mirror of
https://github.com/Fledge68/WiiFlow_Lite.git
synced 2024-12-27 12:21:57 +01:00
311 lines
8.0 KiB
C
311 lines
8.0 KiB
C
#include "channel_launcher.h"
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include "disc.h"
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#include "patchcode.h"
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#include "videopatch.h"
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#include "fst.h"
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#include "lz77.h"
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#include "utils.h"
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#include "fs.h"
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#include "gecko.h"
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#include "mem2.hpp"
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GXRModeObj * __Disc_SelectVMode(u8 videoselected, u64 chantitle);
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void PatchCountryStrings(void *Address, int Size);
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void __Disc_SetLowMem(void);
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void __Disc_SetVMode(void);
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void __Disc_SetTime(void);
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void _unstub_start();
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extern void __exception_closeall();
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typedef void (*entrypoint) (void);
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typedef struct _dolheader{
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u32 section_pos[18];
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u32 section_start[18];
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u32 section_size[18];
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u32 bss_start;
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u32 bss_size;
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u32 entry_point;
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u32 padding[7];
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} __attribute__((packed)) dolheader;
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u32 entryPoint;
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s32 BootChannel(u8 *data, u64 chantitle, u8 vidMode, bool vipatch, bool countryString, u8 patchVidMode, bool disableIOSreload, int aspectRatio)
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{
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u32 ios;
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Identify(chantitle, &ios);
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entryPoint = LoadChannel(data);
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MEM2_free(data);
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/* Select an appropriate video mode */
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GXRModeObj * vmode = __Disc_SelectVMode(vidMode, chantitle);
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/* Set time */
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__Disc_SetTime();
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/* Set low memory */
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__Disc_SetLowMem();
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if (hooktype != 0)
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ocarina_do_code();
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PatchChannel(vidMode, vmode, vipatch, countryString, patchVidMode, aspectRatio);
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entrypoint appJump = (entrypoint)entryPoint;
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if (disableIOSreload)
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IOSReloadBlock(IOS_GetVersion(), false);
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else
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IOSReloadBlock(IOS_GetVersion(), true);
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/* Set an appropriate video mode */
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__Disc_SetVMode();
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// IOS Version Check
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*(vu32*)0x80003140 = ((ios << 16)) | 0xFFFF;
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*(vu32*)0x80003188 = ((ios << 16)) | 0xFFFF;
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DCFlushRange((void *)0x80003140, 4);
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DCFlushRange((void *)0x80003188, 4);
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// Game ID Online Check
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memset((void *)0x80000000, 0, 6);
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*(vu32 *)0x80000000 = TITLE_LOWER(chantitle);
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DCFlushRange((void *)0x80000000, 6);
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/* Shutdown IOS subsystems */
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SYS_ResetSystem(SYS_SHUTDOWN, 0, 0);
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gprintf("Jumping to entrypoint %08x\n", entryPoint);
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if (entryPoint != 0x3400)
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{
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if (hooktype != 0)
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{
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__asm__(
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"lis %r3, entryPoint@h\n"
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"ori %r3, %r3, entryPoint@l\n"
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"lwz %r3, 0(%r3)\n"
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"mtlr %r3\n"
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"lis %r3, 0x8000\n"
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"ori %r3, %r3, 0x18A8\n"
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"nop\n"
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"mtctr %r3\n"
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"bctr\n"
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);
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}
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else appJump();
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}
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else if (hooktype != 0)
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{
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__asm__(
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"lis %r3, returnpoint@h\n"
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"ori %r3, %r3, returnpoint@l\n"
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"mtlr %r3\n"
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"lis %r3, 0x8000\n"
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"ori %r3, %r3, 0x18A8\n"
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"nop\n"
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"mtctr %r3\n"
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"bctr\n"
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"returnpoint:\n"
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"bl DCDisable\n"
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"bl ICDisable\n"
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"li %r3, 0\n"
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"mtsrr1 %r3\n"
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"lis %r4, entryPoint@h\n"
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"ori %r4,%r4,entryPoint@l\n"
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"lwz %r4, 0(%r4)\n"
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"mtsrr0 %r4\n"
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"rfi\n"
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);
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}
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else _unstub_start();
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return 0;
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}
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void *dolchunkoffset[18];
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u32 dolchunksize[18];
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u32 dolchunkcount;
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u32 LoadChannel(u8 *buffer)
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{
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dolchunkcount = 0;
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dolheader *dolfile = (dolheader *)buffer;
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if(dolfile->bss_start)
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{
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if(!(dolfile->bss_start & 0x80000000))
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dolfile->bss_start |= 0x80000000;
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ICInvalidateRange((void *)dolfile->bss_start, dolfile->bss_size);
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memset((void *)dolfile->bss_start, 0, dolfile->bss_size);
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DCFlushRange((void *)dolfile->bss_start, dolfile->bss_size);
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}
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int i;
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for(i = 0; i < 18; i++)
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{
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if (!dolfile->section_size[i]) continue;
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if (dolfile->section_pos[i] < sizeof(dolheader)) continue;
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if(!(dolfile->section_start[i] & 0x80000000)) dolfile->section_start[i] |= 0x80000000;
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dolchunkoffset[dolchunkcount] = (void *)dolfile->section_start[i];
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dolchunksize[dolchunkcount] = dolfile->section_size[i];
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gprintf("Moving section %u from offset %08x to %08x-%08x...\n", i, dolfile->section_pos[i], dolchunkoffset[dolchunkcount], dolchunkoffset[dolchunkcount]+dolchunksize[dolchunkcount]);
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ICInvalidateRange(dolchunkoffset[dolchunkcount], dolchunksize[dolchunkcount]);
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memmove (dolchunkoffset[dolchunkcount], buffer + dolfile->section_pos[i], dolchunksize[dolchunkcount]);
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DCFlushRange(dolchunkoffset[dolchunkcount], dolchunksize[dolchunkcount]);
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dolchunkcount++;
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}
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return dolfile->entry_point;
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}
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void PatchChannel(u8 vidMode, GXRModeObj *vmode, bool vipatch, bool countryString, u8 patchVidModes, int aspectRatio)
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{
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bool hookpatched = false;
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u32 i;
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for (i=0; i < dolchunkcount; i++)
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{
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patchVideoModes(dolchunkoffset[i], dolchunksize[i], vidMode, vmode, patchVidModes);
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if (vipatch) vidolpatcher(dolchunkoffset[i], dolchunksize[i]);
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if (configbytes[0] != 0xCD) langpatcher(dolchunkoffset[i], dolchunksize[i]);
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if (countryString) PatchCountryStrings(dolchunkoffset[i], dolchunksize[i]);
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if (aspectRatio != -1) PatchAspectRatio(dolchunkoffset[i], dolchunksize[i], aspectRatio);
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if (hooktype != 0)
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if (dogamehooks(dolchunkoffset[i], dolchunksize[i], true))
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hookpatched = true;
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}
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if (hooktype != 0 && !hookpatched)
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{
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gprintf("Error: Could not patch the hook\n");
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gprintf("Ocarina and debugger won't work\n");
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}
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}
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bool Identify_GenerateTik(signed_blob **outbuf, u32 *outlen)
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{
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signed_blob *buffer = (signed_blob *)MEM2_alloc(STD_SIGNED_TIK_SIZE);
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if (!buffer) return false;
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memset(buffer, 0, STD_SIGNED_TIK_SIZE);
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sig_rsa2048 *signature = (sig_rsa2048 *)buffer;
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signature->type = ES_SIG_RSA2048;
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tik *tik_data = (tik *)SIGNATURE_PAYLOAD(buffer);
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strcpy(tik_data->issuer, "Root-CA00000001-XS00000003");
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memset(tik_data->cidx_mask, 0xFF, 32);
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*outbuf = buffer;
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*outlen = STD_SIGNED_TIK_SIZE;
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return true;
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}
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bool Identify(u64 titleid, u32 *ios)
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{
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char filepath[ISFS_MAXPATH] ATTRIBUTE_ALIGN(32);
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sprintf(filepath, "/title/%08x/%08x/content/title.tmd", TITLE_UPPER(titleid), TITLE_LOWER(titleid));
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u32 tmdSize;
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u8 *tmdBuffer = ISFS_GetFile((u8 *) &filepath, &tmdSize, -1);
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if (tmdBuffer == NULL || tmdSize == 0)
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{
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gprintf("Reading TMD...Failed!\n");
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return false;
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}
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*ios = (u32)(tmdBuffer[0x18b]);
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u32 tikSize;
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signed_blob *tikBuffer = NULL;
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if(!Identify_GenerateTik(&tikBuffer,&tikSize))
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{
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gprintf("Generating fake ticket...Failed!\n");
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return false;
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}
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sprintf(filepath, "/sys/cert.sys");
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u32 certSize;
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u8 *certBuffer = ISFS_GetFile((u8 *) &filepath, &certSize, -1);
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if (certBuffer == NULL || certSize == 0)
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{
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gprintf("Reading certs...Failed!\n");
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MEM2_free(tmdBuffer);
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MEM2_free(tikBuffer);
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return false;
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}
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s32 ret = ES_Identify((signed_blob*)certBuffer, certSize, (signed_blob*)tmdBuffer, tmdSize, tikBuffer, tikSize, NULL);
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if (ret < 0)
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{
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switch(ret)
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{
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case ES_EINVAL:
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gprintf("Error! ES_Identify (ret = %d;) Data invalid!\n", ret);
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break;
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case ES_EALIGN:
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gprintf("Error! ES_Identify (ret = %d;) Data not aligned!\n", ret);
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break;
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case ES_ENOTINIT:
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gprintf("Error! ES_Identify (ret = %d;) ES not initialized!\n", ret);
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break;
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case ES_ENOMEM:
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gprintf("Error! ES_Identify (ret = %d;) No memory!\n", ret);
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break;
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default:
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gprintf("Error! ES_Identify (ret = %d)\n", ret);
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break;
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}
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}
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MEM2_free(tmdBuffer);
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MEM2_free(tikBuffer);
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MEM2_free(certBuffer);
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return ret < 0 ? false : true;
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}
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u8 * GetDol(u64 title, u32 bootcontent)
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{
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char filepath[ISFS_MAXPATH] ATTRIBUTE_ALIGN(32);
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sprintf(filepath, "/title/%08x/%08x/content/%08x.app", TITLE_UPPER(title), TITLE_LOWER(title), bootcontent);
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gprintf("Loading DOL: %s...", filepath);
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u32 contentSize = 0;
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u8 *data = ISFS_GetFile((u8 *) &filepath, &contentSize, -1);
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if (data != NULL && contentSize != 0)
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{
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gprintf("Done!\n");
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if (isLZ77compressed(data))
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{
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u8 *decompressed;
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u32 size = 0;
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if (decompressLZ77content(data, contentSize, &decompressed, &size) < 0)
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{
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gprintf("Decompression failed\n");
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MEM2_free(data);
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return NULL;
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}
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MEM2_free(data);
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data = decompressed;
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}
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return data;
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}
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gprintf("Failed!\n");
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return NULL;
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}
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