Source: ~/.unfirehose/unfirehose.db (project_id=81, 4 sessions covering
2026-03-29 through 2026-04-05). Reconstructed via chronological replay
of Write/Edit tool_input on file_paths under /home/fox/zebra-report/.
stats:
files reconstructed: 20
writes baselined: all (zero missing)
edits applied: 68
edits unapplied: 8 (1 SKIP pre-baseline, 6 FAIL old_string drift, 1 AMBIGUOUS)
unapplied edits represent small drift in 6 files; baseline content for
each is intact. quality verification deferred to phase 2.
recovered tree:
CLAUDE.md, Makefile
src/{tx,rx,pulse,carrier,chat,bt}.c
include/{modem,zebra}.h
test/{functional,integration,unit}.c, test/test.h
web/{index,kernel}.html, web/blog/style.css
blog/build.py, blog/posts/{001-volume-modem,002-sse-chatroom}.md
report: /tmp/zebra_recover_report.txt
script: /tmp/zebra_recover.py
319 lines
11 KiB
C
319 lines
11 KiB
C
/*
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* functional.c — end-to-end TX/RX pipeline and auto-negotiate tests
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*
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* Requires two live PulseAudio sink-inputs:
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* ZEBRA_DATA_SINK — TX modulates this, RX reads it (data channel)
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* ZEBRA_CTRL_SINK — RX modulates this, TX reads it (handshake channel)
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*
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* Run ./tx -l to find sink indices, then:
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* ZEBRA_DATA_SINK=15815 ZEBRA_CTRL_SINK=15923 ./test/functional
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*
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* Compile: gcc -Wall -O2 -Iinclude $(pkg-config --cflags libpulse) \
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* -o test/functional test/functional.c src/pulse.c \
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* $(pkg-config --libs libpulse) -lrt -lpthread
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <pthread.h>
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#include <semaphore.h>
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#include <time.h>
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#include "zebra.h"
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#include "modem.h"
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#include "test.h"
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static uint32_t data_sink = 0;
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static uint32_t ctrl_sink = 0;
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/* ------------------------------------------------------------------ *
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* shared RX byte collector *
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* ------------------------------------------------------------------ */
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#define COLLECT_MAX 256
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typedef struct {
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char buf[COLLECT_MAX];
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int len;
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int want; /* stop after this many bytes */
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sem_t done;
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} collector_t;
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static void collect_byte(uint8_t b, void *ud) {
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collector_t *c = ud;
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if (c->len < COLLECT_MAX - 1) c->buf[c->len++] = (char)b;
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if (c->len >= c->want) sem_post(&c->done);
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}
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/* ------------------------------------------------------------------ *
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* test 1: fixed-baud loopback *
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* TX and RX both run against the same data_sink at 50 baud. *
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* ------------------------------------------------------------------ */
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typedef struct {
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zebra_pulse_t *z;
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uint32_t sink;
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uint8_t channels;
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int baud;
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const char *msg;
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} tx_arg_t;
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typedef struct {
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zebra_pulse_t *z;
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uint32_t sink;
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int baud;
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collector_t *col;
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} rx_arg_t;
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static void *tx_thread(void *arg) {
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tx_arg_t *a = arg;
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/* brief delay so RX loop is running before TX fires */
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struct timespec d = {0, 200000000L}; /* 200ms */
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nanosleep(&d, NULL);
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long period_ns = 1000000000L / a->baud;
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zebra_set_volume_fast(a->z, a->sink, a->channels, ZEBRA_VOL_MARK);
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struct timespec next;
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clock_gettime(CLOCK_MONOTONIC, &next);
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ts_add_ns(&next, period_ns);
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for (int i = 0; a->msg[i]; i++)
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zebra_send_byte(a->z, a->sink, a->channels, (uint8_t)a->msg[i], &next, period_ns);
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zebra_set_volume_fast(a->z, a->sink, a->channels, ZEBRA_VOL_MARK);
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return NULL;
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}
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static void *rx_thread(void *arg) {
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rx_arg_t *a = arg;
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zebra_rx_run(a->z, a->sink, a->baud, collect_byte, a->col);
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return NULL;
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}
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static void t_loopback_fixed_baud(void) {
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const char *msg = "ZEBRA\n";
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const int baud = 50;
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const int timeout_s = 10;
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collector_t col;
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memset(&col, 0, sizeof(col));
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col.want = (int)strlen(msg);
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sem_init(&col.done, 0, 0);
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zebra_pulse_t ztx, zrx;
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T_EQ(zebra_pulse_connect(&ztx, "zebra-test-tx"), 0);
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T_EQ(zebra_pulse_connect(&zrx, "zebra-test-rx"), 0);
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/* resolve channel count for TX */
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uint8_t ch = 2;
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{
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zebra_sink_t buf[64];
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int n = zebra_list_sinks(&ztx, buf, 64);
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for (int i = 0; i < n; i++)
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if (buf[i].index == data_sink)
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{ ch = buf[i].channels ? buf[i].channels : 2; break; }
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}
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tx_arg_t txa = { .z = &ztx, .sink = data_sink, .channels = ch,
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.baud = baud, .msg = msg };
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rx_arg_t rxa = { .z = &zrx, .sink = data_sink, .baud = baud, .col = &col };
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pthread_t tx_tid, rx_tid;
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pthread_create(&rx_tid, NULL, rx_thread, &rxa);
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pthread_create(&tx_tid, NULL, tx_thread, &txa);
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/* wait for collector or timeout */
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struct timespec deadline;
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clock_gettime(CLOCK_REALTIME, &deadline);
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deadline.tv_sec += timeout_s;
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int timed_out = sem_timedwait(&col.done, &deadline);
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pthread_cancel(rx_tid);
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pthread_detach(rx_tid);
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pthread_join(tx_tid, NULL);
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T_EQ(timed_out, 0); /* did not time out */
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col.buf[col.len] = '\0';
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T_EQ(memcmp(col.buf, msg, strlen(msg)), 0);
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fprintf(stderr, " [rx] received %d bytes: %.*s", col.len, col.len, col.buf);
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zebra_pulse_disconnect(&ztx);
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zebra_pulse_disconnect(&zrx);
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sem_destroy(&col.done);
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}
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/* ------------------------------------------------------------------ *
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* test 2: auto-negotiate handshake *
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* RX benchmarks, sends offer on ctrl_sink. *
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* TX receives offer, then sends data on data_sink at negotiated baud. *
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* RX receives data at negotiated baud. *
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* ------------------------------------------------------------------ */
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typedef struct {
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zebra_pulse_t *z_data; /* for TX data */
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zebra_pulse_t *z_ctrl; /* for reading handshake */
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uint32_t data_sink;
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uint32_t ctrl_sink;
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uint8_t data_ch;
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const char *msg;
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int timeout_ms;
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} autoneg_tx_arg_t;
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typedef struct {
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zebra_pulse_t *z_data; /* for RX data */
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zebra_pulse_t *z_ctrl; /* for sending handshake */
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uint32_t data_sink;
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uint32_t ctrl_sink;
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uint8_t ctrl_ch;
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collector_t *col;
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} autoneg_rx_arg_t;
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static void *autoneg_tx_thread(void *arg) {
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autoneg_tx_arg_t *a = arg;
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uint16_t neg_baud = 0;
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fprintf(stderr, " [tx] waiting for handshake on ctrl_sink %u...\n", a->ctrl_sink);
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if (zebra_recv_handshake(a->z_ctrl, a->ctrl_sink, a->timeout_ms, &neg_baud) < 0) {
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fprintf(stderr, " [tx] handshake timeout — no frame received\n");
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return NULL;
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}
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fprintf(stderr, " [tx] OFFER received: %u baud — waiting for READY\n", neg_baud);
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if (zebra_recv_ready(a->z_ctrl, a->ctrl_sink, ZEBRA_HS_READY_WAIT) < 0) {
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fprintf(stderr, " [tx] READY timeout — aborting\n");
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return NULL;
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}
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fprintf(stderr, " [tx] READY received — sending '%s' at %u baud on data_sink %u\n",
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a->msg, neg_baud, a->data_sink);
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long period_ns = 1000000000L / neg_baud;
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zebra_set_volume_fast(a->z_data, a->data_sink, a->data_ch, ZEBRA_VOL_MARK);
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struct timespec next;
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clock_gettime(CLOCK_MONOTONIC, &next);
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ts_add_ns(&next, period_ns);
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for (int i = 0; a->msg[i]; i++)
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zebra_send_byte(a->z_data, a->data_sink, a->data_ch,
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(uint8_t)a->msg[i], &next, period_ns);
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zebra_set_volume_fast(a->z_data, a->data_sink, a->data_ch, ZEBRA_VOL_MARK);
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fprintf(stderr, " [tx] send complete\n");
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return NULL;
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}
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static void *autoneg_rx_thread(void *arg) {
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autoneg_rx_arg_t *a = arg;
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int baud = zebra_benchmark_baud(a->z_data, a->data_sink);
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fprintf(stderr, " [rx] benchmark: %d baud\n", baud);
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fprintf(stderr, " [rx] sending handshake on ctrl_sink %u ch=%u\n",
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a->ctrl_sink, a->ctrl_ch);
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zebra_send_handshake(a->z_ctrl, a->ctrl_sink, a->ctrl_ch, (uint16_t)baud);
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fprintf(stderr, " [rx] OFFER sent — sending READY (3x) then entering receive loop\n");
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zebra_send_ready(a->z_ctrl, a->ctrl_sink, a->ctrl_ch);
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fprintf(stderr, " [rx] entering receive loop at %d baud on data_sink %u\n",
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baud, a->data_sink);
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zebra_rx_run(a->z_data, a->data_sink, baud, collect_byte, a->col);
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return NULL;
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}
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static void t_autoneg_pipeline(void) {
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const char *msg = "PING\n";
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const int timeout_s = 30;
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const int timeout_ms = 15000; /* handshake timeout for TX */
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collector_t col;
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memset(&col, 0, sizeof(col));
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col.want = (int)strlen(msg);
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sem_init(&col.done, 0, 0);
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/* four connections: TX-data, TX-ctrl, RX-data, RX-ctrl */
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zebra_pulse_t z_tx_data, z_tx_ctrl, z_rx_data, z_rx_ctrl;
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T_EQ(zebra_pulse_connect(&z_tx_data, "zebra-test-tx-data"), 0);
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T_EQ(zebra_pulse_connect(&z_tx_ctrl, "zebra-test-tx-ctrl"), 0);
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T_EQ(zebra_pulse_connect(&z_rx_data, "zebra-test-rx-data"), 0);
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T_EQ(zebra_pulse_connect(&z_rx_ctrl, "zebra-test-rx-ctrl"), 0);
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/* resolve channel counts */
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uint8_t data_ch = 2, ctrl_ch = 2;
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{
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zebra_sink_t buf[64];
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int n = zebra_list_sinks(&z_tx_data, buf, 64);
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for (int i = 0; i < n; i++) {
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if (buf[i].index == data_sink) data_ch = buf[i].channels ? buf[i].channels : 2;
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if (buf[i].index == ctrl_sink) ctrl_ch = buf[i].channels ? buf[i].channels : 2;
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}
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}
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autoneg_tx_arg_t txa = {
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.z_data = &z_tx_data, .z_ctrl = &z_tx_ctrl,
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.data_sink = data_sink, .ctrl_sink = ctrl_sink,
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.data_ch = data_ch, .msg = msg, .timeout_ms = timeout_ms
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};
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autoneg_rx_arg_t rxa = {
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.z_data = &z_rx_data, .z_ctrl = &z_rx_ctrl,
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.data_sink = data_sink, .ctrl_sink = ctrl_sink,
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.ctrl_ch = ctrl_ch, .col = &col
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};
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pthread_t tx_tid, rx_tid;
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pthread_create(&tx_tid, NULL, autoneg_tx_thread, &txa);
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pthread_create(&rx_tid, NULL, autoneg_rx_thread, &rxa);
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struct timespec deadline;
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clock_gettime(CLOCK_REALTIME, &deadline);
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deadline.tv_sec += timeout_s;
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int timed_out = sem_timedwait(&col.done, &deadline);
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pthread_cancel(rx_tid);
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pthread_detach(rx_tid); /* don't join — PA wait may not respond to cancel */
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pthread_join(tx_tid, NULL);
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T_EQ(timed_out, 0);
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col.buf[col.len] = '\0';
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T_EQ(memcmp(col.buf, msg, strlen(msg)), 0);
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fprintf(stderr, " [rx] received %d bytes: %.*s", col.len, col.len, col.buf);
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zebra_pulse_disconnect(&z_tx_data);
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zebra_pulse_disconnect(&z_tx_ctrl);
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zebra_pulse_disconnect(&z_rx_data);
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zebra_pulse_disconnect(&z_rx_ctrl);
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sem_destroy(&col.done);
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}
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/* ------------------------------------------------------------------ *
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* main *
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* ------------------------------------------------------------------ */
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int main(void) {
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const char *d = getenv("ZEBRA_DATA_SINK");
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const char *c = getenv("ZEBRA_CTRL_SINK");
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if (!d || !c) {
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fprintf(stderr,
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"ZEBRA_DATA_SINK and ZEBRA_CTRL_SINK must be set.\n"
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" run: ./tx -l to list available sink indices\n"
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" example: ZEBRA_DATA_SINK=15815 ZEBRA_CTRL_SINK=15923 ./test/functional\n"
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"\n"
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" DATA_SINK: TX modulates it, RX reads it (e.g. 'zebra report' Firefox tab)\n"
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" CTRL_SINK: RX modulates it, TX reads it (e.g. 'X' Firefox tab)\n");
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return 1;
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}
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data_sink = (uint32_t)atoi(d);
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ctrl_sink = (uint32_t)atoi(c);
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if (data_sink == ctrl_sink) {
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fprintf(stderr, "error: DATA_SINK and CTRL_SINK must be different\n");
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return 1;
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}
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fprintf(stderr, "data_sink=%u ctrl_sink=%u\n\n", data_sink, ctrl_sink);
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T_SECTION("loopback: fixed baud (50 baud)");
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T_RUN(t_loopback_fixed_baud);
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T_SECTION("auto-negotiate pipeline");
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T_RUN(t_autoneg_pipeline);
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T_SUMMARY();
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}
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