Steady progress

This commit is contained in:
Přemysl Eric Janouch 2015-03-05 08:47:20 +01:00
parent a54230bddb
commit 0b0d64124b
1 changed files with 206 additions and 10 deletions

View File

@ -427,14 +427,25 @@ fcgi_nv_parser_push (struct fcgi_nv_parser *self, void *data, size_t len)
// - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
// TODO
enum fcgi_request_state
{
FCGI_REQUEST_PARAMS, ///< Reading headers
FCGI_REQUEST_STDIN ///< Reading input
};
struct fcgi_request
{
struct fcgi_muxer *muxer; ///< The parent muxer
uint16_t request_id; ///< The ID of this request
enum fcgi_request_state state; ///< Parsing state
struct str_map headers; ///< Headers
struct fcgi_nv_parser hdr_parser; ///< Header parser
};
// TODO
struct fcgi_muxer
{
struct fcgi_parser parser; ///< FastCGI message parser
@ -492,6 +503,14 @@ struct scgi_parser
size_t headers_len; ///< Length of the netstring contents
struct str name; ///< Header name so far
struct str value; ///< Header value so far
/// Finished parsing request headers
void (*on_headers_read) (void *user_data);
/// Content available; len == 0 means end of file
void (*on_content) (void *user_data, const void *data, size_t len);
void *user_data; ///< User data passed to callbacks
};
static void
@ -525,7 +544,8 @@ scgi_parser_push (struct scgi_parser *self,
return false;
}
// TODO: a "on_eof" callback?
// Indicate end of file
self->on_content (self->user_data, NULL, 0);
return true;
}
@ -621,10 +641,9 @@ scgi_parser_push (struct scgi_parser *self,
break;
}
case SCGI_READING_CONTENT:
// TODO: a "on_content" callback?
self->on_content (self->user_data, self->input.str, self->input.len);
str_remove_slice (&self->input, 0, self->input.len);
return true;
break;
}
}
@ -684,29 +703,158 @@ server_context_free (struct server_context *self)
// returns back a JSON reply. This function may get called multiple times if
// the user sends a batch request.
static bool
try_advance (const char **p, const char *text)
{
size_t len = strlen (text);
if (strncmp (*p, text, len))
return false;
*p += len;
return true;
}
static bool
validate_json_rpc_content_type (const char *type)
{
const char *content_types[] =
{
"application/json-rpc", // obsolete
"application/json"
};
const char *tails[] =
{
"; charset=utf-8",
"; charset=UTF-8",
""
};
bool found = false;
for (size_t i = 0; i < N_ELEMENTS (content_types); i++)
if ((found = try_advance (&type, content_types[i])))
break;
if (!found)
return false;
for (size_t i = 0; i < N_ELEMENTS (tails); i++)
if ((found = try_advance (&type, tails[i])))
break;
if (!found)
return false;
return !*type;
}
// --- Requests ----------------------------------------------------------------
// TODO: something to read in the headers and decide what to do with the request
// e.g. whether to reject it with a 404, or do JSON-RPC, or ignore it with 200
#if 0
// This doesn't necessarily have to be an object by itself either; we can have
// a function that does/returns something based on the headers
struct request
{
// TODO *ctx
void *user_data; ///< User data argument for callbacks
/// Callback to write some CGI response data to the output
void (*write_cb) (void *user_data, const void *data, size_t len);
/// Callback to close the connection
void (*close_cb) (void *user_data);
struct request_handler *handler; ///< Current request handler
void *handler_data; ///< User data for the handler
};
struct request_handler
{
/// Install ourselves as the handler for the request if applicable
bool (*try_handle) (struct request *request, struct str_map *headers);
/// Handle incoming data
void (*push_cb) (struct request *request, const void *data, size_t len);
/// Destroy the handler
void (*destroy_cb) (struct request *request);
};
static void
request_init (struct request *self)
{
memset (self, 0, sizeof *self);
}
static void
request_free (struct request *self)
{
// TODO: destroy the handler?
}
#endif
static void
request_start (struct request *self, struct str_map *headers)
{
bool handled = false;
// TODO: try request handlers registered in self->ctx
if (handled)
return;
// Unable to serve the request
struct str response;
str_init (&response);
str_append (&response, "404 Not Found\r\n\r\n");
self->write_cb (self->user_data, response.str, response.len);
str_free (&response);
// XXX: how will the clients behave when this happens?
self->close_cb (self->user_data);
}
static void
request_push (struct request *self, const void *data, size_t len)
{
if (soft_assert (self->handler))
self->handler->push_cb (self, data, len);
}
// --- Requests handlers -------------------------------------------------------
static bool
request_handler_json_rpc_try_handle
(struct request *request, struct str_map *headers)
{
const char *content_type = str_map_find (headers, "CONTENT_TYPE");
const char *method = str_map_find (headers, "REQUEST_METHOD");
if (strcmp (method, "POST")
|| !validate_json_rpc_content_type (content_type))
return false;
// TODO: install the handler, perhaps construct an object
return true;
}
static void
request_handler_json_rpc_push
(struct request *request, const void *data, size_t len)
{
// TODO: append to a buffer
// TODO: len == 0: process the request
}
static void
request_handler_json_rpc_destroy (struct request *request)
{
// TODO
}
struct request_handler g_request_handler_json_rpc =
{
.try_handle = request_handler_json_rpc_try_handle,
.push_cb = request_handler_json_rpc_push,
.destroy_cb = request_handler_json_rpc_destroy,
};
// TODO: another request handler to respond to all GETs with a message
// --- Client communication handlers -------------------------------------------
@ -809,16 +957,59 @@ static struct client_impl g_client_fcgi =
struct client_scgi
{
struct scgi_parser parser; ///< SCGI stream parser
struct request request; ///< Request
};
static void
client_scgi_write (void *user_data, const void *data, size_t len)
{
struct client *client = user_data;
client_write (client, data, len);
}
static void
client_scgi_close (void *user_data)
{
struct client *client = user_data;
struct client_scgi *self = client->impl_data;
// TODO
}
static void
client_scgi_on_headers_read (void *user_data)
{
struct client *client = user_data;
struct client_scgi *self = client->impl_data;
request_start (&self->request, &self->parser.headers);
}
static void
client_scgi_on_content (void *user_data, const void *data, size_t len)
{
struct client *client = user_data;
struct client_scgi *self = client->impl_data;
// XXX: make sure this is understood as EOF
request_push (&self->request, data, len);
}
static void
client_scgi_init (struct client *client)
{
struct client_scgi *self = xcalloc (1, sizeof *self);
client->impl_data = self;
request_init (&self->request);
self->request.write_cb = client_scgi_write;
self->request.close_cb = client_scgi_close;
self->request.user_data = client;
scgi_parser_init (&self->parser);
// TODO: configure the parser
self->parser.on_headers_read = client_scgi_on_headers_read;
self->parser.on_content = client_scgi_on_content;
self->parser.user_data = client;
}
static void
@ -827,6 +1018,9 @@ client_scgi_destroy (struct client *client)
struct client_scgi *self = client->impl_data;
client->impl_data = NULL;
// TODO: do something more to abort the request?
request_free (&self->request);
scgi_parser_free (&self->parser);
free (self);
}
@ -891,6 +1085,8 @@ on_client_ready (EV_P_ ev_io *watcher, int revents)
struct server_context *ctx = ev_userdata (loop);
struct client *client = watcher->data;
// FIXME: don't close the connection on EOF; we need to be able to keep
// the connection open and respond in an asynchronous manner
if (revents & EV_READ)
if (!read_loop (EV_A_ watcher, on_client_data))
goto error;