17c478bd9Sstevel@tonic-gate /* 27c478bd9Sstevel@tonic-gate * CDDL HEADER START 37c478bd9Sstevel@tonic-gate * 47c478bd9Sstevel@tonic-gate * The contents of this file are subject to the terms of the 5e824d57fSjohnlev * Common Development and Distribution License (the "License"). 6e824d57fSjohnlev * You may not use this file except in compliance with the License. 77c478bd9Sstevel@tonic-gate * 87c478bd9Sstevel@tonic-gate * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 97c478bd9Sstevel@tonic-gate * or http://www.opensolaris.org/os/licensing. 107c478bd9Sstevel@tonic-gate * See the License for the specific language governing permissions 117c478bd9Sstevel@tonic-gate * and limitations under the License. 127c478bd9Sstevel@tonic-gate * 137c478bd9Sstevel@tonic-gate * When distributing Covered Code, include this CDDL HEADER in each 147c478bd9Sstevel@tonic-gate * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 157c478bd9Sstevel@tonic-gate * If applicable, add the following below this CDDL HEADER, with the 167c478bd9Sstevel@tonic-gate * fields enclosed by brackets "[]" replaced with your own identifying 177c478bd9Sstevel@tonic-gate * information: Portions Copyright [yyyy] [name of copyright owner] 187c478bd9Sstevel@tonic-gate * 197c478bd9Sstevel@tonic-gate * CDDL HEADER END 207c478bd9Sstevel@tonic-gate */ 217c478bd9Sstevel@tonic-gate /* 22*f3124163SAnders Persson * Copyright 2009 Sun Microsystems, Inc. All rights reserved. 237c478bd9Sstevel@tonic-gate * Use is subject to license terms. 247c478bd9Sstevel@tonic-gate */ 257c478bd9Sstevel@tonic-gate 267c478bd9Sstevel@tonic-gate /* 27da14cebeSEric Cheng * Squeues: General purpose serialization mechanism 28da14cebeSEric Cheng * ------------------------------------------------ 297c478bd9Sstevel@tonic-gate * 30da14cebeSEric Cheng * Background: 31da14cebeSEric Cheng * ----------- 327c478bd9Sstevel@tonic-gate * 33da14cebeSEric Cheng * This is a general purpose high-performance serialization mechanism 34da14cebeSEric Cheng * currently used by TCP/IP. It is implement by means of a per CPU queue, 35da14cebeSEric Cheng * a worker thread and a polling thread with are bound to the CPU 36da14cebeSEric Cheng * associated with the squeue. The squeue is strictly FIFO for both read 37da14cebeSEric Cheng * and write side and only one thread can process it at any given time. 38da14cebeSEric Cheng * The design goal of squeue was to offer a very high degree of 39da14cebeSEric Cheng * parallelization (on a per H/W execution pipeline basis) with at 40da14cebeSEric Cheng * most one queuing. 417c478bd9Sstevel@tonic-gate * 42da14cebeSEric Cheng * The modules needing protection typically calls squeue_enter() or 43da14cebeSEric Cheng * squeue_enter_chain() routine as soon as a thread enter the module 44da14cebeSEric Cheng * from either direction. For each packet, the processing function 45da14cebeSEric Cheng * and argument is stored in the mblk itself. When the packet is ready 46da14cebeSEric Cheng * to be processed, the squeue retrieves the stored function and calls 47da14cebeSEric Cheng * it with the supplied argument and the pointer to the packet itself. 48da14cebeSEric Cheng * The called function can assume that no other thread is processing 49da14cebeSEric Cheng * the squeue when it is executing. 507c478bd9Sstevel@tonic-gate * 51da14cebeSEric Cheng * Squeue/connection binding: 52da14cebeSEric Cheng * -------------------------- 537c478bd9Sstevel@tonic-gate * 54da14cebeSEric Cheng * TCP/IP uses an IP classifier in conjunction with squeue where specific 55da14cebeSEric Cheng * connections are assigned to specific squeue (based on various policies), 56da14cebeSEric Cheng * at the connection creation time. Once assigned, the connection to 57da14cebeSEric Cheng * squeue mapping is never changed and all future packets for that 58da14cebeSEric Cheng * connection are processed on that squeue. The connection ("conn") to 59da14cebeSEric Cheng * squeue mapping is stored in "conn_t" member "conn_sqp". 607c478bd9Sstevel@tonic-gate * 61da14cebeSEric Cheng * Since the processing of the connection cuts across multiple layers 62da14cebeSEric Cheng * but still allows packets for different connnection to be processed on 63da14cebeSEric Cheng * other CPU/squeues, squeues are also termed as "Vertical Perimeter" or 64da14cebeSEric Cheng * "Per Connection Vertical Perimeter". 657c478bd9Sstevel@tonic-gate * 66da14cebeSEric Cheng * Processing Model: 67da14cebeSEric Cheng * ----------------- 687c478bd9Sstevel@tonic-gate * 69da14cebeSEric Cheng * Squeue doesn't necessary processes packets with its own worker thread. 70da14cebeSEric Cheng * The callers can pick if they just want to queue the packet, process 71da14cebeSEric Cheng * their packet if nothing is queued or drain and process. The first two 72da14cebeSEric Cheng * modes are typically employed when the packet was generated while 73da14cebeSEric Cheng * already doing the processing behind the squeue and last mode (drain 74da14cebeSEric Cheng * and process) is typically employed when the thread is entering squeue 75da14cebeSEric Cheng * for the first time. The squeue still imposes a finite time limit 76da14cebeSEric Cheng * for which a external thread can do processing after which it switches 77da14cebeSEric Cheng * processing to its own worker thread. 787c478bd9Sstevel@tonic-gate * 79da14cebeSEric Cheng * Once created, squeues are never deleted. Hence squeue pointers are 80da14cebeSEric Cheng * always valid. This means that functions outside the squeue can still 81da14cebeSEric Cheng * refer safely to conn_sqp and their is no need for ref counts. 827c478bd9Sstevel@tonic-gate * 83da14cebeSEric Cheng * Only a thread executing in the squeue can change the squeue of the 84da14cebeSEric Cheng * connection. It does so by calling a squeue framework function to do this. 85da14cebeSEric Cheng * After changing the squeue, the thread must leave the squeue. It must not 86da14cebeSEric Cheng * continue to execute any code that needs squeue protection. 877c478bd9Sstevel@tonic-gate * 88da14cebeSEric Cheng * The squeue framework, after entering the squeue, checks if the current 89da14cebeSEric Cheng * squeue matches the conn_sqp. If the check fails, the packet is delivered 90da14cebeSEric Cheng * to right squeue. 917c478bd9Sstevel@tonic-gate * 92da14cebeSEric Cheng * Polling Model: 93da14cebeSEric Cheng * -------------- 947c478bd9Sstevel@tonic-gate * 95da14cebeSEric Cheng * Squeues can control the rate of packet arrival into itself from the 96da14cebeSEric Cheng * NIC or specific Rx ring within a NIC. As part of capability negotiation 97da14cebeSEric Cheng * between IP and MAC layer, squeue are created for each TCP soft ring 98da14cebeSEric Cheng * (or TCP Rx ring - to be implemented in future). As part of this 99da14cebeSEric Cheng * negotiation, squeues get a cookie for underlying soft ring or Rx 100da14cebeSEric Cheng * ring, a function to turn off incoming packets and a function to call 101da14cebeSEric Cheng * to poll for packets. This helps schedule the receive side packet 102da14cebeSEric Cheng * processing so that queue backlog doesn't build up and packet processing 103da14cebeSEric Cheng * doesn't keep getting disturbed by high priority interrupts. As part 104da14cebeSEric Cheng * of this mode, as soon as a backlog starts building, squeue turns off 105da14cebeSEric Cheng * the interrupts and switches to poll mode. In poll mode, when poll 106da14cebeSEric Cheng * thread goes down to retrieve packets, it retrieves them in the form of 107da14cebeSEric Cheng * a chain which improves performance even more. As the squeue/softring 108da14cebeSEric Cheng * system gets more packets, it gets more efficient by switching to 109da14cebeSEric Cheng * polling more often and dealing with larger packet chains. 1107c478bd9Sstevel@tonic-gate * 1117c478bd9Sstevel@tonic-gate */ 1127c478bd9Sstevel@tonic-gate 1137c478bd9Sstevel@tonic-gate #include <sys/types.h> 1147c478bd9Sstevel@tonic-gate #include <sys/cmn_err.h> 1157c478bd9Sstevel@tonic-gate #include <sys/debug.h> 1167c478bd9Sstevel@tonic-gate #include <sys/kmem.h> 1177c478bd9Sstevel@tonic-gate #include <sys/cpuvar.h> 1187c478bd9Sstevel@tonic-gate #include <sys/condvar_impl.h> 1197c478bd9Sstevel@tonic-gate #include <sys/systm.h> 1207c478bd9Sstevel@tonic-gate #include <sys/callb.h> 1217c478bd9Sstevel@tonic-gate #include <sys/sdt.h> 1227c478bd9Sstevel@tonic-gate #include <sys/ddi.h> 123da14cebeSEric Cheng #include <sys/sunddi.h> 1247c478bd9Sstevel@tonic-gate 1257c478bd9Sstevel@tonic-gate #include <inet/ipclassifier.h> 126d045b987Smasputra #include <inet/udp_impl.h> 1277c478bd9Sstevel@tonic-gate 1287c478bd9Sstevel@tonic-gate #include <sys/squeue_impl.h> 1297c478bd9Sstevel@tonic-gate 1307c478bd9Sstevel@tonic-gate static void squeue_fire(void *); 131d19d6468Sbw static void squeue_drain(squeue_t *, uint_t, hrtime_t); 1327c478bd9Sstevel@tonic-gate static void squeue_worker(squeue_t *sqp); 133da14cebeSEric Cheng static void squeue_polling_thread(squeue_t *sqp); 1347c478bd9Sstevel@tonic-gate 1357c478bd9Sstevel@tonic-gate kmem_cache_t *squeue_cache; 1367c478bd9Sstevel@tonic-gate 137d19d6468Sbw #define SQUEUE_MSEC_TO_NSEC 1000000 138d19d6468Sbw 139da14cebeSEric Cheng int squeue_drain_ms = 20; 140da14cebeSEric Cheng int squeue_workerwait_ms = 0; 1417c478bd9Sstevel@tonic-gate 142d19d6468Sbw /* The values above converted to ticks or nano seconds */ 143da14cebeSEric Cheng static int squeue_drain_ns = 0; 1447c478bd9Sstevel@tonic-gate static int squeue_workerwait_tick = 0; 1457c478bd9Sstevel@tonic-gate 146da14cebeSEric Cheng #define MAX_BYTES_TO_PICKUP 150000 1477c478bd9Sstevel@tonic-gate 1487c478bd9Sstevel@tonic-gate #define ENQUEUE_CHAIN(sqp, mp, tail, cnt) { \ 1497c478bd9Sstevel@tonic-gate /* \ 1507c478bd9Sstevel@tonic-gate * Enqueue our mblk chain. \ 1517c478bd9Sstevel@tonic-gate */ \ 1527c478bd9Sstevel@tonic-gate ASSERT(MUTEX_HELD(&(sqp)->sq_lock)); \ 1537c478bd9Sstevel@tonic-gate \ 1547c478bd9Sstevel@tonic-gate if ((sqp)->sq_last != NULL) \ 1557c478bd9Sstevel@tonic-gate (sqp)->sq_last->b_next = (mp); \ 1567c478bd9Sstevel@tonic-gate else \ 1577c478bd9Sstevel@tonic-gate (sqp)->sq_first = (mp); \ 1587c478bd9Sstevel@tonic-gate (sqp)->sq_last = (tail); \ 1597c478bd9Sstevel@tonic-gate (sqp)->sq_count += (cnt); \ 1607c478bd9Sstevel@tonic-gate ASSERT((sqp)->sq_count > 0); \ 1617c478bd9Sstevel@tonic-gate DTRACE_PROBE4(squeue__enqueuechain, squeue_t *, sqp, \ 1627c478bd9Sstevel@tonic-gate mblk_t *, mp, mblk_t *, tail, int, cnt); \ 1637c478bd9Sstevel@tonic-gate \ 1647c478bd9Sstevel@tonic-gate } 1657c478bd9Sstevel@tonic-gate 166da14cebeSEric Cheng #define SQS_POLLING_ON(sqp, sq_poll_capable, rx_ring) { \ 1677c478bd9Sstevel@tonic-gate ASSERT(MUTEX_HELD(&(sqp)->sq_lock)); \ 168da14cebeSEric Cheng if (sq_poll_capable) { \ 169da14cebeSEric Cheng ASSERT(rx_ring != NULL); \ 170da14cebeSEric Cheng ASSERT(sqp->sq_state & SQS_POLL_CAPAB); \ 171da14cebeSEric Cheng if (!(sqp->sq_state & SQS_POLLING)) { \ 172da14cebeSEric Cheng sqp->sq_state |= SQS_POLLING; \ 173da14cebeSEric Cheng rx_ring->rr_intr_disable(rx_ring->rr_intr_handle); \ 174da14cebeSEric Cheng } \ 175da14cebeSEric Cheng } \ 1767c478bd9Sstevel@tonic-gate } 1777c478bd9Sstevel@tonic-gate 178da14cebeSEric Cheng #define SQS_POLLING_OFF(sqp, sq_poll_capable, rx_ring) { \ 1797c478bd9Sstevel@tonic-gate ASSERT(MUTEX_HELD(&(sqp)->sq_lock)); \ 180da14cebeSEric Cheng if (sq_poll_capable) { \ 181da14cebeSEric Cheng ASSERT(rx_ring != NULL); \ 182da14cebeSEric Cheng ASSERT(sqp->sq_state & SQS_POLL_CAPAB); \ 183da14cebeSEric Cheng if (sqp->sq_state & SQS_POLLING) { \ 184da14cebeSEric Cheng sqp->sq_state &= ~SQS_POLLING; \ 185da14cebeSEric Cheng rx_ring->rr_intr_enable(rx_ring->rr_intr_handle); \ 186da14cebeSEric Cheng } \ 187da14cebeSEric Cheng } \ 1887c478bd9Sstevel@tonic-gate } 1897c478bd9Sstevel@tonic-gate 190da14cebeSEric Cheng #define SQS_POLL_RING(sqp, sq_poll_capable) { \ 191da14cebeSEric Cheng ASSERT(MUTEX_HELD(&(sqp)->sq_lock)); \ 192da14cebeSEric Cheng if (sq_poll_capable) { \ 193da14cebeSEric Cheng ASSERT(sqp->sq_state & SQS_POLL_CAPAB); \ 194da14cebeSEric Cheng if (!(sqp->sq_state & SQS_GET_PKTS)) { \ 195da14cebeSEric Cheng sqp->sq_state |= SQS_GET_PKTS; \ 196da14cebeSEric Cheng cv_signal(&sqp->sq_poll_cv); \ 197da14cebeSEric Cheng } \ 198da14cebeSEric Cheng } \ 199da14cebeSEric Cheng } 200da14cebeSEric Cheng 201da14cebeSEric Cheng #ifdef DEBUG 202da14cebeSEric Cheng #define SQUEUE_DBG_SET(sqp, mp, proc, connp, tag) { \ 203da14cebeSEric Cheng (sqp)->sq_curmp = (mp); \ 204da14cebeSEric Cheng (sqp)->sq_curproc = (proc); \ 205da14cebeSEric Cheng (sqp)->sq_connp = (connp); \ 206da14cebeSEric Cheng (mp)->b_tag = (sqp)->sq_tag = (tag); \ 207da14cebeSEric Cheng } 208da14cebeSEric Cheng 209da14cebeSEric Cheng #define SQUEUE_DBG_CLEAR(sqp) { \ 210da14cebeSEric Cheng (sqp)->sq_curmp = NULL; \ 211da14cebeSEric Cheng (sqp)->sq_curproc = NULL; \ 212da14cebeSEric Cheng (sqp)->sq_connp = NULL; \ 213da14cebeSEric Cheng } 214da14cebeSEric Cheng #else 215da14cebeSEric Cheng #define SQUEUE_DBG_SET(sqp, mp, proc, connp, tag) 216da14cebeSEric Cheng #define SQUEUE_DBG_CLEAR(sqp) 217da14cebeSEric Cheng #endif 218da14cebeSEric Cheng 2197c478bd9Sstevel@tonic-gate void 2207c478bd9Sstevel@tonic-gate squeue_init(void) 2217c478bd9Sstevel@tonic-gate { 2227c478bd9Sstevel@tonic-gate squeue_cache = kmem_cache_create("squeue_cache", 2237c478bd9Sstevel@tonic-gate sizeof (squeue_t), 64, NULL, NULL, NULL, NULL, NULL, 0); 2247c478bd9Sstevel@tonic-gate 225da14cebeSEric Cheng squeue_drain_ns = squeue_drain_ms * SQUEUE_MSEC_TO_NSEC; 2267c478bd9Sstevel@tonic-gate squeue_workerwait_tick = MSEC_TO_TICK_ROUNDUP(squeue_workerwait_ms); 2277c478bd9Sstevel@tonic-gate } 2287c478bd9Sstevel@tonic-gate 2297c478bd9Sstevel@tonic-gate /* ARGSUSED */ 2307c478bd9Sstevel@tonic-gate squeue_t * 231da14cebeSEric Cheng squeue_create(clock_t wait, pri_t pri) 2327c478bd9Sstevel@tonic-gate { 2337c478bd9Sstevel@tonic-gate squeue_t *sqp = kmem_cache_alloc(squeue_cache, KM_SLEEP); 2347c478bd9Sstevel@tonic-gate 2357c478bd9Sstevel@tonic-gate bzero(sqp, sizeof (squeue_t)); 236da14cebeSEric Cheng sqp->sq_bind = PBIND_NONE; 237da14cebeSEric Cheng sqp->sq_priority = pri; 2387c478bd9Sstevel@tonic-gate sqp->sq_wait = MSEC_TO_TICK(wait); 2397c478bd9Sstevel@tonic-gate sqp->sq_worker = thread_create(NULL, 0, squeue_worker, 2407c478bd9Sstevel@tonic-gate sqp, 0, &p0, TS_RUN, pri); 2417c478bd9Sstevel@tonic-gate 242da14cebeSEric Cheng sqp->sq_poll_thr = thread_create(NULL, 0, squeue_polling_thread, 243da14cebeSEric Cheng sqp, 0, &p0, TS_RUN, pri); 244da14cebeSEric Cheng 245da14cebeSEric Cheng sqp->sq_enter = squeue_enter; 246da14cebeSEric Cheng sqp->sq_drain = squeue_drain; 247da14cebeSEric Cheng 2487c478bd9Sstevel@tonic-gate return (sqp); 2497c478bd9Sstevel@tonic-gate } 2507c478bd9Sstevel@tonic-gate 251da14cebeSEric Cheng /* 252da14cebeSEric Cheng * Bind squeue worker thread to the specified CPU, given by CPU id. 253da14cebeSEric Cheng * If the CPU id value is -1, bind the worker thread to the value 254da14cebeSEric Cheng * specified in sq_bind field. If a thread is already bound to a 255da14cebeSEric Cheng * different CPU, unbind it from the old CPU and bind to the new one. 256da14cebeSEric Cheng */ 257da14cebeSEric Cheng 2587c478bd9Sstevel@tonic-gate void 2597c478bd9Sstevel@tonic-gate squeue_bind(squeue_t *sqp, processorid_t bind) 2607c478bd9Sstevel@tonic-gate { 2617c478bd9Sstevel@tonic-gate mutex_enter(&sqp->sq_lock); 262da14cebeSEric Cheng ASSERT(sqp->sq_bind != PBIND_NONE || bind != PBIND_NONE); 263da14cebeSEric Cheng ASSERT(MUTEX_HELD(&cpu_lock)); 264da14cebeSEric Cheng 2657c478bd9Sstevel@tonic-gate if (sqp->sq_state & SQS_BOUND) { 266da14cebeSEric Cheng if (sqp->sq_bind == bind) { 2677c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 2687c478bd9Sstevel@tonic-gate return; 2697c478bd9Sstevel@tonic-gate } 270da14cebeSEric Cheng thread_affinity_clear(sqp->sq_worker); 271da14cebeSEric Cheng } else { 2727c478bd9Sstevel@tonic-gate sqp->sq_state |= SQS_BOUND; 273da14cebeSEric Cheng } 274da14cebeSEric Cheng 275da14cebeSEric Cheng if (bind != PBIND_NONE) 276da14cebeSEric Cheng sqp->sq_bind = bind; 2777c478bd9Sstevel@tonic-gate 2787c478bd9Sstevel@tonic-gate thread_affinity_set(sqp->sq_worker, sqp->sq_bind); 279da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 2807c478bd9Sstevel@tonic-gate } 2817c478bd9Sstevel@tonic-gate 2827c478bd9Sstevel@tonic-gate void 2837c478bd9Sstevel@tonic-gate squeue_unbind(squeue_t *sqp) 2847c478bd9Sstevel@tonic-gate { 2857c478bd9Sstevel@tonic-gate mutex_enter(&sqp->sq_lock); 2867c478bd9Sstevel@tonic-gate if (!(sqp->sq_state & SQS_BOUND)) { 2877c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 2887c478bd9Sstevel@tonic-gate return; 2897c478bd9Sstevel@tonic-gate } 2907c478bd9Sstevel@tonic-gate 2917c478bd9Sstevel@tonic-gate sqp->sq_state &= ~SQS_BOUND; 2927c478bd9Sstevel@tonic-gate thread_affinity_clear(sqp->sq_worker); 293da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 294da14cebeSEric Cheng } 295da14cebeSEric Cheng 296da14cebeSEric Cheng void 297da14cebeSEric Cheng squeue_worker_wakeup(squeue_t *sqp) 298da14cebeSEric Cheng { 299da14cebeSEric Cheng timeout_id_t tid = (sqp)->sq_tid; 300da14cebeSEric Cheng 301da14cebeSEric Cheng ASSERT(MUTEX_HELD(&(sqp)->sq_lock)); 302da14cebeSEric Cheng 303da14cebeSEric Cheng if (sqp->sq_wait == 0) { 304da14cebeSEric Cheng ASSERT(tid == 0); 305da14cebeSEric Cheng ASSERT(!(sqp->sq_state & SQS_TMO_PROG)); 306da14cebeSEric Cheng sqp->sq_awaken = lbolt; 307da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 308da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 309da14cebeSEric Cheng return; 310da14cebeSEric Cheng } 311da14cebeSEric Cheng 312da14cebeSEric Cheng /* 313da14cebeSEric Cheng * Queue isn't being processed, so take 314da14cebeSEric Cheng * any post enqueue actions needed before leaving. 315da14cebeSEric Cheng */ 316da14cebeSEric Cheng if (tid != 0) { 317da14cebeSEric Cheng /* 318da14cebeSEric Cheng * Waiting for an enter() to process mblk(s). 319da14cebeSEric Cheng */ 320da14cebeSEric Cheng clock_t waited = lbolt - sqp->sq_awaken; 321da14cebeSEric Cheng 322da14cebeSEric Cheng if (TICK_TO_MSEC(waited) >= sqp->sq_wait) { 323da14cebeSEric Cheng /* 324da14cebeSEric Cheng * Times up and have a worker thread 325da14cebeSEric Cheng * waiting for work, so schedule it. 326da14cebeSEric Cheng */ 327da14cebeSEric Cheng sqp->sq_tid = 0; 328da14cebeSEric Cheng sqp->sq_awaken = lbolt; 329da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 330da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 331da14cebeSEric Cheng (void) untimeout(tid); 332da14cebeSEric Cheng return; 333da14cebeSEric Cheng } 334da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 335da14cebeSEric Cheng return; 336da14cebeSEric Cheng } else if (sqp->sq_state & SQS_TMO_PROG) { 337da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 338da14cebeSEric Cheng return; 339da14cebeSEric Cheng } else { 340da14cebeSEric Cheng clock_t wait = sqp->sq_wait; 341da14cebeSEric Cheng /* 342da14cebeSEric Cheng * Wait up to sqp->sq_wait ms for an 343da14cebeSEric Cheng * enter() to process this queue. We 344da14cebeSEric Cheng * don't want to contend on timeout locks 345da14cebeSEric Cheng * with sq_lock held for performance reasons, 346da14cebeSEric Cheng * so drop the sq_lock before calling timeout 347da14cebeSEric Cheng * but we need to check if timeout is required 348da14cebeSEric Cheng * after re acquiring the sq_lock. Once 349da14cebeSEric Cheng * the sq_lock is dropped, someone else could 350da14cebeSEric Cheng * have processed the packet or the timeout could 351da14cebeSEric Cheng * have already fired. 352da14cebeSEric Cheng */ 353da14cebeSEric Cheng sqp->sq_state |= SQS_TMO_PROG; 354da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 355da14cebeSEric Cheng tid = timeout(squeue_fire, sqp, wait); 356da14cebeSEric Cheng mutex_enter(&sqp->sq_lock); 357da14cebeSEric Cheng /* Check again if we still need the timeout */ 358da14cebeSEric Cheng if (((sqp->sq_state & (SQS_PROC|SQS_TMO_PROG)) == 359da14cebeSEric Cheng SQS_TMO_PROG) && (sqp->sq_tid == 0) && 360da14cebeSEric Cheng (sqp->sq_first != NULL)) { 361da14cebeSEric Cheng sqp->sq_state &= ~SQS_TMO_PROG; 362da14cebeSEric Cheng sqp->sq_tid = tid; 363da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 364da14cebeSEric Cheng return; 365da14cebeSEric Cheng } else { 366da14cebeSEric Cheng if (sqp->sq_state & SQS_TMO_PROG) { 367da14cebeSEric Cheng sqp->sq_state &= ~SQS_TMO_PROG; 368da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 369da14cebeSEric Cheng (void) untimeout(tid); 370da14cebeSEric Cheng } else { 371da14cebeSEric Cheng /* 372da14cebeSEric Cheng * The timer fired before we could 373da14cebeSEric Cheng * reacquire the sq_lock. squeue_fire 374da14cebeSEric Cheng * removes the SQS_TMO_PROG flag 375da14cebeSEric Cheng * and we don't need to do anything 376da14cebeSEric Cheng * else. 377da14cebeSEric Cheng */ 378da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 379da14cebeSEric Cheng } 380da14cebeSEric Cheng } 381da14cebeSEric Cheng } 382da14cebeSEric Cheng 383da14cebeSEric Cheng ASSERT(MUTEX_NOT_HELD(&sqp->sq_lock)); 3847c478bd9Sstevel@tonic-gate } 3857c478bd9Sstevel@tonic-gate 3867c478bd9Sstevel@tonic-gate /* 3877c478bd9Sstevel@tonic-gate * squeue_enter() - enter squeue sqp with mblk mp (which can be 3887c478bd9Sstevel@tonic-gate * a chain), while tail points to the end and cnt in number of 3897c478bd9Sstevel@tonic-gate * mblks in the chain. 3907c478bd9Sstevel@tonic-gate * 3917c478bd9Sstevel@tonic-gate * For a chain of single packet (i.e. mp == tail), go through the 3927c478bd9Sstevel@tonic-gate * fast path if no one is processing the squeue and nothing is queued. 3937c478bd9Sstevel@tonic-gate * 3947c478bd9Sstevel@tonic-gate * The proc and arg for each mblk is already stored in the mblk in 3957c478bd9Sstevel@tonic-gate * appropriate places. 396da14cebeSEric Cheng * 397da14cebeSEric Cheng * The process_flag specifies if we are allowed to process the mblk 398da14cebeSEric Cheng * and drain in the entering thread context. If process_flag is 399da14cebeSEric Cheng * SQ_FILL, then we just queue the mblk and return (after signaling 400da14cebeSEric Cheng * the worker thread if no one else is processing the squeue). 4017c478bd9Sstevel@tonic-gate */ 402da14cebeSEric Cheng /* ARGSUSED */ 4037c478bd9Sstevel@tonic-gate void 404da14cebeSEric Cheng squeue_enter(squeue_t *sqp, mblk_t *mp, mblk_t *tail, uint32_t cnt, 405da14cebeSEric Cheng int process_flag, uint8_t tag) 4067c478bd9Sstevel@tonic-gate { 407da14cebeSEric Cheng conn_t *connp; 4087c478bd9Sstevel@tonic-gate sqproc_t proc; 409d19d6468Sbw hrtime_t now; 4107c478bd9Sstevel@tonic-gate 4117c478bd9Sstevel@tonic-gate ASSERT(sqp != NULL); 4127c478bd9Sstevel@tonic-gate ASSERT(mp != NULL); 4137c478bd9Sstevel@tonic-gate ASSERT(tail != NULL); 4147c478bd9Sstevel@tonic-gate ASSERT(cnt > 0); 4157c478bd9Sstevel@tonic-gate ASSERT(MUTEX_NOT_HELD(&sqp->sq_lock)); 4167c478bd9Sstevel@tonic-gate 4177c478bd9Sstevel@tonic-gate mutex_enter(&sqp->sq_lock); 418da14cebeSEric Cheng 419da14cebeSEric Cheng /* 420da14cebeSEric Cheng * Try to process the packet if SQ_FILL flag is not set and 421da14cebeSEric Cheng * we are allowed to process the squeue. The SQ_NODRAIN is 422da14cebeSEric Cheng * ignored if the packet chain consists of more than 1 packet. 423da14cebeSEric Cheng */ 424da14cebeSEric Cheng if (!(sqp->sq_state & SQS_PROC) && ((process_flag == SQ_PROCESS) || 425da14cebeSEric Cheng (process_flag == SQ_NODRAIN && sqp->sq_first == NULL))) { 4267c478bd9Sstevel@tonic-gate /* 4277c478bd9Sstevel@tonic-gate * See if anything is already queued. If we are the 4287c478bd9Sstevel@tonic-gate * first packet, do inline processing else queue the 4297c478bd9Sstevel@tonic-gate * packet and do the drain. 4307c478bd9Sstevel@tonic-gate */ 4317c478bd9Sstevel@tonic-gate if (sqp->sq_first == NULL && cnt == 1) { 4327c478bd9Sstevel@tonic-gate /* 4337c478bd9Sstevel@tonic-gate * Fast-path, ok to process and nothing queued. 4347c478bd9Sstevel@tonic-gate */ 4357c478bd9Sstevel@tonic-gate sqp->sq_state |= (SQS_PROC|SQS_FAST); 436da14cebeSEric Cheng sqp->sq_run = curthread; 4377c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 4387c478bd9Sstevel@tonic-gate 4397c478bd9Sstevel@tonic-gate /* 4407c478bd9Sstevel@tonic-gate * We are the chain of 1 packet so 4417c478bd9Sstevel@tonic-gate * go through this fast path. 4427c478bd9Sstevel@tonic-gate */ 443da14cebeSEric Cheng ASSERT(mp->b_prev != NULL); 444da14cebeSEric Cheng ASSERT(mp->b_queue != NULL); 445da14cebeSEric Cheng connp = (conn_t *)mp->b_prev; 446da14cebeSEric Cheng mp->b_prev = NULL; 447da14cebeSEric Cheng proc = (sqproc_t)mp->b_queue; 448da14cebeSEric Cheng mp->b_queue = NULL; 449da14cebeSEric Cheng ASSERT(proc != NULL && connp != NULL); 450da14cebeSEric Cheng ASSERT(mp->b_next == NULL); 451da14cebeSEric Cheng 452da14cebeSEric Cheng /* 453da14cebeSEric Cheng * Handle squeue switching. More details in the 454da14cebeSEric Cheng * block comment at the top of the file 455da14cebeSEric Cheng */ 456da14cebeSEric Cheng if (connp->conn_sqp == sqp) { 457da14cebeSEric Cheng SQUEUE_DBG_SET(sqp, mp, proc, connp, 458da14cebeSEric Cheng tag); 459da14cebeSEric Cheng connp->conn_on_sqp = B_TRUE; 460da14cebeSEric Cheng DTRACE_PROBE3(squeue__proc__start, squeue_t *, 461da14cebeSEric Cheng sqp, mblk_t *, mp, conn_t *, connp); 462da14cebeSEric Cheng (*proc)(connp, mp, sqp); 463da14cebeSEric Cheng DTRACE_PROBE2(squeue__proc__end, squeue_t *, 464da14cebeSEric Cheng sqp, conn_t *, connp); 465da14cebeSEric Cheng connp->conn_on_sqp = B_FALSE; 466da14cebeSEric Cheng SQUEUE_DBG_CLEAR(sqp); 467da14cebeSEric Cheng CONN_DEC_REF(connp); 468da14cebeSEric Cheng } else { 469da14cebeSEric Cheng SQUEUE_ENTER_ONE(connp->conn_sqp, mp, proc, 470da14cebeSEric Cheng connp, SQ_FILL, SQTAG_SQUEUE_CHANGE); 471da14cebeSEric Cheng } 472da14cebeSEric Cheng ASSERT(MUTEX_NOT_HELD(&sqp->sq_lock)); 473da14cebeSEric Cheng mutex_enter(&sqp->sq_lock); 474da14cebeSEric Cheng sqp->sq_state &= ~(SQS_PROC|SQS_FAST); 475da14cebeSEric Cheng sqp->sq_run = NULL; 476da14cebeSEric Cheng if (sqp->sq_first == NULL || 477da14cebeSEric Cheng process_flag == SQ_NODRAIN) { 478da14cebeSEric Cheng if (sqp->sq_first != NULL) { 479da14cebeSEric Cheng squeue_worker_wakeup(sqp); 480da14cebeSEric Cheng return; 481da14cebeSEric Cheng } 482da14cebeSEric Cheng /* 483da14cebeSEric Cheng * We processed inline our packet and nothing 484da14cebeSEric Cheng * new has arrived. We are done. In case any 485da14cebeSEric Cheng * control actions are pending, wake up the 486da14cebeSEric Cheng * worker. 487da14cebeSEric Cheng */ 488da14cebeSEric Cheng if (sqp->sq_state & SQS_WORKER_THR_CONTROL) 489da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 490da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 491da14cebeSEric Cheng return; 492da14cebeSEric Cheng } 493da14cebeSEric Cheng } else { 494da14cebeSEric Cheng ENQUEUE_CHAIN(sqp, mp, tail, cnt); 495da14cebeSEric Cheng #ifdef DEBUG 496da14cebeSEric Cheng mp->b_tag = tag; 497da14cebeSEric Cheng #endif 498da14cebeSEric Cheng } 499da14cebeSEric Cheng /* 500da14cebeSEric Cheng * We are here because either we couldn't do inline 501da14cebeSEric Cheng * processing (because something was already queued), 502da14cebeSEric Cheng * or we had a chain of more than one packet, 503da14cebeSEric Cheng * or something else arrived after we were done with 504da14cebeSEric Cheng * inline processing. 505da14cebeSEric Cheng */ 506da14cebeSEric Cheng ASSERT(MUTEX_HELD(&sqp->sq_lock)); 507da14cebeSEric Cheng ASSERT(sqp->sq_first != NULL); 508da14cebeSEric Cheng now = gethrtime(); 509da14cebeSEric Cheng sqp->sq_drain(sqp, SQS_ENTER, now + squeue_drain_ns); 510da14cebeSEric Cheng 511da14cebeSEric Cheng /* 512da14cebeSEric Cheng * If we didn't do a complete drain, the worker 513da14cebeSEric Cheng * thread was already signalled by squeue_drain. 514da14cebeSEric Cheng * In case any control actions are pending, wake 515da14cebeSEric Cheng * up the worker. 516da14cebeSEric Cheng */ 517da14cebeSEric Cheng sqp->sq_run = NULL; 518da14cebeSEric Cheng if (sqp->sq_state & SQS_WORKER_THR_CONTROL) 519da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 520da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 521da14cebeSEric Cheng return; 522da14cebeSEric Cheng } else { 523da14cebeSEric Cheng /* 524da14cebeSEric Cheng * We let a thread processing a squeue reenter only 525da14cebeSEric Cheng * once. This helps the case of incoming connection 526da14cebeSEric Cheng * where a SYN-ACK-ACK that triggers the conn_ind 527da14cebeSEric Cheng * doesn't have to queue the packet if listener and 528da14cebeSEric Cheng * eager are on the same squeue. Also helps the 529da14cebeSEric Cheng * loopback connection where the two ends are bound 530da14cebeSEric Cheng * to the same squeue (which is typical on single 531da14cebeSEric Cheng * CPU machines). 532da14cebeSEric Cheng * 533da14cebeSEric Cheng * We let the thread reenter only once for the fear 534da14cebeSEric Cheng * of stack getting blown with multiple traversal. 535da14cebeSEric Cheng */ 536da14cebeSEric Cheng connp = (conn_t *)mp->b_prev; 537da14cebeSEric Cheng if (!(sqp->sq_state & SQS_REENTER) && 538da14cebeSEric Cheng (process_flag != SQ_FILL) && (sqp->sq_first == NULL) && 539da14cebeSEric Cheng (sqp->sq_run == curthread) && (cnt == 1) && 540da14cebeSEric Cheng (connp->conn_on_sqp == B_FALSE)) { 541da14cebeSEric Cheng sqp->sq_state |= SQS_REENTER; 542da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 543da14cebeSEric Cheng 544da14cebeSEric Cheng ASSERT(mp->b_prev != NULL); 545da14cebeSEric Cheng ASSERT(mp->b_queue != NULL); 546da14cebeSEric Cheng 5477c478bd9Sstevel@tonic-gate mp->b_prev = NULL; 5487c478bd9Sstevel@tonic-gate proc = (sqproc_t)mp->b_queue; 5497c478bd9Sstevel@tonic-gate mp->b_queue = NULL; 5507c478bd9Sstevel@tonic-gate 551da14cebeSEric Cheng /* 552da14cebeSEric Cheng * Handle squeue switching. More details in the 553da14cebeSEric Cheng * block comment at the top of the file 554da14cebeSEric Cheng */ 555da14cebeSEric Cheng if (connp->conn_sqp == sqp) { 556da14cebeSEric Cheng connp->conn_on_sqp = B_TRUE; 5577c478bd9Sstevel@tonic-gate DTRACE_PROBE3(squeue__proc__start, squeue_t *, 558da14cebeSEric Cheng sqp, mblk_t *, mp, conn_t *, connp); 559da14cebeSEric Cheng (*proc)(connp, mp, sqp); 5607c478bd9Sstevel@tonic-gate DTRACE_PROBE2(squeue__proc__end, squeue_t *, 561da14cebeSEric Cheng sqp, conn_t *, connp); 562da14cebeSEric Cheng connp->conn_on_sqp = B_FALSE; 563da14cebeSEric Cheng CONN_DEC_REF(connp); 564da14cebeSEric Cheng } else { 565da14cebeSEric Cheng SQUEUE_ENTER_ONE(connp->conn_sqp, mp, proc, 566da14cebeSEric Cheng connp, SQ_FILL, SQTAG_SQUEUE_CHANGE); 5677c478bd9Sstevel@tonic-gate } 5687c478bd9Sstevel@tonic-gate 5697c478bd9Sstevel@tonic-gate mutex_enter(&sqp->sq_lock); 570da14cebeSEric Cheng sqp->sq_state &= ~SQS_REENTER; 5717c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 5727c478bd9Sstevel@tonic-gate return; 5737c478bd9Sstevel@tonic-gate } 574da14cebeSEric Cheng 575da14cebeSEric Cheng /* 576da14cebeSEric Cheng * Queue is already being processed or there is already 577da14cebeSEric Cheng * one or more paquets on the queue. Enqueue the 578da14cebeSEric Cheng * packet and wakeup the squeue worker thread if the 579da14cebeSEric Cheng * squeue is not being processed. 580da14cebeSEric Cheng */ 581da14cebeSEric Cheng #ifdef DEBUG 5827c478bd9Sstevel@tonic-gate mp->b_tag = tag; 5837c478bd9Sstevel@tonic-gate #endif 5847c478bd9Sstevel@tonic-gate 5857c478bd9Sstevel@tonic-gate ENQUEUE_CHAIN(sqp, mp, tail, cnt); 5867c478bd9Sstevel@tonic-gate if (!(sqp->sq_state & SQS_PROC)) { 587da14cebeSEric Cheng squeue_worker_wakeup(sqp); 5887c478bd9Sstevel@tonic-gate return; 5897c478bd9Sstevel@tonic-gate } 5907c478bd9Sstevel@tonic-gate /* 591da14cebeSEric Cheng * In case any control actions are pending, wake 592da14cebeSEric Cheng * up the worker. 5937c478bd9Sstevel@tonic-gate */ 594da14cebeSEric Cheng if (sqp->sq_state & SQS_WORKER_THR_CONTROL) 595da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 5967c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 5977c478bd9Sstevel@tonic-gate return; 5987c478bd9Sstevel@tonic-gate } 5997c478bd9Sstevel@tonic-gate } 6007c478bd9Sstevel@tonic-gate 6017c478bd9Sstevel@tonic-gate /* 6027c478bd9Sstevel@tonic-gate * PRIVATE FUNCTIONS 6037c478bd9Sstevel@tonic-gate */ 6047c478bd9Sstevel@tonic-gate 6057c478bd9Sstevel@tonic-gate static void 6067c478bd9Sstevel@tonic-gate squeue_fire(void *arg) 6077c478bd9Sstevel@tonic-gate { 6087c478bd9Sstevel@tonic-gate squeue_t *sqp = arg; 6097c478bd9Sstevel@tonic-gate uint_t state; 6107c478bd9Sstevel@tonic-gate 6117c478bd9Sstevel@tonic-gate mutex_enter(&sqp->sq_lock); 6127c478bd9Sstevel@tonic-gate 6137c478bd9Sstevel@tonic-gate state = sqp->sq_state; 6147c478bd9Sstevel@tonic-gate if (sqp->sq_tid == 0 && !(state & SQS_TMO_PROG)) { 6157c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 6167c478bd9Sstevel@tonic-gate return; 6177c478bd9Sstevel@tonic-gate } 6187c478bd9Sstevel@tonic-gate 6197c478bd9Sstevel@tonic-gate sqp->sq_tid = 0; 6207c478bd9Sstevel@tonic-gate /* 6217c478bd9Sstevel@tonic-gate * The timeout fired before we got a chance to set it. 6227c478bd9Sstevel@tonic-gate * Process it anyway but remove the SQS_TMO_PROG so that 6237c478bd9Sstevel@tonic-gate * the guy trying to set the timeout knows that it has 6247c478bd9Sstevel@tonic-gate * already been processed. 6257c478bd9Sstevel@tonic-gate */ 6267c478bd9Sstevel@tonic-gate if (state & SQS_TMO_PROG) 6277c478bd9Sstevel@tonic-gate sqp->sq_state &= ~SQS_TMO_PROG; 6287c478bd9Sstevel@tonic-gate 6297c478bd9Sstevel@tonic-gate if (!(state & SQS_PROC)) { 6307c478bd9Sstevel@tonic-gate sqp->sq_awaken = lbolt; 631da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 6327c478bd9Sstevel@tonic-gate } 6337c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 6347c478bd9Sstevel@tonic-gate } 6357c478bd9Sstevel@tonic-gate 6367c478bd9Sstevel@tonic-gate static void 637d19d6468Sbw squeue_drain(squeue_t *sqp, uint_t proc_type, hrtime_t expire) 6387c478bd9Sstevel@tonic-gate { 6397c478bd9Sstevel@tonic-gate mblk_t *mp; 6407c478bd9Sstevel@tonic-gate mblk_t *head; 6417c478bd9Sstevel@tonic-gate sqproc_t proc; 6427c478bd9Sstevel@tonic-gate conn_t *connp; 6437c478bd9Sstevel@tonic-gate timeout_id_t tid; 6447c478bd9Sstevel@tonic-gate ill_rx_ring_t *sq_rx_ring = sqp->sq_rx_ring; 645d19d6468Sbw hrtime_t now; 646da14cebeSEric Cheng boolean_t did_wakeup = B_FALSE; 647da14cebeSEric Cheng boolean_t sq_poll_capable; 6487c478bd9Sstevel@tonic-gate 649da14cebeSEric Cheng sq_poll_capable = (sqp->sq_state & SQS_POLL_CAPAB) != 0; 650da14cebeSEric Cheng again: 6517c478bd9Sstevel@tonic-gate ASSERT(mutex_owned(&sqp->sq_lock)); 652da14cebeSEric Cheng ASSERT(!(sqp->sq_state & (SQS_POLL_THR_QUIESCED | 653da14cebeSEric Cheng SQS_POLL_QUIESCE_DONE))); 6547c478bd9Sstevel@tonic-gate 655da14cebeSEric Cheng head = sqp->sq_first; 656da14cebeSEric Cheng sqp->sq_first = NULL; 657da14cebeSEric Cheng sqp->sq_last = NULL; 658da14cebeSEric Cheng sqp->sq_count = 0; 6597c478bd9Sstevel@tonic-gate 6607c478bd9Sstevel@tonic-gate if ((tid = sqp->sq_tid) != 0) 6617c478bd9Sstevel@tonic-gate sqp->sq_tid = 0; 6627c478bd9Sstevel@tonic-gate 6637c478bd9Sstevel@tonic-gate sqp->sq_state |= SQS_PROC | proc_type; 664da14cebeSEric Cheng 6657c478bd9Sstevel@tonic-gate 6667c478bd9Sstevel@tonic-gate /* 6677c478bd9Sstevel@tonic-gate * We have backlog built up. Switch to polling mode if the 668da14cebeSEric Cheng * device underneath allows it. Need to do it so that 669da14cebeSEric Cheng * more packets don't come in and disturb us (by contending 670da14cebeSEric Cheng * for sq_lock or higher priority thread preempting us). 671da14cebeSEric Cheng * 672da14cebeSEric Cheng * The worker thread is allowed to do active polling while we 673da14cebeSEric Cheng * just disable the interrupts for drain by non worker (kernel 674da14cebeSEric Cheng * or userland) threads so they can peacefully process the 675da14cebeSEric Cheng * packets during time allocated to them. 6767c478bd9Sstevel@tonic-gate */ 677da14cebeSEric Cheng SQS_POLLING_ON(sqp, sq_poll_capable, sq_rx_ring); 6787c478bd9Sstevel@tonic-gate mutex_exit(&sqp->sq_lock); 6797c478bd9Sstevel@tonic-gate 6807c478bd9Sstevel@tonic-gate if (tid != 0) 6817c478bd9Sstevel@tonic-gate (void) untimeout(tid); 682da14cebeSEric Cheng 6837c478bd9Sstevel@tonic-gate while ((mp = head) != NULL) { 684da14cebeSEric Cheng 6857c478bd9Sstevel@tonic-gate head = mp->b_next; 6867c478bd9Sstevel@tonic-gate mp->b_next = NULL; 6877c478bd9Sstevel@tonic-gate 6887c478bd9Sstevel@tonic-gate proc = (sqproc_t)mp->b_queue; 6897c478bd9Sstevel@tonic-gate mp->b_queue = NULL; 6907c478bd9Sstevel@tonic-gate connp = (conn_t *)mp->b_prev; 6917c478bd9Sstevel@tonic-gate mp->b_prev = NULL; 6927c478bd9Sstevel@tonic-gate 693da14cebeSEric Cheng /* 694da14cebeSEric Cheng * Handle squeue switching. More details in the 695da14cebeSEric Cheng * block comment at the top of the file 696da14cebeSEric Cheng */ 697da14cebeSEric Cheng if (connp->conn_sqp == sqp) { 698da14cebeSEric Cheng SQUEUE_DBG_SET(sqp, mp, proc, connp, 699da14cebeSEric Cheng mp->b_tag); 7007c478bd9Sstevel@tonic-gate connp->conn_on_sqp = B_TRUE; 7017c478bd9Sstevel@tonic-gate DTRACE_PROBE3(squeue__proc__start, squeue_t *, 7027c478bd9Sstevel@tonic-gate sqp, mblk_t *, mp, conn_t *, connp); 7037c478bd9Sstevel@tonic-gate (*proc)(connp, mp, sqp); 7047c478bd9Sstevel@tonic-gate DTRACE_PROBE2(squeue__proc__end, squeue_t *, 7057c478bd9Sstevel@tonic-gate sqp, conn_t *, connp); 7067c478bd9Sstevel@tonic-gate connp->conn_on_sqp = B_FALSE; 7077c478bd9Sstevel@tonic-gate CONN_DEC_REF(connp); 708da14cebeSEric Cheng } else { 709da14cebeSEric Cheng SQUEUE_ENTER_ONE(connp->conn_sqp, mp, proc, connp, 710da14cebeSEric Cheng SQ_FILL, SQTAG_SQUEUE_CHANGE); 711da14cebeSEric Cheng } 7127c478bd9Sstevel@tonic-gate } 7137c478bd9Sstevel@tonic-gate 714da14cebeSEric Cheng SQUEUE_DBG_CLEAR(sqp); 7157c478bd9Sstevel@tonic-gate 7167c478bd9Sstevel@tonic-gate mutex_enter(&sqp->sq_lock); 7177c478bd9Sstevel@tonic-gate 718da14cebeSEric Cheng /* 719da14cebeSEric Cheng * Check if there is still work to do (either more arrived or timer 720da14cebeSEric Cheng * expired). If we are the worker thread and we are polling capable, 721da14cebeSEric Cheng * continue doing the work since no one else is around to do the 722da14cebeSEric Cheng * work anyway (but signal the poll thread to retrieve some packets 723da14cebeSEric Cheng * in the meanwhile). If we are not the worker thread, just 724da14cebeSEric Cheng * signal the worker thread to take up the work if processing time 725da14cebeSEric Cheng * has expired. 726da14cebeSEric Cheng */ 7277c478bd9Sstevel@tonic-gate if (sqp->sq_first != NULL) { 728da14cebeSEric Cheng /* 729da14cebeSEric Cheng * Still more to process. If time quanta not expired, we 730da14cebeSEric Cheng * should let the drain go on. The worker thread is allowed 731da14cebeSEric Cheng * to drain as long as there is anything left. 732da14cebeSEric Cheng */ 733da14cebeSEric Cheng now = gethrtime(); 734da14cebeSEric Cheng if ((now < expire) || (proc_type == SQS_WORKER)) { 735da14cebeSEric Cheng /* 736da14cebeSEric Cheng * If time not expired or we are worker thread and 737da14cebeSEric Cheng * this squeue is polling capable, continue to do 738da14cebeSEric Cheng * the drain. 739da14cebeSEric Cheng * 740da14cebeSEric Cheng * We turn off interrupts for all userland threads 741da14cebeSEric Cheng * doing drain but we do active polling only for 742da14cebeSEric Cheng * worker thread. 743da14cebeSEric Cheng */ 744da14cebeSEric Cheng if (proc_type == SQS_WORKER) 745da14cebeSEric Cheng SQS_POLL_RING(sqp, sq_poll_capable); 746da14cebeSEric Cheng goto again; 747da14cebeSEric Cheng } else { 748da14cebeSEric Cheng did_wakeup = B_TRUE; 749da14cebeSEric Cheng sqp->sq_awaken = lbolt; 750da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 751da14cebeSEric Cheng } 752da14cebeSEric Cheng } 753da14cebeSEric Cheng 754da14cebeSEric Cheng /* 755da14cebeSEric Cheng * If the poll thread is already running, just return. The 756da14cebeSEric Cheng * poll thread continues to hold the proc and will finish 757da14cebeSEric Cheng * processing. 758da14cebeSEric Cheng */ 759da14cebeSEric Cheng if (sqp->sq_state & SQS_GET_PKTS) { 760da14cebeSEric Cheng ASSERT(!(sqp->sq_state & (SQS_POLL_THR_QUIESCED | 761da14cebeSEric Cheng SQS_POLL_QUIESCE_DONE))); 762da14cebeSEric Cheng sqp->sq_state &= ~proc_type; 763da14cebeSEric Cheng return; 764da14cebeSEric Cheng } 765da14cebeSEric Cheng 766da14cebeSEric Cheng /* 767da14cebeSEric Cheng * 768da14cebeSEric Cheng * If we are the worker thread and no work is left, send the poll 769da14cebeSEric Cheng * thread down once more to see if something arrived. Otherwise, 770da14cebeSEric Cheng * turn the interrupts back on and we are done. 771da14cebeSEric Cheng */ 772da14cebeSEric Cheng if ((proc_type == SQS_WORKER) && 773da14cebeSEric Cheng (sqp->sq_state & SQS_POLL_CAPAB)) { 774da14cebeSEric Cheng /* 775da14cebeSEric Cheng * Do one last check to see if anything arrived 776da14cebeSEric Cheng * in the NIC. We leave the SQS_PROC set to ensure 777da14cebeSEric Cheng * that poll thread keeps the PROC and can decide 778da14cebeSEric Cheng * if it needs to turn polling off or continue 779da14cebeSEric Cheng * processing. 780da14cebeSEric Cheng * 781da14cebeSEric Cheng * If we drop the SQS_PROC here and poll thread comes 782da14cebeSEric Cheng * up empty handed, it can not safely turn polling off 783da14cebeSEric Cheng * since someone else could have acquired the PROC 784da14cebeSEric Cheng * and started draining. The previously running poll 785da14cebeSEric Cheng * thread and the current thread doing drain would end 786da14cebeSEric Cheng * up in a race for turning polling on/off and more 787da14cebeSEric Cheng * complex code would be required to deal with it. 788da14cebeSEric Cheng * 789da14cebeSEric Cheng * Its lot simpler for drain to hand the SQS_PROC to 790da14cebeSEric Cheng * poll thread (if running) and let poll thread finish 791da14cebeSEric Cheng * without worrying about racing with any other thread. 792da14cebeSEric Cheng */ 793da14cebeSEric Cheng ASSERT(!(sqp->sq_state & (SQS_POLL_THR_QUIESCED | 794da14cebeSEric Cheng SQS_POLL_QUIESCE_DONE))); 795da14cebeSEric Cheng SQS_POLL_RING(sqp, sq_poll_capable); 796da14cebeSEric Cheng sqp->sq_state &= ~proc_type; 797da14cebeSEric Cheng } else { 798da14cebeSEric Cheng /* 799da14cebeSEric Cheng * The squeue is either not capable of polling or 800da14cebeSEric Cheng * poll thread already finished processing and didn't 801da14cebeSEric Cheng * find anything. Since there is nothing queued and 802da14cebeSEric Cheng * we already turn polling on (for all threads doing 803da14cebeSEric Cheng * drain), we should turn polling off and relinquish 804da14cebeSEric Cheng * the PROC. 805da14cebeSEric Cheng */ 806da14cebeSEric Cheng ASSERT(!(sqp->sq_state & (SQS_POLL_THR_QUIESCED | 807da14cebeSEric Cheng SQS_POLL_QUIESCE_DONE))); 808da14cebeSEric Cheng SQS_POLLING_OFF(sqp, sq_poll_capable, sq_rx_ring); 809da14cebeSEric Cheng sqp->sq_state &= ~(SQS_PROC | proc_type); 810da14cebeSEric Cheng if (!did_wakeup && sqp->sq_first != NULL) { 811da14cebeSEric Cheng squeue_worker_wakeup(sqp); 812da14cebeSEric Cheng mutex_enter(&sqp->sq_lock); 813da14cebeSEric Cheng } 814da14cebeSEric Cheng /* 815da14cebeSEric Cheng * If we are not the worker and there is a pending quiesce 816da14cebeSEric Cheng * event, wake up the worker 817da14cebeSEric Cheng */ 818da14cebeSEric Cheng if ((proc_type != SQS_WORKER) && 819da14cebeSEric Cheng (sqp->sq_state & SQS_WORKER_THR_CONTROL)) 820da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 821da14cebeSEric Cheng } 822da14cebeSEric Cheng } 823da14cebeSEric Cheng 824da14cebeSEric Cheng /* 825da14cebeSEric Cheng * Quiesce, Restart, or Cleanup of the squeue poll thread. 826da14cebeSEric Cheng * 827da14cebeSEric Cheng * Quiesce and Restart: After an squeue poll thread has been quiesced, it does 828da14cebeSEric Cheng * not attempt to poll the underlying soft ring any more. The quiesce is 829da14cebeSEric Cheng * triggered by the mac layer when it wants to quiesce a soft ring. Typically 830da14cebeSEric Cheng * control operations such as changing the fanout of a NIC or VNIC (dladm 831da14cebeSEric Cheng * setlinkprop) need to quiesce data flow before changing the wiring. 832da14cebeSEric Cheng * The operation is done by the mac layer, but it calls back into IP to 833da14cebeSEric Cheng * quiesce the soft ring. After completing the operation (say increase or 834da14cebeSEric Cheng * decrease of the fanout) the mac layer then calls back into IP to restart 835da14cebeSEric Cheng * the quiesced soft ring. 836da14cebeSEric Cheng * 837da14cebeSEric Cheng * Cleanup: This is triggered when the squeue binding to a soft ring is 838da14cebeSEric Cheng * removed permanently. Typically interface plumb and unplumb would trigger 839da14cebeSEric Cheng * this. It can also be triggered from the mac layer when a soft ring is 840da14cebeSEric Cheng * being deleted say as the result of a fanout reduction. Since squeues are 841da14cebeSEric Cheng * never deleted, the cleanup marks the squeue as fit for recycling and 842da14cebeSEric Cheng * moves it to the zeroth squeue set. 843da14cebeSEric Cheng */ 844da14cebeSEric Cheng static void 845da14cebeSEric Cheng squeue_poll_thr_control(squeue_t *sqp) 846da14cebeSEric Cheng { 847da14cebeSEric Cheng if (sqp->sq_state & SQS_POLL_THR_RESTART) { 848da14cebeSEric Cheng /* Restart implies a previous quiesce */ 849da14cebeSEric Cheng ASSERT(sqp->sq_state & SQS_POLL_THR_QUIESCED); 850da14cebeSEric Cheng sqp->sq_state &= ~(SQS_POLL_THR_QUIESCED | 851da14cebeSEric Cheng SQS_POLL_THR_RESTART); 852da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_CAPAB; 853da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 854da14cebeSEric Cheng return; 855da14cebeSEric Cheng } 856da14cebeSEric Cheng 857da14cebeSEric Cheng if (sqp->sq_state & SQS_POLL_THR_QUIESCE) { 858da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_THR_QUIESCED; 859da14cebeSEric Cheng sqp->sq_state &= ~SQS_POLL_THR_QUIESCE; 860da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 861da14cebeSEric Cheng return; 862da14cebeSEric Cheng } 863da14cebeSEric Cheng } 864da14cebeSEric Cheng 865da14cebeSEric Cheng /* 866da14cebeSEric Cheng * POLLING Notes 867da14cebeSEric Cheng * 868da14cebeSEric Cheng * With polling mode, we want to do as much processing as we possibly can 869da14cebeSEric Cheng * in worker thread context. The sweet spot is worker thread keeps doing 870da14cebeSEric Cheng * work all the time in polling mode and writers etc. keep dumping packets 871da14cebeSEric Cheng * to worker thread. Occassionally, we send the poll thread (running at 872da14cebeSEric Cheng * lower priority to NIC to get the chain of packets to feed to worker). 873da14cebeSEric Cheng * Sending the poll thread down to NIC is dependant on 3 criterions 874da14cebeSEric Cheng * 875da14cebeSEric Cheng * 1) Its always driven from squeue_drain and only if worker thread is 876da14cebeSEric Cheng * doing the drain. 877da14cebeSEric Cheng * 2) We clear the backlog once and more packets arrived in between. 878da14cebeSEric Cheng * Before starting drain again, send the poll thread down if 879da14cebeSEric Cheng * the drain is being done by worker thread. 880da14cebeSEric Cheng * 3) Before exiting the squeue_drain, if the poll thread is not already 881da14cebeSEric Cheng * working and we are the worker thread, try to poll one more time. 882da14cebeSEric Cheng * 883da14cebeSEric Cheng * For latency sake, we do allow any thread calling squeue_enter 884da14cebeSEric Cheng * to process its packet provided: 885da14cebeSEric Cheng * 886da14cebeSEric Cheng * 1) Nothing is queued 887da14cebeSEric Cheng * 2) If more packets arrived in between, the non worker thread are allowed 888da14cebeSEric Cheng * to do the drain till their time quanta expired provided SQS_GET_PKTS 889da14cebeSEric Cheng * wasn't set in between. 890da14cebeSEric Cheng * 891da14cebeSEric Cheng * Avoiding deadlocks with interrupts 892da14cebeSEric Cheng * ================================== 893da14cebeSEric Cheng * 894da14cebeSEric Cheng * One of the big problem is that we can't send poll_thr down while holding 895da14cebeSEric Cheng * the sq_lock since the thread can block. So we drop the sq_lock before 896da14cebeSEric Cheng * calling sq_get_pkts(). We keep holding the SQS_PROC as long as the 897da14cebeSEric Cheng * poll thread is running so that no other thread can acquire the 898da14cebeSEric Cheng * perimeter in between. If the squeue_drain gets done (no more work 899da14cebeSEric Cheng * left), it leaves the SQS_PROC set if poll thread is running. 900da14cebeSEric Cheng */ 901da14cebeSEric Cheng 902da14cebeSEric Cheng /* 903da14cebeSEric Cheng * This is the squeue poll thread. In poll mode, it polls the underlying 904da14cebeSEric Cheng * TCP softring and feeds packets into the squeue. The worker thread then 905da14cebeSEric Cheng * drains the squeue. The poll thread also responds to control signals for 906da14cebeSEric Cheng * quiesceing, restarting, or cleanup of an squeue. These are driven by 907da14cebeSEric Cheng * control operations like plumb/unplumb or as a result of dynamic Rx ring 908da14cebeSEric Cheng * related operations that are driven from the mac layer. 909da14cebeSEric Cheng */ 910da14cebeSEric Cheng static void 911da14cebeSEric Cheng squeue_polling_thread(squeue_t *sqp) 912da14cebeSEric Cheng { 913da14cebeSEric Cheng kmutex_t *lock = &sqp->sq_lock; 914da14cebeSEric Cheng kcondvar_t *async = &sqp->sq_poll_cv; 915da14cebeSEric Cheng ip_mac_rx_t sq_get_pkts; 916da14cebeSEric Cheng ip_accept_t ip_accept; 917da14cebeSEric Cheng ill_rx_ring_t *sq_rx_ring; 918da14cebeSEric Cheng ill_t *sq_ill; 919da14cebeSEric Cheng mblk_t *head, *tail, *mp; 920da14cebeSEric Cheng uint_t cnt; 921da14cebeSEric Cheng void *sq_mac_handle; 922da14cebeSEric Cheng callb_cpr_t cprinfo; 923da14cebeSEric Cheng size_t bytes_to_pickup; 924da14cebeSEric Cheng uint32_t ctl_state; 925da14cebeSEric Cheng 926da14cebeSEric Cheng CALLB_CPR_INIT(&cprinfo, lock, callb_generic_cpr, "sq_poll"); 927da14cebeSEric Cheng mutex_enter(lock); 928da14cebeSEric Cheng 929da14cebeSEric Cheng for (;;) { 930da14cebeSEric Cheng CALLB_CPR_SAFE_BEGIN(&cprinfo); 931da14cebeSEric Cheng cv_wait(async, lock); 932da14cebeSEric Cheng CALLB_CPR_SAFE_END(&cprinfo, lock); 933da14cebeSEric Cheng 934da14cebeSEric Cheng ctl_state = sqp->sq_state & (SQS_POLL_THR_CONTROL | 935da14cebeSEric Cheng SQS_POLL_THR_QUIESCED); 936da14cebeSEric Cheng if (ctl_state != 0) { 937da14cebeSEric Cheng /* 938da14cebeSEric Cheng * If the squeue is quiesced, then wait for a control 939da14cebeSEric Cheng * request. A quiesced squeue must not poll the 940da14cebeSEric Cheng * underlying soft ring. 941da14cebeSEric Cheng */ 942da14cebeSEric Cheng if (ctl_state == SQS_POLL_THR_QUIESCED) 943da14cebeSEric Cheng continue; 944da14cebeSEric Cheng /* 945da14cebeSEric Cheng * Act on control requests to quiesce, cleanup or 946da14cebeSEric Cheng * restart an squeue 947da14cebeSEric Cheng */ 948da14cebeSEric Cheng squeue_poll_thr_control(sqp); 949da14cebeSEric Cheng continue; 950da14cebeSEric Cheng } 951da14cebeSEric Cheng 952da14cebeSEric Cheng if (!(sqp->sq_state & SQS_POLL_CAPAB)) 953da14cebeSEric Cheng continue; 954da14cebeSEric Cheng 955da14cebeSEric Cheng ASSERT((sqp->sq_state & 956da14cebeSEric Cheng (SQS_PROC|SQS_POLLING|SQS_GET_PKTS)) == 957da14cebeSEric Cheng (SQS_PROC|SQS_POLLING|SQS_GET_PKTS)); 958da14cebeSEric Cheng 959da14cebeSEric Cheng poll_again: 960da14cebeSEric Cheng sq_rx_ring = sqp->sq_rx_ring; 961da14cebeSEric Cheng sq_get_pkts = sq_rx_ring->rr_rx; 962da14cebeSEric Cheng sq_mac_handle = sq_rx_ring->rr_rx_handle; 963da14cebeSEric Cheng ip_accept = sq_rx_ring->rr_ip_accept; 964da14cebeSEric Cheng sq_ill = sq_rx_ring->rr_ill; 965da14cebeSEric Cheng bytes_to_pickup = MAX_BYTES_TO_PICKUP; 966da14cebeSEric Cheng mutex_exit(lock); 967da14cebeSEric Cheng head = sq_get_pkts(sq_mac_handle, bytes_to_pickup); 968da14cebeSEric Cheng mp = NULL; 969da14cebeSEric Cheng if (head != NULL) { 970da14cebeSEric Cheng /* 971da14cebeSEric Cheng * We got the packet chain from the mac layer. It 972da14cebeSEric Cheng * would be nice to be able to process it inline 973da14cebeSEric Cheng * for better performance but we need to give 974da14cebeSEric Cheng * IP a chance to look at this chain to ensure 975da14cebeSEric Cheng * that packets are really meant for this squeue 976da14cebeSEric Cheng * and do the IP processing. 977da14cebeSEric Cheng */ 978da14cebeSEric Cheng mp = ip_accept(sq_ill, sq_rx_ring, sqp, head, 979da14cebeSEric Cheng &tail, &cnt); 980da14cebeSEric Cheng } 981da14cebeSEric Cheng mutex_enter(lock); 982da14cebeSEric Cheng if (mp != NULL) 983da14cebeSEric Cheng ENQUEUE_CHAIN(sqp, mp, tail, cnt); 984da14cebeSEric Cheng 985da14cebeSEric Cheng ASSERT((sqp->sq_state & 986da14cebeSEric Cheng (SQS_PROC|SQS_POLLING|SQS_GET_PKTS)) == 987da14cebeSEric Cheng (SQS_PROC|SQS_POLLING|SQS_GET_PKTS)); 988da14cebeSEric Cheng 989da14cebeSEric Cheng if (sqp->sq_first != NULL && !(sqp->sq_state & SQS_WORKER)) { 990da14cebeSEric Cheng /* 991da14cebeSEric Cheng * We have packets to process and worker thread 992da14cebeSEric Cheng * is not running. Check to see if poll thread is 993da14cebeSEric Cheng * allowed to process. Let it do processing only if it 994da14cebeSEric Cheng * picked up some packets from the NIC otherwise 995da14cebeSEric Cheng * wakeup the worker thread. 996da14cebeSEric Cheng */ 997da14cebeSEric Cheng if (mp != NULL) { 998da14cebeSEric Cheng hrtime_t now; 999d19d6468Sbw 1000d19d6468Sbw now = gethrtime(); 1001da14cebeSEric Cheng sqp->sq_run = curthread; 1002da14cebeSEric Cheng sqp->sq_drain(sqp, SQS_POLL_PROC, now + 1003da14cebeSEric Cheng squeue_drain_ns); 1004da14cebeSEric Cheng sqp->sq_run = NULL; 1005da14cebeSEric Cheng 1006da14cebeSEric Cheng if (sqp->sq_first == NULL) 1007da14cebeSEric Cheng goto poll_again; 10087c478bd9Sstevel@tonic-gate 10097c478bd9Sstevel@tonic-gate /* 1010da14cebeSEric Cheng * Couldn't do the entire drain because the 1011da14cebeSEric Cheng * time limit expired, let the 1012da14cebeSEric Cheng * worker thread take over. 10137c478bd9Sstevel@tonic-gate */ 1014da14cebeSEric Cheng } 1015da14cebeSEric Cheng 10167c478bd9Sstevel@tonic-gate sqp->sq_awaken = lbolt; 1017da14cebeSEric Cheng /* 1018da14cebeSEric Cheng * Put the SQS_PROC_HELD on so the worker 1019da14cebeSEric Cheng * thread can distinguish where its called from. We 1020da14cebeSEric Cheng * can remove the SQS_PROC flag here and turn off the 1021da14cebeSEric Cheng * polling so that it wouldn't matter who gets the 1022da14cebeSEric Cheng * processing but we get better performance this way 1023da14cebeSEric Cheng * and save the cost of turn polling off and possibly 1024da14cebeSEric Cheng * on again as soon as we start draining again. 1025da14cebeSEric Cheng * 1026da14cebeSEric Cheng * We can't remove the SQS_PROC flag without turning 1027da14cebeSEric Cheng * polling off until we can guarantee that control 1028da14cebeSEric Cheng * will return to squeue_drain immediately. 1029da14cebeSEric Cheng */ 1030da14cebeSEric Cheng sqp->sq_state |= SQS_PROC_HELD; 1031da14cebeSEric Cheng sqp->sq_state &= ~SQS_GET_PKTS; 1032da14cebeSEric Cheng cv_signal(&sqp->sq_worker_cv); 1033da14cebeSEric Cheng } else if (sqp->sq_first == NULL && 1034da14cebeSEric Cheng !(sqp->sq_state & SQS_WORKER)) { 1035da14cebeSEric Cheng /* 1036da14cebeSEric Cheng * Nothing queued and worker thread not running. 1037da14cebeSEric Cheng * Since we hold the proc, no other thread is 1038da14cebeSEric Cheng * processing the squeue. This means that there 1039da14cebeSEric Cheng * is no work to be done and nothing is queued 1040da14cebeSEric Cheng * in squeue or in NIC. Turn polling off and go 1041da14cebeSEric Cheng * back to interrupt mode. 1042da14cebeSEric Cheng */ 1043da14cebeSEric Cheng sqp->sq_state &= ~(SQS_PROC|SQS_GET_PKTS); 1044da14cebeSEric Cheng /* LINTED: constant in conditional context */ 1045da14cebeSEric Cheng SQS_POLLING_OFF(sqp, B_TRUE, sq_rx_ring); 1046da14cebeSEric Cheng } else { 1047da14cebeSEric Cheng /* 1048da14cebeSEric Cheng * Worker thread is already running. We don't need 1049da14cebeSEric Cheng * to do anything. Indicate that poll thread is done. 1050da14cebeSEric Cheng */ 1051da14cebeSEric Cheng sqp->sq_state &= ~SQS_GET_PKTS; 1052da14cebeSEric Cheng } 1053da14cebeSEric Cheng if (sqp->sq_state & SQS_POLL_THR_CONTROL) { 1054da14cebeSEric Cheng /* 1055da14cebeSEric Cheng * Act on control requests to quiesce, cleanup or 1056da14cebeSEric Cheng * restart an squeue 1057da14cebeSEric Cheng */ 1058da14cebeSEric Cheng squeue_poll_thr_control(sqp); 1059da14cebeSEric Cheng } 10607c478bd9Sstevel@tonic-gate } 10617c478bd9Sstevel@tonic-gate } 10627c478bd9Sstevel@tonic-gate 10637c478bd9Sstevel@tonic-gate /* 1064da14cebeSEric Cheng * The squeue worker thread acts on any control requests to quiesce, cleanup 1065da14cebeSEric Cheng * or restart an ill_rx_ring_t by calling this function. The worker thread 1066da14cebeSEric Cheng * synchronizes with the squeue poll thread to complete the request and finally 1067da14cebeSEric Cheng * wakes up the requestor when the request is completed. 10687c478bd9Sstevel@tonic-gate */ 1069da14cebeSEric Cheng static void 1070da14cebeSEric Cheng squeue_worker_thr_control(squeue_t *sqp) 1071da14cebeSEric Cheng { 1072da14cebeSEric Cheng ill_t *ill; 1073da14cebeSEric Cheng ill_rx_ring_t *rx_ring; 10747c478bd9Sstevel@tonic-gate 1075da14cebeSEric Cheng ASSERT(MUTEX_HELD(&sqp->sq_lock)); 1076da14cebeSEric Cheng 1077da14cebeSEric Cheng if (sqp->sq_state & SQS_POLL_RESTART) { 1078da14cebeSEric Cheng /* Restart implies a previous quiesce. */ 1079da14cebeSEric Cheng ASSERT((sqp->sq_state & (SQS_PROC_HELD | 1080da14cebeSEric Cheng SQS_POLL_QUIESCE_DONE | SQS_PROC | SQS_WORKER)) == 1081da14cebeSEric Cheng (SQS_POLL_QUIESCE_DONE | SQS_PROC | SQS_WORKER)); 1082da14cebeSEric Cheng /* 1083da14cebeSEric Cheng * Request the squeue poll thread to restart and wait till 1084da14cebeSEric Cheng * it actually restarts. 1085da14cebeSEric Cheng */ 1086da14cebeSEric Cheng sqp->sq_state &= ~SQS_POLL_QUIESCE_DONE; 1087da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_THR_RESTART; 1088da14cebeSEric Cheng cv_signal(&sqp->sq_poll_cv); 1089da14cebeSEric Cheng while (sqp->sq_state & SQS_POLL_THR_QUIESCED) 1090da14cebeSEric Cheng cv_wait(&sqp->sq_worker_cv, &sqp->sq_lock); 1091da14cebeSEric Cheng sqp->sq_state &= ~(SQS_POLL_RESTART | SQS_PROC | 1092da14cebeSEric Cheng SQS_WORKER); 1093da14cebeSEric Cheng /* 1094da14cebeSEric Cheng * Signal any waiter that is waiting for the restart 1095da14cebeSEric Cheng * to complete 1096da14cebeSEric Cheng */ 1097da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_RESTART_DONE; 1098da14cebeSEric Cheng cv_signal(&sqp->sq_ctrlop_done_cv); 1099da14cebeSEric Cheng return; 1100da14cebeSEric Cheng } 1101da14cebeSEric Cheng 1102da14cebeSEric Cheng if (sqp->sq_state & SQS_PROC_HELD) { 1103da14cebeSEric Cheng /* The squeue poll thread handed control to us */ 1104da14cebeSEric Cheng ASSERT(sqp->sq_state & SQS_PROC); 1105da14cebeSEric Cheng } 11067c478bd9Sstevel@tonic-gate 11077c478bd9Sstevel@tonic-gate /* 1108da14cebeSEric Cheng * Prevent any other thread from processing the squeue 1109da14cebeSEric Cheng * until we finish the control actions by setting SQS_PROC. 1110da14cebeSEric Cheng * But allow ourself to reenter by setting SQS_WORKER 11117c478bd9Sstevel@tonic-gate */ 1112da14cebeSEric Cheng sqp->sq_state |= (SQS_PROC | SQS_WORKER); 1113da14cebeSEric Cheng 1114da14cebeSEric Cheng /* Signal the squeue poll thread and wait for it to quiesce itself */ 1115da14cebeSEric Cheng if (!(sqp->sq_state & SQS_POLL_THR_QUIESCED)) { 1116da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_THR_QUIESCE; 1117da14cebeSEric Cheng cv_signal(&sqp->sq_poll_cv); 1118da14cebeSEric Cheng while (!(sqp->sq_state & SQS_POLL_THR_QUIESCED)) 1119da14cebeSEric Cheng cv_wait(&sqp->sq_worker_cv, &sqp->sq_lock); 1120da14cebeSEric Cheng } 1121da14cebeSEric Cheng 1122da14cebeSEric Cheng rx_ring = sqp->sq_rx_ring; 1123da14cebeSEric Cheng ill = rx_ring->rr_ill; 1124da14cebeSEric Cheng /* 1125da14cebeSEric Cheng * The lock hierarchy is as follows. 1126da14cebeSEric Cheng * cpu_lock -> ill_lock -> sqset_lock -> sq_lock 1127da14cebeSEric Cheng */ 1128da14cebeSEric Cheng mutex_exit(&sqp->sq_lock); 1129da14cebeSEric Cheng mutex_enter(&ill->ill_lock); 1130da14cebeSEric Cheng mutex_enter(&sqp->sq_lock); 1131da14cebeSEric Cheng 1132da14cebeSEric Cheng SQS_POLLING_OFF(sqp, (sqp->sq_state & SQS_POLL_CAPAB) != 0, 1133da14cebeSEric Cheng sqp->sq_rx_ring); 1134da14cebeSEric Cheng sqp->sq_state &= ~(SQS_POLL_CAPAB | SQS_GET_PKTS | SQS_PROC_HELD); 1135da14cebeSEric Cheng if (sqp->sq_state & SQS_POLL_CLEANUP) { 1136da14cebeSEric Cheng /* 1137da14cebeSEric Cheng * Disassociate this squeue from its ill_rx_ring_t. 1138da14cebeSEric Cheng * The rr_sqp, sq_rx_ring fields are protected by the 1139da14cebeSEric Cheng * corresponding squeue, ill_lock* and sq_lock. Holding any 1140da14cebeSEric Cheng * of them will ensure that the ring to squeue mapping does 1141da14cebeSEric Cheng * not change. 1142da14cebeSEric Cheng */ 1143da14cebeSEric Cheng ASSERT(!(sqp->sq_state & SQS_DEFAULT)); 1144da14cebeSEric Cheng 1145da14cebeSEric Cheng sqp->sq_rx_ring = NULL; 1146da14cebeSEric Cheng rx_ring->rr_sqp = NULL; 1147da14cebeSEric Cheng 1148da14cebeSEric Cheng sqp->sq_state &= ~(SQS_POLL_CLEANUP | SQS_POLL_THR_QUIESCED | 1149da14cebeSEric Cheng SQS_POLL_QUIESCE_DONE); 1150da14cebeSEric Cheng sqp->sq_ill = NULL; 1151da14cebeSEric Cheng 1152da14cebeSEric Cheng rx_ring->rr_rx_handle = NULL; 1153da14cebeSEric Cheng rx_ring->rr_intr_handle = NULL; 1154da14cebeSEric Cheng rx_ring->rr_intr_enable = NULL; 1155da14cebeSEric Cheng rx_ring->rr_intr_disable = NULL; 1156da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_CLEANUP_DONE; 1157da14cebeSEric Cheng } else { 1158da14cebeSEric Cheng sqp->sq_state &= ~SQS_POLL_QUIESCE; 1159da14cebeSEric Cheng sqp->sq_state |= SQS_POLL_QUIESCE_DONE; 1160da14cebeSEric Cheng } 1161da14cebeSEric Cheng /* 1162da14cebeSEric Cheng * Signal any waiter that is waiting for the quiesce or cleanup 1163da14cebeSEric Cheng * to complete and also wait for it to actually see and reset the 1164da14cebeSEric Cheng * SQS_POLL_CLEANUP_DONE. 1165da14cebeSEric Cheng */ 1166da14cebeSEric Cheng cv_signal(&sqp->sq_ctrlop_done_cv); 1167da14cebeSEric Cheng mutex_exit(&ill->ill_lock); 1168da14cebeSEric Cheng if (sqp->sq_state & SQS_POLL_CLEANUP_DONE) { 1169da14cebeSEric Cheng cv_wait(&sqp->sq_worker_cv, &sqp->sq_lock); 1170da14cebeSEric Cheng sqp->sq_state &= ~(SQS_PROC | SQS_WORKER); 11717c478bd9Sstevel@tonic-gate } 11727c478bd9Sstevel@tonic-gate } 11737c478bd9Sstevel@tonic-gate 11747c478bd9Sstevel@tonic-gate static void 11757c478bd9Sstevel@tonic-gate squeue_worker(squeue_t *sqp) 11767c478bd9Sstevel@tonic-gate { 11777c478bd9Sstevel@tonic-gate kmutex_t *lock = &sqp->sq_lock; 1178da14cebeSEric Cheng kcondvar_t *async = &sqp->sq_worker_cv; 11797c478bd9Sstevel@tonic-gate callb_cpr_t cprinfo; 1180d19d6468Sbw hrtime_t now; 11817c478bd9Sstevel@tonic-gate 1182da14cebeSEric Cheng CALLB_CPR_INIT(&cprinfo, lock, callb_generic_cpr, "sq_worker"); 11837c478bd9Sstevel@tonic-gate mutex_enter(lock); 11847c478bd9Sstevel@tonic-gate 11857c478bd9Sstevel@tonic-gate for (;;) { 1186da14cebeSEric Cheng for (;;) { 1187da14cebeSEric Cheng /* 1188da14cebeSEric Cheng * If the poll thread has handed control to us 1189da14cebeSEric Cheng * we need to break out of the wait. 1190da14cebeSEric Cheng */ 1191da14cebeSEric Cheng if (sqp->sq_state & SQS_PROC_HELD) 1192da14cebeSEric Cheng break; 1193da14cebeSEric Cheng 1194da14cebeSEric Cheng /* 1195da14cebeSEric Cheng * If the squeue is not being processed and we either 1196da14cebeSEric Cheng * have messages to drain or some thread has signaled 1197da14cebeSEric Cheng * some control activity we need to break 1198da14cebeSEric Cheng */ 1199da14cebeSEric Cheng if (!(sqp->sq_state & SQS_PROC) && 1200da14cebeSEric Cheng ((sqp->sq_state & SQS_WORKER_THR_CONTROL) || 1201da14cebeSEric Cheng (sqp->sq_first != NULL))) 1202da14cebeSEric Cheng break; 1203da14cebeSEric Cheng 1204da14cebeSEric Cheng /* 1205da14cebeSEric Cheng * If we have started some control action, then check 1206da14cebeSEric Cheng * for the SQS_WORKER flag (since we don't 1207da14cebeSEric Cheng * release the squeue) to make sure we own the squeue 1208da14cebeSEric Cheng * and break out 1209da14cebeSEric Cheng */ 1210da14cebeSEric Cheng if ((sqp->sq_state & SQS_WORKER_THR_CONTROL) && 1211da14cebeSEric Cheng (sqp->sq_state & SQS_WORKER)) 1212da14cebeSEric Cheng break; 1213da14cebeSEric Cheng 12147c478bd9Sstevel@tonic-gate CALLB_CPR_SAFE_BEGIN(&cprinfo); 12157c478bd9Sstevel@tonic-gate cv_wait(async, lock); 12167c478bd9Sstevel@tonic-gate CALLB_CPR_SAFE_END(&cprinfo, lock); 12177c478bd9Sstevel@tonic-gate } 1218da14cebeSEric Cheng if (sqp->sq_state & SQS_WORKER_THR_CONTROL) { 1219da14cebeSEric Cheng squeue_worker_thr_control(sqp); 1220da14cebeSEric Cheng continue; 12217c478bd9Sstevel@tonic-gate } 1222da14cebeSEric Cheng ASSERT(!(sqp->sq_state & (SQS_POLL_THR_QUIESCED | 1223da14cebeSEric Cheng SQS_POLL_CLEANUP_DONE | SQS_POLL_QUIESCE_DONE | 1224da14cebeSEric Cheng SQS_WORKER_THR_CONTROL | SQS_POLL_THR_CONTROL))); 12257c478bd9Sstevel@tonic-gate 1226da14cebeSEric Cheng if (sqp->sq_state & SQS_PROC_HELD) 1227da14cebeSEric Cheng sqp->sq_state &= ~SQS_PROC_HELD; 1228da14cebeSEric Cheng 1229d19d6468Sbw now = gethrtime(); 12307c478bd9Sstevel@tonic-gate sqp->sq_run = curthread; 1231da14cebeSEric Cheng sqp->sq_drain(sqp, SQS_WORKER, now + squeue_drain_ns); 12327c478bd9Sstevel@tonic-gate sqp->sq_run = NULL; 12337c478bd9Sstevel@tonic-gate } 12347c478bd9Sstevel@tonic-gate } 12357c478bd9Sstevel@tonic-gate 12367c478bd9Sstevel@tonic-gate uintptr_t * 12377c478bd9Sstevel@tonic-gate squeue_getprivate(squeue_t *sqp, sqprivate_t p) 12387c478bd9Sstevel@tonic-gate { 12397c478bd9Sstevel@tonic-gate ASSERT(p < SQPRIVATE_MAX); 12407c478bd9Sstevel@tonic-gate 12417c478bd9Sstevel@tonic-gate return (&sqp->sq_private[p]); 12427c478bd9Sstevel@tonic-gate } 12430f1702c5SYu Xiangning 12440f1702c5SYu Xiangning /* ARGSUSED */ 12450f1702c5SYu Xiangning void 12460f1702c5SYu Xiangning squeue_wakeup_conn(void *arg, mblk_t *mp, void *arg2) 12470f1702c5SYu Xiangning { 12480f1702c5SYu Xiangning conn_t *connp = (conn_t *)arg; 12490f1702c5SYu Xiangning squeue_t *sqp = connp->conn_sqp; 12500f1702c5SYu Xiangning 12510f1702c5SYu Xiangning /* 12520f1702c5SYu Xiangning * Mark the squeue as paused before waking up the thread stuck 12530f1702c5SYu Xiangning * in squeue_synch_enter(). 12540f1702c5SYu Xiangning */ 12550f1702c5SYu Xiangning mutex_enter(&sqp->sq_lock); 12560f1702c5SYu Xiangning sqp->sq_state |= SQS_PAUSE; 12570f1702c5SYu Xiangning 12580f1702c5SYu Xiangning /* 12590f1702c5SYu Xiangning * Notify the thread that it's OK to proceed; that is done by 12600f1702c5SYu Xiangning * clearing the MSGWAITSYNC flag. The synch thread will free the mblk. 12610f1702c5SYu Xiangning */ 12620f1702c5SYu Xiangning ASSERT(mp->b_flag & MSGWAITSYNC); 12630f1702c5SYu Xiangning mp->b_flag &= ~MSGWAITSYNC; 12640f1702c5SYu Xiangning cv_broadcast(&connp->conn_sq_cv); 12650f1702c5SYu Xiangning 12660f1702c5SYu Xiangning /* 12670f1702c5SYu Xiangning * We are doing something on behalf of another thread, so we have to 12680f1702c5SYu Xiangning * pause and wait until it finishes. 12690f1702c5SYu Xiangning */ 12700f1702c5SYu Xiangning while (sqp->sq_state & SQS_PAUSE) { 12710f1702c5SYu Xiangning cv_wait(&sqp->sq_synch_cv, &sqp->sq_lock); 12720f1702c5SYu Xiangning } 12730f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 12740f1702c5SYu Xiangning } 12750f1702c5SYu Xiangning 12760f1702c5SYu Xiangning int 1277*f3124163SAnders Persson squeue_synch_enter(squeue_t *sqp, conn_t *connp, mblk_t *use_mp) 12780f1702c5SYu Xiangning { 12790f1702c5SYu Xiangning mutex_enter(&sqp->sq_lock); 12800f1702c5SYu Xiangning if (sqp->sq_first == NULL && !(sqp->sq_state & SQS_PROC)) { 12810f1702c5SYu Xiangning /* 12820f1702c5SYu Xiangning * We are OK to proceed if the squeue is empty, and 12830f1702c5SYu Xiangning * no one owns the squeue. 12840f1702c5SYu Xiangning * 12850f1702c5SYu Xiangning * The caller won't own the squeue as this is called from the 12860f1702c5SYu Xiangning * application. 12870f1702c5SYu Xiangning */ 12880f1702c5SYu Xiangning ASSERT(sqp->sq_run == NULL); 12890f1702c5SYu Xiangning 12900f1702c5SYu Xiangning sqp->sq_state |= SQS_PROC; 12910f1702c5SYu Xiangning sqp->sq_run = curthread; 12920f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 12930f1702c5SYu Xiangning 12940f1702c5SYu Xiangning #if SQUEUE_DEBUG 12950f1702c5SYu Xiangning sqp->sq_curmp = NULL; 12960f1702c5SYu Xiangning sqp->sq_curproc = NULL; 12970f1702c5SYu Xiangning sqp->sq_connp = connp; 12980f1702c5SYu Xiangning #endif 12990f1702c5SYu Xiangning connp->conn_on_sqp = B_TRUE; 13000f1702c5SYu Xiangning return (0); 13010f1702c5SYu Xiangning } else { 13020f1702c5SYu Xiangning mblk_t *mp; 13030f1702c5SYu Xiangning 1304*f3124163SAnders Persson mp = (use_mp == NULL) ? allocb(0, BPRI_MED) : use_mp; 13050f1702c5SYu Xiangning if (mp == NULL) { 13060f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 13070f1702c5SYu Xiangning return (ENOMEM); 13080f1702c5SYu Xiangning } 13090f1702c5SYu Xiangning 13100f1702c5SYu Xiangning /* 13110f1702c5SYu Xiangning * We mark the mblk as awaiting synchronous squeue access 13120f1702c5SYu Xiangning * by setting the MSGWAITSYNC flag. Once squeue_wakeup_conn 13130f1702c5SYu Xiangning * fires, MSGWAITSYNC is cleared, at which point we know we 13140f1702c5SYu Xiangning * have exclusive access. 13150f1702c5SYu Xiangning */ 13160f1702c5SYu Xiangning mp->b_flag |= MSGWAITSYNC; 13170f1702c5SYu Xiangning 13180f1702c5SYu Xiangning CONN_INC_REF(connp); 13190f1702c5SYu Xiangning SET_SQUEUE(mp, squeue_wakeup_conn, connp); 13200f1702c5SYu Xiangning ENQUEUE_CHAIN(sqp, mp, mp, 1); 13210f1702c5SYu Xiangning 13220f1702c5SYu Xiangning ASSERT(sqp->sq_run != curthread); 13230f1702c5SYu Xiangning 13240f1702c5SYu Xiangning /* Wait until the enqueued mblk get processed. */ 13250f1702c5SYu Xiangning while (mp->b_flag & MSGWAITSYNC) 13260f1702c5SYu Xiangning cv_wait(&connp->conn_sq_cv, &sqp->sq_lock); 13270f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 13280f1702c5SYu Xiangning 1329*f3124163SAnders Persson if (use_mp == NULL) 13300f1702c5SYu Xiangning freeb(mp); 13310f1702c5SYu Xiangning 13320f1702c5SYu Xiangning return (0); 13330f1702c5SYu Xiangning } 13340f1702c5SYu Xiangning } 13350f1702c5SYu Xiangning 13360f1702c5SYu Xiangning void 1337*f3124163SAnders Persson squeue_synch_exit(squeue_t *sqp, conn_t *connp) 13380f1702c5SYu Xiangning { 13390f1702c5SYu Xiangning mutex_enter(&sqp->sq_lock); 13400f1702c5SYu Xiangning if (sqp->sq_run == curthread) { 13410f1702c5SYu Xiangning ASSERT(sqp->sq_state & SQS_PROC); 13420f1702c5SYu Xiangning 13430f1702c5SYu Xiangning sqp->sq_state &= ~SQS_PROC; 13440f1702c5SYu Xiangning sqp->sq_run = NULL; 13450f1702c5SYu Xiangning connp->conn_on_sqp = B_FALSE; 13460f1702c5SYu Xiangning 13470f1702c5SYu Xiangning if (sqp->sq_first == NULL) { 13480f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 13490f1702c5SYu Xiangning } else { 13500f1702c5SYu Xiangning /* 13510f1702c5SYu Xiangning * If this was a normal thread, then it would 13520f1702c5SYu Xiangning * (most likely) continue processing the pending 13530f1702c5SYu Xiangning * requests. Since the just completed operation 13540f1702c5SYu Xiangning * was executed synchronously, the thread should 13550f1702c5SYu Xiangning * not be delayed. To compensate, wake up the 13560f1702c5SYu Xiangning * worker thread right away when there are outstanding 13570f1702c5SYu Xiangning * requests. 13580f1702c5SYu Xiangning */ 13590f1702c5SYu Xiangning sqp->sq_awaken = lbolt; 13600f1702c5SYu Xiangning cv_signal(&sqp->sq_worker_cv); 13610f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 13620f1702c5SYu Xiangning } 13630f1702c5SYu Xiangning } else { 13640f1702c5SYu Xiangning /* 13650f1702c5SYu Xiangning * The caller doesn't own the squeue, clear the SQS_PAUSE flag, 13660f1702c5SYu Xiangning * and wake up the squeue owner, such that owner can continue 13670f1702c5SYu Xiangning * processing. 13680f1702c5SYu Xiangning */ 13690f1702c5SYu Xiangning ASSERT(sqp->sq_state & SQS_PAUSE); 13700f1702c5SYu Xiangning sqp->sq_state &= ~SQS_PAUSE; 13710f1702c5SYu Xiangning 13720f1702c5SYu Xiangning /* There should be only one thread blocking on sq_synch_cv. */ 13730f1702c5SYu Xiangning cv_signal(&sqp->sq_synch_cv); 13740f1702c5SYu Xiangning mutex_exit(&sqp->sq_lock); 13750f1702c5SYu Xiangning } 13760f1702c5SYu Xiangning } 1377