Compare commits
2 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 70ae1ae6cf | |||
| f2ffb45ca6 |
@@ -2775,8 +2775,12 @@ CONFIG_DALI_TIMER_RESOLUTION_HZ=3000000
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CONFIG_DALI_CUSTOM_HALF_BIT_TIME_X100_US=0
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CONFIG_DALI_TX_STOP_CONDITION_US=0
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CONFIG_DALI_RX_STOP_CONDITION_US=0
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CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS=25
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CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS=20
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CONFIG_DALI_DOUBLE_SEND_DELAY_MS=12
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CONFIG_DALI_FORWARD_ACTIVITY_WAIT_MS=25
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CONFIG_DALI_FORWARD_AFTER_BACKWARD_WAIT_MS=5
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CONFIG_DALI_FORWARD_MAX_WAIT_MS=50
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CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS=9
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CONFIG_DALI_BUS_POWER_CHECK_INTERVAL_MS=500
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CONFIG_DALI_BUS_ABNORMAL_REPORT_INTERVAL_MS=3000
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# CONFIG_DALI_LOG_LEVEL_NONE is not set
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@@ -2775,8 +2775,12 @@ CONFIG_DALI_TIMER_RESOLUTION_HZ=3000000
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CONFIG_DALI_CUSTOM_HALF_BIT_TIME_X100_US=0
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CONFIG_DALI_TX_STOP_CONDITION_US=0
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CONFIG_DALI_RX_STOP_CONDITION_US=0
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CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS=25
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CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS=12
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CONFIG_DALI_DOUBLE_SEND_DELAY_MS=12
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CONFIG_DALI_FORWARD_ACTIVITY_WAIT_MS=25
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CONFIG_DALI_FORWARD_AFTER_BACKWARD_WAIT_MS=5
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CONFIG_DALI_FORWARD_MAX_WAIT_MS=50
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CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS=9
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CONFIG_DALI_BUS_POWER_CHECK_INTERVAL_MS=500
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CONFIG_DALI_BUS_ABNORMAL_REPORT_INTERVAL_MS=3000
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# CONFIG_DALI_LOG_LEVEL_NONE is not set
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@@ -2795,7 +2799,7 @@ CONFIG_DALI_TX_QUEUE_LEN=4
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CONFIG_DALI_TX_REPLY_QUEUE_LEN=4
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CONFIG_DALI_RX_QUEUE_LEN=50
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CONFIG_DALI_DEBUG_QUEUE_LEN=100
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# CONFIG_DALI_ENABLE_DEBUG_TASK is not set
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CONFIG_DALI_ENABLE_DEBUG_TASK=y
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CONFIG_DALI_DALI_TASK_STACK_SIZE=8192
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CONFIG_DALI_DALI_TASK_PRIORITY=2
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CONFIG_DALI_DEBUG_TASK_STACK_SIZE=2048
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@@ -66,6 +66,40 @@ config DALI_DOUBLE_SEND_DELAY_MS
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Delay between the two frames sent by dali_send_double(), measured after
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the first frame has completed. Exposed for development tuning.
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config DALI_FORWARD_ACTIVITY_WAIT_MS
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int "Forward-frame wait after bus activity ms"
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range 0 1000
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default 25
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help
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Minimum delay before sending a 2- to 4-byte forward frame after normal
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bus activity. This is the native queue anti-collision wait.
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config DALI_FORWARD_AFTER_BACKWARD_WAIT_MS
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int "Forward-frame wait after backward frame ms"
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range 0 1000
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default 5
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help
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Minimum delay before sending a 2- to 4-byte forward frame after the last
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valid 1-byte backward frame received by the native bus.
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config DALI_FORWARD_MAX_WAIT_MS
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int "Forward-frame maximum queue wait ms"
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range 0 5000
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default 50
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help
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Maximum time the native queue waits for a forward-frame send window. If
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no valid send window is reached before this timeout, the frame is
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dropped with an error status.
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config DALI_BACKWARD_IDLE_TIMEOUT_MS
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int "Backward-frame idle wait timeout ms"
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range 0 1000
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default 9
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help
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Time a 1-byte backward frame waits for an idle bus before being sent
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anyway. Backward frame sends are not echo-verified because collisions
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during addressing responses are valid DALI behavior.
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config DALI_BUS_POWER_CHECK_INTERVAL_MS
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int "Bus power-down check interval ms"
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range 10 5000
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@@ -42,7 +42,8 @@ Use `menuconfig` under `DALI Component` to configure:
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- Bus count and default baudrate.
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- Native timing values for development, including timer resolution, half-bit period,
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TX/RX stop conditions, query response timeout, and double-send delay.
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TX/RX stop conditions, query response timeout, double-send delay, and TX queue
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arbitration waits.
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- TX/RX active polarity. The native gateway default is TX active low and RX active high.
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- Native bus power-down polling and legacy `FF FD` bus-abnormal raw-frame reporting intervals.
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- Native DALI HAL log level for the `dali_hal` ESP-IDF log tag.
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@@ -61,6 +62,13 @@ can override the half-bit period for development; keep it at 0 for baudrate-deri
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Query no-response timeout defaults to 25 ms, which covers the 5.5-10.5 ms backward-frame
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start window plus the approximately 9.95 ms backward frame duration.
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Native TX queue arbitration uses frame length as the frame type signal. Two- to four-byte
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forward frames wait up to `CONFIG_DALI_FORWARD_MAX_WAIT_MS` for a valid send window,
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using `CONFIG_DALI_FORWARD_ACTIVITY_WAIT_MS` after normal bus activity and
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`CONFIG_DALI_FORWARD_AFTER_BACKWARD_WAIT_MS` after a valid backward frame. One-byte
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backward frames wait up to `CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS` for idle, then are
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sent without echo verification because addressing-phase collisions are valid.
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## API Note
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The global TX response queue symbol was renamed:
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@@ -87,6 +87,22 @@
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#define CONFIG_DALI_BUS_ABNORMAL_REPORT_INTERVAL_MS 1000
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#endif
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#ifndef CONFIG_DALI_FORWARD_ACTIVITY_WAIT_MS
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#define CONFIG_DALI_FORWARD_ACTIVITY_WAIT_MS 25
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#endif
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#ifndef CONFIG_DALI_FORWARD_AFTER_BACKWARD_WAIT_MS
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#define CONFIG_DALI_FORWARD_AFTER_BACKWARD_WAIT_MS 5
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#endif
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#ifndef CONFIG_DALI_FORWARD_MAX_WAIT_MS
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#define CONFIG_DALI_FORWARD_MAX_WAIT_MS 50
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#endif
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#ifndef CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS
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#define CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS 9
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#endif
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#define WITHIN_RANGE(x, min, max) ((x) > (min) && (x) < (max))
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#define MAX_DELTA_RELOAD_TIME 600000000 // 600s - max u32: 4,294,967,295~4,294s
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@@ -138,6 +154,11 @@ typedef struct {
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uint64_t bus_abnormal_report_time;
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Dali_msg_t tx_data;
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bool bus_activity_seen;
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uint64_t rx_last_frame_time;
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uint8_t rx_last_frame_length;
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uint8_t rx_last_frame_status;
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volatile bool force_backward_tx;
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Dali_msg_t rx_data;
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uint8_t tx_half_bit_counter;
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@@ -391,6 +412,115 @@ static uint32_t tx_completion_timeout_ms(const Dali_msg_t *msg)
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return timeout_ms;
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}
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static inline bool IRAM_ATTR is_backward_tx_msg(const Dali_msg_t *msg)
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{
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return msg != NULL && msg->length == 8;
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}
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static bool is_forward_tx_msg(const Dali_msg_t *msg)
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{
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return msg != NULL && msg->length >= 16 && msg->length <= 32 && (msg->length % 8) == 0;
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}
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static UBaseType_t queue_waiting(QueueHandle_t queue);
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static uint64_t bus_last_activity_time_us(const dali_bus_ctx_t *bus)
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{
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if (bus == NULL || !bus->bus_activity_seen) {
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return 0;
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}
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return bus->rx_last_edge_time > bus->tx_last_edge_time ? bus->rx_last_edge_time
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: bus->tx_last_edge_time;
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}
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static bool bus_idle_for_tx(const dali_bus_ctx_t *bus)
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{
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return bus != NULL && bus->bus_state == DALI_BUS_READY && bus->tx_state == TX_STATE_IDLE &&
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bus->rx_state == RX_STATE_IDLE && bus->rx_level == 1 && queue_waiting(bus->tx_queue) == 0;
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}
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static bool last_activity_was_backward_frame(const dali_bus_ctx_t *bus, uint64_t last_activity)
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{
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return bus != NULL && bus->rx_last_frame_status == DALI_FRAME_OK &&
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bus->rx_last_frame_length == 8 && bus->rx_last_frame_time != 0 &&
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bus->rx_last_frame_time >= last_activity;
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}
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static TickType_t tx_wait_poll_ticks(void)
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{
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TickType_t ticks = pdMS_TO_TICKS(1);
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return ticks == 0 ? 1 : ticks;
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}
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static bool wait_for_forward_tx_window(dali_bus_ctx_t *bus, const Dali_msg_t *msg)
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{
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if (bus == NULL || !is_forward_tx_msg(msg)) {
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return true;
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}
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const uint64_t started = esp_timer_get_time();
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const uint64_t max_wait_us = (uint64_t)CONFIG_DALI_FORWARD_MAX_WAIT_MS * 1000ULL;
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const TickType_t poll_ticks = tx_wait_poll_ticks();
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while (true) {
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if (bus->bus_state == DALI_BUS_POWER_DOWN) {
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return false;
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}
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const uint64_t now = esp_timer_get_time();
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if (bus_idle_for_tx(bus)) {
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const uint64_t last_activity = bus_last_activity_time_us(bus);
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if (last_activity == 0) {
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return true;
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}
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const uint32_t wait_ms = last_activity_was_backward_frame(bus, last_activity)
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? CONFIG_DALI_FORWARD_AFTER_BACKWARD_WAIT_MS
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: CONFIG_DALI_FORWARD_ACTIVITY_WAIT_MS;
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if (wait_ms == 0 || (now - last_activity) >= ((uint64_t)wait_ms * 1000ULL)) {
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return true;
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}
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}
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if (max_wait_us == 0 || (now - started) >= max_wait_us) {
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return false;
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}
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vTaskDelay(poll_ticks);
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}
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}
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static bool wait_for_backward_tx_window(dali_bus_ctx_t *bus, const Dali_msg_t *msg,
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bool *force_start)
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{
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if (force_start != NULL) {
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*force_start = false;
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}
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if (bus == NULL || !is_backward_tx_msg(msg)) {
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return true;
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}
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const uint64_t started = esp_timer_get_time();
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const uint64_t timeout_us = (uint64_t)CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS * 1000ULL;
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const TickType_t poll_ticks = tx_wait_poll_ticks();
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while (true) {
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if (bus->bus_state == DALI_BUS_POWER_DOWN) {
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return false;
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}
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if (bus_idle_for_tx(bus)) {
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return true;
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}
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const uint64_t now = esp_timer_get_time();
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if (timeout_us == 0 || (now - started) >= timeout_us) {
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if (force_start != NULL) {
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*force_start = true;
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}
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return true;
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}
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vTaskDelay(poll_ticks);
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}
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}
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static UBaseType_t queue_waiting(QueueHandle_t queue)
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{
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return queue ? uxQueueMessagesWaiting(queue) : 0;
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@@ -537,6 +667,16 @@ static inline void publish_rx_frame_from_isr(Dali_msg_t *msg, QueueHandle_t queu
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}
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}
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static inline void IRAM_ATTR note_rx_frame_from_isr(dali_bus_ctx_t *bus)
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{
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if (bus == NULL) {
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return;
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}
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bus->rx_last_frame_time = bus->rx_last_edge_time;
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bus->rx_last_frame_length = bus->rx_data.length;
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bus->rx_last_frame_status = bus->rx_data.status;
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}
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static void IRAM_ATTR complete_tx_from_isr(dali_bus_ctx_t *bus, BaseType_t *yield)
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{
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if (bus == NULL) {
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@@ -544,7 +684,7 @@ static void IRAM_ATTR complete_tx_from_isr(dali_bus_ctx_t *bus, BaseType_t *yiel
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}
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bus->tx_data.status = DALI_FRAME_OK;
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if (bus->tx_reply_queue) {
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if (!is_backward_tx_msg(&bus->tx_data) && bus->tx_reply_queue) {
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if (xQueueSendToBackFromISR(bus->tx_reply_queue, &bus->tx_data, yield) != pdTRUE) {
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Dali_msg_t dropped = {0};
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xQueueReceiveFromISR(bus->tx_reply_queue, &dropped, yield);
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@@ -586,6 +726,7 @@ static void IRAM_ATTR rx_gpio_isr_handler(void* arg)
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// rx_level = 1 if and only if DALI bus is really high, idle
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bus->rx_level = DALI_GET_BUS_LEVEL(bus); // get level of RX pin - not depend on hw: 0 - low, 1 - high
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bus->bus_activity_seen = true;
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bus->rx_pulse_width = rx_current_edge_time - bus->rx_last_edge_time; // time from last edge
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bus->rx_tx_delta = rx_current_edge_time - bus->tx_last_edge_time; // time from last edge
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@@ -693,6 +834,7 @@ static void IRAM_ATTR rx_gpio_isr_handler(void* arg)
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// if collision detected: we are too late after bit was transmitted
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else if (bus->bus_state == DALI_BUS_TRANSMITTING && bus->tx_state != TX_STATE_STOP &&
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!is_backward_tx_msg(&bus->tx_data) &&
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bus->rx_tx_delta > s_timing.collision_txrx_delta)
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{
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// we need now to start collision recovery with time break: 101.9.2.4
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@@ -803,20 +945,40 @@ static bool IRAM_ATTR handle_bus_timer(dali_bus_ctx_t *bus, uint64_t time_now)
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}
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// start transmitting
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else if(bus->bus_state == DALI_BUS_READY && bus->tx_state == TX_STATE_IDLE && bus->tx_queue && xQueueReceiveFromISR(bus->tx_queue, &bus->tx_data, NULL) == pdTRUE)
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else if(bus->tx_state == TX_STATE_IDLE && bus->tx_queue)
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{
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bus->tx_data.status = DALI_FRAME_ERROR; // error status - will be set ok on success
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bus->bus_state = DALI_BUS_TRANSMITTING; // bus is transmitting
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bus->tx_state = TX_STATE_START; // start transmitting
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bus->tx_half_bit_counter = 0;
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bus->tx_data_bit_counter = 0; // actually sent bits count
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bus->tx_last_edge_time = esp_timer_get_time(); // get time in us
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DALI_SET_BUS_LOW(bus); // start bit first half
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Dali_msg_t pending = {0};
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bool can_start = bus->bus_state == DALI_BUS_READY;
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bool force_backward = false;
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if (!can_start && bus->force_backward_tx &&
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xQueuePeekFromISR(bus->tx_queue, &pending) == pdTRUE) {
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if (is_backward_tx_msg(&pending) && bus->bus_state != DALI_BUS_POWER_DOWN) {
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can_start = true;
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force_backward = true;
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} else {
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bus->force_backward_tx = false;
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}
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}
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if (can_start && xQueueReceiveFromISR(bus->tx_queue, &bus->tx_data, &yield) == pdTRUE) {
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bus->force_backward_tx = false;
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if (force_backward) {
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bus->rx_state = RX_STATE_IDLE;
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}
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bus->tx_data.status = DALI_FRAME_ERROR; // error status - will be set ok on success
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bus->bus_activity_seen = true;
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bus->bus_state = DALI_BUS_TRANSMITTING; // bus is transmitting
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bus->tx_state = TX_STATE_START; // start transmitting
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bus->tx_half_bit_counter = 0;
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bus->tx_data_bit_counter = 0; // actually sent bits count
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bus->tx_last_edge_time = esp_timer_get_time(); // get time in us
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DALI_SET_BUS_LOW(bus); // start bit first half
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}
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}
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else if(bus->bus_state == DALI_BUS_TRANSMITTING)
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{
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uint8_t bus_level = DALI_GET_BUS_LEVEL(bus);
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if(bus->tx_state != TX_STATE_STOP && tx_delta > s_timing.collision_txrx_delta &&
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if(bus->tx_state != TX_STATE_STOP && !is_backward_tx_msg(&bus->tx_data) &&
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tx_delta > s_timing.collision_txrx_delta &&
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bus_level != DALI_GET_TX_LEVEL(bus)) {
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bus->rx_level = bus_level;
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bus->rx_tx_delta = tx_delta;
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@@ -859,7 +1021,7 @@ static bool IRAM_ATTR handle_bus_timer(dali_bus_ctx_t *bus, uint64_t time_now)
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else if(bus->bus_state == DALI_BUS_READY && bus->tx_state > TX_STATE_IDLE)
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{
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// we are not transmitting but we have data - reply to queue and let error state in tx_data.status
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if (bus->tx_reply_queue) {
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if (bus->tx_reply_queue && !is_backward_tx_msg(&bus->tx_data)) {
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xQueueSendToBackFromISR(bus->tx_reply_queue, &bus->tx_data, &yield); // send data to queue
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}
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bus->tx_state = TX_STATE_IDLE; // clear state
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@@ -875,6 +1037,7 @@ static bool IRAM_ATTR handle_bus_timer(dali_bus_ctx_t *bus, uint64_t time_now)
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// rx_data.status = DALI_FRAME_ERROR; // should be set inside ISR
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bus->rx_data.length = bus->rx_data_bit_counter; // set length of data
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// rx_data.data[0] = 0xAA; // debug
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note_rx_frame_from_isr(bus);
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publish_rx_frame_from_isr(&bus->rx_data, bus->rx_queue, &yield); // send data to queue
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}
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}
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@@ -886,6 +1049,7 @@ static bool IRAM_ATTR handle_bus_timer(dali_bus_ctx_t *bus, uint64_t time_now)
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bus->rx_data.status = DALI_FRAME_OK; // frame is OK
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bus->rx_data.length = bus->rx_data_bit_counter; // set length of data
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// rx_data.data[0] = 0xBB; // debug
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note_rx_frame_from_isr(bus);
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publish_rx_frame_from_isr(&bus->rx_data, bus->rx_queue, &yield); // send data to queue
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}
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}
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@@ -1117,6 +1281,11 @@ static esp_err_t init_bus(uint8_t bus_id, uint8_t tx_pin, uint8_t rx_pin)
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bus->tx_last_edge_time = bus->rx_last_edge_time;
|
||||
bus->bus_level_check_time = bus->rx_last_edge_time;
|
||||
bus->bus_abnormal_report_time = 0;
|
||||
bus->bus_activity_seen = false;
|
||||
bus->rx_last_frame_time = 0;
|
||||
bus->rx_last_frame_length = 0;
|
||||
bus->rx_last_frame_status = DALI_FRAME_UNKNOWN;
|
||||
bus->force_backward_tx = false;
|
||||
|
||||
err = ensure_isr_service();
|
||||
if (err != ESP_OK) {
|
||||
@@ -1169,13 +1338,37 @@ static int dali_tx_bus(dali_bus_ctx_t *bus, Dali_msg_t *dali_msg)
|
||||
bus->bus_id, dali_msg->length, dali_msg->data[0], dali_msg->data[1],
|
||||
dali_msg->data[2], dali_msg->data[3], (unsigned long)timeout_ms);
|
||||
|
||||
if(xQueueSendToBack(bus->tx_queue, dali_msg, timeout_ticks) == pdFALSE) {
|
||||
if (is_forward_tx_msg(dali_msg) && !wait_for_forward_tx_window(bus, dali_msg)) {
|
||||
dali_msg->status = DALI_FRAME_ERROR;
|
||||
log_tx_message("native TX wait timeout", bus, dali_msg,
|
||||
CONFIG_DALI_FORWARD_MAX_WAIT_MS);
|
||||
return ESP_FAIL;
|
||||
}
|
||||
|
||||
bool force_backward = false;
|
||||
if (is_backward_tx_msg(dali_msg) &&
|
||||
!wait_for_backward_tx_window(bus, dali_msg, &force_backward)) {
|
||||
dali_msg->status = DALI_FRAME_ERROR;
|
||||
log_tx_message("native backward TX wait timeout", bus, dali_msg,
|
||||
CONFIG_DALI_BACKWARD_IDLE_TIMEOUT_MS);
|
||||
return ESP_FAIL;
|
||||
}
|
||||
|
||||
bus->force_backward_tx = force_backward;
|
||||
if(xQueueSendToBack(bus->tx_queue, dali_msg, 0) == pdFALSE) {
|
||||
bus->force_backward_tx = false;
|
||||
log_tx_message("native TX queue full", bus, dali_msg, timeout_ms);
|
||||
if (bus->tx_state == TX_STATE_IDLE) {
|
||||
xQueueReset(bus->tx_queue);
|
||||
}
|
||||
return ESP_FAIL;
|
||||
}
|
||||
|
||||
if (is_backward_tx_msg(dali_msg)) {
|
||||
dali_msg->status = DALI_FRAME_OK;
|
||||
return ESP_OK;
|
||||
}
|
||||
|
||||
if(xQueueReceive(bus->tx_reply_queue, dali_msg, timeout_ticks) == pdFALSE) {
|
||||
if (bus->tx_state == TX_STATE_IDLE && queue_waiting(bus->tx_queue) == 0) {
|
||||
*dali_msg = bus->tx_data;
|
||||
|
||||
@@ -10,6 +10,10 @@
|
||||
#include <algorithm>
|
||||
#include <utility>
|
||||
|
||||
#ifndef CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS
|
||||
#define CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS 25
|
||||
#endif
|
||||
|
||||
namespace gateway {
|
||||
|
||||
namespace {
|
||||
@@ -17,6 +21,48 @@ namespace {
|
||||
constexpr const char* kTag = "dali_domain";
|
||||
constexpr size_t kSerialRxPacketMaxBytes = 8;
|
||||
constexpr UBaseType_t kSerialRxQueueDepth = 8;
|
||||
constexpr uint32_t kHardwareQueryRawSuppressMs = CONFIG_DALI_QUERY_RESPONSE_TIMEOUT_MS + 10;
|
||||
|
||||
portMUX_TYPE s_query_raw_suppress_lock = portMUX_INITIALIZER_UNLOCKED;
|
||||
TickType_t s_query_raw_suppress_until[DALI_PHY_COUNT] = {};
|
||||
|
||||
void BeginHardwareQueryRawSuppress(uint8_t bus_id) {
|
||||
if (bus_id >= DALI_PHY_COUNT) {
|
||||
return;
|
||||
}
|
||||
const TickType_t until = xTaskGetTickCount() + pdMS_TO_TICKS(kHardwareQueryRawSuppressMs);
|
||||
portENTER_CRITICAL(&s_query_raw_suppress_lock);
|
||||
s_query_raw_suppress_until[bus_id] = until;
|
||||
portEXIT_CRITICAL(&s_query_raw_suppress_lock);
|
||||
}
|
||||
|
||||
bool TakeHardwareQueryRawSuppress(uint8_t bus_id) {
|
||||
if (bus_id >= DALI_PHY_COUNT) {
|
||||
return false;
|
||||
}
|
||||
|
||||
bool suppress = false;
|
||||
const TickType_t now = xTaskGetTickCount();
|
||||
portENTER_CRITICAL(&s_query_raw_suppress_lock);
|
||||
const TickType_t until = s_query_raw_suppress_until[bus_id];
|
||||
if (until != 0 && now <= until) {
|
||||
suppress = true;
|
||||
s_query_raw_suppress_until[bus_id] = 0;
|
||||
} else if (until != 0) {
|
||||
s_query_raw_suppress_until[bus_id] = 0;
|
||||
}
|
||||
portEXIT_CRITICAL(&s_query_raw_suppress_lock);
|
||||
return suppress;
|
||||
}
|
||||
|
||||
void ClearHardwareQueryRawSuppress(uint8_t bus_id) {
|
||||
if (bus_id >= DALI_PHY_COUNT) {
|
||||
return;
|
||||
}
|
||||
portENTER_CRITICAL(&s_query_raw_suppress_lock);
|
||||
s_query_raw_suppress_until[bus_id] = 0;
|
||||
portEXIT_CRITICAL(&s_query_raw_suppress_lock);
|
||||
}
|
||||
|
||||
DaliDomainSnapshot MakeSnapshot(uint8_t gateway_id, int address, const char* kind) {
|
||||
DaliDomainSnapshot snapshot;
|
||||
@@ -113,12 +159,15 @@ std::vector<uint8_t> TransactHardwareFrame(uint8_t bus_id, const uint8_t* data,
|
||||
Dali_msg_t tx = dali_msg_new(data[1], data[2]);
|
||||
tx.id = bus_id;
|
||||
Dali_msg_t rx = {};
|
||||
BeginHardwareQueryRawSuppress(bus_id);
|
||||
if (dali_query(&tx, &rx) == pdTRUE) {
|
||||
if (rx.status != DALI_FRAME_OK || rx.length != 8) {
|
||||
ClearHardwareQueryRawSuppress(bus_id);
|
||||
return LegacyQueryResponse(0xFD);
|
||||
}
|
||||
return {0xFF, rx.data[0]};
|
||||
}
|
||||
ClearHardwareQueryRawSuppress(bus_id);
|
||||
return LegacyQueryResponse(0xFE);
|
||||
}
|
||||
default:
|
||||
@@ -1250,6 +1299,12 @@ void DaliDomainService::rawFrameTaskLoop() {
|
||||
if (byte_count > DALI_MAX_BYTES) {
|
||||
byte_count = DALI_MAX_BYTES;
|
||||
}
|
||||
if (byte_count == 1 && TakeHardwareQueryRawSuppress(message.id)) {
|
||||
continue;
|
||||
}
|
||||
if (byte_count != 1 && byte_count != 2 && byte_count != 3) {
|
||||
continue;
|
||||
}
|
||||
DaliRawFrame frame;
|
||||
frame.channel_index = channel->config.channel_index;
|
||||
frame.gateway_id = channel->config.gateway_id;
|
||||
|
||||
@@ -141,6 +141,13 @@ void RegisterGatt(struct ble_gatt_register_ctxt* ctxt, void* arg) {
|
||||
}
|
||||
}
|
||||
|
||||
std::vector<uint8_t> LegacyRawPayload(const std::vector<uint8_t>& data) {
|
||||
if (data.size() == 1) {
|
||||
return {0xBE, data[0]};
|
||||
}
|
||||
return data;
|
||||
}
|
||||
|
||||
const struct ble_gatt_svc_def kGattServices[] = {
|
||||
{
|
||||
.type = BLE_GATT_SVC_TYPE_PRIMARY,
|
||||
@@ -377,7 +384,7 @@ void GatewayBleBridge::handleDaliRawFrame(const DaliRawFrame& frame) {
|
||||
if (!enabled_ || conn_handle_ == kInvalidConnectionHandle || frame.data.empty()) {
|
||||
return;
|
||||
}
|
||||
notifyCharacteristic(frame.channel_index, frame.data);
|
||||
notifyCharacteristic(frame.channel_index, LegacyRawPayload(frame.data));
|
||||
}
|
||||
|
||||
void GatewayBleBridge::handleRawWrite(size_t channel_index, const std::vector<uint8_t>& payload) {
|
||||
|
||||
@@ -12,6 +12,13 @@ namespace gateway {
|
||||
namespace {
|
||||
constexpr const char* kTag = "gateway_usb";
|
||||
constexpr size_t kCommandFrameMinLen = 7;
|
||||
|
||||
std::vector<uint8_t> LegacyRawPayload(const std::vector<uint8_t>& data) {
|
||||
if (data.size() == 1) {
|
||||
return {0xBE, data[0]};
|
||||
}
|
||||
return data;
|
||||
}
|
||||
}
|
||||
|
||||
GatewayUsbSetupBridge::GatewayUsbSetupBridge(GatewayController& controller,
|
||||
@@ -106,11 +113,12 @@ void GatewayUsbSetupBridge::handleRawFrame(const DaliRawFrame& frame) {
|
||||
return;
|
||||
}
|
||||
|
||||
const int written = usb_serial_jtag_write_bytes(frame.data.data(), frame.data.size(),
|
||||
const auto payload = LegacyRawPayload(frame.data);
|
||||
const int written = usb_serial_jtag_write_bytes(payload.data(), payload.size(),
|
||||
pdMS_TO_TICKS(config_.write_timeout_ms));
|
||||
if (written < 0 || static_cast<size_t>(written) != frame.data.size()) {
|
||||
if (written < 0 || static_cast<size_t>(written) != payload.size()) {
|
||||
ESP_LOGW(kTag, "failed to forward USB raw setup frame channel=%u len=%u", frame.channel_index,
|
||||
static_cast<unsigned>(frame.data.size()));
|
||||
static_cast<unsigned>(payload.size()));
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user