mirror of
https://github.com/hrydgard/ppsspp.git
synced 2024-12-15 01:19:47 +00:00
607f19b6a4
Especially Linux 32/64, but really all are nice.
292 lines
8.8 KiB
C++
292 lines
8.8 KiB
C++
// Copyright (C) 2003 Dolphin Project.
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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, version 2.0 or later versions.
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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 2.0 for more details.
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// A copy of the GPL 2.0 should have been included with the program.
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// If not, see http://www.gnu.org/licenses/
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// Official SVN repository and contact information can be found at
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// http://code.google.com/p/dolphin-emu/
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#include "ChunkFile.h"
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PointerWrapSection PointerWrap::Section(const char *title, int ver) {
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return Section(title, ver, ver);
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}
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PointerWrapSection PointerWrap::Section(const char *title, int minVer, int ver) {
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char marker[16] = {0};
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int foundVersion = ver;
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strncpy(marker, title, sizeof(marker));
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if (!ExpectVoid(marker, sizeof(marker)))
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{
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// Might be before we added name markers for safety.
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if (foundVersion == 1 && ExpectVoid(&foundVersion, sizeof(foundVersion)))
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DoMarker(title);
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// Wasn't found, but maybe we can still load the state.
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else
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foundVersion = 0;
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}
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else
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Do(foundVersion);
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if (error == ERROR_FAILURE || foundVersion < minVer || foundVersion > ver) {
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WARN_LOG(COMMON, "Savestate failure: wrong version %d found for %s", foundVersion, title);
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SetError(ERROR_FAILURE);
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return PointerWrapSection(*this, -1, title);
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}
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return PointerWrapSection(*this, foundVersion, title);
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}
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void PointerWrap::SetError(Error error_) {
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if (error < error_) {
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error = error_;
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}
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if (error > ERROR_WARNING) {
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mode = PointerWrap::MODE_MEASURE;
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}
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}
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bool PointerWrap::ExpectVoid(void *data, int size) {
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switch (mode) {
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case MODE_READ: if (memcmp(data, *ptr, size) != 0) return false; break;
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case MODE_WRITE: memcpy(*ptr, data, size); break;
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case MODE_MEASURE: break; // MODE_MEASURE - don't need to do anything
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case MODE_VERIFY:
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for (int i = 0; i < size; i++)
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_dbg_assert_msg_(COMMON, ((u8*)data)[i] == (*ptr)[i], "Savestate verification failure: %d (0x%X) (at %p) != %d (0x%X) (at %p).\n", ((u8*)data)[i], ((u8*)data)[i], &((u8*)data)[i], (*ptr)[i], (*ptr)[i], &(*ptr)[i]);
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break;
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default: break; // throw an error?
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}
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(*ptr) += size;
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return true;
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}
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void PointerWrap::DoVoid(void *data, int size) {
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switch (mode) {
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case MODE_READ: memcpy(data, *ptr, size); break;
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case MODE_WRITE: memcpy(*ptr, data, size); break;
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case MODE_MEASURE: break; // MODE_MEASURE - don't need to do anything
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case MODE_VERIFY:
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for (int i = 0; i < size; i++)
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_dbg_assert_msg_(COMMON, ((u8*)data)[i] == (*ptr)[i], "Savestate verification failure: %d (0x%X) (at %p) != %d (0x%X) (at %p).\n", ((u8*)data)[i], ((u8*)data)[i], &((u8*)data)[i], (*ptr)[i], (*ptr)[i], &(*ptr)[i]);
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break;
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default: break; // throw an error?
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}
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(*ptr) += size;
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}
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void PointerWrap::Do(std::string &x) {
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int stringLen = (int)x.length() + 1;
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Do(stringLen);
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switch (mode) {
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case MODE_READ: x = (char*)*ptr; break;
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case MODE_WRITE: memcpy(*ptr, x.c_str(), stringLen); break;
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case MODE_MEASURE: break;
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case MODE_VERIFY: _dbg_assert_msg_(COMMON, !strcmp(x.c_str(), (char*)*ptr), "Savestate verification failure: \"%s\" != \"%s\" (at %p).\n", x.c_str(), (char*)*ptr, ptr); break;
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}
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(*ptr) += stringLen;
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}
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void PointerWrap::Do(std::wstring &x) {
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int stringLen = sizeof(wchar_t)*((int)x.length() + 1);
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Do(stringLen);
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switch (mode) {
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case MODE_READ: x = (wchar_t*)*ptr; break;
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case MODE_WRITE: memcpy(*ptr, x.c_str(), stringLen); break;
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case MODE_MEASURE: break;
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case MODE_VERIFY: _dbg_assert_msg_(COMMON, x == (wchar_t*)*ptr, "Savestate verification failure: \"%ls\" != \"%ls\" (at %p).\n", x.c_str(), (wchar_t*)*ptr, ptr); break;
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}
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(*ptr) += stringLen;
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}
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struct standard_tm {
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int tm_sec;
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int tm_min;
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int tm_hour;
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int tm_mday;
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int tm_mon;
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int tm_year;
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int tm_wday;
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int tm_yday;
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int tm_isdst;
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};
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void PointerWrap::Do(tm &t) {
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// We savestate this separately because some platforms use extra data at the end.
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// However, old files may have the native tm in them.
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// Since the first value in the struct is 0-59, we save a funny value and check for it.
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// If our funny value ('tm' 0x1337) exists, it's a new version savestate.
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int funnyValue = 0x13376D74;
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if (ExpectVoid(&funnyValue, sizeof(funnyValue))) {
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standard_tm stm;
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if (mode == MODE_READ) {
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// Null out the extra members, e.g. tm_gmtoff or tm_zone.
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memset(&t, 0, sizeof(t));
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} else {
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memcpy(&stm, &t, sizeof(stm));
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}
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DoVoid((void *)&stm, sizeof(stm));
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memcpy(&t, &stm, sizeof(stm));
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} else {
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DoVoid((void *)&t, sizeof(t));
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}
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}
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void PointerWrap::DoMarker(const char *prevName, u32 arbitraryNumber) {
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u32 cookie = arbitraryNumber;
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Do(cookie);
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if (mode == PointerWrap::MODE_READ && cookie != arbitraryNumber) {
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PanicAlertT("Error: After \"%s\", found %d (0x%X) instead of save marker %d (0x%X). Aborting savestate load...", prevName, cookie, cookie, arbitraryNumber, arbitraryNumber);
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SetError(ERROR_FAILURE);
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}
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}
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PointerWrapSection::~PointerWrapSection() {
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if (ver_ > 0) {
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p_.DoMarker(title_);
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}
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}
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CChunkFileReader::Error CChunkFileReader::LoadFile(const std::string& _rFilename, int _Revision, const char *_VersionString, u8 *&_buffer, size_t &sz, std::string *_failureReason) {
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INFO_LOG(COMMON, "ChunkReader: Loading %s" , _rFilename.c_str());
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if (!File::Exists(_rFilename)) {
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*_failureReason = "LoadStateDoesntExist";
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ERROR_LOG(COMMON, "ChunkReader: File doesn't exist");
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return ERROR_BAD_FILE;
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}
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// Check file size
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const u64 fileSize = File::GetSize(_rFilename);
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static const u64 headerSize = sizeof(SChunkHeader);
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if (fileSize < headerSize)
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{
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ERROR_LOG(COMMON, "ChunkReader: File too small");
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return ERROR_BAD_FILE;
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}
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File::IOFile pFile(_rFilename, "rb");
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if (!pFile)
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{
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ERROR_LOG(COMMON, "ChunkReader: Can't open file for reading");
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return ERROR_BAD_FILE;
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}
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// read the header
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SChunkHeader header;
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if (!pFile.ReadArray(&header, 1))
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{
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ERROR_LOG(COMMON, "ChunkReader: Bad header size");
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return ERROR_BAD_FILE;
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}
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// Check revision
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if (header.Revision != _Revision)
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{
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ERROR_LOG(COMMON, "ChunkReader: Wrong file revision, got %d expected %d", header.Revision, _Revision);
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return ERROR_BAD_FILE;
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}
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// get size
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sz = (int)(fileSize - headerSize);
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if (header.ExpectedSize != sz)
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{
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ERROR_LOG(COMMON, "ChunkReader: Bad file size, got %d expected %d", sz, header.ExpectedSize);
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return ERROR_BAD_FILE;
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}
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// read the state
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u8 *buffer = new u8[sz];
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if (!pFile.ReadBytes(buffer, sz))
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{
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ERROR_LOG(COMMON, "ChunkReader: Error reading file");
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return ERROR_BAD_FILE;
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}
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_buffer = buffer;
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if (header.Compress) {
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u8 *uncomp_buffer = new u8[header.UncompressedSize];
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size_t uncomp_size = header.UncompressedSize;
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snappy_uncompress((const char *)buffer, sz, (char *)uncomp_buffer, &uncomp_size);
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if ((int)uncomp_size != header.UncompressedSize) {
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ERROR_LOG(COMMON, "Size mismatch: file: %i calc: %i", (int)header.UncompressedSize, (int)uncomp_size);
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return ERROR_BAD_FILE;
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}
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_buffer = uncomp_buffer;
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sz = uncomp_size;
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delete [] buffer;
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}
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return ERROR_NONE;
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}
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CChunkFileReader::Error CChunkFileReader::SaveFile(const std::string& _rFilename, int _Revision, const char *_VersionString, u8 *buffer, size_t sz) {
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INFO_LOG(COMMON, "ChunkReader: Writing %s" , _rFilename.c_str());
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File::IOFile pFile(_rFilename, "wb");
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if (!pFile)
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{
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ERROR_LOG(COMMON, "ChunkReader: Error opening file for write");
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return ERROR_BAD_FILE;
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}
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bool compress = true;
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// Create header
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SChunkHeader header;
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header.Compress = compress ? 1 : 0;
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header.Revision = _Revision;
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header.ExpectedSize = (int)sz;
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header.UncompressedSize = (int)sz;
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strncpy(header.GitVersion, _VersionString, 32);
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header.GitVersion[31] = '\0';
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// Write to file
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if (compress) {
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size_t comp_len = snappy_max_compressed_length(sz);
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u8 *compressed_buffer = new u8[comp_len];
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snappy_compress((const char *)buffer, sz, (char *)compressed_buffer, &comp_len);
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delete [] buffer;
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header.ExpectedSize = (int)comp_len;
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if (!pFile.WriteArray(&header, 1))
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{
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ERROR_LOG(COMMON, "ChunkReader: Failed writing header");
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return ERROR_BAD_FILE;
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}
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if (!pFile.WriteBytes(&compressed_buffer[0], comp_len)) {
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ERROR_LOG(COMMON, "ChunkReader: Failed writing compressed data");
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return ERROR_BAD_FILE;
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} else {
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INFO_LOG(COMMON, "Savestate: Compressed %i bytes into %i", (int)sz, (int)comp_len);
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}
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delete [] compressed_buffer;
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} else {
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if (!pFile.WriteArray(&header, 1))
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{
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ERROR_LOG(COMMON, "ChunkReader: Failed writing header");
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return ERROR_BAD_FILE;
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}
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if (!pFile.WriteBytes(&buffer[0], sz))
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{
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ERROR_LOG(COMMON, "ChunkReader: Failed writing data");
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return ERROR_BAD_FILE;
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}
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delete [] buffer;
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}
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INFO_LOG(COMMON, "ChunkReader: Done writing %s", _rFilename.c_str());
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return ERROR_NONE;
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}
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