[Tarantool-patches] [PATCH luajit] test: add tests for the leb128 encode/decode

Sergey Bronnikov sergeyb at tarantool.org
Fri Jul 24 13:08:31 MSK 2026


Hello,

thanks for the patch! LGTM

Sergey

On 7/22/26 17:00, Sergey Kaplun wrote:
> This patch is a follow-up to the commit
> 7058e9215f8a50d00701302ecbb510503d21148d ("utils: introduce leb128
> reader and writer").
>
> The leb128 encoding is used inside our profilers (memprof/sysprof). But
> there are no tests for this module, so its coverage is low, since only
> `lj_utils_write_uleb128()` is used. Also, there is no correctness check
> for this implementation.
>
> This patch adapts the LuaVela tests [1] to cover this module. Since the
> initial version of the module wasn't adapted as is, the guarded version
> of the reader functions has different behaviour for zero-sized requested
> reads. Hence, this case is removed for now. The readers with a requested
> size are unused in our code, so this is not crucial at the moment.
>
> Also, this patch fixes the UBSan warning in the
> `lj_utils_write_leb128()` on checking the remaining value to be written
> by fixing the cast to uint64_t.
>
> [1]:https://github.com/luavela/luavela/blob/288e8a95218ed47dad93016259533406e30b109b/tests/impl/uJIT-tests-C/suite/test_leb128.c
> ---
>
> The main idea of the patch is to increase coverage for the
> lj_utils_leb128.c. The UBSan "bug" (not really, since this part is
> unused, anyway) is fixed as a side effect. You may compare the coverage
> between master [1] and this branch [2] with coveralls.
>
> Branch:https://github.com/tarantool/luajit/tree/skaplun/gh-noticket-leb128-testsing
>
> [1]:https://coveralls.io/builds/80394140/source?filename=src%2Flj_utils_leb128.c
> [2]:https://coveralls.io/builds/80728053/source?filename=src%2Flj_utils_leb128.c
>
>   src/lj_utils_leb128.c                     |   2 +-
>   test/tarantool-c-tests/unit-leb128.test.c | 366 ++++++++++++++++++++++
>   2 files changed, 367 insertions(+), 1 deletion(-)
>   create mode 100644 test/tarantool-c-tests/unit-leb128.test.c
>
> diff --git a/src/lj_utils_leb128.c b/src/lj_utils_leb128.c
> index d66961da..5ad2bd3c 100644
> --- a/src/lj_utils_leb128.c
> +++ b/src/lj_utils_leb128.c
> @@ -105,7 +105,7 @@ size_t LJ_FASTCALL lj_utils_write_leb128(uint8_t *buffer, int64_t value)
>     size_t i = 0;
>   
>     /* LEB_SIGN_BIT propagation to check the remaining value. */
> -  while ((uint64_t)(value + LEB_SIGN_BIT) >= MIN_TWOBYTE_VALUE) {
> +  while ((uint64_t)value + LEB_SIGN_BIT >= MIN_TWOBYTE_VALUE) {
>       buffer[i++] = (uint8_t)((value & PAYLOAD_MASK) | LINK_BIT);
>       value >>= SHIFT_STEP;
>     }
> diff --git a/test/tarantool-c-tests/unit-leb128.test.c b/test/tarantool-c-tests/unit-leb128.test.c
> new file mode 100644
> index 00000000..142476fb
> --- /dev/null
> +++ b/test/tarantool-c-tests/unit-leb128.test.c
> @@ -0,0 +1,366 @@
> +/*
> +** Testing of LEB128/ULEB128 encoding.
> +**
> +** Major portions taken verbatim or adapted from the LuaVela.
> +** Copyright (C) 2020-2026 LuaVela Authors.
> +** Copyright (C) 2015-2020 IPONWEB Ltd.
> +*/
> +
> +#include <stdint.h>
> +#include <string.h>
> +
> +#include "test.h"
> +
> +#include "lj_utils.h"
> +
> +#define BUFFER_SIZE 16
> +
> +static int test_write_uleb128(void *state)
> +{
> +	size_t bytes_written = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x0);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 64);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x40);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 128);
> +	assert_true(bytes_written == 2);
> +	assert_true(buffer[0] == 0x80 && buffer[1] == 0x01);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, UINT64_MAX);
> +	assert_true(bytes_written == 10);
> +	assert_true(buffer[0] == 0xff && buffer[1] == 0xff &&
> +		    buffer[2] == 0xff && buffer[3] == 0xff &&
> +		    buffer[4] == 0xff && buffer[5] == 0xff &&
> +		    buffer[6] == 0xff && buffer[7] == 0xff &&
> +		    buffer[8] == 0xff && buffer[9] == 0x01);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +static int test_write_leb128(void *state)
> +{
> +	size_t bytes_written = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, 0);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x0);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, -624485);
> +	assert_true(bytes_written == 3);
> +	assert_true(buffer[0] == 0x9b && buffer[1] == 0xf1 &&
> +		    buffer[2] == 0x59);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, INT64_MIN);
> +	assert_true(bytes_written == 10);
> +	assert_true(buffer[0] == 0x80 && buffer[1] == 0x80 &&
> +		    buffer[2] == 0x80 && buffer[3] == 0x80 &&
> +		    buffer[4] == 0x80 && buffer[5] == 0x80 &&
> +		    buffer[6] == 0x80 && buffer[7] == 0x80 &&
> +		    buffer[8] == 0x80 && buffer[9] == 0x7f);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, INT64_MAX);
> +	assert_true(bytes_written == 10);
> +	assert_true(buffer[0] == 0xff && buffer[1] == 0xff &&
> +		    buffer[2] == 0xff && buffer[3] == 0xff &&
> +		    buffer[4] == 0xff && buffer[5] == 0xff &&
> +		    buffer[6] == 0xff && buffer[7] == 0xff &&
> +		    buffer[8] == 0xff && buffer[9] == 0x00);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +/* Test miscellaneous writes, both signed and unsigned. */
> +static int test_misc_writes(void *state)
> +{
> +	size_t bytes_written = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, 0x10);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x10);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0x10);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x10);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, -0x3b);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x45);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0x45);
> +	assert_true(bytes_written == 1);
> +	assert_true(buffer[0] == 0x45);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, 0x190e);
> +	assert_true(bytes_written == 2);
> +	assert_true(buffer[0] == 0x8e && buffer[1] == 0x32);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0x190e);
> +	assert_true(bytes_written == 2);
> +	assert_true(buffer[0] == 0x8e && buffer[1] == 0x32);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, -0x143f);
> +	assert_true(bytes_written == 2);
> +	assert_true(buffer[0] == 0xc1 && buffer[1] == 0x57);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0x2bc1);
> +	assert_true(bytes_written == 2);
> +	assert_true(buffer[0] == 0xc1 && buffer[1] == 0x57);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, 0x7e00000);
> +	assert_true(bytes_written == 4);
> +	assert_true(buffer[0] == 0x80 && buffer[1] == 0x80 &&
> +		    buffer[2] == 0x80 && buffer[3] == 0x3f);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0x7e00000);
> +	assert_true(bytes_written == 4);
> +	assert_true(buffer[0] == 0x80 && buffer[1] == 0x80 &&
> +		    buffer[2] == 0x80 && buffer[3] == 0x3f);
> +
> +	bytes_written = lj_utils_write_leb128(buffer, -0x6200000);
> +	assert_true(bytes_written == 4);
> +	assert_true(buffer[0] == 0x80 && buffer[1] == 0x80 &&
> +		    buffer[2] == 0x80 && buffer[3] == 0x4f);
> +
> +	bytes_written = lj_utils_write_uleb128(buffer, 0x9e00000);
> +	assert_true(bytes_written == 4);
> +	assert_true(buffer[0] == 0x80 && buffer[1] == 0x80 &&
> +		    buffer[2] == 0x80 && buffer[3] == 0x4f);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +static int test_read_uleb128(void *state)
> +{
> +	uint64_t value = 0;
> +	size_t bytes_read = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	bytes_read = lj_utils_read_uleb128(&value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(value == 0);
> +
> +	buffer[0] = 0x40;
> +	bytes_read = lj_utils_read_uleb128(&value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(value == 64);
> +
> +	buffer[0] = 0x80;
> +	buffer[1] = 0x01;
> +	bytes_read = lj_utils_read_uleb128(&value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(value == 128);
> +
> +	memset(buffer, 0xff, 9);
> +	buffer[9] = 0x01;
> +	bytes_read = lj_utils_read_uleb128(&value, buffer);
> +	assert_true(bytes_read == 10);
> +	assert_true(value == UINT64_MAX);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +static int test_read_leb128(void *state)
> +{
> +	int64_t value = 0;
> +	size_t bytes_read = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	bytes_read = lj_utils_read_leb128(&value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(value == 0);
> +
> +	buffer[0] = 0x9b;
> +	buffer[1] = 0xf1;
> +	buffer[2] = 0x59;
> +	bytes_read = lj_utils_read_leb128(&value, buffer);
> +	assert_true(bytes_read == 3);
> +	assert_true(value == (int64_t)-624485);
> +
> +	memset(buffer, 0x80, 9);
> +	buffer[9] = 0x7f;
> +	bytes_read = lj_utils_read_leb128(&value, buffer);
> +	assert_true(bytes_read == 10);
> +	assert_true(value == INT64_MIN);
> +
> +	memset(buffer, 0xff, 9);
> +	buffer[9] = 0x00;
> +	bytes_read = lj_utils_read_leb128(&value, buffer);
> +	assert_true(bytes_read == 10);
> +	assert_true(value == INT64_MAX);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +/* Test miscellaneous reads, both signed and unsigned. */
> +static int test_misc_reads(void *state)
> +{
> +	int64_t i_value = 0;
> +	uint64_t u_value = 0;
> +
> +	size_t bytes_read = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	buffer[0] = 0x10;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(i_value == (int64_t)0x10);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(u_value == (uint64_t)0x10);
> +
> +	buffer[0] = 0x45;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(i_value == (int64_t)-0x3b);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 1);
> +	assert_true(u_value == (uint64_t)0x45);
> +
> +	buffer[0] = 0x8e;
> +	buffer[1] = 0x32;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(i_value == (int64_t)0x190e);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(u_value == (uint64_t)0x190e);
> +
> +	buffer[0] = 0xc1;
> +	buffer[1] = 0x57;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(i_value == (int64_t)-0x143f);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(u_value == (uint64_t)0x2bc1);
> +
> +	buffer[0] = 0xc1;
> +	buffer[1] = 0x57;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(i_value == (int64_t)-0x143f);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 2);
> +	assert_true(u_value == (uint64_t)0x2bc1);
> +
> +	buffer[0] = 0x80;
> +	buffer[1] = 0x80;
> +	buffer[2] = 0x80;
> +	buffer[3] = 0x3f;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 4);
> +	assert_true(i_value == (int64_t)0x7e00000);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 4);
> +	assert_true(u_value == (uint64_t)0x7e00000);
> +
> +	buffer[0] = 0x80;
> +	buffer[1] = 0x80;
> +	buffer[2] = 0x80;
> +	buffer[3] = 0x4f;
> +
> +	bytes_read = lj_utils_read_leb128(&i_value, buffer);
> +	assert_true(bytes_read == 4);
> +	assert_true(i_value == (int64_t)-0x6200000);
> +
> +	bytes_read = lj_utils_read_uleb128(&u_value, buffer);
> +	assert_true(bytes_read == 4);
> +	assert_true(u_value == (uint64_t)0x9e00000);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +static int test_read_n(void *state)
> +{
> +	int64_t i_value = 0;
> +	uint64_t u_value = 0;
> +
> +	size_t bytes_read = 0;
> +	uint8_t buffer[BUFFER_SIZE] = {0};
> +
> +	UNUSED(state);
> +
> +	bytes_read = lj_utils_read_leb128_n(&i_value, buffer, 1);
> +	assert_true(bytes_read == 1);
> +	assert_true(i_value == 0);
> +
> +	bytes_read = lj_utils_read_uleb128_n(&u_value, buffer, 1);
> +	assert_true(bytes_read == 1);
> +	assert_true(u_value == 0);
> +
> +	buffer[0] = 0x80;
> +	buffer[1] = 0x80;
> +	buffer[2] = 0x80;
> +	buffer[3] = 0x3f;
> +
> +	assert_true(lj_utils_read_leb128_n(&i_value, buffer, 3) == 0);
> +	assert_true(lj_utils_read_uleb128_n(&u_value, buffer, 3) == 0);
> +	/* Values are untouched in case of failure. */
> +	assert_true(i_value == 0);
> +	assert_true(u_value == 0);
> +
> +	bytes_read = lj_utils_read_leb128_n(&i_value, buffer, 4);
> +	assert_true(bytes_read == 4);
> +	assert_true(i_value == (int64_t)0x7e00000);
> +
> +	bytes_read = lj_utils_read_uleb128_n(&u_value, buffer, 4);
> +	assert_true(bytes_read == 4);
> +	assert_true(u_value == (uint64_t)0x7e00000);
> +
> +	bytes_read = lj_utils_read_leb128_n(&i_value, buffer, 5);
> +	assert_true(bytes_read == 4);
> +	assert_true(i_value == (int64_t)0x7e00000);
> +
> +	bytes_read = lj_utils_read_uleb128_n(&u_value, buffer, 5);
> +	assert_true(bytes_read == 4);
> +	assert_true(u_value == (uint64_t)0x7e00000);
> +
> +	return TEST_EXIT_SUCCESS;
> +}
> +
> +int main(void)
> +{
> +	const struct test_unit tgroup[] = {
> +		test_unit_def(test_write_uleb128),
> +		test_unit_def(test_write_leb128),
> +		test_unit_def(test_misc_writes),
> +		test_unit_def(test_read_uleb128),
> +		test_unit_def(test_read_leb128),
> +		test_unit_def(test_misc_reads),
> +		test_unit_def(test_read_n),
> +	};
> +	const int test_result = test_run_group(tgroup, NULL);
> +	return test_result;
> +}
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