mirror of
https://github.com/RetroDECK/Duckstation.git
synced 2024-11-27 16:15:41 +00:00
561 lines
16 KiB
C++
561 lines
16 KiB
C++
#include "memory_card_image.h"
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#include "common/byte_stream.h"
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#include "common/file_system.h"
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#include "common/log.h"
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#include "common/shiftjis.h"
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#include "common/state_wrapper.h"
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#include "common/string_util.h"
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#include "host_interface.h"
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#include "system.h"
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#include <algorithm>
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#include <cstdio>
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#include <optional>
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Log_SetChannel(MemoryCard);
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namespace MemoryCardImage {
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#pragma pack(push, 1)
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struct DirectoryFrame
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{
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u32 block_allocation_state;
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u32 file_size;
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u16 next_block_number;
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char filename[21];
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u8 zero_pad_1;
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u8 pad_2[95];
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u8 checksum;
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};
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static_assert(sizeof(DirectoryFrame) == FRAME_SIZE);
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struct TitleFrame
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{
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char id[2];
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u8 icon_flag;
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u8 unk_block_number;
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u8 title[64];
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u8 pad_1[12];
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u8 pad_2[16];
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u16 icon_palette[16];
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};
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static_assert(sizeof(TitleFrame) == FRAME_SIZE);
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#pragma pack(pop)
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static u8 GetChecksum(const u8* frame)
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{
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u8 checksum = frame[0];
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for (u32 i = 1; i < FRAME_SIZE - 1; i++)
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checksum ^= frame[i];
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return checksum;
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}
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static void UpdateChecksum(DirectoryFrame* df)
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{
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df->checksum = GetChecksum(reinterpret_cast<u8*>(df));
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}
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template<typename T>
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T* GetFramePtr(DataArray* data, u32 block, u32 frame)
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{
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return reinterpret_cast<T*>(data->data() + (block * BLOCK_SIZE) + (frame * FRAME_SIZE));
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}
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template<typename T>
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const T* GetFramePtr(const DataArray& data, u32 block, u32 frame)
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{
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return reinterpret_cast<const T*>(&data[(block * BLOCK_SIZE) + (frame * FRAME_SIZE)]);
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}
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static constexpr u32 RGBA5551ToRGBA8888(u16 color)
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{
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u8 r = Truncate8(color & 31);
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u8 g = Truncate8((color >> 5) & 31);
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u8 b = Truncate8((color >> 10) & 31);
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u8 a = Truncate8((color >> 15) & 1);
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// 00012345 -> 1234545
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b = (b << 3) | (b & 0b111);
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g = (g << 3) | (g & 0b111);
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r = (r << 3) | (r & 0b111);
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// a = a ? 255 : 0;
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a = (color == 0) ? 0 : 255;
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return ZeroExtend32(r) | (ZeroExtend32(g) << 8) | (ZeroExtend32(b) << 16) | (ZeroExtend32(a) << 24);
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}
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bool LoadFromFile(DataArray* data, const char* filename)
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{
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FILESYSTEM_STAT_DATA sd;
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if (!FileSystem::StatFile(filename, &sd) || sd.Size != DATA_SIZE)
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return false;
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std::unique_ptr<ByteStream> stream = FileSystem::OpenFile(filename, BYTESTREAM_OPEN_READ | BYTESTREAM_OPEN_STREAMED);
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if (!stream || stream->GetSize() != DATA_SIZE)
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return false;
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const size_t num_read = stream->Read(data->data(), DATA_SIZE);
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if (num_read != DATA_SIZE)
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{
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Log_ErrorPrintf("Only read %zu of %u sectors from '%s'", num_read / FRAME_SIZE, NUM_FRAMES, filename);
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return false;
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}
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Log_InfoPrintf("Loaded memory card from %s", filename);
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return true;
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}
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bool SaveToFile(const DataArray& data, const char* filename)
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{
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std::unique_ptr<ByteStream> stream =
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FileSystem::OpenFile(filename, BYTESTREAM_OPEN_CREATE | BYTESTREAM_OPEN_TRUNCATE | BYTESTREAM_OPEN_WRITE |
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BYTESTREAM_OPEN_ATOMIC_UPDATE | BYTESTREAM_OPEN_STREAMED);
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if (!stream)
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{
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Log_ErrorPrintf("Failed to open '%s' for writing.", filename);
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return false;
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}
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if (!stream->Write2(data.data(), DATA_SIZE) || !stream->Commit())
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{
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Log_ErrorPrintf("Failed to write sectors to '%s'", filename);
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stream->Discard();
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return false;
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}
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Log_InfoPrintf("Saved memory card to '%s'", filename);
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return true;
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}
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void Format(DataArray* data)
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{
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// fill everything with FF
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data->fill(u8(0xFF));
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// header
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{
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u8* fptr = GetFramePtr<u8>(data, 0, 0);
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std::fill_n(fptr, FRAME_SIZE, u8(0));
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fptr[0] = 'M';
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fptr[1] = 'C';
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fptr[0x7F] = GetChecksum(fptr);
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}
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// directory
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for (u32 frame = 1; frame < 16; frame++)
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{
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u8* fptr = GetFramePtr<u8>(data, 0, frame);
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std::fill_n(fptr, FRAME_SIZE, u8(0));
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fptr[0] = 0xA0; // free
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fptr[8] = 0xFF; // pointer to next file
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fptr[9] = 0xFF; // pointer to next file
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fptr[0x7F] = GetChecksum(fptr); // checksum
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}
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// broken sector list
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for (u32 frame = 16; frame < 36; frame++)
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{
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u8* fptr = GetFramePtr<u8>(data, 0, frame);
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std::fill_n(fptr, FRAME_SIZE, u8(0));
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fptr[0] = 0xFF;
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fptr[1] = 0xFF;
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fptr[2] = 0xFF;
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fptr[3] = 0xFF;
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fptr[8] = 0xFF; // pointer to next file
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fptr[9] = 0xFF; // pointer to next file
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fptr[0x7F] = GetChecksum(fptr); // checksum
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}
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// broken sector replacement data
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for (u32 frame = 36; frame < 56; frame++)
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{
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u8* fptr = GetFramePtr<u8>(data, 0, frame);
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std::fill_n(fptr, FRAME_SIZE, u8(0x00));
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}
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// unused frames
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for (u32 frame = 56; frame < 63; frame++)
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{
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u8* fptr = GetFramePtr<u8>(data, 0, frame);
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std::fill_n(fptr, FRAME_SIZE, u8(0x00));
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}
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// write test frame
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std::memcpy(GetFramePtr<u8>(data, 0, 63), GetFramePtr<u8>(data, 0, 0), FRAME_SIZE);
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}
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static std::optional<u32> GetNextFreeBlock(const DataArray& data)
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{
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for (u32 dir_frame = 1; dir_frame < FRAMES_PER_BLOCK; dir_frame++)
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{
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const DirectoryFrame* df = GetFramePtr<DirectoryFrame>(data, 0, dir_frame);
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if ((df->block_allocation_state & 0xF0) == 0xA0)
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return dir_frame;
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}
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return std::nullopt;
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}
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u32 GetFreeBlockCount(const DataArray& data)
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{
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u32 count = 0;
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for (u32 dir_frame = 1; dir_frame < FRAMES_PER_BLOCK; dir_frame++)
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{
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const DirectoryFrame* df = GetFramePtr<DirectoryFrame>(data, 0, dir_frame);
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if ((df->block_allocation_state & 0xF0) == 0xA0)
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count++;
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}
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return count;
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}
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std::vector<FileInfo> EnumerateFiles(const DataArray& data)
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{
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std::vector<FileInfo> files;
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for (u32 dir_frame = 1; dir_frame < FRAMES_PER_BLOCK; dir_frame++)
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{
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const DirectoryFrame* df = GetFramePtr<DirectoryFrame>(data, 0, dir_frame);
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if (df->block_allocation_state != 0x51)
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continue;
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u32 filename_length = 0;
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while (filename_length < sizeof(df->filename) && df->filename[filename_length] != '\0')
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filename_length++;
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FileInfo fi;
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fi.filename.append(df->filename, filename_length);
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fi.first_block = dir_frame;
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fi.size = df->file_size;
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fi.num_blocks = 1;
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const DirectoryFrame* next_df = df;
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while (next_df->next_block_number < (NUM_BLOCKS - 1) && fi.num_blocks < FRAMES_PER_BLOCK)
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{
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fi.num_blocks++;
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next_df = GetFramePtr<DirectoryFrame>(data, 0, next_df->next_block_number + 1);
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}
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if (fi.num_blocks == FRAMES_PER_BLOCK)
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{
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// invalid
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Log_WarningPrintf("Invalid block chain in block %u", dir_frame);
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continue;
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}
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const TitleFrame* tf = GetFramePtr<TitleFrame>(data, dir_frame, 0);
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u32 num_icon_frames = 0;
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if (tf->icon_flag == 0x11)
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num_icon_frames = 1;
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else if (tf->icon_flag == 0x12)
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num_icon_frames = 2;
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else if (tf->icon_flag == 0x13)
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num_icon_frames = 3;
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else
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{
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Log_WarningPrintf("Unknown icon flag 0x%02X", tf->icon_flag);
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continue;
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}
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char title_sjis[sizeof(tf->title) + 2];
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std::memcpy(title_sjis, tf->title, sizeof(tf->title));
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title_sjis[sizeof(tf->title)] = 0;
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title_sjis[sizeof(tf->title) + 1] = 0;
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char* title_utf8 = sjis2utf8(title_sjis);
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fi.title = title_utf8;
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std::free(title_utf8);
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fi.icon_frames.resize(num_icon_frames);
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for (u32 icon_frame = 0; icon_frame < num_icon_frames; icon_frame++)
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{
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const u8* indices_ptr = GetFramePtr<u8>(data, dir_frame, 1 + icon_frame);
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u32* pixels_ptr = fi.icon_frames[icon_frame].pixels;
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for (u32 i = 0; i < ICON_WIDTH * ICON_HEIGHT; i += 2)
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{
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*(pixels_ptr++) = RGBA5551ToRGBA8888(tf->icon_palette[*indices_ptr & 0xF]);
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*(pixels_ptr++) = RGBA5551ToRGBA8888(tf->icon_palette[*indices_ptr >> 4]);
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indices_ptr++;
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}
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}
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files.push_back(std::move(fi));
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}
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return files;
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}
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bool ReadFile(const DataArray& data, const FileInfo& fi, std::vector<u8>* buffer)
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{
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buffer->resize(fi.num_blocks * BLOCK_SIZE);
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u32 block_number = fi.first_block;
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for (u32 i = 0; i < fi.num_blocks; i++)
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{
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Assert(block_number < FRAMES_PER_BLOCK);
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std::memcpy(buffer->data() + (i * BLOCK_SIZE), GetFramePtr<u8>(data, block_number, 0), BLOCK_SIZE);
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const DirectoryFrame* df = GetFramePtr<DirectoryFrame>(data, 0, block_number);
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block_number = df->next_block_number + 1;
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}
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return true;
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}
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bool WriteFile(DataArray* data, const std::string_view& filename, const std::vector<u8>& buffer)
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{
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if (buffer.empty())
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{
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Log_ErrorPrintf("Failed to write file to memory card: buffer is empty");
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return false;
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}
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const u32 num_blocks = (static_cast<u32>(buffer.size()) + (BLOCK_SIZE - 1)) / BLOCK_SIZE;
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if (GetFreeBlockCount(*data) < num_blocks)
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{
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Log_ErrorPrintf("Failed to write file to memory card: insufficient free blocks");
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return false;
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}
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DirectoryFrame* last_df = nullptr;
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for (u32 i = 0; i < num_blocks; i++)
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{
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std::optional<u32> block_number = GetNextFreeBlock(*data);
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Assert(block_number.has_value());
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DirectoryFrame* df = GetFramePtr<DirectoryFrame>(data, 0, block_number.value());
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std::memset(df, 0, sizeof(DirectoryFrame));
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if (last_df)
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{
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// not first sector
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last_df->next_block_number = Truncate16(block_number.value() - 1);
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UpdateChecksum(last_df);
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// 53 for last otherwise 52
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df->block_allocation_state = (i == (num_blocks - 1)) ? 0x53 : 0x52;
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}
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else
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{
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// first sector
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df->block_allocation_state = 0x51;
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df->file_size = static_cast<u32>(buffer.size());
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StringUtil::Strlcpy(df->filename, filename, sizeof(df->filename));
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}
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df->next_block_number = 0xFFFF;
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UpdateChecksum(df);
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last_df = df;
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u8* data_block = GetFramePtr<u8>(data, block_number.value(), 0);
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const u32 src_offset = i * BLOCK_SIZE;
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const u32 size_to_copy = std::min<u32>(BLOCK_SIZE, static_cast<u32>(buffer.size()) - src_offset);
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const u32 size_to_zero = BLOCK_SIZE - size_to_copy;
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std::memcpy(data_block, buffer.data() + src_offset, size_to_copy);
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if (size_to_zero)
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std::memset(data_block + size_to_copy, 0, size_to_zero);
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}
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Log_InfoPrintf("Wrote %zu byte (%u block) file to memory card", buffer.size(), num_blocks);
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return true;
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}
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bool DeleteFile(DataArray* data, const FileInfo& fi)
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{
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Log_InfoPrintf("Deleting '%s' from memory card (%u blocks)", fi.filename.c_str(), fi.num_blocks);
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u32 block_number = fi.first_block;
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for (u32 i = 0; i < fi.num_blocks && (block_number > 0 && block_number < NUM_BLOCKS); i++)
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{
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DirectoryFrame* df = GetFramePtr<DirectoryFrame>(data, 0, block_number);
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block_number = ZeroExtend32(df->next_block_number) + 1;
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std::memset(df, 0, sizeof(DirectoryFrame));
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if (i == 0)
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df->block_allocation_state = 0xA1;
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else if (i == (fi.num_blocks - 1))
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df->block_allocation_state = 0xA3;
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else
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df->block_allocation_state = 0xA2;
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df->next_block_number = 0xFFFF;
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UpdateChecksum(df);
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}
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return true;
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}
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static bool ImportCardMCD(DataArray* data, const char* filename)
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{
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std::optional<std::vector<u8>> file_data = FileSystem::ReadBinaryFile(filename);
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if (!file_data.has_value())
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return false;
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if (file_data->size() != DATA_SIZE)
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{
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Log_ErrorPrintf("Failed to import memory card from '%s': file is incorrect size.", filename);
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return false;
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}
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std::memcpy(data->data(), file_data->data(), DATA_SIZE);
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return true;
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}
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static bool ImportCardGME(DataArray* data, const char* filename)
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{
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#pragma pack(push, 1)
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struct GMEHeader
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{
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char id[12];
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u8 unk1[4];
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u8 unk2[5];
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u8 sector0[16];
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u8 sector1[16];
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u8 unk3[11];
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char descriptions[256][15];
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};
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static_assert(sizeof(GMEHeader) == 0xF40);
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#pragma pack(pop)
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std::optional<std::vector<u8>> file_data = FileSystem::ReadBinaryFile(filename);
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if (!file_data.has_value())
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return false;
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if (file_data->size() < (sizeof(GMEHeader) + BLOCK_SIZE))
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{
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Log_ErrorPrintf("Failed to import GME memory card from '%s': file is incorrect size.", filename);
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return false;
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}
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// if it's too small, pad it
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const u32 expected_size = sizeof(GMEHeader) + DATA_SIZE;
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if (file_data->size() < expected_size)
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{
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Log_WarningPrintf("GME memory card '%s' is too small (got %zu expected %u), padding with zeroes", filename,
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file_data->size(), expected_size);
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file_data->resize(expected_size);
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}
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// we don't actually care about the header, just skip over it
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std::memcpy(data->data(), file_data->data() + sizeof(GMEHeader), DATA_SIZE);
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return true;
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}
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bool ImportCard(DataArray* data, const char* filename)
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{
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const char* extension = std::strrchr(filename, '.');
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if (!extension)
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{
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Log_ErrorPrintf("Failed to import memory card from '%s': missing extension?", filename);
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return false;
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}
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if (StringUtil::Strcasecmp(extension, ".mcd") == 0 || StringUtil::Strcasecmp(extension, ".mcr") == 0 ||
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StringUtil::Strcasecmp(extension, ".mc") == 0 || StringUtil::Strcasecmp(extension, ".srm") == 0)
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{
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return ImportCardMCD(data, filename);
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}
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else if (StringUtil::Strcasecmp(extension, ".gme") == 0)
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{
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return ImportCardGME(data, filename);
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}
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else
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{
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Log_ErrorPrintf("Failed to import memory card from '%s': unknown extension?", filename);
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return false;
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}
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}
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bool ExportSave(DataArray* data, const FileInfo& fi, const char* filename)
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{
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std::unique_ptr<ByteStream> stream =
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FileSystem::OpenFile(filename, BYTESTREAM_OPEN_CREATE | BYTESTREAM_OPEN_TRUNCATE | BYTESTREAM_OPEN_WRITE |
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BYTESTREAM_OPEN_ATOMIC_UPDATE | BYTESTREAM_OPEN_STREAMED);
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if (!stream)
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{
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Log_ErrorPrintf("Failed to open '%s' for writing.", filename);
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return false;
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}
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DirectoryFrame* df_ptr = GetFramePtr<DirectoryFrame>(data, 0, fi.first_block);
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std::vector<u8> header = std::vector<u8>(static_cast<size_t>(FRAME_SIZE));
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std::memcpy(header.data(), df_ptr, sizeof(*df_ptr));
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std::vector<u8> blocks;
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if (!ReadFile(*data, fi, &blocks))
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{
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Log_ErrorPrintf("Failed to read save blocks from memory card data");
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return false;
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}
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if (!stream->Write(header.data(), static_cast<u32>(header.size())) ||
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!stream->Write(blocks.data(), static_cast<u32>(blocks.size())) || !stream->Commit())
|
|
{
|
|
Log_ErrorPrintf("Failed to write exported save to '%s'", filename);
|
|
stream->Discard();
|
|
return false;
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
bool ImportSave(DataArray* data, const char* filename)
|
|
{
|
|
FILESYSTEM_STAT_DATA sd;
|
|
if (!FileSystem::StatFile(filename, &sd))
|
|
{
|
|
Log_ErrorPrintf("Failed to stat file '%s'", filename);
|
|
return false;
|
|
}
|
|
|
|
// Make sure the size of the actual file is valid
|
|
if (sd.Size <= FRAME_SIZE || (sd.Size - FRAME_SIZE) % BLOCK_SIZE != 0u || (sd.Size - FRAME_SIZE) / BLOCK_SIZE > 15u)
|
|
{
|
|
Log_ErrorPrintf("Invalid size for save file '%s'", filename);
|
|
return false;
|
|
}
|
|
|
|
std::unique_ptr<ByteStream> stream = FileSystem::OpenFile(filename, BYTESTREAM_OPEN_READ | BYTESTREAM_OPEN_STREAMED);
|
|
if (!stream)
|
|
{
|
|
Log_ErrorPrintf("Failed to open '%s' for reading", filename);
|
|
return false;
|
|
}
|
|
|
|
DirectoryFrame df;
|
|
if (stream->Read(&df, FRAME_SIZE) != FRAME_SIZE)
|
|
{
|
|
Log_ErrorPrintf("Failed to read directory frame from '%s'", filename);
|
|
return false;
|
|
}
|
|
|
|
// Make sure the size reported by the directory frame is valid
|
|
if (df.file_size < BLOCK_SIZE || df.file_size % BLOCK_SIZE != 0 || df.file_size / BLOCK_SIZE > 15u)
|
|
{
|
|
Log_ErrorPrintf("Invalid size (%u bytes) reported by directory frame", df.file_size);
|
|
return false;
|
|
}
|
|
|
|
// Make sure there isn't already a save with the same name
|
|
std::vector<FileInfo> fileinfos = EnumerateFiles(*data);
|
|
for (const FileInfo& fi : fileinfos)
|
|
{
|
|
if (fi.filename.compare(0, sizeof(df.filename), df.filename) == 0)
|
|
{
|
|
Log_ErrorPrintf("Save file with the same name already exists in memory card");
|
|
return false;
|
|
}
|
|
}
|
|
|
|
std::vector<u8> blocks = std::vector<u8>(static_cast<size_t>(df.file_size));
|
|
if (stream->Read(blocks.data(), df.file_size) != df.file_size)
|
|
{
|
|
Log_ErrorPrintf("Failed to read block bytes from '%s'", filename);
|
|
return false;
|
|
}
|
|
|
|
return WriteFile(data, df.filename, blocks);
|
|
}
|
|
|
|
} // namespace MemoryCardImage
|