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If we see index options that ask us to decrypt when indexing a message, and we encounter an encrypted part, we'll try to descend into it. If we can decrypt, we add the property index.decryption=success. If we can't decrypt (or recognize the encrypted type of mail), we add the property index.decryption=failure. Note that a single message may have both values of the "index.decryption" property: "success" and "failure". For example, consider a message that includes multiple layers of encryption. If we manage to decrypt the outer layer ("index.decryption=success"), but fail on the inner layer ("index.decryption=failure"). Because of the property name, this will be automatically cleared (and possibly re-set) during re-indexing. This means it will subsequently correspond to the actual semantics of the stored index.
610 lines
19 KiB
C++
610 lines
19 KiB
C++
/*
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* Copyright © 2009 Carl Worth
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU 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, see https://www.gnu.org/licenses/ .
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*
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* Author: Carl Worth <cworth@cworth.org>
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*/
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#include "notmuch-private.h"
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#include <gmime/gmime.h>
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#include <gmime/gmime-filter.h>
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#include <xapian.h>
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typedef struct {
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int state;
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int a;
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int b;
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int next_if_match;
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int next_if_not_match;
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} scanner_state_t;
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/* Simple, linear state-transition diagram for the uuencode filter.
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*
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* If the character being processed is within the range of [a, b]
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* for the current state then we transition next_if_match
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* state. If not, we transition to the next_if_not_match state.
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*
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* The final two states are special in that they are the states in
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* which we discard data. */
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static const int first_uuencode_skipping_state = 11;
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static const scanner_state_t uuencode_states[] = {
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{0, 'b', 'b', 1, 0},
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{1, 'e', 'e', 2, 0},
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{2, 'g', 'g', 3, 0},
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{3, 'i', 'i', 4, 0},
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{4, 'n', 'n', 5, 0},
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{5, ' ', ' ', 6, 0},
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{6, '0', '7', 7, 0},
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{7, '0', '7', 8, 0},
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{8, '0', '7', 9, 0},
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{9, ' ', ' ', 10, 0},
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{10, '\n', '\n', 11, 10},
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{11, 'M', 'M', 12, 0},
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{12, ' ', '`', 12, 11}
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};
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/* The following table is intended to implement this DFA (in 'dot'
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format). Note that 2 and 3 are "hidden" states used to step through
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the possible out edges of state 1.
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digraph html_filter {
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0 -> 1 [label="<"];
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0 -> 0;
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1 -> 4 [label="'"];
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1 -> 5 [label="\""];
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1 -> 0 [label=">"];
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1 -> 1;
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4 -> 1 [label="'"];
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4 -> 4;
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5 -> 1 [label="\""];
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5 -> 5;
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}
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*/
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static const int first_html_skipping_state = 1;
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static const scanner_state_t html_states[] = {
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{0, '<', '<', 1, 0},
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{1, '\'', '\'', 4, 2}, /* scanning for quote or > */
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{1, '"', '"', 5, 3},
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{1, '>', '>', 0, 1},
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{4, '\'', '\'', 1, 4}, /* inside single quotes */
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{5, '"', '"', 1, 5}, /* inside double quotes */
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};
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/* Oh, how I wish that gobject didn't require so much noisy boilerplate!
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* (Though I have at least eliminated some of the stock set...) */
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typedef struct _NotmuchFilterDiscardNonTerm NotmuchFilterDiscardNonTerm;
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typedef struct _NotmuchFilterDiscardNonTermClass NotmuchFilterDiscardNonTermClass;
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/**
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* NotmuchFilterDiscardNonTerm:
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*
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* @parent_object: parent #GMimeFilter
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* @encode: encoding vs decoding
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* @state: State of the parser
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*
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* A filter to discard uuencoded portions of an email.
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*
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* A uuencoded portion is identified as beginning with a line
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* matching:
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*
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* begin [0-7][0-7][0-7] .*
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*
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* After that detection, and beginning with the following line,
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* characters will be discarded as long as the first character of each
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* line begins with M and subsequent characters on the line are within
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* the range of ASCII characters from ' ' to '`'.
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*
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* This is not a perfect UUencode filter. It's possible to have a
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* message that will legitimately match that pattern, (so that some
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* legitimate content is discarded). And for most UUencoded files, the
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* final line of encoded data (the line not starting with M) will be
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* indexed.
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**/
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struct _NotmuchFilterDiscardNonTerm {
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GMimeFilter parent_object;
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GMimeContentType *content_type;
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int state;
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int first_skipping_state;
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const scanner_state_t *states;
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};
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struct _NotmuchFilterDiscardNonTermClass {
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GMimeFilterClass parent_class;
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};
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static GMimeFilter *notmuch_filter_discard_non_term_new (GMimeContentType *content);
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static void notmuch_filter_discard_non_term_finalize (GObject *object);
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static GMimeFilter *filter_copy (GMimeFilter *filter);
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static void filter_filter (GMimeFilter *filter, char *in, size_t len, size_t prespace,
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char **out, size_t *outlen, size_t *outprespace);
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static void filter_complete (GMimeFilter *filter, char *in, size_t len, size_t prespace,
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char **out, size_t *outlen, size_t *outprespace);
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static void filter_reset (GMimeFilter *filter);
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static GMimeFilterClass *parent_class = NULL;
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static void
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notmuch_filter_discard_non_term_class_init (NotmuchFilterDiscardNonTermClass *klass)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (klass);
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GMimeFilterClass *filter_class = GMIME_FILTER_CLASS (klass);
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parent_class = (GMimeFilterClass *) g_type_class_ref (GMIME_TYPE_FILTER);
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object_class->finalize = notmuch_filter_discard_non_term_finalize;
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filter_class->copy = filter_copy;
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filter_class->filter = filter_filter;
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filter_class->complete = filter_complete;
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filter_class->reset = filter_reset;
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}
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static void
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notmuch_filter_discard_non_term_finalize (GObject *object)
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{
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G_OBJECT_CLASS (parent_class)->finalize (object);
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}
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static GMimeFilter *
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filter_copy (GMimeFilter *gmime_filter)
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{
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NotmuchFilterDiscardNonTerm *filter = (NotmuchFilterDiscardNonTerm *) gmime_filter;
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return notmuch_filter_discard_non_term_new (filter->content_type);
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}
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static void
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filter_filter (GMimeFilter *gmime_filter, char *inbuf, size_t inlen, size_t prespace,
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char **outbuf, size_t *outlen, size_t *outprespace)
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{
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NotmuchFilterDiscardNonTerm *filter = (NotmuchFilterDiscardNonTerm *) gmime_filter;
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const scanner_state_t *states = filter->states;
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register const char *inptr = inbuf;
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const char *inend = inbuf + inlen;
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char *outptr;
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(void) prespace;
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int next;
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g_mime_filter_set_size (gmime_filter, inlen, false);
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outptr = gmime_filter->outbuf;
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next = filter->state;
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while (inptr < inend) {
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/* Each state is defined by a contiguous set of rows of the
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* state table marked by a common value for '.state'. The
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* state numbers must be equal to the index of the first row
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* in a given state; thus the loop condition here looks for a
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* jump to a first row of a state, which is a real transition
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* in the underlying DFA.
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*/
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do {
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if (*inptr >= states[next].a && *inptr <= states[next].b) {
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next = states[next].next_if_match;
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} else {
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next = states[next].next_if_not_match;
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}
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} while (next != states[next].state);
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if (filter->state < filter->first_skipping_state)
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*outptr++ = *inptr;
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filter->state = next;
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inptr++;
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}
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*outlen = outptr - gmime_filter->outbuf;
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*outprespace = gmime_filter->outpre;
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*outbuf = gmime_filter->outbuf;
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}
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static void
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filter_complete (GMimeFilter *filter, char *inbuf, size_t inlen, size_t prespace,
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char **outbuf, size_t *outlen, size_t *outprespace)
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{
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if (inbuf && inlen)
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filter_filter (filter, inbuf, inlen, prespace, outbuf, outlen, outprespace);
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}
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static void
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filter_reset (GMimeFilter *gmime_filter)
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{
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NotmuchFilterDiscardNonTerm *filter = (NotmuchFilterDiscardNonTerm *) gmime_filter;
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filter->state = 0;
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}
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/**
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* notmuch_filter_discard_non_term_new:
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*
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* Returns: a new #NotmuchFilterDiscardNonTerm filter.
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**/
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static GMimeFilter *
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notmuch_filter_discard_non_term_new (GMimeContentType *content_type)
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{
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static GType type = 0;
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NotmuchFilterDiscardNonTerm *filter;
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if (!type) {
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static const GTypeInfo info = {
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sizeof (NotmuchFilterDiscardNonTermClass),
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NULL, /* base_class_init */
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NULL, /* base_class_finalize */
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(GClassInitFunc) notmuch_filter_discard_non_term_class_init,
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NULL, /* class_finalize */
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NULL, /* class_data */
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sizeof (NotmuchFilterDiscardNonTerm),
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0, /* n_preallocs */
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NULL, /* instance_init */
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NULL /* value_table */
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};
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type = g_type_register_static (GMIME_TYPE_FILTER, "NotmuchFilterDiscardNonTerm", &info, (GTypeFlags) 0);
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}
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filter = (NotmuchFilterDiscardNonTerm *) g_object_new (type, NULL);
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filter->content_type = content_type;
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filter->state = 0;
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if (g_mime_content_type_is_type (content_type, "text", "html")) {
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filter->states = html_states;
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filter->first_skipping_state = first_html_skipping_state;
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} else {
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filter->states = uuencode_states;
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filter->first_skipping_state = first_uuencode_skipping_state;
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}
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return (GMimeFilter *) filter;
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}
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/* We're finally down to a single (NAME + address) email "mailbox". */
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static void
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_index_address_mailbox (notmuch_message_t *message,
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const char *prefix_name,
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InternetAddress *address)
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{
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InternetAddressMailbox *mailbox = INTERNET_ADDRESS_MAILBOX (address);
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const char *name, *addr, *combined;
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void *local = talloc_new (message);
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name = internet_address_get_name (address);
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addr = internet_address_mailbox_get_addr (mailbox);
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/* Combine the name and address and index them as a phrase. */
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if (name && addr)
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combined = talloc_asprintf (local, "%s %s", name, addr);
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else if (name)
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combined = name;
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else
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combined = addr;
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if (combined)
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_notmuch_message_gen_terms (message, prefix_name, combined);
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talloc_free (local);
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}
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static void
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_index_address_list (notmuch_message_t *message,
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const char *prefix_name,
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InternetAddressList *addresses);
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/* The outer loop over the InternetAddressList wasn't quite enough.
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* There can actually be a tree here where a single member of the list
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* is a "group" containing another list. Recurse please.
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*/
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static void
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_index_address_group (notmuch_message_t *message,
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const char *prefix_name,
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InternetAddress *address)
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{
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InternetAddressGroup *group;
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InternetAddressList *list;
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group = INTERNET_ADDRESS_GROUP (address);
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list = internet_address_group_get_members (group);
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if (! list)
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return;
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_index_address_list (message, prefix_name, list);
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}
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static void
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_index_address_list (notmuch_message_t *message,
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const char *prefix_name,
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InternetAddressList *addresses)
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{
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int i;
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InternetAddress *address;
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if (addresses == NULL)
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return;
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for (i = 0; i < internet_address_list_length (addresses); i++) {
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address = internet_address_list_get_address (addresses, i);
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if (INTERNET_ADDRESS_IS_MAILBOX (address)) {
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_index_address_mailbox (message, prefix_name, address);
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} else if (INTERNET_ADDRESS_IS_GROUP (address)) {
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_index_address_group (message, prefix_name, address);
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} else {
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INTERNAL_ERROR ("GMime InternetAddress is neither a mailbox nor a group.\n");
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}
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}
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}
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static void
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_index_content_type (notmuch_message_t *message, GMimeObject *part)
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{
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GMimeContentType *content_type = g_mime_object_get_content_type (part);
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if (content_type) {
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char *mime_string = g_mime_content_type_to_string (content_type);
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if (mime_string) {
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_notmuch_message_gen_terms (message, "mimetype", mime_string);
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g_free (mime_string);
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}
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}
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}
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static void
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_index_encrypted_mime_part (notmuch_message_t *message, notmuch_indexopts_t *indexopts,
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GMimeContentType *content_type,
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GMimeMultipartEncrypted *part);
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/* Callback to generate terms for each mime part of a message. */
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static void
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_index_mime_part (notmuch_message_t *message,
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notmuch_indexopts_t *indexopts,
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GMimeObject *part)
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{
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GMimeStream *stream, *filter;
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GMimeFilter *discard_non_term_filter;
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GMimeDataWrapper *wrapper;
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GByteArray *byte_array;
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GMimeContentDisposition *disposition;
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GMimeContentType *content_type;
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char *body;
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const char *charset;
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if (! part) {
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_notmuch_database_log (_notmuch_message_database (message),
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"Warning: Not indexing empty mime part.\n");
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return;
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}
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_index_content_type (message, part);
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content_type = g_mime_object_get_content_type (part);
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if (GMIME_IS_MULTIPART (part)) {
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GMimeMultipart *multipart = GMIME_MULTIPART (part);
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int i;
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if (GMIME_IS_MULTIPART_SIGNED (multipart))
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_notmuch_message_add_term (message, "tag", "signed");
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if (GMIME_IS_MULTIPART_ENCRYPTED (multipart))
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_notmuch_message_add_term (message, "tag", "encrypted");
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for (i = 0; i < g_mime_multipart_get_count (multipart); i++) {
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if (GMIME_IS_MULTIPART_SIGNED (multipart)) {
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/* Don't index the signature, but index its content type. */
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if (i == GMIME_MULTIPART_SIGNED_SIGNATURE) {
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_index_content_type (message,
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g_mime_multipart_get_part (multipart, i));
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continue;
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} else if (i != GMIME_MULTIPART_SIGNED_CONTENT) {
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_notmuch_database_log (_notmuch_message_database (message),
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"Warning: Unexpected extra parts of multipart/signed. Indexing anyway.\n");
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}
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}
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if (GMIME_IS_MULTIPART_ENCRYPTED (multipart)) {
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_index_content_type (message,
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g_mime_multipart_get_part (multipart, i));
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if (i == GMIME_MULTIPART_ENCRYPTED_CONTENT) {
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_index_encrypted_mime_part(message, indexopts,
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content_type,
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GMIME_MULTIPART_ENCRYPTED (part));
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} else {
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if (i != GMIME_MULTIPART_ENCRYPTED_VERSION) {
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_notmuch_database_log (_notmuch_message_database (message),
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"Warning: Unexpected extra parts of multipart/encrypted.\n");
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}
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}
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continue;
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}
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_index_mime_part (message, indexopts,
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g_mime_multipart_get_part (multipart, i));
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}
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return;
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}
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if (GMIME_IS_MESSAGE_PART (part)) {
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GMimeMessage *mime_message;
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mime_message = g_mime_message_part_get_message (GMIME_MESSAGE_PART (part));
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_index_mime_part (message, indexopts, g_mime_message_get_mime_part (mime_message));
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return;
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}
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if (! (GMIME_IS_PART (part))) {
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_notmuch_database_log (_notmuch_message_database (message),
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"Warning: Not indexing unknown mime part: %s.\n",
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g_type_name (G_OBJECT_TYPE (part)));
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return;
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}
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disposition = g_mime_object_get_content_disposition (part);
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if (disposition &&
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strcasecmp (g_mime_content_disposition_get_disposition (disposition),
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GMIME_DISPOSITION_ATTACHMENT) == 0)
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{
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const char *filename = g_mime_part_get_filename (GMIME_PART (part));
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_notmuch_message_add_term (message, "tag", "attachment");
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_notmuch_message_gen_terms (message, "attachment", filename);
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/* XXX: Would be nice to call out to something here to parse
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* the attachment into text and then index that. */
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return;
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}
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byte_array = g_byte_array_new ();
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stream = g_mime_stream_mem_new_with_byte_array (byte_array);
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g_mime_stream_mem_set_owner (GMIME_STREAM_MEM (stream), false);
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filter = g_mime_stream_filter_new (stream);
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discard_non_term_filter = notmuch_filter_discard_non_term_new (content_type);
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g_mime_stream_filter_add (GMIME_STREAM_FILTER (filter),
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discard_non_term_filter);
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charset = g_mime_object_get_content_type_parameter (part, "charset");
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if (charset) {
|
|
GMimeFilter *charset_filter;
|
|
charset_filter = g_mime_filter_charset_new (charset, "UTF-8");
|
|
/* This result can be NULL for things like "unknown-8bit".
|
|
* Don't set a NULL filter as that makes GMime print
|
|
* annoying assertion-failure messages on stderr. */
|
|
if (charset_filter) {
|
|
g_mime_stream_filter_add (GMIME_STREAM_FILTER (filter),
|
|
charset_filter);
|
|
g_object_unref (charset_filter);
|
|
}
|
|
}
|
|
|
|
wrapper = g_mime_part_get_content_object (GMIME_PART (part));
|
|
if (wrapper)
|
|
g_mime_data_wrapper_write_to_stream (wrapper, filter);
|
|
|
|
g_object_unref (stream);
|
|
g_object_unref (filter);
|
|
g_object_unref (discard_non_term_filter);
|
|
|
|
g_byte_array_append (byte_array, (guint8 *) "\0", 1);
|
|
body = (char *) g_byte_array_free (byte_array, false);
|
|
|
|
if (body) {
|
|
_notmuch_message_gen_terms (message, NULL, body);
|
|
|
|
free (body);
|
|
}
|
|
}
|
|
|
|
/* descend (if desired) into the cleartext part of an encrypted MIME
|
|
* part while indexing. */
|
|
static void
|
|
_index_encrypted_mime_part (notmuch_message_t *message,
|
|
notmuch_indexopts_t *indexopts,
|
|
g_mime_3_unused(GMimeContentType *content_type),
|
|
GMimeMultipartEncrypted *encrypted_data)
|
|
{
|
|
notmuch_status_t status;
|
|
GError *err = NULL;
|
|
notmuch_database_t * notmuch = NULL;
|
|
GMimeObject *clear = NULL;
|
|
|
|
if (!indexopts || !notmuch_indexopts_get_try_decrypt (indexopts))
|
|
return;
|
|
|
|
notmuch = _notmuch_message_database (message);
|
|
|
|
#if (GMIME_MAJOR_VERSION < 3)
|
|
{
|
|
GMimeCryptoContext* crypto_ctx = NULL;
|
|
const char *protocol = NULL;
|
|
protocol = g_mime_content_type_get_parameter (content_type, "protocol");
|
|
status = _notmuch_crypto_get_gmime_ctx_for_protocol (&(indexopts->crypto),
|
|
protocol, &crypto_ctx);
|
|
if (status) {
|
|
_notmuch_database_log (notmuch, "Warning: setup failed for decrypting "
|
|
"during indexing. (%d)\n", status);
|
|
status = notmuch_message_add_property (message, "index.decryption", "failure");
|
|
if (status)
|
|
_notmuch_database_log_append (notmuch, "failed to add index.decryption "
|
|
"property (%d)\n", status);
|
|
return;
|
|
}
|
|
clear = g_mime_multipart_encrypted_decrypt(encrypted_data, crypto_ctx,
|
|
NULL, &err);
|
|
}
|
|
#else
|
|
clear = g_mime_multipart_encrypted_decrypt(encrypted_data, GMIME_DECRYPT_NONE, NULL,
|
|
NULL, &err);
|
|
#endif
|
|
if (err) {
|
|
_notmuch_database_log (notmuch, "Failed to decrypt during indexing. (%d:%d) [%s]\n",
|
|
err->domain, err->code, err->message);
|
|
g_error_free(err);
|
|
/* Indicate that we failed to decrypt during indexing */
|
|
status = notmuch_message_add_property (message, "index.decryption", "failure");
|
|
if (status)
|
|
_notmuch_database_log_append (notmuch, "failed to add index.decryption "
|
|
"property (%d)\n", status);
|
|
return;
|
|
}
|
|
_index_mime_part (message, indexopts, clear);
|
|
g_object_unref (clear);
|
|
|
|
status = notmuch_message_add_property (message, "index.decryption", "success");
|
|
if (status)
|
|
_notmuch_database_log (notmuch, "failed to add index.decryption "
|
|
"property (%d)\n", status);
|
|
|
|
}
|
|
|
|
notmuch_status_t
|
|
_notmuch_message_index_file (notmuch_message_t *message,
|
|
notmuch_indexopts_t *indexopts,
|
|
notmuch_message_file_t *message_file)
|
|
{
|
|
GMimeMessage *mime_message;
|
|
InternetAddressList *addresses;
|
|
const char *subject;
|
|
notmuch_status_t status;
|
|
|
|
status = _notmuch_message_file_get_mime_message (message_file,
|
|
&mime_message);
|
|
if (status)
|
|
return status;
|
|
|
|
addresses = g_mime_message_get_from (mime_message);
|
|
if (addresses) {
|
|
_index_address_list (message, "from", addresses);
|
|
g_mime_2_6_unref (addresses);
|
|
}
|
|
|
|
addresses = g_mime_message_get_all_recipients (mime_message);
|
|
if (addresses) {
|
|
_index_address_list (message, "to", addresses);
|
|
g_object_unref (addresses);
|
|
}
|
|
|
|
subject = g_mime_message_get_subject (mime_message);
|
|
_notmuch_message_gen_terms (message, "subject", subject);
|
|
|
|
_index_mime_part (message, indexopts, g_mime_message_get_mime_part (mime_message));
|
|
|
|
return NOTMUCH_STATUS_SUCCESS;
|
|
}
|