778 lines
20 KiB
C
778 lines
20 KiB
C
/* Spa */
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/* SPDX-FileCopyrightText: Copyright © 2020 Wim Taymans */
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/* SPDX-License-Identifier: MIT */
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#include <errno.h>
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#include <stddef.h>
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#include <unistd.h>
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#include <string.h>
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#include <stdio.h>
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#include <fcntl.h>
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#ifdef __linux__
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#include <linux/ethtool.h>
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#include <linux/sockios.h>
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#endif
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#include <net/if.h>
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#include <spa/support/plugin.h>
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#include <spa/support/log.h>
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#include <spa/support/loop.h>
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#include <spa/utils/names.h>
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#include <spa/utils/result.h>
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#include <spa/utils/string.h>
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#include <spa/utils/dll.h>
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#include <spa/node/node.h>
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#include <spa/node/keys.h>
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#include <spa/node/io.h>
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#include <spa/node/utils.h>
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#include <spa/param/param.h>
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SPA_LOG_TOPIC_DEFINE_STATIC(log_topic, "spa.driver");
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#undef SPA_LOG_TOPIC_DEFAULT
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#define SPA_LOG_TOPIC_DEFAULT &log_topic
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#define DEFAULT_FREEWHEEL false
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#define DEFAULT_FREEWHEEL_WAIT 5
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#define DEFAULT_CLOCK_PREFIX "clock.system"
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#define DEFAULT_CLOCK_ID CLOCK_MONOTONIC
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#define DEFAULT_RESYNC_MS 10
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#define CLOCK_OFFSET_NAVG 20
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#define CLOCK_OFFSET_MAX_ERR (50 * SPA_NSEC_PER_USEC)
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#define CLOCKFD 3
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#define FD_TO_CLOCKID(fd) ((~(clockid_t) (fd) << 3) | CLOCKFD)
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#define CLOCKID_TO_FD(clk) ((unsigned int) ~((clk) >> 3))
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#define BW_PERIOD (3 * SPA_NSEC_PER_SEC)
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#define MAX_ERROR_MS 1
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struct props {
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bool freewheel;
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char clock_name[64];
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clockid_t clock_id;
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uint32_t freewheel_wait;
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float resync_ms;
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};
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struct clock_offset {
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int64_t offset;
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int64_t err;
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};
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struct impl {
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struct spa_handle handle;
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struct spa_node node;
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struct props props;
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struct spa_log *log;
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struct spa_loop *data_loop;
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struct spa_system *data_system;
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uint64_t info_all;
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struct spa_node_info info;
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struct spa_param_info params[1];
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struct spa_hook_list hooks;
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struct spa_callbacks callbacks;
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struct spa_io_position *position;
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struct spa_io_clock *clock;
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struct spa_source timer_source;
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struct itimerspec timerspec;
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int clock_fd;
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bool started;
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bool following;
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bool tracking;
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clockid_t timer_clockid;
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uint64_t next_time;
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uint64_t last_time;
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uint64_t base_time;
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struct spa_dll dll;
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double max_error;
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double max_resync;
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struct clock_offset nsec_offset;
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};
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static void reset_props(struct props *props)
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{
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props->freewheel = DEFAULT_FREEWHEEL;
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spa_zero(props->clock_name);
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props->clock_id = CLOCK_MONOTONIC;
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props->freewheel_wait = DEFAULT_FREEWHEEL_WAIT;
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props->resync_ms = DEFAULT_RESYNC_MS;
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}
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static const struct clock_info {
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const char *name;
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clockid_t id;
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} clock_info[] = {
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{ "realtime", CLOCK_REALTIME },
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#ifdef CLOCK_TAI
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{ "tai", CLOCK_TAI },
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#endif
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{ "monotonic", CLOCK_MONOTONIC },
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#ifdef CLOCK_MONOTONIC_RAW
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{ "monotonic-raw", CLOCK_MONOTONIC_RAW },
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#endif
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#ifdef CLOCK_BOOTTIME
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{ "boottime", CLOCK_BOOTTIME },
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#endif
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};
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static bool clock_for_timerfd(clockid_t id)
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{
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return id == CLOCK_REALTIME ||
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#ifdef CLOCK_BOOTTIME
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id == CLOCK_BOOTTIME ||
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#endif
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id == CLOCK_MONOTONIC;
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}
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static clockid_t clock_name_to_id(const char *name)
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{
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SPA_FOR_EACH_ELEMENT_VAR(clock_info, i) {
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if (spa_streq(i->name, name))
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return i->id;
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}
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return -1;
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}
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static const char *clock_id_to_name(clockid_t id)
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{
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SPA_FOR_EACH_ELEMENT_VAR(clock_info, i) {
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if (i->id == id)
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return i->name;
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}
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return "custom";
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}
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static void set_timeout(struct impl *this, uint64_t next_time)
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{
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spa_log_trace(this->log, "set timeout %"PRIu64, next_time);
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this->timerspec.it_value.tv_sec = next_time / SPA_NSEC_PER_SEC;
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this->timerspec.it_value.tv_nsec = next_time % SPA_NSEC_PER_SEC;
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spa_system_timerfd_settime(this->data_system,
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this->timer_source.fd, SPA_FD_TIMER_ABSTIME, &this->timerspec, NULL);
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}
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static inline uint64_t gettime_nsec(struct impl *this, clockid_t clock_id)
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{
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struct timespec now = { 0 };
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uint64_t nsec;
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if (spa_system_clock_gettime(this->data_system, clock_id, &now) < 0)
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return 0;
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nsec = SPA_TIMESPEC_TO_NSEC(&now);
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spa_log_trace(this->log, "%p now:%"PRIu64, this, nsec);
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return nsec;
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}
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static int set_timers(struct impl *this)
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{
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this->next_time = gettime_nsec(this, this->timer_clockid);
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spa_log_debug(this->log, "%p now:%"PRIu64, this, this->next_time);
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if (this->following || !this->started) {
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set_timeout(this, 0);
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} else {
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set_timeout(this, this->next_time);
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}
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return 0;
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}
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static inline bool is_following(struct impl *this)
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{
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return this->position && this->clock && this->position->clock.id != this->clock->id;
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}
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static int do_set_timers(struct spa_loop *loop,
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bool async,
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uint32_t seq,
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const void *data,
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size_t size,
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void *user_data)
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{
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struct impl *this = user_data;
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set_timers(this);
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return 0;
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}
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static int64_t get_nsec_offset(struct impl *this, uint64_t *now)
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{
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struct timespec ts1, ts2, ts3;
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int64_t t1, t2, t3;
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/* Offset between timer clock and monotonic */
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if (this->timer_clockid == CLOCK_MONOTONIC)
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return 0;
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spa_system_clock_gettime(this->data_system, CLOCK_MONOTONIC, &ts1);
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spa_system_clock_gettime(this->data_system, this->timer_clockid, &ts2);
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spa_system_clock_gettime(this->data_system, CLOCK_MONOTONIC, &ts3);
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t1 = SPA_TIMESPEC_TO_NSEC(&ts1);
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t2 = SPA_TIMESPEC_TO_NSEC(&ts2);
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t3 = SPA_TIMESPEC_TO_NSEC(&ts3);
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if (now)
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*now = t3;
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return t1 + (t3 - t1) / 2 - t2;
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}
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static int64_t clock_offset_update(struct clock_offset *off, int64_t offset, struct spa_log *log)
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{
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const int64_t max_resync = CLOCK_OFFSET_MAX_ERR;
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const int64_t n = CLOCK_OFFSET_NAVG;
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int64_t err;
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/* Moving average smoothing, discarding outliers */
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err = offset - off->offset;
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if (SPA_ABS(err) > max_resync) {
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/* Clock jump */
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spa_log_info(log, "nsec err %"PRIi64" > max_resync %"PRIi64", resetting",
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err, max_resync);
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off->offset = offset;
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off->err = 0;
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err = 0;
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} else if (SPA_ABS(err) / 2 <= off->err) {
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off->offset += err / n;
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}
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off->err += (SPA_ABS(err) - off->err) / n;
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spa_log_trace(log, "clock offset %"PRIi64" err:%"PRIi64" abs-err:%"PRIi64,
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off->offset, err, off->err);
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return off->offset;
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}
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static int64_t smooth_nsec_offset(struct impl *this, uint64_t *now)
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{
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int64_t offset;
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if (this->timer_clockid == CLOCK_MONOTONIC)
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return 0;
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offset = get_nsec_offset(this, now);
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return clock_offset_update(&this->nsec_offset, offset, this->log);
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}
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static int reassign_follower(struct impl *this)
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{
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bool following;
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if (this->clock)
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SPA_FLAG_UPDATE(this->clock->flags,
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SPA_IO_CLOCK_FLAG_FREEWHEEL, this->props.freewheel);
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if (!this->started)
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return 0;
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following = is_following(this);
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if (following != this->following) {
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spa_log_debug(this->log, "%p: reassign follower %d->%d", this, this->following, following);
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this->following = following;
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spa_loop_invoke(this->data_loop, do_set_timers, 0, NULL, 0, true, this);
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}
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return 0;
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}
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static int impl_node_set_io(void *object, uint32_t id, void *data, size_t size)
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{
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struct impl *this = object;
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spa_return_val_if_fail(this != NULL, -EINVAL);
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switch (id) {
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case SPA_IO_Clock:
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if (size > 0 && size < sizeof(struct spa_io_clock))
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return -EINVAL;
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this->clock = data;
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if (this->clock)
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spa_scnprintf(this->clock->name, sizeof(this->clock->name),
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"%s", this->props.clock_name);
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break;
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case SPA_IO_Position:
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if (size > 0 && size < sizeof(struct spa_io_position))
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return -EINVAL;
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this->position = data;
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break;
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default:
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return -ENOENT;
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}
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reassign_follower(this);
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return 0;
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}
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static inline uint64_t scale_u64(uint64_t val, uint32_t num, uint32_t denom)
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{
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#if 0
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return ((__uint128_t)val * num) / denom;
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#else
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return (uint64_t)((double)val / denom * num);
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#endif
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}
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static void on_timeout(struct spa_source *source)
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{
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struct impl *this = source->data;
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uint64_t expirations, nsec, duration, current_time, current_position, position;
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uint32_t rate;
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double corr = 1.0, err = 0.0;
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int res;
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if ((res = spa_system_timerfd_read(this->data_system,
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this->timer_source.fd, &expirations)) < 0) {
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if (res != -EAGAIN)
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spa_log_error(this->log, "%p: timerfd error: %s",
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this, spa_strerror(res));
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return;
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}
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if (SPA_LIKELY(this->position)) {
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duration = this->position->clock.target_duration;
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rate = this->position->clock.target_rate.denom;
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} else {
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duration = 1024;
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rate = 48000;
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}
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if (this->props.freewheel)
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nsec = gettime_nsec(this, this->timer_clockid);
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else
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nsec = this->next_time;
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if (this->tracking)
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/* we are actually following another clock */
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current_time = gettime_nsec(this, this->props.clock_id);
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else
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current_time = nsec;
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current_position = scale_u64(current_time, rate, SPA_NSEC_PER_SEC);
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if (this->last_time == 0) {
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spa_dll_set_bw(&this->dll, SPA_DLL_BW_MIN, duration, rate);
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this->max_error = rate * MAX_ERROR_MS / 1000;
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this->max_resync = rate * this->props.resync_ms / 1000;
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position = current_position;
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} else if (SPA_LIKELY(this->clock)) {
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position = this->clock->position + this->clock->duration;
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} else {
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position = current_position;
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}
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this->last_time = current_time;
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if (this->props.freewheel) {
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corr = 1.0;
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this->next_time = nsec + this->props.freewheel_wait * SPA_NSEC_PER_SEC;
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} else if (this->tracking) {
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/* check the elapsed time of the other clock against
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* the graph clock elapsed time, feed this error into the
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* dll and adjust the timeout of our MONOTONIC clock. */
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err = (double)position - (double)current_position;
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if (fabs(err) > this->max_error) {
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if (fabs(err) > this->max_resync) {
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spa_log_warn(this->log, "err %f > max_resync %f, resetting",
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err, this->max_resync);
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spa_dll_set_bw(&this->dll, SPA_DLL_BW_MIN, duration, rate);
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position = current_position;
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err = 0.0;
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} else {
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err = SPA_CLAMPD(err, -this->max_error, this->max_error);
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}
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}
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corr = spa_dll_update(&this->dll, err);
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this->next_time = (uint64_t)(nsec + duration / corr * 1e9 / rate);
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} else {
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corr = 1.0;
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this->next_time = scale_u64(position + duration, SPA_NSEC_PER_SEC, rate);
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}
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if (SPA_UNLIKELY((this->next_time - this->base_time) > BW_PERIOD)) {
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this->base_time = this->next_time;
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spa_log_debug(this->log, "%p: rate:%f "
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"bw:%f dur:%"PRIu64" max:%f drift:%f",
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this, corr, this->dll.bw, duration,
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this->max_error, err);
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}
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if (SPA_LIKELY(this->clock)) {
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uint64_t nsec_now = nsec;
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int64_t nsec_offset = smooth_nsec_offset(this, &nsec_now);
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this->clock->nsec = SPA_MIN(nsec + nsec_offset, nsec_now);
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this->clock->rate = this->clock->target_rate;
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this->clock->position = position;
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this->clock->duration = duration;
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this->clock->delay = 0;
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this->clock->rate_diff = corr;
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this->clock->next_nsec = this->next_time + nsec_offset;
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}
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spa_node_call_ready(&this->callbacks,
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SPA_STATUS_HAVE_DATA | SPA_STATUS_NEED_DATA);
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set_timeout(this, this->next_time);
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}
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static int do_start(struct impl *this)
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{
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if (this->started)
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return 0;
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this->following = is_following(this);
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this->started = true;
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this->last_time = 0;
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spa_loop_invoke(this->data_loop, do_set_timers, 0, NULL, 0, true, this);
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return 0;
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}
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static int do_stop(struct impl *this)
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{
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if (!this->started)
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return 0;
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this->started = false;
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spa_loop_invoke(this->data_loop, do_set_timers, 0, NULL, 0, true, this);
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return 0;
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}
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static int impl_node_send_command(void *object, const struct spa_command *command)
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{
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struct impl *this = object;
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spa_return_val_if_fail(this != NULL, -EINVAL);
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spa_return_val_if_fail(command != NULL, -EINVAL);
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switch (SPA_NODE_COMMAND_ID(command)) {
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case SPA_NODE_COMMAND_Start:
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do_start(this);
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break;
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case SPA_NODE_COMMAND_Suspend:
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case SPA_NODE_COMMAND_Pause:
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do_stop(this);
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break;
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default:
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return -ENOTSUP;
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}
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return 0;
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}
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static void emit_node_info(struct impl *this, bool full)
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{
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uint64_t old = full ? this->info.change_mask : 0;
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if (full)
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this->info.change_mask = this->info_all;
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if (this->info.change_mask) {
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struct spa_dict_item items[3];
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items[0] = SPA_DICT_ITEM_INIT(SPA_KEY_NODE_DRIVER, "true");
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items[1] = SPA_DICT_ITEM_INIT("clock.id", clock_id_to_name(this->props.clock_id));
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items[2] = SPA_DICT_ITEM_INIT("clock.name", this->props.clock_name);
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this->info.props = &SPA_DICT_INIT(items, 3);
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spa_node_emit_info(&this->hooks, &this->info);
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this->info.change_mask = old;
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}
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}
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static int impl_node_add_listener(void *object,
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struct spa_hook *listener,
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const struct spa_node_events *events,
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void *data)
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{
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struct impl *this = object;
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struct spa_hook_list save;
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spa_return_val_if_fail(this != NULL, -EINVAL);
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spa_hook_list_isolate(&this->hooks, &save, listener, events, data);
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emit_node_info(this, true);
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spa_hook_list_join(&this->hooks, &save);
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return 0;
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}
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static int
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impl_node_set_callbacks(void *object,
|
|
const struct spa_node_callbacks *callbacks,
|
|
void *data)
|
|
{
|
|
struct impl *this = object;
|
|
|
|
spa_return_val_if_fail(this != NULL, -EINVAL);
|
|
|
|
this->callbacks = SPA_CALLBACKS_INIT(callbacks, data);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int impl_node_process(void *object)
|
|
{
|
|
struct impl *this = object;
|
|
|
|
spa_return_val_if_fail(this != NULL, -EINVAL);
|
|
spa_log_trace(this->log, "process %d", this->props.freewheel);
|
|
|
|
if (this->props.freewheel &&
|
|
!SPA_FLAG_IS_SET(this->position->clock.flags, SPA_IO_CLOCK_FLAG_XRUN_RECOVER)) {
|
|
this->next_time = gettime_nsec(this, this->timer_clockid);
|
|
set_timeout(this, this->next_time);
|
|
}
|
|
return SPA_STATUS_HAVE_DATA | SPA_STATUS_NEED_DATA;
|
|
}
|
|
|
|
static const struct spa_node_methods impl_node = {
|
|
SPA_VERSION_NODE_METHODS,
|
|
.add_listener = impl_node_add_listener,
|
|
.set_callbacks = impl_node_set_callbacks,
|
|
.set_io = impl_node_set_io,
|
|
.send_command = impl_node_send_command,
|
|
.process = impl_node_process,
|
|
};
|
|
|
|
static int impl_get_interface(struct spa_handle *handle, const char *type, void **interface)
|
|
{
|
|
struct impl *this;
|
|
|
|
spa_return_val_if_fail(handle != NULL, -EINVAL);
|
|
spa_return_val_if_fail(interface != NULL, -EINVAL);
|
|
|
|
this = (struct impl *) handle;
|
|
|
|
if (spa_streq(type, SPA_TYPE_INTERFACE_Node))
|
|
*interface = &this->node;
|
|
else
|
|
return -ENOENT;
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int do_remove_timer(struct spa_loop *loop, bool async, uint32_t seq, const void *data, size_t size, void *user_data)
|
|
{
|
|
struct impl *this = user_data;
|
|
spa_loop_remove_source(this->data_loop, &this->timer_source);
|
|
return 0;
|
|
}
|
|
|
|
static int impl_clear(struct spa_handle *handle)
|
|
{
|
|
struct impl *this;
|
|
|
|
spa_return_val_if_fail(handle != NULL, -EINVAL);
|
|
|
|
this = (struct impl *) handle;
|
|
|
|
spa_loop_invoke(this->data_loop, do_remove_timer, 0, NULL, 0, true, this);
|
|
spa_system_close(this->data_system, this->timer_source.fd);
|
|
|
|
if (this->clock_fd != -1)
|
|
close(this->clock_fd);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static size_t
|
|
impl_get_size(const struct spa_handle_factory *factory,
|
|
const struct spa_dict *params)
|
|
{
|
|
return sizeof(struct impl);
|
|
}
|
|
|
|
static int get_phc_index(struct spa_system *s, const char *name) {
|
|
#ifdef ETHTOOL_GET_TS_INFO
|
|
struct ethtool_ts_info info = {0};
|
|
struct ifreq ifr = {0};
|
|
int fd, err;
|
|
|
|
info.cmd = ETHTOOL_GET_TS_INFO;
|
|
strncpy(ifr.ifr_name, name, IFNAMSIZ - 1);
|
|
ifr.ifr_data = (char *) &info;
|
|
|
|
fd = socket(AF_INET, SOCK_DGRAM, 0);
|
|
if (fd < 0)
|
|
return -errno;
|
|
|
|
err = spa_system_ioctl(s, fd, SIOCETHTOOL, &ifr);
|
|
close(fd);
|
|
if (err < 0)
|
|
return -errno;
|
|
|
|
return info.phc_index;
|
|
#else
|
|
return -ENOTSUP;
|
|
#endif
|
|
}
|
|
|
|
static int
|
|
impl_init(const struct spa_handle_factory *factory,
|
|
struct spa_handle *handle,
|
|
const struct spa_dict *info,
|
|
const struct spa_support *support,
|
|
uint32_t n_support)
|
|
{
|
|
struct impl *this;
|
|
uint32_t i;
|
|
|
|
spa_return_val_if_fail(factory != NULL, -EINVAL);
|
|
spa_return_val_if_fail(handle != NULL, -EINVAL);
|
|
|
|
handle->get_interface = impl_get_interface;
|
|
handle->clear = impl_clear;
|
|
|
|
this = (struct impl *) handle;
|
|
|
|
this->log = spa_support_find(support, n_support, SPA_TYPE_INTERFACE_Log);
|
|
this->data_loop = spa_support_find(support, n_support, SPA_TYPE_INTERFACE_DataLoop);
|
|
this->data_system = spa_support_find(support, n_support, SPA_TYPE_INTERFACE_DataSystem);
|
|
this->clock_fd = -1;
|
|
spa_dll_init(&this->dll);
|
|
|
|
if (this->data_loop == NULL) {
|
|
spa_log_error(this->log, "a data_loop is needed");
|
|
return -EINVAL;
|
|
}
|
|
if (this->data_system == NULL) {
|
|
spa_log_error(this->log, "a data_system is needed");
|
|
return -EINVAL;
|
|
}
|
|
|
|
spa_hook_list_init(&this->hooks);
|
|
|
|
this->node.iface = SPA_INTERFACE_INIT(
|
|
SPA_TYPE_INTERFACE_Node,
|
|
SPA_VERSION_NODE,
|
|
&impl_node, this);
|
|
|
|
this->info_all = SPA_NODE_CHANGE_MASK_FLAGS |
|
|
SPA_NODE_CHANGE_MASK_PROPS |
|
|
SPA_NODE_CHANGE_MASK_PARAMS;
|
|
this->info = SPA_NODE_INFO_INIT();
|
|
this->info.max_input_ports = 0;
|
|
this->info.max_output_ports = 0;
|
|
this->info.flags = SPA_NODE_FLAG_RT;
|
|
this->params[0] = SPA_PARAM_INFO(SPA_PARAM_Props, SPA_PARAM_INFO_READWRITE);
|
|
this->info.params = this->params;
|
|
this->info.n_params = 0;
|
|
|
|
reset_props(&this->props);
|
|
|
|
for (i = 0; info && i < info->n_items; i++) {
|
|
const char *k = info->items[i].key;
|
|
const char *s = info->items[i].value;
|
|
if (spa_streq(k, "node.freewheel")) {
|
|
this->props.freewheel = spa_atob(s);
|
|
} else if (spa_streq(k, "clock.name") && this->clock_fd < 0) {
|
|
spa_scnprintf(this->props.clock_name,
|
|
sizeof(this->props.clock_name), "%s", s);
|
|
} else if (spa_streq(k, "clock.id") && this->clock_fd < 0) {
|
|
this->props.clock_id = clock_name_to_id(s);
|
|
if (this->props.clock_id == -1) {
|
|
spa_log_warn(this->log, "unknown clock id '%s'", s);
|
|
this->props.clock_id = DEFAULT_CLOCK_ID;
|
|
}
|
|
} else if (spa_streq(k, "clock.device")) {
|
|
if (this->clock_fd >= 0) {
|
|
close(this->clock_fd);
|
|
}
|
|
this->clock_fd = open(s, O_RDONLY);
|
|
|
|
if (this->clock_fd == -1) {
|
|
spa_log_warn(this->log, "failed to open clock device '%s': %m", s);
|
|
} else {
|
|
this->props.clock_id = FD_TO_CLOCKID(this->clock_fd);
|
|
}
|
|
} else if (spa_streq(k, "clock.interface") && this->clock_fd < 0) {
|
|
int phc_index = get_phc_index(this->data_system, s);
|
|
if (phc_index < 0) {
|
|
spa_log_warn(this->log, "failed to get phc device index for interface '%s': %s",
|
|
s, spa_strerror(phc_index));
|
|
} else {
|
|
char dev[19];
|
|
spa_scnprintf(dev, sizeof(dev), "/dev/ptp%d", phc_index);
|
|
this->clock_fd = open(dev, O_RDONLY);
|
|
if (this->clock_fd == -1) {
|
|
spa_log_warn(this->log, "failed to open clock device '%s' "
|
|
"for interface '%s': %m", dev, s);
|
|
} else {
|
|
this->props.clock_id = FD_TO_CLOCKID(this->clock_fd);
|
|
}
|
|
}
|
|
} else if (spa_streq(k, "freewheel.wait")) {
|
|
this->props.freewheel_wait = atoi(s);
|
|
} else if (spa_streq(k, "resync.ms")) {
|
|
this->props.resync_ms = (float)atof(s);
|
|
}
|
|
}
|
|
if (this->props.clock_name[0] == '\0') {
|
|
spa_scnprintf(this->props.clock_name, sizeof(this->props.clock_name),
|
|
"%s.%s", DEFAULT_CLOCK_PREFIX,
|
|
clock_id_to_name(this->props.clock_id));
|
|
}
|
|
|
|
this->tracking = !clock_for_timerfd(this->props.clock_id);
|
|
this->timer_clockid = this->tracking ? CLOCK_MONOTONIC : this->props.clock_id;
|
|
this->max_error = 128;
|
|
|
|
this->nsec_offset.offset = get_nsec_offset(this, NULL);
|
|
this->nsec_offset.err = 0;
|
|
|
|
this->timer_source.func = on_timeout;
|
|
this->timer_source.data = this;
|
|
this->timer_source.fd = spa_system_timerfd_create(this->data_system,
|
|
this->timer_clockid, SPA_FD_CLOEXEC | SPA_FD_NONBLOCK);
|
|
|
|
this->timer_source.mask = SPA_IO_IN;
|
|
this->timer_source.rmask = 0;
|
|
this->timerspec.it_value.tv_sec = 0;
|
|
this->timerspec.it_value.tv_nsec = 0;
|
|
this->timerspec.it_interval.tv_sec = 0;
|
|
this->timerspec.it_interval.tv_nsec = 0;
|
|
|
|
spa_loop_add_source(this->data_loop, &this->timer_source);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static const struct spa_interface_info impl_interfaces[] = {
|
|
{SPA_TYPE_INTERFACE_Node,},
|
|
};
|
|
|
|
static int
|
|
impl_enum_interface_info(const struct spa_handle_factory *factory,
|
|
const struct spa_interface_info **info,
|
|
uint32_t *index)
|
|
{
|
|
spa_return_val_if_fail(factory != NULL, -EINVAL);
|
|
spa_return_val_if_fail(info != NULL, -EINVAL);
|
|
spa_return_val_if_fail(index != NULL, -EINVAL);
|
|
|
|
switch (*index) {
|
|
case 0:
|
|
*info = &impl_interfaces[*index];
|
|
break;
|
|
default:
|
|
return 0;
|
|
}
|
|
(*index)++;
|
|
return 1;
|
|
}
|
|
|
|
const struct spa_handle_factory spa_support_node_driver_factory = {
|
|
SPA_VERSION_HANDLE_FACTORY,
|
|
SPA_NAME_SUPPORT_NODE_DRIVER,
|
|
NULL,
|
|
impl_get_size,
|
|
impl_init,
|
|
impl_enum_interface_info,
|
|
};
|