int
main (int __attr_unused___ argc,
      char __attr_unused___ **argv)
{
  TEST_INIT ();

  jmem_init ();
  lit_init ();
  ecma_init ();

  const uint8_t _1_byte_long1[] = "\\u007F";
  const uint8_t _1_byte_long2[] = "\\u0000";
  const uint8_t _1_byte_long3[] = "\\u0065";

  const uint8_t _2_byte_long1[] = "\\u008F";
  const uint8_t _2_byte_long2[] = "\\u00FF";
  const uint8_t _2_byte_long3[] = "\\u07FF";

  const uint8_t _3_byte_long1[] = "\\u08FF";
  const uint8_t _3_byte_long2[] = "\\u0FFF";
  const uint8_t _3_byte_long3[] = "\\uFFFF";

  size_t length;

  // test 1-byte-long unicode sequences
  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _1_byte_long1 + 2, 4));
  JERRY_ASSERT (length == 1);

  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _1_byte_long2 + 2, 4));
  JERRY_ASSERT (length == 1);

  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _1_byte_long3 + 2, 4));
  JERRY_ASSERT (length == 1);

  // test 2-byte-long unicode sequences
  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _2_byte_long1 + 2, 4));
  JERRY_ASSERT (length == 2);

  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _2_byte_long2 + 2, 4));
  JERRY_ASSERT (length == 2);

  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _2_byte_long3 + 2, 4));
  JERRY_ASSERT (length == 2);

  // test 3-byte-long unicode sequences
  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _3_byte_long1 + 2, 4));
  JERRY_ASSERT (length != 2);

  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _3_byte_long2 + 2, 4));
  JERRY_ASSERT (length == 3);

  length = lit_char_get_utf8_length (lexer_hex_to_character (0, _3_byte_long3 + 2, 4));
  JERRY_ASSERT (length == 3);

  ecma_finalize ();
  lit_finalize ();
  jmem_finalize (true);

  return 0;
} /* main */
Beispiel #2
0
int
main ()
{
  TEST_INIT ();

  jmem_init ();

  for (uint32_t i = 0; i < test_iters; i++)
  {
    const size_t subiters = ((size_t) rand () % TEST_MAX_SUB_ITERS) + 1;

    for (size_t j = 0; j < subiters; j++)
    {
      ptrs[j] = (uint8_t *) jmem_pools_alloc ();

      if (ptrs[j] != NULL)
      {
        for (size_t k = 0; k < JMEM_POOL_CHUNK_SIZE; k++)
        {
          ptrs[j][k] = (uint8_t) (rand () % 256);
        }

        memcpy (data[j], ptrs[j], JMEM_POOL_CHUNK_SIZE);
      }
    }

    /* jmem_heap_print (false); */

    for (size_t j = 0; j < subiters; j++)
    {
      if (rand () % 256 == 0)
      {
        jmem_pools_collect_empty ();
      }

      if (ptrs[j] != NULL)
      {
        JERRY_ASSERT (!memcmp (data[j], ptrs[j], JMEM_POOL_CHUNK_SIZE));

        jmem_pools_free (ptrs[j]);
      }
    }
  }

#ifdef JMEM_STATS
  jmem_pools_stats_print ();
#endif /* JMEM_STATS */

  jmem_finalize (false);

  return 0;
} /* main */
int
main (int __attr_unused___ argc,
      char __attr_unused___ **argv)
{
  TEST_INIT ();

  const lit_utf8_byte_t *ptrs[test_sub_iters];
  ecma_number_t numbers[test_sub_iters];
  lit_utf8_byte_t strings[test_sub_iters][max_characters_in_string + 1];
  lit_utf8_size_t lengths[test_sub_iters];

  jmem_init ();
  lit_init ();

  for (uint32_t i = 0; i < test_iters; i++)
  {
    memset (numbers, 0, sizeof (ecma_number_t) * test_sub_iters);
    memset (lengths, 0, sizeof (lit_utf8_size_t) * test_sub_iters);
    memset (ptrs, 0, sizeof (lit_utf8_byte_t *) * test_sub_iters);

    for (uint32_t j = 0; j < test_sub_iters; j++)
    {
      int type = rand () % 3;
      if (type == 0)
      {
        lengths[j] = (lit_utf8_size_t) (rand () % max_characters_in_string + 1);
        generate_string (strings[j], lengths[j]);
        lit_create_literal_from_utf8_string (strings[j], lengths[j]);
        strings[j][lengths[j]] = '\0';
        ptrs[j] = strings[j];
        JERRY_ASSERT (ptrs[j]);
      }
      else if (type == 1)
      {
        lit_magic_string_id_t msi = (lit_magic_string_id_t) (rand () % LIT_MAGIC_STRING__COUNT);
        ptrs[j] = lit_get_magic_string_utf8 (msi);
        JERRY_ASSERT (ptrs[j]);
        lengths[j] = (lit_utf8_size_t) lit_zt_utf8_string_size (ptrs[j]);
        lit_create_literal_from_utf8_string (ptrs[j], lengths[j]);
      }
      else
      {
        ecma_number_t num = generate_number ();
        lengths[j] = ecma_number_to_utf8_string (num, strings[j], max_characters_in_string);
        lit_create_literal_from_num (num);
      }
    }

    // Add empty string
    lit_create_literal_from_utf8_string (NULL, 0);

    for (uint32_t j = 0; j < test_sub_iters; j++)
    {
      lit_literal_t lit1;
      lit_literal_t lit2;
      if (ptrs[j])
      {
        lit1 = lit_find_or_create_literal_from_utf8_string (ptrs[j], lengths[j]);
        lit2 = lit_find_literal_by_utf8_string (ptrs[j], lengths[j]);
        JERRY_ASSERT (compare_utf8_string_and_string_literal (ptrs[j], lengths[j], lit1));
        JERRY_ASSERT (compare_utf8_string_and_string_literal (ptrs[j], lengths[j], lit2));
      }
      else
      {
        lit1 = lit_find_or_create_literal_from_num (numbers[j]);
        lit2 = lit_find_literal_by_num (numbers[j]);
        JERRY_ASSERT (numbers[j] == lit_number_literal_get_number (lit1));
        JERRY_ASSERT (numbers[j] == lit_number_literal_get_number (lit2));
      }
      JERRY_ASSERT (lit1);
      JERRY_ASSERT (lit2);
      JERRY_ASSERT (lit1 == lit2);
    }

    // Check empty string exists
    JERRY_ASSERT (lit_find_literal_by_utf8_string (NULL, 0));
  }

  lit_finalize ();
  jmem_finalize (true);
  return 0;
} /* main */
Beispiel #4
0
int
main (int __attr_unused___ argc,
      char __attr_unused___ **argv)
{
  TEST_INIT ();

  jmem_init ();
  lit_init ();
  ecma_init ();

  lit_utf8_byte_t cesu8_string[max_bytes_in_string];
  ecma_char_t code_units[max_code_units_in_string];
  const lit_utf8_byte_t *saved_positions[max_code_units_in_string];

  for (int i = 0; i < test_iters; i++)
  {
    lit_utf8_size_t cesu8_string_size = (i == 0) ? 0 : (lit_utf8_size_t) (rand () % max_bytes_in_string);
    ecma_length_t length = generate_cesu8_string (cesu8_string, cesu8_string_size);

    ecma_string_t *char_collection_string_p = ecma_new_ecma_string_from_utf8 (cesu8_string, cesu8_string_size);
    ecma_length_t char_collection_len = ecma_string_get_length (char_collection_string_p);
    JERRY_ASSERT (char_collection_len == length);
    ecma_deref_ecma_string (char_collection_string_p);

    JERRY_ASSERT (lit_utf8_string_length (cesu8_string, cesu8_string_size) == length);

    const lit_utf8_byte_t *curr_p = cesu8_string;
    const lit_utf8_byte_t *end_p = cesu8_string + cesu8_string_size;

    ecma_length_t calculated_length = 0;
    ecma_length_t code_units_count = 0;

    while (curr_p < end_p)
    {
      code_units[code_units_count] = lit_utf8_peek_next (curr_p);
      saved_positions[code_units_count] = curr_p;
      code_units_count++;
      calculated_length++;

      lit_utf8_incr (&curr_p);
    }

    JERRY_ASSERT (length == calculated_length);

    if (code_units_count > 0)
    {
      for (int j = 0; j < test_subiters; j++)
      {
        ecma_length_t index = (ecma_length_t) rand () % code_units_count;
        curr_p = saved_positions[index];
        JERRY_ASSERT (lit_utf8_peek_next (curr_p) == code_units[index]);
      }
    }

    curr_p = (lit_utf8_byte_t *) end_p;
    while (curr_p > cesu8_string)
    {
      JERRY_ASSERT (code_units_count > 0);
      calculated_length--;
      JERRY_ASSERT (code_units[calculated_length] == lit_utf8_peek_prev (curr_p));
      lit_utf8_decr (&curr_p);
    }

    JERRY_ASSERT (calculated_length == 0);

    while (curr_p < end_p)
    {
      ecma_char_t code_unit = lit_utf8_read_next (&curr_p);
      JERRY_ASSERT (code_unit == code_units[calculated_length]);
      calculated_length++;
    }

    JERRY_ASSERT (length == calculated_length);

    while (curr_p > cesu8_string)
    {
      JERRY_ASSERT (code_units_count > 0);
      calculated_length--;
      JERRY_ASSERT (code_units[calculated_length] == lit_utf8_read_prev (&curr_p));
    }

    JERRY_ASSERT (calculated_length == 0);
  }

  /* Overlong-encoded code point */
  lit_utf8_byte_t invalid_cesu8_string_1[] = {0xC0, 0x82};
  JERRY_ASSERT (!lit_is_cesu8_string_valid (invalid_cesu8_string_1, sizeof (invalid_cesu8_string_1)));

  /* Overlong-encoded code point */
  lit_utf8_byte_t invalid_cesu8_string_2[] = {0xE0, 0x80, 0x81};
  JERRY_ASSERT (!lit_is_cesu8_string_valid (invalid_cesu8_string_2, sizeof (invalid_cesu8_string_2)));

  /* Pair of surrogates: 0xD901 0xDFF0 which encode Unicode character 0x507F0 */
  lit_utf8_byte_t invalid_cesu8_string_3[] = {0xED, 0xA4, 0x81, 0xED, 0xBF, 0xB0};
  JERRY_ASSERT (lit_is_cesu8_string_valid (invalid_cesu8_string_3, sizeof (invalid_cesu8_string_3)));

  /* Isolated high surrogate 0xD901 */
  lit_utf8_byte_t valid_utf8_string_1[] = {0xED, 0xA4, 0x81};
  JERRY_ASSERT (lit_is_cesu8_string_valid (valid_utf8_string_1, sizeof (valid_utf8_string_1)));

  lit_utf8_byte_t res_buf[3];
  lit_utf8_size_t res_size;

  res_size = lit_code_unit_to_utf8 (0x73, res_buf);
  JERRY_ASSERT (res_size == 1);
  JERRY_ASSERT (res_buf[0] == 0x73);

  res_size = lit_code_unit_to_utf8 (0x41A, res_buf);
  JERRY_ASSERT (res_size == 2);
  JERRY_ASSERT (res_buf[0] == 0xD0);
  JERRY_ASSERT (res_buf[1] == 0x9A);

  res_size = lit_code_unit_to_utf8 (0xD7FF, res_buf);
  JERRY_ASSERT (res_size == 3);
  JERRY_ASSERT (res_buf[0] == 0xED);
  JERRY_ASSERT (res_buf[1] == 0x9F);
  JERRY_ASSERT (res_buf[2] == 0xBF);

  ecma_finalize ();
  lit_finalize ();
  jmem_finalize (true);

  return 0;
} /* main */
int
main (void)
{
  TEST_INIT ();

  const lit_utf8_byte_t *ptrs[test_sub_iters];
  ecma_number_t numbers[test_sub_iters];
  lit_utf8_byte_t strings[test_sub_iters][max_characters_in_string + 1];
  lit_utf8_size_t lengths[test_sub_iters];

  jmem_init ();

  for (uint32_t i = 0; i < test_iters; i++)
  {
    memset (numbers, 0, sizeof (ecma_number_t) * test_sub_iters);
    memset (lengths, 0, sizeof (lit_utf8_size_t) * test_sub_iters);
    memset (ptrs, 0, sizeof (lit_utf8_byte_t *) * test_sub_iters);

    for (uint32_t j = 0; j < test_sub_iters; j++)
    {
      int type = rand () % 3;
      if (type == 0)
      {
        lengths[j] = (lit_utf8_size_t) (rand () % max_characters_in_string + 1);
        generate_string (strings[j], lengths[j]);
        ecma_find_or_create_literal_string (strings[j], lengths[j]);
        strings[j][lengths[j]] = '\0';
        ptrs[j] = strings[j];
        TEST_ASSERT (ptrs[j]);
      }
      else if (type == 1)
      {
        lit_magic_string_id_t msi = (lit_magic_string_id_t) (rand () % LIT_NON_INTERNAL_MAGIC_STRING__COUNT);
        ptrs[j] = lit_get_magic_string_utf8 (msi);
        TEST_ASSERT (ptrs[j]);
        lengths[j] = (lit_utf8_size_t) lit_zt_utf8_string_size (ptrs[j]);
        ecma_find_or_create_literal_string (ptrs[j], lengths[j]);
      }
      else
      {
        ecma_number_t num = generate_number ();
        lengths[j] = ecma_number_to_utf8_string (num, strings[j], max_characters_in_string);
        ecma_find_or_create_literal_number (num);
      }
    }

    /* Add empty string. */
    ecma_find_or_create_literal_string (NULL, 0);

    for (uint32_t j = 0; j < test_sub_iters; j++)
    {
      jmem_cpointer_t lit1;
      jmem_cpointer_t lit2;
      if (ptrs[j])
      {
        lit1 = ecma_find_or_create_literal_string (ptrs[j], lengths[j]);
        lit2 = ecma_find_or_create_literal_string (ptrs[j], lengths[j]);
        TEST_ASSERT (lit1 == lit2);
      }
      else
      {
        lit1 = ecma_find_or_create_literal_number (numbers[j]);
        lit2 = ecma_find_or_create_literal_number (numbers[j]);
        TEST_ASSERT (lit1 == lit2);
      }
      TEST_ASSERT (lit1);
      TEST_ASSERT (lit2);
      TEST_ASSERT (lit1 == lit2);
    }

    /* Check empty string exists. */
    TEST_ASSERT (ecma_find_or_create_literal_string (NULL, 0) != JMEM_CP_NULL);
  }

  ecma_finalize_lit_storage ();
  jmem_finalize ();
  return 0;
} /* main */