Checkpoints.t.js 4.4 KB

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  1. const format = require('../format-lines');
  2. const { capitalize } = require('../../helpers');
  3. const { OPTS } = require('./Checkpoints.opts.js');
  4. // TEMPLATE
  5. const header = `\
  6. pragma solidity ^0.8.0;
  7. import "forge-std/Test.sol";
  8. import "../../../contracts/utils/math/SafeCast.sol";
  9. import "../../../contracts/utils/structs/Checkpoints.sol";
  10. `;
  11. /* eslint-disable max-len */
  12. const template = opts => `\
  13. using Checkpoints for Checkpoints.${opts.historyTypeName};
  14. // Maximum gap between keys used during the fuzzing tests: the \`_prepareKeys\` function with make sure that
  15. // key#n+1 is in the [key#n, key#n + _KEY_MAX_GAP] range.
  16. uint8 internal constant _KEY_MAX_GAP = 64;
  17. Checkpoints.${opts.historyTypeName} internal _ckpts;
  18. // helpers
  19. function _bound${capitalize(opts.keyTypeName)}(
  20. ${opts.keyTypeName} x,
  21. ${opts.keyTypeName} min,
  22. ${opts.keyTypeName} max
  23. ) internal view returns (${opts.keyTypeName}) {
  24. return SafeCast.to${capitalize(opts.keyTypeName)}(bound(uint256(x), uint256(min), uint256(max)));
  25. }
  26. function _prepareKeys(
  27. ${opts.keyTypeName}[] memory keys,
  28. ${opts.keyTypeName} maxSpread
  29. ) internal view {
  30. ${opts.keyTypeName} lastKey = 0;
  31. for (uint256 i = 0; i < keys.length; ++i) {
  32. ${opts.keyTypeName} key = _bound${capitalize(opts.keyTypeName)}(keys[i], lastKey, lastKey + maxSpread);
  33. keys[i] = key;
  34. lastKey = key;
  35. }
  36. }
  37. function _assertLatestCheckpoint(
  38. bool exist,
  39. ${opts.keyTypeName} key,
  40. ${opts.valueTypeName} value
  41. ) internal {
  42. (bool _exist, ${opts.keyTypeName} _key, ${opts.valueTypeName} _value) = _ckpts.latestCheckpoint();
  43. assertEq(_exist, exist);
  44. assertEq(_key, key);
  45. assertEq(_value, value);
  46. }
  47. // tests
  48. function testPush(
  49. ${opts.keyTypeName}[] memory keys,
  50. ${opts.valueTypeName}[] memory values,
  51. ${opts.keyTypeName} pastKey
  52. ) public {
  53. vm.assume(values.length > 0 && values.length <= keys.length);
  54. _prepareKeys(keys, _KEY_MAX_GAP);
  55. // initial state
  56. assertEq(_ckpts.length(), 0);
  57. assertEq(_ckpts.latest(), 0);
  58. _assertLatestCheckpoint(false, 0, 0);
  59. uint256 duplicates = 0;
  60. for (uint256 i = 0; i < keys.length; ++i) {
  61. ${opts.keyTypeName} key = keys[i];
  62. ${opts.valueTypeName} value = values[i % values.length];
  63. if (i > 0 && key == keys[i-1]) ++duplicates;
  64. // push
  65. _ckpts.push(key, value);
  66. // check length & latest
  67. assertEq(_ckpts.length(), i + 1 - duplicates);
  68. assertEq(_ckpts.latest(), value);
  69. _assertLatestCheckpoint(true, key, value);
  70. }
  71. if (keys.length > 0) {
  72. ${opts.keyTypeName} lastKey = keys[keys.length - 1];
  73. if (lastKey > 0) {
  74. pastKey = _bound${capitalize(opts.keyTypeName)}(pastKey, 0, lastKey - 1);
  75. vm.expectRevert();
  76. this.push(pastKey, values[keys.length % values.length]);
  77. }
  78. }
  79. }
  80. // used to test reverts
  81. function push(${opts.keyTypeName} key, ${opts.valueTypeName} value) external {
  82. _ckpts.push(key, value);
  83. }
  84. function testLookup(
  85. ${opts.keyTypeName}[] memory keys,
  86. ${opts.valueTypeName}[] memory values,
  87. ${opts.keyTypeName} lookup
  88. ) public {
  89. vm.assume(values.length > 0 && values.length <= keys.length);
  90. _prepareKeys(keys, _KEY_MAX_GAP);
  91. ${opts.keyTypeName} lastKey = keys.length == 0 ? 0 : keys[keys.length - 1];
  92. lookup = _bound${capitalize(opts.keyTypeName)}(lookup, 0, lastKey + _KEY_MAX_GAP);
  93. ${opts.valueTypeName} upper = 0;
  94. ${opts.valueTypeName} lower = 0;
  95. ${opts.keyTypeName} lowerKey = type(${opts.keyTypeName}).max;
  96. for (uint256 i = 0; i < keys.length; ++i) {
  97. ${opts.keyTypeName} key = keys[i];
  98. ${opts.valueTypeName} value = values[i % values.length];
  99. // push
  100. _ckpts.push(key, value);
  101. // track expected result of lookups
  102. if (key <= lookup) {
  103. upper = value;
  104. }
  105. // find the first key that is not smaller than the lookup key
  106. if (key >= lookup && (i == 0 || keys[i-1] < lookup)) {
  107. lowerKey = key;
  108. }
  109. if (key == lowerKey) {
  110. lower = value;
  111. }
  112. }
  113. // check lookup
  114. assertEq(_ckpts.lowerLookup(lookup), lower);
  115. assertEq(_ckpts.upperLookup(lookup), upper);
  116. assertEq(_ckpts.upperLookupRecent(lookup), upper);
  117. }
  118. `;
  119. // GENERATE
  120. module.exports = format(
  121. header,
  122. ...OPTS.flatMap(opts => [`contract Checkpoints${opts.historyTypeName}Test is Test {`, [template(opts)], '}']),
  123. );