19454b2d8SWarner Losh /*- 2425f9fdaSStefan Eßer * Copyright (c) 1997, Stefan Esser <se@freebsd.org> 3425f9fdaSStefan Eßer * All rights reserved. 4425f9fdaSStefan Eßer * 5425f9fdaSStefan Eßer * Redistribution and use in source and binary forms, with or without 6425f9fdaSStefan Eßer * modification, are permitted provided that the following conditions 7425f9fdaSStefan Eßer * are met: 8425f9fdaSStefan Eßer * 1. Redistributions of source code must retain the above copyright 9425f9fdaSStefan Eßer * notice unmodified, this list of conditions, and the following 10425f9fdaSStefan Eßer * disclaimer. 11425f9fdaSStefan Eßer * 2. Redistributions in binary form must reproduce the above copyright 12425f9fdaSStefan Eßer * notice, this list of conditions and the following disclaimer in the 13425f9fdaSStefan Eßer * documentation and/or other materials provided with the distribution. 14425f9fdaSStefan Eßer * 15425f9fdaSStefan Eßer * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 16425f9fdaSStefan Eßer * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 17425f9fdaSStefan Eßer * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 18425f9fdaSStefan Eßer * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 19425f9fdaSStefan Eßer * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 20425f9fdaSStefan Eßer * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 21425f9fdaSStefan Eßer * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 22425f9fdaSStefan Eßer * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 23425f9fdaSStefan Eßer * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 24425f9fdaSStefan Eßer * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 25425f9fdaSStefan Eßer */ 26425f9fdaSStefan Eßer 27677b542eSDavid E. O'Brien #include <sys/cdefs.h> 28677b542eSDavid E. O'Brien __FBSDID("$FreeBSD$"); 293900ddb2SDoug Rabson 308b201c42SJohn Baldwin #include "opt_ddb.h" 31b7627840SKonstantin Belousov #include "opt_kstack_usage_prof.h" 328b201c42SJohn Baldwin 331c5bb3eaSPeter Wemm #include <sys/param.h> 349a94c9c5SJohn Baldwin #include <sys/bus.h> 35c11110eaSAlfred Perlstein #include <sys/conf.h> 369b33b154SJeff Roberson #include <sys/cpuset.h> 379a94c9c5SJohn Baldwin #include <sys/rtprio.h> 38425f9fdaSStefan Eßer #include <sys/systm.h> 3968352337SDoug Rabson #include <sys/interrupt.h> 401931cf94SJohn Baldwin #include <sys/kernel.h> 411931cf94SJohn Baldwin #include <sys/kthread.h> 421931cf94SJohn Baldwin #include <sys/ktr.h> 4305b2c96fSBruce Evans #include <sys/limits.h> 44f34fa851SJohn Baldwin #include <sys/lock.h> 451931cf94SJohn Baldwin #include <sys/malloc.h> 4635e0e5b3SJohn Baldwin #include <sys/mutex.h> 47cebc7fb1SJohn Baldwin #include <sys/priv.h> 481931cf94SJohn Baldwin #include <sys/proc.h> 493e5da754SJohn Baldwin #include <sys/random.h> 50b4151f71SJohn Baldwin #include <sys/resourcevar.h> 5163710c4dSJohn Baldwin #include <sys/sched.h> 52eaf86d16SJohn Baldwin #include <sys/smp.h> 53d279178dSThomas Moestl #include <sys/sysctl.h> 546205924aSKip Macy #include <sys/syslog.h> 551931cf94SJohn Baldwin #include <sys/unistd.h> 561931cf94SJohn Baldwin #include <sys/vmmeter.h> 571931cf94SJohn Baldwin #include <machine/atomic.h> 581931cf94SJohn Baldwin #include <machine/cpu.h> 598088699fSJohn Baldwin #include <machine/md_var.h> 60b4151f71SJohn Baldwin #include <machine/stdarg.h> 618b201c42SJohn Baldwin #ifdef DDB 628b201c42SJohn Baldwin #include <ddb/ddb.h> 638b201c42SJohn Baldwin #include <ddb/db_sym.h> 648b201c42SJohn Baldwin #endif 65425f9fdaSStefan Eßer 66e0f66ef8SJohn Baldwin /* 67e0f66ef8SJohn Baldwin * Describe an interrupt thread. There is one of these per interrupt event. 68e0f66ef8SJohn Baldwin */ 69e0f66ef8SJohn Baldwin struct intr_thread { 70e0f66ef8SJohn Baldwin struct intr_event *it_event; 71e0f66ef8SJohn Baldwin struct thread *it_thread; /* Kernel thread. */ 72e0f66ef8SJohn Baldwin int it_flags; /* (j) IT_* flags. */ 73e0f66ef8SJohn Baldwin int it_need; /* Needs service. */ 743e5da754SJohn Baldwin }; 753e5da754SJohn Baldwin 76e0f66ef8SJohn Baldwin /* Interrupt thread flags kept in it_flags */ 77e0f66ef8SJohn Baldwin #define IT_DEAD 0x000001 /* Thread is waiting to exit. */ 78e4cd31ddSJeff Roberson #define IT_WAIT 0x000002 /* Thread is waiting for completion. */ 79e0f66ef8SJohn Baldwin 80e0f66ef8SJohn Baldwin struct intr_entropy { 81e0f66ef8SJohn Baldwin struct thread *td; 82e0f66ef8SJohn Baldwin uintptr_t event; 83e0f66ef8SJohn Baldwin }; 84e0f66ef8SJohn Baldwin 85e0f66ef8SJohn Baldwin struct intr_event *clk_intr_event; 86e0f66ef8SJohn Baldwin struct intr_event *tty_intr_event; 877b1fe905SBruce Evans void *vm_ih; 887ab24ea3SJulian Elischer struct proc *intrproc; 891931cf94SJohn Baldwin 90b4151f71SJohn Baldwin static MALLOC_DEFINE(M_ITHREAD, "ithread", "Interrupt Threads"); 91b4151f71SJohn Baldwin 920ae62c18SNate Lawson static int intr_storm_threshold = 1000; 93af3b2549SHans Petter Selasky SYSCTL_INT(_hw, OID_AUTO, intr_storm_threshold, CTLFLAG_RWTUN, 947870c3c6SJohn Baldwin &intr_storm_threshold, 0, 957b1fe905SBruce Evans "Number of consecutive interrupts before storm protection is enabled"); 96e0f66ef8SJohn Baldwin static TAILQ_HEAD(, intr_event) event_list = 97e0f66ef8SJohn Baldwin TAILQ_HEAD_INITIALIZER(event_list); 989b33b154SJeff Roberson static struct mtx event_lock; 999b33b154SJeff Roberson MTX_SYSINIT(intr_event_list, &event_lock, "intr event list", MTX_DEF); 1007b1fe905SBruce Evans 101e0f66ef8SJohn Baldwin static void intr_event_update(struct intr_event *ie); 102bafe5a31SPaolo Pisati #ifdef INTR_FILTER 1031ee1b687SJohn Baldwin static int intr_event_schedule_thread(struct intr_event *ie, 1041ee1b687SJohn Baldwin struct intr_thread *ithd); 1051ee1b687SJohn Baldwin static int intr_filter_loop(struct intr_event *ie, 1061ee1b687SJohn Baldwin struct trapframe *frame, struct intr_thread **ithd); 107bafe5a31SPaolo Pisati static struct intr_thread *ithread_create(const char *name, 108bafe5a31SPaolo Pisati struct intr_handler *ih); 109bafe5a31SPaolo Pisati #else 1101ee1b687SJohn Baldwin static int intr_event_schedule_thread(struct intr_event *ie); 111e0f66ef8SJohn Baldwin static struct intr_thread *ithread_create(const char *name); 112bafe5a31SPaolo Pisati #endif 113e0f66ef8SJohn Baldwin static void ithread_destroy(struct intr_thread *ithread); 114bafe5a31SPaolo Pisati static void ithread_execute_handlers(struct proc *p, 115bafe5a31SPaolo Pisati struct intr_event *ie); 116bafe5a31SPaolo Pisati #ifdef INTR_FILTER 117bafe5a31SPaolo Pisati static void priv_ithread_execute_handler(struct proc *p, 118bafe5a31SPaolo Pisati struct intr_handler *ih); 119bafe5a31SPaolo Pisati #endif 1207b1fe905SBruce Evans static void ithread_loop(void *); 121e0f66ef8SJohn Baldwin static void ithread_update(struct intr_thread *ithd); 1227b1fe905SBruce Evans static void start_softintr(void *); 1237870c3c6SJohn Baldwin 124bc17acb2SJohn Baldwin /* Map an interrupt type to an ithread priority. */ 125b4151f71SJohn Baldwin u_char 126e0f66ef8SJohn Baldwin intr_priority(enum intr_type flags) 1279a94c9c5SJohn Baldwin { 128b4151f71SJohn Baldwin u_char pri; 1299a94c9c5SJohn Baldwin 130b4151f71SJohn Baldwin flags &= (INTR_TYPE_TTY | INTR_TYPE_BIO | INTR_TYPE_NET | 1315a280d9cSPeter Wemm INTR_TYPE_CAM | INTR_TYPE_MISC | INTR_TYPE_CLK | INTR_TYPE_AV); 1329a94c9c5SJohn Baldwin switch (flags) { 133b4151f71SJohn Baldwin case INTR_TYPE_TTY: 134d3305205SJohn Baldwin pri = PI_TTY; 1359a94c9c5SJohn Baldwin break; 1369a94c9c5SJohn Baldwin case INTR_TYPE_BIO: 1379a94c9c5SJohn Baldwin pri = PI_DISK; 1389a94c9c5SJohn Baldwin break; 1399a94c9c5SJohn Baldwin case INTR_TYPE_NET: 1409a94c9c5SJohn Baldwin pri = PI_NET; 1419a94c9c5SJohn Baldwin break; 1429a94c9c5SJohn Baldwin case INTR_TYPE_CAM: 143d3305205SJohn Baldwin pri = PI_DISK; 1449a94c9c5SJohn Baldwin break; 145d3305205SJohn Baldwin case INTR_TYPE_AV: 1465a280d9cSPeter Wemm pri = PI_AV; 1475a280d9cSPeter Wemm break; 148b4151f71SJohn Baldwin case INTR_TYPE_CLK: 149b4151f71SJohn Baldwin pri = PI_REALTIME; 150b4151f71SJohn Baldwin break; 1519a94c9c5SJohn Baldwin case INTR_TYPE_MISC: 1529a94c9c5SJohn Baldwin pri = PI_DULL; /* don't care */ 1539a94c9c5SJohn Baldwin break; 1549a94c9c5SJohn Baldwin default: 155b4151f71SJohn Baldwin /* We didn't specify an interrupt level. */ 156e0f66ef8SJohn Baldwin panic("intr_priority: no interrupt type in flags"); 1579a94c9c5SJohn Baldwin } 1589a94c9c5SJohn Baldwin 1599a94c9c5SJohn Baldwin return pri; 1609a94c9c5SJohn Baldwin } 1619a94c9c5SJohn Baldwin 162b4151f71SJohn Baldwin /* 163e0f66ef8SJohn Baldwin * Update an ithread based on the associated intr_event. 164b4151f71SJohn Baldwin */ 165b4151f71SJohn Baldwin static void 166e0f66ef8SJohn Baldwin ithread_update(struct intr_thread *ithd) 167b4151f71SJohn Baldwin { 168e0f66ef8SJohn Baldwin struct intr_event *ie; 169b40ce416SJulian Elischer struct thread *td; 170e0f66ef8SJohn Baldwin u_char pri; 1718088699fSJohn Baldwin 172e0f66ef8SJohn Baldwin ie = ithd->it_event; 173e0f66ef8SJohn Baldwin td = ithd->it_thread; 174b4151f71SJohn Baldwin 175e0f66ef8SJohn Baldwin /* Determine the overall priority of this event. */ 176e0f66ef8SJohn Baldwin if (TAILQ_EMPTY(&ie->ie_handlers)) 177e0f66ef8SJohn Baldwin pri = PRI_MAX_ITHD; 178e0f66ef8SJohn Baldwin else 179e0f66ef8SJohn Baldwin pri = TAILQ_FIRST(&ie->ie_handlers)->ih_pri; 180e80fb434SRobert Drehmel 181e0f66ef8SJohn Baldwin /* Update name and priority. */ 1827ab24ea3SJulian Elischer strlcpy(td->td_name, ie->ie_fullname, sizeof(td->td_name)); 18344ad5475SJohn Baldwin #ifdef KTR 18444ad5475SJohn Baldwin sched_clear_tdname(td); 18544ad5475SJohn Baldwin #endif 186982d11f8SJeff Roberson thread_lock(td); 187e0f66ef8SJohn Baldwin sched_prio(td, pri); 188982d11f8SJeff Roberson thread_unlock(td); 189b4151f71SJohn Baldwin } 190e0f66ef8SJohn Baldwin 191e0f66ef8SJohn Baldwin /* 192e0f66ef8SJohn Baldwin * Regenerate the full name of an interrupt event and update its priority. 193e0f66ef8SJohn Baldwin */ 194e0f66ef8SJohn Baldwin static void 195e0f66ef8SJohn Baldwin intr_event_update(struct intr_event *ie) 196e0f66ef8SJohn Baldwin { 197e0f66ef8SJohn Baldwin struct intr_handler *ih; 198e0f66ef8SJohn Baldwin char *last; 199e0f66ef8SJohn Baldwin int missed, space; 200e0f66ef8SJohn Baldwin 201e0f66ef8SJohn Baldwin /* Start off with no entropy and just the name of the event. */ 202e0f66ef8SJohn Baldwin mtx_assert(&ie->ie_lock, MA_OWNED); 203e0f66ef8SJohn Baldwin strlcpy(ie->ie_fullname, ie->ie_name, sizeof(ie->ie_fullname)); 204e0f66ef8SJohn Baldwin ie->ie_flags &= ~IE_ENTROPY; 2050811d60aSJohn Baldwin missed = 0; 206e0f66ef8SJohn Baldwin space = 1; 207e0f66ef8SJohn Baldwin 208e0f66ef8SJohn Baldwin /* Run through all the handlers updating values. */ 209e0f66ef8SJohn Baldwin TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) { 210e0f66ef8SJohn Baldwin if (strlen(ie->ie_fullname) + strlen(ih->ih_name) + 1 < 211e0f66ef8SJohn Baldwin sizeof(ie->ie_fullname)) { 212e0f66ef8SJohn Baldwin strcat(ie->ie_fullname, " "); 213e0f66ef8SJohn Baldwin strcat(ie->ie_fullname, ih->ih_name); 214e0f66ef8SJohn Baldwin space = 0; 2150811d60aSJohn Baldwin } else 2160811d60aSJohn Baldwin missed++; 2170811d60aSJohn Baldwin if (ih->ih_flags & IH_ENTROPY) 218e0f66ef8SJohn Baldwin ie->ie_flags |= IE_ENTROPY; 2190811d60aSJohn Baldwin } 220e0f66ef8SJohn Baldwin 221e0f66ef8SJohn Baldwin /* 222e0f66ef8SJohn Baldwin * If the handler names were too long, add +'s to indicate missing 223e0f66ef8SJohn Baldwin * names. If we run out of room and still have +'s to add, change 224e0f66ef8SJohn Baldwin * the last character from a + to a *. 225e0f66ef8SJohn Baldwin */ 226e0f66ef8SJohn Baldwin last = &ie->ie_fullname[sizeof(ie->ie_fullname) - 2]; 2270811d60aSJohn Baldwin while (missed-- > 0) { 228e0f66ef8SJohn Baldwin if (strlen(ie->ie_fullname) + 1 == sizeof(ie->ie_fullname)) { 229e0f66ef8SJohn Baldwin if (*last == '+') { 230e0f66ef8SJohn Baldwin *last = '*'; 231e0f66ef8SJohn Baldwin break; 232b4151f71SJohn Baldwin } else 233e0f66ef8SJohn Baldwin *last = '+'; 234e0f66ef8SJohn Baldwin } else if (space) { 235e0f66ef8SJohn Baldwin strcat(ie->ie_fullname, " +"); 236e0f66ef8SJohn Baldwin space = 0; 237e0f66ef8SJohn Baldwin } else 238e0f66ef8SJohn Baldwin strcat(ie->ie_fullname, "+"); 239b4151f71SJohn Baldwin } 240e0f66ef8SJohn Baldwin 241e0f66ef8SJohn Baldwin /* 242e0f66ef8SJohn Baldwin * If this event has an ithread, update it's priority and 243e0f66ef8SJohn Baldwin * name. 244e0f66ef8SJohn Baldwin */ 245e0f66ef8SJohn Baldwin if (ie->ie_thread != NULL) 246e0f66ef8SJohn Baldwin ithread_update(ie->ie_thread); 247e0f66ef8SJohn Baldwin CTR2(KTR_INTR, "%s: updated %s", __func__, ie->ie_fullname); 248b4151f71SJohn Baldwin } 249b4151f71SJohn Baldwin 250b4151f71SJohn Baldwin int 2519b33b154SJeff Roberson intr_event_create(struct intr_event **event, void *source, int flags, int irq, 2521ee1b687SJohn Baldwin void (*pre_ithread)(void *), void (*post_ithread)(void *), 253066da805SAdrian Chadd void (*post_filter)(void *), int (*assign_cpu)(void *, int), 2541ee1b687SJohn Baldwin const char *fmt, ...) 255bafe5a31SPaolo Pisati { 256bafe5a31SPaolo Pisati struct intr_event *ie; 257bafe5a31SPaolo Pisati va_list ap; 258bafe5a31SPaolo Pisati 259bafe5a31SPaolo Pisati /* The only valid flag during creation is IE_SOFT. */ 260bafe5a31SPaolo Pisati if ((flags & ~IE_SOFT) != 0) 261bafe5a31SPaolo Pisati return (EINVAL); 262bafe5a31SPaolo Pisati ie = malloc(sizeof(struct intr_event), M_ITHREAD, M_WAITOK | M_ZERO); 263bafe5a31SPaolo Pisati ie->ie_source = source; 2641ee1b687SJohn Baldwin ie->ie_pre_ithread = pre_ithread; 2651ee1b687SJohn Baldwin ie->ie_post_ithread = post_ithread; 2661ee1b687SJohn Baldwin ie->ie_post_filter = post_filter; 2676d2d1c04SJohn Baldwin ie->ie_assign_cpu = assign_cpu; 268bafe5a31SPaolo Pisati ie->ie_flags = flags; 2699b33b154SJeff Roberson ie->ie_irq = irq; 270eaf86d16SJohn Baldwin ie->ie_cpu = NOCPU; 271bafe5a31SPaolo Pisati TAILQ_INIT(&ie->ie_handlers); 272bafe5a31SPaolo Pisati mtx_init(&ie->ie_lock, "intr event", NULL, MTX_DEF); 273bafe5a31SPaolo Pisati 274bafe5a31SPaolo Pisati va_start(ap, fmt); 275bafe5a31SPaolo Pisati vsnprintf(ie->ie_name, sizeof(ie->ie_name), fmt, ap); 276bafe5a31SPaolo Pisati va_end(ap); 277bafe5a31SPaolo Pisati strlcpy(ie->ie_fullname, ie->ie_name, sizeof(ie->ie_fullname)); 2789b33b154SJeff Roberson mtx_lock(&event_lock); 279bafe5a31SPaolo Pisati TAILQ_INSERT_TAIL(&event_list, ie, ie_list); 2809b33b154SJeff Roberson mtx_unlock(&event_lock); 281bafe5a31SPaolo Pisati if (event != NULL) 282bafe5a31SPaolo Pisati *event = ie; 283bafe5a31SPaolo Pisati CTR2(KTR_INTR, "%s: created %s", __func__, ie->ie_name); 284bafe5a31SPaolo Pisati return (0); 285bafe5a31SPaolo Pisati } 286b4151f71SJohn Baldwin 287eaf86d16SJohn Baldwin /* 288eaf86d16SJohn Baldwin * Bind an interrupt event to the specified CPU. Note that not all 289eaf86d16SJohn Baldwin * platforms support binding an interrupt to a CPU. For those 290eaf86d16SJohn Baldwin * platforms this request will fail. For supported platforms, any 291eaf86d16SJohn Baldwin * associated ithreads as well as the primary interrupt context will 292eaf86d16SJohn Baldwin * be bound to the specificed CPU. Using a cpu id of NOCPU unbinds 293eaf86d16SJohn Baldwin * the interrupt event. 294eaf86d16SJohn Baldwin */ 295eaf86d16SJohn Baldwin int 296066da805SAdrian Chadd intr_event_bind(struct intr_event *ie, int cpu) 297eaf86d16SJohn Baldwin { 2989b33b154SJeff Roberson lwpid_t id; 299eaf86d16SJohn Baldwin int error; 300eaf86d16SJohn Baldwin 301eaf86d16SJohn Baldwin /* Need a CPU to bind to. */ 302eaf86d16SJohn Baldwin if (cpu != NOCPU && CPU_ABSENT(cpu)) 303eaf86d16SJohn Baldwin return (EINVAL); 304eaf86d16SJohn Baldwin 305eaf86d16SJohn Baldwin if (ie->ie_assign_cpu == NULL) 306eaf86d16SJohn Baldwin return (EOPNOTSUPP); 307cebc7fb1SJohn Baldwin 308cebc7fb1SJohn Baldwin error = priv_check(curthread, PRIV_SCHED_CPUSET_INTR); 309cebc7fb1SJohn Baldwin if (error) 310cebc7fb1SJohn Baldwin return (error); 311cebc7fb1SJohn Baldwin 3129b33b154SJeff Roberson /* 313cebc7fb1SJohn Baldwin * If we have any ithreads try to set their mask first to verify 314cebc7fb1SJohn Baldwin * permissions, etc. 3159b33b154SJeff Roberson */ 316eaf86d16SJohn Baldwin mtx_lock(&ie->ie_lock); 3179b33b154SJeff Roberson if (ie->ie_thread != NULL) { 3189b33b154SJeff Roberson id = ie->ie_thread->it_thread->td_tid; 319eaf86d16SJohn Baldwin mtx_unlock(&ie->ie_lock); 32081198539SAlexander V. Chernikov error = cpuset_setithread(id, cpu); 3219b33b154SJeff Roberson if (error) 3229b33b154SJeff Roberson return (error); 3239b33b154SJeff Roberson } else 324eaf86d16SJohn Baldwin mtx_unlock(&ie->ie_lock); 325eaf86d16SJohn Baldwin error = ie->ie_assign_cpu(ie->ie_source, cpu); 326cebc7fb1SJohn Baldwin if (error) { 327cebc7fb1SJohn Baldwin mtx_lock(&ie->ie_lock); 328cebc7fb1SJohn Baldwin if (ie->ie_thread != NULL) { 32981198539SAlexander V. Chernikov cpu = ie->ie_cpu; 330cebc7fb1SJohn Baldwin id = ie->ie_thread->it_thread->td_tid; 331cebc7fb1SJohn Baldwin mtx_unlock(&ie->ie_lock); 33281198539SAlexander V. Chernikov (void)cpuset_setithread(id, cpu); 333cebc7fb1SJohn Baldwin } else 334cebc7fb1SJohn Baldwin mtx_unlock(&ie->ie_lock); 335eaf86d16SJohn Baldwin return (error); 336cebc7fb1SJohn Baldwin } 337cebc7fb1SJohn Baldwin 338eaf86d16SJohn Baldwin mtx_lock(&ie->ie_lock); 339eaf86d16SJohn Baldwin ie->ie_cpu = cpu; 3409b33b154SJeff Roberson mtx_unlock(&ie->ie_lock); 3419b33b154SJeff Roberson 3429b33b154SJeff Roberson return (error); 3439b33b154SJeff Roberson } 3449b33b154SJeff Roberson 3459b33b154SJeff Roberson static struct intr_event * 3469b33b154SJeff Roberson intr_lookup(int irq) 3479b33b154SJeff Roberson { 3489b33b154SJeff Roberson struct intr_event *ie; 3499b33b154SJeff Roberson 3509b33b154SJeff Roberson mtx_lock(&event_lock); 3519b33b154SJeff Roberson TAILQ_FOREACH(ie, &event_list, ie_list) 3529b33b154SJeff Roberson if (ie->ie_irq == irq && 3539b33b154SJeff Roberson (ie->ie_flags & IE_SOFT) == 0 && 3549b33b154SJeff Roberson TAILQ_FIRST(&ie->ie_handlers) != NULL) 3559b33b154SJeff Roberson break; 3569b33b154SJeff Roberson mtx_unlock(&event_lock); 3579b33b154SJeff Roberson return (ie); 3589b33b154SJeff Roberson } 3599b33b154SJeff Roberson 3609b33b154SJeff Roberson int 3619b33b154SJeff Roberson intr_setaffinity(int irq, void *m) 3629b33b154SJeff Roberson { 3639b33b154SJeff Roberson struct intr_event *ie; 3649b33b154SJeff Roberson cpuset_t *mask; 3653fe93b94SAdrian Chadd int cpu, n; 3669b33b154SJeff Roberson 3679b33b154SJeff Roberson mask = m; 3689b33b154SJeff Roberson cpu = NOCPU; 3699b33b154SJeff Roberson /* 3709b33b154SJeff Roberson * If we're setting all cpus we can unbind. Otherwise make sure 3719b33b154SJeff Roberson * only one cpu is in the set. 3729b33b154SJeff Roberson */ 3739b33b154SJeff Roberson if (CPU_CMP(cpuset_root, mask)) { 3749b33b154SJeff Roberson for (n = 0; n < CPU_SETSIZE; n++) { 3759b33b154SJeff Roberson if (!CPU_ISSET(n, mask)) 3769b33b154SJeff Roberson continue; 3779b33b154SJeff Roberson if (cpu != NOCPU) 3789b33b154SJeff Roberson return (EINVAL); 3793fe93b94SAdrian Chadd cpu = n; 3809b33b154SJeff Roberson } 3819b33b154SJeff Roberson } 3829b33b154SJeff Roberson ie = intr_lookup(irq); 3839b33b154SJeff Roberson if (ie == NULL) 3849b33b154SJeff Roberson return (ESRCH); 3859bd55acfSJohn Baldwin return (intr_event_bind(ie, cpu)); 3869b33b154SJeff Roberson } 3879b33b154SJeff Roberson 3889b33b154SJeff Roberson int 3899b33b154SJeff Roberson intr_getaffinity(int irq, void *m) 3909b33b154SJeff Roberson { 3919b33b154SJeff Roberson struct intr_event *ie; 3929b33b154SJeff Roberson cpuset_t *mask; 3939b33b154SJeff Roberson 3949b33b154SJeff Roberson mask = m; 3959b33b154SJeff Roberson ie = intr_lookup(irq); 3969b33b154SJeff Roberson if (ie == NULL) 3979b33b154SJeff Roberson return (ESRCH); 3989b33b154SJeff Roberson CPU_ZERO(mask); 3999b33b154SJeff Roberson mtx_lock(&ie->ie_lock); 4009b33b154SJeff Roberson if (ie->ie_cpu == NOCPU) 4019b33b154SJeff Roberson CPU_COPY(cpuset_root, mask); 4029b33b154SJeff Roberson else 4039b33b154SJeff Roberson CPU_SET(ie->ie_cpu, mask); 404eaf86d16SJohn Baldwin mtx_unlock(&ie->ie_lock); 405eaf86d16SJohn Baldwin return (0); 406eaf86d16SJohn Baldwin } 407eaf86d16SJohn Baldwin 408b4151f71SJohn Baldwin int 409e0f66ef8SJohn Baldwin intr_event_destroy(struct intr_event *ie) 410b4151f71SJohn Baldwin { 411b4151f71SJohn Baldwin 4129b33b154SJeff Roberson mtx_lock(&event_lock); 413e0f66ef8SJohn Baldwin mtx_lock(&ie->ie_lock); 414e0f66ef8SJohn Baldwin if (!TAILQ_EMPTY(&ie->ie_handlers)) { 415e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 4169b33b154SJeff Roberson mtx_unlock(&event_lock); 417e0f66ef8SJohn Baldwin return (EBUSY); 4184d29cb2dSJohn Baldwin } 419e0f66ef8SJohn Baldwin TAILQ_REMOVE(&event_list, ie, ie_list); 4209477358dSJohn Baldwin #ifndef notyet 4219477358dSJohn Baldwin if (ie->ie_thread != NULL) { 4229477358dSJohn Baldwin ithread_destroy(ie->ie_thread); 4239477358dSJohn Baldwin ie->ie_thread = NULL; 4249477358dSJohn Baldwin } 4259477358dSJohn Baldwin #endif 426e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 4279b33b154SJeff Roberson mtx_unlock(&event_lock); 428e0f66ef8SJohn Baldwin mtx_destroy(&ie->ie_lock); 429e0f66ef8SJohn Baldwin free(ie, M_ITHREAD); 430e0f66ef8SJohn Baldwin return (0); 431e0f66ef8SJohn Baldwin } 432e0f66ef8SJohn Baldwin 433bafe5a31SPaolo Pisati #ifndef INTR_FILTER 434e0f66ef8SJohn Baldwin static struct intr_thread * 435e0f66ef8SJohn Baldwin ithread_create(const char *name) 436e0f66ef8SJohn Baldwin { 437e0f66ef8SJohn Baldwin struct intr_thread *ithd; 438e0f66ef8SJohn Baldwin struct thread *td; 439e0f66ef8SJohn Baldwin int error; 440e0f66ef8SJohn Baldwin 441e0f66ef8SJohn Baldwin ithd = malloc(sizeof(struct intr_thread), M_ITHREAD, M_WAITOK | M_ZERO); 442e0f66ef8SJohn Baldwin 4437ab24ea3SJulian Elischer error = kproc_kthread_add(ithread_loop, ithd, &intrproc, 4447ab24ea3SJulian Elischer &td, RFSTOPPED | RFHIGHPID, 4459ef95d01SJulian Elischer 0, "intr", "%s", name); 446e0f66ef8SJohn Baldwin if (error) 4473745c395SJulian Elischer panic("kproc_create() failed with %d", error); 448982d11f8SJeff Roberson thread_lock(td); 449ad1e7d28SJulian Elischer sched_class(td, PRI_ITHD); 450e0f66ef8SJohn Baldwin TD_SET_IWAIT(td); 451982d11f8SJeff Roberson thread_unlock(td); 452e0f66ef8SJohn Baldwin td->td_pflags |= TDP_ITHREAD; 453e0f66ef8SJohn Baldwin ithd->it_thread = td; 454e0f66ef8SJohn Baldwin CTR2(KTR_INTR, "%s: created %s", __func__, name); 455e0f66ef8SJohn Baldwin return (ithd); 456e0f66ef8SJohn Baldwin } 457bafe5a31SPaolo Pisati #else 458bafe5a31SPaolo Pisati static struct intr_thread * 459bafe5a31SPaolo Pisati ithread_create(const char *name, struct intr_handler *ih) 460bafe5a31SPaolo Pisati { 461bafe5a31SPaolo Pisati struct intr_thread *ithd; 462bafe5a31SPaolo Pisati struct thread *td; 463bafe5a31SPaolo Pisati int error; 464bafe5a31SPaolo Pisati 465bafe5a31SPaolo Pisati ithd = malloc(sizeof(struct intr_thread), M_ITHREAD, M_WAITOK | M_ZERO); 466bafe5a31SPaolo Pisati 467539976ffSJulian Elischer error = kproc_kthread_add(ithread_loop, ih, &intrproc, 4687ab24ea3SJulian Elischer &td, RFSTOPPED | RFHIGHPID, 4699ef95d01SJulian Elischer 0, "intr", "%s", name); 470bafe5a31SPaolo Pisati if (error) 4713745c395SJulian Elischer panic("kproc_create() failed with %d", error); 472982d11f8SJeff Roberson thread_lock(td); 473bafe5a31SPaolo Pisati sched_class(td, PRI_ITHD); 474bafe5a31SPaolo Pisati TD_SET_IWAIT(td); 475982d11f8SJeff Roberson thread_unlock(td); 476bafe5a31SPaolo Pisati td->td_pflags |= TDP_ITHREAD; 477bafe5a31SPaolo Pisati ithd->it_thread = td; 478bafe5a31SPaolo Pisati CTR2(KTR_INTR, "%s: created %s", __func__, name); 479bafe5a31SPaolo Pisati return (ithd); 480bafe5a31SPaolo Pisati } 481bafe5a31SPaolo Pisati #endif 482e0f66ef8SJohn Baldwin 483e0f66ef8SJohn Baldwin static void 484e0f66ef8SJohn Baldwin ithread_destroy(struct intr_thread *ithread) 485e0f66ef8SJohn Baldwin { 486e0f66ef8SJohn Baldwin struct thread *td; 487e0f66ef8SJohn Baldwin 488bb141be1SScott Long CTR2(KTR_INTR, "%s: killing %s", __func__, ithread->it_event->ie_name); 489e0f66ef8SJohn Baldwin td = ithread->it_thread; 490982d11f8SJeff Roberson thread_lock(td); 491e0f66ef8SJohn Baldwin ithread->it_flags |= IT_DEAD; 49271fad9fdSJulian Elischer if (TD_AWAITING_INTR(td)) { 49371fad9fdSJulian Elischer TD_CLR_IWAIT(td); 494f0393f06SJeff Roberson sched_add(td, SRQ_INTR); 495b4151f71SJohn Baldwin } 496982d11f8SJeff Roberson thread_unlock(td); 497b4151f71SJohn Baldwin } 498b4151f71SJohn Baldwin 499bafe5a31SPaolo Pisati #ifndef INTR_FILTER 500b4151f71SJohn Baldwin int 501e0f66ef8SJohn Baldwin intr_event_add_handler(struct intr_event *ie, const char *name, 502ef544f63SPaolo Pisati driver_filter_t filter, driver_intr_t handler, void *arg, u_char pri, 503ef544f63SPaolo Pisati enum intr_type flags, void **cookiep) 504b4151f71SJohn Baldwin { 505e0f66ef8SJohn Baldwin struct intr_handler *ih, *temp_ih; 506e0f66ef8SJohn Baldwin struct intr_thread *it; 507b4151f71SJohn Baldwin 508ef544f63SPaolo Pisati if (ie == NULL || name == NULL || (handler == NULL && filter == NULL)) 509b4151f71SJohn Baldwin return (EINVAL); 510b4151f71SJohn Baldwin 511e0f66ef8SJohn Baldwin /* Allocate and populate an interrupt handler structure. */ 512e0f66ef8SJohn Baldwin ih = malloc(sizeof(struct intr_handler), M_ITHREAD, M_WAITOK | M_ZERO); 513ef544f63SPaolo Pisati ih->ih_filter = filter; 514b4151f71SJohn Baldwin ih->ih_handler = handler; 515b4151f71SJohn Baldwin ih->ih_argument = arg; 51637b8ef16SJohn Baldwin strlcpy(ih->ih_name, name, sizeof(ih->ih_name)); 517e0f66ef8SJohn Baldwin ih->ih_event = ie; 518b4151f71SJohn Baldwin ih->ih_pri = pri; 519ef544f63SPaolo Pisati if (flags & INTR_EXCL) 520b4151f71SJohn Baldwin ih->ih_flags = IH_EXCLUSIVE; 521b4151f71SJohn Baldwin if (flags & INTR_MPSAFE) 522b4151f71SJohn Baldwin ih->ih_flags |= IH_MPSAFE; 523b4151f71SJohn Baldwin if (flags & INTR_ENTROPY) 524b4151f71SJohn Baldwin ih->ih_flags |= IH_ENTROPY; 525b4151f71SJohn Baldwin 526e0f66ef8SJohn Baldwin /* We can only have one exclusive handler in a event. */ 527e0f66ef8SJohn Baldwin mtx_lock(&ie->ie_lock); 528e0f66ef8SJohn Baldwin if (!TAILQ_EMPTY(&ie->ie_handlers)) { 529e0f66ef8SJohn Baldwin if ((flags & INTR_EXCL) || 530e0f66ef8SJohn Baldwin (TAILQ_FIRST(&ie->ie_handlers)->ih_flags & IH_EXCLUSIVE)) { 531e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 532b4151f71SJohn Baldwin free(ih, M_ITHREAD); 533b4151f71SJohn Baldwin return (EINVAL); 534b4151f71SJohn Baldwin } 535e0f66ef8SJohn Baldwin } 536e0f66ef8SJohn Baldwin 537e0f66ef8SJohn Baldwin /* Create a thread if we need one. */ 538ef544f63SPaolo Pisati while (ie->ie_thread == NULL && handler != NULL) { 539e0f66ef8SJohn Baldwin if (ie->ie_flags & IE_ADDING_THREAD) 5400f180a7cSJohn Baldwin msleep(ie, &ie->ie_lock, 0, "ithread", 0); 541e0f66ef8SJohn Baldwin else { 542e0f66ef8SJohn Baldwin ie->ie_flags |= IE_ADDING_THREAD; 543e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 544e0f66ef8SJohn Baldwin it = ithread_create("intr: newborn"); 545e0f66ef8SJohn Baldwin mtx_lock(&ie->ie_lock); 546e0f66ef8SJohn Baldwin ie->ie_flags &= ~IE_ADDING_THREAD; 547e0f66ef8SJohn Baldwin ie->ie_thread = it; 548e0f66ef8SJohn Baldwin it->it_event = ie; 549e0f66ef8SJohn Baldwin ithread_update(it); 550e0f66ef8SJohn Baldwin wakeup(ie); 551e0f66ef8SJohn Baldwin } 552e0f66ef8SJohn Baldwin } 553c9516c94SAlexander Kabaev 554c9516c94SAlexander Kabaev /* Add the new handler to the event in priority order. */ 555c9516c94SAlexander Kabaev TAILQ_FOREACH(temp_ih, &ie->ie_handlers, ih_next) { 556c9516c94SAlexander Kabaev if (temp_ih->ih_pri > ih->ih_pri) 557c9516c94SAlexander Kabaev break; 558c9516c94SAlexander Kabaev } 559c9516c94SAlexander Kabaev if (temp_ih == NULL) 560c9516c94SAlexander Kabaev TAILQ_INSERT_TAIL(&ie->ie_handlers, ih, ih_next); 561c9516c94SAlexander Kabaev else 562c9516c94SAlexander Kabaev TAILQ_INSERT_BEFORE(temp_ih, ih, ih_next); 563c9516c94SAlexander Kabaev intr_event_update(ie); 564c9516c94SAlexander Kabaev 565e0f66ef8SJohn Baldwin CTR3(KTR_INTR, "%s: added %s to %s", __func__, ih->ih_name, 566e0f66ef8SJohn Baldwin ie->ie_name); 567e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 568e0f66ef8SJohn Baldwin 569e0f66ef8SJohn Baldwin if (cookiep != NULL) 570e0f66ef8SJohn Baldwin *cookiep = ih; 571e0f66ef8SJohn Baldwin return (0); 572e0f66ef8SJohn Baldwin } 573bafe5a31SPaolo Pisati #else 574bafe5a31SPaolo Pisati int 575bafe5a31SPaolo Pisati intr_event_add_handler(struct intr_event *ie, const char *name, 576bafe5a31SPaolo Pisati driver_filter_t filter, driver_intr_t handler, void *arg, u_char pri, 577bafe5a31SPaolo Pisati enum intr_type flags, void **cookiep) 578bafe5a31SPaolo Pisati { 579bafe5a31SPaolo Pisati struct intr_handler *ih, *temp_ih; 580bafe5a31SPaolo Pisati struct intr_thread *it; 581bafe5a31SPaolo Pisati 582bafe5a31SPaolo Pisati if (ie == NULL || name == NULL || (handler == NULL && filter == NULL)) 583bafe5a31SPaolo Pisati return (EINVAL); 584bafe5a31SPaolo Pisati 585bafe5a31SPaolo Pisati /* Allocate and populate an interrupt handler structure. */ 586bafe5a31SPaolo Pisati ih = malloc(sizeof(struct intr_handler), M_ITHREAD, M_WAITOK | M_ZERO); 587bafe5a31SPaolo Pisati ih->ih_filter = filter; 588bafe5a31SPaolo Pisati ih->ih_handler = handler; 589bafe5a31SPaolo Pisati ih->ih_argument = arg; 59037b8ef16SJohn Baldwin strlcpy(ih->ih_name, name, sizeof(ih->ih_name)); 591bafe5a31SPaolo Pisati ih->ih_event = ie; 592bafe5a31SPaolo Pisati ih->ih_pri = pri; 593bafe5a31SPaolo Pisati if (flags & INTR_EXCL) 594bafe5a31SPaolo Pisati ih->ih_flags = IH_EXCLUSIVE; 595bafe5a31SPaolo Pisati if (flags & INTR_MPSAFE) 596bafe5a31SPaolo Pisati ih->ih_flags |= IH_MPSAFE; 597bafe5a31SPaolo Pisati if (flags & INTR_ENTROPY) 598bafe5a31SPaolo Pisati ih->ih_flags |= IH_ENTROPY; 599bafe5a31SPaolo Pisati 600bafe5a31SPaolo Pisati /* We can only have one exclusive handler in a event. */ 601bafe5a31SPaolo Pisati mtx_lock(&ie->ie_lock); 602bafe5a31SPaolo Pisati if (!TAILQ_EMPTY(&ie->ie_handlers)) { 603bafe5a31SPaolo Pisati if ((flags & INTR_EXCL) || 604bafe5a31SPaolo Pisati (TAILQ_FIRST(&ie->ie_handlers)->ih_flags & IH_EXCLUSIVE)) { 605bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 606bafe5a31SPaolo Pisati free(ih, M_ITHREAD); 607bafe5a31SPaolo Pisati return (EINVAL); 608bafe5a31SPaolo Pisati } 609bafe5a31SPaolo Pisati } 610bafe5a31SPaolo Pisati 611bafe5a31SPaolo Pisati /* For filtered handlers, create a private ithread to run on. */ 612bafe5a31SPaolo Pisati if (filter != NULL && handler != NULL) { 613bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 614bafe5a31SPaolo Pisati it = ithread_create("intr: newborn", ih); 615bafe5a31SPaolo Pisati mtx_lock(&ie->ie_lock); 616bafe5a31SPaolo Pisati it->it_event = ie; 617bafe5a31SPaolo Pisati ih->ih_thread = it; 618037f43d3SSergey Kandaurov ithread_update(it); /* XXX - do we really need this?!?!? */ 619bafe5a31SPaolo Pisati } else { /* Create the global per-event thread if we need one. */ 620bafe5a31SPaolo Pisati while (ie->ie_thread == NULL && handler != NULL) { 621bafe5a31SPaolo Pisati if (ie->ie_flags & IE_ADDING_THREAD) 622bafe5a31SPaolo Pisati msleep(ie, &ie->ie_lock, 0, "ithread", 0); 623bafe5a31SPaolo Pisati else { 624bafe5a31SPaolo Pisati ie->ie_flags |= IE_ADDING_THREAD; 625bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 626bafe5a31SPaolo Pisati it = ithread_create("intr: newborn", ih); 627bafe5a31SPaolo Pisati mtx_lock(&ie->ie_lock); 628bafe5a31SPaolo Pisati ie->ie_flags &= ~IE_ADDING_THREAD; 629bafe5a31SPaolo Pisati ie->ie_thread = it; 630bafe5a31SPaolo Pisati it->it_event = ie; 631bafe5a31SPaolo Pisati ithread_update(it); 632bafe5a31SPaolo Pisati wakeup(ie); 633bafe5a31SPaolo Pisati } 634bafe5a31SPaolo Pisati } 635bafe5a31SPaolo Pisati } 636c9516c94SAlexander Kabaev 637c9516c94SAlexander Kabaev /* Add the new handler to the event in priority order. */ 638c9516c94SAlexander Kabaev TAILQ_FOREACH(temp_ih, &ie->ie_handlers, ih_next) { 639c9516c94SAlexander Kabaev if (temp_ih->ih_pri > ih->ih_pri) 640c9516c94SAlexander Kabaev break; 641c9516c94SAlexander Kabaev } 642c9516c94SAlexander Kabaev if (temp_ih == NULL) 643c9516c94SAlexander Kabaev TAILQ_INSERT_TAIL(&ie->ie_handlers, ih, ih_next); 644c9516c94SAlexander Kabaev else 645c9516c94SAlexander Kabaev TAILQ_INSERT_BEFORE(temp_ih, ih, ih_next); 646c9516c94SAlexander Kabaev intr_event_update(ie); 647c9516c94SAlexander Kabaev 648bafe5a31SPaolo Pisati CTR3(KTR_INTR, "%s: added %s to %s", __func__, ih->ih_name, 649bafe5a31SPaolo Pisati ie->ie_name); 650bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 651bafe5a31SPaolo Pisati 652bafe5a31SPaolo Pisati if (cookiep != NULL) 653bafe5a31SPaolo Pisati *cookiep = ih; 654bafe5a31SPaolo Pisati return (0); 655bafe5a31SPaolo Pisati } 656bafe5a31SPaolo Pisati #endif 657b4151f71SJohn Baldwin 658c3045318SJohn Baldwin /* 65937b8ef16SJohn Baldwin * Append a description preceded by a ':' to the name of the specified 66037b8ef16SJohn Baldwin * interrupt handler. 66137b8ef16SJohn Baldwin */ 66237b8ef16SJohn Baldwin int 66337b8ef16SJohn Baldwin intr_event_describe_handler(struct intr_event *ie, void *cookie, 66437b8ef16SJohn Baldwin const char *descr) 66537b8ef16SJohn Baldwin { 66637b8ef16SJohn Baldwin struct intr_handler *ih; 66737b8ef16SJohn Baldwin size_t space; 66837b8ef16SJohn Baldwin char *start; 66937b8ef16SJohn Baldwin 67037b8ef16SJohn Baldwin mtx_lock(&ie->ie_lock); 67137b8ef16SJohn Baldwin #ifdef INVARIANTS 67237b8ef16SJohn Baldwin TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) { 67337b8ef16SJohn Baldwin if (ih == cookie) 67437b8ef16SJohn Baldwin break; 67537b8ef16SJohn Baldwin } 67637b8ef16SJohn Baldwin if (ih == NULL) { 67737b8ef16SJohn Baldwin mtx_unlock(&ie->ie_lock); 678d0c9a291SJohn Baldwin panic("handler %p not found in interrupt event %p", cookie, ie); 67937b8ef16SJohn Baldwin } 68037b8ef16SJohn Baldwin #endif 68137b8ef16SJohn Baldwin ih = cookie; 68237b8ef16SJohn Baldwin 68337b8ef16SJohn Baldwin /* 68437b8ef16SJohn Baldwin * Look for an existing description by checking for an 68537b8ef16SJohn Baldwin * existing ":". This assumes device names do not include 68637b8ef16SJohn Baldwin * colons. If one is found, prepare to insert the new 68737b8ef16SJohn Baldwin * description at that point. If one is not found, find the 68837b8ef16SJohn Baldwin * end of the name to use as the insertion point. 68937b8ef16SJohn Baldwin */ 690dc15eac0SEd Schouten start = strchr(ih->ih_name, ':'); 69137b8ef16SJohn Baldwin if (start == NULL) 692dc15eac0SEd Schouten start = strchr(ih->ih_name, 0); 69337b8ef16SJohn Baldwin 69437b8ef16SJohn Baldwin /* 69537b8ef16SJohn Baldwin * See if there is enough remaining room in the string for the 69637b8ef16SJohn Baldwin * description + ":". The "- 1" leaves room for the trailing 69737b8ef16SJohn Baldwin * '\0'. The "+ 1" accounts for the colon. 69837b8ef16SJohn Baldwin */ 69937b8ef16SJohn Baldwin space = sizeof(ih->ih_name) - (start - ih->ih_name) - 1; 70037b8ef16SJohn Baldwin if (strlen(descr) + 1 > space) { 70137b8ef16SJohn Baldwin mtx_unlock(&ie->ie_lock); 70237b8ef16SJohn Baldwin return (ENOSPC); 70337b8ef16SJohn Baldwin } 70437b8ef16SJohn Baldwin 70537b8ef16SJohn Baldwin /* Append a colon followed by the description. */ 70637b8ef16SJohn Baldwin *start = ':'; 70737b8ef16SJohn Baldwin strcpy(start + 1, descr); 70837b8ef16SJohn Baldwin intr_event_update(ie); 70937b8ef16SJohn Baldwin mtx_unlock(&ie->ie_lock); 71037b8ef16SJohn Baldwin return (0); 71137b8ef16SJohn Baldwin } 71237b8ef16SJohn Baldwin 71337b8ef16SJohn Baldwin /* 714c3045318SJohn Baldwin * Return the ie_source field from the intr_event an intr_handler is 715c3045318SJohn Baldwin * associated with. 716c3045318SJohn Baldwin */ 717c3045318SJohn Baldwin void * 718c3045318SJohn Baldwin intr_handler_source(void *cookie) 719c3045318SJohn Baldwin { 720c3045318SJohn Baldwin struct intr_handler *ih; 721c3045318SJohn Baldwin struct intr_event *ie; 722c3045318SJohn Baldwin 723c3045318SJohn Baldwin ih = (struct intr_handler *)cookie; 724c3045318SJohn Baldwin if (ih == NULL) 725c3045318SJohn Baldwin return (NULL); 726c3045318SJohn Baldwin ie = ih->ih_event; 727c3045318SJohn Baldwin KASSERT(ie != NULL, 728c3045318SJohn Baldwin ("interrupt handler \"%s\" has a NULL interrupt event", 729c3045318SJohn Baldwin ih->ih_name)); 730c3045318SJohn Baldwin return (ie->ie_source); 731c3045318SJohn Baldwin } 732c3045318SJohn Baldwin 733e4cd31ddSJeff Roberson /* 734e4cd31ddSJeff Roberson * Sleep until an ithread finishes executing an interrupt handler. 735e4cd31ddSJeff Roberson * 736e4cd31ddSJeff Roberson * XXX Doesn't currently handle interrupt filters or fast interrupt 737e4cd31ddSJeff Roberson * handlers. This is intended for compatibility with linux drivers 738e4cd31ddSJeff Roberson * only. Do not use in BSD code. 739e4cd31ddSJeff Roberson */ 740e4cd31ddSJeff Roberson void 741e4cd31ddSJeff Roberson _intr_drain(int irq) 742e4cd31ddSJeff Roberson { 743e4cd31ddSJeff Roberson struct intr_event *ie; 744e4cd31ddSJeff Roberson struct intr_thread *ithd; 745e4cd31ddSJeff Roberson struct thread *td; 746e4cd31ddSJeff Roberson 747e4cd31ddSJeff Roberson ie = intr_lookup(irq); 748e4cd31ddSJeff Roberson if (ie == NULL) 749e4cd31ddSJeff Roberson return; 750e4cd31ddSJeff Roberson if (ie->ie_thread == NULL) 751e4cd31ddSJeff Roberson return; 752e4cd31ddSJeff Roberson ithd = ie->ie_thread; 753e4cd31ddSJeff Roberson td = ithd->it_thread; 7545bd186a6SJeff Roberson /* 7555bd186a6SJeff Roberson * We set the flag and wait for it to be cleared to avoid 7565bd186a6SJeff Roberson * long delays with potentially busy interrupt handlers 7575bd186a6SJeff Roberson * were we to only sample TD_AWAITING_INTR() every tick. 7585bd186a6SJeff Roberson */ 759e4cd31ddSJeff Roberson thread_lock(td); 760e4cd31ddSJeff Roberson if (!TD_AWAITING_INTR(td)) { 761e4cd31ddSJeff Roberson ithd->it_flags |= IT_WAIT; 7625bd186a6SJeff Roberson while (ithd->it_flags & IT_WAIT) { 7635bd186a6SJeff Roberson thread_unlock(td); 7645bd186a6SJeff Roberson pause("idrain", 1); 7655bd186a6SJeff Roberson thread_lock(td); 766e4cd31ddSJeff Roberson } 7675bd186a6SJeff Roberson } 7685bd186a6SJeff Roberson thread_unlock(td); 769e4cd31ddSJeff Roberson return; 770e4cd31ddSJeff Roberson } 771e4cd31ddSJeff Roberson 772e4cd31ddSJeff Roberson 773bafe5a31SPaolo Pisati #ifndef INTR_FILTER 774b4151f71SJohn Baldwin int 775e0f66ef8SJohn Baldwin intr_event_remove_handler(void *cookie) 776b4151f71SJohn Baldwin { 777e0f66ef8SJohn Baldwin struct intr_handler *handler = (struct intr_handler *)cookie; 778e0f66ef8SJohn Baldwin struct intr_event *ie; 779b4151f71SJohn Baldwin #ifdef INVARIANTS 780e0f66ef8SJohn Baldwin struct intr_handler *ih; 781e0f66ef8SJohn Baldwin #endif 782e0f66ef8SJohn Baldwin #ifdef notyet 783e0f66ef8SJohn Baldwin int dead; 784b4151f71SJohn Baldwin #endif 785b4151f71SJohn Baldwin 7863e5da754SJohn Baldwin if (handler == NULL) 787b4151f71SJohn Baldwin return (EINVAL); 788e0f66ef8SJohn Baldwin ie = handler->ih_event; 789e0f66ef8SJohn Baldwin KASSERT(ie != NULL, 790e0f66ef8SJohn Baldwin ("interrupt handler \"%s\" has a NULL interrupt event", 7913e5da754SJohn Baldwin handler->ih_name)); 792e0f66ef8SJohn Baldwin mtx_lock(&ie->ie_lock); 79391f91617SDavid E. O'Brien CTR3(KTR_INTR, "%s: removing %s from %s", __func__, handler->ih_name, 794e0f66ef8SJohn Baldwin ie->ie_name); 795b4151f71SJohn Baldwin #ifdef INVARIANTS 796e0f66ef8SJohn Baldwin TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) 7973e5da754SJohn Baldwin if (ih == handler) 7983e5da754SJohn Baldwin goto ok; 799e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 800e0f66ef8SJohn Baldwin panic("interrupt handler \"%s\" not found in interrupt event \"%s\"", 801e0f66ef8SJohn Baldwin ih->ih_name, ie->ie_name); 8023e5da754SJohn Baldwin ok: 803b4151f71SJohn Baldwin #endif 804de271f01SJohn Baldwin /* 805e0f66ef8SJohn Baldwin * If there is no ithread, then just remove the handler and return. 806e0f66ef8SJohn Baldwin * XXX: Note that an INTR_FAST handler might be running on another 807e0f66ef8SJohn Baldwin * CPU! 808e0f66ef8SJohn Baldwin */ 809e0f66ef8SJohn Baldwin if (ie->ie_thread == NULL) { 810e0f66ef8SJohn Baldwin TAILQ_REMOVE(&ie->ie_handlers, handler, ih_next); 811e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 812e0f66ef8SJohn Baldwin free(handler, M_ITHREAD); 813e0f66ef8SJohn Baldwin return (0); 814e0f66ef8SJohn Baldwin } 815e0f66ef8SJohn Baldwin 816e0f66ef8SJohn Baldwin /* 817de271f01SJohn Baldwin * If the interrupt thread is already running, then just mark this 818de271f01SJohn Baldwin * handler as being dead and let the ithread do the actual removal. 819288e351bSDon Lewis * 820288e351bSDon Lewis * During a cold boot while cold is set, msleep() does not sleep, 821288e351bSDon Lewis * so we have to remove the handler here rather than letting the 822288e351bSDon Lewis * thread do it. 823de271f01SJohn Baldwin */ 824982d11f8SJeff Roberson thread_lock(ie->ie_thread->it_thread); 825e0f66ef8SJohn Baldwin if (!TD_AWAITING_INTR(ie->ie_thread->it_thread) && !cold) { 826de271f01SJohn Baldwin handler->ih_flags |= IH_DEAD; 827de271f01SJohn Baldwin 828de271f01SJohn Baldwin /* 829de271f01SJohn Baldwin * Ensure that the thread will process the handler list 830de271f01SJohn Baldwin * again and remove this handler if it has already passed 831de271f01SJohn Baldwin * it on the list. 83201f5e086SKonstantin Belousov * 83301f5e086SKonstantin Belousov * The release part of the following store ensures 83401f5e086SKonstantin Belousov * that the update of ih_flags is ordered before the 83501f5e086SKonstantin Belousov * it_need setting. See the comment before 83601f5e086SKonstantin Belousov * atomic_cmpset_acq(&ithd->it_need, ...) operation in 83701f5e086SKonstantin Belousov * the ithread_execute_handlers(). 838de271f01SJohn Baldwin */ 83901f5e086SKonstantin Belousov atomic_store_rel_int(&ie->ie_thread->it_need, 1); 8404d29cb2dSJohn Baldwin } else 841e0f66ef8SJohn Baldwin TAILQ_REMOVE(&ie->ie_handlers, handler, ih_next); 842982d11f8SJeff Roberson thread_unlock(ie->ie_thread->it_thread); 843e0f66ef8SJohn Baldwin while (handler->ih_flags & IH_DEAD) 8440f180a7cSJohn Baldwin msleep(handler, &ie->ie_lock, 0, "iev_rmh", 0); 845e0f66ef8SJohn Baldwin intr_event_update(ie); 846e0f66ef8SJohn Baldwin #ifdef notyet 847e0f66ef8SJohn Baldwin /* 848e0f66ef8SJohn Baldwin * XXX: This could be bad in the case of ppbus(8). Also, I think 849e0f66ef8SJohn Baldwin * this could lead to races of stale data when servicing an 850e0f66ef8SJohn Baldwin * interrupt. 851e0f66ef8SJohn Baldwin */ 852e0f66ef8SJohn Baldwin dead = 1; 853e0f66ef8SJohn Baldwin TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) { 854e0f66ef8SJohn Baldwin if (!(ih->ih_flags & IH_FAST)) { 855e0f66ef8SJohn Baldwin dead = 0; 856e0f66ef8SJohn Baldwin break; 857e0f66ef8SJohn Baldwin } 858e0f66ef8SJohn Baldwin } 859e0f66ef8SJohn Baldwin if (dead) { 860e0f66ef8SJohn Baldwin ithread_destroy(ie->ie_thread); 861e0f66ef8SJohn Baldwin ie->ie_thread = NULL; 862e0f66ef8SJohn Baldwin } 863e0f66ef8SJohn Baldwin #endif 864e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 865b4151f71SJohn Baldwin free(handler, M_ITHREAD); 866b4151f71SJohn Baldwin return (0); 867b4151f71SJohn Baldwin } 868b4151f71SJohn Baldwin 8691ee1b687SJohn Baldwin static int 870e0f66ef8SJohn Baldwin intr_event_schedule_thread(struct intr_event *ie) 8713e5da754SJohn Baldwin { 872e0f66ef8SJohn Baldwin struct intr_entropy entropy; 873e0f66ef8SJohn Baldwin struct intr_thread *it; 874b40ce416SJulian Elischer struct thread *td; 87504774f23SJulian Elischer struct thread *ctd; 8763e5da754SJohn Baldwin struct proc *p; 8773e5da754SJohn Baldwin 8783e5da754SJohn Baldwin /* 8793e5da754SJohn Baldwin * If no ithread or no handlers, then we have a stray interrupt. 8803e5da754SJohn Baldwin */ 881e0f66ef8SJohn Baldwin if (ie == NULL || TAILQ_EMPTY(&ie->ie_handlers) || 882e0f66ef8SJohn Baldwin ie->ie_thread == NULL) 8833e5da754SJohn Baldwin return (EINVAL); 8843e5da754SJohn Baldwin 88504774f23SJulian Elischer ctd = curthread; 886e0f66ef8SJohn Baldwin it = ie->ie_thread; 887e0f66ef8SJohn Baldwin td = it->it_thread; 8886f40c417SRobert Watson p = td->td_proc; 889e0f66ef8SJohn Baldwin 8903e5da754SJohn Baldwin /* 8913e5da754SJohn Baldwin * If any of the handlers for this ithread claim to be good 8923e5da754SJohn Baldwin * sources of entropy, then gather some. 8933e5da754SJohn Baldwin */ 89410cb2424SMark Murray if (ie->ie_flags & IE_ENTROPY) { 895e0f66ef8SJohn Baldwin entropy.event = (uintptr_t)ie; 896e0f66ef8SJohn Baldwin entropy.td = ctd; 897d1b06863SMark Murray random_harvest_queue(&entropy, sizeof(entropy), 2, RANDOM_INTERRUPT); 8983e5da754SJohn Baldwin } 8993e5da754SJohn Baldwin 900e0f66ef8SJohn Baldwin KASSERT(p != NULL, ("ithread %s has no process", ie->ie_name)); 9013e5da754SJohn Baldwin 9023e5da754SJohn Baldwin /* 9033e5da754SJohn Baldwin * Set it_need to tell the thread to keep running if it is already 904982d11f8SJeff Roberson * running. Then, lock the thread and see if we actually need to 905982d11f8SJeff Roberson * put it on the runqueue. 906283dfee9SKonstantin Belousov * 907283dfee9SKonstantin Belousov * Use store_rel to arrange that the store to ih_need in 908283dfee9SKonstantin Belousov * swi_sched() is before the store to it_need and prepare for 909283dfee9SKonstantin Belousov * transfer of this order to loads in the ithread. 9103e5da754SJohn Baldwin */ 9113eebd44dSAlfred Perlstein atomic_store_rel_int(&it->it_need, 1); 912982d11f8SJeff Roberson thread_lock(td); 91371fad9fdSJulian Elischer if (TD_AWAITING_INTR(td)) { 914e0f66ef8SJohn Baldwin CTR3(KTR_INTR, "%s: schedule pid %d (%s)", __func__, p->p_pid, 9157ab24ea3SJulian Elischer td->td_name); 91671fad9fdSJulian Elischer TD_CLR_IWAIT(td); 917f0393f06SJeff Roberson sched_add(td, SRQ_INTR); 9183e5da754SJohn Baldwin } else { 919e0f66ef8SJohn Baldwin CTR5(KTR_INTR, "%s: pid %d (%s): it_need %d, state %d", 9207ab24ea3SJulian Elischer __func__, p->p_pid, td->td_name, it->it_need, td->td_state); 9213e5da754SJohn Baldwin } 922982d11f8SJeff Roberson thread_unlock(td); 9233e5da754SJohn Baldwin 9243e5da754SJohn Baldwin return (0); 9253e5da754SJohn Baldwin } 926bafe5a31SPaolo Pisati #else 927bafe5a31SPaolo Pisati int 928bafe5a31SPaolo Pisati intr_event_remove_handler(void *cookie) 929bafe5a31SPaolo Pisati { 930bafe5a31SPaolo Pisati struct intr_handler *handler = (struct intr_handler *)cookie; 931bafe5a31SPaolo Pisati struct intr_event *ie; 932bafe5a31SPaolo Pisati struct intr_thread *it; 933bafe5a31SPaolo Pisati #ifdef INVARIANTS 934bafe5a31SPaolo Pisati struct intr_handler *ih; 935bafe5a31SPaolo Pisati #endif 936bafe5a31SPaolo Pisati #ifdef notyet 937bafe5a31SPaolo Pisati int dead; 938bafe5a31SPaolo Pisati #endif 939bafe5a31SPaolo Pisati 940bafe5a31SPaolo Pisati if (handler == NULL) 941bafe5a31SPaolo Pisati return (EINVAL); 942bafe5a31SPaolo Pisati ie = handler->ih_event; 943bafe5a31SPaolo Pisati KASSERT(ie != NULL, 944bafe5a31SPaolo Pisati ("interrupt handler \"%s\" has a NULL interrupt event", 945bafe5a31SPaolo Pisati handler->ih_name)); 946bafe5a31SPaolo Pisati mtx_lock(&ie->ie_lock); 947bafe5a31SPaolo Pisati CTR3(KTR_INTR, "%s: removing %s from %s", __func__, handler->ih_name, 948bafe5a31SPaolo Pisati ie->ie_name); 949bafe5a31SPaolo Pisati #ifdef INVARIANTS 950bafe5a31SPaolo Pisati TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) 951bafe5a31SPaolo Pisati if (ih == handler) 952bafe5a31SPaolo Pisati goto ok; 953bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 954bafe5a31SPaolo Pisati panic("interrupt handler \"%s\" not found in interrupt event \"%s\"", 955bafe5a31SPaolo Pisati ih->ih_name, ie->ie_name); 956bafe5a31SPaolo Pisati ok: 957bafe5a31SPaolo Pisati #endif 958bafe5a31SPaolo Pisati /* 959bafe5a31SPaolo Pisati * If there are no ithreads (per event and per handler), then 960bafe5a31SPaolo Pisati * just remove the handler and return. 961bafe5a31SPaolo Pisati * XXX: Note that an INTR_FAST handler might be running on another CPU! 962bafe5a31SPaolo Pisati */ 963bafe5a31SPaolo Pisati if (ie->ie_thread == NULL && handler->ih_thread == NULL) { 964bafe5a31SPaolo Pisati TAILQ_REMOVE(&ie->ie_handlers, handler, ih_next); 965bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 966bafe5a31SPaolo Pisati free(handler, M_ITHREAD); 967bafe5a31SPaolo Pisati return (0); 968bafe5a31SPaolo Pisati } 969bafe5a31SPaolo Pisati 970bafe5a31SPaolo Pisati /* Private or global ithread? */ 971bafe5a31SPaolo Pisati it = (handler->ih_thread) ? handler->ih_thread : ie->ie_thread; 972bafe5a31SPaolo Pisati /* 973bafe5a31SPaolo Pisati * If the interrupt thread is already running, then just mark this 974bafe5a31SPaolo Pisati * handler as being dead and let the ithread do the actual removal. 975bafe5a31SPaolo Pisati * 976bafe5a31SPaolo Pisati * During a cold boot while cold is set, msleep() does not sleep, 977bafe5a31SPaolo Pisati * so we have to remove the handler here rather than letting the 978bafe5a31SPaolo Pisati * thread do it. 979bafe5a31SPaolo Pisati */ 980982d11f8SJeff Roberson thread_lock(it->it_thread); 981bafe5a31SPaolo Pisati if (!TD_AWAITING_INTR(it->it_thread) && !cold) { 982bafe5a31SPaolo Pisati handler->ih_flags |= IH_DEAD; 983bafe5a31SPaolo Pisati 984bafe5a31SPaolo Pisati /* 985bafe5a31SPaolo Pisati * Ensure that the thread will process the handler list 986bafe5a31SPaolo Pisati * again and remove this handler if it has already passed 987bafe5a31SPaolo Pisati * it on the list. 98801f5e086SKonstantin Belousov * 98901f5e086SKonstantin Belousov * The release part of the following store ensures 99001f5e086SKonstantin Belousov * that the update of ih_flags is ordered before the 99101f5e086SKonstantin Belousov * it_need setting. See the comment before 99201f5e086SKonstantin Belousov * atomic_cmpset_acq(&ithd->it_need, ...) operation in 99301f5e086SKonstantin Belousov * the ithread_execute_handlers(). 994bafe5a31SPaolo Pisati */ 99501f5e086SKonstantin Belousov atomic_store_rel_int(&it->it_need, 1); 996bafe5a31SPaolo Pisati } else 997bafe5a31SPaolo Pisati TAILQ_REMOVE(&ie->ie_handlers, handler, ih_next); 998982d11f8SJeff Roberson thread_unlock(it->it_thread); 999bafe5a31SPaolo Pisati while (handler->ih_flags & IH_DEAD) 1000bafe5a31SPaolo Pisati msleep(handler, &ie->ie_lock, 0, "iev_rmh", 0); 1001bafe5a31SPaolo Pisati /* 1002bafe5a31SPaolo Pisati * At this point, the handler has been disconnected from the event, 1003bafe5a31SPaolo Pisati * so we can kill the private ithread if any. 1004bafe5a31SPaolo Pisati */ 1005bafe5a31SPaolo Pisati if (handler->ih_thread) { 1006bafe5a31SPaolo Pisati ithread_destroy(handler->ih_thread); 1007bafe5a31SPaolo Pisati handler->ih_thread = NULL; 1008bafe5a31SPaolo Pisati } 1009bafe5a31SPaolo Pisati intr_event_update(ie); 1010bafe5a31SPaolo Pisati #ifdef notyet 1011bafe5a31SPaolo Pisati /* 1012bafe5a31SPaolo Pisati * XXX: This could be bad in the case of ppbus(8). Also, I think 1013bafe5a31SPaolo Pisati * this could lead to races of stale data when servicing an 1014bafe5a31SPaolo Pisati * interrupt. 1015bafe5a31SPaolo Pisati */ 1016bafe5a31SPaolo Pisati dead = 1; 1017bafe5a31SPaolo Pisati TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) { 1018bafe5a31SPaolo Pisati if (handler != NULL) { 1019bafe5a31SPaolo Pisati dead = 0; 1020bafe5a31SPaolo Pisati break; 1021bafe5a31SPaolo Pisati } 1022bafe5a31SPaolo Pisati } 1023bafe5a31SPaolo Pisati if (dead) { 1024bafe5a31SPaolo Pisati ithread_destroy(ie->ie_thread); 1025bafe5a31SPaolo Pisati ie->ie_thread = NULL; 1026bafe5a31SPaolo Pisati } 1027bafe5a31SPaolo Pisati #endif 1028bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 1029bafe5a31SPaolo Pisati free(handler, M_ITHREAD); 1030bafe5a31SPaolo Pisati return (0); 1031bafe5a31SPaolo Pisati } 1032bafe5a31SPaolo Pisati 10331ee1b687SJohn Baldwin static int 1034bafe5a31SPaolo Pisati intr_event_schedule_thread(struct intr_event *ie, struct intr_thread *it) 1035bafe5a31SPaolo Pisati { 1036bafe5a31SPaolo Pisati struct intr_entropy entropy; 1037bafe5a31SPaolo Pisati struct thread *td; 1038bafe5a31SPaolo Pisati struct thread *ctd; 1039bafe5a31SPaolo Pisati struct proc *p; 1040bafe5a31SPaolo Pisati 1041bafe5a31SPaolo Pisati /* 1042bafe5a31SPaolo Pisati * If no ithread or no handlers, then we have a stray interrupt. 1043bafe5a31SPaolo Pisati */ 1044bafe5a31SPaolo Pisati if (ie == NULL || TAILQ_EMPTY(&ie->ie_handlers) || it == NULL) 1045bafe5a31SPaolo Pisati return (EINVAL); 1046bafe5a31SPaolo Pisati 1047bafe5a31SPaolo Pisati ctd = curthread; 1048bafe5a31SPaolo Pisati td = it->it_thread; 1049bafe5a31SPaolo Pisati p = td->td_proc; 1050bafe5a31SPaolo Pisati 1051bafe5a31SPaolo Pisati /* 1052bafe5a31SPaolo Pisati * If any of the handlers for this ithread claim to be good 1053bafe5a31SPaolo Pisati * sources of entropy, then gather some. 1054bafe5a31SPaolo Pisati */ 105510cb2424SMark Murray if (ie->ie_flags & IE_ENTROPY) { 1056bafe5a31SPaolo Pisati entropy.event = (uintptr_t)ie; 1057bafe5a31SPaolo Pisati entropy.td = ctd; 1058d1b06863SMark Murray random_harvest_queue(&entropy, sizeof(entropy), 2, RANDOM_INTERRUPT); 1059bafe5a31SPaolo Pisati } 1060bafe5a31SPaolo Pisati 1061bafe5a31SPaolo Pisati KASSERT(p != NULL, ("ithread %s has no process", ie->ie_name)); 1062bafe5a31SPaolo Pisati 1063bafe5a31SPaolo Pisati /* 1064bafe5a31SPaolo Pisati * Set it_need to tell the thread to keep running if it is already 1065982d11f8SJeff Roberson * running. Then, lock the thread and see if we actually need to 1066982d11f8SJeff Roberson * put it on the runqueue. 1067283dfee9SKonstantin Belousov * 1068283dfee9SKonstantin Belousov * Use store_rel to arrange that the store to ih_need in 1069283dfee9SKonstantin Belousov * swi_sched() is before the store to it_need and prepare for 1070283dfee9SKonstantin Belousov * transfer of this order to loads in the ithread. 1071bafe5a31SPaolo Pisati */ 10723eebd44dSAlfred Perlstein atomic_store_rel_int(&it->it_need, 1); 1073982d11f8SJeff Roberson thread_lock(td); 1074bafe5a31SPaolo Pisati if (TD_AWAITING_INTR(td)) { 1075bafe5a31SPaolo Pisati CTR3(KTR_INTR, "%s: schedule pid %d (%s)", __func__, p->p_pid, 10763c1ffc32SJulian Elischer td->td_name); 1077bafe5a31SPaolo Pisati TD_CLR_IWAIT(td); 1078bafe5a31SPaolo Pisati sched_add(td, SRQ_INTR); 1079bafe5a31SPaolo Pisati } else { 1080bafe5a31SPaolo Pisati CTR5(KTR_INTR, "%s: pid %d (%s): it_need %d, state %d", 10817ab24ea3SJulian Elischer __func__, p->p_pid, td->td_name, it->it_need, td->td_state); 1082bafe5a31SPaolo Pisati } 1083982d11f8SJeff Roberson thread_unlock(td); 1084bafe5a31SPaolo Pisati 1085bafe5a31SPaolo Pisati return (0); 1086bafe5a31SPaolo Pisati } 1087bafe5a31SPaolo Pisati #endif 10883e5da754SJohn Baldwin 1089fe486a37SJohn Baldwin /* 1090e84bcd84SRobert Watson * Allow interrupt event binding for software interrupt handlers -- a no-op, 1091e84bcd84SRobert Watson * since interrupts are generated in software rather than being directed by 1092e84bcd84SRobert Watson * a PIC. 1093e84bcd84SRobert Watson */ 1094e84bcd84SRobert Watson static int 1095066da805SAdrian Chadd swi_assign_cpu(void *arg, int cpu) 1096e84bcd84SRobert Watson { 1097e84bcd84SRobert Watson 1098e84bcd84SRobert Watson return (0); 1099e84bcd84SRobert Watson } 1100e84bcd84SRobert Watson 1101e84bcd84SRobert Watson /* 1102fe486a37SJohn Baldwin * Add a software interrupt handler to a specified event. If a given event 1103fe486a37SJohn Baldwin * is not specified, then a new event is created. 1104fe486a37SJohn Baldwin */ 11053e5da754SJohn Baldwin int 1106e0f66ef8SJohn Baldwin swi_add(struct intr_event **eventp, const char *name, driver_intr_t handler, 1107b4151f71SJohn Baldwin void *arg, int pri, enum intr_type flags, void **cookiep) 11088088699fSJohn Baldwin { 1109e0f66ef8SJohn Baldwin struct intr_event *ie; 1110b4151f71SJohn Baldwin int error; 11118088699fSJohn Baldwin 1112bafe5a31SPaolo Pisati if (flags & INTR_ENTROPY) 11133e5da754SJohn Baldwin return (EINVAL); 11143e5da754SJohn Baldwin 1115e0f66ef8SJohn Baldwin ie = (eventp != NULL) ? *eventp : NULL; 11168088699fSJohn Baldwin 1117e0f66ef8SJohn Baldwin if (ie != NULL) { 1118e0f66ef8SJohn Baldwin if (!(ie->ie_flags & IE_SOFT)) 11193e5da754SJohn Baldwin return (EINVAL); 11203e5da754SJohn Baldwin } else { 11219b33b154SJeff Roberson error = intr_event_create(&ie, NULL, IE_SOFT, 0, 1122e84bcd84SRobert Watson NULL, NULL, NULL, swi_assign_cpu, "swi%d:", pri); 11238088699fSJohn Baldwin if (error) 1124b4151f71SJohn Baldwin return (error); 1125e0f66ef8SJohn Baldwin if (eventp != NULL) 1126e0f66ef8SJohn Baldwin *eventp = ie; 11278088699fSJohn Baldwin } 11288d809d50SJeff Roberson error = intr_event_add_handler(ie, name, NULL, handler, arg, 1129d3305205SJohn Baldwin PI_SWI(pri), flags, cookiep); 11308d809d50SJeff Roberson return (error); 11318088699fSJohn Baldwin } 11328088699fSJohn Baldwin 11331931cf94SJohn Baldwin /* 1134e0f66ef8SJohn Baldwin * Schedule a software interrupt thread. 11351931cf94SJohn Baldwin */ 11361931cf94SJohn Baldwin void 1137b4151f71SJohn Baldwin swi_sched(void *cookie, int flags) 11381931cf94SJohn Baldwin { 1139e0f66ef8SJohn Baldwin struct intr_handler *ih = (struct intr_handler *)cookie; 1140e0f66ef8SJohn Baldwin struct intr_event *ie = ih->ih_event; 1141d95dca1dSJohn Baldwin struct intr_entropy entropy; 11423e5da754SJohn Baldwin int error; 11438088699fSJohn Baldwin 1144e0f66ef8SJohn Baldwin CTR3(KTR_INTR, "swi_sched: %s %s need=%d", ie->ie_name, ih->ih_name, 1145e0f66ef8SJohn Baldwin ih->ih_need); 11461931cf94SJohn Baldwin 1147d95dca1dSJohn Baldwin entropy.event = (uintptr_t)ih; 1148d95dca1dSJohn Baldwin entropy.td = curthread; 1149d1b06863SMark Murray random_harvest_queue(&entropy, sizeof(entropy), 1, RANDOM_SWI); 1150d95dca1dSJohn Baldwin 11511931cf94SJohn Baldwin /* 11523e5da754SJohn Baldwin * Set ih_need for this handler so that if the ithread is already 11533e5da754SJohn Baldwin * running it will execute this handler on the next pass. Otherwise, 11543e5da754SJohn Baldwin * it will execute it the next time it runs. 11551931cf94SJohn Baldwin */ 1156283dfee9SKonstantin Belousov ih->ih_need = 1; 11571ca2c018SBruce Evans 1158b4151f71SJohn Baldwin if (!(flags & SWI_DELAY)) { 1159*83c9dea1SGleb Smirnoff VM_CNT_INC(v_soft); 1160bafe5a31SPaolo Pisati #ifdef INTR_FILTER 1161bafe5a31SPaolo Pisati error = intr_event_schedule_thread(ie, ie->ie_thread); 1162bafe5a31SPaolo Pisati #else 1163e0f66ef8SJohn Baldwin error = intr_event_schedule_thread(ie); 1164bafe5a31SPaolo Pisati #endif 11653e5da754SJohn Baldwin KASSERT(error == 0, ("stray software interrupt")); 11668088699fSJohn Baldwin } 11678088699fSJohn Baldwin } 11688088699fSJohn Baldwin 1169fe486a37SJohn Baldwin /* 1170fe486a37SJohn Baldwin * Remove a software interrupt handler. Currently this code does not 1171fe486a37SJohn Baldwin * remove the associated interrupt event if it becomes empty. Calling code 1172fe486a37SJohn Baldwin * may do so manually via intr_event_destroy(), but that's not really 1173fe486a37SJohn Baldwin * an optimal interface. 1174fe486a37SJohn Baldwin */ 1175fe486a37SJohn Baldwin int 1176fe486a37SJohn Baldwin swi_remove(void *cookie) 1177fe486a37SJohn Baldwin { 1178fe486a37SJohn Baldwin 1179fe486a37SJohn Baldwin return (intr_event_remove_handler(cookie)); 1180fe486a37SJohn Baldwin } 1181fe486a37SJohn Baldwin 1182bafe5a31SPaolo Pisati #ifdef INTR_FILTER 1183bafe5a31SPaolo Pisati static void 1184bafe5a31SPaolo Pisati priv_ithread_execute_handler(struct proc *p, struct intr_handler *ih) 1185bafe5a31SPaolo Pisati { 1186bafe5a31SPaolo Pisati struct intr_event *ie; 1187bafe5a31SPaolo Pisati 1188bafe5a31SPaolo Pisati ie = ih->ih_event; 1189bafe5a31SPaolo Pisati /* 1190bafe5a31SPaolo Pisati * If this handler is marked for death, remove it from 1191bafe5a31SPaolo Pisati * the list of handlers and wake up the sleeper. 1192bafe5a31SPaolo Pisati */ 1193bafe5a31SPaolo Pisati if (ih->ih_flags & IH_DEAD) { 1194bafe5a31SPaolo Pisati mtx_lock(&ie->ie_lock); 1195bafe5a31SPaolo Pisati TAILQ_REMOVE(&ie->ie_handlers, ih, ih_next); 1196bafe5a31SPaolo Pisati ih->ih_flags &= ~IH_DEAD; 1197bafe5a31SPaolo Pisati wakeup(ih); 1198bafe5a31SPaolo Pisati mtx_unlock(&ie->ie_lock); 1199bafe5a31SPaolo Pisati return; 1200bafe5a31SPaolo Pisati } 1201bafe5a31SPaolo Pisati 1202bafe5a31SPaolo Pisati /* Execute this handler. */ 1203bafe5a31SPaolo Pisati CTR6(KTR_INTR, "%s: pid %d exec %p(%p) for %s flg=%x", 1204bafe5a31SPaolo Pisati __func__, p->p_pid, (void *)ih->ih_handler, ih->ih_argument, 1205bafe5a31SPaolo Pisati ih->ih_name, ih->ih_flags); 1206bafe5a31SPaolo Pisati 1207bafe5a31SPaolo Pisati if (!(ih->ih_flags & IH_MPSAFE)) 1208bafe5a31SPaolo Pisati mtx_lock(&Giant); 1209bafe5a31SPaolo Pisati ih->ih_handler(ih->ih_argument); 1210bafe5a31SPaolo Pisati if (!(ih->ih_flags & IH_MPSAFE)) 1211bafe5a31SPaolo Pisati mtx_unlock(&Giant); 1212bafe5a31SPaolo Pisati } 1213bafe5a31SPaolo Pisati #endif 1214bafe5a31SPaolo Pisati 121537e9511fSJohn Baldwin /* 121637e9511fSJohn Baldwin * This is a public function for use by drivers that mux interrupt 121737e9511fSJohn Baldwin * handlers for child devices from their interrupt handler. 121837e9511fSJohn Baldwin */ 121937e9511fSJohn Baldwin void 122037e9511fSJohn Baldwin intr_event_execute_handlers(struct proc *p, struct intr_event *ie) 1221e0f66ef8SJohn Baldwin { 1222e0f66ef8SJohn Baldwin struct intr_handler *ih, *ihn; 1223e0f66ef8SJohn Baldwin 1224e0f66ef8SJohn Baldwin TAILQ_FOREACH_SAFE(ih, &ie->ie_handlers, ih_next, ihn) { 1225e0f66ef8SJohn Baldwin /* 1226e0f66ef8SJohn Baldwin * If this handler is marked for death, remove it from 1227e0f66ef8SJohn Baldwin * the list of handlers and wake up the sleeper. 1228e0f66ef8SJohn Baldwin */ 1229e0f66ef8SJohn Baldwin if (ih->ih_flags & IH_DEAD) { 1230e0f66ef8SJohn Baldwin mtx_lock(&ie->ie_lock); 1231e0f66ef8SJohn Baldwin TAILQ_REMOVE(&ie->ie_handlers, ih, ih_next); 1232e0f66ef8SJohn Baldwin ih->ih_flags &= ~IH_DEAD; 1233e0f66ef8SJohn Baldwin wakeup(ih); 1234e0f66ef8SJohn Baldwin mtx_unlock(&ie->ie_lock); 1235e0f66ef8SJohn Baldwin continue; 1236e0f66ef8SJohn Baldwin } 1237e0f66ef8SJohn Baldwin 1238f2d619c8SPaolo Pisati /* Skip filter only handlers */ 1239f2d619c8SPaolo Pisati if (ih->ih_handler == NULL) 1240f2d619c8SPaolo Pisati continue; 1241f2d619c8SPaolo Pisati 1242e0f66ef8SJohn Baldwin /* 1243e0f66ef8SJohn Baldwin * For software interrupt threads, we only execute 1244e0f66ef8SJohn Baldwin * handlers that have their need flag set. Hardware 1245e0f66ef8SJohn Baldwin * interrupt threads always invoke all of their handlers. 12461b79b949SKirk McKusick * 12471b79b949SKirk McKusick * ih_need can only be 0 or 1. Failed cmpset below 12481b79b949SKirk McKusick * means that there is no request to execute handlers, 12491b79b949SKirk McKusick * so a retry of the cmpset is not needed. 1250e0f66ef8SJohn Baldwin */ 12511b79b949SKirk McKusick if ((ie->ie_flags & IE_SOFT) != 0 && 12521b79b949SKirk McKusick atomic_cmpset_int(&ih->ih_need, 1, 0) == 0) 1253e0f66ef8SJohn Baldwin continue; 1254e0f66ef8SJohn Baldwin 1255e0f66ef8SJohn Baldwin /* Execute this handler. */ 1256e0f66ef8SJohn Baldwin CTR6(KTR_INTR, "%s: pid %d exec %p(%p) for %s flg=%x", 1257bafe5a31SPaolo Pisati __func__, p->p_pid, (void *)ih->ih_handler, 1258bafe5a31SPaolo Pisati ih->ih_argument, ih->ih_name, ih->ih_flags); 1259e0f66ef8SJohn Baldwin 1260e0f66ef8SJohn Baldwin if (!(ih->ih_flags & IH_MPSAFE)) 1261e0f66ef8SJohn Baldwin mtx_lock(&Giant); 1262e0f66ef8SJohn Baldwin ih->ih_handler(ih->ih_argument); 1263e0f66ef8SJohn Baldwin if (!(ih->ih_flags & IH_MPSAFE)) 1264e0f66ef8SJohn Baldwin mtx_unlock(&Giant); 1265e0f66ef8SJohn Baldwin } 126637e9511fSJohn Baldwin } 126737e9511fSJohn Baldwin 126837e9511fSJohn Baldwin static void 126937e9511fSJohn Baldwin ithread_execute_handlers(struct proc *p, struct intr_event *ie) 127037e9511fSJohn Baldwin { 127137e9511fSJohn Baldwin 127237e9511fSJohn Baldwin /* Interrupt handlers should not sleep. */ 127337e9511fSJohn Baldwin if (!(ie->ie_flags & IE_SOFT)) 127437e9511fSJohn Baldwin THREAD_NO_SLEEPING(); 127537e9511fSJohn Baldwin intr_event_execute_handlers(p, ie); 1276e0f66ef8SJohn Baldwin if (!(ie->ie_flags & IE_SOFT)) 1277e0f66ef8SJohn Baldwin THREAD_SLEEPING_OK(); 1278e0f66ef8SJohn Baldwin 1279e0f66ef8SJohn Baldwin /* 1280e0f66ef8SJohn Baldwin * Interrupt storm handling: 1281e0f66ef8SJohn Baldwin * 1282e0f66ef8SJohn Baldwin * If this interrupt source is currently storming, then throttle 1283e0f66ef8SJohn Baldwin * it to only fire the handler once per clock tick. 1284e0f66ef8SJohn Baldwin * 1285e0f66ef8SJohn Baldwin * If this interrupt source is not currently storming, but the 1286e0f66ef8SJohn Baldwin * number of back to back interrupts exceeds the storm threshold, 1287e0f66ef8SJohn Baldwin * then enter storming mode. 1288e0f66ef8SJohn Baldwin */ 1289e41bcf3cSJohn Baldwin if (intr_storm_threshold != 0 && ie->ie_count >= intr_storm_threshold && 1290e41bcf3cSJohn Baldwin !(ie->ie_flags & IE_SOFT)) { 12910ae62c18SNate Lawson /* Report the message only once every second. */ 12920ae62c18SNate Lawson if (ppsratecheck(&ie->ie_warntm, &ie->ie_warncnt, 1)) { 1293e0f66ef8SJohn Baldwin printf( 12940ae62c18SNate Lawson "interrupt storm detected on \"%s\"; throttling interrupt source\n", 1295e0f66ef8SJohn Baldwin ie->ie_name); 1296e0f66ef8SJohn Baldwin } 1297e41bcf3cSJohn Baldwin pause("istorm", 1); 1298e0f66ef8SJohn Baldwin } else 1299e0f66ef8SJohn Baldwin ie->ie_count++; 1300e0f66ef8SJohn Baldwin 1301e0f66ef8SJohn Baldwin /* 1302e0f66ef8SJohn Baldwin * Now that all the handlers have had a chance to run, reenable 1303e0f66ef8SJohn Baldwin * the interrupt source. 1304e0f66ef8SJohn Baldwin */ 13051ee1b687SJohn Baldwin if (ie->ie_post_ithread != NULL) 13061ee1b687SJohn Baldwin ie->ie_post_ithread(ie->ie_source); 1307e0f66ef8SJohn Baldwin } 1308e0f66ef8SJohn Baldwin 1309bafe5a31SPaolo Pisati #ifndef INTR_FILTER 13108088699fSJohn Baldwin /* 1311b4151f71SJohn Baldwin * This is the main code for interrupt threads. 13128088699fSJohn Baldwin */ 131337c84183SPoul-Henning Kamp static void 1314b4151f71SJohn Baldwin ithread_loop(void *arg) 13158088699fSJohn Baldwin { 1316e0f66ef8SJohn Baldwin struct intr_thread *ithd; 1317e0f66ef8SJohn Baldwin struct intr_event *ie; 1318b40ce416SJulian Elischer struct thread *td; 1319b4151f71SJohn Baldwin struct proc *p; 1320e4cd31ddSJeff Roberson int wake; 13218088699fSJohn Baldwin 1322b40ce416SJulian Elischer td = curthread; 1323b40ce416SJulian Elischer p = td->td_proc; 1324e0f66ef8SJohn Baldwin ithd = (struct intr_thread *)arg; 1325e0f66ef8SJohn Baldwin KASSERT(ithd->it_thread == td, 132691f91617SDavid E. O'Brien ("%s: ithread and proc linkage out of sync", __func__)); 1327e0f66ef8SJohn Baldwin ie = ithd->it_event; 1328e0f66ef8SJohn Baldwin ie->ie_count = 0; 1329e4cd31ddSJeff Roberson wake = 0; 13308088699fSJohn Baldwin 13318088699fSJohn Baldwin /* 13328088699fSJohn Baldwin * As long as we have interrupts outstanding, go through the 13338088699fSJohn Baldwin * list of handlers, giving each one a go at it. 13348088699fSJohn Baldwin */ 13358088699fSJohn Baldwin for (;;) { 1336b4151f71SJohn Baldwin /* 1337b4151f71SJohn Baldwin * If we are an orphaned thread, then just die. 1338b4151f71SJohn Baldwin */ 1339b4151f71SJohn Baldwin if (ithd->it_flags & IT_DEAD) { 1340e0f66ef8SJohn Baldwin CTR3(KTR_INTR, "%s: pid %d (%s) exiting", __func__, 13417ab24ea3SJulian Elischer p->p_pid, td->td_name); 1342b4151f71SJohn Baldwin free(ithd, M_ITHREAD); 1343ca9a0ddfSJulian Elischer kthread_exit(); 1344b4151f71SJohn Baldwin } 1345b4151f71SJohn Baldwin 1346e0f66ef8SJohn Baldwin /* 1347e0f66ef8SJohn Baldwin * Service interrupts. If another interrupt arrives while 1348e0f66ef8SJohn Baldwin * we are running, it will set it_need to note that we 1349e0f66ef8SJohn Baldwin * should make another pass. 1350283dfee9SKonstantin Belousov * 1351283dfee9SKonstantin Belousov * The load_acq part of the following cmpset ensures 1352283dfee9SKonstantin Belousov * that the load of ih_need in ithread_execute_handlers() 1353283dfee9SKonstantin Belousov * is ordered after the load of it_need here. 1354e0f66ef8SJohn Baldwin */ 1355283dfee9SKonstantin Belousov while (atomic_cmpset_acq_int(&ithd->it_need, 1, 0) != 0) 1356e0f66ef8SJohn Baldwin ithread_execute_handlers(p, ie); 13577870c3c6SJohn Baldwin WITNESS_WARN(WARN_PANIC, NULL, "suspending ithread"); 13587870c3c6SJohn Baldwin mtx_assert(&Giant, MA_NOTOWNED); 13598088699fSJohn Baldwin 13608088699fSJohn Baldwin /* 13618088699fSJohn Baldwin * Processed all our interrupts. Now get the sched 13628088699fSJohn Baldwin * lock. This may take a while and it_need may get 13638088699fSJohn Baldwin * set again, so we have to check it again. 13648088699fSJohn Baldwin */ 1365982d11f8SJeff Roberson thread_lock(td); 136603bbcb2fSKonstantin Belousov if (atomic_load_acq_int(&ithd->it_need) == 0 && 136703bbcb2fSKonstantin Belousov (ithd->it_flags & (IT_DEAD | IT_WAIT)) == 0) { 13687870c3c6SJohn Baldwin TD_SET_IWAIT(td); 1369e0f66ef8SJohn Baldwin ie->ie_count = 0; 13708df78c41SJeff Roberson mi_switch(SW_VOL | SWT_IWAIT, NULL); 13718088699fSJohn Baldwin } 1372e4cd31ddSJeff Roberson if (ithd->it_flags & IT_WAIT) { 1373e4cd31ddSJeff Roberson wake = 1; 1374e4cd31ddSJeff Roberson ithd->it_flags &= ~IT_WAIT; 1375e4cd31ddSJeff Roberson } 1376982d11f8SJeff Roberson thread_unlock(td); 1377e4cd31ddSJeff Roberson if (wake) { 1378e4cd31ddSJeff Roberson wakeup(ithd); 1379e4cd31ddSJeff Roberson wake = 0; 1380e4cd31ddSJeff Roberson } 13818088699fSJohn Baldwin } 13821931cf94SJohn Baldwin } 13831ee1b687SJohn Baldwin 13841ee1b687SJohn Baldwin /* 13851ee1b687SJohn Baldwin * Main interrupt handling body. 13861ee1b687SJohn Baldwin * 13871ee1b687SJohn Baldwin * Input: 13881ee1b687SJohn Baldwin * o ie: the event connected to this interrupt. 13891ee1b687SJohn Baldwin * o frame: some archs (i.e. i386) pass a frame to some. 13901ee1b687SJohn Baldwin * handlers as their main argument. 13911ee1b687SJohn Baldwin * Return value: 13921ee1b687SJohn Baldwin * o 0: everything ok. 13931ee1b687SJohn Baldwin * o EINVAL: stray interrupt. 13941ee1b687SJohn Baldwin */ 13951ee1b687SJohn Baldwin int 13961ee1b687SJohn Baldwin intr_event_handle(struct intr_event *ie, struct trapframe *frame) 13971ee1b687SJohn Baldwin { 13981ee1b687SJohn Baldwin struct intr_handler *ih; 13991f255bd3SAlexander Motin struct trapframe *oldframe; 14001ee1b687SJohn Baldwin struct thread *td; 14011ee1b687SJohn Baldwin int error, ret, thread; 14021ee1b687SJohn Baldwin 14031ee1b687SJohn Baldwin td = curthread; 14041ee1b687SJohn Baldwin 1405b7627840SKonstantin Belousov #ifdef KSTACK_USAGE_PROF 1406b7627840SKonstantin Belousov intr_prof_stack_use(td, frame); 1407b7627840SKonstantin Belousov #endif 1408b7627840SKonstantin Belousov 14091ee1b687SJohn Baldwin /* An interrupt with no event or handlers is a stray interrupt. */ 14101ee1b687SJohn Baldwin if (ie == NULL || TAILQ_EMPTY(&ie->ie_handlers)) 14111ee1b687SJohn Baldwin return (EINVAL); 14121ee1b687SJohn Baldwin 14131ee1b687SJohn Baldwin /* 14141ee1b687SJohn Baldwin * Execute fast interrupt handlers directly. 14151ee1b687SJohn Baldwin * To support clock handlers, if a handler registers 14161ee1b687SJohn Baldwin * with a NULL argument, then we pass it a pointer to 14171ee1b687SJohn Baldwin * a trapframe as its argument. 14181ee1b687SJohn Baldwin */ 14191ee1b687SJohn Baldwin td->td_intr_nesting_level++; 14201ee1b687SJohn Baldwin thread = 0; 14211ee1b687SJohn Baldwin ret = 0; 14221ee1b687SJohn Baldwin critical_enter(); 14231f255bd3SAlexander Motin oldframe = td->td_intr_frame; 14241f255bd3SAlexander Motin td->td_intr_frame = frame; 14251ee1b687SJohn Baldwin TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) { 14261ee1b687SJohn Baldwin if (ih->ih_filter == NULL) { 14271ee1b687SJohn Baldwin thread = 1; 14281ee1b687SJohn Baldwin continue; 14291ee1b687SJohn Baldwin } 14301ee1b687SJohn Baldwin CTR4(KTR_INTR, "%s: exec %p(%p) for %s", __func__, 14311ee1b687SJohn Baldwin ih->ih_filter, ih->ih_argument == NULL ? frame : 14321ee1b687SJohn Baldwin ih->ih_argument, ih->ih_name); 14331ee1b687SJohn Baldwin if (ih->ih_argument == NULL) 14341ee1b687SJohn Baldwin ret = ih->ih_filter(frame); 14351ee1b687SJohn Baldwin else 14361ee1b687SJohn Baldwin ret = ih->ih_filter(ih->ih_argument); 143789fc20ccSAndriy Gapon KASSERT(ret == FILTER_STRAY || 143889fc20ccSAndriy Gapon ((ret & (FILTER_SCHEDULE_THREAD | FILTER_HANDLED)) != 0 && 143989fc20ccSAndriy Gapon (ret & ~(FILTER_SCHEDULE_THREAD | FILTER_HANDLED)) == 0), 144089fc20ccSAndriy Gapon ("%s: incorrect return value %#x from %s", __func__, ret, 144189fc20ccSAndriy Gapon ih->ih_name)); 144289fc20ccSAndriy Gapon 14431ee1b687SJohn Baldwin /* 14441ee1b687SJohn Baldwin * Wrapper handler special handling: 14451ee1b687SJohn Baldwin * 14461ee1b687SJohn Baldwin * in some particular cases (like pccard and pccbb), 14471ee1b687SJohn Baldwin * the _real_ device handler is wrapped in a couple of 14481ee1b687SJohn Baldwin * functions - a filter wrapper and an ithread wrapper. 14491ee1b687SJohn Baldwin * In this case (and just in this case), the filter wrapper 14501ee1b687SJohn Baldwin * could ask the system to schedule the ithread and mask 14511ee1b687SJohn Baldwin * the interrupt source if the wrapped handler is composed 14521ee1b687SJohn Baldwin * of just an ithread handler. 14531ee1b687SJohn Baldwin * 14541ee1b687SJohn Baldwin * TODO: write a generic wrapper to avoid people rolling 14551ee1b687SJohn Baldwin * their own 14561ee1b687SJohn Baldwin */ 14571ee1b687SJohn Baldwin if (!thread) { 14581ee1b687SJohn Baldwin if (ret == FILTER_SCHEDULE_THREAD) 14591ee1b687SJohn Baldwin thread = 1; 14601ee1b687SJohn Baldwin } 14611ee1b687SJohn Baldwin } 14621f255bd3SAlexander Motin td->td_intr_frame = oldframe; 14631ee1b687SJohn Baldwin 14641ee1b687SJohn Baldwin if (thread) { 14651ee1b687SJohn Baldwin if (ie->ie_pre_ithread != NULL) 14661ee1b687SJohn Baldwin ie->ie_pre_ithread(ie->ie_source); 14671ee1b687SJohn Baldwin } else { 14681ee1b687SJohn Baldwin if (ie->ie_post_filter != NULL) 14691ee1b687SJohn Baldwin ie->ie_post_filter(ie->ie_source); 14701ee1b687SJohn Baldwin } 14711ee1b687SJohn Baldwin 14721ee1b687SJohn Baldwin /* Schedule the ithread if needed. */ 14731ee1b687SJohn Baldwin if (thread) { 14741ee1b687SJohn Baldwin error = intr_event_schedule_thread(ie); 14751ee1b687SJohn Baldwin KASSERT(error == 0, ("bad stray interrupt")); 14761ee1b687SJohn Baldwin } 14771ee1b687SJohn Baldwin critical_exit(); 14781ee1b687SJohn Baldwin td->td_intr_nesting_level--; 14791ee1b687SJohn Baldwin return (0); 14801ee1b687SJohn Baldwin } 1481bafe5a31SPaolo Pisati #else 1482bafe5a31SPaolo Pisati /* 1483bafe5a31SPaolo Pisati * This is the main code for interrupt threads. 1484bafe5a31SPaolo Pisati */ 1485bafe5a31SPaolo Pisati static void 1486bafe5a31SPaolo Pisati ithread_loop(void *arg) 1487bafe5a31SPaolo Pisati { 1488bafe5a31SPaolo Pisati struct intr_thread *ithd; 1489bafe5a31SPaolo Pisati struct intr_handler *ih; 1490bafe5a31SPaolo Pisati struct intr_event *ie; 1491bafe5a31SPaolo Pisati struct thread *td; 1492bafe5a31SPaolo Pisati struct proc *p; 1493bafe5a31SPaolo Pisati int priv; 1494e4cd31ddSJeff Roberson int wake; 1495bafe5a31SPaolo Pisati 1496bafe5a31SPaolo Pisati td = curthread; 1497bafe5a31SPaolo Pisati p = td->td_proc; 1498bafe5a31SPaolo Pisati ih = (struct intr_handler *)arg; 1499bafe5a31SPaolo Pisati priv = (ih->ih_thread != NULL) ? 1 : 0; 1500bafe5a31SPaolo Pisati ithd = (priv) ? ih->ih_thread : ih->ih_event->ie_thread; 1501bafe5a31SPaolo Pisati KASSERT(ithd->it_thread == td, 1502bafe5a31SPaolo Pisati ("%s: ithread and proc linkage out of sync", __func__)); 1503bafe5a31SPaolo Pisati ie = ithd->it_event; 1504bafe5a31SPaolo Pisati ie->ie_count = 0; 1505e4cd31ddSJeff Roberson wake = 0; 1506bafe5a31SPaolo Pisati 1507bafe5a31SPaolo Pisati /* 1508bafe5a31SPaolo Pisati * As long as we have interrupts outstanding, go through the 1509bafe5a31SPaolo Pisati * list of handlers, giving each one a go at it. 1510bafe5a31SPaolo Pisati */ 1511bafe5a31SPaolo Pisati for (;;) { 1512bafe5a31SPaolo Pisati /* 1513bafe5a31SPaolo Pisati * If we are an orphaned thread, then just die. 1514bafe5a31SPaolo Pisati */ 1515bafe5a31SPaolo Pisati if (ithd->it_flags & IT_DEAD) { 1516bafe5a31SPaolo Pisati CTR3(KTR_INTR, "%s: pid %d (%s) exiting", __func__, 15177ab24ea3SJulian Elischer p->p_pid, td->td_name); 1518bafe5a31SPaolo Pisati free(ithd, M_ITHREAD); 1519ca9a0ddfSJulian Elischer kthread_exit(); 1520bafe5a31SPaolo Pisati } 1521bafe5a31SPaolo Pisati 1522bafe5a31SPaolo Pisati /* 1523bafe5a31SPaolo Pisati * Service interrupts. If another interrupt arrives while 1524bafe5a31SPaolo Pisati * we are running, it will set it_need to note that we 1525bafe5a31SPaolo Pisati * should make another pass. 1526283dfee9SKonstantin Belousov * 1527283dfee9SKonstantin Belousov * The load_acq part of the following cmpset ensures 1528283dfee9SKonstantin Belousov * that the load of ih_need in ithread_execute_handlers() 1529283dfee9SKonstantin Belousov * is ordered after the load of it_need here. 1530bafe5a31SPaolo Pisati */ 1531283dfee9SKonstantin Belousov while (atomic_cmpset_acq_int(&ithd->it_need, 1, 0) != 0) { 1532bafe5a31SPaolo Pisati if (priv) 1533bafe5a31SPaolo Pisati priv_ithread_execute_handler(p, ih); 1534bafe5a31SPaolo Pisati else 1535bafe5a31SPaolo Pisati ithread_execute_handlers(p, ie); 1536bafe5a31SPaolo Pisati } 1537bafe5a31SPaolo Pisati WITNESS_WARN(WARN_PANIC, NULL, "suspending ithread"); 1538bafe5a31SPaolo Pisati mtx_assert(&Giant, MA_NOTOWNED); 1539bafe5a31SPaolo Pisati 1540bafe5a31SPaolo Pisati /* 1541bafe5a31SPaolo Pisati * Processed all our interrupts. Now get the sched 1542bafe5a31SPaolo Pisati * lock. This may take a while and it_need may get 1543bafe5a31SPaolo Pisati * set again, so we have to check it again. 1544bafe5a31SPaolo Pisati */ 1545982d11f8SJeff Roberson thread_lock(td); 154603bbcb2fSKonstantin Belousov if (atomic_load_acq_int(&ithd->it_need) == 0 && 154703bbcb2fSKonstantin Belousov (ithd->it_flags & (IT_DEAD | IT_WAIT)) == 0) { 1548bafe5a31SPaolo Pisati TD_SET_IWAIT(td); 1549bafe5a31SPaolo Pisati ie->ie_count = 0; 15508df78c41SJeff Roberson mi_switch(SW_VOL | SWT_IWAIT, NULL); 1551bafe5a31SPaolo Pisati } 1552e4cd31ddSJeff Roberson if (ithd->it_flags & IT_WAIT) { 1553e4cd31ddSJeff Roberson wake = 1; 1554e4cd31ddSJeff Roberson ithd->it_flags &= ~IT_WAIT; 1555e4cd31ddSJeff Roberson } 1556982d11f8SJeff Roberson thread_unlock(td); 1557e4cd31ddSJeff Roberson if (wake) { 1558e4cd31ddSJeff Roberson wakeup(ithd); 1559e4cd31ddSJeff Roberson wake = 0; 1560e4cd31ddSJeff Roberson } 1561bafe5a31SPaolo Pisati } 1562bafe5a31SPaolo Pisati } 1563bafe5a31SPaolo Pisati 1564bafe5a31SPaolo Pisati /* 1565bafe5a31SPaolo Pisati * Main loop for interrupt filter. 1566bafe5a31SPaolo Pisati * 1567bafe5a31SPaolo Pisati * Some architectures (i386, amd64 and arm) require the optional frame 1568bafe5a31SPaolo Pisati * parameter, and use it as the main argument for fast handler execution 1569bafe5a31SPaolo Pisati * when ih_argument == NULL. 1570bafe5a31SPaolo Pisati * 1571bafe5a31SPaolo Pisati * Return value: 1572bafe5a31SPaolo Pisati * o FILTER_STRAY: No filter recognized the event, and no 1573bafe5a31SPaolo Pisati * filter-less handler is registered on this 1574bafe5a31SPaolo Pisati * line. 1575bafe5a31SPaolo Pisati * o FILTER_HANDLED: A filter claimed the event and served it. 1576bafe5a31SPaolo Pisati * o FILTER_SCHEDULE_THREAD: No filter claimed the event, but there's at 1577bafe5a31SPaolo Pisati * least one filter-less handler on this line. 1578bafe5a31SPaolo Pisati * o FILTER_HANDLED | 1579bafe5a31SPaolo Pisati * FILTER_SCHEDULE_THREAD: A filter claimed the event, and asked for 1580bafe5a31SPaolo Pisati * scheduling the per-handler ithread. 1581bafe5a31SPaolo Pisati * 1582bafe5a31SPaolo Pisati * In case an ithread has to be scheduled, in *ithd there will be a 1583bafe5a31SPaolo Pisati * pointer to a struct intr_thread containing the thread to be 1584bafe5a31SPaolo Pisati * scheduled. 1585bafe5a31SPaolo Pisati */ 1586bafe5a31SPaolo Pisati 15871ee1b687SJohn Baldwin static int 1588bafe5a31SPaolo Pisati intr_filter_loop(struct intr_event *ie, struct trapframe *frame, 1589bafe5a31SPaolo Pisati struct intr_thread **ithd) 1590bafe5a31SPaolo Pisati { 1591bafe5a31SPaolo Pisati struct intr_handler *ih; 1592bafe5a31SPaolo Pisati void *arg; 1593bafe5a31SPaolo Pisati int ret, thread_only; 1594bafe5a31SPaolo Pisati 1595bafe5a31SPaolo Pisati ret = 0; 1596bafe5a31SPaolo Pisati thread_only = 0; 1597bafe5a31SPaolo Pisati TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) { 1598bafe5a31SPaolo Pisati /* 1599bafe5a31SPaolo Pisati * Execute fast interrupt handlers directly. 1600bafe5a31SPaolo Pisati * To support clock handlers, if a handler registers 1601bafe5a31SPaolo Pisati * with a NULL argument, then we pass it a pointer to 1602bafe5a31SPaolo Pisati * a trapframe as its argument. 1603bafe5a31SPaolo Pisati */ 1604bafe5a31SPaolo Pisati arg = ((ih->ih_argument == NULL) ? frame : ih->ih_argument); 1605bafe5a31SPaolo Pisati 1606bafe5a31SPaolo Pisati CTR5(KTR_INTR, "%s: exec %p/%p(%p) for %s", __func__, 1607bafe5a31SPaolo Pisati ih->ih_filter, ih->ih_handler, arg, ih->ih_name); 1608bafe5a31SPaolo Pisati 1609bafe5a31SPaolo Pisati if (ih->ih_filter != NULL) 1610bafe5a31SPaolo Pisati ret = ih->ih_filter(arg); 1611bafe5a31SPaolo Pisati else { 1612bafe5a31SPaolo Pisati thread_only = 1; 1613bafe5a31SPaolo Pisati continue; 1614bafe5a31SPaolo Pisati } 161589fc20ccSAndriy Gapon KASSERT(ret == FILTER_STRAY || 161689fc20ccSAndriy Gapon ((ret & (FILTER_SCHEDULE_THREAD | FILTER_HANDLED)) != 0 && 161789fc20ccSAndriy Gapon (ret & ~(FILTER_SCHEDULE_THREAD | FILTER_HANDLED)) == 0), 161889fc20ccSAndriy Gapon ("%s: incorrect return value %#x from %s", __func__, ret, 161989fc20ccSAndriy Gapon ih->ih_name)); 1620bafe5a31SPaolo Pisati if (ret & FILTER_STRAY) 1621bafe5a31SPaolo Pisati continue; 1622bafe5a31SPaolo Pisati else { 1623bafe5a31SPaolo Pisati *ithd = ih->ih_thread; 1624bafe5a31SPaolo Pisati return (ret); 1625bafe5a31SPaolo Pisati } 1626bafe5a31SPaolo Pisati } 1627bafe5a31SPaolo Pisati 1628bafe5a31SPaolo Pisati /* 1629bafe5a31SPaolo Pisati * No filters handled the interrupt and we have at least 1630bafe5a31SPaolo Pisati * one handler without a filter. In this case, we schedule 1631bafe5a31SPaolo Pisati * all of the filter-less handlers to run in the ithread. 1632bafe5a31SPaolo Pisati */ 1633bafe5a31SPaolo Pisati if (thread_only) { 1634bafe5a31SPaolo Pisati *ithd = ie->ie_thread; 1635bafe5a31SPaolo Pisati return (FILTER_SCHEDULE_THREAD); 1636bafe5a31SPaolo Pisati } 1637bafe5a31SPaolo Pisati return (FILTER_STRAY); 1638bafe5a31SPaolo Pisati } 1639bafe5a31SPaolo Pisati 1640bafe5a31SPaolo Pisati /* 1641bafe5a31SPaolo Pisati * Main interrupt handling body. 1642bafe5a31SPaolo Pisati * 1643bafe5a31SPaolo Pisati * Input: 1644bafe5a31SPaolo Pisati * o ie: the event connected to this interrupt. 1645bafe5a31SPaolo Pisati * o frame: some archs (i.e. i386) pass a frame to some. 1646bafe5a31SPaolo Pisati * handlers as their main argument. 1647bafe5a31SPaolo Pisati * Return value: 1648bafe5a31SPaolo Pisati * o 0: everything ok. 1649bafe5a31SPaolo Pisati * o EINVAL: stray interrupt. 1650bafe5a31SPaolo Pisati */ 1651bafe5a31SPaolo Pisati int 1652bafe5a31SPaolo Pisati intr_event_handle(struct intr_event *ie, struct trapframe *frame) 1653bafe5a31SPaolo Pisati { 1654bafe5a31SPaolo Pisati struct intr_thread *ithd; 16551f255bd3SAlexander Motin struct trapframe *oldframe; 1656bafe5a31SPaolo Pisati struct thread *td; 1657bafe5a31SPaolo Pisati int thread; 1658bafe5a31SPaolo Pisati 1659bafe5a31SPaolo Pisati ithd = NULL; 1660bafe5a31SPaolo Pisati td = curthread; 1661bafe5a31SPaolo Pisati 1662bafe5a31SPaolo Pisati if (ie == NULL || TAILQ_EMPTY(&ie->ie_handlers)) 1663bafe5a31SPaolo Pisati return (EINVAL); 1664bafe5a31SPaolo Pisati 1665bafe5a31SPaolo Pisati td->td_intr_nesting_level++; 1666bafe5a31SPaolo Pisati thread = 0; 1667bafe5a31SPaolo Pisati critical_enter(); 16681f255bd3SAlexander Motin oldframe = td->td_intr_frame; 16691f255bd3SAlexander Motin td->td_intr_frame = frame; 1670bafe5a31SPaolo Pisati thread = intr_filter_loop(ie, frame, &ithd); 1671bafe5a31SPaolo Pisati if (thread & FILTER_HANDLED) { 16721ee1b687SJohn Baldwin if (ie->ie_post_filter != NULL) 16731ee1b687SJohn Baldwin ie->ie_post_filter(ie->ie_source); 1674bafe5a31SPaolo Pisati } else { 16751ee1b687SJohn Baldwin if (ie->ie_pre_ithread != NULL) 16761ee1b687SJohn Baldwin ie->ie_pre_ithread(ie->ie_source); 1677bafe5a31SPaolo Pisati } 16781f255bd3SAlexander Motin td->td_intr_frame = oldframe; 1679bafe5a31SPaolo Pisati critical_exit(); 1680bafe5a31SPaolo Pisati 1681bafe5a31SPaolo Pisati /* Interrupt storm logic */ 1682bafe5a31SPaolo Pisati if (thread & FILTER_STRAY) { 1683bafe5a31SPaolo Pisati ie->ie_count++; 1684bafe5a31SPaolo Pisati if (ie->ie_count < intr_storm_threshold) 1685bafe5a31SPaolo Pisati printf("Interrupt stray detection not present\n"); 1686bafe5a31SPaolo Pisati } 1687bafe5a31SPaolo Pisati 1688bafe5a31SPaolo Pisati /* Schedule an ithread if needed. */ 1689bafe5a31SPaolo Pisati if (thread & FILTER_SCHEDULE_THREAD) { 1690bafe5a31SPaolo Pisati if (intr_event_schedule_thread(ie, ithd) != 0) 1691bafe5a31SPaolo Pisati panic("%s: impossible stray interrupt", __func__); 1692bafe5a31SPaolo Pisati } 1693bafe5a31SPaolo Pisati td->td_intr_nesting_level--; 1694bafe5a31SPaolo Pisati return (0); 1695bafe5a31SPaolo Pisati } 1696bafe5a31SPaolo Pisati #endif 16971931cf94SJohn Baldwin 16988b201c42SJohn Baldwin #ifdef DDB 16998b201c42SJohn Baldwin /* 17008b201c42SJohn Baldwin * Dump details about an interrupt handler 17018b201c42SJohn Baldwin */ 17028b201c42SJohn Baldwin static void 1703e0f66ef8SJohn Baldwin db_dump_intrhand(struct intr_handler *ih) 17048b201c42SJohn Baldwin { 17058b201c42SJohn Baldwin int comma; 17068b201c42SJohn Baldwin 17078b201c42SJohn Baldwin db_printf("\t%-10s ", ih->ih_name); 17088b201c42SJohn Baldwin switch (ih->ih_pri) { 17098b201c42SJohn Baldwin case PI_REALTIME: 17108b201c42SJohn Baldwin db_printf("CLK "); 17118b201c42SJohn Baldwin break; 17128b201c42SJohn Baldwin case PI_AV: 17138b201c42SJohn Baldwin db_printf("AV "); 17148b201c42SJohn Baldwin break; 1715d3305205SJohn Baldwin case PI_TTY: 17168b201c42SJohn Baldwin db_printf("TTY "); 17178b201c42SJohn Baldwin break; 17188b201c42SJohn Baldwin case PI_NET: 17198b201c42SJohn Baldwin db_printf("NET "); 17208b201c42SJohn Baldwin break; 17218b201c42SJohn Baldwin case PI_DISK: 17228b201c42SJohn Baldwin db_printf("DISK"); 17238b201c42SJohn Baldwin break; 17248b201c42SJohn Baldwin case PI_DULL: 17258b201c42SJohn Baldwin db_printf("DULL"); 17268b201c42SJohn Baldwin break; 17278b201c42SJohn Baldwin default: 17288b201c42SJohn Baldwin if (ih->ih_pri >= PI_SOFT) 17298b201c42SJohn Baldwin db_printf("SWI "); 17308b201c42SJohn Baldwin else 17318b201c42SJohn Baldwin db_printf("%4u", ih->ih_pri); 17328b201c42SJohn Baldwin break; 17338b201c42SJohn Baldwin } 17348b201c42SJohn Baldwin db_printf(" "); 1735b887a155SKonstantin Belousov if (ih->ih_filter != NULL) { 1736b887a155SKonstantin Belousov db_printf("[F]"); 1737b887a155SKonstantin Belousov db_printsym((uintptr_t)ih->ih_filter, DB_STGY_PROC); 1738b887a155SKonstantin Belousov } 1739b887a155SKonstantin Belousov if (ih->ih_handler != NULL) { 1740b887a155SKonstantin Belousov if (ih->ih_filter != NULL) 1741b887a155SKonstantin Belousov db_printf(","); 1742b887a155SKonstantin Belousov db_printf("[H]"); 17438b201c42SJohn Baldwin db_printsym((uintptr_t)ih->ih_handler, DB_STGY_PROC); 1744b887a155SKonstantin Belousov } 17458b201c42SJohn Baldwin db_printf("(%p)", ih->ih_argument); 17468b201c42SJohn Baldwin if (ih->ih_need || 1747ef544f63SPaolo Pisati (ih->ih_flags & (IH_EXCLUSIVE | IH_ENTROPY | IH_DEAD | 17488b201c42SJohn Baldwin IH_MPSAFE)) != 0) { 17498b201c42SJohn Baldwin db_printf(" {"); 17508b201c42SJohn Baldwin comma = 0; 17518b201c42SJohn Baldwin if (ih->ih_flags & IH_EXCLUSIVE) { 17528b201c42SJohn Baldwin if (comma) 17538b201c42SJohn Baldwin db_printf(", "); 17548b201c42SJohn Baldwin db_printf("EXCL"); 17558b201c42SJohn Baldwin comma = 1; 17568b201c42SJohn Baldwin } 17578b201c42SJohn Baldwin if (ih->ih_flags & IH_ENTROPY) { 17588b201c42SJohn Baldwin if (comma) 17598b201c42SJohn Baldwin db_printf(", "); 17608b201c42SJohn Baldwin db_printf("ENTROPY"); 17618b201c42SJohn Baldwin comma = 1; 17628b201c42SJohn Baldwin } 17638b201c42SJohn Baldwin if (ih->ih_flags & IH_DEAD) { 17648b201c42SJohn Baldwin if (comma) 17658b201c42SJohn Baldwin db_printf(", "); 17668b201c42SJohn Baldwin db_printf("DEAD"); 17678b201c42SJohn Baldwin comma = 1; 17688b201c42SJohn Baldwin } 17698b201c42SJohn Baldwin if (ih->ih_flags & IH_MPSAFE) { 17708b201c42SJohn Baldwin if (comma) 17718b201c42SJohn Baldwin db_printf(", "); 17728b201c42SJohn Baldwin db_printf("MPSAFE"); 17738b201c42SJohn Baldwin comma = 1; 17748b201c42SJohn Baldwin } 17758b201c42SJohn Baldwin if (ih->ih_need) { 17768b201c42SJohn Baldwin if (comma) 17778b201c42SJohn Baldwin db_printf(", "); 17788b201c42SJohn Baldwin db_printf("NEED"); 17798b201c42SJohn Baldwin } 17808b201c42SJohn Baldwin db_printf("}"); 17818b201c42SJohn Baldwin } 17828b201c42SJohn Baldwin db_printf("\n"); 17838b201c42SJohn Baldwin } 17848b201c42SJohn Baldwin 17858b201c42SJohn Baldwin /* 1786e0f66ef8SJohn Baldwin * Dump details about a event. 17878b201c42SJohn Baldwin */ 17888b201c42SJohn Baldwin void 1789e0f66ef8SJohn Baldwin db_dump_intr_event(struct intr_event *ie, int handlers) 17908b201c42SJohn Baldwin { 1791e0f66ef8SJohn Baldwin struct intr_handler *ih; 1792e0f66ef8SJohn Baldwin struct intr_thread *it; 17938b201c42SJohn Baldwin int comma; 17948b201c42SJohn Baldwin 1795e0f66ef8SJohn Baldwin db_printf("%s ", ie->ie_fullname); 1796e0f66ef8SJohn Baldwin it = ie->ie_thread; 1797e0f66ef8SJohn Baldwin if (it != NULL) 1798e0f66ef8SJohn Baldwin db_printf("(pid %d)", it->it_thread->td_proc->p_pid); 1799e0f66ef8SJohn Baldwin else 1800e0f66ef8SJohn Baldwin db_printf("(no thread)"); 1801e0f66ef8SJohn Baldwin if ((ie->ie_flags & (IE_SOFT | IE_ENTROPY | IE_ADDING_THREAD)) != 0 || 1802e0f66ef8SJohn Baldwin (it != NULL && it->it_need)) { 18038b201c42SJohn Baldwin db_printf(" {"); 18048b201c42SJohn Baldwin comma = 0; 1805e0f66ef8SJohn Baldwin if (ie->ie_flags & IE_SOFT) { 18068b201c42SJohn Baldwin db_printf("SOFT"); 18078b201c42SJohn Baldwin comma = 1; 18088b201c42SJohn Baldwin } 1809e0f66ef8SJohn Baldwin if (ie->ie_flags & IE_ENTROPY) { 18108b201c42SJohn Baldwin if (comma) 18118b201c42SJohn Baldwin db_printf(", "); 18128b201c42SJohn Baldwin db_printf("ENTROPY"); 18138b201c42SJohn Baldwin comma = 1; 18148b201c42SJohn Baldwin } 1815e0f66ef8SJohn Baldwin if (ie->ie_flags & IE_ADDING_THREAD) { 18168b201c42SJohn Baldwin if (comma) 18178b201c42SJohn Baldwin db_printf(", "); 1818e0f66ef8SJohn Baldwin db_printf("ADDING_THREAD"); 18198b201c42SJohn Baldwin comma = 1; 18208b201c42SJohn Baldwin } 1821e0f66ef8SJohn Baldwin if (it != NULL && it->it_need) { 18228b201c42SJohn Baldwin if (comma) 18238b201c42SJohn Baldwin db_printf(", "); 18248b201c42SJohn Baldwin db_printf("NEED"); 18258b201c42SJohn Baldwin } 18268b201c42SJohn Baldwin db_printf("}"); 18278b201c42SJohn Baldwin } 18288b201c42SJohn Baldwin db_printf("\n"); 18298b201c42SJohn Baldwin 18308b201c42SJohn Baldwin if (handlers) 1831e0f66ef8SJohn Baldwin TAILQ_FOREACH(ih, &ie->ie_handlers, ih_next) 18328b201c42SJohn Baldwin db_dump_intrhand(ih); 18338b201c42SJohn Baldwin } 1834e0f66ef8SJohn Baldwin 1835e0f66ef8SJohn Baldwin /* 1836e0f66ef8SJohn Baldwin * Dump data about interrupt handlers 1837e0f66ef8SJohn Baldwin */ 1838e0f66ef8SJohn Baldwin DB_SHOW_COMMAND(intr, db_show_intr) 1839e0f66ef8SJohn Baldwin { 1840e0f66ef8SJohn Baldwin struct intr_event *ie; 184119e9205aSJohn Baldwin int all, verbose; 1842e0f66ef8SJohn Baldwin 1843dc15eac0SEd Schouten verbose = strchr(modif, 'v') != NULL; 1844dc15eac0SEd Schouten all = strchr(modif, 'a') != NULL; 1845e0f66ef8SJohn Baldwin TAILQ_FOREACH(ie, &event_list, ie_list) { 1846e0f66ef8SJohn Baldwin if (!all && TAILQ_EMPTY(&ie->ie_handlers)) 1847e0f66ef8SJohn Baldwin continue; 1848e0f66ef8SJohn Baldwin db_dump_intr_event(ie, verbose); 184919e9205aSJohn Baldwin if (db_pager_quit) 185019e9205aSJohn Baldwin break; 1851e0f66ef8SJohn Baldwin } 1852e0f66ef8SJohn Baldwin } 18538b201c42SJohn Baldwin #endif /* DDB */ 18548b201c42SJohn Baldwin 1855b4151f71SJohn Baldwin /* 18568088699fSJohn Baldwin * Start standard software interrupt threads 18571931cf94SJohn Baldwin */ 18581931cf94SJohn Baldwin static void 1859b4151f71SJohn Baldwin start_softintr(void *dummy) 18601931cf94SJohn Baldwin { 1861b4151f71SJohn Baldwin 18628d809d50SJeff Roberson if (swi_add(NULL, "vm", swi_vm, NULL, SWI_VM, INTR_MPSAFE, &vm_ih)) 18638d809d50SJeff Roberson panic("died while creating vm swi ithread"); 18641931cf94SJohn Baldwin } 1865237fdd78SRobert Watson SYSINIT(start_softintr, SI_SUB_SOFTINTR, SI_ORDER_FIRST, start_softintr, 1866237fdd78SRobert Watson NULL); 18671931cf94SJohn Baldwin 1868d279178dSThomas Moestl /* 1869d279178dSThomas Moestl * Sysctls used by systat and others: hw.intrnames and hw.intrcnt. 1870d279178dSThomas Moestl * The data for this machine dependent, and the declarations are in machine 1871d279178dSThomas Moestl * dependent code. The layout of intrnames and intrcnt however is machine 1872d279178dSThomas Moestl * independent. 1873d279178dSThomas Moestl * 1874d279178dSThomas Moestl * We do not know the length of intrcnt and intrnames at compile time, so 1875d279178dSThomas Moestl * calculate things at run time. 1876d279178dSThomas Moestl */ 1877d279178dSThomas Moestl static int 1878d279178dSThomas Moestl sysctl_intrnames(SYSCTL_HANDLER_ARGS) 1879d279178dSThomas Moestl { 1880521ea19dSAttilio Rao return (sysctl_handle_opaque(oidp, intrnames, sintrnames, req)); 1881d279178dSThomas Moestl } 1882d279178dSThomas Moestl 1883d279178dSThomas Moestl SYSCTL_PROC(_hw, OID_AUTO, intrnames, CTLTYPE_OPAQUE | CTLFLAG_RD, 1884d279178dSThomas Moestl NULL, 0, sysctl_intrnames, "", "Interrupt Names"); 1885d279178dSThomas Moestl 1886d279178dSThomas Moestl static int 1887d279178dSThomas Moestl sysctl_intrcnt(SYSCTL_HANDLER_ARGS) 1888d279178dSThomas Moestl { 188985729c2cSJuli Mallett #ifdef SCTL_MASK32 189085729c2cSJuli Mallett uint32_t *intrcnt32; 189185729c2cSJuli Mallett unsigned i; 189285729c2cSJuli Mallett int error; 189385729c2cSJuli Mallett 189485729c2cSJuli Mallett if (req->flags & SCTL_MASK32) { 189585729c2cSJuli Mallett if (!req->oldptr) 189685729c2cSJuli Mallett return (sysctl_handle_opaque(oidp, NULL, sintrcnt / 2, req)); 189785729c2cSJuli Mallett intrcnt32 = malloc(sintrcnt / 2, M_TEMP, M_NOWAIT); 189885729c2cSJuli Mallett if (intrcnt32 == NULL) 189985729c2cSJuli Mallett return (ENOMEM); 190085729c2cSJuli Mallett for (i = 0; i < sintrcnt / sizeof (u_long); i++) 190185729c2cSJuli Mallett intrcnt32[i] = intrcnt[i]; 190285729c2cSJuli Mallett error = sysctl_handle_opaque(oidp, intrcnt32, sintrcnt / 2, req); 190385729c2cSJuli Mallett free(intrcnt32, M_TEMP); 190485729c2cSJuli Mallett return (error); 190585729c2cSJuli Mallett } 190685729c2cSJuli Mallett #endif 1907521ea19dSAttilio Rao return (sysctl_handle_opaque(oidp, intrcnt, sintrcnt, req)); 1908d279178dSThomas Moestl } 1909d279178dSThomas Moestl 1910d279178dSThomas Moestl SYSCTL_PROC(_hw, OID_AUTO, intrcnt, CTLTYPE_OPAQUE | CTLFLAG_RD, 1911d279178dSThomas Moestl NULL, 0, sysctl_intrcnt, "", "Interrupt Counts"); 19128b201c42SJohn Baldwin 19138b201c42SJohn Baldwin #ifdef DDB 19148b201c42SJohn Baldwin /* 19158b201c42SJohn Baldwin * DDB command to dump the interrupt statistics. 19168b201c42SJohn Baldwin */ 19178b201c42SJohn Baldwin DB_SHOW_COMMAND(intrcnt, db_show_intrcnt) 19188b201c42SJohn Baldwin { 19198b201c42SJohn Baldwin u_long *i; 19208b201c42SJohn Baldwin char *cp; 1921521ea19dSAttilio Rao u_int j; 19228b201c42SJohn Baldwin 19238b201c42SJohn Baldwin cp = intrnames; 1924521ea19dSAttilio Rao j = 0; 1925521ea19dSAttilio Rao for (i = intrcnt; j < (sintrcnt / sizeof(u_long)) && !db_pager_quit; 1926521ea19dSAttilio Rao i++, j++) { 19278b201c42SJohn Baldwin if (*cp == '\0') 19288b201c42SJohn Baldwin break; 19298b201c42SJohn Baldwin if (*i != 0) 19308b201c42SJohn Baldwin db_printf("%s\t%lu\n", cp, *i); 19318b201c42SJohn Baldwin cp += strlen(cp) + 1; 19328b201c42SJohn Baldwin } 19338b201c42SJohn Baldwin } 19348b201c42SJohn Baldwin #endif 1935