mirror of
https://github.com/wiidev/usbloadergx.git
synced 2024-11-05 11:05:06 +01:00
f49b732a3b
update meta.xml version too.
484 lines
13 KiB
C++
484 lines
13 KiB
C++
/****************************************************************************
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* Copyright (C) 2015 Cyan
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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****************************************************************************/
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#include <stdio.h>
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#include <string.h>
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#include <malloc.h>
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#include <gccore.h>
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#include <ogc/machine/processor.h>
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#include "neek.hpp"
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#include "memory/mem2.h"
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#include "Controls/DeviceHandler.hpp"
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#include "FileOperations/fileops.h"
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#include "settings/CSettings.h"
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#include "sys.h"
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#include "gecko.h"
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typedef struct {
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u32 hdrsize;
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u32 loadersize;
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u32 elfsize;
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u32 argument;
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} ioshdr;
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#define MEM_REG_BASE 0xd8b4000
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#define MEM_PROT (MEM_REG_BASE + 0x20a)
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#define TITLE_ID(x,y) (((u64)(x) << 32) | (y))
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static u32 *kernel = NULL;
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static inline void disable_memory_protection(void) {
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write32(MEM_PROT, read32(MEM_PROT) & 0x0000FFFF);
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}
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bool neekLoadKernel (const char* nandpath)
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{
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gprintf( "NEEK: Loading Kernel.bin... ");
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char kernelPath[30];
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if(isWiiU())
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snprintf(kernelPath, sizeof(kernelPath), "%s:/sneek/vwiikernel.bin", DeviceHandler::GetDevicePrefix(nandpath));
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if(!isWiiU() || !CheckFile(kernelPath))
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snprintf(kernelPath, sizeof(kernelPath), "%s:/sneek/kernel.bin", DeviceHandler::GetDevicePrefix(nandpath));
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if(!CheckFile(kernelPath))
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{
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gprintf("File not found.\n");
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return false;
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}
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FILE *f = NULL;
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f = fopen(kernelPath, "rb");
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if(!f)
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{
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gprintf("Failed loading file %s.\n", kernelPath);
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return false;
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}
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fseek(f, 0, SEEK_END);
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long fsize = ftell(f);
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rewind(f);
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// Allocate kernel to mem2
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kernel = (u32 *) MEM2_alloc(fsize);
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if(!kernel)
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{
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return false;
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}
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fread(kernel, 1, fsize, f);
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//((ioshdr*)kernel)->argument = 0x42; // set argument size
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DCFlushRange(kernel, fsize);
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gprintf("Loaded to 0x%08x, size: %d\n", kernel, fsize);
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gprintf("NEEK: offset memory address: %08x\n", (u32)kernel - 0x80000000); // offset
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fclose(f);
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return true;
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}
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/*
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static void neekClearKernel(void)
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{
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if(kernel)
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MEM2_free(kernel);
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kernel = NULL;
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}
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*/
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int neekBoot(void)
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{
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gprintf("Booting S/Uneek !!\n");
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if(kernel == NULL)
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{
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gprintf("Kernel not loaded !! Exiting...\n");
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return -1;
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}
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/** boot mini without BootMii IOS code by Crediar. **/
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disable_memory_protection();
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unsigned int i = 0x939F02F0;
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unsigned char ES_ImportBoot2[16] =
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{ 0x68, 0x4B, 0x2B, 0x06, 0xD1, 0x0C, 0x68, 0x8B, 0x2B, 0x00, 0xD1, 0x09, 0x68, 0xC8, 0x68, 0x42 };
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if( memcmp( (void*)(i), ES_ImportBoot2, sizeof(ES_ImportBoot2) ) != 0 )
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for( i = 0x939F0000; i < 0x939FE000; i+=4 )
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if( memcmp( (void*)(i), ES_ImportBoot2, sizeof(ES_ImportBoot2) ) == 0 )
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break;
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if(i >= 0x939FE000)
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{
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gprintf("ES_ImportBoot2 not patched !! Exiting...\n");
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//SYS_ResetSystem( SYS_RETURNTOMENU, 0, 0 );
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return -1;
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}
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DCInvalidateRange( (void*)i, 0x20 );
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*(vu32*)(i+0x00) = 0x48034904; // LDR R0, 0x10, LDR R1, 0x14
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*(vu32*)(i+0x04) = 0x477846C0; // BX PC, NOP
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*(vu32*)(i+0x08) = 0xE6000870; // SYSCALL
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*(vu32*)(i+0x0C) = 0xE12FFF1E; // BLR
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//*(vu32*)(i+0x10) = 0x11000000; // kernel offset from 0x80000000. Kernel loaded to (void *)0x91000000
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*(vu32*)(i+0x10) = (u32)kernel - 0x80000000; // kernel offset
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*(vu32*)(i+0x14) = 0x0000FF01; // version
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DCFlushRange( (void*)i, 0x20 );
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__IOS_ShutdownSubsystems();
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s32 fd = IOS_Open( "/dev/es", 0 );
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u8 *buffer = (u8*)memalign( 32, 0x100 );
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memset( buffer, 0, 0x100 );
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IOS_IoctlvAsync( fd, 0x1F, 0, 0, (ioctlv*)buffer, NULL, NULL );
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return 0;
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}
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/****************************************************************************
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* neekIsNeek2o
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*
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* Detects Kernel.bin format
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*
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* @return values :
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* -1 : kernel.bin not found
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* 0 : sneek or uneek kernel.bin
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* 1 : sneek2o or uneek2o kernel.bin
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***************************************************************************/
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int neekIsNeek2o(const char* nandpath)
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{
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int found = 0;
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char tempPath[100];
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if(isWiiU())
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snprintf(tempPath, sizeof(tempPath), "%s:/sneek/vwiikernel.bin", DeviceHandler::GetDevicePrefix(nandpath));
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if(!isWiiU() || !CheckFile(tempPath))
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snprintf(tempPath, sizeof(tempPath), "%s:/sneek/kernel.bin", DeviceHandler::GetDevicePrefix(nandpath));
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if(!CheckFile(tempPath))
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return -1;
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u8 *buffer = NULL;
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u32 filesize = 0;
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const char* str = "NEEK2O";
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if(LoadFileToMem(tempPath, &buffer, &filesize))
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{
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for(u32 i = filesize-strlen(str); i > 0; i--)
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{
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if( memcmp(buffer+i, str, strlen(str)) == 0)
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{
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found = 1;
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break;
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}
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}
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}
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else
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return -1;
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if(buffer)
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free(buffer);
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return found;
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}
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/****************************************************************************
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* neekPathFormat
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*
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* Convert and trim full path to path format used by neek
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***************************************************************************/
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int neekPathFormat(char* nandpath_out, const char* nandpath_in, u32 len)
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{
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const char* neekNandPathTemp = strchr(nandpath_in, '/');
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if(!neekNandPathTemp)
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return -1;
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snprintf(nandpath_out, len, "%s", neekNandPathTemp);
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if(nandpath_out[strlen(nandpath_out)-1] == '/')
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*(strrchr(nandpath_out, '/')) = '\0'; // remove trailing slash
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return 1;
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}
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/****************************************************************************
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* neek2oSetBootSettings
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*
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* Generate the neek2o autoboot settings
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*
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* neek_config: Pointer to cfg
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* TitleID : Full path to Channel (00010001 + ABCD) or ID4 for Wii/GC games (00000000 + ID)
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* Magic : 0x0 for channel, 0x5d1c9ea3 for Wii game, 0xC2339F3D for gamecube and quadforce games
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* returnTo : true/false to return to another neek channel instead of system menu
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* nandpath : Set a different temporary Nand Path to use (full path to nand)
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*
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***************************************************************************/
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bool neek2oSetBootSettings(NEEK_CFG* neek_config, u64 TitleID, u32 Magic, u64 returnto, const char* nandpath )
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{
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if(!neek_config)
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return false;
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char tmpPath[100];
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memset(neek_config, 0, sizeof(NEEK_CFG));
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// Magic and version for DML
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neek_config->magic = NEEK_MAGIC;
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// GameID
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if(!Magic)
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neek_config->titleid = TitleID; // Set channel ID
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else
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{
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neek_config->gameid = (u32)TitleID; // Wii or Gamecube title ID4 to autoboot
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neek_config->gamemagic = Magic; // set to 0x5d1c9ea3 for Wii game, 0xC2339F3D for gamecube and quadforce games
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neek_config->config |= NCON_EXT_BOOT_GAME ; // set Disc booting
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}
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// Return to
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if(returnto)
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{
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// check if NK2O is installed
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snprintf(tmpPath, sizeof(tmpPath), "%s/title/00010001/4e4b324f/content/title.tmd", nandpath != NULL ? nandpath : Settings.NandEmuChanPath);
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if(CheckFile(tmpPath))
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{
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neek_config->returnto = TITLE_ID(0x00010001, 'NK2O'); // Currently forced to NK2O user channel
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neek_config->config |= NCON_EXT_RETURN_TO; // enable "return to" patch
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}
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if(isWiiU())
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{
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neek_config->returnto = TITLE_ID(0x00010002, 'HCVA');// Currently forced to "Return to WiiU" system channel
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neek_config->config |= NCON_EXT_RETURN_TO; // enable "return to" patch
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}
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}
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if(!(neek_config->config & NCON_EXT_RETURN_TO))
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{
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// delete residual "return to" file if last shutdown was unclean.
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snprintf(tmpPath, sizeof(tmpPath), "%s:/sneek/reload.sys", DeviceHandler::GetDevicePrefix(nandpath));
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if(CheckFile(tmpPath))
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RemoveFile(tmpPath);
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}
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if(nandpath && strlen(nandpath) > 0)
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{
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// ensure path is correct format
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char neekNandPath[256] = "";
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if(neekPathFormat(neekNandPath, nandpath, sizeof(neekNandPath)))
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{
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snprintf(neek_config->nandpath, sizeof(neek_config->nandpath), "%s", neekNandPath);
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neek_config->config |= NCON_EXT_NAND_PATH ; // Use custom nand path
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// neek_config->config |= NCON_HIDE_EXT_PATH; // Set custom nand path as temporary
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}
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}
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//set a custom di folder
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//snprintf(neek_config->dipath, sizeof(neek_config->dipath), "/sneek/vwii"); // Set path for di.bin and diconfig.bin
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//neek_config->config |= NCON_EXT_DI_PATH; // Use custom di path
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DCFlushRange(neek_config, sizeof(NEEK_CFG));
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//hexdump(neek_config, sizeof(NEEK_CFG));
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return true;
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}
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/****************************************************************************
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* neek2oSetNAND
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*
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* Generates nandcfg.bin if missing and adds missing EmuNAND path
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* Sets default EmuNAND path for neek2o
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*
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* @return values :
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* -1 : error
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* x : Default path set to EmuNAND number x
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***************************************************************************/
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int neek2oSetNAND(const char* nandpath)
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{
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// format path string for neek
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char neekNandPath[256] = "";
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if(neekPathFormat(neekNandPath, nandpath, sizeof(neekNandPath)) < 0)
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return -1;
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FILE *f = NULL;
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u32 ret = -1;
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bool found = false;
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u32 i = 0;
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char nandconfigPath[100];
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snprintf(nandconfigPath, sizeof(nandconfigPath), "%s:/sneek/nandcfg.bin", DeviceHandler::GetDevicePrefix(nandpath));
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// vWii neek2o - different filename but not the same format?
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//if(isWiiU())
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// snprintf(nandconfigPath, sizeof(nandconfigPath), "%s:/sneek/vwiincfg.bin", DeviceHandler::GetDevicePrefix(nandpath));
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#ifdef DEBUG
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gprintf("nandconfigPath : %s\n", nandconfigPath);
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#endif
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// create the file if it doesn't exist
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if(!CheckFile(nandconfigPath) || FileSize(nandconfigPath) < NANDCONFIG_HEADER_SIZE+1)
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{
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u8* nandConfigHeader[NANDCONFIG_HEADER_SIZE];
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memset(nandConfigHeader, 0, NANDCONFIG_HEADER_SIZE);
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f = fopen(nandconfigPath, "wb");
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if(!f)
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{
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gprintf("Failed creating file %s.\n", nandconfigPath);
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return -1;
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}
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// create an empty header with 0 NAND
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fwrite(nandConfigHeader, 1, NANDCONFIG_HEADER_SIZE, f);
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fclose(f);
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}
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f = fopen(nandconfigPath, "rb");
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if(!f)
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{
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gprintf("Failed loading file %s.\n", nandconfigPath);
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return -1;
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}
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fseek(f , 0 , SEEK_END);
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u32 filesize = ftell(f);
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rewind(f);
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/* Allocate memory */
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NandConfig *nandCfg = (NandConfig *) MEM2_alloc(filesize);
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if (!nandCfg)
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{
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fclose (f);
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return -1;
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}
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// Read the file
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ret = fread (nandCfg, 1, filesize, f);
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if(ret != filesize)
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{
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gprintf("Failed loading file %s to Mem.\n", nandconfigPath);
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fclose (f);
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MEM2_free(nandCfg);
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return -1;
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}
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#ifdef DEBUG
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hexdump(nandCfg, NANDCONFIG_HEADER_SIZE);
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#endif
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// don't parse if wrong file
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if(nandCfg->NandCnt > NANDCONFIG_MAXNAND || nandCfg->NandSel > nandCfg->NandCnt) // wrong header, delete file.
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{
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fclose(f);
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MEM2_free(nandCfg);
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RemoveFile(nandconfigPath); // delete corrupted file.
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return -1;
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}
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#ifdef DEBUG
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// List found nands from the file
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gprintf("NandCnt = %d\n", nandCfg->NandCnt);
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gprintf("NandSel = %d\n", nandCfg->NandSel);
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for( i = 0 ; i < nandCfg->NandCnt ; i++)
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{
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gprintf("Path %d = %s %s\n", i, &nandCfg->Nands[i], strcmp((const char *)&nandCfg->Nands[i], neekNandPath) == 0 ? "found" : "");
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}
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#endif
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for( i = 0 ; i < nandCfg->NandCnt ; i++)
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{
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if(strcmp((const char *)&nandCfg->Nands[i], neekNandPath) == 0)
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{
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found = true;
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break;
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}
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}
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if(found) // NAND path already present in nandcfg.bin
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{
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// set selected nand in header if different
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if(nandCfg->NandSel != i)
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{
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nandCfg->NandSel = i;
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nandCfg->Padding1 = i; // same value?
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DCFlushRange(nandCfg, NANDCONFIG_HEADER_SIZE);
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#ifdef DEBUG
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gprintf("new nandCfg->sel = %d", nandCfg->NandSel);
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hexdump(nandCfg, NANDCONFIG_HEADER_SIZE);
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#endif
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freopen(nandconfigPath, "wb", f);
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ret = fwrite(nandCfg, sizeof(char), filesize, f); // Write full file
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}
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}
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else // new NAND path to nandcfg.bin
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{
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NandInfo * newNand = (NandInfo *) MEM2_alloc(sizeof(NandInfo));
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if(newNand)
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{
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memset(newNand, 0, sizeof(NandInfo));
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snprintf(newNand->Path, sizeof(newNand->Path), neekNandPath);
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snprintf(newNand->Name, sizeof(newNand->Name), strlen(neekNandPath) == 0 ? "root" : strrchr(neekNandPath, '/')+1);
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snprintf(newNand->DiPath, sizeof(newNand->DiPath), "/sneek");
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DCFlushRange(newNand, sizeof(NandInfo));
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#ifdef DEBUG
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gprintf("new nandCfg");
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hexdump(newNand, sizeof(NandInfo));
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#endif
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nandCfg->NandCnt++;
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nandCfg->NandSel = ++i;
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// prevent NAND selection bigger than number of NANDs.
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if(nandCfg->NandSel >= nandCfg->NandCnt)
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{
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nandCfg->NandSel = nandCfg->NandCnt -1;
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i--;
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}
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freopen(nandconfigPath, "wb", f);
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ret = fwrite(nandCfg, sizeof(char), filesize, f); // Write full file
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ret = fwrite(newNand,1,sizeof(NandInfo),f); // append new NANDInfo
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if(ret != sizeof(NandInfo))
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gprintf("Writing new NAND info failed\n");
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MEM2_free(newNand);
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}
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}
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// verify the header is correctly written
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freopen(nandconfigPath, "rb", f);
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ret = fread (nandCfg, 1, NANDCONFIG_HEADER_SIZE, f);
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if(ret != NANDCONFIG_HEADER_SIZE)
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{
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gprintf("Failed loading file %s to Mem.\n", nandconfigPath);
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fclose (f);
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MEM2_free(nandCfg);
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return -1;
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}
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ret = nandCfg->NandSel;
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fclose (f);
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MEM2_free(nandCfg);
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#ifdef DEBUG
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gprintf("verify header:\n");
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hexdump(nandCfg, NANDCONFIG_HEADER_SIZE);
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#endif
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if(ret == i)
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return ret ;
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return -1;
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}
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