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https://github.com/esphome/esphome.git
synced 2026-08-23 06:36:23 +00:00
[scheduler] Remove deprecated set_retry/cancel_retry (#17585)
This commit is contained in:
@@ -18,9 +18,6 @@ globals:
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- id: interval_counter
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type: int
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initial_value: '0'
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- id: retry_counter
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type: int
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initial_value: '0'
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- id: defer_counter
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type: int
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initial_value: '0'
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@@ -118,29 +115,7 @@ script:
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id(timeout_counter) += 1;
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});
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// Test 10: set_retry with numeric ID
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App.scheduler.set_retry(component1, 6001U, 50, 3,
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[](uint8_t retry_countdown) {
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id(retry_counter)++;
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ESP_LOGI("test", "Numeric retry 6001 attempt %d (countdown=%d)",
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id(retry_counter), retry_countdown);
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if (id(retry_counter) >= 2) {
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ESP_LOGI("test", "Numeric retry 6001 done");
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return RetryResult::DONE;
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}
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return RetryResult::RETRY;
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});
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// Test 11: cancel_retry with numeric ID
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App.scheduler.set_retry(component1, 6002U, 100, 5,
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[](uint8_t retry_countdown) {
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ESP_LOGE("test", "ERROR: Numeric retry 6002 should have been cancelled");
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return RetryResult::RETRY;
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});
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App.scheduler.cancel_retry(component1, 6002U);
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ESP_LOGI("test", "Cancelled numeric retry 6002");
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// Test 12: defer with numeric ID (Component method)
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// Test 10: defer with numeric ID (Component method)
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class TestDeferComponent : public Component {
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public:
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void test_defer_methods() {
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@@ -161,7 +136,7 @@ script:
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static TestDeferComponent test_defer_component;
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test_defer_component.test_defer_methods();
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// Test 13: cancel_defer with numeric ID (Component method)
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// Test 11: cancel_defer with numeric ID (Component method)
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class TestCancelDeferComponent : public Component {
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public:
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void test_cancel_defer() {
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@@ -181,8 +156,8 @@ script:
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- id: report_results
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then:
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- lambda: |-
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ESP_LOGI("test", "Final results - Timeouts: %d, Intervals: %d, Retries: %d, Defers: %d",
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id(timeout_counter), id(interval_counter), id(retry_counter), id(defer_counter));
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ESP_LOGI("test", "Final results - Timeouts: %d, Intervals: %d, Defers: %d",
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id(timeout_counter), id(interval_counter), id(defer_counter));
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sensor:
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- platform: template
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@@ -1,287 +0,0 @@
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esphome:
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debug_scheduler: true # Enable scheduler leak detection
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name: scheduler-retry-test
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on_boot:
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priority: -100
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then:
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- logger.log: "Starting scheduler retry tests"
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# Run all tests sequentially with delays
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- script.execute: run_all_tests
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host:
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api:
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logger:
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level: VERY_VERBOSE
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globals:
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- id: simple_retry_counter
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type: int
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initial_value: '0'
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- id: backoff_retry_counter
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type: int
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initial_value: '0'
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- id: backoff_last_attempt_time
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type: uint32_t
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initial_value: '0'
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- id: immediate_done_counter
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type: int
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initial_value: '0'
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- id: cancel_retry_counter
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type: int
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initial_value: '0'
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- id: empty_name_retry_counter
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type: int
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initial_value: '0'
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- id: script_retry_counter
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type: int
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initial_value: '0'
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- id: multiple_same_name_counter
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type: int
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initial_value: '0'
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- id: const_char_retry_counter
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type: int
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initial_value: '0'
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- id: static_char_retry_counter
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type: int
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initial_value: '0'
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# Using different component types for each test to ensure isolation
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sensor:
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- platform: template
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name: Simple Retry Test Sensor
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id: simple_retry_sensor
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lambda: return 1.0;
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update_interval: never
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- platform: template
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name: Backoff Retry Test Sensor
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id: backoff_retry_sensor
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lambda: return 2.0;
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update_interval: never
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- platform: template
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name: Immediate Done Test Sensor
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id: immediate_done_sensor
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lambda: return 3.0;
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update_interval: never
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binary_sensor:
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- platform: template
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name: Cancel Retry Test Binary Sensor
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id: cancel_retry_binary_sensor
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lambda: return false;
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- platform: template
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name: Empty Name Test Binary Sensor
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id: empty_name_binary_sensor
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lambda: return true;
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switch:
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- platform: template
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name: Script Retry Test Switch
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id: script_retry_switch
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optimistic: true
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- platform: template
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name: Multiple Same Name Test Switch
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id: multiple_same_name_switch
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optimistic: true
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script:
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- id: run_all_tests
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then:
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# Test 1: Simple retry
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- logger.log: "=== Test 1: Simple retry ==="
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- lambda: |-
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auto *component = id(simple_retry_sensor);
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App.scheduler.set_retry(component, "simple_retry", 50, 3,
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[](uint8_t retry_countdown) {
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id(simple_retry_counter)++;
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ESP_LOGI("test", "Simple retry attempt %d (countdown=%d)",
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id(simple_retry_counter), retry_countdown);
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if (id(simple_retry_counter) >= 2) {
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ESP_LOGI("test", "Simple retry succeeded on attempt %d", id(simple_retry_counter));
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return RetryResult::DONE;
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}
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return RetryResult::RETRY;
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});
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# Test 2: Backoff retry
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- logger.log: "=== Test 2: Retry with backoff ==="
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- lambda: |-
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auto *component = id(backoff_retry_sensor);
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App.scheduler.set_retry(component, "backoff_retry", 50, 4,
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[](uint8_t retry_countdown) {
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id(backoff_retry_counter)++;
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uint32_t now = millis();
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uint32_t interval = 0;
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// Only calculate interval after first attempt
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if (id(backoff_retry_counter) > 1) {
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interval = now - id(backoff_last_attempt_time);
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}
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id(backoff_last_attempt_time) = now;
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ESP_LOGI("test", "Backoff retry attempt %d (countdown=%d, interval=%dms)",
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id(backoff_retry_counter), retry_countdown, interval);
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if (id(backoff_retry_counter) == 1) {
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ESP_LOGI("test", "First call was immediate");
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} else if (id(backoff_retry_counter) == 2) {
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ESP_LOGI("test", "Second call interval: %dms (expected ~50ms)", interval);
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} else if (id(backoff_retry_counter) == 3) {
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ESP_LOGI("test", "Third call interval: %dms (expected ~100ms)", interval);
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} else if (id(backoff_retry_counter) == 4) {
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ESP_LOGI("test", "Fourth call interval: %dms (expected ~200ms)", interval);
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ESP_LOGI("test", "Backoff retry completed");
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return RetryResult::DONE;
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}
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return RetryResult::RETRY;
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}, 2.0f);
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# Test 3: Immediate done
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- logger.log: "=== Test 3: Immediate done ==="
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- lambda: |-
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auto *component = id(immediate_done_sensor);
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App.scheduler.set_retry(component, "immediate_done", 50, 5,
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[](uint8_t retry_countdown) {
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id(immediate_done_counter)++;
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ESP_LOGI("test", "Immediate done retry called (countdown=%d)", retry_countdown);
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return RetryResult::DONE;
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});
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# Test 4: Cancel retry
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- logger.log: "=== Test 4: Cancel retry ==="
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- lambda: |-
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auto *component = id(cancel_retry_binary_sensor);
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App.scheduler.set_retry(component, "cancel_test", 30, 10,
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[](uint8_t retry_countdown) {
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id(cancel_retry_counter)++;
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ESP_LOGI("test", "Cancel test retry attempt %d", id(cancel_retry_counter));
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return RetryResult::RETRY;
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});
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// Cancel it after 100ms
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App.scheduler.set_timeout(component, "cancel_timer", 100, []() {
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bool cancelled = App.scheduler.cancel_retry(id(cancel_retry_binary_sensor), "cancel_test");
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ESP_LOGI("test", "Retry cancellation result: %s", cancelled ? "true" : "false");
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ESP_LOGI("test", "Cancel retry ran %d times before cancellation", id(cancel_retry_counter));
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});
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# Test 5: Empty name retry
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- logger.log: "=== Test 5: Empty name retry ==="
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- lambda: |-
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auto *component = id(empty_name_binary_sensor);
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App.scheduler.set_retry(component, "", 100, 5,
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[](uint8_t retry_countdown) {
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id(empty_name_retry_counter)++;
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ESP_LOGI("test", "Empty name retry attempt %d", id(empty_name_retry_counter));
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return RetryResult::RETRY;
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});
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// Try to cancel after 150ms
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App.scheduler.set_timeout(component, "empty_cancel_timer", 150, []() {
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bool cancelled = App.scheduler.cancel_retry(id(empty_name_binary_sensor), "");
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ESP_LOGI("test", "Empty name retry cancel result: %s",
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cancelled ? "true" : "false");
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ESP_LOGI("test", "Empty name retry ran %d times", id(empty_name_retry_counter));
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});
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# Test 6: Component method
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- logger.log: "=== Test 6: Component::set_retry method ==="
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- lambda: |-
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class TestRetryComponent : public Component {
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public:
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void test_retry() {
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this->set_retry(50, 3,
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[](uint8_t retry_countdown) {
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id(script_retry_counter)++;
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ESP_LOGI("test", "Component retry attempt %d", id(script_retry_counter));
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if (id(script_retry_counter) >= 2) {
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return RetryResult::DONE;
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}
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return RetryResult::RETRY;
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}, 1.5f);
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}
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};
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static TestRetryComponent test_component;
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test_component.test_retry();
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# Test 7: Multiple same name
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- logger.log: "=== Test 7: Multiple retries with same name ==="
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- lambda: |-
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auto *component = id(multiple_same_name_switch);
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// Set first retry
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App.scheduler.set_retry(component, "duplicate_retry", 100, 5,
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[](uint8_t retry_countdown) {
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id(multiple_same_name_counter) += 1;
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ESP_LOGI("test", "First duplicate retry - should not run");
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return RetryResult::RETRY;
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});
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// Set second retry with same name (should cancel first)
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App.scheduler.set_retry(component, "duplicate_retry", 50, 3,
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[](uint8_t retry_countdown) {
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id(multiple_same_name_counter) += 10;
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ESP_LOGI("test", "Second duplicate retry attempt (counter=%d)",
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id(multiple_same_name_counter));
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if (id(multiple_same_name_counter) >= 20) {
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return RetryResult::DONE;
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}
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return RetryResult::RETRY;
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});
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# Test 8: Const char* overloads
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- logger.log: "=== Test 8: Const char* overloads ==="
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- lambda: |-
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auto *component = id(simple_retry_sensor);
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// Test 8a: Direct string literal
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App.scheduler.set_retry(component, "const_char_test", 30, 2,
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[](uint8_t retry_countdown) {
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id(const_char_retry_counter)++;
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ESP_LOGI("test", "Const char retry %d", id(const_char_retry_counter));
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return RetryResult::DONE;
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});
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# Test 9: Static const char* variable
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- logger.log: "=== Test 9: Static const char* ==="
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- lambda: |-
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auto *component = id(backoff_retry_sensor);
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static const char* STATIC_NAME = "static_retry_test";
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App.scheduler.set_retry(component, STATIC_NAME, 20, 1,
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[](uint8_t retry_countdown) {
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id(static_char_retry_counter)++;
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ESP_LOGI("test", "Static const char retry %d", id(static_char_retry_counter));
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return RetryResult::DONE;
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});
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// Cancel with same static const char*
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App.scheduler.set_timeout(component, "static_cancel", 10, []() {
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static const char* STATIC_NAME = "static_retry_test";
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bool result = App.scheduler.cancel_retry(id(backoff_retry_sensor), STATIC_NAME);
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ESP_LOGI("test", "Static cancel result: %s", result ? "true" : "false");
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});
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# Wait for all tests to complete before reporting
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- delay: 500ms
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# Final report
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- logger.log: "=== Retry Test Results ==="
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- lambda: |-
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ESP_LOGI("test", "Simple retry counter: %d (expected 2)", id(simple_retry_counter));
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ESP_LOGI("test", "Backoff retry counter: %d (expected 4)", id(backoff_retry_counter));
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ESP_LOGI("test", "Immediate done counter: %d (expected 1)", id(immediate_done_counter));
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ESP_LOGI("test", "Cancel retry counter: %d (expected 2-4)", id(cancel_retry_counter));
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ESP_LOGI("test", "Empty name retry counter: %d (expected 1-2)", id(empty_name_retry_counter));
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ESP_LOGI("test", "Component retry counter: %d (expected 2)", id(script_retry_counter));
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ESP_LOGI("test", "Multiple same name counter: %d (expected 20+)", id(multiple_same_name_counter));
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ESP_LOGI("test", "Const char retry counter: %d (expected 1)", id(const_char_retry_counter));
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ESP_LOGI("test", "Static char retry counter: %d (expected 1)", id(static_char_retry_counter));
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ESP_LOGI("test", "All retry tests completed");
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@@ -18,7 +18,6 @@ async def test_scheduler_numeric_id_test(
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# Track counts
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timeout_count = 0
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interval_count = 0
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retry_count = 0
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defer_count = 0
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# Events for each test completion
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@@ -32,8 +31,6 @@ async def test_scheduler_numeric_id_test(
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component_interval_fired = asyncio.Event()
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zero_id_timeout_fired = asyncio.Event()
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max_id_timeout_fired = asyncio.Event()
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numeric_retry_done = asyncio.Event()
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numeric_retry_cancelled = asyncio.Event()
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numeric_defer_7001_fired = asyncio.Event()
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numeric_defer_7002_fired = asyncio.Event()
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numeric_defer_cancelled = asyncio.Event()
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@@ -41,11 +38,10 @@ async def test_scheduler_numeric_id_test(
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# Track interval counts
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numeric_interval_count = 0
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numeric_retry_count = 0
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def on_log_line(line: str) -> None:
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nonlocal timeout_count, interval_count, retry_count, defer_count
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nonlocal numeric_interval_count, numeric_retry_count
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nonlocal timeout_count, interval_count, defer_count
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nonlocal numeric_interval_count
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# Strip ANSI color codes
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clean_line = re.sub(r"\x1b\[[0-9;]*m", "", line)
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@@ -97,18 +93,6 @@ async def test_scheduler_numeric_id_test(
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max_id_timeout_fired.set()
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timeout_count += 1
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# Check for numeric retry tests
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elif "Numeric retry 6001 attempt" in clean_line:
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match = re.search(r"attempt (\d+)", clean_line)
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if match:
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numeric_retry_count = int(match.group(1))
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elif "Numeric retry 6001 done" in clean_line:
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numeric_retry_done.set()
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elif "Cancelled numeric retry 6002" in clean_line:
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numeric_retry_cancelled.set()
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# Check for numeric defer tests
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elif "Component numeric defer 7001 fired" in clean_line:
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numeric_defer_7001_fired.set()
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@@ -122,14 +106,13 @@ async def test_scheduler_numeric_id_test(
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# Check for final results
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elif "Final results" in clean_line:
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match = re.search(
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r"Timeouts: (\d+), Intervals: (\d+), Retries: (\d+), Defers: (\d+)",
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r"Timeouts: (\d+), Intervals: (\d+), Defers: (\d+)",
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clean_line,
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)
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if match:
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timeout_count = int(match.group(1))
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interval_count = int(match.group(2))
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retry_count = int(match.group(3))
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defer_count = int(match.group(4))
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defer_count = int(match.group(3))
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final_results_logged.set()
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async with (
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@@ -200,23 +183,6 @@ async def test_scheduler_numeric_id_test(
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except TimeoutError:
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pytest.fail("Max ID timeout did not fire within 0.5 seconds")
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# Wait for numeric retry tests
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try:
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await asyncio.wait_for(numeric_retry_done.wait(), timeout=1.0)
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except TimeoutError:
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pytest.fail(
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f"Numeric retry 6001 did not complete. Count: {numeric_retry_count}"
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)
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assert numeric_retry_count >= 2, (
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f"Expected at least 2 numeric retry attempts, got {numeric_retry_count}"
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)
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# Verify numeric retry was cancelled
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assert numeric_retry_cancelled.is_set(), (
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"Numeric retry 6002 should have been cancelled"
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)
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# Wait for numeric defer tests
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try:
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await asyncio.wait_for(numeric_defer_7001_fired.wait(), timeout=0.5)
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@@ -245,7 +211,4 @@ async def test_scheduler_numeric_id_test(
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assert interval_count >= 3, (
|
||||
f"Expected at least 3 interval fires, got {interval_count}"
|
||||
)
|
||||
assert retry_count >= 2, (
|
||||
f"Expected at least 2 retry attempts, got {retry_count}"
|
||||
)
|
||||
assert defer_count >= 2, f"Expected at least 2 defer fires, got {defer_count}"
|
||||
|
||||
@@ -1,279 +0,0 @@
|
||||
"""Test scheduler retry functionality."""
|
||||
|
||||
import asyncio
|
||||
import re
|
||||
|
||||
import pytest
|
||||
|
||||
from .types import APIClientConnectedFactory, RunCompiledFunction
|
||||
|
||||
|
||||
@pytest.mark.asyncio
|
||||
async def test_scheduler_retry_test(
|
||||
yaml_config: str,
|
||||
run_compiled: RunCompiledFunction,
|
||||
api_client_connected: APIClientConnectedFactory,
|
||||
) -> None:
|
||||
"""Test that scheduler retry functionality works correctly."""
|
||||
# Track test progress
|
||||
simple_retry_done = asyncio.Event()
|
||||
backoff_retry_done = asyncio.Event()
|
||||
immediate_done_done = asyncio.Event()
|
||||
cancel_retry_done = asyncio.Event()
|
||||
empty_name_retry_done = asyncio.Event()
|
||||
component_retry_done = asyncio.Event()
|
||||
multiple_name_done = asyncio.Event()
|
||||
const_char_done = asyncio.Event()
|
||||
static_char_done = asyncio.Event()
|
||||
test_complete = asyncio.Event()
|
||||
|
||||
# Track retry counts
|
||||
simple_retry_count = 0
|
||||
backoff_retry_count = 0
|
||||
immediate_done_count = 0
|
||||
cancel_retry_count = 0
|
||||
empty_name_retry_count = 0
|
||||
component_retry_count = 0
|
||||
multiple_name_count = 0
|
||||
const_char_retry_count = 0
|
||||
static_char_retry_count = 0
|
||||
|
||||
# Track specific test results
|
||||
cancel_result = None
|
||||
empty_cancel_result = None
|
||||
backoff_intervals = []
|
||||
|
||||
def on_log_line(line: str) -> None:
|
||||
nonlocal simple_retry_count, backoff_retry_count, immediate_done_count
|
||||
nonlocal cancel_retry_count, empty_name_retry_count, component_retry_count
|
||||
nonlocal multiple_name_count, const_char_retry_count, static_char_retry_count
|
||||
nonlocal cancel_result, empty_cancel_result
|
||||
|
||||
# Strip ANSI color codes
|
||||
clean_line = re.sub(r"\x1b\[[0-9;]*m", "", line)
|
||||
|
||||
# Simple retry test
|
||||
if "Simple retry attempt" in clean_line:
|
||||
if match := re.search(r"Simple retry attempt (\d+)", clean_line):
|
||||
simple_retry_count = int(match.group(1))
|
||||
|
||||
elif "Simple retry succeeded on attempt" in clean_line:
|
||||
simple_retry_done.set()
|
||||
|
||||
# Backoff retry test
|
||||
elif "Backoff retry attempt" in clean_line:
|
||||
if match := re.search(
|
||||
r"Backoff retry attempt (\d+).*interval=(\d+)ms", clean_line
|
||||
):
|
||||
backoff_retry_count = int(match.group(1))
|
||||
interval = int(match.group(2))
|
||||
if backoff_retry_count > 1: # Skip first (immediate) call
|
||||
backoff_intervals.append(interval)
|
||||
|
||||
elif "Backoff retry completed" in clean_line:
|
||||
backoff_retry_done.set()
|
||||
|
||||
# Immediate done test
|
||||
elif "Immediate done retry called" in clean_line:
|
||||
immediate_done_count += 1
|
||||
immediate_done_done.set()
|
||||
|
||||
# Cancel retry test
|
||||
elif "Cancel test retry attempt" in clean_line:
|
||||
cancel_retry_count += 1
|
||||
|
||||
elif "Retry cancellation result:" in clean_line:
|
||||
cancel_result = "true" in clean_line
|
||||
cancel_retry_done.set()
|
||||
|
||||
# Empty name retry test
|
||||
elif "Empty name retry attempt" in clean_line:
|
||||
if match := re.search(r"Empty name retry attempt (\d+)", clean_line):
|
||||
empty_name_retry_count = int(match.group(1))
|
||||
|
||||
elif "Empty name retry cancel result:" in clean_line:
|
||||
empty_cancel_result = "true" in clean_line
|
||||
|
||||
elif "Empty name retry ran" in clean_line:
|
||||
empty_name_retry_done.set()
|
||||
|
||||
# Component retry test
|
||||
elif "Component retry attempt" in clean_line:
|
||||
if match := re.search(r"Component retry attempt (\d+)", clean_line):
|
||||
component_retry_count = int(match.group(1))
|
||||
if component_retry_count >= 2:
|
||||
component_retry_done.set()
|
||||
|
||||
# Multiple same name test
|
||||
elif "Second duplicate retry attempt" in clean_line:
|
||||
if match := re.search(r"counter=(\d+)", clean_line):
|
||||
multiple_name_count = int(match.group(1))
|
||||
if multiple_name_count >= 20:
|
||||
multiple_name_done.set()
|
||||
|
||||
# Const char retry test
|
||||
elif "Const char retry" in clean_line:
|
||||
if match := re.search(r"Const char retry (\d+)", clean_line):
|
||||
const_char_retry_count = int(match.group(1))
|
||||
const_char_done.set()
|
||||
|
||||
# Static const char retry test
|
||||
elif "Static const char retry" in clean_line:
|
||||
if match := re.search(r"Static const char retry (\d+)", clean_line):
|
||||
static_char_retry_count = int(match.group(1))
|
||||
static_char_done.set()
|
||||
|
||||
elif "Static cancel result:" in clean_line:
|
||||
# This is part of test 9, but we don't track it separately
|
||||
pass
|
||||
|
||||
# Test completion
|
||||
elif "All retry tests completed" in clean_line:
|
||||
test_complete.set()
|
||||
|
||||
async with (
|
||||
run_compiled(yaml_config, line_callback=on_log_line),
|
||||
api_client_connected() as client,
|
||||
):
|
||||
# Verify we can connect
|
||||
device_info = await client.device_info()
|
||||
assert device_info is not None
|
||||
assert device_info.name == "scheduler-retry-test"
|
||||
|
||||
# Wait for simple retry test
|
||||
try:
|
||||
await asyncio.wait_for(simple_retry_done.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Simple retry test did not complete. Count: {simple_retry_count}"
|
||||
)
|
||||
|
||||
assert simple_retry_count == 2, (
|
||||
f"Expected 2 simple retry attempts, got {simple_retry_count}"
|
||||
)
|
||||
|
||||
# Wait for backoff retry test
|
||||
try:
|
||||
await asyncio.wait_for(backoff_retry_done.wait(), timeout=3.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Backoff retry test did not complete. Count: {backoff_retry_count}"
|
||||
)
|
||||
|
||||
assert backoff_retry_count == 4, (
|
||||
f"Expected 4 backoff retry attempts, got {backoff_retry_count}"
|
||||
)
|
||||
|
||||
# Verify backoff intervals (allowing for timing variations)
|
||||
assert len(backoff_intervals) >= 2, (
|
||||
f"Expected at least 2 intervals, got {len(backoff_intervals)}"
|
||||
)
|
||||
if len(backoff_intervals) >= 3:
|
||||
# First interval should be ~50ms (very wide tolerance for heavy system load)
|
||||
assert 20 <= backoff_intervals[0] <= 150, (
|
||||
f"First interval {backoff_intervals[0]}ms not ~50ms"
|
||||
)
|
||||
# Second interval should be ~100ms (50ms * 2.0)
|
||||
assert 50 <= backoff_intervals[1] <= 250, (
|
||||
f"Second interval {backoff_intervals[1]}ms not ~100ms"
|
||||
)
|
||||
# Third interval should be ~200ms (100ms * 2.0)
|
||||
assert 100 <= backoff_intervals[2] <= 500, (
|
||||
f"Third interval {backoff_intervals[2]}ms not ~200ms"
|
||||
)
|
||||
|
||||
# Wait for immediate done test
|
||||
try:
|
||||
await asyncio.wait_for(immediate_done_done.wait(), timeout=3.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Immediate done test did not complete. Count: {immediate_done_count}"
|
||||
)
|
||||
|
||||
assert immediate_done_count == 1, (
|
||||
f"Expected 1 immediate done call, got {immediate_done_count}"
|
||||
)
|
||||
|
||||
# Wait for cancel retry test
|
||||
try:
|
||||
await asyncio.wait_for(cancel_retry_done.wait(), timeout=3.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Cancel retry test did not complete. Count: {cancel_retry_count}"
|
||||
)
|
||||
|
||||
assert cancel_result is True, "Retry cancellation should have succeeded"
|
||||
assert 2 <= cancel_retry_count <= 5, (
|
||||
f"Expected 2-5 cancel retry attempts before cancellation, got {cancel_retry_count}"
|
||||
)
|
||||
|
||||
# Wait for empty name retry test
|
||||
try:
|
||||
await asyncio.wait_for(empty_name_retry_done.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Empty name retry test did not complete. Count: {empty_name_retry_count}"
|
||||
)
|
||||
|
||||
# Empty name retry should run at least once before being cancelled
|
||||
assert 1 <= empty_name_retry_count <= 3, (
|
||||
f"Expected 1-3 empty name retry attempts, got {empty_name_retry_count}"
|
||||
)
|
||||
assert empty_cancel_result is True, (
|
||||
"Empty name retry cancel should have succeeded"
|
||||
)
|
||||
|
||||
# Wait for component retry test
|
||||
try:
|
||||
await asyncio.wait_for(component_retry_done.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Component retry test did not complete. Count: {component_retry_count}"
|
||||
)
|
||||
|
||||
assert component_retry_count >= 2, (
|
||||
f"Expected at least 2 component retry attempts, got {component_retry_count}"
|
||||
)
|
||||
|
||||
# Wait for multiple same name test
|
||||
try:
|
||||
await asyncio.wait_for(multiple_name_done.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Multiple same name test did not complete. Count: {multiple_name_count}"
|
||||
)
|
||||
|
||||
# Should be 20+ (only second retry should run)
|
||||
assert multiple_name_count >= 20, (
|
||||
f"Expected multiple name count >= 20 (second retry only), got {multiple_name_count}"
|
||||
)
|
||||
|
||||
# Wait for const char retry test
|
||||
try:
|
||||
await asyncio.wait_for(const_char_done.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Const char retry test did not complete. Count: {const_char_retry_count}"
|
||||
)
|
||||
|
||||
assert const_char_retry_count == 1, (
|
||||
f"Expected 1 const char retry call, got {const_char_retry_count}"
|
||||
)
|
||||
|
||||
# Wait for static char retry test
|
||||
try:
|
||||
await asyncio.wait_for(static_char_done.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail(
|
||||
f"Static char retry test did not complete. Count: {static_char_retry_count}"
|
||||
)
|
||||
|
||||
assert static_char_retry_count == 1, (
|
||||
f"Expected 1 static char retry call, got {static_char_retry_count}"
|
||||
)
|
||||
|
||||
# Wait for test completion
|
||||
try:
|
||||
await asyncio.wait_for(test_complete.wait(), timeout=1.0)
|
||||
except TimeoutError:
|
||||
pytest.fail("Test did not complete within timeout")
|
||||
Reference in New Issue
Block a user