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ngx_rtmp.h
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ngx_rtmp.h
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/*
* Copyright (c) 2012 Roman Arutyunyan
*/
#ifndef _NGX_RTMP_H_INCLUDED_
#define _NGX_RTMP_H_INCLUDED_
#include <ngx_config.h>
#include <ngx_core.h>
#include <ngx_event.h>
#include <ngx_event_connect.h>
typedef struct {
void **main_conf;
void **srv_conf;
} ngx_rtmp_conf_ctx_t;
typedef struct {
u_char sockaddr[NGX_SOCKADDRLEN];
socklen_t socklen;
/* server ctx */
ngx_rtmp_conf_ctx_t *ctx;
unsigned bind:1;
unsigned wildcard:1;
#if (NGX_HAVE_INET6 && defined IPV6_V6ONLY)
unsigned ipv6only:2;
#endif
unsigned so_keepalive:2;
#if (NGX_HAVE_KEEPALIVE_TUNABLE)
int tcp_keepidle;
int tcp_keepintvl;
int tcp_keepcnt;
#endif
} ngx_rtmp_listen_t;
typedef struct {
ngx_rtmp_conf_ctx_t *ctx;
ngx_str_t addr_text;
} ngx_rtmp_addr_conf_t;
typedef struct {
in_addr_t addr;
ngx_rtmp_addr_conf_t conf;
} ngx_rtmp_in_addr_t;
#if (NGX_HAVE_INET6)
typedef struct {
struct in6_addr addr6;
ngx_rtmp_addr_conf_t conf;
} ngx_rtmp_in6_addr_t;
#endif
typedef struct {
void *addrs;
ngx_uint_t naddrs;
} ngx_rtmp_port_t;
typedef struct {
int family;
in_port_t port;
ngx_array_t addrs; /* array of ngx_rtmp_conf_addr_t */
} ngx_rtmp_conf_port_t;
typedef struct {
struct sockaddr *sockaddr;
socklen_t socklen;
ngx_rtmp_conf_ctx_t *ctx;
unsigned bind:1;
unsigned wildcard:1;
#if (NGX_HAVE_INET6 && defined IPV6_V6ONLY)
unsigned ipv6only:2;
#endif
unsigned so_keepalive:2;
#if (NGX_HAVE_KEEPALIVE_TUNABLE)
int tcp_keepidle;
int tcp_keepintvl;
int tcp_keepcnt;
#endif
} ngx_rtmp_conf_addr_t;
#define NGX_RTMP_HANDSHAKE_SIZE 1536
#define NGX_RTMP_DEFAULT_CHUNK_SIZE 128
#define NGX_LOG_DEBUG_RTMP NGX_LOG_DEBUG_CORE
/* RTMP message types*/
#define NGX_RTMP_MSG_CHUNK_SIZE 1
#define NGX_RTMP_MSG_ABORT 2
#define NGX_RTMP_MSG_ACK 3
#define NGX_RTMP_MSG_USER 4
#define NGX_RTMP_MSG_ACK_SIZE 5
#define NGX_RTMP_MSG_BANDWIDTH 6
#define NGX_RTMP_MSG_EDGE 7
#define NGX_RTMP_MSG_AUDIO 8
#define NGX_RTMP_MSG_VIDEO 9
#define NGX_RTMP_MSG_AMF3_META 15
#define NGX_RTMP_MSG_AMF3_SHARED 16
#define NGX_RTMP_MSG_AMF3_CMD 17
#define NGX_RTMP_MSG_AMF0_META 18
#define NGX_RTMP_MSG_AMF0_SHARED 19
#define NGX_RTMP_MSG_AMF0_CMD 20
#define NGX_RTMP_MSG_AGGREGATE 22
#define NGX_RTMP_MSG_MAX 23
/* RMTP control message types */
#define NGX_RTMP_USER_STREAM_BEGIN 0
#define NGX_RTMP_USER_STREAM_EOF 1
#define NGX_RTMP_USER_STREAM_DRY 2
#define NGX_RTMP_USER_SET_BUFLEN 3
#define NGX_RTMP_USER_RECORDED 4
#define NGX_RTMP_USER_PING_REQUEST 6
#define NGX_RTMP_USER_PING_RESPONSE 7
/* Chunk header:
* max 3 basic header
* + max 11 message header
* + max 4 extended header (timestamp) */
#define NGX_RTMP_MAX_CHUNK_HEADER 18
typedef struct {
uint32_t csid; /* chunk stream id */
uint32_t timestamp;
uint32_t mlen; /* message length */
uint8_t type; /* message type id */
uint32_t msid; /* message stream id */
} ngx_rtmp_header_t;
typedef struct ngx_rtmp_stream_t {
ngx_rtmp_header_t hdr;
ngx_chain_t *in;
} ngx_rtmp_stream_t;
typedef struct {
uint32_t signature; /* "RTMP" */
ngx_connection_t *connection;
void **ctx;
void **main_conf;
void **srv_conf;
ngx_str_t *addr_text;
/* handshake */
ngx_buf_t buf;
ngx_uint_t hs_stage;
/* input stream 0 (reserved by RTMP spec)
* used for free chain link */
ngx_rtmp_stream_t *in_streams;
uint32_t in_csid;
ngx_uint_t in_chunk_size;
ngx_pool_t *in_pool;
ngx_chain_t *out;
} ngx_rtmp_session_t;
typedef ngx_int_t (*ngx_rtmp_event_handler_pt)(ngx_rtmp_session_t *s,
ngx_rtmp_header_t *h, ngx_chain_t *in);
typedef ngx_int_t (*ngx_rtmp_call_handler_pt)(ngx_rtmp_session_t *s,
double trans, ngx_chain_t *in);
typedef ngx_int_t (*ngx_rtmp_disconnect_handler_pt)(ngx_rtmp_session_t *s);
typedef struct {
ngx_array_t servers; /* ngx_rtmp_core_srv_conf_t */
ngx_array_t listen; /* ngx_rtmp_listen_t */
ngx_array_t events[NGX_RTMP_MSG_MAX];
ngx_hash_t calls_hash;
ngx_array_t calls;
ngx_array_t disconect;
} ngx_rtmp_core_main_conf_t;
typedef struct {
ngx_msec_t timeout;
ngx_flag_t so_keepalive;
ngx_int_t max_streams;
ngx_uint_t out_chunk_size;
ngx_pool_t *out_pool;
ngx_chain_t *out_free;
ngx_rtmp_conf_ctx_t *ctx;
} ngx_rtmp_core_srv_conf_t;
typedef struct {
ngx_str_t *client;
ngx_rtmp_session_t *session;
} ngx_rtmp_log_ctx_t;
typedef struct {
ngx_int_t (*preconfiguration)(ngx_conf_t *cf);
ngx_int_t (*postconfiguration)(ngx_conf_t *cf);
void *(*create_main_conf)(ngx_conf_t *cf);
char *(*init_main_conf)(ngx_conf_t *cf, void *conf);
void *(*create_srv_conf)(ngx_conf_t *cf);
char *(*merge_srv_conf)(ngx_conf_t *cf, void *prev,
void *conf);
} ngx_rtmp_module_t;
#define NGX_RTMP_MODULE 0x504D5452 /* "RTMP" */
#define NGX_RTMP_MAIN_CONF 0x02000000
#define NGX_RTMP_SRV_CONF 0x04000000
#define NGX_RTMP_MAIN_CONF_OFFSET offsetof(ngx_rtmp_conf_ctx_t, main_conf)
#define NGX_RTMP_SRV_CONF_OFFSET offsetof(ngx_rtmp_conf_ctx_t, srv_conf)
#define ngx_rtmp_get_module_ctx(s, module) (s)->ctx[module.ctx_index]
#define ngx_rtmp_set_ctx(s, c, module) s->ctx[module.ctx_index] = c;
#define ngx_rtmp_delete_ctx(s, module) s->ctx[module.ctx_index] = NULL;
#define ngx_rtmp_get_module_main_conf(s, module) \
(s)->main_conf[module.ctx_index]
#define ngx_rtmp_get_module_srv_conf(s, module) (s)->srv_conf[module.ctx_index]
#define ngx_rtmp_conf_get_module_main_conf(cf, module) \
((ngx_rtmp_conf_ctx_t *) cf->ctx)->main_conf[module.ctx_index]
#define ngx_rtmp_conf_get_module_srv_conf(cf, module) \
((ngx_rtmp_conf_ctx_t *) cf->ctx)->srv_conf[module.ctx_index]
void ngx_rtmp_init_connection(ngx_connection_t *c);
void ngx_rtmp_close_session(ngx_rtmp_session_t *s);
u_char * ngx_rtmp_log_error(ngx_log_t *log, u_char *buf, size_t len);
/* Receiving messages */
ngx_int_t ngx_rtmp_protocol_message_handler(ngx_session_t *s,
ngx_rtmp_header_t *h, ngx_chain_t *in);
ngx_int_t ngx_rtmp_user_message_handler(ngx_session_t *s,
ngx_rtmp_header_t *h, ngx_chain_t *in);
ngx_int_t ngx_rtmp_amf0_message_handler(ngx_session_t *s,
ngx_rtmp_header_t *h, ngx_chain_t *in);
/* Sending messages */
ngx_chain_t * ngx_rtmp_alloc_shared_buf(ngx_rtmp_session_t *s);
void ngx_rtmp_prepare_message(ngx_rtmp_header_t *h,
ngx_chain_t *out, uint8_t fmt);
void ngx_rtmp_send_message(ngx_rtmp_session_t *s, ngx_chain_t *out);
#define NGX_RTMP_LIMIT_SOFT 0
#define NGX_RTMP_LIMIT_HARD 1
#define NGX_RTMP_LIMIT_DYNAMIC 2
/* Protocol control messages */
ngx_int_t ngx_rtmp_send_chunk_size(ngx_rtmp_session_t *s,
uint32_t chunk_size);
ngx_int_t ngx_rtmp_send_abort(ngx_rtmp_session_t *s,
uint32_t csid);
ngx_int_t ngx_rtmp_send_ack(ngx_rtmp_session_t *s,
uint32_t seq);
ngx_int_t ngx_rtmp_send_ack_size(ngx_rtmp_session_t *s,
uint32_t ack_size);
ngx_int_t ngx_rtmp_send_bandwidth(ngx_rtmp_session_r *s,
uint32_t ack_size, uint8_t limit_type);
/* User control messages */
ngx_int_t ngx_rtmp_send_user_stream_begin(ngx_rtmp_session_t *s,
uint32_t msid);
ngx_int_t ngx_rtmp_send_user_stream_eof(ngx_rtmp_session_t *s,
uint32_t msid);
ngx_int_t ngx_rtmp_send_user_stream_dry(ngx_rtmp_session_t *s,
uint32_t msid);
ngx_int_t ngx_rtmp_send_user_set_buflen(ngx_rtmp_session_t *s,
uint32_t msid, uint32_t buflen_msec);
ngx_int_t ngx_rtmp_send_user_recorded(ngx_rtmp_session_t *s,
uint32_t msid);
ngx_int_t ngx_rtmp_send_user_ping_request(ngx_rtmp_session_t *s,
uint32_t timestamp);
ngx_int_t ngx_rtmp_send_user_ping_response(ngx_rtmp_session_t *s,
uint32_t timestamp);
/* AMF0 sender/receiver */
ngx_int_t ngx_rtmp_send_amf0(ngx_session_t *s,
uint32_t csid, uint32_t msid,
ngx_rtmp_amf0_elt_t *elts, size_t nelts);
ngx_int_t ngx_rtmp_receive_amf0(ngx_session_t *s, ngx_chain_t *in,
ngx_rtmp_amf0_elt_t *elts, size_t nelts)
extern ngx_uint_t ngx_rtmp_max_module;
extern ngx_module_t ngx_rtmp_core_module;
#endif /* _NGX_RTMP_H_INCLUDED_ */