mirror of
https://gitlab.torproject.org/tpo/core/tor.git
synced 2024-11-11 21:53:48 +01:00
e1c29a769c
The channel subsystem was doing a whole lot to track and try to predict the channel queue size but they are gone due to previous commit. Signed-off-by: David Goulet <dgoulet@torproject.org>
1150 lines
28 KiB
C
1150 lines
28 KiB
C
/* Copyright (c) 2013-2017, The Tor Project, Inc. */
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/* See LICENSE for licensing information */
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#define TOR_CHANNEL_INTERNAL_
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#define CHANNEL_PRIVATE_
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#include "or.h"
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#include "channel.h"
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/* For channel_note_destroy_not_pending */
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#include "circuitlist.h"
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#include "circuitmux.h"
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/* For var_cell_free */
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#include "connection_or.h"
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/* For packed_cell stuff */
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#define RELAY_PRIVATE
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#include "relay.h"
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/* For init/free stuff */
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#include "scheduler.h"
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/* Test suite stuff */
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#include "test.h"
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#include "fakechans.h"
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static int test_chan_accept_cells = 0;
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static int test_chan_fixed_cells_recved = 0;
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static cell_t * test_chan_last_seen_fixed_cell_ptr = NULL;
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static int test_chan_var_cells_recved = 0;
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static var_cell_t * test_chan_last_seen_var_cell_ptr = NULL;
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static int test_cells_written = 0;
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static int test_destroy_not_pending_calls = 0;
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static int test_doesnt_want_writes_count = 0;
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static int test_dumpstats_calls = 0;
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static int test_has_waiting_cells_count = 0;
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static double test_overhead_estimate = 1.0;
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static int test_releases_count = 0;
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static channel_t *dump_statistics_mock_target = NULL;
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static int dump_statistics_mock_matches = 0;
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static void chan_test_channel_dump_statistics_mock(
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channel_t *chan, int severity);
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static void channel_note_destroy_not_pending_mock(channel_t *ch,
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circid_t circid);
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static void chan_test_cell_handler(channel_t *ch,
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cell_t *cell);
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static const char * chan_test_describe_transport(channel_t *ch);
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static void chan_test_dumpstats(channel_t *ch, int severity);
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static void chan_test_var_cell_handler(channel_t *ch,
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var_cell_t *var_cell);
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static void chan_test_close(channel_t *ch);
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static void chan_test_error(channel_t *ch);
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static void chan_test_finish_close(channel_t *ch);
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static const char * chan_test_get_remote_descr(channel_t *ch, int flags);
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static int chan_test_is_canonical(channel_t *ch, int req);
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static size_t chan_test_num_bytes_queued(channel_t *ch);
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static int chan_test_num_cells_writeable(channel_t *ch);
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static int chan_test_write_cell(channel_t *ch, cell_t *cell);
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static int chan_test_write_packed_cell(channel_t *ch,
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packed_cell_t *packed_cell);
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static int chan_test_write_var_cell(channel_t *ch, var_cell_t *var_cell);
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static void scheduler_channel_doesnt_want_writes_mock(channel_t *ch);
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static void test_channel_dumpstats(void *arg);
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static void test_channel_incoming(void *arg);
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static void test_channel_lifecycle(void *arg);
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static void test_channel_write(void *arg);
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static void
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channel_note_destroy_not_pending_mock(channel_t *ch,
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circid_t circid)
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{
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(void)ch;
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(void)circid;
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++test_destroy_not_pending_calls;
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}
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static const char *
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chan_test_describe_transport(channel_t *ch)
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{
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tt_ptr_op(ch, OP_NE, NULL);
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done:
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return "Fake channel for unit tests";
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}
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/**
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* Mock for channel_dump_statistics(); if the channel matches the
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* target, bump a counter - otherwise ignore.
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*/
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static void
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chan_test_channel_dump_statistics_mock(channel_t *chan, int severity)
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{
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tt_ptr_op(chan, OP_NE, NULL);
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(void)severity;
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if (chan != NULL && chan == dump_statistics_mock_target) {
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++dump_statistics_mock_matches;
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}
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done:
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return;
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}
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/*
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* Handle an incoming fixed-size cell for unit tests
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*/
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static void
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chan_test_cell_handler(channel_t *ch,
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cell_t *cell)
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{
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tt_assert(ch);
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tt_assert(cell);
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test_chan_last_seen_fixed_cell_ptr = cell;
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++test_chan_fixed_cells_recved;
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done:
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return;
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}
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/*
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* Fake transport-specific stats call
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*/
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static void
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chan_test_dumpstats(channel_t *ch, int severity)
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{
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tt_ptr_op(ch, OP_NE, NULL);
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(void)severity;
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++test_dumpstats_calls;
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done:
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return;
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}
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/*
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* Handle an incoming variable-size cell for unit tests
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*/
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static void
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chan_test_var_cell_handler(channel_t *ch,
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var_cell_t *var_cell)
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{
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tt_assert(ch);
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tt_assert(var_cell);
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test_chan_last_seen_var_cell_ptr = var_cell;
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++test_chan_var_cells_recved;
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done:
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return;
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}
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static void
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chan_test_close(channel_t *ch)
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{
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tt_assert(ch);
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done:
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return;
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}
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/*
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* Close a channel through the error path
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*/
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static void
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chan_test_error(channel_t *ch)
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{
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tt_assert(ch);
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tt_assert(!(ch->state == CHANNEL_STATE_CLOSING ||
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ch->state == CHANNEL_STATE_ERROR ||
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ch->state == CHANNEL_STATE_CLOSED));
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channel_close_for_error(ch);
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done:
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return;
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}
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/*
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* Finish closing a channel from CHANNEL_STATE_CLOSING
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*/
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static void
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chan_test_finish_close(channel_t *ch)
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{
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tt_assert(ch);
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tt_assert(ch->state == CHANNEL_STATE_CLOSING);
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channel_closed(ch);
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done:
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return;
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}
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static const char *
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chan_test_get_remote_descr(channel_t *ch, int flags)
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{
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tt_assert(ch);
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tt_int_op(flags & ~(GRD_FLAG_ORIGINAL | GRD_FLAG_ADDR_ONLY), OP_EQ, 0);
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done:
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return "Fake channel for unit tests; no real endpoint";
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}
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static double
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chan_test_get_overhead_estimate(channel_t *ch)
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{
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tt_assert(ch);
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done:
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return test_overhead_estimate;
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}
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static int
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chan_test_is_canonical(channel_t *ch, int req)
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{
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tt_ptr_op(ch, OP_NE, NULL);
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tt_assert(req == 0 || req == 1);
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done:
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/* Fake channels are always canonical */
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return 1;
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}
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static size_t
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chan_test_num_bytes_queued(channel_t *ch)
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{
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tt_assert(ch);
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done:
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return 0;
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}
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static int
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chan_test_num_cells_writeable(channel_t *ch)
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{
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tt_assert(ch);
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done:
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return 32;
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}
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static int
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chan_test_write_cell(channel_t *ch, cell_t *cell)
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{
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int rv = 0;
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tt_assert(ch);
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tt_assert(cell);
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if (test_chan_accept_cells) {
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/* Free the cell and bump the counter */
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tor_free(cell);
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++test_cells_written;
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rv = 1;
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}
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/* else return 0, we didn't accept it */
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done:
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return rv;
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}
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static int
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chan_test_write_packed_cell(channel_t *ch,
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packed_cell_t *packed_cell)
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{
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int rv = 0;
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tt_assert(ch);
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tt_assert(packed_cell);
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if (test_chan_accept_cells) {
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/* Free the cell and bump the counter */
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packed_cell_free(packed_cell);
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++test_cells_written;
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rv = 1;
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}
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/* else return 0, we didn't accept it */
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done:
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return rv;
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}
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static int
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chan_test_write_var_cell(channel_t *ch, var_cell_t *var_cell)
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{
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int rv = 0;
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tt_assert(ch);
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tt_assert(var_cell);
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if (test_chan_accept_cells) {
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/* Free the cell and bump the counter */
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var_cell_free(var_cell);
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++test_cells_written;
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rv = 1;
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}
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/* else return 0, we didn't accept it */
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done:
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return rv;
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}
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/**
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* Fill out c with a new fake cell for test suite use
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*/
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void
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make_fake_cell(cell_t *c)
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{
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tt_ptr_op(c, OP_NE, NULL);
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c->circ_id = 1;
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c->command = CELL_RELAY;
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memset(c->payload, 0, CELL_PAYLOAD_SIZE);
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done:
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return;
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}
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/**
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* Fill out c with a new fake var_cell for test suite use
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*/
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void
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make_fake_var_cell(var_cell_t *c)
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{
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tt_ptr_op(c, OP_NE, NULL);
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c->circ_id = 1;
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c->command = CELL_VERSIONS;
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c->payload_len = CELL_PAYLOAD_SIZE / 2;
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memset(c->payload, 0, c->payload_len);
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done:
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return;
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}
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/**
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* Set up a new fake channel for the test suite
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*/
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channel_t *
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new_fake_channel(void)
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{
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channel_t *chan = tor_malloc_zero(sizeof(channel_t));
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channel_init(chan);
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chan->close = chan_test_close;
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chan->get_overhead_estimate = chan_test_get_overhead_estimate;
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chan->get_remote_descr = chan_test_get_remote_descr;
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chan->num_bytes_queued = chan_test_num_bytes_queued;
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chan->num_cells_writeable = chan_test_num_cells_writeable;
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chan->write_cell = chan_test_write_cell;
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chan->write_packed_cell = chan_test_write_packed_cell;
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chan->write_var_cell = chan_test_write_var_cell;
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chan->state = CHANNEL_STATE_OPEN;
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return chan;
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}
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void
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free_fake_channel(channel_t *chan)
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{
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if (! chan)
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return;
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if (chan->cmux)
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circuitmux_free(chan->cmux);
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tor_free(chan);
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}
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/**
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* Counter query for scheduler_channel_has_waiting_cells_mock()
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*/
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int
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get_mock_scheduler_has_waiting_cells_count(void)
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{
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return test_has_waiting_cells_count;
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}
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/**
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* Mock for scheduler_channel_has_waiting_cells()
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*/
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void
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scheduler_channel_has_waiting_cells_mock(channel_t *ch)
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{
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(void)ch;
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/* Increment counter */
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++test_has_waiting_cells_count;
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return;
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}
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static void
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scheduler_channel_doesnt_want_writes_mock(channel_t *ch)
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{
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(void)ch;
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/* Increment counter */
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++test_doesnt_want_writes_count;
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return;
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}
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/**
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* Counter query for scheduler_release_channel_mock()
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*/
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int
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get_mock_scheduler_release_channel_count(void)
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{
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return test_releases_count;
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}
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/**
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* Mock for scheduler_release_channel()
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*/
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void
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scheduler_release_channel_mock(channel_t *ch)
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{
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(void)ch;
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/* Increment counter */
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++test_releases_count;
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return;
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}
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/**
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* Test for channel_dumpstats() and limited test for
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* channel_dump_statistics()
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*/
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static void
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test_channel_dumpstats(void *arg)
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{
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channel_t *ch = NULL;
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cell_t *cell = NULL;
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int old_count;
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(void)arg;
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/* Mock these for duration of the test */
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MOCK(scheduler_channel_doesnt_want_writes,
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scheduler_channel_doesnt_want_writes_mock);
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MOCK(scheduler_release_channel,
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scheduler_release_channel_mock);
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/* Set up a new fake channel */
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ch = new_fake_channel();
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tt_assert(ch);
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ch->cmux = circuitmux_alloc();
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/* Try to register it */
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channel_register(ch);
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tt_assert(ch->registered);
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/* Set up mock */
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dump_statistics_mock_target = ch;
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dump_statistics_mock_matches = 0;
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MOCK(channel_dump_statistics,
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chan_test_channel_dump_statistics_mock);
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/* Call channel_dumpstats() */
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channel_dumpstats(LOG_DEBUG);
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/* Assert that we hit the mock */
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tt_int_op(dump_statistics_mock_matches, OP_EQ, 1);
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/* Close the channel */
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channel_mark_for_close(ch);
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tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
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chan_test_finish_close(ch);
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tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSED);
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/* Try again and hit the finished channel */
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channel_dumpstats(LOG_DEBUG);
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tt_int_op(dump_statistics_mock_matches, OP_EQ, 2);
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channel_run_cleanup();
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ch = NULL;
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/* Now we should hit nothing */
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channel_dumpstats(LOG_DEBUG);
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tt_int_op(dump_statistics_mock_matches, OP_EQ, 2);
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/* Unmock */
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UNMOCK(channel_dump_statistics);
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dump_statistics_mock_target = NULL;
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dump_statistics_mock_matches = 0;
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/* Now make another channel */
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ch = new_fake_channel();
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tt_assert(ch);
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ch->cmux = circuitmux_alloc();
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channel_register(ch);
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tt_assert(ch->registered);
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/* Lie about its age so dumpstats gets coverage for rate calculations */
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ch->timestamp_created = time(NULL) - 30;
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tt_assert(ch->timestamp_created > 0);
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tt_assert(time(NULL) > ch->timestamp_created);
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/* Put cells through it both ways to make the counters non-zero */
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cell = tor_malloc_zero(sizeof(*cell));
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make_fake_cell(cell);
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test_chan_accept_cells = 1;
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old_count = test_cells_written;
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channel_write_cell(ch, cell);
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cell = NULL;
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tt_int_op(test_cells_written, OP_EQ, old_count + 1);
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tt_assert(ch->n_bytes_xmitted > 0);
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tt_assert(ch->n_cells_xmitted > 0);
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/* Receive path */
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channel_set_cell_handlers(ch,
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chan_test_cell_handler,
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chan_test_var_cell_handler);
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tt_ptr_op(channel_get_cell_handler(ch), OP_EQ, chan_test_cell_handler);
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tt_ptr_op(channel_get_var_cell_handler(ch), OP_EQ,
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chan_test_var_cell_handler);
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cell = tor_malloc_zero(sizeof(cell_t));
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make_fake_cell(cell);
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old_count = test_chan_fixed_cells_recved;
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tor_free(cell);
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tt_int_op(test_chan_fixed_cells_recved, OP_EQ, old_count + 1);
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tt_assert(ch->n_bytes_recved > 0);
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tt_assert(ch->n_cells_recved > 0);
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/* Test channel_dump_statistics */
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ch->describe_transport = chan_test_describe_transport;
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ch->dumpstats = chan_test_dumpstats;
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ch->is_canonical = chan_test_is_canonical;
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old_count = test_dumpstats_calls;
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channel_dump_statistics(ch, LOG_DEBUG);
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tt_int_op(test_dumpstats_calls, OP_EQ, old_count + 1);
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/* Close the channel */
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channel_mark_for_close(ch);
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tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
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chan_test_finish_close(ch);
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tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSED);
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channel_run_cleanup();
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ch = NULL;
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done:
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tor_free(cell);
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free_fake_channel(ch);
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UNMOCK(scheduler_channel_doesnt_want_writes);
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UNMOCK(scheduler_release_channel);
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return;
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}
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|
static void
|
|
test_channel_incoming(void *arg)
|
|
{
|
|
channel_t *ch = NULL;
|
|
cell_t *cell = NULL;
|
|
var_cell_t *var_cell = NULL;
|
|
int old_count;
|
|
|
|
(void)arg;
|
|
|
|
/* Mock these for duration of the test */
|
|
MOCK(scheduler_channel_doesnt_want_writes,
|
|
scheduler_channel_doesnt_want_writes_mock);
|
|
MOCK(scheduler_release_channel,
|
|
scheduler_release_channel_mock);
|
|
|
|
/* Accept cells to lower layer */
|
|
test_chan_accept_cells = 1;
|
|
/* Use default overhead factor */
|
|
test_overhead_estimate = 1.0;
|
|
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
/* Start it off in OPENING */
|
|
ch->state = CHANNEL_STATE_OPENING;
|
|
/* We'll need a cmux */
|
|
ch->cmux = circuitmux_alloc();
|
|
|
|
/* Install incoming cell handlers */
|
|
channel_set_cell_handlers(ch,
|
|
chan_test_cell_handler,
|
|
chan_test_var_cell_handler);
|
|
/* Test cell handler getters */
|
|
tt_ptr_op(channel_get_cell_handler(ch), OP_EQ, chan_test_cell_handler);
|
|
tt_ptr_op(channel_get_var_cell_handler(ch), OP_EQ,
|
|
chan_test_var_cell_handler);
|
|
|
|
/* Try to register it */
|
|
channel_register(ch);
|
|
tt_assert(ch->registered);
|
|
|
|
/* Open it */
|
|
channel_change_state_open(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_OPEN);
|
|
|
|
/* Receive a fixed cell */
|
|
cell = tor_malloc_zero(sizeof(cell_t));
|
|
make_fake_cell(cell);
|
|
old_count = test_chan_fixed_cells_recved;
|
|
tor_free(cell);
|
|
tt_int_op(test_chan_fixed_cells_recved, OP_EQ, old_count + 1);
|
|
|
|
/* Receive a variable-size cell */
|
|
var_cell = tor_malloc_zero(sizeof(var_cell_t) + CELL_PAYLOAD_SIZE);
|
|
make_fake_var_cell(var_cell);
|
|
old_count = test_chan_var_cells_recved;
|
|
tor_free(cell);
|
|
tt_int_op(test_chan_var_cells_recved, OP_EQ, old_count + 1);
|
|
|
|
/* Close it */
|
|
channel_mark_for_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
chan_test_finish_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSED);
|
|
channel_run_cleanup();
|
|
ch = NULL;
|
|
|
|
done:
|
|
free_fake_channel(ch);
|
|
tor_free(cell);
|
|
tor_free(var_cell);
|
|
|
|
UNMOCK(scheduler_channel_doesnt_want_writes);
|
|
UNMOCK(scheduler_release_channel);
|
|
|
|
return;
|
|
}
|
|
|
|
/**
|
|
* Normal channel lifecycle test:
|
|
*
|
|
* OPENING->OPEN->MAINT->OPEN->CLOSING->CLOSED
|
|
*/
|
|
|
|
static void
|
|
test_channel_lifecycle(void *arg)
|
|
{
|
|
channel_t *ch1 = NULL, *ch2 = NULL;
|
|
cell_t *cell = NULL;
|
|
int old_count, init_doesnt_want_writes_count;
|
|
int init_releases_count;
|
|
|
|
(void)arg;
|
|
|
|
/* Mock these for the whole lifecycle test */
|
|
MOCK(scheduler_channel_doesnt_want_writes,
|
|
scheduler_channel_doesnt_want_writes_mock);
|
|
MOCK(scheduler_release_channel,
|
|
scheduler_release_channel_mock);
|
|
|
|
/* Cache some initial counter values */
|
|
init_doesnt_want_writes_count = test_doesnt_want_writes_count;
|
|
init_releases_count = test_releases_count;
|
|
|
|
/* Accept cells to lower layer */
|
|
test_chan_accept_cells = 1;
|
|
/* Use default overhead factor */
|
|
test_overhead_estimate = 1.0;
|
|
|
|
ch1 = new_fake_channel();
|
|
tt_assert(ch1);
|
|
/* Start it off in OPENING */
|
|
ch1->state = CHANNEL_STATE_OPENING;
|
|
/* We'll need a cmux */
|
|
ch1->cmux = circuitmux_alloc();
|
|
|
|
/* Try to register it */
|
|
channel_register(ch1);
|
|
tt_assert(ch1->registered);
|
|
|
|
/* Try to write a cell through (should queue) */
|
|
cell = tor_malloc_zero(sizeof(cell_t));
|
|
make_fake_cell(cell);
|
|
old_count = test_cells_written;
|
|
channel_write_cell(ch1, cell);
|
|
tt_int_op(old_count, OP_EQ, test_cells_written);
|
|
|
|
/* Move it to OPEN and flush */
|
|
channel_change_state_open(ch1);
|
|
|
|
/* Queue should drain */
|
|
tt_int_op(old_count + 1, OP_EQ, test_cells_written);
|
|
|
|
/* Get another one */
|
|
ch2 = new_fake_channel();
|
|
tt_assert(ch2);
|
|
ch2->state = CHANNEL_STATE_OPENING;
|
|
ch2->cmux = circuitmux_alloc();
|
|
|
|
/* Register */
|
|
channel_register(ch2);
|
|
tt_assert(ch2->registered);
|
|
|
|
/* Check counters */
|
|
tt_int_op(test_doesnt_want_writes_count, OP_EQ,
|
|
init_doesnt_want_writes_count);
|
|
tt_int_op(test_releases_count, OP_EQ, init_releases_count);
|
|
|
|
/* Move ch1 to MAINT */
|
|
channel_change_state(ch1, CHANNEL_STATE_MAINT);
|
|
tt_int_op(test_doesnt_want_writes_count, OP_EQ,
|
|
init_doesnt_want_writes_count + 1);
|
|
tt_int_op(test_releases_count, OP_EQ, init_releases_count);
|
|
|
|
/* Move ch2 to OPEN */
|
|
channel_change_state_open(ch2);
|
|
tt_int_op(test_doesnt_want_writes_count, OP_EQ,
|
|
init_doesnt_want_writes_count + 1);
|
|
tt_int_op(test_releases_count, OP_EQ, init_releases_count);
|
|
|
|
/* Move ch1 back to OPEN */
|
|
channel_change_state_open(ch1);
|
|
tt_int_op(test_doesnt_want_writes_count, OP_EQ,
|
|
init_doesnt_want_writes_count + 1);
|
|
tt_int_op(test_releases_count, OP_EQ, init_releases_count);
|
|
|
|
/* Mark ch2 for close */
|
|
channel_mark_for_close(ch2);
|
|
tt_int_op(ch2->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
tt_int_op(test_doesnt_want_writes_count, OP_EQ,
|
|
init_doesnt_want_writes_count + 1);
|
|
tt_int_op(test_releases_count, OP_EQ, init_releases_count + 1);
|
|
|
|
/* Shut down channels */
|
|
channel_free_all();
|
|
ch1 = ch2 = NULL;
|
|
tt_int_op(test_doesnt_want_writes_count, OP_EQ,
|
|
init_doesnt_want_writes_count + 1);
|
|
/* channel_free() calls scheduler_release_channel() */
|
|
tt_int_op(test_releases_count, OP_EQ, init_releases_count + 4);
|
|
|
|
done:
|
|
free_fake_channel(ch1);
|
|
free_fake_channel(ch2);
|
|
|
|
UNMOCK(scheduler_channel_doesnt_want_writes);
|
|
UNMOCK(scheduler_release_channel);
|
|
|
|
return;
|
|
}
|
|
|
|
/**
|
|
* Weird channel lifecycle test:
|
|
*
|
|
* OPENING->CLOSING->CLOSED
|
|
* OPENING->OPEN->CLOSING->ERROR
|
|
* OPENING->OPEN->MAINT->CLOSING->CLOSED
|
|
* OPENING->OPEN->MAINT->CLOSING->ERROR
|
|
*/
|
|
|
|
static void
|
|
test_channel_lifecycle_2(void *arg)
|
|
{
|
|
channel_t *ch = NULL;
|
|
|
|
(void)arg;
|
|
|
|
/* Mock these for the whole lifecycle test */
|
|
MOCK(scheduler_channel_doesnt_want_writes,
|
|
scheduler_channel_doesnt_want_writes_mock);
|
|
MOCK(scheduler_release_channel,
|
|
scheduler_release_channel_mock);
|
|
|
|
/* Accept cells to lower layer */
|
|
test_chan_accept_cells = 1;
|
|
/* Use default overhead factor */
|
|
test_overhead_estimate = 1.0;
|
|
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
/* Start it off in OPENING */
|
|
ch->state = CHANNEL_STATE_OPENING;
|
|
/* The full lifecycle test needs a cmux */
|
|
ch->cmux = circuitmux_alloc();
|
|
|
|
/* Try to register it */
|
|
channel_register(ch);
|
|
tt_assert(ch->registered);
|
|
|
|
/* Try to close it */
|
|
channel_mark_for_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
|
|
/* Finish closing it */
|
|
chan_test_finish_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSED);
|
|
channel_run_cleanup();
|
|
ch = NULL;
|
|
|
|
/* Now try OPENING->OPEN->CLOSING->ERROR */
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
ch->state = CHANNEL_STATE_OPENING;
|
|
ch->cmux = circuitmux_alloc();
|
|
channel_register(ch);
|
|
tt_assert(ch->registered);
|
|
|
|
/* Finish opening it */
|
|
channel_change_state_open(ch);
|
|
|
|
/* Error exit from lower layer */
|
|
chan_test_error(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
chan_test_finish_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_ERROR);
|
|
channel_run_cleanup();
|
|
ch = NULL;
|
|
|
|
/* OPENING->OPEN->MAINT->CLOSING->CLOSED close from maintenance state */
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
ch->state = CHANNEL_STATE_OPENING;
|
|
ch->cmux = circuitmux_alloc();
|
|
channel_register(ch);
|
|
tt_assert(ch->registered);
|
|
|
|
/* Finish opening it */
|
|
channel_change_state_open(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_OPEN);
|
|
|
|
/* Go to maintenance state */
|
|
channel_change_state(ch, CHANNEL_STATE_MAINT);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_MAINT);
|
|
|
|
/* Lower layer close */
|
|
channel_mark_for_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
|
|
/* Finish */
|
|
chan_test_finish_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSED);
|
|
channel_run_cleanup();
|
|
ch = NULL;
|
|
|
|
/*
|
|
* OPENING->OPEN->MAINT->CLOSING->CLOSED lower-layer close during
|
|
* maintenance state
|
|
*/
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
ch->state = CHANNEL_STATE_OPENING;
|
|
ch->cmux = circuitmux_alloc();
|
|
channel_register(ch);
|
|
tt_assert(ch->registered);
|
|
|
|
/* Finish opening it */
|
|
channel_change_state_open(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_OPEN);
|
|
|
|
/* Go to maintenance state */
|
|
channel_change_state(ch, CHANNEL_STATE_MAINT);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_MAINT);
|
|
|
|
/* Lower layer close */
|
|
channel_close_from_lower_layer(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
|
|
/* Finish */
|
|
chan_test_finish_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSED);
|
|
channel_run_cleanup();
|
|
ch = NULL;
|
|
|
|
/* OPENING->OPEN->MAINT->CLOSING->ERROR */
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
ch->state = CHANNEL_STATE_OPENING;
|
|
ch->cmux = circuitmux_alloc();
|
|
channel_register(ch);
|
|
tt_assert(ch->registered);
|
|
|
|
/* Finish opening it */
|
|
channel_change_state_open(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_OPEN);
|
|
|
|
/* Go to maintenance state */
|
|
channel_change_state(ch, CHANNEL_STATE_MAINT);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_MAINT);
|
|
|
|
/* Lower layer close */
|
|
chan_test_error(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_CLOSING);
|
|
|
|
/* Finish */
|
|
chan_test_finish_close(ch);
|
|
tt_int_op(ch->state, OP_EQ, CHANNEL_STATE_ERROR);
|
|
channel_run_cleanup();
|
|
ch = NULL;
|
|
|
|
/* Shut down channels */
|
|
channel_free_all();
|
|
|
|
done:
|
|
tor_free(ch);
|
|
|
|
UNMOCK(scheduler_channel_doesnt_want_writes);
|
|
UNMOCK(scheduler_release_channel);
|
|
|
|
return;
|
|
}
|
|
|
|
static void
|
|
test_channel_write(void *arg)
|
|
{
|
|
channel_t *ch = NULL;
|
|
cell_t *cell = tor_malloc_zero(sizeof(cell_t));
|
|
packed_cell_t *packed_cell = NULL;
|
|
var_cell_t *var_cell =
|
|
tor_malloc_zero(sizeof(var_cell_t) + CELL_PAYLOAD_SIZE);
|
|
int old_count;
|
|
|
|
(void)arg;
|
|
|
|
packed_cell = packed_cell_new();
|
|
tt_assert(packed_cell);
|
|
|
|
ch = new_fake_channel();
|
|
tt_assert(ch);
|
|
make_fake_cell(cell);
|
|
make_fake_var_cell(var_cell);
|
|
|
|
/* Tell it to accept cells */
|
|
test_chan_accept_cells = 1;
|
|
|
|
old_count = test_cells_written;
|
|
channel_write_cell(ch, cell);
|
|
cell = NULL;
|
|
tt_assert(test_cells_written == old_count + 1);
|
|
|
|
channel_write_var_cell(ch, var_cell);
|
|
var_cell = NULL;
|
|
tt_assert(test_cells_written == old_count + 2);
|
|
|
|
channel_write_packed_cell(ch, packed_cell);
|
|
packed_cell = NULL;
|
|
tt_assert(test_cells_written == old_count + 3);
|
|
|
|
/* Now we test queueing; tell it not to accept cells */
|
|
test_chan_accept_cells = 0;
|
|
/* ...and keep it from trying to flush the queue */
|
|
ch->state = CHANNEL_STATE_MAINT;
|
|
|
|
/* Get a fresh cell */
|
|
cell = tor_malloc_zero(sizeof(cell_t));
|
|
make_fake_cell(cell);
|
|
|
|
old_count = test_cells_written;
|
|
channel_write_cell(ch, cell);
|
|
tt_assert(test_cells_written == old_count);
|
|
|
|
/*
|
|
* Now change back to open with channel_change_state() and assert that it
|
|
* gets drained from the queue.
|
|
*/
|
|
test_chan_accept_cells = 1;
|
|
channel_change_state_open(ch);
|
|
tt_assert(test_cells_written == old_count + 1);
|
|
|
|
/*
|
|
* Check the note destroy case
|
|
*/
|
|
cell = tor_malloc_zero(sizeof(cell_t));
|
|
make_fake_cell(cell);
|
|
cell->command = CELL_DESTROY;
|
|
|
|
/* Set up the mock */
|
|
MOCK(channel_note_destroy_not_pending,
|
|
channel_note_destroy_not_pending_mock);
|
|
|
|
old_count = test_destroy_not_pending_calls;
|
|
channel_write_cell(ch, cell);
|
|
tt_assert(test_destroy_not_pending_calls == old_count + 1);
|
|
|
|
/* Now send a non-destroy and check we don't call it */
|
|
cell = tor_malloc_zero(sizeof(cell_t));
|
|
make_fake_cell(cell);
|
|
channel_write_cell(ch, cell);
|
|
tt_assert(test_destroy_not_pending_calls == old_count + 1);
|
|
|
|
UNMOCK(channel_note_destroy_not_pending);
|
|
|
|
/*
|
|
* Now switch it to CLOSING so we can test the discard-cells case
|
|
* in the channel_write_*() functions.
|
|
*/
|
|
MOCK(scheduler_release_channel, scheduler_release_channel_mock);
|
|
channel_mark_for_close(ch);
|
|
UNMOCK(scheduler_release_channel);
|
|
|
|
/* Send cells that will drop in the closing state */
|
|
old_count = test_cells_written;
|
|
|
|
cell = tor_malloc_zero(sizeof(cell_t));
|
|
make_fake_cell(cell);
|
|
channel_write_cell(ch, cell);
|
|
cell = NULL;
|
|
tt_assert(test_cells_written == old_count);
|
|
|
|
var_cell = tor_malloc_zero(sizeof(var_cell_t) + CELL_PAYLOAD_SIZE);
|
|
make_fake_var_cell(var_cell);
|
|
channel_write_var_cell(ch, var_cell);
|
|
var_cell = NULL;
|
|
tt_assert(test_cells_written == old_count);
|
|
|
|
packed_cell = packed_cell_new();
|
|
channel_write_packed_cell(ch, packed_cell);
|
|
packed_cell = NULL;
|
|
tt_assert(test_cells_written == old_count);
|
|
|
|
done:
|
|
free_fake_channel(ch);
|
|
tor_free(var_cell);
|
|
tor_free(cell);
|
|
packed_cell_free(packed_cell);
|
|
return;
|
|
}
|
|
|
|
static void
|
|
test_channel_id_map(void *arg)
|
|
{
|
|
(void)arg;
|
|
#define N_CHAN 6
|
|
char rsa_id[N_CHAN][DIGEST_LEN];
|
|
ed25519_public_key_t *ed_id[N_CHAN];
|
|
channel_t *chan[N_CHAN];
|
|
int i;
|
|
ed25519_public_key_t ed_zero;
|
|
memset(&ed_zero, 0, sizeof(ed_zero));
|
|
|
|
tt_int_op(DIGEST_LEN, OP_EQ, sizeof(rsa_id[0])); // Do I remember C?
|
|
|
|
for (i = 0; i < N_CHAN; ++i) {
|
|
crypto_rand(rsa_id[i], DIGEST_LEN);
|
|
ed_id[i] = tor_malloc_zero(sizeof(*ed_id[i]));
|
|
crypto_rand((char*)ed_id[i]->pubkey, sizeof(ed_id[i]->pubkey));
|
|
}
|
|
|
|
/* For channel 3, have no Ed identity. */
|
|
tor_free(ed_id[3]);
|
|
|
|
/* Channel 2 and 4 have same ROSA identity */
|
|
memcpy(rsa_id[4], rsa_id[2], DIGEST_LEN);
|
|
|
|
/* Channel 2 and 4 and 5 have same RSA identity */
|
|
memcpy(rsa_id[4], rsa_id[2], DIGEST_LEN);
|
|
memcpy(rsa_id[5], rsa_id[2], DIGEST_LEN);
|
|
|
|
/* Channels 2 and 5 have same Ed25519 identity */
|
|
memcpy(ed_id[5], ed_id[2], sizeof(*ed_id[2]));
|
|
|
|
for (i = 0; i < N_CHAN; ++i) {
|
|
chan[i] = new_fake_channel();
|
|
channel_register(chan[i]);
|
|
channel_set_identity_digest(chan[i], rsa_id[i], ed_id[i]);
|
|
}
|
|
|
|
/* Lookup by RSA id only */
|
|
tt_ptr_op(chan[0], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[0], NULL));
|
|
tt_ptr_op(chan[1], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[1], NULL));
|
|
tt_ptr_op(chan[3], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[3], NULL));
|
|
channel_t *ch;
|
|
ch = channel_find_by_remote_identity(rsa_id[2], NULL);
|
|
tt_assert(ch == chan[2] || ch == chan[4] || ch == chan[5]);
|
|
ch = channel_next_with_rsa_identity(ch);
|
|
tt_assert(ch == chan[2] || ch == chan[4] || ch == chan[5]);
|
|
ch = channel_next_with_rsa_identity(ch);
|
|
tt_assert(ch == chan[2] || ch == chan[4] || ch == chan[5]);
|
|
ch = channel_next_with_rsa_identity(ch);
|
|
tt_ptr_op(ch, OP_EQ, NULL);
|
|
|
|
/* As above, but with zero Ed25519 ID (meaning "any ID") */
|
|
tt_ptr_op(chan[0], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[0], &ed_zero));
|
|
tt_ptr_op(chan[1], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[1], &ed_zero));
|
|
tt_ptr_op(chan[3], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[3], &ed_zero));
|
|
ch = channel_find_by_remote_identity(rsa_id[2], &ed_zero);
|
|
tt_assert(ch == chan[2] || ch == chan[4] || ch == chan[5]);
|
|
ch = channel_next_with_rsa_identity(ch);
|
|
tt_assert(ch == chan[2] || ch == chan[4] || ch == chan[5]);
|
|
ch = channel_next_with_rsa_identity(ch);
|
|
tt_assert(ch == chan[2] || ch == chan[4] || ch == chan[5]);
|
|
ch = channel_next_with_rsa_identity(ch);
|
|
tt_ptr_op(ch, OP_EQ, NULL);
|
|
|
|
/* Lookup nonexistent RSA identity */
|
|
tt_ptr_op(NULL, OP_EQ,
|
|
channel_find_by_remote_identity("!!!!!!!!!!!!!!!!!!!!", NULL));
|
|
|
|
/* Look up by full identity pair */
|
|
tt_ptr_op(chan[0], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[0], ed_id[0]));
|
|
tt_ptr_op(chan[1], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[1], ed_id[1]));
|
|
tt_ptr_op(chan[3], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[3], ed_id[3] /*NULL*/));
|
|
tt_ptr_op(chan[4], OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[4], ed_id[4]));
|
|
ch = channel_find_by_remote_identity(rsa_id[2], ed_id[2]);
|
|
tt_assert(ch == chan[2] || ch == chan[5]);
|
|
|
|
/* Look up RSA identity with wrong ed25519 identity */
|
|
tt_ptr_op(NULL, OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[4], ed_id[0]));
|
|
tt_ptr_op(NULL, OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[2], ed_id[1]));
|
|
tt_ptr_op(NULL, OP_EQ,
|
|
channel_find_by_remote_identity(rsa_id[3], ed_id[1]));
|
|
|
|
done:
|
|
for (i = 0; i < N_CHAN; ++i) {
|
|
channel_clear_identity_digest(chan[i]);
|
|
channel_unregister(chan[i]);
|
|
free_fake_channel(chan[i]);
|
|
tor_free(ed_id[i]);
|
|
}
|
|
#undef N_CHAN
|
|
}
|
|
|
|
struct testcase_t channel_tests[] = {
|
|
{ "dumpstats", test_channel_dumpstats, TT_FORK, NULL, NULL },
|
|
{ "incoming", test_channel_incoming, TT_FORK, NULL, NULL },
|
|
{ "lifecycle", test_channel_lifecycle, TT_FORK, NULL, NULL },
|
|
{ "lifecycle_2", test_channel_lifecycle_2, TT_FORK, NULL, NULL },
|
|
{ "write", test_channel_write, TT_FORK, NULL, NULL },
|
|
{ "id_map", test_channel_id_map, TT_FORK, NULL, NULL },
|
|
END_OF_TESTCASES
|
|
};
|
|
|