Some groundwork for CARD2 save support

This commit is contained in:
Balint Kovacs 2021-02-03 21:48:32 +00:00 committed by d0k3
parent 1cb72a87e1
commit dfb2dff352
5 changed files with 67 additions and 79 deletions

View File

@ -101,12 +101,12 @@ const CardSPITypeData * const FLASH_1MB_CTR = flashTypes + 8;
#define REG_CFG9_CARDCTL *((vu16*)0x1000000C) #define REG_CFG9_CARDCTL *((vu16*)0x1000000C)
#define CARDCTL_SPICARD (1u<<8) #define CARDCTL_SPICARD (1u<<8)
int CardSPIWriteRead(CardSPIType type, const void* cmd, u32 cmdSize, void* answer, u32 answerSize, const void* data, u32 dataSize) { int CardSPIWriteRead(bool infrared, const void* cmd, u32 cmdSize, void* answer, u32 answerSize, const void* data, u32 dataSize) {
u32 headerFooterVal = 0; u32 headerFooterVal = 0;
REG_CFG9_CARDCTL |= CARDCTL_SPICARD; REG_CFG9_CARDCTL |= CARDCTL_SPICARD;
if (type.infrared) { if (infrared) {
SPI_XferInfo irXfer = { &headerFooterVal, 1, false }; SPI_XferInfo irXfer = { &headerFooterVal, 1, false };
SPI_DoXfer(SPI_DEV_CART_IR, &irXfer, 1, false); SPI_DoXfer(SPI_DEV_CART_IR, &irXfer, 1, false);
} }
@ -123,13 +123,13 @@ int CardSPIWriteRead(CardSPIType type, const void* cmd, u32 cmdSize, void* answe
return 0; return 0;
} }
int CardSPIWaitWriteEnd(CardSPIType type, u32 timeout) { int CardSPIWaitWriteEnd(bool infrared, u32 timeout) {
u8 cmd = SPI_CMD_RDSR, statusReg = 0; u8 cmd = SPI_CMD_RDSR, statusReg = 0;
int res = 0; int res = 0;
u64 time_start = timer_start(); u64 time_start = timer_start();
do { do {
res = CardSPIWriteRead(type, &cmd, 1, &statusReg, 1, 0, 0); res = CardSPIWriteRead(infrared, &cmd, 1, &statusReg, 1, 0, 0);
if (res) return res; if (res) return res;
if (timer_msec(time_start) > timeout) return 1; if (timer_msec(time_start) > timeout) return 1;
} while(statusReg & SPI_FLG_WIP); } while(statusReg & SPI_FLG_WIP);
@ -139,18 +139,18 @@ int CardSPIWaitWriteEnd(CardSPIType type, u32 timeout) {
int CardSPIEnableWriting_512B(CardSPIType type) { int CardSPIEnableWriting_512B(CardSPIType type) {
u8 cmd = SPI_CMD_WREN; u8 cmd = SPI_CMD_WREN;
return CardSPIWriteRead(type, &cmd, 1, NULL, 0, 0, 0); return CardSPIWriteRead(type.infrared, &cmd, 1, NULL, 0, 0, 0);
} }
int CardSPIEnableWriting_regular(CardSPIType type) { int CardSPIEnableWriting_regular(CardSPIType type) {
u8 cmd = SPI_CMD_WREN, statusReg = 0; u8 cmd = SPI_CMD_WREN, statusReg = 0;
int res = CardSPIWriteRead(type, &cmd, 1, NULL, 0, 0, 0); int res = CardSPIWriteRead(type.infrared, &cmd, 1, NULL, 0, 0, 0);
if (res) return res; if (res) return res;
cmd = SPI_CMD_RDSR; cmd = SPI_CMD_RDSR;
do { do {
res = CardSPIWriteRead(type, &cmd, 1, &statusReg, 1, 0, 0); res = CardSPIWriteRead(type.infrared, &cmd, 1, &statusReg, 1, 0, 0);
if (res) return res; if (res) return res;
} while(statusReg & ~SPI_FLG_WEL); } while(statusReg & ~SPI_FLG_WEL);
@ -165,24 +165,24 @@ int CardSPIEnableWriting(CardSPIType type) {
int _SPIWriteTransaction(CardSPIType type, void* cmd, u32 cmdSize, const void* data, u32 dataSize) { int _SPIWriteTransaction(CardSPIType type, void* cmd, u32 cmdSize, const void* data, u32 dataSize) {
int res; int res;
if ((res = CardSPIEnableWriting(type))) return res; if ((res = CardSPIEnableWriting(type))) return res;
if ((res = CardSPIWriteRead(type, cmd, cmdSize, NULL, 0, (void*) ((u8*) data), dataSize))) return res; if ((res = CardSPIWriteRead(type.infrared, cmd, cmdSize, NULL, 0, (void*) ((u8*) data), dataSize))) return res;
return CardSPIWaitWriteEnd(type, 1000); return CardSPIWaitWriteEnd(type.infrared, 1000);
} }
int CardSPIReadJEDECIDAndStatusReg(CardSPIType type, u32* id, u8* statusReg) { int CardSPIReadJEDECIDAndStatusReg(bool infrared, u32* id, u8* statusReg) {
u8 cmd = SPI_FLASH_CMD_RDID; u8 cmd = SPI_FLASH_CMD_RDID;
u8 reg = 0; u8 reg = 0;
u8 idbuf[3] = { 0 }; u8 idbuf[3] = { 0 };
u32 id_ = 0; u32 id_ = 0;
int res = CardSPIWaitWriteEnd(type, 0); int res = CardSPIWaitWriteEnd(infrared, 0);
if (res) return res; if (res) return res;
if ((res = CardSPIWriteRead(type, &cmd, 1, idbuf, 3, 0, 0))) return res; if ((res = CardSPIWriteRead(infrared, &cmd, 1, idbuf, 3, 0, 0))) return res;
id_ = (idbuf[0] << 16) | (idbuf[1] << 8) | idbuf[2]; id_ = (idbuf[0] << 16) | (idbuf[1] << 8) | idbuf[2];
cmd = SPI_CMD_RDSR; cmd = SPI_CMD_RDSR;
if ((res = CardSPIWriteRead(type, &cmd, 1, &reg, 1, 0, 0))) return res; if ((res = CardSPIWriteRead(infrared, &cmd, 1, &reg, 1, 0, 0))) return res;
if (id) *id = id_; if (id) *id = id_;
if (statusReg) *statusReg = reg; if (statusReg) *statusReg = reg;
@ -256,7 +256,7 @@ int CardSPIWriteSaveData_24bit_erase_program(CardSPIType type, u32 offset, const
if (!(res = _SPIWriteTransaction(type, cmd, 4, (void*) ((u8*) data - offset + pos), pageSize))) { if (!(res = _SPIWriteTransaction(type, cmd, 4, (void*) ((u8*) data - offset + pos), pageSize))) {
break; break;
} }
CardSPIWriteRead(type, "\x04", 1, NULL, 0, NULL, 0); CardSPIWriteRead(type.infrared, "\x04", 1, NULL, 0, NULL, 0);
} }
if(res) { if(res) {
free(newData); free(newData);
@ -278,7 +278,7 @@ int CardSPIWriteSaveData(CardSPIType type, u32 offset, const void* data, u32 siz
u32 writeSize = type.chip->writeSize; u32 writeSize = type.chip->writeSize;
if (writeSize == 0) return 0xC8E13404; if (writeSize == 0) return 0xC8E13404;
int res = CardSPIWaitWriteEnd(type, 1000); int res = CardSPIWaitWriteEnd(type.infrared, 1000);
if (res) return res; if (res) return res;
while(pos < end) { while(pos < end) {
@ -307,7 +307,7 @@ int CardSPIReadSaveData_9bit(CardSPIType type, u32 pos, void* data, u32 size) {
cmd[0] = SPI_512B_EEPROM_CMD_RDLO; cmd[0] = SPI_512B_EEPROM_CMD_RDLO;
cmd[1] = (u8) pos; cmd[1] = (u8) pos;
int res = CardSPIWriteRead(type, cmd, cmdSize, data, len, NULL, 0); int res = CardSPIWriteRead(type.infrared, cmd, cmdSize, data, len, NULL, 0);
if (res) return res; if (res) return res;
read += len; read += len;
@ -319,7 +319,7 @@ int CardSPIReadSaveData_9bit(CardSPIType type, u32 pos, void* data, u32 size) {
cmd[0] = SPI_512B_EEPROM_CMD_RDHI; cmd[0] = SPI_512B_EEPROM_CMD_RDHI;
cmd[1] = (u8)(pos + read); cmd[1] = (u8)(pos + read);
int res = CardSPIWriteRead(type, cmd, cmdSize, (void*)((u8*)data + read), len, NULL, 0); int res = CardSPIWriteRead(type.infrared, cmd, cmdSize, (void*)((u8*)data + read), len, NULL, 0);
if (res) return res; if (res) return res;
} }
@ -330,13 +330,13 @@ int CardSPIReadSaveData_9bit(CardSPIType type, u32 pos, void* data, u32 size) {
int CardSPIReadSaveData_16bit(CardSPIType type, u32 offset, void* data, u32 size) { int CardSPIReadSaveData_16bit(CardSPIType type, u32 offset, void* data, u32 size) {
u8 cmd[3] = { SPI_CMD_READ, (u8)(offset >> 8), (u8) offset }; u8 cmd[3] = { SPI_CMD_READ, (u8)(offset >> 8), (u8) offset };
return CardSPIWriteRead(type, cmd, 3, data, size, NULL, 0); return CardSPIWriteRead(type.infrared, cmd, 3, data, size, NULL, 0);
} }
int CardSPIReadSaveData_24bit(CardSPIType type, u32 offset, void* data, u32 size) { int CardSPIReadSaveData_24bit(CardSPIType type, u32 offset, void* data, u32 size) {
u8 cmd[4] = { SPI_CMD_READ, (u8)(offset >> 16), (u8)(offset >> 8), (u8) offset }; u8 cmd[4] = { SPI_CMD_READ, (u8)(offset >> 16), (u8)(offset >> 8), (u8) offset };
return CardSPIWriteRead(type, cmd, 4, data, size, NULL, 0); return CardSPIWriteRead(type.infrared, cmd, 4, data, size, NULL, 0);
} }
int CardSPIReadSaveData(CardSPIType type, u32 offset, void* data, u32 size) { int CardSPIReadSaveData(CardSPIType type, u32 offset, void* data, u32 size) {
@ -344,7 +344,7 @@ int CardSPIReadSaveData(CardSPIType type, u32 offset, void* data, u32 size) {
if (size == 0) return 0; if (size == 0) return 0;
int res = CardSPIWaitWriteEnd(type, 1000); int res = CardSPIWaitWriteEnd(type.infrared, 1000);
if (res) return res; if (res) return res;
size = (size <= CardSPIGetCapacity(type) - offset) ? size : CardSPIGetCapacity(type) - offset; size = (size <= CardSPIGetCapacity(type) - offset) ? size : CardSPIGetCapacity(type) - offset;
@ -367,7 +367,7 @@ int CardSPIEraseSector_emulated(CardSPIType type, u32 offset) {
int CardSPIEraseSector_real(CardSPIType type, u32 offset) { int CardSPIEraseSector_real(CardSPIType type, u32 offset) {
u8 cmd[4] = { type.chip->eraseCommand, (u8)(offset >> 16), (u8)(offset >> 8), (u8) offset }; u8 cmd[4] = { type.chip->eraseCommand, (u8)(offset >> 16), (u8)(offset >> 8), (u8) offset };
int res = CardSPIWaitWriteEnd(type, 10000); int res = CardSPIWaitWriteEnd(type.infrared, 10000);
if (res) return res; if (res) return res;
return _SPIWriteTransaction(type, cmd, 4, NULL, 0); return _SPIWriteTransaction(type, cmd, 4, NULL, 0);
@ -438,7 +438,7 @@ int _SPIIsDataMirrored(CardSPIType type, int size, bool* mirrored) {
return 0; return 0;
} }
int CardSPIGetCardSPIType(CardSPIType* type, bool infrared) { CardSPIType CardSPIGetCardSPIType(bool infrared) {
u8 sr = 0; u8 sr = 0;
u32 jedec = 0; u32 jedec = 0;
CardSPIType t = {NO_CHIP, infrared}; CardSPIType t = {NO_CHIP, infrared};
@ -446,20 +446,18 @@ int CardSPIGetCardSPIType(CardSPIType* type, bool infrared) {
if(infrared) { if(infrared) {
// Infrared carts currently not supported, need additional handling! // Infrared carts currently not supported, need additional handling!
*type = (CardSPIType) {NO_CHIP, true}; return (CardSPIType) {NO_CHIP, true};
return 0;
} }
res = CardSPIReadJEDECIDAndStatusReg(t, &jedec, &sr); res = CardSPIReadJEDECIDAndStatusReg(infrared, &jedec, &sr);
if (res) return res; if (res) return (CardSPIType) {NO_CHIP, false};
if ((sr & 0xfd) == 0x00 && (jedec != 0x00ffffff)) { t.chip = &FLASH_DUMMY; } if ((sr & 0xfd) == 0x00 && (jedec != 0x00ffffff)) { t.chip = &FLASH_DUMMY; }
if ((sr & 0xfd) == 0xF0 && (jedec == 0x00ffffff)) { *type = (CardSPIType) { EEPROM_512B, false }; return 0; } if ((sr & 0xfd) == 0xF0 && (jedec == 0x00ffffff)) { return (CardSPIType) { EEPROM_512B, false }; }
if ((sr & 0xfd) == 0x00 && (jedec == 0x00ffffff)) { t = (CardSPIType) { &EEPROM_DUMMY, false }; } if ((sr & 0xfd) == 0x00 && (jedec == 0x00ffffff)) { t = (CardSPIType) { &EEPROM_DUMMY, false }; }
if(t.chip == NO_CHIP) { if(t.chip == NO_CHIP) {
*type = (CardSPIType) {NO_CHIP, false}; return (CardSPIType) {NO_CHIP, false};
return 0;
} }
if (t.chip == &EEPROM_DUMMY) { if (t.chip == &EEPROM_DUMMY) {
@ -467,24 +465,20 @@ int CardSPIGetCardSPIType(CardSPIType* type, bool infrared) {
size_t i; size_t i;
for(i = 0; i < sizeof(EEPROMTypes) / sizeof(CardSPITypeData) - 1; i++) { for(i = 0; i < sizeof(EEPROMTypes) / sizeof(CardSPITypeData) - 1; i++) {
if ((res = _SPIIsDataMirrored(t, CardSPIGetCapacity((CardSPIType) {EEPROMTypes + i, false}), &mirrored))) return res; if ((res = _SPIIsDataMirrored(t, CardSPIGetCapacity((CardSPIType) {EEPROMTypes + i, false}), &mirrored))) return (CardSPIType) {NO_CHIP, false};
if (mirrored) { if (mirrored) {
*type = (CardSPIType) {EEPROMTypes + i, false}; return (CardSPIType) {EEPROMTypes + i, false};
return 0;
} }
} }
*type = (CardSPIType) { EEPROMTypes + i, false }; return (CardSPIType) { EEPROMTypes + i, false };
return 0;
} }
for(size_t i = 0; i < sizeof(flashTypes) / sizeof(CardSPITypeData); i++) { for(size_t i = 0; i < sizeof(flashTypes) / sizeof(CardSPITypeData); i++) {
if (flashTypes[i].jedecId == jedec) { if (flashTypes[i].jedecId == jedec) {
*type = (CardSPIType) { flashTypes + i, infrared }; return (CardSPIType) { flashTypes + i, infrared };
return 0;
} }
} }
*type = (CardSPIType) { NO_CHIP, infrared }; return (CardSPIType) { NO_CHIP, infrared };
return 0;
} }

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@ -66,11 +66,11 @@ extern const CardSPITypeData * const FLASH_128KB_CTR; // Most common, including
extern const CardSPITypeData * const FLASH_512KB_CTR; // Also common, including Detective Pikachu extern const CardSPITypeData * const FLASH_512KB_CTR; // Also common, including Detective Pikachu
extern const CardSPITypeData * const FLASH_1MB_CTR; // For example Pokemon Ultra Sun extern const CardSPITypeData * const FLASH_1MB_CTR; // For example Pokemon Ultra Sun
int CardSPIWriteRead(CardSPIType type, const void* cmd, u32 cmdSize, void* answer, u32 answerSize, const void* data, u32 dataSize); int CardSPIWriteRead(bool infrared, const void* cmd, u32 cmdSize, void* answer, u32 answerSize, const void* data, u32 dataSize);
int CardSPIWaitWriteEnd(CardSPIType type, u32 timeout); int CardSPIWaitWriteEnd(bool infrared, u32 timeout);
int CardSPIEnableWriting(CardSPIType type); int CardSPIEnableWriting(CardSPIType type);
int CardSPIReadJEDECIDAndStatusReg(CardSPIType type, u32* id, u8* statusReg); int CardSPIReadJEDECIDAndStatusReg(bool infrared, u32* id, u8* statusReg);
int CardSPIGetCardSPIType(CardSPIType* type, bool infrared); CardSPIType CardSPIGetCardSPIType(bool infrared);
u32 CardSPIGetPageSize(CardSPIType type); u32 CardSPIGetPageSize(CardSPIType type);
u32 CardSPIGetCapacity(CardSPIType type); u32 CardSPIGetCapacity(CardSPIType type);
u32 CardSPIGetEraseSize(CardSPIType type); u32 CardSPIGetEraseSize(CardSPIType type);

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@ -152,10 +152,18 @@ u32 InitCartRead(CartData* cdata) {
// save data // save data
u32 card2_offset = getle32(cdata->header + 0x200); u32 card2_offset = getle32(cdata->header + 0x200);
if ((card2_offset != 0xFFFFFFFF) || (CardSPIGetCardSPIType(&(cdata->save_type), 0) != 0)) { if (card2_offset != 0xFFFFFFFF) {
cdata->save_type = (CardSPIType) { NO_CHIP, false }; cdata->save_type = CARD_SAVE_CARD2;
cdata->save_size = cdata->cart_size - card2_offset * NCSD_MEDIA_UNIT;
} else {
cdata->spi_save_type = CardSPIGetCardSPIType(false);
if (cdata->spi_save_type.chip == NO_CHIP) {
cdata->save_type = CARD_SAVE_NONE;
} else {
cdata->save_type = CARD_SAVE_SPI;
cdata->save_size = CardSPIGetCapacity(cdata->spi_save_type);
}
} }
cdata->save_size = CardSPIGetCapacity(cdata->save_type);
} else { // NTR/TWL cartridges } else { // NTR/TWL cartridges
// NTR header // NTR header
TwlHeader* nds_header = (void*)cdata->header; TwlHeader* nds_header = (void*)cdata->header;
@ -198,10 +206,13 @@ u32 InitCartRead(CartData* cdata) {
// save data // save data
bool infrared = *(nds_header->game_code) == 'I'; bool infrared = *(nds_header->game_code) == 'I';
if (CardSPIGetCardSPIType(&(cdata->save_type), infrared) != 0) { cdata->spi_save_type = CardSPIGetCardSPIType(infrared);
cdata->save_type = (CardSPIType) { NO_CHIP, false }; if (cdata->spi_save_type.chip == NO_CHIP) {
cdata->save_type = CARD_SAVE_NONE;
} else {
cdata->save_type = CARD_SAVE_SPI;
cdata->save_size = CardSPIGetCapacity(cdata->spi_save_type);
} }
cdata->save_size = CardSPIGetCapacity(cdata->save_type);
} }
return 0; return 0;
} }
@ -336,27 +347,11 @@ u32 ReadCartInfo(u8* buffer, u64 offset, u64 count, CartData* cdata) {
u32 ReadCartSave(u8* buffer, u64 offset, u64 count, CartData* cdata) { u32 ReadCartSave(u8* buffer, u64 offset, u64 count, CartData* cdata) {
if (offset >= cdata->save_size) return 1; if (offset >= cdata->save_size) return 1;
if (offset + count > cdata->save_size) count = cdata->save_size - offset; if (offset + count > cdata->save_size) count = cdata->save_size - offset;
return (CardSPIReadSaveData(cdata->save_type, offset, buffer, count) == 0) ? 0 : 1; return (CardSPIReadSaveData(cdata->spi_save_type, offset, buffer, count) == 0) ? 0 : 1;
} }
u32 WriteCartSave(const u8* buffer, u64 offset, u64 count, CartData* cdata) { u32 WriteCartSave(const u8* buffer, u64 offset, u64 count, CartData* cdata) {
if (offset >= cdata->save_size) return 1; if (offset >= cdata->save_size) return 1;
if (offset + count > cdata->save_size) count = cdata->save_size - offset; if (offset + count > cdata->save_size) count = cdata->save_size - offset;
return (CardSPIWriteSaveData(cdata->save_type, offset, buffer, count) == 0) ? 0 : 1; return (CardSPIWriteSaveData(cdata->spi_save_type, offset, buffer, count) == 0) ? 0 : 1;
}
u32 ReadCartSaveJedecId(u8* buffer, u64 offset, u64 count, CartData* cdata) {
u8 ownBuf[JEDECID_AND_SREG_SIZE] = { 0 };
u32 id;
u8 sReg;
if (offset >= JEDECID_AND_SREG_SIZE) return 1;
if (offset + count > JEDECID_AND_SREG_SIZE) count = JEDECID_AND_SREG_SIZE - offset;
int res = CardSPIReadJEDECIDAndStatusReg(cdata->save_type, &id, &sReg);
if (res) return res;
ownBuf[0] = (id >> 16) & 0xff;
ownBuf[1] = (id >> 8) & 0xff;
ownBuf[2] = id & 0xff;
ownBuf[JEDECID_AND_SREG_SIZE - 1] = sReg;
memcpy(buffer, ownBuf + offset, count);
return 0;
} }

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@ -12,6 +12,13 @@
#define PRIV_HDR_SIZE 0x50 #define PRIV_HDR_SIZE 0x50
#define JEDECID_AND_SREG_SIZE 0x4 #define JEDECID_AND_SREG_SIZE 0x4
typedef enum CardSaveType {
CARD_SAVE_NONE,
CARD_SAVE_SPI,
CARD_SAVE_CARD2,
CARD_SAVE_RETAIL_NAND,
} CardSaveType;
typedef struct { typedef struct {
u8 header[0x8000]; // NTR header + secure area / CTR header + private header u8 header[0x8000]; // NTR header + secure area / CTR header + private header
u8 storage[0x8000]; // encrypted secure area + modcrypt area / unused u8 storage[0x8000]; // encrypted secure area + modcrypt area / unused
@ -20,7 +27,8 @@ typedef struct {
u64 cart_size; u64 cart_size;
u64 data_size; u64 data_size;
u32 save_size; u32 save_size;
CardSPIType save_type; CardSaveType save_type;
CardSPIType spi_save_type; // Specific data for SPI save
u32 arm9i_rom_offset; // TWL specific u32 arm9i_rom_offset; // TWL specific
} PACKED_ALIGN(16) CartData; } PACKED_ALIGN(16) CartData;
@ -34,4 +42,3 @@ u32 ReadCartPrivateHeader(void* buffer, u64 offset, u64 count, CartData* cdata);
u32 ReadCartInfo(u8* buffer, u64 offset, u64 count, CartData* cdata); u32 ReadCartInfo(u8* buffer, u64 offset, u64 count, CartData* cdata);
u32 ReadCartSave(u8* buffer, u64 offset, u64 count, CartData* cdata); u32 ReadCartSave(u8* buffer, u64 offset, u64 count, CartData* cdata);
u32 WriteCartSave(const u8* buffer, u64 offset, u64 count, CartData* cdata); u32 WriteCartSave(const u8* buffer, u64 offset, u64 count, CartData* cdata);
u32 ReadCartSaveJedecId(u8* buffer, u64 offset, u64 count, CartData* cdata);

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@ -2,9 +2,8 @@
#include "gamecart.h" #include "gamecart.h"
#define FAT_LIMIT 0x100000000 #define FAT_LIMIT 0x100000000
#define VFLAG_SECURE_AREA_ENC (1UL<<27) #define VFLAG_SECURE_AREA_ENC (1UL<<28)
#define VFLAG_GAMECART_NFO (1UL<<28) #define VFLAG_GAMECART_NFO (1UL<<29)
#define VFLAG_JEDECID_AND_SRFG (1UL<<29)
#define VFLAG_SAVEGAME (1UL<<30) #define VFLAG_SAVEGAME (1UL<<30)
#define VFLAG_PRIV_HDR (1UL<<31) #define VFLAG_PRIV_HDR (1UL<<31)
@ -66,7 +65,7 @@ bool ReadVCartDir(VirtualFile* vfile, VirtualDir* vdir) {
vfile->size = PRIV_HDR_SIZE; vfile->size = PRIV_HDR_SIZE;
vfile->flags |= VFLAG_PRIV_HDR; vfile->flags |= VFLAG_PRIV_HDR;
return true; return true;
} else if ((vdir->index == 7) && (cdata->save_size > 0)) { // savegame } else if ((vdir->index == 7) && (cdata->save_type != CARD_SAVE_NONE)) { // savegame
snprintf(vfile->name, 32, "%s.sav", name); snprintf(vfile->name, 32, "%s.sav", name);
vfile->size = cdata->save_size; vfile->size = cdata->save_size;
vfile->flags = VFLAG_SAVEGAME; vfile->flags = VFLAG_SAVEGAME;
@ -78,11 +77,6 @@ bool ReadVCartDir(VirtualFile* vfile, VirtualDir* vdir) {
vfile->size = strnlen(info, 255); vfile->size = strnlen(info, 255);
vfile->flags |= VFLAG_GAMECART_NFO; vfile->flags |= VFLAG_GAMECART_NFO;
return true; return true;
} else if ((vdir->index == 9) && cdata->save_type.chip) { // JEDEC id and status register
strcpy(vfile->name, "jedecid_and_sreg.bin");
vfile->size = JEDECID_AND_SREG_SIZE;
vfile->flags |= VFLAG_JEDECID_AND_SRFG;
return true;
} }
} }
@ -99,8 +93,6 @@ int ReadVCartFile(const VirtualFile* vfile, void* buffer, u64 offset, u64 count)
return ReadCartSave(buffer, foffset, count, cdata); return ReadCartSave(buffer, foffset, count, cdata);
else if (vfile->flags & VFLAG_GAMECART_NFO) else if (vfile->flags & VFLAG_GAMECART_NFO)
return ReadCartInfo(buffer, foffset, count, cdata); return ReadCartInfo(buffer, foffset, count, cdata);
else if (vfile->flags & VFLAG_JEDECID_AND_SRFG)
return ReadCartSaveJedecId(buffer, foffset, count, cdata);
SetSecureAreaEncryption(vfile->flags & VFLAG_SECURE_AREA_ENC); SetSecureAreaEncryption(vfile->flags & VFLAG_SECURE_AREA_ENC);
return ReadCartBytes(buffer, foffset, count, cdata); return ReadCartBytes(buffer, foffset, count, cdata);