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/*
Minetest
Copyright (C) 2013 celeron55, Perttu Ahola <celeron55@gmail.com>

This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version.

This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU Lesser General Public License for more details.

You should have received a copy of the GNU Lesser General Public License along
with this program; if not, write to the Free Software Foundation, Inc.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/

#include "serialization.h"

#include "util/serialize.h"
#ifdef _WIN32
	#define ZLIB_WINAPI
#endif
#include "zlib.h"

/* report a zlib or i/o error */
void zerr(int ret)
{   
    dstream<<"zerr: ";
    switch (ret) {
    case Z_ERRNO:
        if (ferror(stdin))
            dstream<<"error reading stdin"<<std::endl;
        if (ferror(stdout))
            dstream<<"error writing stdout"<<std::endl;
        break;
    case Z_STREAM_ERROR:
        dstream<<"invalid compression level"<<std::endl;
        break;
    case Z_DATA_ERROR:
        dstream<<"invalid or incomplete deflate data"<<std::endl;
        break;
    case Z_MEM_ERROR:
        dstream<<"out of memory"<<std::endl;
        break;
    case Z_VERSION_ERROR:
        dstream<<"zlib version mismatch!"<<std::endl;
		break;
	default:
		dstream<<"return value = "<<ret<<std::endl;
    }
}

void compressZlib(SharedBuffer<u8> data, std::ostream &os)
{
	z_stream z;
	const s32 bufsize = 16384;
	char output_buffer[bufsize];
	int status = 0;
	int ret;

	z.zalloc = Z_NULL;
	z.zfree = Z_NULL;
	z.opaque = Z_NULL;

	ret = deflateInit(&z, -1);
	if(ret != Z_OK)
		throw SerializationError("compressZlib: deflateInit failed");
	
	// Point zlib to our input buffer
	z.next_in = (Bytef*)&data[0];
	z.avail_in = data.getSize();
	// And get all output
	for(;;)
	{
		z.next_out = (Bytef*)output_buffer;
		z.avail_out = bufsize;
		
		status = deflate(&z, Z_FINISH);
		if(status == Z_NEED_DICT || status == Z_DATA_ERROR
				|| status == Z_MEM_ERROR)
		{
			zerr(status);
			throw SerializationError("compressZlib: deflate failed");
		}
		int count = bufsize - z.avail_out;
		if(count)
			os.write(output_buffer, count);
		// This determines zlib has given all output
		if(status == Z_STREAM_END)
			break;
	}

	deflateEnd(&z);

}

void compressZlib(const std::string &data, std::ostream &os)
{
	SharedBuffer<u8> databuf((u8*)data.c_str(), data.size());
	compressZlib(databuf, os);
}

void decompressZlib(std::istream &is, std::ostream &os)
{
	z_stream z;
	const s32 bufsize = 16384;
	char input_buffer[bufsize];
	char output_buffer[bufsize];
	int status = 0;
	int ret;
	int bytes_read = 0;
	int input_buffer_len = 0;

	z.zalloc = Z_NULL;
	z.zfree = Z_NULL;
	z.opaque = Z_NULL;

	ret = inflateInit(&z);
	if(ret != Z_OK)
		throw SerializationError("dcompressZlib: inflateInit failed");
	
	z.avail_in = 0;
	
	//dstream<<"initial fail="<<is.fail()<<" bad="<<is.bad()<<std::endl;

	for(;;)
	{
		z.next_out = (Bytef*)output_buffer;
		z.avail_out = bufsize;

		if(z.avail_in == 0)
		{
			z.next_in = (Bytef*)input_buffer;
			input_buffer_len = is.readsome(input_buffer, bufsize);
			z.avail_in = input_buffer_len;
			//dstream<<"read fail="<<is.fail()<<" bad="<<is.bad()<<std::endl;
		}
		if(z.avail_in == 0)
		{
			//dstream<<"z.avail_in == 0"<<std::endl;
			break;
		}
			
		//dstream<<"1 z.avail_in="<<z.avail_in<<std::endl;
		status = inflate(&z, Z_NO_FLUSH);
		//dstream<<"2 z.avail_in="<<z.avail_in<<std::endl;
		bytes_read += is.gcount() - z.avail_in;
		//dstream<<"bytes_read="<<bytes_read<<std::endl;

		if(status == Z_NEED_DICT || status == Z_DATA_ERROR
				|| status == Z_MEM_ERROR)
		{
			zerr(status);
			throw SerializationError("decompressZlib: inflate failed");
		}
		int count = bufsize - z.avail_out;
		//dstream<<"count="<<count<<std::endl;
		if(count)
			os.write(output_buffer, count);
		if(status == Z_STREAM_END)
		{
			//dstream<<"Z_STREAM_END"<<std::endl;
			
			//dstream<<"z.avail_in="<<z.avail_in<<std::endl;
			//dstream<<"fail="<<is.fail()<<" bad="<<is.bad()<<std::endl;
			// Unget all the data that inflate didn't take
			for(u32 i=0; i < z.avail_in; i++)
			{
				is.unget();
				if(is.fail() || is.bad())
				{
					dstream<<"unget #"<<i<<" failed"<<std::endl;
					dstream<<"fail="<<is.fail()<<" bad="<<is.bad()<<std::endl;
					throw SerializationError("decompressZlib: unget failed");
				}
			}
			
			break;
		}
	}

	inflateEnd(&z);
}

void compress(SharedBuffer<u8> data, std::ostream &os, u8 version)
{
	if(version >= 11)
	{
		compressZlib(data, os);
		return;
	}

	if(data.getSize() == 0)
		return;
	
	// Write length (u32)

	u8 tmp[4];
	writeU32(tmp, data.getSize());
	os.write((char*)tmp, 4);
	
	// We will be writing 8-bit pairs of more_count and byte
	u8 more_count = 0;
	u8 current_byte = data[0];
	for(u32 i=1; i<data.getSize(); i++)
	{
		if(
			data[i] != current_byte
			|| more_count == 255
		)
		{
			// write count and byte
			os.write((char*)&more_count, 1);
			os.write((char*)&current_byte, 1);
			more_count = 0;
			current_byte = data[i];
		}
		else
		{
			more_count++;
		}
	}
	// write count and byte
	os.write((char*)&more_count, 1);
	os.write((char*)&current_byte, 1);
}

void decompress(std::istream &is, std::ostream &os, u8 version)
{
	if(version >= 11)
	{
		decompressZlib(is, os);
		return;
	}

	// Read length (u32)

	u8 tmp[4];
	is.read((char*)tmp, 4);
	u32 len = readU32(tmp);
	
	// We will be reading 8-bit pairs of more_count and byte
	u32 count = 0;
	for(;;)
	{
		u8 more_count=0;
		u8 byte=0;

		is.read((char*)&more_count, 1);
		
		is.read((char*)&byte, 1);

		if(is.eof())
			throw SerializationError("decompress: stream ended halfway");

		for(s32 i=0; i<(u16)more_count+1; i++)
			os.write((char*)&byte, 1);

		count += (u16)more_count+1;

		if(count == len)
			break;
	}
}


int max = sched_get_priority_max(policy); sparam.sched_priority = min + prio * (max - min) / THREAD_PRIORITY_HIGHEST; return pthread_setschedparam(tid, policy, &sparam) == 0; #endif } /* Path mangler */ // Default to RUN_IN_PLACE style relative paths std::string path_share = ".."; std::string path_user = ".."; std::string getDataPath(const char *subpath) { return path_share + DIR_DELIM + subpath; } void pathRemoveFile(char *path, char delim) { // Remove filename and path delimiter int i; for(i = strlen(path)-1; i>=0; i--) { if(path[i] == delim) break; } path[i] = 0; } bool detectMSVCBuildDir(char *c_path) { std::string path(c_path); const char *ends[] = {"bin\\Release", "bin\\Build", NULL}; return (removeStringEnd(path, ends) != ""); } std::string get_sysinfo() { #ifdef _WIN32 OSVERSIONINFO osvi; std::ostringstream oss; std::string tmp; ZeroMemory(&osvi, sizeof(OSVERSIONINFO)); osvi.dwOSVersionInfoSize = sizeof(OSVERSIONINFO); GetVersionEx(&osvi); tmp = osvi.szCSDVersion; std::replace(tmp.begin(), tmp.end(), ' ', '_'); oss << "Windows/" << osvi.dwMajorVersion << "." << osvi.dwMinorVersion; if(osvi.szCSDVersion[0]) oss << "-" << tmp; oss << " "; #ifdef _WIN64 oss << "x86_64"; #else BOOL is64 = FALSE; if(IsWow64Process(GetCurrentProcess(), &is64) && is64) oss << "x86_64"; // 32-bit app on 64-bit OS else oss << "x86"; #endif return oss.str(); #else struct utsname osinfo; uname(&osinfo); return std::string(osinfo.sysname) + "/" + osinfo.release + " " + osinfo.machine; #endif } void initializePaths() { #if RUN_IN_PLACE /* Use relative paths if RUN_IN_PLACE */ infostream<<"Using relative paths (RUN_IN_PLACE)"<<std::endl; /* Windows */ #if defined(_WIN32) const DWORD buflen = 1000; char buf[buflen]; DWORD len; // Find path of executable and set path_share relative to it len = GetModuleFileName(GetModuleHandle(NULL), buf, buflen); assert(len < buflen); pathRemoveFile(buf, '\\'); if(detectMSVCBuildDir(buf)){ infostream<<"MSVC build directory detected"<<std::endl; path_share = std::string(buf) + "\\..\\.."; path_user = std::string(buf) + "\\..\\.."; } else{ path_share = std::string(buf) + "\\.."; path_user = std::string(buf) + "\\.."; } /* Linux */ #elif defined(linux) char buf[BUFSIZ]; memset(buf, 0, BUFSIZ); // Get path to executable assert(readlink("/proc/self/exe", buf, BUFSIZ-1) != -1); pathRemoveFile(buf, '/'); path_share = std::string(buf) + "/.."; path_user = std::string(buf) + "/.."; /* OS X */ #elif defined(__APPLE__) //https://developer.apple.com/library/mac/#documentation/Darwin/Reference/ManPages/man3/dyld.3.html //TODO: Test this code char buf[BUFSIZ]; uint32_t len = sizeof(buf); assert(_NSGetExecutablePath(buf, &len) != -1); pathRemoveFile(buf, '/'); path_share = std::string(buf) + "/.."; path_user = std::string(buf) + "/.."; /* FreeBSD */ #elif defined(__FreeBSD__) int mib[4]; char buf[BUFSIZ]; size_t len = sizeof(buf); mib[0] = CTL_KERN; mib[1] = KERN_PROC; mib[2] = KERN_PROC_PATHNAME; mib[3] = -1; assert(sysctl(mib, 4, buf, &len, NULL, 0) != -1); pathRemoveFile(buf, '/'); path_share = std::string(buf) + "/.."; path_user = std::string(buf) + "/.."; #else //TODO: Get path of executable. This assumes working directory is bin/ dstream<<"WARNING: Relative path not properly supported on this platform" <<std::endl; /* scriptapi no longer allows paths that start with "..", so assuming that the current working directory is bin/, strip off the last component. */ char *cwd = getcwd(NULL, 0); pathRemoveFile(cwd, '/'); path_share = std::string(cwd); path_user = std::string(cwd); #endif #else // RUN_IN_PLACE /* Use platform-specific paths otherwise */ infostream<<"Using system-wide paths (NOT RUN_IN_PLACE)"<<std::endl; /* Windows */ #if defined(_WIN32) const DWORD buflen = 1000; char buf[buflen]; DWORD len; // Find path of executable and set path_share relative to it len = GetModuleFileName(GetModuleHandle(NULL), buf, buflen); assert(len < buflen); pathRemoveFile(buf, '\\'); // Use ".\bin\.." path_share = std::string(buf) + "\\.."; // Use "C:\Documents and Settings\user\Application Data\<PROJECT_NAME>" len = GetEnvironmentVariable("APPDATA", buf, buflen); assert(len < buflen); path_user = std::string(buf) + DIR_DELIM + PROJECT_NAME; /* Linux */ #elif defined(linux) // Get path to executable std::string bindir = ""; { char buf[BUFSIZ]; memset(buf, 0, BUFSIZ); if (readlink("/proc/self/exe", buf, BUFSIZ-1) == -1) { errorstream << "Unable to read bindir "<< std::endl; #ifndef __ANDROID__ assert("Unable to read bindir" == 0); #endif } else { pathRemoveFile(buf, '/'); bindir = buf; } } // Find share directory from these. // It is identified by containing the subdirectory "builtin". std::list<std::string> trylist; std::string static_sharedir = STATIC_SHAREDIR; if(static_sharedir != "" && static_sharedir != ".") trylist.push_back(static_sharedir); trylist.push_back( bindir + DIR_DELIM + ".." + DIR_DELIM + "share" + DIR_DELIM + PROJECT_NAME); trylist.push_back(bindir + DIR_DELIM + ".."); #ifdef __ANDROID__ trylist.push_back(path_user); #endif for(std::list<std::string>::const_iterator i = trylist.begin(); i != trylist.end(); i++) { const std::string &trypath = *i; if(!fs::PathExists(trypath) || !fs::PathExists(trypath + DIR_DELIM + "builtin")){ dstream<<"WARNING: system-wide share not found at \"" <<trypath<<"\""<<std::endl; continue; } // Warn if was not the first alternative if(i != trylist.begin()){ dstream<<"WARNING: system-wide share found at \"" <<trypath<<"\""<<std::endl; } path_share = trypath; break; } #ifndef __ANDROID__ path_user = std::string(getenv("HOME")) + DIR_DELIM + "." + PROJECT_NAME; #endif /* OS X */ #elif defined(__APPLE__) // Code based on // http://stackoverflow.com/questions/516200/relative-paths-not-working-in-xcode-c CFBundleRef main_bundle = CFBundleGetMainBundle(); CFURLRef resources_url = CFBundleCopyResourcesDirectoryURL(main_bundle); char path[PATH_MAX]; if(CFURLGetFileSystemRepresentation(resources_url, TRUE, (UInt8 *)path, PATH_MAX)) { dstream<<"Bundle resource path: "<<path<<std::endl; //chdir(path); path_share = std::string(path) + DIR_DELIM + "share"; } else { // error! dstream<<"WARNING: Could not determine bundle resource path"<<std::endl; } CFRelease(resources_url); path_user = std::string(getenv("HOME")) + "/Library/Application Support/" + PROJECT_NAME; #else // FreeBSD, and probably many other POSIX-like systems. path_share = STATIC_SHAREDIR; path_user = std::string(getenv("HOME")) + DIR_DELIM + "." + PROJECT_NAME; #endif #endif // RUN_IN_PLACE } static irr::IrrlichtDevice* device; void initIrrlicht(irr::IrrlichtDevice * _device) { device = _device; } #ifndef SERVER v2u32 getWindowSize() { return device->getVideoDriver()->getScreenSize(); } #ifndef __ANDROID__ float getDisplayDensity() { return g_settings->getFloat("screen_dpi")/96.0; } v2u32 getDisplaySize() { IrrlichtDevice *nulldevice = createDevice(video::EDT_NULL); core::dimension2d<u32> deskres = nulldevice->getVideoModeList()->getDesktopResolution(); nulldevice -> drop(); return deskres; } #endif #endif } //namespace porting