599fa46766
- New drivers: - SD SPI - spi_peripheral - touch_placeholder - display_placeholder - Devicetree compiler: - Implement phandle-arrays - Implement device addresses - Add placeholder drivers to all devices with a SPI display - SPI driver: add `cs-pins` and set them to high on driver start - FileSystem: add `file_system_set_owner()` and `file_system_get_owner()` - File locking is now checking if the related `FileSystem` is part of a shared SPI bus - Add `device_get_child_count()` - SDMMC driver: Remove default of `slot` value - Fix for Crowpanel Basic 3.5" display (add delay to booting) - Fix for LilyGO T-HMI SD card mounting (delayed mounting by disabling it initially in the dts)
105 lines
2.9 KiB
C++
105 lines
2.9 KiB
C++
// SPDX-License-Identifier: Apache-2.0
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#include <algorithm>
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#include <tactility/device.h>
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#include <tactility/concurrent/mutex.h>
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#include <tactility/concurrent/recursive_mutex.h>
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#include <tactility/filesystem/file_system.h>
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#include <vector>
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// Define the internal FileSystem structure
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struct FileSystem {
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const FileSystemApi* api;
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void* data;
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Device* owner;
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};
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// Global list of file systems and its mutex
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struct FileSystemsLedger {
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std::vector<FileSystem*> file_systems;
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// Use recursive mutex so that file_system_for_each() can lock within the callback
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RecursiveMutex mutex {};
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FileSystemsLedger() { recursive_mutex_construct(&mutex); }
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~FileSystemsLedger() { recursive_mutex_destruct(&mutex); }
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void lock() { recursive_mutex_lock(&mutex); }
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bool is_locked() { return recursive_mutex_is_locked(&mutex); }
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void unlock() { recursive_mutex_unlock(&mutex); }
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};
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static FileSystemsLedger& get_ledger() {
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static FileSystemsLedger ledger;
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return ledger;
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}
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extern "C" {
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FileSystem* file_system_add(const FileSystemApi* fs_api, void* data) {
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auto& ledger = get_ledger();
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check(!ledger.is_locked()); // ensure file_system_for_each() doesn't add a filesystem while iterating
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ledger.lock();
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auto* fs = new(std::nothrow) struct FileSystem();
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check(fs != nullptr);
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fs->api = fs_api;
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fs->data = data;
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fs->owner = nullptr;
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ledger.file_systems.push_back(fs);
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ledger.unlock();
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return fs;
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}
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void file_system_remove(FileSystem* fs) {
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check(!file_system_is_mounted(fs));
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auto& ledger = get_ledger();
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check(!ledger.is_locked()); // ensure file_system_for_each() doesn't remove a filesystem while iterating
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ledger.lock();
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auto it = std::ranges::find(ledger.file_systems, fs);
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if (it != ledger.file_systems.end()) {
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ledger.file_systems.erase(it);
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delete fs;
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}
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ledger.unlock();
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}
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void file_system_for_each(void* callback_context, bool (*callback)(FileSystem* fs, void* context)) {
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auto& ledger = get_ledger();
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ledger.lock();
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for (auto* fs : ledger.file_systems) {
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if (!callback(fs, callback_context)) break;
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}
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ledger.unlock();
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}
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error_t file_system_mount(FileSystem* fs) {
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// Assuming 'device' is accessible or passed via a different mechanism
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// as it's required by the FileSystemApi signatures.
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return fs->api->mount(fs->data);
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}
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error_t file_system_unmount(FileSystem* fs) {
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return fs->api->unmount(fs->data);
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}
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bool file_system_is_mounted(FileSystem* fs) {
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return fs->api->is_mounted(fs->data);
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}
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error_t file_system_get_path(FileSystem* fs, char* out_path, size_t out_path_size) {
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return fs->api->get_path(fs->data, out_path, out_path_size);
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}
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void file_system_set_owner(FileSystem* fs, Device* owner) {
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fs->owner = owner;
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}
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Device* file_system_get_owner(FileSystem* fs) {
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return fs->owner;
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}
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}
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