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292 lines
7.6 KiB
C
292 lines
7.6 KiB
C
#include "http_sign.h"
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#include "sha256/sha256.h"
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#include "model/account.h"
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#include "model/crypto/keys.h"
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#include "model/crypto/base64.h"
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#include "model/ap/inbox_envelope.h"
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#include <stdlib.h>
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#include <stdio.h>
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#include <strings.h>
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#include <string.h>
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#include <time.h>
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bool http_signature_make( const char* inbox, struct crypto_keys* keys, struct http_signature* sign )
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{
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memset(sign,0,sizeof(*sign));
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if( 0 != strncmp( "https://", inbox, 8 ) ) {
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printf( "! Invalid inbox: %s\n", inbox );
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return false;
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}
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// Separate host and path from inbox
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char* path = index( &inbox[8], '/' );
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char* host = sign->host = strndup( &inbox[8], path - &inbox[8] );
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// Build HTTP date - TODO: move to separate file
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time_t utc_time = time(NULL);
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struct tm gmtime_data;
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gmtime_r( &utc_time, &gmtime_data );
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static const char* day_of_week[] = { "Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat" };
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static const char* month_of_year[] = { "Jan", "Feb", "Mar", "Apr", "May", "Jun", "Jul", "Aug", "Sep", "Oct", "Nov", "Dec" };
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char date[32];
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snprintf( date, sizeof(date),
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"%s, %d %s %d %02d:%02d:%02d GMT",
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day_of_week[ gmtime_data.tm_wday ],
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gmtime_data.tm_mday,
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month_of_year[ gmtime_data.tm_mon ],
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gmtime_data.tm_year + 1900,
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gmtime_data.tm_hour,
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gmtime_data.tm_min,
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gmtime_data.tm_sec
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);
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sign->date = strdup(date);
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// Build hash line
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char hash_line[512];
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snprintf( hash_line, 512, "(request-target): post %s\nhost: %s\ndate: %s", path, host, date );
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printf( "hash_line = %s\n", hash_line );
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// Hash and sign
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char hash[32];
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sha256_easy_hash( hash_line, strlen(hash_line), hash );
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sign->signature = crypto_keys_sign( keys, hash, 32 );
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printf( "Signature: %s\n", sign->signature );
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return true;
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}
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static void print_downcase( FILE* f, const char* str )
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{
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for(;*str;++str) {
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switch( *str ) {
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case 'A' ... 'Z':
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fputc( *str - 'A' + 'a', f );
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break;
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default:
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fputc( *str, f );
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break;
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}
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}
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}
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void print_header_line( FILE* hl, struct ap_envelope* env, const char* header_name )
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{
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fprintf( hl, "%s: ", header_name );
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bool first = true;
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for( int i = 0; i < env->headers.count; ++i ) {
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if( 0 == strcasecmp(header_name,env->headers.items[i].key ) ) {
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if( !first ) {
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fprintf( hl, "," );
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}
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fprintf( hl, "%s", env->headers.items[i].value );
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first = false;
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}
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}
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}
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static bool validate_body_digest( struct ap_envelope* env )
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{
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// Per: https://datatracker.ietf.org/doc/html/rfc3230
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char* digest_header = NULL;
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char* content_length_header = NULL;
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char* hash = NULL;
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bool result = false;
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// Get the Digest header
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for( int i = 0; i < env->headers.count; ++i ) {
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char* key = env->headers.items[i].key;
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char* value = env->headers.items[i].value;
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if( 0 == strcasecmp( "Digest", key ) ) {
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free(digest_header);
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digest_header = strdup(value);
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} else if( 0 == strcasecmp( "Content-Length", key ) ) {
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free(content_length_header);
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content_length_header = strdup(value);
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}
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}
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if( !digest_header ) { goto failed; }
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if( !content_length_header ) { goto failed; }
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// Validate the body length against the Content-Length header
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int content_length = -1;
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sscanf( content_length_header, "%d", &content_length );
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if( strlen(env->body) != content_length ) {
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printf( "Content-Length mismatch\n" );
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goto failed;
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}
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char* digest = NULL;
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char* algo = strtok_r(digest_header, "=", &digest );
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// Only implementing SHA-256
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if( 0 != strcmp( algo, "SHA-256") ) { goto failed; }
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// Calculate sha-256 hash
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char raw_hash[32];
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sha256_easy_hash( env->body, content_length, raw_hash );
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hash = base64_strict_encode(raw_hash,32);
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result = ( 0 == strcmp(digest,hash) );
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cleanup:
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free(hash);
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free(digest_header);
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free(content_length_header);
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return result;
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failed:
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result = false;
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goto cleanup;
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}
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bool http_signature_validate( struct ap_envelope* env, const char* request_target )
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{
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char* signature_header = NULL;
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char* date_header = NULL;
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struct crypto_keys* keys = NULL;
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bool result = false;
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// Get the Signature header
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for( int i = 0; i < env->headers.count; ++i ) {
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char* key = env->headers.items[i].key;
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char* value = env->headers.items[i].value;
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if( 0 == strcasecmp( "Signature", key ) ) {
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free(signature_header);
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signature_header = strdup(value);
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} else if( 0 == strcasecmp( "Date", key ) ) {
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free(date_header);
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date_header = strdup(value);
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}
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}
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if( !signature_header ) { return false; }
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//printf( "Found Signature: %s\n", signature_header );
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// Validate time
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if( date_header ) {
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printf( "TODO: validate received within window\n" );
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}
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// Break apart the header
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char* rem = NULL;
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char* algorithm = NULL;
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char* key_id = NULL;
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char* headers = NULL;
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char* signature = NULL;
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for( char* part = strtok_r(signature_header,",",&rem); part; part = strtok_r(NULL,",",&rem) ) {
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// Split apart the key="value" pair
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char* key;
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char* value;
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key = strtok_r( part, "=", &value );
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// Strip the "" off
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if( value[0] != '\"' ) { goto failed; }
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value = &value[1];
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int len = strlen(value);
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if( value[len-1] != '\"' ) { goto failed; }
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value[len-1] = '\0';
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// Handle parts
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if( 0 == strcmp(key,"keyId") ) {
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key_id = value;
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} else if( 0 == strcmp(key,"algorithm") ) {
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algorithm = value;
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} else if( 0 == strcmp(key,"headers") ) {
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headers = value;
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} else if( 0 == strcmp(key,"signature") ) {
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signature = value;
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}
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//printf( "\t%s = %s\n", key, value );
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}
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// Make sure we got all the required information
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if( !signature ) { printf( "! No signature\n" ); goto failed; }
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if( !headers ) { printf( "! No headers\n" ); goto failed; }
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if( !key_id ) { printf( "! no key_id\n" ); goto failed; }
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// Get actor URI
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if( 0 == strcmp(key_id,"Test") ) {
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keys = crypto_keys_new();
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if( !crypto_keys_load_public( keys, "assets/test.public.pem" ) ) {
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printf( "! Failed to load public key\n" );
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goto failed;
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}
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} else {
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char* key_name = NULL;
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char* actor_uri = strtok_r( key_id, "#", &key_name );
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if( !actor_uri ) {
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printf( "! Failed to get actor\n" );
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goto failed;
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}
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// Get the account
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struct account* actor = account_fetch_from_uri(actor_uri);
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if( !actor ) { printf( "! failed to load account for %s\n", actor_uri ); goto failed; }
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// Get the public key
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keys = account_get_public_key( actor, key_name );
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if( !keys ) { goto failed; }
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}
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// Create the hash line
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char* hash_line = NULL;
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size_t hash_line_size = 0;
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FILE* hl = open_memstream( &hash_line, &hash_line_size );
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bool is_first = true;
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for( char* part = strtok_r( headers, " ", &rem ); part; part = strtok_r(NULL," ",&rem) ) {
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//printf( "header: %s\n", part );
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if( !is_first ) {
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fprintf( hl, "\n" );
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}
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if( 0 == strcmp(part,"(request-target)") ) {
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fprintf( hl, "(request-target): %s", request_target );
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} else if( 0 == strcmp(part,"digest") ) {
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if( !validate_body_digest( env ) ) {
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printf( "! Digest validation failed" );
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goto failed;
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}
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print_header_line( hl, env, part );
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} else {
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print_header_line( hl, env, part );
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}
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is_first = false;
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}
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fclose(hl);
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hash_line = realloc(hash_line, hash_line_size+1 );
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hash_line[hash_line_size] = '\0';
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//printf( "\nhash_line:\n%s|\n\n", hash_line );
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char raw_hash[32];
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sha256_easy_hash( hash_line, hash_line_size, raw_hash );
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//result = crypto_keys_verify( keys, raw_hash, 32, signature );
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result = crypto_keys_verify( keys, hash_line, hash_line_size, signature );
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if( !result ) {
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printf( "! Signature is not valid\n" );
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goto failed;
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}
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result = true;
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cleanup:
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crypto_keys_free(keys);
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free(signature_header);
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free(date_header);
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free(hash_line);
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return result;
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failed:
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result = false;
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goto cleanup;
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}
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void http_signature_free( struct http_signature* sign )
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{
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free(sign->host);
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free(sign->date);
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free(sign->signature);
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}
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