2007-01-14 23:48:31 +00:00
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/*
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* Copyright (C) 2007 Michael Brown <mbrown@fensystems.co.uk>.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of the
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* License, or any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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/** @file
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*
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* Uniform Resource Identifiers
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*
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*/
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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2007-06-03 02:01:02 +00:00
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#include <libgen.h>
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#include <gpxe/vsprintf.h>
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2007-01-14 23:48:31 +00:00
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#include <gpxe/uri.h>
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2007-06-03 02:01:02 +00:00
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/**
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* Dump URI for debugging
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*
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* @v uri URI
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*/
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static void dump_uri ( struct uri *uri ) {
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if ( uri->scheme )
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DBG ( " scheme \"%s\"", uri->scheme );
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if ( uri->opaque )
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DBG ( " opaque \"%s\"", uri->opaque );
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if ( uri->user )
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DBG ( " user \"%s\"", uri->user );
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if ( uri->password )
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DBG ( " password \"%s\"", uri->password );
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if ( uri->host )
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DBG ( " host \"%s\"", uri->host );
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if ( uri->port )
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DBG ( " port \"%s\"", uri->port );
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if ( uri->path )
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DBG ( " path \"%s\"", uri->path );
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if ( uri->query )
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DBG ( " query \"%s\"", uri->query );
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if ( uri->fragment )
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DBG ( " fragment \"%s\"", uri->fragment );
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}
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2007-01-14 23:48:31 +00:00
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/**
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* Parse URI
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*
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* @v uri_string URI as a string
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* @ret uri URI
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*
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* Splits a URI into its component parts. The return URI structure is
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* dynamically allocated and must eventually be freed by calling
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2007-05-28 17:35:15 +00:00
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* uri_put().
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2007-01-14 23:48:31 +00:00
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*/
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struct uri * parse_uri ( const char *uri_string ) {
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struct uri *uri;
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char *raw;
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char *tmp;
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char *path = NULL;
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char *authority = NULL;
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size_t raw_len;
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/* Allocate space for URI struct and a copy of the string */
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raw_len = ( strlen ( uri_string ) + 1 /* NUL */ );
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uri = malloc ( sizeof ( *uri ) + raw_len );
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if ( ! uri )
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return NULL;
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raw = ( ( ( char * ) uri ) + sizeof ( *uri ) );
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/* Zero URI struct and copy in the raw string */
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memset ( uri, 0, sizeof ( *uri ) );
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memcpy ( raw, uri_string, raw_len );
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/* Start by chopping off the fragment, if it exists */
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if ( ( tmp = strchr ( raw, '#' ) ) ) {
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*(tmp++) = '\0';
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uri->fragment = tmp;
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}
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/* Identify absolute/relative URI */
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if ( ( tmp = strchr ( raw, ':' ) ) ) {
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/* Absolute URI: identify hierarchical/opaque */
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uri->scheme = raw;
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*(tmp++) = '\0';
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if ( *tmp == '/' ) {
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/* Absolute URI with hierarchical part */
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path = tmp;
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} else {
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/* Absolute URI with opaque part */
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uri->opaque = tmp;
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}
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} else {
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/* Relative URI */
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path = raw;
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}
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/* If we don't have a path (i.e. we have an absolute URI with
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* an opaque portion, we're already finished processing
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*/
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if ( ! path )
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goto done;
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/* Chop off the query, if it exists */
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if ( ( tmp = strchr ( path, '?' ) ) ) {
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*(tmp++) = '\0';
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uri->query = tmp;
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}
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/* Identify net/absolute/relative path */
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if ( strncmp ( path, "//", 2 ) == 0 ) {
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/* Net path. If this is terminated by the first '/'
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* of an absolute path, then we have no space for a
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* terminator after the authority field, so shuffle
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* the authority down by one byte, overwriting one of
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* the two slashes.
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*/
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authority = ( path + 2 );
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if ( ( tmp = strchr ( authority, '/' ) ) ) {
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/* Shuffle down */
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uri->path = tmp;
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memmove ( ( authority - 1 ), authority,
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( tmp - authority ) );
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authority--;
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*(--tmp) = '\0';
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}
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} else {
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/* Absolute/relative path */
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uri->path = path;
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}
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/* Split authority into user[:password] and host[:port] portions */
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if ( ( tmp = strchr ( authority, '@' ) ) ) {
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/* Has user[:password] */
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*(tmp++) = '\0';
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uri->host = tmp;
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uri->user = authority;
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if ( ( tmp = strchr ( authority, ':' ) ) ) {
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/* Has password */
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*(tmp++) = '\0';
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uri->password = tmp;
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}
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} else {
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/* No user:password */
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uri->host = authority;
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}
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/* Split host into host[:port] */
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if ( ( tmp = strchr ( uri->host, ':' ) ) ) {
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*(tmp++) = '\0';
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uri->port = tmp;
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}
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done:
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2007-06-03 02:01:02 +00:00
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DBG ( "URI \"%s\" split into", uri_string );
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dump_uri ( uri );
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2007-01-14 23:48:31 +00:00
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DBG ( "\n" );
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return uri;
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}
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2007-01-18 03:28:55 +00:00
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/**
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* Get port from URI
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*
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* @v uri URI
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* @v default_port Default port to use if none specified in URI
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* @ret port Port
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*/
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unsigned int uri_port ( struct uri *uri, unsigned int default_port ) {
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return ( uri->port ? strtoul ( uri->port, NULL, 0 ) : default_port );
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}
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2007-06-03 02:01:02 +00:00
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/**
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* Unparse URI
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*
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* @v buf Buffer to fill with URI string
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* @v size Size of buffer
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* @v uri URI to write into buffer
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* @ret len Length of URI string
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*/
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int unparse_uri ( char *buf, size_t size, struct uri *uri ) {
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int used = 0;
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DBG ( "URI unparsing" );
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dump_uri ( uri );
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DBG ( "\n" );
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/* Special-case opaque URIs */
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if ( uri->opaque ) {
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return ssnprintf ( ( buf + used ), ( size - used ),
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"%s:%s", uri->scheme, uri->opaque );
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}
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/* scheme:// */
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if ( uri->scheme ) {
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used += ssnprintf ( ( buf + used ), ( size - used ),
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"%s://", uri->scheme );
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}
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/* [user[:password]@]host[:port] */
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if ( uri->host ) {
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if ( uri->user ) {
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used += ssnprintf ( ( buf + used ), ( size - used ),
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"%s", uri->user );
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if ( uri->password ) {
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used += ssnprintf ( ( buf + used ),
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( size - used ),
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":%s", uri->password );
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}
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used += ssnprintf ( ( buf + used ), ( size - used ),
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"@" );
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}
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used += ssnprintf ( ( buf + used ), ( size - used ), "%s",
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uri->host );
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if ( uri->port ) {
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used += ssnprintf ( ( buf + used ), ( size - used ),
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":%s", uri->port );
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}
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}
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/* /path */
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if ( uri->path ) {
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used += ssnprintf ( ( buf + used ), ( size - used ),
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"%s", uri->path );
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}
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/* ?query */
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if ( uri->query ) {
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used += ssnprintf ( ( buf + used ), ( size - used ),
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"?%s", uri->query );
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}
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/* #fragment */
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if ( uri->fragment ) {
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used += ssnprintf ( ( buf + used ), ( size - used ),
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"#%s", uri->fragment );
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}
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return used;
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}
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/**
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* Duplicate URI
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*
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* @v uri URI
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* @ret uri Duplicate URI
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*
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* Creates a modifiable copy of a URI.
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*/
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struct uri * uri_dup ( struct uri *uri ) {
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size_t len = ( unparse_uri ( NULL, 0, uri ) + 1 );
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char buf[len];
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unparse_uri ( buf, len, uri );
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return parse_uri ( buf );
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}
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/**
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* Resolve base+relative path
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*
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* @v base_uri Base path
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* @v relative_uri Relative path
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* @ret resolved_uri Resolved path
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*
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* Takes a base path (e.g. "/var/lib/tftpboot/vmlinuz" and a relative
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* path (e.g. "initrd.gz") and produces a new path
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* (e.g. "/var/lib/tftpboot/initrd.gz"). Note that any non-directory
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* portion of the base path will automatically be stripped; this
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* matches the semantics used when resolving the path component of
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* URIs.
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*/
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char * resolve_path ( const char *base_path,
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const char *relative_path ) {
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size_t base_len = ( strlen ( base_path ) + 1 );
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char base_path_copy[base_len];
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char *base_tmp = base_path_copy;
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char *resolved;
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/* If relative path is absolute, just re-use it */
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if ( relative_path[0] == '/' )
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return strdup ( relative_path );
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/* Create modifiable copy of path for dirname() */
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memcpy ( base_tmp, base_path, base_len );
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base_tmp = dirname ( base_tmp );
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/* Process "./" and "../" elements */
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while ( *relative_path == '.' ) {
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relative_path++;
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if ( *relative_path == 0 ) {
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/* Do nothing */
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} else if ( *relative_path == '/' ) {
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relative_path++;
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} else if ( *relative_path == '.' ) {
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relative_path++;
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if ( *relative_path == 0 ) {
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base_tmp = dirname ( base_tmp );
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} else if ( *relative_path == '/' ) {
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base_tmp = dirname ( base_tmp );
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relative_path++;
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} else {
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relative_path -= 2;
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break;
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}
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} else {
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relative_path--;
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break;
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}
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}
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/* Create and return new path */
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if ( asprintf ( &resolved, "%s%s%s", base_tmp,
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( ( base_tmp[ strlen ( base_tmp ) - 1 ] == '/' ) ?
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"" : "/" ), relative_path ) < 0 )
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return NULL;
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return resolved;
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}
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/**
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* Resolve base+relative URI
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*
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* @v base_uri Base URI
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* @v relative_uri Relative URI
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* @ret resolved_uri Resolved URI
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*
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* Takes a base URI (e.g. "http://etherboot.org/kernels/vmlinuz" and a
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* relative URI (e.g. "../initrds/initrd.gz") and produces a new URI
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* (e.g. "http://etherboot.org/initrds/initrd.gz").
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*/
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struct uri * resolve_uri ( struct uri *base_uri,
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struct uri *relative_uri ) {
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struct uri tmp_uri;
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char *tmp_path = NULL;
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struct uri *new_uri;
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/* If relative URI is absolute, just re-use it */
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if ( uri_is_absolute ( relative_uri ) )
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return uri_get ( relative_uri );
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/* Mangle URI */
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memcpy ( &tmp_uri, base_uri, sizeof ( tmp_uri ) );
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if ( relative_uri->path ) {
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tmp_path = resolve_path ( ( base_uri->path ?
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base_uri->path : "/" ),
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relative_uri->path );
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tmp_uri.path = tmp_path;
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tmp_uri.query = relative_uri->query;
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tmp_uri.fragment = relative_uri->fragment;
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} else if ( relative_uri->query ) {
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tmp_uri.query = relative_uri->query;
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tmp_uri.fragment = relative_uri->fragment;
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} else if ( relative_uri->fragment ) {
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tmp_uri.fragment = relative_uri->fragment;
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}
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/* Create demangled URI */
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new_uri = uri_dup ( &tmp_uri );
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free ( tmp_path );
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return new_uri;
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}
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