check_strutil.c 5.9 KB

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  1. /*
  2. * This file is part of the libsigrok project.
  3. *
  4. * Copyright (C) 2013 Uwe Hermann <uwe@hermann-uwe.de>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. #include <check.h>
  21. #include "../libsigrok.h"
  22. #include "lib.h"
  23. struct sr_context *sr_ctx;
  24. static void setup(void)
  25. {
  26. int ret;
  27. ret = sr_init(&sr_ctx);
  28. fail_unless(ret == SR_OK, "sr_init() failed: %d.", ret);
  29. }
  30. static void teardown(void)
  31. {
  32. int ret;
  33. ret = sr_exit(sr_ctx);
  34. fail_unless(ret == SR_OK, "sr_exit() failed: %d.", ret);
  35. }
  36. static void test_samplerate(uint64_t samplerate, const char *expected)
  37. {
  38. char *s;
  39. s = sr_samplerate_string(samplerate);
  40. fail_unless(s != NULL);
  41. fail_unless(!strcmp(s, expected),
  42. "Invalid result for '%s': %s.", expected, s);
  43. g_free(s);
  44. }
  45. /*
  46. * Check various inputs for sr_samplerate_string():
  47. *
  48. * - One, two, or three digit results (e.g. 5/55/555 MHz).
  49. * - Results which contain commas (e.g. 1.234 / 12.34 / 123.4 kHz).
  50. * - Results with zeroes right after the comma (e.g. 1.034 Hz).
  51. * See also: http://sigrok.org/bugzilla/show_bug.cgi?id=73
  52. * - Results with zeroes in the middle (e.g. 1.204 kHz).
  53. * - All of the above, but using SR_MHZ() and friends.
  54. * See also: http://sigrok.org/bugzilla/show_bug.cgi?id=72
  55. *
  56. * All of the above tests are done for the Hz/kHz/MHz/GHz ranges.
  57. */
  58. START_TEST(test_hz)
  59. {
  60. test_samplerate(0, "0 Hz");
  61. test_samplerate(1, "1 Hz");
  62. test_samplerate(23, "23 Hz");
  63. test_samplerate(644, "644 Hz");
  64. test_samplerate(604, "604 Hz");
  65. test_samplerate(550, "550 Hz");
  66. /* Again, but now using SR_HZ(). */
  67. test_samplerate(SR_HZ(0), "0 Hz");
  68. test_samplerate(SR_HZ(1), "1 Hz");
  69. test_samplerate(SR_HZ(23), "23 Hz");
  70. test_samplerate(SR_HZ(644), "644 Hz");
  71. test_samplerate(SR_HZ(604), "604 Hz");
  72. test_samplerate(SR_HZ(550), "550 Hz");
  73. }
  74. END_TEST
  75. START_TEST(test_khz)
  76. {
  77. test_samplerate(1000, "1 kHz");
  78. test_samplerate(99000, "99 kHz");
  79. test_samplerate(225000, "225 kHz");
  80. test_samplerate(1234, "1.234 kHz");
  81. test_samplerate(12345, "12.345 kHz");
  82. test_samplerate(123456, "123.456 kHz");
  83. test_samplerate(1034, "1.034 kHz");
  84. test_samplerate(1004, "1.004 kHz");
  85. test_samplerate(1230, "1.23 kHz");
  86. /* Again, but now using SR_KHZ(). */
  87. test_samplerate(SR_KHZ(1), "1 kHz");
  88. test_samplerate(SR_KHZ(99), "99 kHz");
  89. test_samplerate(SR_KHZ(225), "225 kHz");
  90. test_samplerate(SR_KHZ(1.234), "1.234 kHz");
  91. test_samplerate(SR_KHZ(12.345), "12.345 kHz");
  92. test_samplerate(SR_KHZ(123.456), "123.456 kHz");
  93. test_samplerate(SR_KHZ(1.204), "1.204 kHz");
  94. test_samplerate(SR_KHZ(1.034), "1.034 kHz");
  95. test_samplerate(SR_KHZ(1.004), "1.004 kHz");
  96. test_samplerate(SR_KHZ(1.230), "1.23 kHz");
  97. }
  98. END_TEST
  99. START_TEST(test_mhz)
  100. {
  101. test_samplerate(1000000, "1 MHz");
  102. test_samplerate(28000000, "28 MHz");
  103. test_samplerate(775000000, "775 MHz");
  104. test_samplerate(1234567, "1.234567 MHz");
  105. test_samplerate(12345678, "12.345678 MHz");
  106. test_samplerate(123456789, "123.456789 MHz");
  107. test_samplerate(1230007, "1.230007 MHz");
  108. test_samplerate(1034567, "1.034567 MHz");
  109. test_samplerate(1000007, "1.000007 MHz");
  110. test_samplerate(1234000, "1.234 MHz");
  111. /* Again, but now using SR_MHZ(). */
  112. test_samplerate(SR_MHZ(1), "1 MHz");
  113. test_samplerate(SR_MHZ(28), "28 MHz");
  114. test_samplerate(SR_MHZ(775), "775 MHz");
  115. test_samplerate(SR_MHZ(1.234567), "1.234567 MHz");
  116. test_samplerate(SR_MHZ(12.345678), "12.345678 MHz");
  117. test_samplerate(SR_MHZ(123.456789), "123.456789 MHz");
  118. test_samplerate(SR_MHZ(1.230007), "1.230007 MHz");
  119. test_samplerate(SR_MHZ(1.034567), "1.034567 MHz");
  120. test_samplerate(SR_MHZ(1.000007), "1.000007 MHz");
  121. test_samplerate(SR_MHZ(1.234000), "1.234 MHz");
  122. }
  123. END_TEST
  124. START_TEST(test_ghz)
  125. {
  126. /* Note: Numbers > 2^32 need a ULL suffix. */
  127. test_samplerate(1000000000, "1 GHz");
  128. test_samplerate(5000000000ULL, "5 GHz");
  129. test_samplerate(72000000000ULL, "72 GHz");
  130. test_samplerate(388000000000ULL, "388 GHz");
  131. test_samplerate(4417594444ULL, "4.417594444 GHz");
  132. test_samplerate(44175944444ULL, "44.175944444 GHz");
  133. test_samplerate(441759444441ULL, "441.759444441 GHz");
  134. test_samplerate(441759000001ULL, "441.759000001 GHz");
  135. test_samplerate(441050000000ULL, "441.05 GHz");
  136. test_samplerate(441000000005ULL, "441.000000005 GHz");
  137. test_samplerate(441500000000ULL, "441.5 GHz");
  138. /* Again, but now using SR_GHZ(). */
  139. test_samplerate(SR_GHZ(1), "1 GHz");
  140. test_samplerate(SR_GHZ(5), "5 GHz");
  141. test_samplerate(SR_GHZ(72), "72 GHz");
  142. test_samplerate(SR_GHZ(388), "388 GHz");
  143. test_samplerate(SR_GHZ(4.417594444), "4.417594444 GHz");
  144. test_samplerate(SR_GHZ(44.175944444), "44.175944444 GHz");
  145. test_samplerate(SR_GHZ(441.759444441), "441.759444441 GHz");
  146. test_samplerate(SR_GHZ(441.759000001), "441.759000001 GHz");
  147. test_samplerate(SR_GHZ(441.050000000), "441.05 GHz");
  148. test_samplerate(SR_GHZ(441.000000005), "441.000000005 GHz");
  149. test_samplerate(SR_GHZ(441.500000000), "441.5 GHz");
  150. /* Now check the biggest-possible samplerate (2^64 Hz). */
  151. // test_samplerate(18446744073709551615ULL, "18446744073.709551615 GHz");
  152. // test_samplerate(SR_GHZ(18446744073ULL), "18446744073 GHz");
  153. }
  154. END_TEST
  155. Suite *suite_strutil(void)
  156. {
  157. Suite *s;
  158. TCase *tc;
  159. s = suite_create("strutil");
  160. tc = tcase_create("sr_samplerate_string");
  161. tcase_add_checked_fixture(tc, setup, teardown);
  162. tcase_add_test(tc, test_hz);
  163. tcase_add_test(tc, test_khz);
  164. tcase_add_test(tc, test_mhz);
  165. tcase_add_test(tc, test_ghz);
  166. suite_add_tcase(s, tc);
  167. return s;
  168. }