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d2c3a0a3a8
The problem shows up on 32 bit architectures where sizeof(time_t) != sizeof(gint64). Upcasting the 32 bit time_t to a 64 bit integer should hopefully be safe.
199 lines
5 KiB
C
199 lines
5 KiB
C
#include "gmime-extra.h"
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#include <string.h>
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GMimeStream *
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g_mime_stream_stdout_new()
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{
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GMimeStream *stream_stdout = NULL;
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GMimeStream *stream_buffered = NULL;
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stream_stdout = g_mime_stream_pipe_new (STDOUT_FILENO);
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if (!stream_stdout)
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return NULL;
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g_mime_stream_pipe_set_owner (GMIME_STREAM_PIPE (stream_stdout), FALSE);
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stream_buffered = g_mime_stream_buffer_new (stream_stdout, GMIME_STREAM_BUFFER_BLOCK_WRITE);
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g_object_unref (stream_stdout);
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return stream_buffered;
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}
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/**
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* copy a glib string into a talloc context, and free it.
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*/
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static char*
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g_string_talloc_strdup (void *ctx, char *g_string)
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{
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char *new_str = talloc_strdup (ctx, g_string);
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g_free (g_string);
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return new_str;
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}
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#if (GMIME_MAJOR_VERSION < 3)
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char *
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g_mime_message_get_address_string (GMimeMessage *message, GMimeRecipientType type)
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{
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InternetAddressList *list = g_mime_message_get_recipients (message, type);
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return internet_address_list_to_string (list, 0);
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}
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inline InternetAddressList *
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g_mime_message_get_addresses (GMimeMessage *message, GMimeRecipientType type)
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{
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return g_mime_message_get_recipients (message, type);
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}
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char *
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g_mime_message_get_date_string (void *ctx, GMimeMessage *message)
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{
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char *date = g_mime_message_get_date_as_string (message);
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return g_string_talloc_strdup (ctx, date);
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}
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InternetAddressList *
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g_mime_message_get_from (GMimeMessage *message)
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{
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return internet_address_list_parse_string (g_mime_message_get_sender (message));
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}
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const char *
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g_mime_message_get_from_string (GMimeMessage *message) {
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return g_mime_message_get_sender (message);
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}
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InternetAddressList *
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g_mime_message_get_reply_to_list (GMimeMessage *message)
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{
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const char *reply_to;
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reply_to = g_mime_message_get_reply_to (message);
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if (reply_to && *reply_to)
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return internet_address_list_parse_string (reply_to);
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else
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return NULL;
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}
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/**
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* return talloc allocated reply-to string
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*/
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char *
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g_mime_message_get_reply_to_string (void *ctx, GMimeMessage *message)
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{
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return talloc_strdup(ctx, g_mime_message_get_reply_to (message));
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}
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gboolean
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g_mime_signature_status_good (GMimeSignatureStatus status) {
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return (status == GMIME_SIGNATURE_STATUS_GOOD);
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}
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gboolean
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g_mime_signature_status_bad (GMimeSignatureStatus status) {
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return (status == GMIME_SIGNATURE_STATUS_BAD);
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}
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gboolean
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g_mime_signature_status_error (GMimeSignatureError error) {
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return (error != GMIME_SIGNATURE_ERROR_NONE);
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}
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gint64
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g_mime_utils_header_decode_date_unix (const char *date) {
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return (gint64) g_mime_utils_header_decode_date (date, NULL);
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}
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#else /* GMime >= 3.0 */
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const char*
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g_mime_certificate_get_fpr16 (GMimeCertificate *cert) {
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const char *fpr = g_mime_certificate_get_fingerprint (cert);
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if (!fpr || strlen (fpr) < 16)
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return fpr;
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return fpr + (strlen (fpr) - 16);
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}
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char *
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g_mime_message_get_address_string (GMimeMessage *message, GMimeAddressType type)
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{
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InternetAddressList *list = g_mime_message_get_addresses (message, type);
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return internet_address_list_to_string (list, NULL, 0);
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}
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char *
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g_mime_message_get_date_string (void *ctx, GMimeMessage *message)
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{
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GDateTime* parsed_date = g_mime_message_get_date (message);
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if (parsed_date) {
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char *date = g_mime_utils_header_format_date (parsed_date);
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return g_string_talloc_strdup (ctx, date);
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} else {
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return talloc_strdup(ctx, "Thu, 01 Jan 1970 00:00:00 +0000");
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}
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}
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InternetAddressList *
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g_mime_message_get_reply_to_list(GMimeMessage *message)
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{
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return g_mime_message_get_reply_to (message);
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}
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const char *
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g_mime_message_get_from_string (GMimeMessage *message)
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{
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return g_mime_object_get_header (GMIME_OBJECT (message), "From");
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}
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char *
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g_mime_message_get_reply_to_string (void *ctx, GMimeMessage *message)
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{
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InternetAddressList *list = g_mime_message_get_reply_to (message);
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return g_string_talloc_strdup (ctx, internet_address_list_to_string (list, NULL, 0));
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}
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void
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g_mime_parser_set_scan_from (GMimeParser *parser, gboolean flag)
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{
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g_mime_parser_set_format (parser, flag ? GMIME_FORMAT_MBOX : GMIME_FORMAT_MESSAGE);
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}
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/* In GMime 3.0, status GOOD and VALID both imply something about the
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* validity of the UIDs attached to the signing key. This forces us to
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* use following somewhat relaxed definition of a "good" signature to
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* preserve current notmuch semantics.
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*/
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gboolean
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g_mime_signature_status_good (GMimeSignatureStatus status) {
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return ((status & (GMIME_SIGNATURE_STATUS_RED | GMIME_SIGNATURE_STATUS_ERROR_MASK)) == 0);
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}
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gboolean
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g_mime_signature_status_bad (GMimeSignatureStatus status) {
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return (status & GMIME_SIGNATURE_STATUS_RED);
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}
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gboolean
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g_mime_signature_status_error (GMimeSignatureStatus status) {
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return (status & GMIME_SIGNATURE_STATUS_ERROR_MASK);
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}
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gint64
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g_mime_utils_header_decode_date_unix (const char *date) {
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GDateTime* parsed_date = g_mime_utils_header_decode_date (date);
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time_t ret;
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if (parsed_date) {
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ret = g_date_time_to_unix (parsed_date);
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g_date_time_unref (parsed_date);
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} else {
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ret = 0;
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}
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return ret;
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}
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#endif
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