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https://gitlab.com/suyu-emu/suyu.git
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Loader: Cleaned up and removed unused code, refactored ELF namespace.
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13bdaa6c60
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@ -5,65 +5,17 @@
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#include <string>
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#include "common/common.h"
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#include "common/file_util.h"
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#include "common/symbols.h"
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#include "core/mem_map.h"
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#include "core/loader/elf.h"
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#include "core/hle/kernel/kernel.h"
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//void bswap(Elf32_Word &w) {w = Common::swap32(w);}
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//void bswap(Elf32_Half &w) {w = Common::swap16(w);}
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#define bswap(w) w // Dirty bswap disable for now... 3DS is little endian, anyway
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static void byteswapHeader(Elf32_Ehdr &ELF_H)
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{
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bswap(ELF_H.e_type);
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bswap(ELF_H.e_machine);
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bswap(ELF_H.e_ehsize);
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bswap(ELF_H.e_phentsize);
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bswap(ELF_H.e_phnum);
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bswap(ELF_H.e_shentsize);
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bswap(ELF_H.e_shnum);
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bswap(ELF_H.e_shstrndx);
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bswap(ELF_H.e_version);
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bswap(ELF_H.e_entry);
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bswap(ELF_H.e_phoff);
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bswap(ELF_H.e_shoff);
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bswap(ELF_H.e_flags);
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}
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static void byteswapSegment(Elf32_Phdr &sec)
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{
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bswap(sec.p_align);
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bswap(sec.p_filesz);
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bswap(sec.p_flags);
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bswap(sec.p_memsz);
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bswap(sec.p_offset);
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bswap(sec.p_paddr);
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bswap(sec.p_vaddr);
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bswap(sec.p_type);
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}
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static void byteswapSection(Elf32_Shdr &sec)
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{
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bswap(sec.sh_addr);
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bswap(sec.sh_addralign);
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bswap(sec.sh_entsize);
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bswap(sec.sh_flags);
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bswap(sec.sh_info);
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bswap(sec.sh_link);
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bswap(sec.sh_name);
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bswap(sec.sh_offset);
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bswap(sec.sh_size);
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bswap(sec.sh_type);
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}
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ElfReader::ElfReader(void *ptr)
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{
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ElfReader::ElfReader(void *ptr) {
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base = (char*)ptr;
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base32 = (u32 *)ptr;
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header = (Elf32_Ehdr*)ptr;
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byteswapHeader(*header);
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segments = (Elf32_Phdr *)(base + header->e_phoff);
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sections = (Elf32_Shdr *)(base + header->e_shoff);
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@ -73,8 +25,7 @@ ElfReader::ElfReader(void *ptr)
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LoadSymbols();
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}
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const char *ElfReader::GetSectionName(int section) const
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{
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const char *ElfReader::GetSectionName(int section) const {
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if (sections[section].sh_type == SHT_NULL)
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return nullptr;
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@ -87,8 +38,7 @@ const char *ElfReader::GetSectionName(int section) const
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return nullptr;
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}
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bool ElfReader::LoadInto(u32 vaddr)
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{
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bool ElfReader::LoadInto(u32 vaddr) {
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DEBUG_LOG(MASTER_LOG, "String section: %i", header->e_shstrndx);
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// Should we relocate?
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@ -188,3 +138,48 @@ bool ElfReader::LoadSymbols()
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return hasSymbols;
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}
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Loader namespace
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namespace Loader {
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/**
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* Loads an ELF file
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* @param filename String filename of ELF file
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* @param error_string Pointer to string to put error message if an error has occurred
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* @return True on success, otherwise false
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*/
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bool Load_ELF(std::string& filename, std::string* error_string) {
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std::string full_path = filename;
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std::string path, file, extension;
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SplitPath(ReplaceAll(full_path, "\\", "/"), &path, &file, &extension);
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#if EMU_PLATFORM == PLATFORM_WINDOWS
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path = ReplaceAll(path, "/", "\\");
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#endif
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File::IOFile f(filename, "rb");
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if (f.IsOpen()) {
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u32 size = (u32)f.GetSize();
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u8* buffer = new u8[size];
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ElfReader* elf_reader = NULL;
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f.ReadBytes(buffer, size);
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elf_reader = new ElfReader(buffer);
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elf_reader->LoadInto(0x00100000);
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Kernel::LoadExec(elf_reader->GetEntryPoint());
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delete[] buffer;
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delete elf_reader;
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} else {
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*error_string = "Unable to open ELF file!";
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return false;
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}
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f.Close();
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return true;
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}
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} // namespace Loader
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@ -329,3 +329,18 @@ public:
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return bRelocate;
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}
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};
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Loader namespace
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namespace Loader {
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/**
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* Loads an ELF file
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* @param filename String filename of ELF file
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* @param error_string Pointer to string to put error message if an error has occurred
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* @return True on success, otherwise false
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*/
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bool Load_ELF(std::string& filename, std::string* error_string);
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} // namespace Loader
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@ -2,98 +2,14 @@
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// Licensed under GPLv2
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// Refer to the license.txt file included.
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#include "common/common_types.h"
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#include "common/file_util.h"
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#include "core/loader/loader.h"
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#include "core/loader/elf.h"
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#include "core/loader/ncch.h"
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#include "core/system.h"
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#include "core/core.h"
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#include "core/hle/kernel/kernel.h"
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#include "core/mem_map.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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/// Loads a CTR ELF file
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bool Load_ELF(std::string &filename) {
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std::string full_path = filename;
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std::string path, file, extension;
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SplitPath(ReplaceAll(full_path, "\\", "/"), &path, &file, &extension);
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#if EMU_PLATFORM == PLATFORM_WINDOWS
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path = ReplaceAll(path, "/", "\\");
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#endif
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File::IOFile f(filename, "rb");
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if (f.IsOpen()) {
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u64 size = f.GetSize();
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u8* buffer = new u8[size];
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ElfReader* elf_reader = NULL;
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f.ReadBytes(buffer, size);
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elf_reader = new ElfReader(buffer);
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elf_reader->LoadInto(0x00100000);
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Kernel::LoadExec(elf_reader->GetEntryPoint());
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delete[] buffer;
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delete elf_reader;
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} else {
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return false;
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}
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f.Close();
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return true;
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}
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/// Loads a CTR BIN file extracted from an ExeFS
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bool Load_BIN(std::string &filename) {
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std::string full_path = filename;
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std::string path, file, extension;
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SplitPath(ReplaceAll(full_path, "\\", "/"), &path, &file, &extension);
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#if EMU_PLATFORM == PLATFORM_WINDOWS
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path = ReplaceAll(path, "/", "\\");
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#endif
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File::IOFile f(filename, "rb");
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if (f.IsOpen()) {
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u64 size = f.GetSize();
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u8* buffer = new u8[size];
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f.ReadBytes(buffer, size);
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u32 entry_point = 0x00100000; // Hardcoded, read from exheader
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const u8 *src = buffer;
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u8 *dst = Memory::GetPointer(entry_point);
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u32 srcSize = size;
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u32 *s = (u32*)src;
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u32 *d = (u32*)dst;
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for (int j = 0; j < (int)(srcSize + 3) / 4; j++)
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{
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*d++ = (*s++);
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}
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Kernel::LoadExec(entry_point);
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delete[] buffer;
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}
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else {
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return false;
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}
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f.Close();
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return true;
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}
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namespace Loader {
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bool IsBootableDirectory() {
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ERROR_LOG(TIME, "Unimplemented function!");
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return true;
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}
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/**
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* Identifies the type of a bootable file
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* @param filename String filename of bootable file
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@ -107,15 +23,7 @@ FileType IdentifyFile(std::string &filename) {
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}
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std::string extension = filename.size() >= 5 ? filename.substr(filename.size() - 4) : "";
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if (File::IsDirectory(filename)) {
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if (IsBootableDirectory()) {
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return FILETYPE_DIRECTORY_CXI;
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}
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else {
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return FILETYPE_NORMAL_DIRECTORY;
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}
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}
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else if (!strcasecmp(extension.c_str(), ".elf")) {
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if (!strcasecmp(extension.c_str(), ".elf")) {
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return FILETYPE_CTR_ELF; // TODO(bunnei): Do some filetype checking :p
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}
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else if (!strcasecmp(extension.c_str(), ".axf")) {
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@ -127,24 +35,6 @@ FileType IdentifyFile(std::string &filename) {
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else if (!strcasecmp(extension.c_str(), ".cci")) {
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return FILETYPE_CTR_CCI; // TODO(bunnei): Do some filetype checking :p
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}
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else if (!strcasecmp(extension.c_str(), ".bin")) {
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return FILETYPE_CTR_BIN;
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}
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else if (!strcasecmp(extension.c_str(), ".dat")) {
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return FILETYPE_LAUNCHER_DAT;
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}
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else if (!strcasecmp(extension.c_str(), ".zip")) {
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return FILETYPE_ARCHIVE_ZIP;
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}
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else if (!strcasecmp(extension.c_str(), ".rar")) {
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return FILETYPE_ARCHIVE_RAR;
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}
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else if (!strcasecmp(extension.c_str(), ".r00")) {
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return FILETYPE_ARCHIVE_RAR;
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}
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else if (!strcasecmp(extension.c_str(), ".r01")) {
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return FILETYPE_ARCHIVE_RAR;
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}
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return FILETYPE_UNKNOWN;
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}
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switch (IdentifyFile(filename)) {
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case FILETYPE_CTR_ELF:
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return Load_ELF(filename);
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case FILETYPE_CTR_BIN:
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return Load_BIN(filename);
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return Loader::Load_ELF(filename, error_string);
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case FILETYPE_CTR_CXI:
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case FILETYPE_CTR_CCI:
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*error_string = "Error reading file";
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break;
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case FILETYPE_ARCHIVE_RAR:
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#ifdef WIN32
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*error_string = "RAR file detected (Require WINRAR)";
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#else
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*error_string = "RAR file detected (Require UnRAR)";
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#endif
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break;
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case FILETYPE_ARCHIVE_ZIP:
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#ifdef WIN32
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*error_string = "ZIP file detected (Require WINRAR)";
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#else
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*error_string = "ZIP file detected (Require UnRAR)";
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#endif
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break;
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case FILETYPE_NORMAL_DIRECTORY:
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ERROR_LOG(LOADER, "Just a directory.");
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*error_string = "Just a directory.";
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break;
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case FILETYPE_UNKNOWN_BIN:
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case FILETYPE_UNKNOWN_ELF:
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case FILETYPE_UNKNOWN:
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default:
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ERROR_LOG(LOADER, "Failed to identify file");
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return false;
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}
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} // namespace
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} // namespace Loader
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@ -7,6 +7,7 @@
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#include "common/common.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Loader namespace
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namespace Loader {
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@ -19,23 +20,9 @@ enum FileType {
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FILETYPE_CTR_ELF,
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FILETYPE_CTR_BIN,
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FILETYPE_LAUNCHER_DAT,
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FILETYPE_DIRECTORY_CXI,
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FILETYPE_UNKNOWN_BIN,
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FILETYPE_UNKNOWN_ELF,
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FILETYPE_ARCHIVE_RAR,
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FILETYPE_ARCHIVE_ZIP,
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FILETYPE_NORMAL_DIRECTORY,
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FILETYPE_UNKNOWN
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};
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////////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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* Identifies the type of a bootable file
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* @param filename String filename of bootable file
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