 1409ba6c22ceSWarner Losh /* 1410ba6c22ceSWarner Losh * Put back a trim that you weren't able to actually schedule this time. 1411ba6c22ceSWarner Losh */ 1412ba6c22ceSWarner Losh void 1413ba6c22ceSWarner Losh cam_iosched_put_back_trim(struct cam_iosched_softc *isc, struct bio *bp) 1414ba6c22ceSWarner Losh { 1415ba6c22ceSWarner Losh bioq_insert_head(&isc->trim_queue, bp); 1416d900ade5SWarner Losh if (isc->queued_trims == 0) 1417d900ade5SWarner Losh isc->last_trim_tick = ticks; 1418d900ade5SWarner Losh isc->queued_trims++; 1419df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1420ba6c22ceSWarner Losh isc->trim_stats.queued++; 1421ba6c22ceSWarner Losh isc->trim_stats.total--; /* since we put it back, don't double count */ 1422ba6c22ceSWarner Losh isc->trim_stats.pending--; 1423ba6c22ceSWarner Losh #endif 1424ba6c22ceSWarner Losh } 1425ba6c22ceSWarner Losh 1426ba6c22ceSWarner Losh /* 1427ba6c22ceSWarner Losh * gets the next trim from the trim queue. 1428ba6c22ceSWarner Losh * 1429ba6c22ceSWarner Losh * Assumes we're called with the periph lock held. It removes this 14300b4060b0SEd Maste * trim from the queue and the device must explicitly reinsert it 1431ba6c22ceSWarner Losh * should the need arise. 1432ba6c22ceSWarner Losh */ 1433ba6c22ceSWarner Losh struct bio * 1434ba6c22ceSWarner Losh cam_iosched_next_trim(struct cam_iosched_softc *isc) 1435ba6c22ceSWarner Losh { 1436ba6c22ceSWarner Losh struct bio *bp; 1437ba6c22ceSWarner Losh 1438ba6c22ceSWarner Losh bp = bioq_first(&isc->trim_queue); 1439ba6c22ceSWarner Losh if (bp == NULL) 1440ba6c22ceSWarner Losh return NULL; 1441ba6c22ceSWarner Losh bioq_remove(&isc->trim_queue, bp); 1442d900ade5SWarner Losh isc->queued_trims--; 1443d900ade5SWarner Losh isc->last_trim_tick = ticks; /* Reset the tick timer when we take trims */ 1444df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1445ba6c22ceSWarner Losh isc->trim_stats.queued--; 1446ba6c22ceSWarner Losh isc->trim_stats.total++; 1447ba6c22ceSWarner Losh isc->trim_stats.pending++; 1448ba6c22ceSWarner Losh #endif 1449ba6c22ceSWarner Losh return bp; 1450ba6c22ceSWarner Losh } 1451ba6c22ceSWarner Losh 1452ba6c22ceSWarner Losh /* 14530b4060b0SEd Maste * gets an available trim from the trim queue, if there's no trim 1454ba6c22ceSWarner Losh * already pending. It removes this trim from the queue and the device 14550b4060b0SEd Maste * must explicitly reinsert it should the need arise. 1456ba6c22ceSWarner Losh * 1457ba6c22ceSWarner Losh * Assumes we're called with the periph lock held. 1458ba6c22ceSWarner Losh */ 14590028abe6SWarner Losh struct bio * 14600028abe6SWarner Losh cam_iosched_get_trim(struct cam_iosched_softc *isc) 1461ba6c22ceSWarner Losh { 1462c6171b44SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1463c6171b44SWarner Losh struct bio *bp; 1464c6171b44SWarner Losh #endif 1465ba6c22ceSWarner Losh 14660028abe6SWarner Losh if (!cam_iosched_has_more_trim(isc)) 1467ba6c22ceSWarner Losh return NULL; 146862c94a05SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1469c6171b44SWarner Losh bp = bioq_first(&isc->trim_queue); 1470c6171b44SWarner Losh if (bp == NULL) 1471c6171b44SWarner Losh return NULL; 1472c6171b44SWarner Losh 147362c94a05SWarner Losh /* 14741759fd77SWarner Losh * If pending read, prefer that based on current read bias setting. The 14751759fd77SWarner Losh * read bias is shared for both writes and TRIMs, but on TRIMs the bias 14761759fd77SWarner Losh * is for a combined TRIM not a single TRIM request that's come in. 147762c94a05SWarner Losh */ 14781759fd77SWarner Losh if (do_dynamic_iosched) { 147962c94a05SWarner Losh if (bioq_first(&isc->bio_queue) && isc->current_read_bias) { 14801759fd77SWarner Losh if (iosched_debug) 14811759fd77SWarner Losh printf("Reads present and current_read_bias is %d" 14821759fd77SWarner Losh " queued trims %d queued reads %d\n", 14831759fd77SWarner Losh isc->current_read_bias, isc->trim_stats.queued, 14841759fd77SWarner Losh isc->read_stats.queued); 148562c94a05SWarner Losh isc->current_read_bias--; 148662c94a05SWarner Losh /* We're not limiting TRIMS, per se, just doing reads first */ 148762c94a05SWarner Losh return NULL; 148862c94a05SWarner Losh } 148962c94a05SWarner Losh /* 149062c94a05SWarner Losh * We're going to do a trim, so reset the bias. 149162c94a05SWarner Losh */ 149262c94a05SWarner Losh isc->current_read_bias = isc->read_bias; 149362c94a05SWarner Losh } 1494c6171b44SWarner Losh 1495c6171b44SWarner Losh /* 1496c6171b44SWarner Losh * See if our current limiter allows this I/O. Because we only call this 1497c6171b44SWarner Losh * here, and not in next_trim, the 'bandwidth' limits for trims won't 1498c6171b44SWarner Losh * work, while the iops or max queued limits will work. It's tricky 1499c6171b44SWarner Losh * because we want the limits to be from the perspective of the 1500c6171b44SWarner Losh * "commands sent to the device." To make iops work, we need to check 1501c6171b44SWarner Losh * only here (since we want all the ops we combine to count as one). To 1502c6171b44SWarner Losh * make bw limits work, we'd need to check in next_trim, but that would 1503c6171b44SWarner Losh * have the effect of limiting the iops as seen from the upper layers. 1504c6171b44SWarner Losh */ 1505c6171b44SWarner Losh if (cam_iosched_limiter_iop(&isc->trim_stats, bp) != 0) { 1506c6171b44SWarner Losh if (iosched_debug) 1507c6171b44SWarner Losh printf("Can't trim because limiter says no.\n"); 1508c6171b44SWarner Losh isc->trim_stats.state_flags |= IOP_RATE_LIMITED; 1509c6171b44SWarner Losh return NULL; 1510c6171b44SWarner Losh } 1511c6171b44SWarner Losh isc->current_read_bias = isc->read_bias; 1512c6171b44SWarner Losh isc->trim_stats.state_flags &= ~IOP_RATE_LIMITED; 1513c6171b44SWarner Losh /* cam_iosched_next_trim below keeps proper book */ 151462c94a05SWarner Losh #endif 1515ba6c22ceSWarner Losh return cam_iosched_next_trim(isc); 1516ba6c22ceSWarner Losh } 1517ba6c22ceSWarner Losh 1518cc1572ddSWarner Losh 15191599fc90SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1520cc1572ddSWarner Losh static struct bio * 1521cc1572ddSWarner Losh bio_next(struct bio *bp) 1522cc1572ddSWarner Losh { 1523cc1572ddSWarner Losh bp = TAILQ_NEXT(bp, bio_queue); 1524cc1572ddSWarner Losh /* 1525cc1572ddSWarner Losh * After the first commands, the ordered bit terminates 1526cc1572ddSWarner Losh * our search because BIO_ORDERED acts like a barrier. 1527cc1572ddSWarner Losh */ 1528cc1572ddSWarner Losh if (bp == NULL || bp->bio_flags & BIO_ORDERED) 1529cc1572ddSWarner Losh return NULL; 1530cc1572ddSWarner Losh return bp; 1531cc1572ddSWarner Losh } 1532cc1572ddSWarner Losh 1533cc1572ddSWarner Losh static bool 1534cc1572ddSWarner Losh cam_iosched_rate_limited(struct iop_stats *ios) 1535cc1572ddSWarner Losh { 1536cc1572ddSWarner Losh return ios->state_flags & IOP_RATE_LIMITED; 1537cc1572ddSWarner Losh } 1538cc1572ddSWarner Losh #endif 1539cc1572ddSWarner Losh 1540ba6c22ceSWarner Losh /* 1541ba6c22ceSWarner Losh * Determine what the next bit of work to do is for the periph. The 1542ba6c22ceSWarner Losh * default implementation looks to see if we have trims to do, but no 1543ba6c22ceSWarner Losh * trims outstanding. If so, we do that. Otherwise we see if we have 1544ba6c22ceSWarner Losh * other work. If we do, then we do that. Otherwise why were we called? 1545ba6c22ceSWarner Losh */ 1546ba6c22ceSWarner Losh struct bio * 1547ba6c22ceSWarner Losh cam_iosched_next_bio(struct cam_iosched_softc *isc) 1548ba6c22ceSWarner Losh { 1549ba6c22ceSWarner Losh struct bio *bp; 1550ba6c22ceSWarner Losh 1551ba6c22ceSWarner Losh /* 1552ba6c22ceSWarner Losh * See if we have a trim that can be scheduled. We can only send one 15530028abe6SWarner Losh * at a time down, so this takes that into account. 15540028abe6SWarner Losh * 15550028abe6SWarner Losh * XXX newer TRIM commands are queueable. Revisit this when we 15560028abe6SWarner Losh * implement them. 1557ba6c22ceSWarner Losh */ 15580028abe6SWarner Losh if ((bp = cam_iosched_get_trim(isc)) != NULL) 1559ba6c22ceSWarner Losh return bp; 1560ba6c22ceSWarner Losh 1561df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1562ba6c22ceSWarner Losh /* 1563e3d92d4cSWarner Losh * See if we have any pending writes, room in the queue for them, 1564e3d92d4cSWarner Losh * and no pending reads (unless we've scheduled too many). 1565e3d92d4cSWarner Losh * if so, those are next. 1566ba6c22ceSWarner Losh */ 1567035ec48eSWarner Losh if (do_dynamic_iosched) { 15680028abe6SWarner Losh if ((bp = cam_iosched_get_write(isc)) != NULL) 1569ba6c22ceSWarner Losh return bp; 1570ba6c22ceSWarner Losh } 1571ba6c22ceSWarner Losh #endif 1572ba6c22ceSWarner Losh /* 1573ba6c22ceSWarner Losh * next, see if there's other, normal I/O waiting. If so return that. 1574ba6c22ceSWarner Losh */ 1575df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1576035ec48eSWarner Losh if (do_dynamic_iosched) { 1577cc1572ddSWarner Losh for (bp = bioq_first(&isc->bio_queue); bp != NULL; 1578cc1572ddSWarner Losh bp = bio_next(bp)) { 1579cc1572ddSWarner Losh /* 1580cc1572ddSWarner Losh * For the dynamic scheduler with a read bias, bio_queue 1581cc1572ddSWarner Losh * is only for reads. However, without one, all 1582cc1572ddSWarner Losh * operations are queued. Enforce limits here for any 1583cc1572ddSWarner Losh * operation we find here. 1584cc1572ddSWarner Losh */ 1585cc1572ddSWarner Losh if (bp->bio_cmd == BIO_READ) { 1586cc1572ddSWarner Losh if (cam_iosched_rate_limited(&isc->read_stats) || 1587cf3ec151SWarner Losh cam_iosched_limiter_iop(&isc->read_stats, bp) != 0) { 1588cf3ec151SWarner Losh isc->read_stats.state_flags |= IOP_RATE_LIMITED; 1589cc1572ddSWarner Losh continue; 1590cf3ec151SWarner Losh } 1591cf3ec151SWarner Losh isc->read_stats.state_flags &= ~IOP_RATE_LIMITED; 1592cc1572ddSWarner Losh } 1593cc1572ddSWarner Losh /* 1594cc1572ddSWarner Losh * There can only be write requests on the queue when 1595cc1572ddSWarner Losh * the read bias is 0, but we need to process them 1596cc1572ddSWarner Losh * here. We do not assert for read bias == 0, however, 1597cc1572ddSWarner Losh * since it is dynamic and we can have WRITE operations 1598cc1572ddSWarner Losh * in the queue after we transition from 0 to non-zero. 1599cc1572ddSWarner Losh */ 1600cc1572ddSWarner Losh if (bp->bio_cmd == BIO_WRITE) { 1601cc1572ddSWarner Losh if (cam_iosched_rate_limited(&isc->write_stats) || 1602cc1572ddSWarner Losh cam_iosched_limiter_iop(&isc->write_stats, bp) != 0) { 1603cc1572ddSWarner Losh isc->write_stats.state_flags |= IOP_RATE_LIMITED; 1604cc1572ddSWarner Losh continue; 1605cc1572ddSWarner Losh } 1606cc1572ddSWarner Losh isc->write_stats.state_flags &= ~IOP_RATE_LIMITED; 1607cc1572ddSWarner Losh } 1608cc1572ddSWarner Losh /* 1609cc1572ddSWarner Losh * here we know we have a bp that's != NULL, that's not rate limited 1610cc1572ddSWarner Losh * and can be the next I/O. 1611cc1572ddSWarner Losh */ 1612cc1572ddSWarner Losh break; 1613cc1572ddSWarner Losh } 1614cc1572ddSWarner Losh } else 1615ba6c22ceSWarner Losh #endif 1616cc1572ddSWarner Losh bp = bioq_first(&isc->bio_queue); 1617cc1572ddSWarner Losh 1618cc1572ddSWarner Losh if (bp == NULL) 1619cc1572ddSWarner Losh return (NULL); 1620ba6c22ceSWarner Losh bioq_remove(&isc->bio_queue, bp); 1621df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1622035ec48eSWarner Losh if (do_dynamic_iosched) { 1623ba6c22ceSWarner Losh if (bp->bio_cmd == BIO_READ) { 1624ba6c22ceSWarner Losh isc->read_stats.queued--; 1625ba6c22ceSWarner Losh isc->read_stats.total++; 1626ba6c22ceSWarner Losh isc->read_stats.pending++; 1627cc1572ddSWarner Losh } else if (bp->bio_cmd == BIO_WRITE) { 1628cc1572ddSWarner Losh isc->write_stats.queued--; 1629cc1572ddSWarner Losh isc->write_stats.total++; 1630cc1572ddSWarner Losh isc->write_stats.pending++; 1631a85fea31SWarner Losh } 1632ba6c22ceSWarner Losh } 1633ba6c22ceSWarner Losh if (iosched_debug > 9) 1634ba6c22ceSWarner Losh printf("HWQ : %p %#x\n", bp, bp->bio_cmd); 1635ba6c22ceSWarner Losh #endif 1636ba6c22ceSWarner Losh return bp; 1637ba6c22ceSWarner Losh } 1638ba6c22ceSWarner Losh 1639ba6c22ceSWarner Losh /* 1640ba6c22ceSWarner Losh * Driver has been given some work to do by the block layer. Tell the 1641ba6c22ceSWarner Losh * scheduler about it and have it queue the work up. The scheduler module 1642ba6c22ceSWarner Losh * will then return the currently most useful bit of work later, possibly 1643ba6c22ceSWarner Losh * deferring work for various reasons. 1644ba6c22ceSWarner Losh */ 1645ba6c22ceSWarner Losh void 1646ba6c22ceSWarner Losh cam_iosched_queue_work(struct cam_iosched_softc *isc, struct bio *bp) 1647ba6c22ceSWarner Losh { 1648ba6c22ceSWarner Losh 1649ba6c22ceSWarner Losh /* 1650586eda6bSGordon Bergling * A BIO_SPEEDUP from the upper layers means that they have a block 16510d83f8dcSWarner Losh * shortage. At the present, this is only sent when we're trying to 16520d83f8dcSWarner Losh * allocate blocks, but have a shortage before giving up. bio_length is 16530d83f8dcSWarner Losh * the size of their shortage. We will complete just enough BIO_DELETEs 16540d83f8dcSWarner Losh * in the queue to satisfy the need. If bio_length is 0, we'll complete 16550d83f8dcSWarner Losh * them all. This allows the scheduler to delay BIO_DELETEs to improve 16560d83f8dcSWarner Losh * read/write performance without worrying about the upper layers. When 16570d83f8dcSWarner Losh * it's possibly a problem, we respond by pretending the BIO_DELETEs 16580d83f8dcSWarner Losh * just worked. We can't do anything about the BIO_DELETEs in the 16590d83f8dcSWarner Losh * hardware, though. We have to wait for them to complete. 16600d83f8dcSWarner Losh */ 16610d83f8dcSWarner Losh if (bp->bio_cmd == BIO_SPEEDUP) { 16620d83f8dcSWarner Losh off_t len; 16630d83f8dcSWarner Losh struct bio *nbp; 16640d83f8dcSWarner Losh 16650d83f8dcSWarner Losh len = 0; 16660d83f8dcSWarner Losh while (bioq_first(&isc->trim_queue) && 16670d83f8dcSWarner Losh (bp->bio_length == 0 || len < bp->bio_length)) { 16680d83f8dcSWarner Losh nbp = bioq_takefirst(&isc->trim_queue); 16690d83f8dcSWarner Losh len += nbp->bio_length; 16700d83f8dcSWarner Losh nbp->bio_error = 0; 16710d83f8dcSWarner Losh biodone(nbp); 16720d83f8dcSWarner Losh } 16730d83f8dcSWarner Losh if (bp->bio_length > 0) { 16740d83f8dcSWarner Losh if (bp->bio_length > len) 16750d83f8dcSWarner Losh bp->bio_resid = bp->bio_length - len; 16760d83f8dcSWarner Losh else 16770d83f8dcSWarner Losh bp->bio_resid = 0; 16780d83f8dcSWarner Losh } 16790d83f8dcSWarner Losh bp->bio_error = 0; 16800d83f8dcSWarner Losh biodone(bp); 16810d83f8dcSWarner Losh return; 16820d83f8dcSWarner Losh } 16830d83f8dcSWarner Losh 16840d83f8dcSWarner Losh /* 1685d900ade5SWarner Losh * If we get a BIO_FLUSH, and we're doing delayed BIO_DELETEs then we 1686d900ade5SWarner Losh * set the last tick time to one less than the current ticks minus the 1687d900ade5SWarner Losh * delay to force the BIO_DELETEs to be presented to the client driver. 1688d900ade5SWarner Losh */ 1689d900ade5SWarner Losh if (bp->bio_cmd == BIO_FLUSH && isc->trim_ticks > 0) 1690d900ade5SWarner Losh isc->last_trim_tick = ticks - isc->trim_ticks - 1; 1691d900ade5SWarner Losh 1692d900ade5SWarner Losh /* 1693d900ade5SWarner Losh * Put all trims on the trim queue. Otherwise put the work on the bio 1694d900ade5SWarner Losh * queue. 1695ba6c22ceSWarner Losh */ 1696ba6c22ceSWarner Losh if (bp->bio_cmd == BIO_DELETE) { 169797f8aa05SWarner Losh bioq_insert_tail(&isc->trim_queue, bp); 1698d900ade5SWarner Losh if (isc->queued_trims == 0) 1699d900ade5SWarner Losh isc->last_trim_tick = ticks; 1700d900ade5SWarner Losh isc->queued_trims++; 1701df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1702ba6c22ceSWarner Losh isc->trim_stats.in++; 1703ba6c22ceSWarner Losh isc->trim_stats.queued++; 1704ba6c22ceSWarner Losh #endif 1705ba6c22ceSWarner Losh } 1706df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1707cc1572ddSWarner Losh else if (do_dynamic_iosched && isc->read_bias != 0 && 1708cc1572ddSWarner Losh (bp->bio_cmd != BIO_READ)) { 1709ba6c22ceSWarner Losh if (cam_iosched_sort_queue(isc)) 1710ba6c22ceSWarner Losh bioq_disksort(&isc->write_queue, bp); 1711ba6c22ceSWarner Losh else 1712ba6c22ceSWarner Losh bioq_insert_tail(&isc->write_queue, bp); 1713ba6c22ceSWarner Losh if (iosched_debug > 9) 1714ba6c22ceSWarner Losh printf("Qw : %p %#x\n", bp, bp->bio_cmd); 1715ba6c22ceSWarner Losh if (bp->bio_cmd == BIO_WRITE) { 1716ba6c22ceSWarner Losh isc->write_stats.in++; 1717ba6c22ceSWarner Losh isc->write_stats.queued++; 1718ba6c22ceSWarner Losh } 1719ba6c22ceSWarner Losh } 1720ba6c22ceSWarner Losh #endif 1721ba6c22ceSWarner Losh else { 1722ba6c22ceSWarner Losh if (cam_iosched_sort_queue(isc)) 1723ba6c22ceSWarner Losh bioq_disksort(&isc->bio_queue, bp); 1724ba6c22ceSWarner Losh else 1725ba6c22ceSWarner Losh bioq_insert_tail(&isc->bio_queue, bp); 1726df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1727ba6c22ceSWarner Losh if (iosched_debug > 9) 1728ba6c22ceSWarner Losh printf("Qr : %p %#x\n", bp, bp->bio_cmd); 1729ba6c22ceSWarner Losh if (bp->bio_cmd == BIO_READ) { 1730ba6c22ceSWarner Losh isc->read_stats.in++; 1731ba6c22ceSWarner Losh isc->read_stats.queued++; 1732ba6c22ceSWarner Losh } else if (bp->bio_cmd == BIO_WRITE) { 1733ba6c22ceSWarner Losh isc->write_stats.in++; 1734ba6c22ceSWarner Losh isc->write_stats.queued++; 1735ba6c22ceSWarner Losh } 1736ba6c22ceSWarner Losh #endif 1737ba6c22ceSWarner Losh } 1738ba6c22ceSWarner Losh } 1739ba6c22ceSWarner Losh 1740ba6c22ceSWarner Losh /* 1741ba6c22ceSWarner Losh * If we have work, get it scheduled. Called with the periph lock held. 1742ba6c22ceSWarner Losh */ 1743ba6c22ceSWarner Losh void 1744ba6c22ceSWarner Losh cam_iosched_schedule(struct cam_iosched_softc *isc, struct cam_periph *periph) 1745ba6c22ceSWarner Losh { 1746ba6c22ceSWarner Losh 1747ba6c22ceSWarner Losh if (cam_iosched_has_work(isc)) 1748ba6c22ceSWarner Losh xpt_schedule(periph, CAM_PRIORITY_NORMAL); 1749ba6c22ceSWarner Losh } 1750ba6c22ceSWarner Losh 1751ba6c22ceSWarner Losh /* 175255c770b4SWarner Losh * Complete a trim request. Mark that we no longer have one in flight. 1753ba6c22ceSWarner Losh */ 1754ba6c22ceSWarner Losh void 1755ba6c22ceSWarner Losh cam_iosched_trim_done(struct cam_iosched_softc *isc) 1756ba6c22ceSWarner Losh { 1757ba6c22ceSWarner Losh 1758ece56614SWarner Losh isc->flags &= ~CAM_IOSCHED_FLAG_TRIM_ACTIVE; 1759ba6c22ceSWarner Losh } 1760ba6c22ceSWarner Losh 1761ba6c22ceSWarner Losh /* 1762ba6c22ceSWarner Losh * Complete a bio. Called before we release the ccb with xpt_release_ccb so we 1763ba6c22ceSWarner Losh * might use notes in the ccb for statistics. 1764ba6c22ceSWarner Losh */ 1765ba6c22ceSWarner Losh int 1766ba6c22ceSWarner Losh cam_iosched_bio_complete(struct cam_iosched_softc *isc, struct bio *bp, 1767ba6c22ceSWarner Losh union ccb *done_ccb) 1768ba6c22ceSWarner Losh { 1769ba6c22ceSWarner Losh int retval = 0; 1770df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1771035ec48eSWarner Losh if (!do_dynamic_iosched) 1772ba6c22ceSWarner Losh return retval; 1773ba6c22ceSWarner Losh 1774ba6c22ceSWarner Losh if (iosched_debug > 10) 1775ba6c22ceSWarner Losh printf("done: %p %#x\n", bp, bp->bio_cmd); 1776ba6c22ceSWarner Losh if (bp->bio_cmd == BIO_WRITE) { 1777ba6c22ceSWarner Losh retval = cam_iosched_limiter_iodone(&isc->write_stats, bp); 1778157cb465SWarner Losh if ((bp->bio_flags & BIO_ERROR) != 0) 1779c4b72d8bSWarner Losh isc->write_stats.errs++; 1780ba6c22ceSWarner Losh isc->write_stats.out++; 1781ba6c22ceSWarner Losh isc->write_stats.pending--; 1782ba6c22ceSWarner Losh } else if (bp->bio_cmd == BIO_READ) { 1783ba6c22ceSWarner Losh retval = cam_iosched_limiter_iodone(&isc->read_stats, bp); 1784157cb465SWarner Losh if ((bp->bio_flags & BIO_ERROR) != 0) 1785c4b72d8bSWarner Losh isc->read_stats.errs++; 1786ba6c22ceSWarner Losh isc->read_stats.out++; 1787ba6c22ceSWarner Losh isc->read_stats.pending--; 1788ba6c22ceSWarner Losh } else if (bp->bio_cmd == BIO_DELETE) { 1789157cb465SWarner Losh if ((bp->bio_flags & BIO_ERROR) != 0) 1790c4b72d8bSWarner Losh isc->trim_stats.errs++; 1791ba6c22ceSWarner Losh isc->trim_stats.out++; 1792ba6c22ceSWarner Losh isc->trim_stats.pending--; 1793ba6c22ceSWarner Losh } else if (bp->bio_cmd != BIO_FLUSH) { 1794ba6c22ceSWarner Losh if (iosched_debug) 1795ba6c22ceSWarner Losh printf("Completing command with bio_cmd == %#x\n", bp->bio_cmd); 1796ba6c22ceSWarner Losh } 1797ba6c22ceSWarner Losh 17984afa62beSWarner Losh if ((bp->bio_flags & BIO_ERROR) == 0 && done_ccb != NULL && 17994afa62beSWarner Losh (done_ccb->ccb_h.status & CAM_QOS_VALID) != 0) { 1800e5436ab5SWarner Losh sbintime_t sim_latency; 1801e5436ab5SWarner Losh 1802e5436ab5SWarner Losh sim_latency = cam_iosched_sbintime_t(done_ccb->ccb_h.qos.periph_data); 1803e5436ab5SWarner Losh 1804e5436ab5SWarner Losh cam_iosched_io_metric_update(isc, sim_latency, 1805ba6c22ceSWarner Losh bp->bio_cmd, bp->bio_bcount); 1806e5436ab5SWarner Losh /* 1807e5436ab5SWarner Losh * Debugging code: allow callbacks to the periph driver when latency max 1808e5436ab5SWarner Losh * is exceeded. This can be useful for triggering external debugging actions. 1809e5436ab5SWarner Losh */ 1810e5436ab5SWarner Losh if (isc->latfcn && isc->max_lat != 0 && sim_latency > isc->max_lat) 1811e5436ab5SWarner Losh isc->latfcn(isc->latarg, sim_latency, bp); 1812e5436ab5SWarner Losh } 1813e5436ab5SWarner Losh 1814ba6c22ceSWarner Losh #endif 1815ba6c22ceSWarner Losh return retval; 1816ba6c22ceSWarner Losh } 1817ba6c22ceSWarner Losh 1818ba6c22ceSWarner Losh /* 1819ba6c22ceSWarner Losh * Tell the io scheduler that you've pushed a trim down into the sim. 182055c770b4SWarner Losh * This also tells the I/O scheduler not to push any more trims down, so 182155c770b4SWarner Losh * some periphs do not call it if they can cope with multiple trims in flight. 1822ba6c22ceSWarner Losh */ 1823ba6c22ceSWarner Losh void 1824ba6c22ceSWarner Losh cam_iosched_submit_trim(struct cam_iosched_softc *isc) 1825ba6c22ceSWarner Losh { 1826ba6c22ceSWarner Losh 1827ece56614SWarner Losh isc->flags |= CAM_IOSCHED_FLAG_TRIM_ACTIVE; 1828ba6c22ceSWarner Losh } 1829ba6c22ceSWarner Losh 1830ba6c22ceSWarner Losh /* 1831ba6c22ceSWarner Losh * Change the sorting policy hint for I/O transactions for this device. 1832ba6c22ceSWarner Losh */ 1833ba6c22ceSWarner Losh void 1834ba6c22ceSWarner Losh cam_iosched_set_sort_queue(struct cam_iosched_softc *isc, int val) 1835ba6c22ceSWarner Losh { 1836ba6c22ceSWarner Losh 1837ba6c22ceSWarner Losh isc->sort_io_queue = val; 1838ba6c22ceSWarner Losh } 1839ba6c22ceSWarner Losh 1840ba6c22ceSWarner Losh int 1841ba6c22ceSWarner Losh cam_iosched_has_work_flags(struct cam_iosched_softc *isc, uint32_t flags) 1842ba6c22ceSWarner Losh { 1843ba6c22ceSWarner Losh return isc->flags & flags; 1844ba6c22ceSWarner Losh } 1845ba6c22ceSWarner Losh 1846ba6c22ceSWarner Losh void 1847ba6c22ceSWarner Losh cam_iosched_set_work_flags(struct cam_iosched_softc *isc, uint32_t flags) 1848ba6c22ceSWarner Losh { 1849ba6c22ceSWarner Losh isc->flags |= flags; 1850ba6c22ceSWarner Losh } 1851ba6c22ceSWarner Losh 1852ba6c22ceSWarner Losh void 1853ba6c22ceSWarner Losh cam_iosched_clr_work_flags(struct cam_iosched_softc *isc, uint32_t flags) 1854ba6c22ceSWarner Losh { 1855ba6c22ceSWarner Losh isc->flags &= ~flags; 1856ba6c22ceSWarner Losh } 1857ba6c22ceSWarner Losh 1858df236247SWarner Losh #ifdef CAM_IOSCHED_DYNAMIC 1859ba6c22ceSWarner Losh /* 1860ba6c22ceSWarner Losh * After the method presented in Jack Crenshaw's 1998 article "Integer 18610b4060b0SEd Maste * Square Roots," reprinted at 1862ba6c22ceSWarner Losh * http://www.embedded.com/electronics-blogs/programmer-s-toolbox/4219659/Integer-Square-Roots 1863ba6c22ceSWarner Losh * and well worth the read. Briefly, we find the power of 4 that's the 1864ba6c22ceSWarner Losh * largest smaller than val. We then check each smaller power of 4 to 1865ba6c22ceSWarner Losh * see if val is still bigger. The right shifts at each step divide 1866ba6c22ceSWarner Losh * the result by 2 which after successive application winds up 1867ba6c22ceSWarner Losh * accumulating the right answer. It could also have been accumulated 1868ba6c22ceSWarner Losh * using a separate root counter, but this code is smaller and faster 1869ba6c22ceSWarner Losh * than that method. This method is also integer size invariant. 18700b4060b0SEd Maste * It returns floor(sqrt((float)val)), or the largest integer less than 1871ba6c22ceSWarner Losh * or equal to the square root. 1872ba6c22ceSWarner Losh */ 1873ba6c22ceSWarner Losh static uint64_t 1874ba6c22ceSWarner Losh isqrt64(uint64_t val) 1875ba6c22ceSWarner Losh { 1876ba6c22ceSWarner Losh uint64_t res = 0; 1877ba6c22ceSWarner Losh uint64_t bit = 1ULL << (sizeof(uint64_t) * NBBY - 2); 1878ba6c22ceSWarner Losh 1879ba6c22ceSWarner Losh /* 1880ba6c22ceSWarner Losh * Find the largest power of 4 smaller than val. 1881ba6c22ceSWarner Losh */ 1882ba6c22ceSWarner Losh while (bit > val) 1883ba6c22ceSWarner Losh bit >>= 2; 1884ba6c22ceSWarner Losh 1885ba6c22ceSWarner Losh /* 1886ba6c22ceSWarner Losh * Accumulate the answer, one bit at a time (we keep moving 1887ba6c22ceSWarner Losh * them over since 2 is the square root of 4 and we test 1888ba6c22ceSWarner Losh * powers of 4). We accumulate where we find the bit, but 1889ba6c22ceSWarner Losh * the successive shifts land the bit in the right place 1890ba6c22ceSWarner Losh * by the end. 1891ba6c22ceSWarner Losh */ 1892ba6c22ceSWarner Losh while (bit != 0) { 1893ba6c22ceSWarner Losh if (val >= res + bit) { 1894ba6c22ceSWarner Losh val -= res + bit; 1895ba6c22ceSWarner Losh res = (res >> 1) + bit; 1896ba6c22ceSWarner Losh } else 1897ba6c22ceSWarner Losh res >>= 1; 1898ba6c22ceSWarner Losh bit >>= 2; 1899ba6c22ceSWarner Losh } 1900ba6c22ceSWarner Losh 1901ba6c22ceSWarner Losh return res; 1902ba6c22ceSWarner Losh } 1903ba6c22ceSWarner Losh 190408fc2f23SWarner Losh static sbintime_t latencies[LAT_BUCKETS - 1] = { 190522832069SWarner Losh BUCKET_BASE << 0, /* 20us */ 190622832069SWarner Losh BUCKET_BASE << 1, 190722832069SWarner Losh BUCKET_BASE << 2, 190822832069SWarner Losh BUCKET_BASE << 3, 190922832069SWarner Losh BUCKET_BASE << 4, 191022832069SWarner Losh BUCKET_BASE << 5, 191122832069SWarner Losh BUCKET_BASE << 6, 191222832069SWarner Losh BUCKET_BASE << 7, 191322832069SWarner Losh BUCKET_BASE << 8, 191422832069SWarner Losh BUCKET_BASE << 9, 191522832069SWarner Losh BUCKET_BASE << 10, 191622832069SWarner Losh BUCKET_BASE << 11, 191722832069SWarner Losh BUCKET_BASE << 12, 191822832069SWarner Losh BUCKET_BASE << 13, 191922832069SWarner Losh BUCKET_BASE << 14, 192022832069SWarner Losh BUCKET_BASE << 15, 192122832069SWarner Losh BUCKET_BASE << 16, 192222832069SWarner Losh BUCKET_BASE << 17, 192322832069SWarner Losh BUCKET_BASE << 18 /* 5,242,880us */ 1924cf3ec151SWarner Losh }; 1925cf3ec151SWarner Losh 1926ba6c22ceSWarner Losh static void 1927ba6c22ceSWarner Losh cam_iosched_update(struct iop_stats *iop, sbintime_t sim_latency) 1928ba6c22ceSWarner Losh { 192979d80af2SWarner Losh sbintime_t y, deltasq, delta; 1930cf3ec151SWarner Losh int i; 1931cf3ec151SWarner Losh 1932cf3ec151SWarner Losh /* 1933*e82644e5SWarner Losh * Simple threshold: count the number of events that excede the 1934*e82644e5SWarner Losh * configured threshold. 1935*e82644e5SWarner Losh */ 1936*e82644e5SWarner Losh if (sim_latency > iop->bad_latency) { 1937*e82644e5SWarner Losh iop->too_long++; 1938*e82644e5SWarner Losh } 1939*e82644e5SWarner Losh 1940*e82644e5SWarner Losh /* 1941cf3ec151SWarner Losh * Keep counts for latency. We do it by power of two buckets. 1942cf3ec151SWarner Losh * This helps us spot outlier behavior obscured by averages. 1943cf3ec151SWarner Losh */ 1944cf3ec151SWarner Losh for (i = 0; i < LAT_BUCKETS - 1; i++) { 1945cf3ec151SWarner Losh if (sim_latency < latencies[i]) { 1946cf3ec151SWarner Losh iop->latencies[i]++; 1947cf3ec151SWarner Losh break; 1948cf3ec151SWarner Losh } 1949cf3ec151SWarner Losh } 1950cf3ec151SWarner Losh if (i == LAT_BUCKETS - 1) 1951c048ac62SWarner Losh iop->latencies[i]++; /* Put all > 8192ms values into the last bucket. */ 1952ba6c22ceSWarner Losh 1953ba6c22ceSWarner Losh /* 19540b4060b0SEd Maste * Classic exponentially decaying average with a tiny alpha 1955ba6c22ceSWarner Losh * (2 ^ -alpha_bits). For more info see the NIST statistical 1956ba6c22ceSWarner Losh * handbook. 1957ba6c22ceSWarner Losh * 195879d80af2SWarner Losh * ema_t = y_t * alpha + ema_t-1 * (1 - alpha) [nist] 195979d80af2SWarner Losh * ema_t = y_t * alpha + ema_t-1 - alpha * ema_t-1 196079d80af2SWarner Losh * ema_t = alpha * y_t - alpha * ema_t-1 + ema_t-1 1961ba6c22ceSWarner Losh * alpha = 1 / (1 << alpha_bits) 196279d80af2SWarner Losh * sub e == ema_t-1, b == 1/alpha (== 1 << alpha_bits), d == y_t - ema_t-1 196379d80af2SWarner Losh * = y_t/b - e/b + be/b 196479d80af2SWarner Losh * = (y_t - e + be) / b 196579d80af2SWarner Losh * = (e + d) / b 1966ba6c22ceSWarner Losh * 1967ba6c22ceSWarner Losh * Since alpha is a power of two, we can compute this w/o any mult or 1968ba6c22ceSWarner Losh * division. 196979d80af2SWarner Losh * 197079d80af2SWarner Losh * Variance can also be computed. Usually, it would be expressed as follows: 197179d80af2SWarner Losh * diff_t = y_t - ema_t-1 197279d80af2SWarner Losh * emvar_t = (1 - alpha) * (emavar_t-1 + diff_t^2 * alpha) 197379d80af2SWarner Losh * = emavar_t-1 - alpha * emavar_t-1 + delta_t^2 * alpha - (delta_t * alpha)^2 197479d80af2SWarner Losh * sub b == 1/alpha (== 1 << alpha_bits), e == emavar_t-1, d = delta_t^2 197579d80af2SWarner Losh * = e - e/b + dd/b + dd/bb 197679d80af2SWarner Losh * = (bbe - be + bdd + dd) / bb 197779d80af2SWarner Losh * = (bbe + b(dd-e) + dd) / bb (which is expanded below bb = 1<<(2*alpha_bits)) 197879d80af2SWarner Losh */ 197979d80af2SWarner Losh /* 198079d80af2SWarner Losh * XXX possible numeric issues 198179d80af2SWarner Losh * o We assume right shifted integers do the right thing, since that's 198279d80af2SWarner Losh * implementation defined. You can change the right shifts to / (1LL << alpha). 198379d80af2SWarner Losh * o alpha_bits = 9 gives ema ceiling of 23 bits of seconds for ema and 14 bits 198479d80af2SWarner Losh * for emvar. This puts a ceiling of 13 bits on alpha since we need a 198579d80af2SWarner Losh * few tens of seconds of representation. 198679d80af2SWarner Losh * o We mitigate alpha issues by never setting it too high. 1987ba6c22ceSWarner Losh */ 1988ba6c22ceSWarner Losh y = sim_latency; 198979d80af2SWarner Losh delta = (y - iop->ema); /* d */ 199079d80af2SWarner Losh iop->ema = ((iop->ema << alpha_bits) + delta) >> alpha_bits; 1991ba6c22ceSWarner Losh 1992ba6c22ceSWarner Losh /* 199379d80af2SWarner Losh * Were we to naively plow ahead at this point, we wind up with many numerical 199479d80af2SWarner Losh * issues making any SD > ~3ms unreliable. So, we shift right by 12. This leaves 199579d80af2SWarner Losh * us with microsecond level precision in the input, so the same in the 199679d80af2SWarner Losh * output. It means we can't overflow deltasq unless delta > 4k seconds. It 199779d80af2SWarner Losh * also means that emvar can be up 46 bits 40 of which are fraction, which 199879d80af2SWarner Losh * gives us a way to measure up to ~8s in the SD before the computation goes 199979d80af2SWarner Losh * unstable. Even the worst hard disk rarely has > 1s service time in the 200079d80af2SWarner Losh * drive. It does mean we have to shift left 12 bits after taking the 200179d80af2SWarner Losh * square root to compute the actual standard deviation estimate. This loss of 200279d80af2SWarner Losh * precision is preferable to needing int128 types to work. The above numbers 200379d80af2SWarner Losh * assume alpha=9. 10 or 11 are ok, but we start to run into issues at 12, 200479d80af2SWarner Losh * so 12 or 13 is OK for EMA, EMVAR and SD will be wrong in those cases. 2005ba6c22ceSWarner Losh */ 200679d80af2SWarner Losh delta >>= 12; 200779d80af2SWarner Losh deltasq = delta * delta; /* dd */ 200879d80af2SWarner Losh iop->emvar = ((iop->emvar << (2 * alpha_bits)) + /* bbe */ 200979d80af2SWarner Losh ((deltasq - iop->emvar) << alpha_bits) + /* b(dd-e) */ 201079d80af2SWarner Losh deltasq) /* dd */ 201179d80af2SWarner Losh >> (2 * alpha_bits); /* div bb */ 201279d80af2SWarner Losh iop->sd = (sbintime_t)isqrt64((uint64_t)iop->emvar) << 12; 2013ba6c22ceSWarner Losh } 2014ba6c22ceSWarner Losh 2015ba6c22ceSWarner Losh static void 2016ba6c22ceSWarner Losh cam_iosched_io_metric_update(struct cam_iosched_softc *isc, 2017ba6c22ceSWarner Losh sbintime_t sim_latency, int cmd, size_t size) 2018ba6c22ceSWarner Losh { 2019ba6c22ceSWarner Losh /* xxx Do we need to scale based on the size of the I/O ? */ 2020ba6c22ceSWarner Losh switch (cmd) { 2021ba6c22ceSWarner Losh case BIO_READ: 2022ba6c22ceSWarner Losh cam_iosched_update(&isc->read_stats, sim_latency); 2023ba6c22ceSWarner Losh break; 2024ba6c22ceSWarner Losh case BIO_WRITE: 2025ba6c22ceSWarner Losh cam_iosched_update(&isc->write_stats, sim_latency); 2026ba6c22ceSWarner Losh break; 2027ba6c22ceSWarner Losh case BIO_DELETE: 2028ba6c22ceSWarner Losh cam_iosched_update(&isc->trim_stats, sim_latency); 2029ba6c22ceSWarner Losh break; 2030ba6c22ceSWarner Losh default: 2031ba6c22ceSWarner Losh break; 2032ba6c22ceSWarner Losh } 2033ba6c22ceSWarner Losh } 2034ba6c22ceSWarner Losh 2035ba6c22ceSWarner Losh #ifdef DDB 2036ba6c22ceSWarner Losh static int biolen(struct bio_queue_head *bq) 2037ba6c22ceSWarner Losh { 2038ba6c22ceSWarner Losh int i = 0; 2039ba6c22ceSWarner Losh struct bio *bp; 2040ba6c22ceSWarner Losh 2041ba6c22ceSWarner Losh TAILQ_FOREACH(bp, &bq->queue, bio_queue) { 2042ba6c22ceSWarner Losh i++; 2043ba6c22ceSWarner Losh } 2044ba6c22ceSWarner Losh return i; 2045ba6c22ceSWarner Losh } 2046ba6c22ceSWarner Losh 2047ba6c22ceSWarner Losh /* 2048ba6c22ceSWarner Losh * Show the internal state of the I/O scheduler. 2049ba6c22ceSWarner Losh */ 2050ba6c22ceSWarner Losh DB_SHOW_COMMAND(iosched, cam_iosched_db_show) 2051ba6c22ceSWarner Losh { 2052ba6c22ceSWarner Losh struct cam_iosched_softc *isc; 2053ba6c22ceSWarner Losh 2054ba6c22ceSWarner Losh if (!have_addr) { 2055ba6c22ceSWarner Losh db_printf("Need addr\n"); 2056ba6c22ceSWarner Losh return; 2057ba6c22ceSWarner Losh } 2058ba6c22ceSWarner Losh isc = (struct cam_iosched_softc *)addr; 2059ba6c22ceSWarner Losh db_printf("pending_reads: %d\n", isc->read_stats.pending); 2060ba6c22ceSWarner Losh db_printf("min_reads: %d\n", isc->read_stats.min); 2061ba6c22ceSWarner Losh db_printf("max_reads: %d\n", isc->read_stats.max); 2062ba6c22ceSWarner Losh db_printf("reads: %d\n", isc->read_stats.total); 2063ba6c22ceSWarner Losh db_printf("in_reads: %d\n", isc->read_stats.in); 2064ba6c22ceSWarner Losh db_printf("out_reads: %d\n", isc->read_stats.out); 2065ba6c22ceSWarner Losh db_printf("queued_reads: %d\n", isc->read_stats.queued); 20663aba1d47SWarner Losh db_printf("Read Q len %d\n", biolen(&isc->bio_queue)); 2067ba6c22ceSWarner Losh db_printf("pending_writes: %d\n", isc->write_stats.pending); 2068ba6c22ceSWarner Losh db_printf("min_writes: %d\n", isc->write_stats.min); 2069ba6c22ceSWarner Losh db_printf("max_writes: %d\n", isc->write_stats.max); 2070ba6c22ceSWarner Losh db_printf("writes: %d\n", isc->write_stats.total); 2071ba6c22ceSWarner Losh db_printf("in_writes: %d\n", isc->write_stats.in); 2072ba6c22ceSWarner Losh db_printf("out_writes: %d\n", isc->write_stats.out); 2073ba6c22ceSWarner Losh db_printf("queued_writes: %d\n", isc->write_stats.queued); 20743aba1d47SWarner Losh db_printf("Write Q len %d\n", biolen(&isc->write_queue)); 2075ba6c22ceSWarner Losh db_printf("pending_trims: %d\n", isc->trim_stats.pending); 2076ba6c22ceSWarner Losh db_printf("min_trims: %d\n", isc->trim_stats.min); 2077ba6c22ceSWarner Losh db_printf("max_trims: %d\n", isc->trim_stats.max); 2078ba6c22ceSWarner Losh db_printf("trims: %d\n", isc->trim_stats.total); 2079ba6c22ceSWarner Losh db_printf("in_trims: %d\n", isc->trim_stats.in); 2080ba6c22ceSWarner Losh db_printf("out_trims: %d\n", isc->trim_stats.out); 2081ba6c22ceSWarner Losh db_printf("queued_trims: %d\n", isc->trim_stats.queued); 20823aba1d47SWarner Losh db_printf("Trim Q len %d\n", biolen(&isc->trim_queue)); 2083ba6c22ceSWarner Losh db_printf("read_bias: %d\n", isc->read_bias); 2084ba6c22ceSWarner Losh db_printf("current_read_bias: %d\n", isc->current_read_bias); 2085ece56614SWarner Losh db_printf("Trim active? %s\n", 2086ece56614SWarner Losh (isc->flags & CAM_IOSCHED_FLAG_TRIM_ACTIVE) ? "yes" : "no"); 2087ba6c22ceSWarner Losh } 2088ba6c22ceSWarner Losh #endif 2089ba6c22ceSWarner Losh #endif 2090