mirror of
https://github.com/alliedmodders/amxmodx.git
synced 2024-12-27 23:35:36 +03:00
514 lines
13 KiB
C
514 lines
13 KiB
C
//
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// AMX Mod X, based on AMX Mod by Aleksander Naszko ("OLO").
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// Copyright (C) The AMX Mod X Development Team.
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//
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// This software is licensed under the GNU General Public License, version 3 or higher.
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// Additional exceptions apply. For full license details, see LICENSE.txt or visit:
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// https://alliedmods.net/amxmodx-license
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#ifndef _ENGINE_STRUCTS_H_
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#define _ENGINE_STRUCTS_H_
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#include <extdll.h>
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#include <meta_api.h>
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#include <osdep.h>
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#include <FileSystem.h>
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#include <entity_state.h>
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#include <usercmd.h>
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#define MAX_CLIENTS 32
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#define MAX_EDICTS 900
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#define MAX_NAME 32
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#define MAX_LIGHTSTYLES 64
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#define MAX_PACKET_ENTITIES 256
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#define MAX_PATH_LENGTH 260
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#define MAX_LATENT 32
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#define FRAGMENT_SIZE 1400
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#define MAX_FRAGMENTS 25000
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#define MAX_EVENT_QUEUE 64
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#define MAX_FLOWS 2
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#define FLOW_OUTGOING 0
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#define FLOW_INCOMING 1
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#define MAX_KV_LEN 127 // Max key/value length (with a NULL char)
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#define MAX_INFO_STRING 256 // Key + value + 2 x slash + NULL
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#define INFO_MAX_BUFFER_VALUES 4
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#define FEVENT_ORIGIN (1<<0) // Event was invoked with stated origin
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#define FEVENT_ANGLES (1<<1) // Event was invoked with stated angles
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#define HL_MODEL_MAX 512
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#define HL_GENERIC_MAX 512
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#define HL_EVENT_MAX 256
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#define HL_SOUND_MAX 512
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#define HL_SOUND_HASHLOOKUP_SIZE (HL_SOUND_MAX * 2 - 1)
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// Authentication types
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#define AUTH_IDTYPE_UNKNOWN 0
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#define AUTH_IDTYPE_STEAM 1
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#define AUTH_IDTYPE_VALVE 2
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#define AUTH_IDTYPE_LOCAL 3
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#define NUM_BASELINES 64
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// 0 == regular, 1 == file stream
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#define MAX_STREAMS 2
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// Flow control bytes per second limits
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#define MAX_RATE 20000
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#define MIN_RATE 1000
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// Default data rate
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#define DEFAULT_RATE (9999.0f)
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// This is the packet payload without any header bytes (which are attached for actual sending)
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#define NET_MAX_PAYLOAD 3990
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typedef enum netsrc_s
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{
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NS_CLIENT,
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NS_SERVER,
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NS_MULTICAST
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} netsrc_t;
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typedef enum server_state_e
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{
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ss_dead = 0,
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ss_loading = 1,
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ss_active = 2,
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} server_state_t;
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typedef enum
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{
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NA_UNUSED,
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NA_LOOPBACK,
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NA_BROADCAST,
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NA_IP,
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NA_IPX,
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NA_BROADCAST_IPX,
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} netadrtype_t;
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typedef struct netadr_s
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{
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netadrtype_t type;
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unsigned char ip[4];
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unsigned char ipx[10];
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unsigned short port;
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} netadr_t;
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typedef struct sizebuf_s
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{
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const char* buffername;
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uint16 flags;
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byte* data;
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int maxsize;
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int cursize;
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} sizebuf_t;
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typedef struct flowstats_s
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{
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int size; // Size of message sent/received
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double time; // Time that message was sent/received
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} flowstats_t;
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typedef struct flow_s
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{
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flowstats_t stats[MAX_LATENT]; // Data for last MAX_LATENT messages
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int current; // Current message position
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double nextcompute; // Time when we should recompute k/sec data
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float kbytespersec; // Average data
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float avgkbytespersec;
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} flow_t;
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typedef struct fragbuf_s
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{
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fragbuf_s* next; // Next buffer in chain
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int bufferid; // Id of this buffer
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sizebuf_t frag_message; // Message buffer where raw data is stored
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byte frag_message_buf[FRAGMENT_SIZE]; // The actual data sits here
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qboolean isfile; // Is this a file buffer?
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qboolean isbuffer; // Is this file buffer from memory ( custom decal, etc. ).
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qboolean iscompressed;
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char filename[MAX_PATH_LENGTH]; // Name of the file to save out on remote host
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int foffset; // Offset in file from which to read data
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int size; // Size of data to read at that offset
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} fragbuf_t;
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typedef struct fragbufwaiting_s
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{
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fragbufwaiting_s* next; // Next chain in waiting list
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int fragbufcount; // Number of buffers in this chain
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fragbuf_t* fragbufs; // The actual buffers
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} fragbufwaiting_t;
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typedef struct netchan_s
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{
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netsrc_t sock; // NS_SERVER or NS_CLIENT, depending on channel.
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netadr_t remote_address; // Address this channel is talking to.
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int player_slot;
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float last_received; // For timeouts. Time last message was received.
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float connect_time; // Time when channel was connected.
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double rate; // Bandwidth choke, Bytes per second
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double cleartime; // If realtime > cleartime, free to send next packet
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// Sequencing variables
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int incoming_sequence; // Increasing count of sequence numbers
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int incoming_acknowledged; // # of last outgoing message that has been ack'd.
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int incoming_reliable_acknowledged;// Toggles T/F as reliable messages are received.
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int incoming_reliable_sequence; // single bit, maintained local
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int outgoing_sequence; // Message we are sending to remote
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int reliable_sequence; // Whether the message contains reliable payload, single bit
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int last_reliable_sequence; // Outgoing sequence number of last send that had reliable data
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void* connection_status;
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int (*pfnNetchan_Blocksize)(void *);
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sizebuf_t message; // Staging and holding areas
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byte message_buf[NET_MAX_PAYLOAD];
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int reliable_length; // Reliable message buffer. We keep adding to it until reliable is acknowledged. Then we clear it.
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byte reliable_buf[NET_MAX_PAYLOAD];
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fragbufwaiting_t* waitlist[MAX_STREAMS]; // Waiting list of buffered fragments to go onto queue. Multiple outgoing buffers can be queued in succession.
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int reliable_fragment[MAX_STREAMS]; // Is reliable waiting buf a fragment?
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unsigned int reliable_fragid[MAX_STREAMS]; // Buffer id for each waiting fragment
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fragbuf_t* fragbufs[MAX_STREAMS]; // The current fragment being set
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int fragbufcount[MAX_STREAMS]; // The total number of fragments in this stream
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short int frag_startpos[MAX_STREAMS]; // Position in outgoing buffer where frag data starts
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short int frag_length[MAX_STREAMS]; // Length of frag data in the buffer
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fragbuf_t* incomingbufs[MAX_STREAMS]; // Incoming fragments are stored here
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qboolean incomingready[MAX_STREAMS]; // Set to true when incoming data is ready
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char incomingfilename[MAX_PATH_LENGTH]; // Only referenced by the FRAG_FILE_STREAM component
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// Name of file being downloaded
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void* tempbuffer;
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int tempbuffersize;
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flow_t flow[MAX_FLOWS]; // Incoming and outgoing flow metrics
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} netchan_t;
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typedef struct packet_entities_s
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{
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int num_entities;
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unsigned char flags[32];
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entity_state_t* entities;
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} packet_entities_t;
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typedef struct client_frame_s
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{
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double senttime;
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float ping_time;
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clientdata_t clientdata;
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weapon_data_t weapondata[64];
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packet_entities_t entities;
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} client_frame_t;
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typedef struct event_args_s
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{
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int flags;
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int entindex; // Transmitted
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float origin[3];
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float angles[3];
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float velocity[3];
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int ducking;
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float fparam1;
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float fparam2;
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int iparam1;
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int iparam2;
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int bparam1;
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int bparam2;
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} event_args_t;
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struct event_info_s
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{
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unsigned short index; // 0 implies not in use
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short packet_index; // Use data from state info for entity in delta_packet . -1 implies separate info based on event
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short entity_index; // The edict this event is associated with
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float fire_time; // if non-zero, the time when the event should be fired ( fixed up on the client )
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event_args_t args;
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int flags; // Client only - Reliable or not, etc.
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};
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typedef struct event_state_s
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{
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struct event_info_s ei[MAX_EVENT_QUEUE];
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} event_state_t;
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typedef struct USERID_s
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{
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int idtype;
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uint64 m_SteamID;
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unsigned int clientip;
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} USERID_t;
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typedef struct consistency_s
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{
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char* filename;
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int issound;
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int orig_index;
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int value;
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int check_type;
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float mins[3];
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float maxs[3];
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} consistency_t;
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typedef struct event_s
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{
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unsigned short index;
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const char* filename;
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int filesize;
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const char* pszScript;
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} event_t;
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typedef struct extra_baselines_s
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{
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int number;
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int classname[NUM_BASELINES];
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entity_state_t baseline[NUM_BASELINES];
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} extra_baselines_t;
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typedef struct server_log_s
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{
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qboolean active;
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qboolean net_log_;
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netadr_t net_address_;
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void* file;
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} server_log_t;
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typedef struct server_stats_s
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{
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int num_samples;
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int at_capacity;
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int at_empty;
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float capacity_percent;
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float empty_percent;
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int minusers;
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int maxusers;
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float cumulative_occupancy;
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float occupancy;
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int num_sessions;
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float cumulative_sessiontime;
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float average_session_len;
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float cumulative_latency;
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float average_latency;
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} server_stats_t;
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typedef struct server_static_s
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{
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qboolean dll_initialized;
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struct client_s* clients;
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int maxclients;
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int maxclientslimit;
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int spawncount;
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int serverflags;
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server_log_t log;
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double next_cleartime;
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double next_sampletime;
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server_stats_t stats;
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qboolean isSecure;
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} server_static_t;
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typedef struct server_s
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{
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qboolean active;
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qboolean paused;
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qboolean loadgame;
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double time;
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double oldtime;
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int lastcheck;
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double lastchecktime;
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char name[64];
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char oldname[64];
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char startspot[64];
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char modelname[64];
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struct model_s* worldmodel;
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CRC32_t worldmapCRC;
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unsigned char clientdllmd5[16];
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resource_t resourcelist[1280];
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int num_resources;
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consistency_t consistency_list[512];
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int num_consistency;
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const char* model_precache[HL_MODEL_MAX];
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struct model_s* models[HL_MODEL_MAX];
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unsigned char model_precache_flags[HL_MODEL_MAX];
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struct event_s event_precache[HL_EVENT_MAX];
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const char* sound_precache[HL_SOUND_MAX];
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short int sound_precache_hashedlookup[HL_SOUND_HASHLOOKUP_SIZE];
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qboolean sound_precache_hashedlookup_built;
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const char* generic_precache[HL_GENERIC_MAX];
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char generic_precache_names[HL_GENERIC_MAX][64];
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int num_generic_names;
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char* lightstyles[MAX_LIGHTSTYLES];
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int num_edicts;
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int max_edicts;
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edict_t* edicts;
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struct entity_state_s* baselines;
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extra_baselines_t* instance_baselines;
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server_state_t state;
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sizebuf_t datagram;
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unsigned char datagram_buf[4000];
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sizebuf_t reliable_datagram;
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unsigned char reliable_datagram_buf[4000];
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sizebuf_t multicast;
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unsigned char multicast_buf[1024];
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sizebuf_t spectator;
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unsigned char spectator_buf[1024];
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sizebuf_t signon;
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unsigned char signon_data[32768];
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} server_t;
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typedef struct client_s
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{
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qboolean active;
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qboolean spawned;
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qboolean fully_connected;
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qboolean connected;
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qboolean uploading;
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qboolean hasusrmsgs;
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qboolean has_force_unmodified;
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netchan_t netchan;
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int chokecount;
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int delta_sequence;
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qboolean fakeclient;
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qboolean proxy;
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usercmd_t lastcmd;
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double connecttime;
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double cmdtime;
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double ignorecmdtime;
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float latency;
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float packet_loss;
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double localtime;
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double nextping;
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double svtimebase;
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sizebuf_t datagram;
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byte datagram_buf[4000];
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double connection_started;
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double next_messagetime;
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double next_messageinterval;
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qboolean send_message;
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qboolean skip_message;
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client_frame_t* frames;
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event_state_t events;
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edict_t* edict;
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const edict_t* pViewEntity;
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int userid;
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USERID_t network_userid;
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char userinfo[MAX_INFO_STRING];
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qboolean sendinfo;
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float sendinfo_time;
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char hashedcdkey[64];
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char name[32];
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int topcolor;
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int bottomcolor;
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int entityId;
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resource_t resourcesonhand;
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resource_t resourcesneeded;
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FileHandle_t upload;
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qboolean uploaddoneregistering;
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customization_t customdata;
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int crcValue;
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int lw;
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int lc;
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char physinfo[MAX_INFO_STRING];
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qboolean m_bLoopback;
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uint32 m_VoiceStreams[2];
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double m_lastvoicetime;
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int m_sendrescount;
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} client_t;
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#endif //_ENGINE_STRUCTS_H_
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