## Summary **What is the goal of this PR?** Restore compatibility with older XTC files that use the legacy 48-byte header layout, so they open correctly instead of failing header/page-table validation. **What changes are included?** - Updates the XTC parser to accept legacy files where pageTableOffset starts at 0x30 instead of the newer full header size. - Avoids treating legacy header bytes as a valid chapterOffset, so older files are not misclassified as having chapters. - Switches XTC file size and seek operations to 64-bit-safe wrapper calls in HalStorage, which matches the XTC format’s 64-bit offset fields and keeps page/chapter lookups from narrowing offsets. - Keeps the existing bounds checks and improves related logging when XTC page loads fail. ## Additional Context - This is a narrow compatibility fix for XTC handling. The functional change is in the XTC parser; the HalStorage changes are supporting wrapper methods needed by that parser update. - Risk should be low outside XTC reading, since the HAL changes only expose existing underlying file APIs rather than changing storage behavior. --- ### AI Usage While CrossPoint doesn't have restrictions on AI tools in contributing, please be transparent about their usage as it helps set the right context for reviewers. Did you use AI tools to help write this code? **YES**
162 lines
6.5 KiB
C++
162 lines
6.5 KiB
C++
#define HAL_STORAGE_IMPL
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#include "HalStorage.h"
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#include <FS.h> // need to be included before SdFat.h for compatibility with FS.h's File class
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#include <Logging.h>
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#include <SDCardManager.h>
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#include <cassert>
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#define SDCard SDCardManager::getInstance()
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HalStorage HalStorage::instance;
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HalStorage::HalStorage() {
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storageMutex = xSemaphoreCreateMutex();
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assert(storageMutex != nullptr);
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}
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// begin() and ready() are only called from setup, no need to acquire mutex for them
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bool HalStorage::begin() { return SDCard.begin(); }
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bool HalStorage::ready() const { return SDCard.ready(); }
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// For the rest of the methods, we acquire the mutex to ensure thread safety
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class HalStorage::StorageLock {
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public:
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StorageLock() { xSemaphoreTake(HalStorage::getInstance().storageMutex, portMAX_DELAY); }
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~StorageLock() { xSemaphoreGive(HalStorage::getInstance().storageMutex); }
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};
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#define HAL_STORAGE_WRAPPED_CALL(method, ...) \
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HalStorage::StorageLock lock; \
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return SDCard.method(__VA_ARGS__);
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std::vector<String> HalStorage::listFiles(const char* path, int maxFiles) {
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HAL_STORAGE_WRAPPED_CALL(listFiles, path, maxFiles);
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}
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String HalStorage::readFile(const char* path) { HAL_STORAGE_WRAPPED_CALL(readFile, path); }
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bool HalStorage::readFileToStream(const char* path, Print& out, size_t chunkSize) {
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HAL_STORAGE_WRAPPED_CALL(readFileToStream, path, out, chunkSize);
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}
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size_t HalStorage::readFileToBuffer(const char* path, char* buffer, size_t bufferSize, size_t maxBytes) {
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HAL_STORAGE_WRAPPED_CALL(readFileToBuffer, path, buffer, bufferSize, maxBytes);
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}
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bool HalStorage::writeFile(const char* path, const String& content) {
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HAL_STORAGE_WRAPPED_CALL(writeFile, path, content);
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}
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bool HalStorage::ensureDirectoryExists(const char* path) { HAL_STORAGE_WRAPPED_CALL(ensureDirectoryExists, path); }
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class HalFile::Impl {
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public:
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Impl(FsFile&& fsFile) : file(std::move(fsFile)) {}
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FsFile file;
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};
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HalFile::HalFile() = default;
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HalFile::HalFile(std::unique_ptr<Impl> impl) : impl(std::move(impl)) {}
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HalFile::~HalFile() = default;
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HalFile::HalFile(HalFile&&) = default;
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HalFile& HalFile::operator=(HalFile&&) = default;
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HalFile HalStorage::open(const char* path, const oflag_t oflag) {
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StorageLock lock; // ensure thread safety for the duration of this function
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return HalFile(std::make_unique<HalFile::Impl>(SDCard.open(path, oflag)));
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}
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bool HalStorage::mkdir(const char* path, const bool pFlag) { HAL_STORAGE_WRAPPED_CALL(mkdir, path, pFlag); }
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bool HalStorage::exists(const char* path) { HAL_STORAGE_WRAPPED_CALL(exists, path); }
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bool HalStorage::remove(const char* path) { HAL_STORAGE_WRAPPED_CALL(remove, path); }
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bool HalStorage::rename(const char* oldPath, const char* newPath) {
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HAL_STORAGE_WRAPPED_CALL(rename, oldPath, newPath);
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}
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bool HalStorage::rmdir(const char* path) { HAL_STORAGE_WRAPPED_CALL(rmdir, path); }
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bool HalStorage::openFileForRead(const char* moduleName, const char* path, HalFile& file) {
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StorageLock lock; // ensure thread safety for the duration of this function
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FsFile fsFile;
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bool ok = SDCard.openFileForRead(moduleName, path, fsFile);
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file = HalFile(std::make_unique<HalFile::Impl>(std::move(fsFile)));
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return ok;
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}
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bool HalStorage::openFileForRead(const char* moduleName, const std::string& path, HalFile& file) {
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return openFileForRead(moduleName, path.c_str(), file);
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}
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bool HalStorage::openFileForRead(const char* moduleName, const String& path, HalFile& file) {
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return openFileForRead(moduleName, path.c_str(), file);
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}
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bool HalStorage::openFileForWrite(const char* moduleName, const char* path, HalFile& file) {
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StorageLock lock; // ensure thread safety for the duration of this function
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FsFile fsFile;
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bool ok = SDCard.openFileForWrite(moduleName, path, fsFile);
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file = HalFile(std::make_unique<HalFile::Impl>(std::move(fsFile)));
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return ok;
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}
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bool HalStorage::openFileForWrite(const char* moduleName, const std::string& path, HalFile& file) {
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return openFileForWrite(moduleName, path.c_str(), file);
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}
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bool HalStorage::openFileForWrite(const char* moduleName, const String& path, HalFile& file) {
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return openFileForWrite(moduleName, path.c_str(), file);
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}
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bool HalStorage::removeDir(const char* path) { HAL_STORAGE_WRAPPED_CALL(removeDir, path); }
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// HalFile implementation
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// Allow doing file operations while ensuring thread safety via HalStorage's mutex.
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// Please keep the list below in sync with the HalFile.h header
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#define HAL_FILE_WRAPPED_CALL(method, ...) \
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HalStorage::StorageLock lock; \
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assert(impl != nullptr); \
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return impl->file.method(__VA_ARGS__);
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#define HAL_FILE_FORWARD_CALL(method, ...) \
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assert(impl != nullptr); \
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return impl->file.method(__VA_ARGS__);
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void HalFile::flush() { HAL_FILE_WRAPPED_CALL(flush, ); }
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size_t HalFile::getName(char* name, size_t len) { HAL_FILE_WRAPPED_CALL(getName, name, len); }
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size_t HalFile::size() { HAL_FILE_FORWARD_CALL(size, ); } // already thread-safe, no need to wrap
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size_t HalFile::fileSize() { HAL_FILE_FORWARD_CALL(fileSize, ); } // already thread-safe, no need to wrap
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uint64_t HalFile::fileSize64() { HAL_FILE_FORWARD_CALL(fileSize, ); } // already thread-safe, no need to wrap
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bool HalFile::seek(size_t pos) { HAL_FILE_WRAPPED_CALL(seekSet, pos); }
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bool HalFile::seek64(uint64_t pos) { HAL_FILE_WRAPPED_CALL(seekSet, pos); }
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bool HalFile::seekCur(int64_t offset) { HAL_FILE_WRAPPED_CALL(seekCur, offset); }
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bool HalFile::seekSet(size_t offset) { HAL_FILE_WRAPPED_CALL(seekSet, offset); }
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int HalFile::available() const { HAL_FILE_WRAPPED_CALL(available, ); }
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size_t HalFile::position() const { HAL_FILE_WRAPPED_CALL(position, ); }
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int HalFile::read(void* buf, size_t count) { HAL_FILE_WRAPPED_CALL(read, buf, count); }
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int HalFile::read() { HAL_FILE_WRAPPED_CALL(read, ); }
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size_t HalFile::write(const void* buf, size_t count) { HAL_FILE_WRAPPED_CALL(write, buf, count); }
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size_t HalFile::write(uint8_t b) { HAL_FILE_WRAPPED_CALL(write, b); }
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bool HalFile::rename(const char* newPath) { HAL_FILE_WRAPPED_CALL(rename, newPath); }
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bool HalFile::isDirectory() const { HAL_FILE_FORWARD_CALL(isDirectory, ); } // already thread-safe, no need to wrap
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void HalFile::rewindDirectory() { HAL_FILE_WRAPPED_CALL(rewindDirectory, ); }
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bool HalFile::close() { HAL_FILE_WRAPPED_CALL(close, ); }
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HalFile HalFile::openNextFile() {
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HalStorage::StorageLock lock;
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assert(impl != nullptr);
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return HalFile(std::make_unique<Impl>(impl->file.openNextFile()));
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}
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bool HalFile::isOpen() const { return impl != nullptr && impl->file.isOpen(); } // already thread-safe, no need to wrap
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HalFile::operator bool() const { return isOpen(); }
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