Minimap fixes
* Fix infinite loop while loading minimap * Fix errors in FileStream class * Remake OTCM map format * Fixes in UIMap
This commit is contained in:
parent
4515e360e4
commit
fcd6d3cfe9
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@ -37,10 +37,9 @@ function Minimap.init()
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Keyboard.bindKeyDown('Ctrl+M', Minimap.toggle)
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minimapButton = TopMenu.addGameToggleButton('minimapButton', tr('Minimap') .. ' (Ctrl+M)', 'minimap.png', Minimap.toggle)
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minimapButton:setOn(false)
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minimapButton:setOn(true)
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minimapWindow = loadUI('minimap.otui', GameInterface.getRightPanel())
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minimapWindow:setOn(true)
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minimapWidget = minimapWindow:recursiveGetChildById('minimap')
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minimapWidget:setAutoViewMode(false)
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@ -48,9 +48,8 @@ void FileStream::cache()
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PHYSFS_seek(m_fileHandle, 0);
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int size = PHYSFS_fileLength(m_fileHandle);
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m_data.resize(size);
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int res = PHYSFS_read(m_fileHandle, &m_data[0], size, 1);
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if(res == -1)
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throwError("unable to read file data");
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if(PHYSFS_read(m_fileHandle, &m_data[0], size, 1) == -1)
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throwError("unable to read file data", true);
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close();
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}
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@ -59,7 +58,7 @@ void FileStream::close()
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{
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if(m_fileHandle) {
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if(!PHYSFS_close(m_fileHandle))
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throwError("close failed");
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throwError("close failed", true);
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m_fileHandle = nullptr;
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} else {
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m_data.clear();
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@ -70,7 +69,7 @@ void FileStream::close()
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void FileStream::flush()
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{
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if(m_fileHandle && PHYSFS_flush(m_fileHandle) == 0)
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throwError("flush failed");
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throwError("flush failed", true);
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}
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int FileStream::read(void *buffer, uint32 size, uint32 nmemb)
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@ -78,7 +77,7 @@ int FileStream::read(void *buffer, uint32 size, uint32 nmemb)
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if(m_fileHandle) {
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int res = PHYSFS_read(m_fileHandle, buffer, size, nmemb);
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if(res == -1)
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throwError("read failed");
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throwError("read failed", true);
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return res;
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} else {
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uint maxReadPos = m_data.size()-1;
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@ -95,17 +94,17 @@ int FileStream::read(void *buffer, uint32 size, uint32 nmemb)
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}
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}
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void FileStream::write(void *buffer, uint32 count)
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void FileStream::write(const void *buffer, uint32 count)
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{
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if(PHYSFS_write(m_fileHandle, buffer, 1, count) != count)
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throwError("write failed");
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throwError("write failed", true);
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}
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void FileStream::seek(uint32 pos)
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{
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if(m_fileHandle) {
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if(!PHYSFS_seek(m_fileHandle, pos))
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throwError("seek failed");
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throwError("seek failed", true);
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} else {
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if(pos > m_data.size())
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throwError("seek failed");
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@ -139,7 +138,7 @@ uint8 FileStream::getU8()
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uint8 v = 0;
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if(m_fileHandle) {
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if(PHYSFS_read(m_fileHandle, &v, 1, 1) != 1)
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throwError("read failed");
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throwError("read failed", true);
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} else {
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if(m_pos+1 > m_data.size())
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throwError("read failed");
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@ -155,7 +154,7 @@ uint16 FileStream::getU16()
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uint16 v = 0;
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if(m_fileHandle) {
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if(PHYSFS_readULE16(m_fileHandle, &v) == 0)
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throwError("read failed");
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throwError("read failed", true);
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} else {
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if(m_pos+2 > m_data.size())
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throwError("read failed");
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@ -171,7 +170,7 @@ uint32 FileStream::getU32()
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uint32 v = 0;
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if(m_fileHandle) {
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if(PHYSFS_readULE32(m_fileHandle, &v) == 0)
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throwError("read failed");
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throwError("read failed", true);
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} else {
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if(m_pos+4 > m_data.size())
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throwError("read failed");
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@ -187,7 +186,7 @@ uint64 FileStream::getU64()
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uint64 v = 0;
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if(m_fileHandle) {
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if(PHYSFS_readULE64(m_fileHandle, (PHYSFS_uint64*)&v) == 0)
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throwError("read failed");
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throwError("read failed", true);
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} else {
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if(m_pos+8 > m_data.size())
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throwError("read failed");
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@ -200,12 +199,12 @@ uint64 FileStream::getU64()
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std::string FileStream::getString()
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{
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std::string str;
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int len = getU16();
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uint16 len = getU16();
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if(len > 0 && len < 8192) {
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char buffer[8192];
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if(m_fileHandle) {
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if(PHYSFS_read(m_fileHandle, buffer, 1, len) == 0)
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throwError("read failed");
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throwError("read failed", true);
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else
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str = std::string(buffer, len);
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} else {
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@ -217,42 +216,45 @@ std::string FileStream::getString()
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str = std::string((char*)&m_data[m_pos], len);
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m_pos += len;
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}
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} else {
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}
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} else if(len != 0)
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throwError("read failed because string is too big");
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return str;
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}
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void FileStream::addU8(uint8 v)
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{
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if(PHYSFS_write(m_fileHandle, &v, 1, 1) != 1)
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throwError("write failed");
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throwError("write failed", true);
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}
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void FileStream::addU16(uint8 v)
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void FileStream::addU16(uint16 v)
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{
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if(PHYSFS_writeULE16(m_fileHandle, v) == 0)
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throwError("write failed");
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throwError("write failed", true);
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}
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void FileStream::addU32(uint8 v)
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void FileStream::addU32(uint32 v)
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{
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if(PHYSFS_writeULE32(m_fileHandle, v) == 0)
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throwError("write failed");
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throwError("write failed", true);
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}
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void FileStream::addU64(uint8 v)
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void FileStream::addU64(uint64 v)
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{
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if(PHYSFS_writeULE64(m_fileHandle, v) == 0)
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throwError("write failed");
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throwError("write failed", true);
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}
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void FileStream::throwError(const std::string& message)
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void FileStream::addString(const std::string& v)
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{
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addU16(v.length());
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write(v.c_str(), v.length());
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}
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void FileStream::throwError(const std::string& message, bool physfsError)
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{
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std::string completeMessage = stdext::format("in file '%s': %s", m_name, message);
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if(m_fileHandle) {
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const char *errorMessage = PHYSFS_getLastError();
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if(errorMessage)
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completeMessage += std::string(": ") + errorMessage;
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}
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if(physfsError)
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completeMessage += std::string(": ") + PHYSFS_getLastError();
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stdext::throw_exception(completeMessage);
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}
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@ -38,7 +38,7 @@ public:
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void cache();
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void close();
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void flush();
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void write(void *buffer, uint count);
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void write(const void *buffer, uint count);
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int read(void *buffer, uint size, uint nmemb = 1);
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void seek(uint pos);
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void skip(uint len);
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@ -53,13 +53,14 @@ public:
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std::string getString();
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void addU8(uint8 v);
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void addU16(uint8 v);
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void addU32(uint8 v);
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void addU64(uint8 v);
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void addU16(uint16 v);
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void addU32(uint32 v);
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void addU64(uint64 v);
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void addString(const std::string& v);
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private:
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void checkWrite();
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void throwError(const std::string& message);
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void throwError(const std::string& message, bool physfsError = false);
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std::string m_name;
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PHYSFS_File *m_fileHandle;
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@ -196,6 +196,11 @@ void Item::setOtbId(uint16 id)
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m_id = m_datType->getId();
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}
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bool Item::isValid()
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{
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return g_things.isValidDatId(m_id, DatItemCategory);
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}
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bool Item::unserializeAttr(FileStreamPtr fin)
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{
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uint8 attrType;
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@ -95,6 +95,7 @@ public:
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int getCount() { return m_countOrSubType; }
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uint32 getId() { return m_id; }
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std::string getName() { return m_name; }
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bool isValid();
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ItemPtr asItem() { return std::static_pointer_cast<Item>(shared_from_this()); }
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bool isItem() { return true; }
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@ -104,8 +105,6 @@ public:
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bool unserializeItemNode(FileStreamPtr fin, uint8) { return unserializeAttr(fin); }
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void readAttr(AttrTypes_t attrType, FileStreamPtr fin);
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bool isMoveable() { return false; }
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private:
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uint16 m_id;
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uint8 m_countOrSubType;
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@ -284,61 +284,112 @@ bool Map::loadOtbm(const std::string& fileName)
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bool Map::loadOtcm(const std::string& fileName)
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{
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if(!g_resources.fileExists(fileName)) {
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g_logger.error(stdext::format("Unable to load map '%s'", fileName));
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try {
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FileStreamPtr fin = g_resources.openFile(fileName);
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uint32 signature = fin->getU32();
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if(signature != OTCM_SIGNATURE)
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stdext::throw_exception("invalid otcm file");
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uint16 version = fin->getU16();
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switch(version) {
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case 1: {
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fin->getString(); // description
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uint32 datSignature = fin->getU32();
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fin->getU16(); // protocol version
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fin->getString(); // world name
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if(datSignature != g_things.getDatSignature())
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g_logger.warning("otcm map loaded is was created with a different dat signature");
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break;
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}
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default:
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stdext::throw_exception("otcm version not supported");
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break;
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}
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while(true) {
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Position pos;
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pos.x = fin->getU16();
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pos.y = fin->getU16();
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pos.z = fin->getU8();
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// end of file
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if(!pos.isValid())
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break;
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while(true) {
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uint16 id = fin->getU16();
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// end of tile
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if(id == 0xFFFF)
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break;
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uint8 countOrSubType = fin->getU8();
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ItemPtr item = Item::create(id);
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if(item->isStackable() || item->isFluidContainer() || item->isFluid())
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item->setCountOrSubType(countOrSubType);
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if(item->isValid())
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addThing(item, pos, 255);
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}
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}
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fin->close();
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return true;
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} catch(stdext::exception& e) {
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g_logger.error(stdext::format("failed to load OTCM map: %s", e.what()));
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return false;
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}
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std::stringstream in;
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g_resources.loadFile(fileName, in);
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while(!in.eof()) {
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Position pos;
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in.read((char*)&pos, sizeof(pos));
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uint16 id;
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in.read((char*)&id, sizeof(id));
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while(id != 0xFFFF) {
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ItemPtr item = Item::create(id);
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if(item->isStackable() || item->isFluidContainer() || item->isFluid()) {
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uint8 countOrSubType;
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in.read((char*)&countOrSubType, sizeof(countOrSubType));
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item->setCountOrSubType(countOrSubType);
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}
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addThing(item, pos, 255);
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in.read((char*)&id, sizeof(id));
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}
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}
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return true;
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}
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void Map::saveOtcm(const std::string& fileName)
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{
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std::stringstream out;
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try {
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FileStreamPtr fin = g_resources.createFile(fileName);
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uint16 id;
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for(auto& pair : m_tiles) {
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Position pos = pair.first;
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TilePtr tile = pair.second;
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if(!tile || tile->isEmpty())
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continue;
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out.write((char*)&pos, sizeof(pos));
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for(const ThingPtr& thing : tile->getThings()) {
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if(ItemPtr item = thing->asItem()) {
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id = item->getId();
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out.write((char*)&id, sizeof(id));
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if(item->isStackable() || item->isFluidContainer() || item->isFluid()) {
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uint8 countOrSubType = item->getCountOrSubType();
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out.write((char*)&countOrSubType, sizeof(countOrSubType));
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}
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fin->addU32(OTCM_SIGNATURE);
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fin->addU16(OTCM_VERSION);
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fin->addString("OTCM 1.0");
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fin->addU32(g_things.getDatSignature());
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fin->addU16(g_game.getProtocolVersion());
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fin->addString(g_game.getWorldName());
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for(auto& pair : m_tiles) {
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TilePtr tile = pair.second;
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if(!tile || tile->isEmpty())
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continue;
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Position pos = pair.first;
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fin->addU16(pos.x);
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fin->addU16(pos.y);
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fin->addU8(pos.z);
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const auto& list = tile->getThings();
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auto first = std::find_if(list.begin(), list.end(), [](const ThingPtr& thing) { return thing->isItem(); });
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for(auto it = first, end = list.end(); it != end; ++it) {
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ItemPtr item = (*it)->asItem();
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fin->addU16(item->getId());
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fin->addU8(item->getCountOrSubType());
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}
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}
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}
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id = 0xFFFF;
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out.write((char*)&id, sizeof(id));
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g_resources.saveFile(fileName, out);
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// end of tile
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fin->addU16(0xFFFF);
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}
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// end of file
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Position invalidPos;
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fin->addU16(invalidPos.x);
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fin->addU16(invalidPos.y);
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fin->addU8(invalidPos.z);
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fin->flush();
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fin->close();
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} catch(stdext::exception& e) {
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g_logger.error(stdext::format("failed to save OTCM map: %s", e.what()));
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}
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}
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void Map::clean()
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@ -582,6 +633,7 @@ std::vector<CreaturePtr> Map::getSpectatorsInRangeEx(const Position& centerPos,
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maxZRange = Otc::MAX_Z;
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}
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//TODO: optimize
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//TODO: get creatures from other floors corretly
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//TODO: delivery creatures in distance order
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@ -75,6 +75,11 @@ enum OTBM_NodeTypes_t
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OTBM_WAYPOINT = 16
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};
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enum {
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OTCM_SIGNATURE = 0x12345678,
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OTCM_VERSION = 1,
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};
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//@bindsingleton g_map
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class Map
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{
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@ -253,6 +253,16 @@ ThingPtr Tile::getTopThing()
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return m_things[m_things.size() - 1];
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}
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std::vector<ItemPtr> Tile::getItems()
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{
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std::vector<ItemPtr> items;
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for(const ThingPtr& thing : m_things) {
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if(ItemPtr item = thing->asItem())
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items.push_back(item);
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}
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return items;
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}
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std::vector<CreaturePtr> Tile::getCreatures()
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{
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std::vector<CreaturePtr> creatures;
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@ -78,6 +78,7 @@ public:
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const Position& getPosition() { return m_position; }
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int getDrawElevation() { return m_drawElevation; }
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std::vector<ItemPtr> getItems();
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std::vector<CreaturePtr> getCreatures();
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const std::vector<ThingPtr>& getThings() { return m_things; }
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ItemPtr getGround();
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@ -151,9 +151,14 @@ void UIMap::onGeometryChange(const Rect& oldRect, const Rect& newRect)
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void UIMap::updateVisibleDimension()
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{
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int dimensionHeight = m_zoom;
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float ratio = 1;
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if(!m_mapRect.isEmpty())
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ratio = m_mapRect.size().ratio();
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if(dimensionHeight % 2 == 0)
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dimensionHeight += 1;
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int dimensionWidth = m_zoom * m_mapRect.size().ratio();
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int dimensionWidth = m_zoom * ratio;
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if(dimensionWidth % 2 == 0)
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dimensionWidth += 1;
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