92ca046681
- Apps can specify task stack depth and preferred memory placement in their manifests. - App identifiers are validated against length and character requirements. - Crash diagnostics now show the crash cause, reason, fault address, call stack, and program-counter details, with logs saved for review. - App closing is more consistent across built-in screens. There's now a dedicated function, and the old _emit() function is made private. - Crash diagnostics no longer display a QR code without a call stack. - Improved memory allocation for unrestricted requests.
129 lines
4.1 KiB
C++
129 lines
4.1 KiB
C++
// SPDX-License-Identifier: Apache-2.0
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#include <app/event.h>
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#include <app/scheduler.h>
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#include <tactility/concurrent/mutex.h>
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#include <tactility/time.h>
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/**
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* Intrusive singly-linked list of subscriptions, keyed by app_instance_id.
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* Guarded by a single coarse-grained mutex, notifying a subscriber here never invokes caller code
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* (just a struct copy and a task_event_group_signal), so there is no reentrancy concern requiring a snapshot-then-unlock dance.
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*/
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static AppEventSubscription* subscriptions = nullptr;
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struct AppEventMutex {
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Mutex handle {};
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AppEventMutex() { mutex_construct(&handle); }
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~AppEventMutex() { mutex_destruct(&handle); }
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};
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static AppEventMutex subscriptions_mutex;
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extern "C" {
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error_t app_event_subscribe_with_app_id(AppEventSubscription* sub, TaskEventGroup* event_group, AppInstanceId app_instance_id) {
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uint32_t bit;
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error_t claim_result = task_event_group_claim_bit(event_group, &bit);
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if (claim_result != ERROR_NONE) {
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return claim_result;
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}
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mutex_lock(&subscriptions_mutex.handle);
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// Avoid cyclic subscription list that would loop forever
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if (subscriptions == sub) {
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mutex_unlock(&subscriptions_mutex.handle);
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task_event_group_release_bit(event_group, bit);
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return ERROR_INVALID_STATE;
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}
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sub->bit = bit;
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sub->internal.app_instance_id = app_instance_id;
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sub->internal.event_group = event_group;
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sub->internal.head = 0;
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sub->internal.count = 0;
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sub->internal.next = subscriptions;
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subscriptions = sub;
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mutex_unlock(&subscriptions_mutex.handle);
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return ERROR_NONE;
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}
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error_t app_event_subscribe(AppEventSubscription* sub, TaskEventGroup* event_group) {
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return app_event_subscribe_with_app_id(sub, event_group, app_scheduler_current_app_id());
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}
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error_t app_event_unsubscribe(AppEventSubscription* sub) {
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error_t result = ERROR_NOT_FOUND;
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mutex_lock(&subscriptions_mutex.handle);
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for (AppEventSubscription** link = &subscriptions; *link != nullptr; link = &(*link)->internal.next) {
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if (*link == sub) {
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*link = sub->internal.next;
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result = ERROR_NONE;
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break;
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}
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}
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mutex_unlock(&subscriptions_mutex.handle);
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if (result == ERROR_NONE) {
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task_event_group_release_bit(sub->internal.event_group, sub->bit);
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}
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return result;
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}
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error_t app_event_emit(AppInstanceId app_instance_id, const AppEvent* event) {
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AppEvent stamped_event = *event;
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stamped_event.timestamp = get_micros_since_boot();
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error_t result = ERROR_NOT_FOUND;
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mutex_lock(&subscriptions_mutex.handle);
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for (AppEventSubscription* sub = subscriptions; sub != nullptr; sub = sub->internal.next) {
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if (sub->internal.app_instance_id != app_instance_id) {
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continue;
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}
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if (sub->internal.count >= APP_EVENT_QUEUE_CAPACITY) {
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result = ERROR_RESOURCE;
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continue;
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}
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uint8_t tail = (sub->internal.head + sub->internal.count) % APP_EVENT_QUEUE_CAPACITY;
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sub->internal.queue[tail] = stamped_event;
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sub->internal.count++;
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if (result != ERROR_RESOURCE) {
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result = ERROR_NONE;
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}
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task_event_group_signal(sub->internal.event_group, sub->bit);
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}
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mutex_unlock(&subscriptions_mutex.handle);
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return result;
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}
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static bool try_pop(AppEventSubscription* sub, AppEvent* out_event) {
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mutex_lock(&subscriptions_mutex.handle);
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bool has_event = sub->internal.count > 0;
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if (has_event) {
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*out_event = sub->internal.queue[sub->internal.head];
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sub->internal.head = (sub->internal.head + 1) % APP_EVENT_QUEUE_CAPACITY;
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sub->internal.count--;
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}
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mutex_unlock(&subscriptions_mutex.handle);
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return has_event;
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}
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error_t app_event_poll(AppEventSubscription* sub, AppEvent* out_event) {
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return try_pop(sub, out_event) ? ERROR_NONE : ERROR_TIMEOUT;
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}
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error_t app_event_emit_close(AppInstanceId instance_id) {
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AppEvent event { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} };
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return app_event_emit(instance_id, &event);
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}
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} // extern "C"
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