forked from achamaikin/CCSModuleSW30Web
last version before dma
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+1
-1
@@ -43,7 +43,7 @@ extern "C" {
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/* USER CODE BEGIN EC */
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#define FW_VERSION_MAJOR 1
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#define FW_VERSION_MINOR 0
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#define FW_VERSION_PATCH 16
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#define FW_VERSION_PATCH 17
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/* USER CODE END EC */
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/* Exported macro ------------------------------------------------------------*/
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+30
-25
@@ -29,7 +29,8 @@ uint8_t ev_enable_output = 0;
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#define CMD_INTERVAL 10
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#define MAX_TX_BUFFER_SIZE 256
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#define MAX_RX_BUFFER_SIZE 256
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#define EVEREST_TIMEOUT_MS 5000u
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#define EVEREST_TIMEOUT_WARN_MS 5000u
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#define EVEREST_TIMEOUT_STOP_MS 10000u
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#define UART3_REINIT_TIMEOUT_MS 1500u
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/* Everest requests 500 V -> PSU really gets 300 V / 1 A, state still reports 500 V. */
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#define FAKE_EVREQ_VOLTAGE_V 500u
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@@ -48,7 +49,8 @@ uint8_t isolation_enable = 0;
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static uint32_t last_host_seen = 0;
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static uint8_t fake_500_voltage_mode = 0;
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static uint8_t everest_timed_out = 0;
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static uint32_t last_everest_timeout_log_tick = 0;
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static uint8_t everest_timeout_warn_latched = 0;
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static uint8_t everest_timeout_stop_latched = 0;
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static uint32_t uart3_last_packet_tick = 0;
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static uint32_t uart3_last_reinit_tick = 0;
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@@ -211,7 +213,27 @@ void CCS_SerialLoop(void) {
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(void)replug_watchdog_tick;
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(void)replug_watchdog1_tick;
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uint8_t host_timed_out = (last_host_seen > 0 && (HAL_GetTick() - last_host_seen) > EVEREST_TIMEOUT_MS);
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uint32_t now = HAL_GetTick();
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uint8_t host_timeout_warn = (last_host_seen > 0 && (now - last_host_seen) > EVEREST_TIMEOUT_WARN_MS);
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uint8_t host_timeout_stop = (last_host_seen > 0 && (now - last_host_seen) > EVEREST_TIMEOUT_STOP_MS);
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uint8_t host_timed_out = host_timeout_stop;
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if (host_timeout_warn && !everest_timeout_warn_latched) {
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log_printf(LOG_ERR, "Everest timeout\n");
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everest_timeout_warn_latched = 1;
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}
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if (host_timeout_stop && !everest_timeout_stop_latched) {
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log_printf(LOG_ERR, "Everest timeout, stopping charging...\n");
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everest_timeout_stop_latched = 1;
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}
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if (!host_timeout_warn) {
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everest_timeout_warn_latched = 0;
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everest_timeout_stop_latched = 0;
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}
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everest_timed_out = host_timeout_stop;
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switch(CCS_ConnectorState){
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case CCS_UNKNOWN:
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RELAY_Write(RELAY_CP, 0);
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@@ -253,7 +275,7 @@ void CCS_SerialLoop(void) {
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break;
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case CCS_CONNECTED:
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RELAY_Write(RELAY_CP, 1);
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if(CCS_EvseState < Preparing) {
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if((CCS_EvseState < Preparing) || (CCS_EvseState == AuthRequired)) {
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CONN_SetState(Preparing);
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} else {
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CONN_SetState(CCS_EvseState);
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@@ -289,26 +311,8 @@ void CCS_SerialLoop(void) {
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break;
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}
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// If Everest timeout happened, keep safe-state and limit log frequency.
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// The safe-state must remain until we receive a valid packet from the host.
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if (everest_timed_out) {
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if (last_everest_timeout_log_tick == 0 ||
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(HAL_GetTick() - last_everest_timeout_log_tick) >= EVEREST_TIMEOUT_MS) {
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log_printf(LOG_ERR, "Everest timeout\n");
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last_everest_timeout_log_tick = HAL_GetTick();
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}
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CONN.EnableOutput = 0;
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CCS_EvseState = Unknown;
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CP_SetDuty(100);
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if (CCS_ConnectorState != CCS_DISABLED && CCS_ConnectorState != CCS_UNKNOWN) {
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CCS_ConnectorState = CCS_DISABLED;
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}
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} else if (last_host_seen > 0 && (HAL_GetTick() - last_host_seen) > EVEREST_TIMEOUT_MS) {
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log_printf(LOG_ERR, "Everest timeout\n");
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everest_timed_out = 1;
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last_host_seen = HAL_GetTick(); // reset after the first timeout
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last_everest_timeout_log_tick = HAL_GetTick();
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// 10s timeout: enforce safe-state until host communication recovers.
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if (host_timeout_stop) {
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CONN.EnableOutput = 0;
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CCS_EvseState = Unknown;
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CP_SetDuty(100);
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@@ -465,7 +469,8 @@ ISR_FAST static void apply_command(uint8_t cmd, const uint8_t* payload, uint16_t
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(void)payload_len;
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last_host_seen = HAL_GetTick();
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everest_timed_out = 0;
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last_everest_timeout_log_tick = 0;
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everest_timeout_warn_latched = 0;
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everest_timeout_stop_latched = 0;
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switch (cmd) {
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case CMD_E2M_PWM_DUTY: {
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const e2m_pwm_duty_t* p = (const e2m_pwm_duty_t*)payload;
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