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6084e04b25
Reviewed-by: Matt Caswell <matt@openssl.org> Reviewed-by: Tim Hudson <tjh@openssl.org> Reviewed-by: Tomas Mraz <tomas@openssl.org> (Merged from https://github.com/openssl/openssl/pull/20879)
419 lines
12 KiB
C
419 lines
12 KiB
C
/*
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* Copyright 2022 The OpenSSL Project Authors. All Rights Reserved.
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*
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* Licensed under the Apache License 2.0 (the "License"). You may not use
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* this file except in compliance with the License. You can obtain a copy
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* in the file LICENSE in the source distribution or at
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* https://www.openssl.org/source/license.html
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*/
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#include <openssl/ssl.h>
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#include <openssl/quic.h>
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#include <openssl/bio.h>
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#include "internal/common.h"
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#include "internal/sockets.h"
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#include "internal/quic_tserver.h"
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#include "internal/quic_thread_assist.h"
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#include "internal/quic_ssl.h"
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#include "internal/time.h"
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#include "testutil.h"
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static const char msg1[] = "The quick brown fox jumped over the lazy dogs.";
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static char msg2[1024], msg3[1024];
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static OSSL_TIME fake_time;
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static CRYPTO_RWLOCK *fake_time_lock;
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static const char *certfile, *keyfile;
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static int is_want(SSL *s, int ret)
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{
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int ec = SSL_get_error(s, ret);
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return ec == SSL_ERROR_WANT_READ || ec == SSL_ERROR_WANT_WRITE;
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}
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static unsigned char scratch_buf[2048];
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static OSSL_TIME fake_now(void *arg)
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{
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OSSL_TIME t;
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if (!CRYPTO_THREAD_read_lock(fake_time_lock))
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return ossl_time_zero();
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t = fake_time;
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CRYPTO_THREAD_unlock(fake_time_lock);
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return t;
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}
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static OSSL_TIME real_now(void *arg)
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{
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return ossl_time_now();
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}
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static int do_test(int use_thread_assist, int use_fake_time, int use_inject)
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{
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int testresult = 0, ret;
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int s_fd = -1, c_fd = -1;
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BIO *s_net_bio = NULL, *s_net_bio_own = NULL;
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BIO *c_net_bio = NULL, *c_net_bio_own = NULL;
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BIO *c_pair_own = NULL, *s_pair_own = NULL;
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QUIC_TSERVER_ARGS tserver_args = {0};
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QUIC_TSERVER *tserver = NULL;
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BIO_ADDR *s_addr_ = NULL;
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struct in_addr ina = {0};
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union BIO_sock_info_u s_info = {0};
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SSL_CTX *c_ctx = NULL;
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SSL *c_ssl = NULL;
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int c_connected = 0, c_write_done = 0, c_begin_read = 0, s_read_done = 0;
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int c_wait_eos = 0, c_done_eos = 0;
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int c_start_idle_test = 0, c_done_idle_test = 0;
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size_t l = 0, s_total_read = 0, s_total_written = 0, c_total_read = 0;
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size_t idle_units_done = 0;
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int s_begin_write = 0;
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OSSL_TIME start_time;
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unsigned char alpn[] = { 8, 'o', 's', 's', 'l', 't', 'e', 's', 't' };
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OSSL_TIME (*now_cb)(void *arg) = use_fake_time ? fake_now : real_now;
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size_t limit_ms = 1000;
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#if defined(OPENSSL_NO_QUIC_THREAD_ASSIST)
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if (use_thread_assist) {
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TEST_skip("thread assisted mode not enabled");
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return 1;
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}
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#endif
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ina.s_addr = htonl(0x7f000001UL);
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/* Setup test server. */
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s_fd = BIO_socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP, 0);
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if (!TEST_int_ge(s_fd, 0))
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goto err;
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if (!TEST_true(BIO_socket_nbio(s_fd, 1)))
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goto err;
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if (!TEST_ptr(s_addr_ = BIO_ADDR_new()))
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goto err;
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if (!TEST_true(BIO_ADDR_rawmake(s_addr_, AF_INET, &ina, sizeof(ina), 0)))
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goto err;
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if (!TEST_true(BIO_bind(s_fd, s_addr_, 0)))
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goto err;
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s_info.addr = s_addr_;
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if (!TEST_true(BIO_sock_info(s_fd, BIO_SOCK_INFO_ADDRESS, &s_info)))
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goto err;
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if (!TEST_int_gt(BIO_ADDR_rawport(s_addr_), 0))
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goto err;
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if (!TEST_ptr(s_net_bio = s_net_bio_own = BIO_new_dgram(s_fd, 0)))
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goto err;
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if (!BIO_up_ref(s_net_bio))
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goto err;
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fake_time = ossl_ms2time(1000);
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tserver_args.net_rbio = s_net_bio;
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tserver_args.net_wbio = s_net_bio;
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if (use_fake_time)
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tserver_args.now_cb = fake_now;
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if (!TEST_ptr(tserver = ossl_quic_tserver_new(&tserver_args, certfile,
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keyfile))) {
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BIO_free(s_net_bio);
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goto err;
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}
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s_net_bio_own = NULL;
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if (use_inject) {
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/*
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* In inject mode we create a dgram pair to feed to the QUIC client on
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* the read side. We don't feed anything to this, it is just a
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* placeholder to give the client something which never returns any
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* datagrams.
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*/
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if (!TEST_true(BIO_new_bio_dgram_pair(&c_pair_own, 5000,
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&s_pair_own, 5000)))
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goto err;
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}
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/* Setup test client. */
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c_fd = BIO_socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP, 0);
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if (!TEST_int_ge(c_fd, 0))
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goto err;
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if (!TEST_true(BIO_socket_nbio(c_fd, 1)))
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goto err;
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if (!TEST_ptr(c_net_bio = c_net_bio_own = BIO_new_dgram(c_fd, 0)))
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goto err;
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if (!BIO_dgram_set_peer(c_net_bio, s_addr_))
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goto err;
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if (!TEST_ptr(c_ctx = SSL_CTX_new(use_thread_assist
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? OSSL_QUIC_client_thread_method()
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: OSSL_QUIC_client_method())))
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goto err;
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if (!TEST_ptr(c_ssl = SSL_new(c_ctx)))
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goto err;
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if (use_fake_time)
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ossl_quic_conn_set_override_now_cb(c_ssl, fake_now, NULL);
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/* 0 is a success for SSL_set_alpn_protos() */
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if (!TEST_false(SSL_set_alpn_protos(c_ssl, alpn, sizeof(alpn))))
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goto err;
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/* Takes ownership of our reference to the BIO. */
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if (use_inject) {
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SSL_set0_rbio(c_ssl, c_pair_own);
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c_pair_own = NULL;
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} else {
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SSL_set0_rbio(c_ssl, c_net_bio);
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/* Get another reference to be transferred in the SSL_set0_wbio call. */
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if (!TEST_true(BIO_up_ref(c_net_bio))) {
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c_net_bio_own = NULL; /* SSL_free will free the first reference. */
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goto err;
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}
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}
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SSL_set0_wbio(c_ssl, c_net_bio);
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c_net_bio_own = NULL;
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if (!TEST_true(SSL_set_blocking_mode(c_ssl, 0)))
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goto err;
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start_time = now_cb(NULL);
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for (;;) {
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if (ossl_time_compare(ossl_time_subtract(now_cb(NULL), start_time),
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ossl_ms2time(limit_ms)) >= 0) {
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TEST_error("timeout while attempting QUIC server test");
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goto err;
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}
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if (!c_start_idle_test) {
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ret = SSL_connect(c_ssl);
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if (!TEST_true(ret == 1 || is_want(c_ssl, ret)))
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goto err;
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if (ret == 1)
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c_connected = 1;
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}
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if (c_connected && !c_write_done) {
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if (!TEST_int_eq(SSL_write(c_ssl, msg1, sizeof(msg1) - 1),
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(int)sizeof(msg1) - 1))
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goto err;
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if (!TEST_true(SSL_stream_conclude(c_ssl, 0)))
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goto err;
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c_write_done = 1;
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}
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if (c_connected && c_write_done && !s_read_done) {
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if (!ossl_quic_tserver_read(tserver, 0,
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(unsigned char *)msg2 + s_total_read,
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sizeof(msg2) - s_total_read, &l)) {
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if (!TEST_true(ossl_quic_tserver_has_read_ended(tserver, 0)))
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goto err;
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if (!TEST_mem_eq(msg1, sizeof(msg1) - 1, msg2, s_total_read))
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goto err;
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s_begin_write = 1;
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s_read_done = 1;
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} else {
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s_total_read += l;
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if (!TEST_size_t_le(s_total_read, sizeof(msg1) - 1))
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goto err;
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}
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}
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if (s_begin_write && s_total_written < sizeof(msg1) - 1) {
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if (!TEST_true(ossl_quic_tserver_write(tserver, 0,
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(unsigned char *)msg2 + s_total_written,
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sizeof(msg1) - 1 - s_total_written, &l)))
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goto err;
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s_total_written += l;
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if (s_total_written == sizeof(msg1) - 1) {
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ossl_quic_tserver_conclude(tserver, 0);
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c_begin_read = 1;
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}
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}
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if (c_begin_read && c_total_read < sizeof(msg1) - 1) {
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ret = SSL_read_ex(c_ssl, msg3 + c_total_read,
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sizeof(msg1) - 1 - c_total_read, &l);
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if (!TEST_true(ret == 1 || is_want(c_ssl, ret)))
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goto err;
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c_total_read += l;
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if (c_total_read == sizeof(msg1) - 1) {
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if (!TEST_mem_eq(msg1, sizeof(msg1) - 1,
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msg3, c_total_read))
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goto err;
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c_wait_eos = 1;
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}
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}
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if (c_wait_eos && !c_done_eos) {
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unsigned char c;
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ret = SSL_read_ex(c_ssl, &c, sizeof(c), &l);
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if (!TEST_false(ret))
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goto err;
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/*
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* Allow the implementation to take as long as it wants to finally
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* notice EOS. Account for varied timings in OS networking stacks.
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*/
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if (SSL_get_error(c_ssl, ret) != SSL_ERROR_WANT_READ) {
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if (!TEST_int_eq(SSL_get_error(c_ssl, ret),
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SSL_ERROR_ZERO_RETURN))
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goto err;
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c_done_eos = 1;
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if (use_thread_assist && use_fake_time) {
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if (!TEST_true(ossl_quic_tserver_is_connected(tserver)))
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goto err;
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c_start_idle_test = 1;
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limit_ms = 120000; /* extend time limit */
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} else {
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/* DONE */
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break;
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}
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}
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}
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if (c_start_idle_test && !c_done_idle_test) {
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/* This is more than our default idle timeout of 30s. */
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if (idle_units_done < 600) {
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if (!TEST_true(CRYPTO_THREAD_write_lock(fake_time_lock)))
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goto err;
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fake_time = ossl_time_add(fake_time, ossl_ms2time(100));
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CRYPTO_THREAD_unlock(fake_time_lock);
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++idle_units_done;
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ossl_quic_conn_force_assist_thread_wake(c_ssl);
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OSSL_sleep(1); /* Ensure CPU scheduling for test purposes */
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} else {
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c_done_idle_test = 1;
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}
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}
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if (c_done_idle_test) {
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/*
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* If we have finished the fake idling duration, the connection
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* should still be healthy in TA mode.
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*/
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if (!TEST_true(ossl_quic_tserver_is_connected(tserver)))
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goto err;
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/* DONE */
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break;
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}
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/*
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* This is inefficient because we spin until things work without
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* blocking but this is just a test.
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*/
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if (!c_start_idle_test || c_done_idle_test) {
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/* Inhibit manual ticking during idle test to test TA mode. */
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SSL_handle_events(c_ssl);
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}
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ossl_quic_tserver_tick(tserver);
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if (use_inject) {
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BIO_MSG rmsg = {0};
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size_t msgs_processed = 0;
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for (;;) {
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/*
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* Manually spoonfeed received datagrams from the real BIO_dgram
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* into QUIC via the injection interface, thereby testing the
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* injection interface.
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*/
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rmsg.data = scratch_buf;
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rmsg.data_len = sizeof(scratch_buf);
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if (!BIO_recvmmsg(c_net_bio, &rmsg, sizeof(rmsg), 1, 0, &msgs_processed)
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|| msgs_processed == 0 || rmsg.data_len == 0)
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break;
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if (!TEST_true(SSL_inject_net_dgram(c_ssl, rmsg.data, rmsg.data_len,
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NULL, NULL)))
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goto err;
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}
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}
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}
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testresult = 1;
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err:
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SSL_free(c_ssl);
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SSL_CTX_free(c_ctx);
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ossl_quic_tserver_free(tserver);
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BIO_ADDR_free(s_addr_);
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BIO_free(s_net_bio_own);
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BIO_free(c_net_bio_own);
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BIO_free(c_pair_own);
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BIO_free(s_pair_own);
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if (s_fd >= 0)
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BIO_closesocket(s_fd);
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if (c_fd >= 0)
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BIO_closesocket(c_fd);
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return testresult;
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}
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static int test_tserver(int idx)
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{
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int thread_assisted, use_fake_time, use_inject;
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thread_assisted = idx % 2;
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idx /= 2;
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use_inject = idx % 2;
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idx /= 2;
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use_fake_time = idx % 2;
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if (use_fake_time && !thread_assisted)
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return 1;
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return do_test(thread_assisted, use_fake_time, use_inject);
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}
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OPT_TEST_DECLARE_USAGE("certfile privkeyfile\n")
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int setup_tests(void)
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{
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if (!test_skip_common_options()) {
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TEST_error("Error parsing test options\n");
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return 0;
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}
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if (!TEST_ptr(certfile = test_get_argument(0))
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|| !TEST_ptr(keyfile = test_get_argument(1)))
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return 0;
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if ((fake_time_lock = CRYPTO_THREAD_lock_new()) == NULL)
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return 0;
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ADD_ALL_TESTS(test_tserver, 2 * 2 * 2);
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return 1;
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}
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