98 lines
No EOL
2.7 KiB
C
98 lines
No EOL
2.7 KiB
C
#include <rz_util.h>
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#include <rz_io.h>
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#include <stdlib.h>
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#include "minunit.h"
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bool test_uleb128_small(void) {
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int len;
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ut8 *data = rz_uleb128_encode(0xbeef, &len);
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mu_assert_eq(len, 3, "uleb128 encoded should be 3 bytes");
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mu_assert_memeq(data, (ut8 *)"\xef\xfd\x02", 3, "right bytes");
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ut64 val;
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rz_uleb128(data, len, &val, NULL);
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mu_assert_eq(val, 0xbeef, "uleb128 decoded");
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rz_uleb128_decode(data, &len, &val);
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mu_assert_eq(val, 0xbeef, "uleb128 decoded");
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free(data);
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RzBuffer *b = rz_buf_new_with_bytes((ut8 *)"\xef\xfd\x02", 3);
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int r = rz_buf_uleb128(b, &val);
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mu_assert_eq(r, 3, "buf_uleb128 decode worked");
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mu_assert_eq(val, 0xbeef, "buf_uleb128 right val");
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rz_buf_free(b);
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mu_end;
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}
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bool test_sleb128_small(void) {
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st64 val;
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const ut8 *data = (const ut8 *)"\xd3\xc2\x7c";
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val = rz_sleb128(&data, data + 3);
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mu_assert_eq(val, -0xdead, "sleb128 decoded");
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RzBuffer *b = rz_buf_new_with_bytes((ut8 *)"\xd3\xc2\x7c", 3);
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int r = rz_buf_sleb128(b, &val);
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mu_assert_eq(r, 3, "buf_sleb128 decode worked");
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mu_assert_eq(val, -0xdead, "buf_sleb128 right val");
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rz_buf_free(b);
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mu_end;
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}
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bool test_uleb128_big(void) {
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int len;
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ut8 *data = rz_uleb128_encode(9019283812387, &len);
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mu_assert_eq(len, 7, "uleb128 encoded should be 7 bytes");
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mu_assert_memeq(data, (ut8 *)"\xa3\xe0\xd4\xb9\xbf\x86\x02", 7, "right bytes");
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ut64 val;
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rz_uleb128(data, len, &val, NULL);
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mu_assert_eq(val, 9019283812387, "uleb128 decoded");
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rz_uleb128_decode(data, &len, &val);
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mu_assert_eq(val, 9019283812387, "uleb128 decoded");
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free(data);
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RzBuffer *b = rz_buf_new_with_bytes((ut8 *)"\xa3\xe0\xd4\xb9\xbf\x86\x02", 7);
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int r = rz_buf_uleb128(b, &val);
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mu_assert_eq(r, 7, "buf_uleb128 decode worked");
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mu_assert_eq(val, 9019283812387, "buf_uleb128 right val");
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rz_buf_free(b);
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mu_end;
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}
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bool test_sleb128_big(void) {
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st64 val;
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const ut8 *data = (ut8 *)"\xdd\x9f\xab\xc6\xc0\xf9\x7d";
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val = rz_sleb128(&data, data + 7);
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mu_assert_eq(val, -9019283812387, "sleb128 decoded");
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RzBuffer *b = rz_buf_new_with_bytes((ut8 *)"\xdd\x9f\xab\xc6\xc0\xf9\x7d", 7);
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int r = rz_buf_sleb128(b, &val);
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mu_assert_eq(r, 7, "buf_sleb128 decode worked");
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mu_assert_eq(val, -9019283812387, "buf_sleb128 right val");
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rz_buf_free(b);
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mu_end;
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}
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bool test_leb128_correctness(void) {
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st64 val;
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const ut8 *data = (ut8 *)"\xc5\x00";
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const ut8 *buf = rz_leb128(data, 2, &val);
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mu_assert_eq(val, 69, "leb128 decoded");
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mu_assert_eq(buf, data + 2, "leb128 decoded");
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mu_end;
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}
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int all_tests() {
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mu_run_test(test_uleb128_small);
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mu_run_test(test_sleb128_small);
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mu_run_test(test_uleb128_big);
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mu_run_test(test_sleb128_big);
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mu_run_test(test_leb128_correctness);
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return tests_passed != tests_run;
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}
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mu_main(all_tests) |