mirror of
https://github.com/wiiu-env/libmocha.git
synced 2024-11-16 00:35:04 +01:00
193 lines
6.1 KiB
C++
193 lines
6.1 KiB
C++
#include "mocha/fsa.h"
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#include "logger.h"
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#include "utils.h"
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#include <coreinit/debug.h>
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#include <coreinit/filesystem.h>
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#include <coreinit/filesystem_fsa.h>
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#include <cstring>
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#include <malloc.h>
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FSError FSAEx_RawOpen(FSClient *client, char *device_path, int32_t *outHandle) {
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if (!client) {
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return FS_ERROR_INVALID_CLIENTHANDLE;
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}
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return FSAEx_RawOpenEx(FSGetClientBody(client)->clientHandle, device_path, outHandle);
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}
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FSError FSAEx_RawOpenEx(int clientHandle, char *device_path, int32_t *outHandle) {
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if (!outHandle) {
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return FS_ERROR_INVALID_BUFFER;
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}
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if (!device_path) {
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return FS_ERROR_INVALID_PATH;
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}
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auto *shim = (FSAShimBuffer *) memalign(0x40, sizeof(FSAShimBuffer));
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if (!shim) {
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return FS_ERROR_INVALID_BUFFER;
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}
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shim->clientHandle = clientHandle;
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shim->command = FSA_COMMAND_RAW_OPEN;
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shim->ipcReqType = FSA_IPC_REQUEST_IOCTL;
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shim->response.word0 = 0xFFFFFFFF;
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FSARequestRawOpen *requestBuffer = &shim->request.rawOpen;
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strncpy(requestBuffer->path, device_path, 0x27F);
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auto res = __FSAShimSend(shim, 0);
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if (res >= 0) {
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*outHandle = shim->response.rawOpen.handle;
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}
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free(shim);
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return res;
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}
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FSError FSAEx_RawClose(FSClient *client, int32_t device_handle) {
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if (!client) {
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return FS_ERROR_INVALID_CLIENTHANDLE;
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}
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return FSAEx_RawCloseEx(FSGetClientBody(client)->clientHandle, device_handle);
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}
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FSError FSAEx_RawCloseEx(int clientHandle, int32_t device_handle) {
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auto *buffer = (FSAShimBuffer *) memalign(0x40, sizeof(FSAShimBuffer));
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if (!buffer) {
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return FS_ERROR_INVALID_BUFFER;
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}
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buffer->clientHandle = clientHandle;
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buffer->command = FSA_COMMAND_RAW_CLOSE;
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buffer->ipcReqType = FSA_IPC_REQUEST_IOCTL;
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buffer->response.word0 = 0xFFFFFFFF;
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Waddress-of-packed-member"
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auto *requestBuffer = &buffer->request.rawClose;
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#pragma GCC diagnostic pop
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requestBuffer->handle = device_handle;
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auto res = __FSAShimSend(buffer, 0);
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free(buffer);
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return res;
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}
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FSError FSAEx_RawRead(FSClient *client, void *data, uint32_t size_bytes, uint32_t cnt, uint64_t blocks_offset, int device_handle) {
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if (!client) {
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return FS_ERROR_INVALID_CLIENTHANDLE;
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}
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return FSAEx_RawReadEx(FSGetClientBody(client)->clientHandle, data, size_bytes, cnt, blocks_offset, device_handle);
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}
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FSError FSAEx_RawReadEx(int clientHandle, void *data, uint32_t size_bytes, uint32_t cnt, uint64_t blocks_offset, int device_handle) {
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if (data == nullptr) {
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return FS_ERROR_INVALID_BUFFER;
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}
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auto *shim = (FSAShimBuffer *) memalign(0x40, sizeof(FSAShimBuffer));
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if (!shim) {
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return FS_ERROR_INVALID_BUFFER;
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}
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shim->clientHandle = clientHandle;
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shim->ipcReqType = FSA_IPC_REQUEST_IOCTLV;
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shim->command = FSA_COMMAND_RAW_READ;
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shim->ioctlvVecIn = uint8_t{1};
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shim->ioctlvVecOut = uint8_t{2};
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shim->ioctlvVec[0].vaddr = &shim->request;
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shim->ioctlvVec[0].len = sizeof(FSARequest);
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auto *tmp = data;
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if ((uint32_t) data & 0x3F) {
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auto *alignedBuffer = memalign(0x40, ROUNDUP(size_bytes * cnt, 0x40));
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if (!alignedBuffer) {
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DEBUG_FUNCTION_LINE_ERR("FSAEx_RawReadEx buffer not aligned (%08X).\n", data);
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return FS_ERROR_INVALID_ALIGNMENT;
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}
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DEBUG_FUNCTION_LINE_WARN("FSAEx_RawReadEx buffer not aligned (%08X). Align to 0x40 for best performance\n", data);
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tmp = alignedBuffer;
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}
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shim->ioctlvVec[1].vaddr = (void *) tmp;
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shim->ioctlvVec[1].len = size_bytes * cnt;
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shim->ioctlvVec[2].vaddr = &shim->response;
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shim->ioctlvVec[2].len = sizeof(FSAResponse);
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auto &request = shim->request.rawRead;
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request.blocks_offset = blocks_offset;
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request.count = cnt;
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request.size = size_bytes;
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request.device_handle = device_handle;
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auto res = __FSAShimSend(shim, 0);
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if (res >= 0 && tmp != data) {
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memcpy(data, tmp, size_bytes * cnt);
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}
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if (tmp != data) {
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free(tmp);
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}
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free(shim);
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return res;
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}
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FSError FSAEx_RawWrite(FSClient *client, const void *data, uint32_t size_bytes, uint32_t cnt, uint64_t blocks_offset, int device_handle) {
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if (!client) {
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return FS_ERROR_INVALID_CLIENTHANDLE;
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}
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return FSAEx_RawWriteEx(FSGetClientBody(client)->clientHandle, data, size_bytes, cnt, blocks_offset, device_handle);
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}
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FSError FSAEx_RawWriteEx(int clientHandle, const void *data, uint32_t size_bytes, uint32_t cnt, uint64_t blocks_offset, int device_handle) {
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auto *shim = (FSAShimBuffer *) memalign(0x40, sizeof(FSAShimBuffer));
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if (!shim) {
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return FS_ERROR_INVALID_BUFFER;
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}
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shim->clientHandle = clientHandle;
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shim->ipcReqType = FSA_IPC_REQUEST_IOCTLV;
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shim->command = FSA_COMMAND_RAW_WRITE;
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shim->ioctlvVecIn = uint8_t{2};
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shim->ioctlvVecOut = uint8_t{1};
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shim->ioctlvVec[0].vaddr = &shim->request;
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shim->ioctlvVec[0].len = sizeof(FSARequest);
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void *tmp = (void *) data;
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if ((uint32_t) data & 0x3F) {
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auto *alignedBuffer = memalign(0x40, ROUNDUP(size_bytes * cnt, 0x40));
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if (!alignedBuffer) {
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OSReport("## ERROR: FSAEx_RawWriteEx buffer not aligned (%08X).\n", data);
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return FS_ERROR_INVALID_ALIGNMENT;
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}
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OSReport("## WARNING: FSAEx_RawWriteEx buffer not aligned (%08X). Align to 0x40 for best performance\n", data);
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tmp = alignedBuffer;
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memcpy(tmp, data, size_bytes * cnt);
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}
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shim->ioctlvVec[1].vaddr = tmp;
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shim->ioctlvVec[1].len = size_bytes * cnt;
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shim->ioctlvVec[2].vaddr = &shim->response;
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shim->ioctlvVec[2].len = sizeof(FSAResponse);
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auto &request = shim->request.rawRead;
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request.blocks_offset = blocks_offset;
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request.count = cnt;
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request.size = size_bytes;
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request.device_handle = device_handle;
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auto res = __FSAShimSend(shim, 0);
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if (tmp != data) {
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free(tmp);
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}
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free(shim);
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return res;
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} |