423 lines
11 KiB
C
423 lines
11 KiB
C
/*
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* Copyright (c) 1999 - 2005 Kungliga Tekniska Högskolan
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* (Royal Institute of Technology, Stockholm, Sweden).
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* All rights reserved.
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*
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* Portions Copyright (c) 2009 Apple Inc. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* 3. Neither the name of the Institute nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include <config.h>
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#include <stdio.h>
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#include <string.h>
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#include <err.h>
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#include <roken.h>
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#include <asn1-common.h>
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#include <asn1_err.h>
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#include <der.h>
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#include <test_asn1.h>
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#include "check-common.h"
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static int
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cmp_dummy (void *a, void *b)
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{
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return 0;
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}
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static int
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test_uint64(void)
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{
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struct test_case tests[] = {
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{ NULL, 3, "\x02\x01\x00", "uint64 0" },
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{ NULL, 7, "\x02\x05\x01\xff\xff\xff\xff", "uint64 1" },
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{ NULL, 7, "\x02\x05\x02\x00\x00\x00\x00", "uint64 2" },
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{ NULL, 9, "\x02\x07\x7f\xff\xff\xff\xff\xff\xff", "uint64 3" },
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{ NULL, 10, "\x02\x08\x00\x80\x00\x00\x00\x00\x00\x00", "uint64 4" },
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{ NULL, 10, "\x02\x08\x7f\xff\xff\xff\xff\xff\xff\xff", "uint64 5" },
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{ NULL, 11, "\x02\x09\x00\xff\xff\xff\xff\xff\xff\xff\xff", "uint64 6" }
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};
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size_t i;
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int ret = 0, ntests = sizeof(tests) / sizeof(*tests);
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TESTuint64 values[] = { 0, 8589934591LL, 8589934592LL,
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36028797018963967LL, 36028797018963968LL,
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9223372036854775807LL, 18446744073709551615ULL };
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for (i = 0; i < ntests; i++)
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tests[i].val = &values[i];
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if (sizeof(TESTuint64) != sizeof(uint64_t)) {
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ret += 1;
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printf("sizeof(TESTuint64) %d != sizeof(uint64_t) %d\n",
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(int)sizeof(TESTuint64), (int)sizeof(uint64_t));
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}
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ret += generic_test (tests, ntests, sizeof(TESTuint64),
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(generic_encode)encode_TESTuint64,
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(generic_length)length_TESTuint64,
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(generic_decode)decode_TESTuint64,
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(generic_free)free_TESTuint64,
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cmp_dummy,
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NULL);
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return ret;
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}
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static int
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test_seqofseq(void)
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{
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struct test_case tests[] = {
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{ NULL, 2,
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"\x30\x00",
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"seqofseq 0" },
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{ NULL, 9,
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"\x30\x07\x30\x05\xa0\x03\x02\x01\x00",
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"seqofseq 1" },
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{ NULL, 16,
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"\x30\x0e\x30\x05\xa0\x03\x02\x01\x00\x30\x05\xa0\x03\x02\x01\x01",
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"seqofseq 2" }
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};
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int ret = 0, ntests = sizeof(tests) / sizeof(*tests);
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TESTSeqOfSeq c0, c1, c2;
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struct TESTSeqOfSeq_val i[2];
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i[0].zero = 0;
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i[1].zero = 1;
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c0.len = 0;
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c0.val = NULL;
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tests[0].val = &c0;
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c1.len = 1;
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c1.val = i;
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tests[1].val = &c1;
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c2.len = 2;
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c2.val = i;
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tests[2].val = &c2;
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ret += generic_test (tests, ntests, sizeof(TESTSeqOfSeq),
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(generic_encode)encode_TESTSeqOfSeq,
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(generic_length)length_TESTSeqOfSeq,
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(generic_decode)decode_TESTSeqOfSeq,
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(generic_free)free_TESTSeqOfSeq,
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cmp_dummy,
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NULL);
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return ret;
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}
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static int
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test_seqofseq2(void)
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{
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struct test_case tests[] = {
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{ NULL, 2,
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"\x30\x00",
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"seqofseq2 0" },
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{ NULL, 11,
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"\x30\x09\x30\x07\xa0\x05\x1b\x03\x65\x74\x74",
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"seqofseq2 1" },
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{ NULL, 21,
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"\x30\x13\x30\x07\xa0\x05\x1b\x03\x65\x74\x74\x30\x08\xa0"
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"\x06\x1b\x04\x74\x76\x61\x61",
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"seqofseq2 2" }
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};
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int ret = 0, ntests = sizeof(tests) / sizeof(*tests);
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TESTSeqOfSeq2 c0, c1, c2;
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struct TESTSeqOfSeq2_val i[2];
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i[0].string = "ett";
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i[1].string = "tvaa";
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c0.len = 0;
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c0.val = NULL;
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tests[0].val = &c0;
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c1.len = 1;
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c1.val = i;
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tests[1].val = &c1;
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c2.len = 2;
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c2.val = i;
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tests[2].val = &c2;
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ret += generic_test (tests, ntests, sizeof(TESTSeqOfSeq2),
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(generic_encode)encode_TESTSeqOfSeq2,
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(generic_length)length_TESTSeqOfSeq2,
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(generic_decode)decode_TESTSeqOfSeq2,
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(generic_free)free_TESTSeqOfSeq2,
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cmp_dummy,
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NULL);
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return ret;
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}
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static int
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test_seqof2(void)
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{
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struct test_case tests[] = {
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{ NULL, 4,
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"\x30\x02\x30\x00",
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"seqof2 1" },
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{ NULL, 9,
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"\x30\x07\x30\x05\x1b\x03\x66\x6f\x6f",
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"seqof2 2" },
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{ NULL, 14,
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"\x30\x0c\x30\x0a\x1b\x03\x66\x6f\x6f\x1b\x03\x62\x61\x72",
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"seqof2 3" }
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};
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int ret = 0, ntests = sizeof(tests) / sizeof(*tests);
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TESTSeqOf2 c0, c1, c2;
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heim_general_string i[2];
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i[0] = "foo";
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i[1] = "bar";
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c0.strings.val = NULL;
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c0.strings.len = 0;
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tests[0].val = &c0;
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c1.strings.len = 1;
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c1.strings.val = i;
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tests[1].val = &c1;
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c2.strings.len = 2;
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c2.strings.val = i;
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tests[2].val = &c2;
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ret += generic_test (tests, ntests, sizeof(TESTSeqOf2),
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(generic_encode)encode_TESTSeqOf2,
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(generic_length)length_TESTSeqOf2,
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(generic_decode)decode_TESTSeqOf2,
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(generic_free)free_TESTSeqOf2,
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cmp_dummy,
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NULL);
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return ret;
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}
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static int
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test_seqof3(void)
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{
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struct test_case tests[] = {
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{ NULL, 2,
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"\x30\x00",
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"seqof3 0" },
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{ NULL, 4,
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"\x30\x02\x30\x00",
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"seqof3 1" },
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{ NULL, 9,
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"\x30\x07\x30\x05\x1b\x03\x66\x6f\x6f",
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"seqof3 2" },
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{ NULL, 14,
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"\x30\x0c\x30\x0a\x1b\x03\x66\x6f\x6f\x1b\x03\x62\x61\x72",
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"seqof3 3" }
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};
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int ret = 0, ntests = sizeof(tests) / sizeof(*tests);
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TESTSeqOf3 c0, c1, c2, c3;
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struct TESTSeqOf3_strings s1, s2, s3;
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heim_general_string i[2];
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i[0] = "foo";
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i[1] = "bar";
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c0.strings = NULL;
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tests[0].val = &c0;
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s1.val = NULL;
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s1.len = 0;
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c1.strings = &s1;
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tests[1].val = &c1;
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s2.len = 1;
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s2.val = i;
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c2.strings = &s2;
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tests[2].val = &c2;
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s3.len = 2;
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s3.val = i;
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c3.strings = &s3;
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tests[3].val = &c3;
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ret += generic_test (tests, ntests, sizeof(TESTSeqOf3),
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(generic_encode)encode_TESTSeqOf3,
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(generic_length)length_TESTSeqOf3,
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(generic_decode)decode_TESTSeqOf3,
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(generic_free)free_TESTSeqOf3,
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cmp_dummy,
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NULL);
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return ret;
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}
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static int
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test_seqof4(void)
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{
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struct test_case tests[] = {
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{ NULL, 2,
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"\x30\x00",
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"seq4 0" },
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{ NULL, 4,
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"\x30\x02" "\xa1\x00",
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"seq4 1" },
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{ NULL, 8,
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"\x30\x06" "\xa0\x02\x30\x00" "\xa1\x00",
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"seq4 2" },
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{ NULL, 2 + (2 + 0x18) + (2 + 0x27) + (2 + 0x31),
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"\x30\x76" /* 2 SEQ */
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"\xa0\x18\x30\x16" /* 4 [0] SEQ */
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"\x30\x14" /* 2 SEQ */
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"\x04\x00" /* 2 OCTET-STRING */
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"\x04\x02\x01\x02" /* 4 OCTET-STRING */
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"\x02\x01\x01" /* 3 INT */
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"\x02\x09\x00\xff\xff\xff\xff\xff\xff\xff\xff"
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/* 11 INT */
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"\xa1\x27" /* 2 [1] IMPL SEQ */
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"\x30\x25" /* 2 SEQ */
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"\x02\x01\x01" /* 3 INT */
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"\x02\x09\x00\xff\xff\xff\xff\xff\xff\xff\xff"
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/* 11 INT */
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"\x02\x09\x00\x80\x00\x00\x00\x00\x00\x00\x00"
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/* 11 INT */
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"\x04\x00" /* 2 OCTET-STRING */
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"\x04\x02\x01\x02" /* 4 OCTET-STRING */
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"\x04\x04\x00\x01\x02\x03" /* 6 OCTET-STRING */
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"\xa2\x31" /* 2 [2] IMPL SEQ */
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"\x30\x2f" /* 2 SEQ */
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"\x04\x00" /* 2 OCTET-STRING */
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"\x02\x01\x01" /* 3 INT */
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"\x04\x02\x01\x02" /* 4 OCTET-STRING */
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"\x02\x09\x00\xff\xff\xff\xff\xff\xff\xff\xff"
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/* 11 INT */
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"\x04\x04\x00\x01\x02\x03" /* 6 OCTET-STRING */
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"\x02\x09\x00\x80\x00\x00\x00\x00\x00\x00\x00"
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/* 11 INT */
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"\x04\x01\x00" /* 3 OCTET-STRING */
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"\x02\x05\x01\x00\x00\x00\x00", /* 7 INT */
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"seq4 3" },
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};
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int ret = 0, ntests = sizeof(tests) / sizeof(*tests);
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TESTSeqOf4 c[4];
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struct TESTSeqOf4_b1 b1[4];
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struct TESTSeqOf4_b2 b2[4];
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struct TESTSeqOf4_b3 b3[4];
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struct TESTSeqOf4_b1_val b1val[4];
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struct TESTSeqOf4_b2_val b2val[4];
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struct TESTSeqOf4_b3_val b3val[4];
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c[0].b1 = NULL;
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c[0].b2 = NULL;
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c[0].b3 = NULL;
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tests[0].val = &c[0];
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b2[1].len = 0;
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b2[1].val = NULL;
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c[1].b1 = NULL;
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c[1].b2 = &b2[1];
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c[1].b3 = NULL;
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tests[1].val = &c[1];
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b1[2].len = 0;
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b1[2].val = NULL;
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b2[2].len = 0;
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b2[2].val = NULL;
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c[2].b1 = &b1[2];
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c[2].b2 = &b2[2];
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c[2].b3 = NULL;
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tests[2].val = &c[2];
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b1val[3].s1.data = "";
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b1val[3].s1.length = 0;
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b1val[3].u1 = 1LL;
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b1val[3].s2.data = "\x01\x02";
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b1val[3].s2.length = 2;
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b1val[3].u2 = -1LL;
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b2val[3].s1.data = "";
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b2val[3].s1.length = 0;
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b2val[3].u1 = 1LL;
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b2val[3].s2.data = "\x01\x02";
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b2val[3].s2.length = 2;
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b2val[3].u2 = -1LL;
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b2val[3].s3.data = "\x00\x01\x02\x03";
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b2val[3].s3.length = 4;
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b2val[3].u3 = 1LL<<63;
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b3val[3].s1.data = "";
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b3val[3].s1.length = 0;
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b3val[3].u1 = 1LL;
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b3val[3].s2.data = "\x01\x02";
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b3val[3].s2.length = 2;
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b3val[3].u2 = -1LL;
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b3val[3].s3.data = "\x00\x01\x02\x03";
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b3val[3].s3.length = 4;
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b3val[3].u3 = 1LL<<63;
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b3val[3].s4.data = "\x00";
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b3val[3].s4.length = 1;
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b3val[3].u4 = 1LL<<32;
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b1[3].len = 1;
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b1[3].val = &b1val[3];
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b2[3].len = 1;
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b2[3].val = &b2val[3];
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b3[3].len = 1;
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b3[3].val = &b3val[3];
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c[3].b1 = &b1[3];
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c[3].b2 = &b2[3];
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c[3].b3 = &b3[3];
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tests[3].val = &c[3];
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ret += generic_test (tests, ntests, sizeof(TESTSeqOf4),
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(generic_encode)encode_TESTSeqOf4,
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(generic_length)length_TESTSeqOf4,
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(generic_decode)decode_TESTSeqOf4,
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(generic_free)free_TESTSeqOf4,
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cmp_dummy,
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NULL);
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return ret;
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}
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int
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main(int argc, char **argv)
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{
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int ret = 0;
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ret += test_uint64();
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ret += test_seqofseq();
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ret += test_seqofseq2();
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ret += test_seqof2();
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ret += test_seqof3();
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ret += test_seqof4();
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return ret;
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}
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