2013-12-10 19:16:25 +08:00
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# Mongoose API Reference
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2013-10-18 23:57:59 +08:00
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2013-12-11 07:34:08 +08:00
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struct mg_server *mg_create_server(void *server_param);
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2013-12-11 07:34:08 +08:00
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Creates web server instance. Returns opaque instance pointer, or NULL if
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there is not enough memory. `server_param`: Could be any pointer, or NULL.
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This pointer will be passed
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to the callback functions as `struct mg_connection::server_param` field.
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A common use case is to pass `this` pointer of the C++ wrapper class
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as `user_param`, to let the callback get the pointer to the C++
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object.
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Note that this function doesn't make the
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server instance to serve. Serving is done by `mg_poll_server()` function.
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Mongoose has single-threaded, event-driven, asynchronous, non-blocking core.
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When server instance is created, it contains an information about
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the configuration and the state of each connection.
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Server instance is capable on listening on only one port. After creation,
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`struct mg_server` has a list
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of active connections, initially empty. It has a list of URI handlers,
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initially empty, and configuration parameters. Configuration can be
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altered by `mg_set_option()`, and new URI handlers could be added by
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`mg_add_uri_handler()`.
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2013-12-12 21:41:33 +08:00
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Side-effect: on UNIX, `mg_create_server()` ignores SIGPIPE signals. If custom
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processing is required SIGPIPE, signal handler must be set up after
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calling `mg_create_server()`.
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Important: Mongoose does not install `SIGCHLD` handler. If CGI is used,
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`SIGCHLD` handler must be set up to reap CGI zombie processes.
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void mg_destroy_server(struct mg_server **server);
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Deallocates web server instance, closes all pending connections, and makes
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server pointer a NULL pointer.
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const char mg_set_option(struct mg_server *server, const char *name,
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const char *value);
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Sets a particular server option. Please refer to a separate documentation page
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that lists all available option names. Note that at least one option,
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`listening_port`, must be specified. To serve static files, `document_root`
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must be specified too. If `document_root` option is left unset, Mongoose
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will not access filesystem at all. This function returns NULL if option was
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set successfully, otherwise it returns human-readable error string. It is
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allowed to call `mg_set_option()` by the same thread that does
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`mg_poll_server()` (an IO thread) and change server configuration while it
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is serving, in between `mg_poll_server()` calls.
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void mg_poll_server(struct mg_server *server, int milliseconds);
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This function performs one iteration of IO loop by iterating over all
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active connections, performing `select()` syscall on all sockets, and sleeping
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for `milliseconds` number of milliseconds. When `select()` returns, Mongoose
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does an IO for each socket that has data to be sent or received. Application
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code must call `mg_poll_server()` in a loop. It is an error to have more then
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one thread calling `mg_poll_server()`, `mg_set_option()` or any other function
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that take `struct mg_server *` parameter. Mongoose does not
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mutex-protect `struct mg_server *`, therefore the best practice is
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to call server management functions from the same thread (an IO thread).
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void mg_add_uri_handler(struct mg_server *, const char *uri, mg_handler_t);
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Adds an URI handler. If Mongoose gets a request and request's URI starts
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with `uri`, then specified handler is called to serve the request. Thus, an
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`uri` is a match prefix. For example, if `uri` is "/", then all requests will
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be routed to the handler, because all URIs start with `/` character.
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2013-12-22 16:27:23 +08:00
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When mongoose buffers in HTTP request and successfully parses it, it calls
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appropriate URI handler immediately for GET requests. For POST requests,
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Mongoose delays the call until the whole POST request is buffered in memory.
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POST data is available to the callback as `struct mg_connection::content`,
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and POST data length is in `struct mg_connection::content_len`.
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Note that websocket connections are treated the same way. Mongoose buffers
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websocket frame in memory, and calls URI handler when frame is fully
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buffered. Frame data is available `struct mg_connection::content`, and
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data length is in `struct mg_connection::content_len`, i.e. very similar to
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the POST request. `struct mg_connection::is_websocket` flag indicates
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whether the request is websocket or not. Also, for websocket requests,
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there is `struct mg_connection::wsbits` field which contains first byte
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of the websocket frame which URI handler can examine. Note that to
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reply to the websocket client, `mg_websocket_write()` should be used.
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To reply to the plain HTTP client, `mg_write()` should be used.
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void mg_set_http_error_handler(struct mg_server *, mg_handler_t);
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Adds HTTP error handler. An actual HTTP error is passed as
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`struct mg_connection::status_code` parameter. If handler returns 0, it
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means a handler has not processed the connection, and mongoose proceeds
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with sending HTTP error to the client. Otherwise, mongoose does nothing.
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const char **mg_get_valid_option_names(void);
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Returns a NULL-terminated array of option names and their default values.
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There are two entries per option in an array: an option name followed by a
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default value. A default value could be NULL. A NULL name indicates an end
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of the array.
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const char *mg_get_option(const struct mg_server *server, const char *name);
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Returns the value of particular configuration parameter. If
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given parameter name is not valid, NULL is returned. For valid names, return
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value is guaranteed to be non-NULL. If parameter is not set, zero-length string
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is returned.
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int mg_iterate_over_connections(struct mg_server *,
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void (*func)(struct mg_connection *, void *),
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void *param);
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This is an interface primarily designed to push arbitrary data to websocket
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connections at any time. This function could be called from any thread. When
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it returns, an IO thread called `func()` on each active websocket connection,
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passing `param` as an extra parameter. It is allowed to call `mg_write()` or
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`mg_websocket_write()` within a callback, cause these write functions are
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thread-safe.
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int mg_write(struct mg_connection *, const void *buf, int len);
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Send data to the client. This function is thread-safe. This function appends
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given buffer to a send queue of a given connection. It may return 0 if
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there is not enough memory, in which case the data will not be sent.
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int mg_websocket_write(struct mg_connection* conn, int opcode,
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const char *data, size_t data_len);
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Similar to `mg_write()`, but wraps the data into a websocket frame with a
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given websocket `opcode`. This function is available when mongoose is
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compiled with `-DUSE_WEBSOCKET`.
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2013-10-20 04:14:16 +08:00
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const char *mg_get_header(const struct mg_connection *, const char *name);
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Get the value of particular HTTP header. This is a helper function.
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It traverses http_headers array, and if the header is present in the array,
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returns its value. If it is not present, NULL is returned.
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int mg_get_var(const struct mg_connection *conn, const char *var_name,
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char *buf, size_t buf_len);
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Gets HTTP form variable. Both POST buffer and query string are inspected.
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Form variable is url-decoded and written to the buffer. On success, this
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function returns the length of decoded variable. On error, -1 is returned if
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variable not found, and -2 is returned if destination buffer is too small
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to hold the variable. Destination buffer is guaranteed to be
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'\0' - terminated if it is not NULL or zero length.
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int mg_parse_header(const char *hdr, const char *var_name, char *buf,
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size_t buf_size);
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This function parses HTTP header and fetches given variable's value in a buffer.
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A header should be like `x=123, y=345, z="other value"`. This function is
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designed to parse Cookie headers, Authorization headers, and similar. Returns
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the length of the fetched value, or 0 if variable not found.
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2013-10-20 05:07:46 +08:00
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int mg_modify_passwords_file(const char *passwords_file_name,
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const char *domain,
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const char *user,
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const char *password);
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Add, edit or delete the entry in the passwords file.
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This function allows an application to manipulate .htpasswd files on the
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fly by adding, deleting and changing user records. This is one of the
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several ways of implementing authentication on the server side. For another,
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cookie-based way please refer to the examples/chat.c in the source tree.
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If password is not NULL, entry is added (or modified if already exists).
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If password is NULL, entry is deleted.
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Return: 1 on success, 0 on error.
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