mirror of
https://github.com/Relintai/pandemonium_engine.git
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166 lines
3.8 KiB
C
166 lines
3.8 KiB
C
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/**
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@file packet.c
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@brief ENet packet management functions
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*/
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#include <string.h>
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#define ENET_BUILDING_LIB 1
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#include "enet/enet.h"
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/** @defgroup Packet ENet packet functions
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@{
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*/
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/** Creates a packet that may be sent to a peer.
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@param data initial contents of the packet's data; the packet's data will remain uninitialized if data is NULL.
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@param dataLength size of the data allocated for this packet
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@param flags flags for this packet as described for the ENetPacket structure.
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@returns the packet on success, NULL on failure
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*/
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ENetPacket *
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enet_packet_create (const void * data, size_t dataLength, enet_uint32 flags)
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{
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ENetPacket * packet = (ENetPacket *) enet_malloc (sizeof (ENetPacket));
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if (packet == NULL)
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return NULL;
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if (flags & ENET_PACKET_FLAG_NO_ALLOCATE)
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packet -> data = (enet_uint8 *) data;
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else
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if (dataLength <= 0)
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packet -> data = NULL;
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else
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{
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packet -> data = (enet_uint8 *) enet_malloc (dataLength);
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if (packet -> data == NULL)
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{
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enet_free (packet);
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return NULL;
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}
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if (data != NULL)
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memcpy (packet -> data, data, dataLength);
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}
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packet -> referenceCount = 0;
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packet -> flags = flags;
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packet -> dataLength = dataLength;
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packet -> freeCallback = NULL;
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packet -> userData = NULL;
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return packet;
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}
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/** Destroys the packet and deallocates its data.
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@param packet packet to be destroyed
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*/
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void
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enet_packet_destroy (ENetPacket * packet)
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{
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if (packet == NULL)
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return;
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if (packet -> freeCallback != NULL)
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(* packet -> freeCallback) (packet);
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if (! (packet -> flags & ENET_PACKET_FLAG_NO_ALLOCATE) &&
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packet -> data != NULL)
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enet_free (packet -> data);
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enet_free (packet);
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}
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/** Attempts to resize the data in the packet to length specified in the
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dataLength parameter
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@param packet packet to resize
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@param dataLength new size for the packet data
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@returns 0 on success, < 0 on failure
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*/
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int
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enet_packet_resize (ENetPacket * packet, size_t dataLength)
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{
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enet_uint8 * newData;
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if (dataLength <= packet -> dataLength || (packet -> flags & ENET_PACKET_FLAG_NO_ALLOCATE))
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{
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packet -> dataLength = dataLength;
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return 0;
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}
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newData = (enet_uint8 *) enet_malloc (dataLength);
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if (newData == NULL)
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return -1;
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memcpy (newData, packet -> data, packet -> dataLength);
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enet_free (packet -> data);
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packet -> data = newData;
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packet -> dataLength = dataLength;
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return 0;
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}
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static int initializedCRC32 = 0;
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static enet_uint32 crcTable [256];
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static enet_uint32
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reflect_crc (int val, int bits)
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{
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int result = 0, bit;
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for (bit = 0; bit < bits; bit ++)
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{
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if(val & 1) result |= 1 << (bits - 1 - bit);
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val >>= 1;
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}
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return result;
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}
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static void
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initialize_crc32 (void)
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{
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int byte;
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for (byte = 0; byte < 256; ++ byte)
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{
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enet_uint32 crc = reflect_crc (byte, 8) << 24;
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int offset;
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for(offset = 0; offset < 8; ++ offset)
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{
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if (crc & 0x80000000)
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crc = (crc << 1) ^ 0x04c11db7;
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else
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crc <<= 1;
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}
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crcTable [byte] = reflect_crc (crc, 32);
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}
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initializedCRC32 = 1;
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}
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enet_uint32
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enet_crc32 (const ENetBuffer * buffers, size_t bufferCount)
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{
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enet_uint32 crc = 0xFFFFFFFF;
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if (! initializedCRC32) initialize_crc32 ();
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while (bufferCount -- > 0)
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{
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const enet_uint8 * data = (const enet_uint8 *) buffers -> data,
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* dataEnd = & data [buffers -> dataLength];
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while (data < dataEnd)
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{
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crc = (crc >> 8) ^ crcTable [(crc & 0xFF) ^ *data++];
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}
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++ buffers;
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}
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return ENET_HOST_TO_NET_32 (~ crc);
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}
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/** @} */
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