102ac6454SAndrew Thompson /* $FreeBSD$ */ 202ac6454SAndrew Thompson /*- 302ac6454SAndrew Thompson * Copyright (c) 2008 Hans Petter Selasky. All rights reserved. 402ac6454SAndrew Thompson * 502ac6454SAndrew Thompson * Redistribution and use in source and binary forms, with or without 602ac6454SAndrew Thompson * modification, are permitted provided that the following conditions 702ac6454SAndrew Thompson * are met: 802ac6454SAndrew Thompson * 1. Redistributions of source code must retain the above copyright 902ac6454SAndrew Thompson * notice, this list of conditions and the following disclaimer. 1002ac6454SAndrew Thompson * 2. Redistributions in binary form must reproduce the above copyright 1102ac6454SAndrew Thompson * notice, this list of conditions and the following disclaimer in the 1202ac6454SAndrew Thompson * documentation and/or other materials provided with the distribution. 1302ac6454SAndrew Thompson * 1402ac6454SAndrew Thompson * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 1502ac6454SAndrew Thompson * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 1602ac6454SAndrew Thompson * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 1702ac6454SAndrew Thompson * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 1802ac6454SAndrew Thompson * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 1902ac6454SAndrew Thompson * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 2002ac6454SAndrew Thompson * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 2102ac6454SAndrew Thompson * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 2202ac6454SAndrew Thompson * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 2302ac6454SAndrew Thompson * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 2402ac6454SAndrew Thompson * SUCH DAMAGE. 2502ac6454SAndrew Thompson */ 2602ac6454SAndrew Thompson 27a593f6b8SAndrew Thompson #define USB_DEBUG_VAR usb_proc_debug 2802ac6454SAndrew Thompson 29ed6d949aSAndrew Thompson #include <sys/stdint.h> 30ed6d949aSAndrew Thompson #include <sys/stddef.h> 31ed6d949aSAndrew Thompson #include <sys/param.h> 32ed6d949aSAndrew Thompson #include <sys/queue.h> 33ed6d949aSAndrew Thompson #include <sys/types.h> 34ed6d949aSAndrew Thompson #include <sys/systm.h> 35ed6d949aSAndrew Thompson #include <sys/kernel.h> 36ed6d949aSAndrew Thompson #include <sys/bus.h> 37ed6d949aSAndrew Thompson #include <sys/module.h> 38ed6d949aSAndrew Thompson #include <sys/lock.h> 39ed6d949aSAndrew Thompson #include <sys/mutex.h> 40ed6d949aSAndrew Thompson #include <sys/condvar.h> 41ed6d949aSAndrew Thompson #include <sys/sysctl.h> 42ed6d949aSAndrew Thompson #include <sys/sx.h> 43ed6d949aSAndrew Thompson #include <sys/unistd.h> 44ed6d949aSAndrew Thompson #include <sys/callout.h> 45ed6d949aSAndrew Thompson #include <sys/malloc.h> 46ed6d949aSAndrew Thompson #include <sys/priv.h> 47ed6d949aSAndrew Thompson 48ed6d949aSAndrew Thompson #include <dev/usb/usb.h> 49ed6d949aSAndrew Thompson #include <dev/usb/usbdi.h> 50ed6d949aSAndrew Thompson #include <dev/usb/usbdi_util.h> 5102ac6454SAndrew Thompson #include <dev/usb/usb_process.h> 5202ac6454SAndrew Thompson #include <dev/usb/usb_debug.h> 5302ac6454SAndrew Thompson #include <dev/usb/usb_util.h> 5402ac6454SAndrew Thompson 5502ac6454SAndrew Thompson #include <sys/proc.h> 5602ac6454SAndrew Thompson #include <sys/kthread.h> 5702ac6454SAndrew Thompson #include <sys/sched.h> 5802ac6454SAndrew Thompson 5902ac6454SAndrew Thompson #if (__FreeBSD_version < 700000) 6002ac6454SAndrew Thompson #define thread_lock(td) mtx_lock_spin(&sched_lock) 6102ac6454SAndrew Thompson #define thread_unlock(td) mtx_unlock_spin(&sched_lock) 6202ac6454SAndrew Thompson #endif 6302ac6454SAndrew Thompson 6402ac6454SAndrew Thompson #if (__FreeBSD_version >= 800000) 65532b1952SAndrew Thompson static struct proc *usbproc; 6651e8c0d6SAndrew Thompson static int usb_pcount; 6702ac6454SAndrew Thompson #define USB_THREAD_CREATE(f, s, p, ...) \ 68532b1952SAndrew Thompson kproc_kthread_add((f), (s), &usbproc, (p), RFHIGHPID, \ 69532b1952SAndrew Thompson 0, "usb", __VA_ARGS__) 70*87a133a7SHans Petter Selasky #define USB_THREAD_SUSPEND_CHECK() kthread_suspend_check() 71532b1952SAndrew Thompson #define USB_THREAD_SUSPEND(p) kthread_suspend(p,0) 72532b1952SAndrew Thompson #define USB_THREAD_EXIT(err) kthread_exit() 7302ac6454SAndrew Thompson #else 7402ac6454SAndrew Thompson #define USB_THREAD_CREATE(f, s, p, ...) \ 7502ac6454SAndrew Thompson kthread_create((f), (s), (p), RFHIGHPID, 0, __VA_ARGS__) 76*87a133a7SHans Petter Selasky #define USB_THREAD_SUSPEND_CHECK() kthread_suspend_check() 7702ac6454SAndrew Thompson #define USB_THREAD_SUSPEND(p) kthread_suspend(p,0) 7802ac6454SAndrew Thompson #define USB_THREAD_EXIT(err) kthread_exit(err) 7902ac6454SAndrew Thompson #endif 8002ac6454SAndrew Thompson 81ed6d949aSAndrew Thompson #ifdef USB_DEBUG 82a593f6b8SAndrew Thompson static int usb_proc_debug; 8302ac6454SAndrew Thompson 849360ae40SAndrew Thompson SYSCTL_NODE(_hw_usb, OID_AUTO, proc, CTLFLAG_RW, 0, "USB process"); 85a593f6b8SAndrew Thompson SYSCTL_INT(_hw_usb_proc, OID_AUTO, debug, CTLFLAG_RW, &usb_proc_debug, 0, 8602ac6454SAndrew Thompson "Debug level"); 87c13fd8d4SAndrew Thompson 88c13fd8d4SAndrew Thompson TUNABLE_INT("hw.usb.proc.debug", &usb_proc_debug); 8902ac6454SAndrew Thompson #endif 9002ac6454SAndrew Thompson 9102ac6454SAndrew Thompson /*------------------------------------------------------------------------* 92760bc48eSAndrew Thompson * usb_process 9302ac6454SAndrew Thompson * 9402ac6454SAndrew Thompson * This function is the USB process dispatcher. 9502ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 9602ac6454SAndrew Thompson static void 97760bc48eSAndrew Thompson usb_process(void *arg) 9802ac6454SAndrew Thompson { 99760bc48eSAndrew Thompson struct usb_process *up = arg; 100760bc48eSAndrew Thompson struct usb_proc_msg *pm; 10102ac6454SAndrew Thompson struct thread *td; 10202ac6454SAndrew Thompson 103*87a133a7SHans Petter Selasky /* in case of attach error, check for suspended */ 104*87a133a7SHans Petter Selasky USB_THREAD_SUSPEND_CHECK(); 105*87a133a7SHans Petter Selasky 10602ac6454SAndrew Thompson /* adjust priority */ 10702ac6454SAndrew Thompson td = curthread; 10802ac6454SAndrew Thompson thread_lock(td); 10902ac6454SAndrew Thompson sched_prio(td, up->up_prio); 11002ac6454SAndrew Thompson thread_unlock(td); 11102ac6454SAndrew Thompson 11202ac6454SAndrew Thompson mtx_lock(up->up_mtx); 11302ac6454SAndrew Thompson 11402ac6454SAndrew Thompson up->up_curtd = td; 11502ac6454SAndrew Thompson 11602ac6454SAndrew Thompson while (1) { 11702ac6454SAndrew Thompson 11802ac6454SAndrew Thompson if (up->up_gone) 11902ac6454SAndrew Thompson break; 12002ac6454SAndrew Thompson 12102ac6454SAndrew Thompson /* 12202ac6454SAndrew Thompson * NOTE to reimplementors: dequeueing a command from the 12302ac6454SAndrew Thompson * "used" queue and executing it must be atomic, with regard 12402ac6454SAndrew Thompson * to the "up_mtx" mutex. That means any attempt to queue a 12502ac6454SAndrew Thompson * command by another thread must be blocked until either: 12602ac6454SAndrew Thompson * 12702ac6454SAndrew Thompson * 1) the command sleeps 12802ac6454SAndrew Thompson * 12902ac6454SAndrew Thompson * 2) the command returns 13002ac6454SAndrew Thompson * 13102ac6454SAndrew Thompson * Here is a practical example that shows how this helps 13202ac6454SAndrew Thompson * solving a problem: 13302ac6454SAndrew Thompson * 13402ac6454SAndrew Thompson * Assume that you want to set the baud rate on a USB serial 13502ac6454SAndrew Thompson * device. During the programming of the device you don't 13602ac6454SAndrew Thompson * want to receive nor transmit any data, because it will be 13702ac6454SAndrew Thompson * garbage most likely anyway. The programming of our USB 13802ac6454SAndrew Thompson * device takes 20 milliseconds and it needs to call 13902ac6454SAndrew Thompson * functions that sleep. 14002ac6454SAndrew Thompson * 14102ac6454SAndrew Thompson * Non-working solution: Before we queue the programming 14202ac6454SAndrew Thompson * command, we stop transmission and reception of data. Then 14302ac6454SAndrew Thompson * we queue a programming command. At the end of the 14402ac6454SAndrew Thompson * programming command we enable transmission and reception 14502ac6454SAndrew Thompson * of data. 14602ac6454SAndrew Thompson * 14702ac6454SAndrew Thompson * Problem: If a second programming command is queued while the 14802ac6454SAndrew Thompson * first one is sleeping, we end up enabling transmission 14902ac6454SAndrew Thompson * and reception of data too early. 15002ac6454SAndrew Thompson * 15102ac6454SAndrew Thompson * Working solution: Before we queue the programming command, 15202ac6454SAndrew Thompson * we stop transmission and reception of data. Then we queue 15302ac6454SAndrew Thompson * a programming command. Then we queue a second command 15402ac6454SAndrew Thompson * that only enables transmission and reception of data. 15502ac6454SAndrew Thompson * 15602ac6454SAndrew Thompson * Why it works: If a second programming command is queued 15702ac6454SAndrew Thompson * while the first one is sleeping, then the queueing of a 15802ac6454SAndrew Thompson * second command to enable the data transfers, will cause 15902ac6454SAndrew Thompson * the previous one, which is still on the queue, to be 16002ac6454SAndrew Thompson * removed from the queue, and re-inserted after the last 16102ac6454SAndrew Thompson * baud rate programming command, which then gives the 16202ac6454SAndrew Thompson * desired result. 16302ac6454SAndrew Thompson */ 16402ac6454SAndrew Thompson pm = TAILQ_FIRST(&up->up_qhead); 16502ac6454SAndrew Thompson 16602ac6454SAndrew Thompson if (pm) { 16702ac6454SAndrew Thompson DPRINTF("Message pm=%p, cb=%p (enter)\n", 16802ac6454SAndrew Thompson pm, pm->pm_callback); 16902ac6454SAndrew Thompson 17002ac6454SAndrew Thompson (pm->pm_callback) (pm); 17102ac6454SAndrew Thompson 17202ac6454SAndrew Thompson if (pm == TAILQ_FIRST(&up->up_qhead)) { 17302ac6454SAndrew Thompson /* nothing changed */ 17402ac6454SAndrew Thompson TAILQ_REMOVE(&up->up_qhead, pm, pm_qentry); 17502ac6454SAndrew Thompson pm->pm_qentry.tqe_prev = NULL; 17602ac6454SAndrew Thompson } 17702ac6454SAndrew Thompson DPRINTF("Message pm=%p (leave)\n", pm); 17802ac6454SAndrew Thompson 17902ac6454SAndrew Thompson continue; 18002ac6454SAndrew Thompson } 18102ac6454SAndrew Thompson /* end if messages - check if anyone is waiting for sync */ 18202ac6454SAndrew Thompson if (up->up_dsleep) { 18302ac6454SAndrew Thompson up->up_dsleep = 0; 1848437751dSAndrew Thompson cv_broadcast(&up->up_drain); 18502ac6454SAndrew Thompson } 18602ac6454SAndrew Thompson up->up_msleep = 1; 1878437751dSAndrew Thompson cv_wait(&up->up_cv, up->up_mtx); 18802ac6454SAndrew Thompson } 18902ac6454SAndrew Thompson 19002ac6454SAndrew Thompson up->up_ptr = NULL; 1918437751dSAndrew Thompson cv_signal(&up->up_cv); 19202ac6454SAndrew Thompson mtx_unlock(up->up_mtx); 19351e8c0d6SAndrew Thompson #if (__FreeBSD_version >= 800000) 19451e8c0d6SAndrew Thompson /* Clear the proc pointer if this is the last thread. */ 19551e8c0d6SAndrew Thompson if (--usb_pcount == 0) 19651e8c0d6SAndrew Thompson usbproc = NULL; 19751e8c0d6SAndrew Thompson #endif 19802ac6454SAndrew Thompson 19902ac6454SAndrew Thompson USB_THREAD_EXIT(0); 20002ac6454SAndrew Thompson } 20102ac6454SAndrew Thompson 20202ac6454SAndrew Thompson /*------------------------------------------------------------------------* 203a593f6b8SAndrew Thompson * usb_proc_create 20402ac6454SAndrew Thompson * 20502ac6454SAndrew Thompson * This function will create a process using the given "prio" that can 20602ac6454SAndrew Thompson * execute callbacks. The mutex pointed to by "p_mtx" will be applied 20702ac6454SAndrew Thompson * before calling the callbacks and released after that the callback 20802ac6454SAndrew Thompson * has returned. The structure pointed to by "up" is assumed to be 20902ac6454SAndrew Thompson * zeroed before this function is called. 21002ac6454SAndrew Thompson * 21102ac6454SAndrew Thompson * Return values: 21202ac6454SAndrew Thompson * 0: success 21302ac6454SAndrew Thompson * Else: failure 21402ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 21502ac6454SAndrew Thompson int 216a593f6b8SAndrew Thompson usb_proc_create(struct usb_process *up, struct mtx *p_mtx, 21702ac6454SAndrew Thompson const char *pmesg, uint8_t prio) 21802ac6454SAndrew Thompson { 21902ac6454SAndrew Thompson up->up_mtx = p_mtx; 22002ac6454SAndrew Thompson up->up_prio = prio; 22102ac6454SAndrew Thompson 22202ac6454SAndrew Thompson TAILQ_INIT(&up->up_qhead); 22302ac6454SAndrew Thompson 224532b1952SAndrew Thompson cv_init(&up->up_cv, "-"); 225532b1952SAndrew Thompson cv_init(&up->up_drain, "usbdrain"); 22602ac6454SAndrew Thompson 227760bc48eSAndrew Thompson if (USB_THREAD_CREATE(&usb_process, up, 2281bdfff22SAndriy Gapon &up->up_ptr, "%s", pmesg)) { 22902ac6454SAndrew Thompson DPRINTFN(0, "Unable to create USB process."); 23002ac6454SAndrew Thompson up->up_ptr = NULL; 23102ac6454SAndrew Thompson goto error; 23202ac6454SAndrew Thompson } 23351e8c0d6SAndrew Thompson #if (__FreeBSD_version >= 800000) 23451e8c0d6SAndrew Thompson usb_pcount++; 23551e8c0d6SAndrew Thompson #endif 23602ac6454SAndrew Thompson return (0); 23702ac6454SAndrew Thompson 23802ac6454SAndrew Thompson error: 239a593f6b8SAndrew Thompson usb_proc_free(up); 24002ac6454SAndrew Thompson return (ENOMEM); 24102ac6454SAndrew Thompson } 24202ac6454SAndrew Thompson 24302ac6454SAndrew Thompson /*------------------------------------------------------------------------* 244a593f6b8SAndrew Thompson * usb_proc_free 24502ac6454SAndrew Thompson * 24602ac6454SAndrew Thompson * NOTE: If the structure pointed to by "up" is all zero, this 24702ac6454SAndrew Thompson * function does nothing. 24802ac6454SAndrew Thompson * 24902ac6454SAndrew Thompson * NOTE: Messages that are pending on the process queue will not be 25002ac6454SAndrew Thompson * removed nor called. 25102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 25202ac6454SAndrew Thompson void 253a593f6b8SAndrew Thompson usb_proc_free(struct usb_process *up) 25402ac6454SAndrew Thompson { 25502ac6454SAndrew Thompson /* check if not initialised */ 25602ac6454SAndrew Thompson if (up->up_mtx == NULL) 25702ac6454SAndrew Thompson return; 25802ac6454SAndrew Thompson 259a593f6b8SAndrew Thompson usb_proc_drain(up); 26002ac6454SAndrew Thompson 2618437751dSAndrew Thompson cv_destroy(&up->up_cv); 2628437751dSAndrew Thompson cv_destroy(&up->up_drain); 26302ac6454SAndrew Thompson 26402ac6454SAndrew Thompson /* make sure that we do not enter here again */ 26502ac6454SAndrew Thompson up->up_mtx = NULL; 26602ac6454SAndrew Thompson } 26702ac6454SAndrew Thompson 26802ac6454SAndrew Thompson /*------------------------------------------------------------------------* 269a593f6b8SAndrew Thompson * usb_proc_msignal 27002ac6454SAndrew Thompson * 27102ac6454SAndrew Thompson * This function will queue one of the passed USB process messages on 27202ac6454SAndrew Thompson * the USB process queue. The first message that is not already queued 27302ac6454SAndrew Thompson * will get queued. If both messages are already queued the one queued 27402ac6454SAndrew Thompson * last will be removed from the queue and queued in the end. The USB 27502ac6454SAndrew Thompson * process mutex must be locked when calling this function. This 27602ac6454SAndrew Thompson * function exploits the fact that a process can only do one callback 27702ac6454SAndrew Thompson * at a time. The message that was queued is returned. 27802ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 27902ac6454SAndrew Thompson void * 280a593f6b8SAndrew Thompson usb_proc_msignal(struct usb_process *up, void *_pm0, void *_pm1) 28102ac6454SAndrew Thompson { 282760bc48eSAndrew Thompson struct usb_proc_msg *pm0 = _pm0; 283760bc48eSAndrew Thompson struct usb_proc_msg *pm1 = _pm1; 284760bc48eSAndrew Thompson struct usb_proc_msg *pm2; 285f9cb546cSAndrew Thompson usb_size_t d; 28602ac6454SAndrew Thompson uint8_t t; 28702ac6454SAndrew Thompson 28802ac6454SAndrew Thompson /* check if gone, return dummy value */ 28902ac6454SAndrew Thompson if (up->up_gone) 29002ac6454SAndrew Thompson return (_pm0); 29102ac6454SAndrew Thompson 29202ac6454SAndrew Thompson mtx_assert(up->up_mtx, MA_OWNED); 29302ac6454SAndrew Thompson 29402ac6454SAndrew Thompson t = 0; 29502ac6454SAndrew Thompson 29602ac6454SAndrew Thompson if (pm0->pm_qentry.tqe_prev) { 29702ac6454SAndrew Thompson t |= 1; 29802ac6454SAndrew Thompson } 29902ac6454SAndrew Thompson if (pm1->pm_qentry.tqe_prev) { 30002ac6454SAndrew Thompson t |= 2; 30102ac6454SAndrew Thompson } 30202ac6454SAndrew Thompson if (t == 0) { 30302ac6454SAndrew Thompson /* 30402ac6454SAndrew Thompson * No entries are queued. Queue "pm0" and use the existing 30502ac6454SAndrew Thompson * message number. 30602ac6454SAndrew Thompson */ 30702ac6454SAndrew Thompson pm2 = pm0; 30802ac6454SAndrew Thompson } else if (t == 1) { 30902ac6454SAndrew Thompson /* Check if we need to increment the message number. */ 31002ac6454SAndrew Thompson if (pm0->pm_num == up->up_msg_num) { 31102ac6454SAndrew Thompson up->up_msg_num++; 31202ac6454SAndrew Thompson } 31302ac6454SAndrew Thompson pm2 = pm1; 31402ac6454SAndrew Thompson } else if (t == 2) { 31502ac6454SAndrew Thompson /* Check if we need to increment the message number. */ 31602ac6454SAndrew Thompson if (pm1->pm_num == up->up_msg_num) { 31702ac6454SAndrew Thompson up->up_msg_num++; 31802ac6454SAndrew Thompson } 31902ac6454SAndrew Thompson pm2 = pm0; 32002ac6454SAndrew Thompson } else if (t == 3) { 32102ac6454SAndrew Thompson /* 32202ac6454SAndrew Thompson * Both entries are queued. Re-queue the entry closest to 32302ac6454SAndrew Thompson * the end. 32402ac6454SAndrew Thompson */ 32502ac6454SAndrew Thompson d = (pm1->pm_num - pm0->pm_num); 32602ac6454SAndrew Thompson 32702ac6454SAndrew Thompson /* Check sign after subtraction */ 32802ac6454SAndrew Thompson if (d & 0x80000000) { 32902ac6454SAndrew Thompson pm2 = pm0; 33002ac6454SAndrew Thompson } else { 33102ac6454SAndrew Thompson pm2 = pm1; 33202ac6454SAndrew Thompson } 33302ac6454SAndrew Thompson 33402ac6454SAndrew Thompson TAILQ_REMOVE(&up->up_qhead, pm2, pm_qentry); 33502ac6454SAndrew Thompson } else { 33602ac6454SAndrew Thompson pm2 = NULL; /* panic - should not happen */ 33702ac6454SAndrew Thompson } 33802ac6454SAndrew Thompson 33902ac6454SAndrew Thompson DPRINTF(" t=%u, num=%u\n", t, up->up_msg_num); 34002ac6454SAndrew Thompson 34102ac6454SAndrew Thompson /* Put message last on queue */ 34202ac6454SAndrew Thompson 34302ac6454SAndrew Thompson pm2->pm_num = up->up_msg_num; 34402ac6454SAndrew Thompson TAILQ_INSERT_TAIL(&up->up_qhead, pm2, pm_qentry); 34502ac6454SAndrew Thompson 34602ac6454SAndrew Thompson /* Check if we need to wakeup the USB process. */ 34702ac6454SAndrew Thompson 34802ac6454SAndrew Thompson if (up->up_msleep) { 34902ac6454SAndrew Thompson up->up_msleep = 0; /* save "cv_signal()" calls */ 3508437751dSAndrew Thompson cv_signal(&up->up_cv); 35102ac6454SAndrew Thompson } 35202ac6454SAndrew Thompson return (pm2); 35302ac6454SAndrew Thompson } 35402ac6454SAndrew Thompson 35502ac6454SAndrew Thompson /*------------------------------------------------------------------------* 356a593f6b8SAndrew Thompson * usb_proc_is_gone 35702ac6454SAndrew Thompson * 35802ac6454SAndrew Thompson * Return values: 35902ac6454SAndrew Thompson * 0: USB process is running 36002ac6454SAndrew Thompson * Else: USB process is tearing down 36102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 36202ac6454SAndrew Thompson uint8_t 363a593f6b8SAndrew Thompson usb_proc_is_gone(struct usb_process *up) 36402ac6454SAndrew Thompson { 36502ac6454SAndrew Thompson if (up->up_gone) 36602ac6454SAndrew Thompson return (1); 36702ac6454SAndrew Thompson 3680c38ca8cSHans Petter Selasky /* 3690c38ca8cSHans Petter Selasky * Allow calls when up_mtx is NULL, before the USB process 3700c38ca8cSHans Petter Selasky * structure is initialised. 3710c38ca8cSHans Petter Selasky */ 3720c38ca8cSHans Petter Selasky if (up->up_mtx != NULL) 37302ac6454SAndrew Thompson mtx_assert(up->up_mtx, MA_OWNED); 37402ac6454SAndrew Thompson return (0); 37502ac6454SAndrew Thompson } 37602ac6454SAndrew Thompson 37702ac6454SAndrew Thompson /*------------------------------------------------------------------------* 378a593f6b8SAndrew Thompson * usb_proc_mwait 37902ac6454SAndrew Thompson * 38002ac6454SAndrew Thompson * This function will return when the USB process message pointed to 38102ac6454SAndrew Thompson * by "pm" is no longer on a queue. This function must be called 38202ac6454SAndrew Thompson * having "up->up_mtx" locked. 38302ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 38402ac6454SAndrew Thompson void 385a593f6b8SAndrew Thompson usb_proc_mwait(struct usb_process *up, void *_pm0, void *_pm1) 38602ac6454SAndrew Thompson { 387760bc48eSAndrew Thompson struct usb_proc_msg *pm0 = _pm0; 388760bc48eSAndrew Thompson struct usb_proc_msg *pm1 = _pm1; 38902ac6454SAndrew Thompson 39002ac6454SAndrew Thompson /* check if gone */ 39102ac6454SAndrew Thompson if (up->up_gone) 39202ac6454SAndrew Thompson return; 39302ac6454SAndrew Thompson 39402ac6454SAndrew Thompson mtx_assert(up->up_mtx, MA_OWNED); 39502ac6454SAndrew Thompson 39602ac6454SAndrew Thompson if (up->up_curtd == curthread) { 39702ac6454SAndrew Thompson /* Just remove the messages from the queue. */ 39802ac6454SAndrew Thompson if (pm0->pm_qentry.tqe_prev) { 39902ac6454SAndrew Thompson TAILQ_REMOVE(&up->up_qhead, pm0, pm_qentry); 40002ac6454SAndrew Thompson pm0->pm_qentry.tqe_prev = NULL; 40102ac6454SAndrew Thompson } 40202ac6454SAndrew Thompson if (pm1->pm_qentry.tqe_prev) { 40302ac6454SAndrew Thompson TAILQ_REMOVE(&up->up_qhead, pm1, pm_qentry); 40402ac6454SAndrew Thompson pm1->pm_qentry.tqe_prev = NULL; 40502ac6454SAndrew Thompson } 40602ac6454SAndrew Thompson } else 40702ac6454SAndrew Thompson while (pm0->pm_qentry.tqe_prev || 40802ac6454SAndrew Thompson pm1->pm_qentry.tqe_prev) { 40902ac6454SAndrew Thompson /* check if config thread is gone */ 41002ac6454SAndrew Thompson if (up->up_gone) 41102ac6454SAndrew Thompson break; 41202ac6454SAndrew Thompson up->up_dsleep = 1; 4138437751dSAndrew Thompson cv_wait(&up->up_drain, up->up_mtx); 41402ac6454SAndrew Thompson } 41502ac6454SAndrew Thompson } 41602ac6454SAndrew Thompson 41702ac6454SAndrew Thompson /*------------------------------------------------------------------------* 418a593f6b8SAndrew Thompson * usb_proc_drain 41902ac6454SAndrew Thompson * 42002ac6454SAndrew Thompson * This function will tear down an USB process, waiting for the 42102ac6454SAndrew Thompson * currently executing command to return. 42202ac6454SAndrew Thompson * 42302ac6454SAndrew Thompson * NOTE: If the structure pointed to by "up" is all zero, 42402ac6454SAndrew Thompson * this function does nothing. 42502ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 42602ac6454SAndrew Thompson void 427a593f6b8SAndrew Thompson usb_proc_drain(struct usb_process *up) 42802ac6454SAndrew Thompson { 42902ac6454SAndrew Thompson /* check if not initialised */ 43002ac6454SAndrew Thompson if (up->up_mtx == NULL) 43102ac6454SAndrew Thompson return; 43202ac6454SAndrew Thompson /* handle special case with Giant */ 43302ac6454SAndrew Thompson if (up->up_mtx != &Giant) 43402ac6454SAndrew Thompson mtx_assert(up->up_mtx, MA_NOTOWNED); 43502ac6454SAndrew Thompson 43602ac6454SAndrew Thompson mtx_lock(up->up_mtx); 43702ac6454SAndrew Thompson 43802ac6454SAndrew Thompson /* Set the gone flag */ 43902ac6454SAndrew Thompson 44002ac6454SAndrew Thompson up->up_gone = 1; 44102ac6454SAndrew Thompson 44202ac6454SAndrew Thompson while (up->up_ptr) { 44302ac6454SAndrew Thompson 44402ac6454SAndrew Thompson /* Check if we need to wakeup the USB process */ 44502ac6454SAndrew Thompson 44602ac6454SAndrew Thompson if (up->up_msleep || up->up_csleep) { 44702ac6454SAndrew Thompson up->up_msleep = 0; 44802ac6454SAndrew Thompson up->up_csleep = 0; 4498437751dSAndrew Thompson cv_signal(&up->up_cv); 45002ac6454SAndrew Thompson } 45102ac6454SAndrew Thompson /* Check if we are still cold booted */ 45202ac6454SAndrew Thompson 45302ac6454SAndrew Thompson if (cold) { 45402ac6454SAndrew Thompson USB_THREAD_SUSPEND(up->up_ptr); 45502ac6454SAndrew Thompson printf("WARNING: A USB process has " 456767cb2e2SAndrew Thompson "been left suspended\n"); 45702ac6454SAndrew Thompson break; 45802ac6454SAndrew Thompson } 4598437751dSAndrew Thompson cv_wait(&up->up_cv, up->up_mtx); 46002ac6454SAndrew Thompson } 46102ac6454SAndrew Thompson /* Check if someone is waiting - should not happen */ 46202ac6454SAndrew Thompson 46302ac6454SAndrew Thompson if (up->up_dsleep) { 46402ac6454SAndrew Thompson up->up_dsleep = 0; 4658437751dSAndrew Thompson cv_broadcast(&up->up_drain); 46602ac6454SAndrew Thompson DPRINTF("WARNING: Someone is waiting " 46702ac6454SAndrew Thompson "for USB process drain!\n"); 46802ac6454SAndrew Thompson } 46902ac6454SAndrew Thompson mtx_unlock(up->up_mtx); 47002ac6454SAndrew Thompson } 471cb18f7d1SAlfred Perlstein 472cb18f7d1SAlfred Perlstein /*------------------------------------------------------------------------* 473cb18f7d1SAlfred Perlstein * usb_proc_rewakeup 474cb18f7d1SAlfred Perlstein * 4756bccea7cSRebecca Cran * This function is called to re-wakeup the given USB 476cb18f7d1SAlfred Perlstein * process. This usually happens after that the USB system has been in 477cb18f7d1SAlfred Perlstein * polling mode, like during a panic. This function must be called 478cb18f7d1SAlfred Perlstein * having "up->up_mtx" locked. 479cb18f7d1SAlfred Perlstein *------------------------------------------------------------------------*/ 480cb18f7d1SAlfred Perlstein void 481cb18f7d1SAlfred Perlstein usb_proc_rewakeup(struct usb_process *up) 482cb18f7d1SAlfred Perlstein { 483cb18f7d1SAlfred Perlstein /* check if not initialised */ 484cb18f7d1SAlfred Perlstein if (up->up_mtx == NULL) 485cb18f7d1SAlfred Perlstein return; 486cb18f7d1SAlfred Perlstein /* check if gone */ 487cb18f7d1SAlfred Perlstein if (up->up_gone) 488cb18f7d1SAlfred Perlstein return; 489cb18f7d1SAlfred Perlstein 490cb18f7d1SAlfred Perlstein mtx_assert(up->up_mtx, MA_OWNED); 491cb18f7d1SAlfred Perlstein 492cb18f7d1SAlfred Perlstein if (up->up_msleep == 0) { 493cb18f7d1SAlfred Perlstein /* re-wakeup */ 494cb18f7d1SAlfred Perlstein cv_signal(&up->up_cv); 495cb18f7d1SAlfred Perlstein } 496cb18f7d1SAlfred Perlstein } 497