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3 Commits

Author SHA1 Message Date
suchmememanyskill
adc54c9881 bump version to 3.0.3 2021-04-02 10:47:11 +02:00
suchmememanyskill
347513a037 dump/restore files decrypted
Most notable is that you can now restore atmosphere prodinfo backups
2021-03-17 16:35:22 +01:00
suchmememanyskill
d8f0c714b6 show sd error message on mount fail 2021-03-02 00:39:31 +01:00
10 changed files with 51 additions and 78 deletions

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@@ -11,7 +11,7 @@ include $(DEVKITARM)/base_rules
IPL_LOAD_ADDR := 0x40003000
LPVERSION_MAJOR := 3
LPVERSION_MINOR := 0
LPVERSION_BUGFX := 2
LPVERSION_BUGFX := 3
################################################################################

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@@ -123,24 +123,6 @@ Variable_t getVarFromToken(scriptCtx_t* ctx, lexarToken_t* tokens, int* index, u
return ErrValue(ERRINVALIDTYPE);
}
}
ELIFTX(MemberVariable){
Variable_t* var = dictVectorFind(&ctx->varDict, tokens[i].text);
i++;
if (var == NULL)
return ErrValue(ERRNOVAR);
if (tokens[i].token == MemberVariable){
return ErrValue(ERRINVALIDTYPE); // Recursive members currently not supported!
}
Variable_t *find = dictVectorFind(&var->vectorType, tokens[i].text);
if (find == NULL)
return ErrValue(ERRNOVAR); // No member with that variable was found
val = *find;
val.free = 0;
}
ELIFTX(Function) {
i += 2;

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@@ -422,22 +422,6 @@ scriptFunction(funcLaunchPayload){
return varInt(launch_payload(vars[0].stringType));
}
scriptFunction(funcNewDict){
Variable_t dict = {0};
dict.varType = DictionaryType;
dict.free = 1;
dict.vectorType = newVec(sizeof(dict_t), 4);
dict.vectorPtr = &dict.vectorType;
return dict;
}
// Args: Dict, Str, Var
scriptFunction(funcAddToDict){
Variable_t copy = copyVariable(vars[2]);
dictVectorAdd(vars[0].vectorPtr, newDict(CpyStr(vars[1].stringType), copy));
return NullVar;
}
u8 fiveInts[] = {IntType, IntType, IntType, IntType, IntType};
u8 singleIntArray[] = { IntArrayType };
u8 singleInt[] = { IntType };
@@ -448,7 +432,6 @@ u8 StrByteVec[] = { StringType, ByteArrayType};
u8 MenuArgs[] = { StringArrayType, IntType, StringArrayType, IntArrayType};
u8 twoStrings[] = { StringType, StringType };
u8 mmcReadWrite[] = { StringType, StringType, IntType};
u8 dictAdd[] = {DictionaryType, StringType, varArgs};
functionStruct_t scriptFunctions[] = {
{"if", funcIf, 1, singleInt},
@@ -493,8 +476,6 @@ functionStruct_t scriptFunctions[] = {
{"saveSign", funcSignSave, 1, singleStr},
{"timerMs", funcGetMs, 0, NULL},
{"launchPayload", funcLaunchPayload, 1, singleStr},
{"dict", funcNewDict, 0, NULL},
{"dictAdd", funcAddToDict, 3, dictAdd},
// Left from old: keyboard(?)
};

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@@ -161,10 +161,6 @@ Vector_t runLexer(const char* in, u32 len) {
vecAddElement(&vec, makeLexarToken(LSBracket, 0));
}
ELIFC('.'){
if (lx[vec.count - 1].token == Variable)
lx[vec.count - 1].token = MemberVariable;
}
ELIFC('=') { // Do we need to keep = if the vars are assignments anyway?
if (in[1] == '='){
vecAddElement(&vec, makeLexarToken(EqualEqual, 0));

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@@ -7,7 +7,6 @@ enum Tokens {
Invalid = 0,
Variable = 1,
ArrayVariable,
MemberVariable,
Function,
LBracket,
StrLit,
@@ -71,7 +70,6 @@ enum Variables {
IntArrayType,
StringArrayType,
ByteArrayType,
DictionaryType,
JumpType,
DictType,
NullType,
@@ -105,7 +103,6 @@ typedef struct {
char* stringType;
Vector_t vectorType;
};
Vector_t *vectorPtr;
} Variable_t;
typedef struct {

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@@ -2,7 +2,6 @@
#include "types.h"
#include <string.h>
#include <mem/heap.h>
#include "../utils/utils.h"
void freeVariable(Variable_t dv) {
if (!dv.free)
@@ -23,27 +22,9 @@ void freeVariable(Variable_t dv) {
case ByteArrayType:
vecFree(dv.vectorType);
break;
case DictionaryType:
freeDictVector(&dv.vectorType);
break;
}
}
Variable_t copyVariable(Variable_t copy){
switch (copy.varType){
case IntType:
return copy;
case StringType:
return newVar(StringType, 1, .stringType = CpyStr(copy.stringType));
case IntArrayType:
case StringArrayType:
return newVar(copy.varType, 1, .vectorType = vecCopy(&copy.vectorType));
}
return NullVar; // Other types are not supported or whatever
}
void freeVariableVector(Vector_t *v) {
Variable_t* vars = vecGetArrayPtr(v, Variable_t*);
for (int i = 0; i < v->count; i++) {
@@ -88,10 +69,6 @@ void dictVectorAdd(Vector_t* v, dict_t add) {
}
else {
vecAddElement(v, add);
dict_t *dict = vecGetArrayPtr(v, dict_t*);
for (int i = 0; i < v->count; i++){
dict[i].value.vectorPtr = &dict[i].value.vectorType;
}
}
}

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@@ -7,7 +7,6 @@ void freeDictVector(Vector_t* v);
void freeVariableVector(Vector_t* v);
void freeVariable(Variable_t dv);
scriptCtx_t createScriptCtx();
Variable_t copyVariable(Variable_t copy);
u8 setIndentInstruction(scriptCtx_t* ctx, u8 level, u8 skip, u8 func, int jumpLoc);
indentInstructor_t* getCurIndentInstruction(scriptCtx_t* ctx);

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@@ -12,10 +12,11 @@
#include <storage/nx_sd.h>
#include <string.h>
#include "../fs/fsutils.h"
#include "nx_emmc_bis.h"
// Uses default storage in nx_emmc.c
// Expects the correct mmc & partition to be set
ErrCode_t EmmcDumpToFile(const char *path, u32 lba_start, u32 lba_end, u8 force){
ErrCode_t EmmcDumpToFile(const char *path, u32 lba_start, u32 lba_end, u8 force, u8 crypt){
FIL fp;
u32 curLba = lba_start;
u32 totalSectors = lba_end - lba_start + 1;
@@ -41,7 +42,14 @@ ErrCode_t EmmcDumpToFile(const char *path, u32 lba_start, u32 lba_end, u8 force)
while (totalSectors > 0){
u32 num = MIN(totalSectors, TConf.FSBuffSize / NX_EMMC_BLOCKSIZE);
if (!emummc_storage_read(&emmc_storage, curLba, num, buff)){
int readRes = 0;
if (crypt)
readRes = !nx_emmc_bis_read(curLba, num, buff);
else
readRes = emummc_storage_read(&emmc_storage, curLba, num, buff);
if (!readRes){
err = newErrCode(TE_ERR_EMMC_READ_FAIL);
break;
}
@@ -64,7 +72,7 @@ ErrCode_t EmmcDumpToFile(const char *path, u32 lba_start, u32 lba_end, u8 force)
return err;
}
ErrCode_t EmmcRestoreFromFile(const char *path, u32 lba_start, u32 lba_end, u8 force){
ErrCode_t EmmcRestoreFromFile(const char *path, u32 lba_start, u32 lba_end, u8 force, u8 crypt){
FIL fp;
u32 curLba = lba_start;
u32 totalSectorsDest = lba_end - lba_start + 1;
@@ -99,7 +107,13 @@ ErrCode_t EmmcRestoreFromFile(const char *path, u32 lba_start, u32 lba_end, u8 f
break;
}
if (!emummc_storage_write(&emmc_storage, curLba, num, buff)){
int writeRes = 0;
if (crypt)
writeRes = !nx_emmc_bis_write(curLba, num, buff);
else
writeRes = emummc_storage_write(&emmc_storage, curLba, num, buff);
if (!writeRes){
err = newErrCode(TE_ERR_EMMC_WRITE_FAIL);
break;
}
@@ -117,10 +131,24 @@ ErrCode_t EmmcRestoreFromFile(const char *path, u32 lba_start, u32 lba_end, u8 f
return err;
}
int isSystemPartCrypt(emmc_part_t *part){
switch (part->index){
case 0:
case 1:
case 8:
case 9:
case 10:
return 1;
default:
return 0;
}
}
ErrCode_t DumpOrWriteEmmcPart(const char *path, const char *part, u8 write, u8 force){
const u32 BOOT_PART_SIZE = emmc_storage.ext_csd.boot_mult << 17;
u32 lba_start = 0;
u32 lba_end = 0;
u8 crypt = false;
if (!sd_mount())
return newErrCode(TE_ERR_NO_SD);
@@ -143,9 +171,17 @@ ErrCode_t DumpOrWriteEmmcPart(const char *path, const char *part, u8 write, u8 f
if (!system_part)
return newErrCode(TE_ERR_PARTITION_NOT_FOUND);
lba_start = system_part->lba_start;
lba_end = system_part->lba_end;
if (isSystemPartCrypt(system_part)){
nx_emmc_bis_init(system_part);
crypt = true;
lba_start = 0;
lba_end = system_part->lba_end - system_part->lba_start;
}
else {
lba_start = system_part->lba_start;
lba_end = system_part->lba_end;
}
}
return ((write) ? EmmcRestoreFromFile(path, lba_start, lba_end, force) : EmmcDumpToFile(path, lba_start, lba_end, force));
return ((write) ? EmmcRestoreFromFile(path, lba_start, lba_end, force, crypt) : EmmcDumpToFile(path, lba_start, lba_end, force, crypt));
}

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@@ -124,7 +124,11 @@ void RebootToHekate(){
}
void MountOrUnmountSD(){
(sd_mounted) ? sd_unmount() : sd_mount();
gfx_clearscreen();
if (sd_mounted)
sd_unmount();
else if (!sd_mount())
hidWait();
}
menuPaths mainMenuPaths[] = {

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@@ -57,3 +57,4 @@ Vector_t vecCopyOffset(Vector_t* orig, u32 offset) {
Vector_t vecCopy(Vector_t* orig) {
return vecCopyOffset(orig, 0);
}