Bytes.test.js 8.9 KB

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  1. const { ethers } = require('hardhat');
  2. const { expect } = require('chai');
  3. const { loadFixture } = require('@nomicfoundation/hardhat-network-helpers');
  4. const { MAX_UINT128, MAX_UINT64, MAX_UINT32, MAX_UINT16 } = require('../helpers/constants');
  5. // Helper functions for fixed bytes types
  6. const bytes32 = value => ethers.toBeHex(value, 32);
  7. const bytes16 = value => ethers.toBeHex(value, 16);
  8. const bytes8 = value => ethers.toBeHex(value, 8);
  9. const bytes4 = value => ethers.toBeHex(value, 4);
  10. const bytes2 = value => ethers.toBeHex(value, 2);
  11. async function fixture() {
  12. const mock = await ethers.deployContract('$Bytes');
  13. return { mock };
  14. }
  15. const lorem = ethers.toUtf8Bytes(
  16. 'Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua.',
  17. );
  18. const present = lorem.at(1);
  19. const absent = 255;
  20. describe('Bytes', function () {
  21. before(async function () {
  22. Object.assign(this, await loadFixture(fixture));
  23. });
  24. describe('indexOf', function () {
  25. it('first', async function () {
  26. expect(await this.mock.$indexOf(lorem, ethers.toBeHex(present))).to.equal(lorem.indexOf(present));
  27. });
  28. it('from index', async function () {
  29. for (const start in Array(lorem.length + 10).fill()) {
  30. const index = lorem.indexOf(present, start);
  31. const result = index === -1 ? ethers.MaxUint256 : index;
  32. expect(await this.mock.$indexOf(lorem, ethers.toBeHex(present), ethers.Typed.uint256(start))).to.equal(result);
  33. }
  34. });
  35. it('absent', async function () {
  36. expect(await this.mock.$indexOf(lorem, ethers.toBeHex(absent))).to.equal(ethers.MaxUint256);
  37. });
  38. });
  39. describe('lastIndexOf', function () {
  40. it('first', async function () {
  41. expect(await this.mock.$lastIndexOf(lorem, ethers.toBeHex(present))).to.equal(lorem.lastIndexOf(present));
  42. });
  43. it('from index', async function () {
  44. for (const start in Array(lorem.length + 10).fill()) {
  45. const index = lorem.lastIndexOf(present, start);
  46. const result = index === -1 ? ethers.MaxUint256 : index;
  47. expect(await this.mock.$lastIndexOf(lorem, ethers.toBeHex(present), ethers.Typed.uint256(start))).to.equal(
  48. result,
  49. );
  50. }
  51. });
  52. it('absent', async function () {
  53. expect(await this.mock.$lastIndexOf(lorem, ethers.toBeHex(absent))).to.equal(ethers.MaxUint256);
  54. });
  55. });
  56. describe('slice', function () {
  57. describe('slice(bytes, uint256)', function () {
  58. for (const [descr, start] of Object.entries({
  59. 'start = 0': 0,
  60. 'start within bound': 10,
  61. 'start out of bound': 1000,
  62. })) {
  63. it(descr, async function () {
  64. const result = ethers.hexlify(lorem.slice(start));
  65. expect(await this.mock.$slice(lorem, start)).to.equal(result);
  66. });
  67. }
  68. });
  69. describe('slice(bytes, uint256, uint256)', function () {
  70. for (const [descr, [start, end]] of Object.entries({
  71. 'start = 0': [0, 42],
  72. 'start and end within bound': [17, 42],
  73. 'end out of bound': [42, 1000],
  74. 'start = end': [17, 17],
  75. 'start > end': [42, 17],
  76. })) {
  77. it(descr, async function () {
  78. const result = ethers.hexlify(lorem.slice(start, end));
  79. expect(await this.mock.$slice(lorem, start, ethers.Typed.uint256(end))).to.equal(result);
  80. });
  81. }
  82. });
  83. });
  84. describe('reverseBits', function () {
  85. describe('reverseBytes32', function () {
  86. it('reverses bytes correctly', async function () {
  87. await expect(this.mock.$reverseBytes32(bytes32(0))).to.eventually.equal(bytes32(0));
  88. await expect(this.mock.$reverseBytes32(bytes32(ethers.MaxUint256))).to.eventually.equal(
  89. bytes32(ethers.MaxUint256),
  90. );
  91. // Test complex pattern that clearly shows byte reversal
  92. await expect(
  93. this.mock.$reverseBytes32('0x0123456789abcdef0123456789abcdef0123456789abcdef0123456789abcdef'),
  94. ).to.eventually.equal('0xefcdab8967452301efcdab8967452301efcdab8967452301efcdab8967452301');
  95. });
  96. it('double reverse returns original', async function () {
  97. const values = [0n, 1n, 0x12345678n, ethers.MaxUint256];
  98. for (const value of values) {
  99. const reversed = await this.mock.$reverseBytes32(bytes32(value));
  100. await expect(this.mock.$reverseBytes32(reversed)).to.eventually.equal(bytes32(value));
  101. }
  102. });
  103. });
  104. describe('reverseBytes16', function () {
  105. it('reverses bytes correctly', async function () {
  106. await expect(this.mock.$reverseBytes16(bytes16(0))).to.eventually.equal(bytes16(0));
  107. await expect(this.mock.$reverseBytes16(bytes16(MAX_UINT128))).to.eventually.equal(bytes16(MAX_UINT128));
  108. // Test complex pattern that clearly shows byte reversal
  109. await expect(this.mock.$reverseBytes16('0x0123456789abcdef0123456789abcdef')).to.eventually.equal(
  110. '0xefcdab8967452301efcdab8967452301',
  111. );
  112. });
  113. it('double reverse returns original', async function () {
  114. const values = [0n, 1n, 0x12345678n, MAX_UINT128];
  115. for (const value of values) {
  116. const reversed = await this.mock.$reverseBytes16(bytes16(value));
  117. // Cast back to uint128 for comparison since function returns uint256
  118. await expect(this.mock.$reverseBytes16(reversed)).to.eventually.equal(bytes16(value & MAX_UINT128));
  119. }
  120. });
  121. });
  122. describe('reverseBytes8', function () {
  123. it('reverses bytes correctly', async function () {
  124. await expect(this.mock.$reverseBytes8(bytes8(0))).to.eventually.equal(bytes8(0));
  125. await expect(this.mock.$reverseBytes8(bytes8(MAX_UINT64))).to.eventually.equal(bytes8(MAX_UINT64));
  126. // Test known pattern: 0x123456789ABCDEF0 -> 0xF0DEBC9A78563412
  127. await expect(this.mock.$reverseBytes8('0x123456789abcdef0')).to.eventually.equal('0xf0debc9a78563412');
  128. });
  129. it('double reverse returns original', async function () {
  130. const values = [0n, 1n, 0x12345678n, MAX_UINT64];
  131. for (const value of values) {
  132. const reversed = await this.mock.$reverseBytes8(bytes8(value));
  133. // Cast back to uint64 for comparison since function returns uint256
  134. await expect(this.mock.$reverseBytes8(reversed)).to.eventually.equal(bytes8(value & MAX_UINT64));
  135. }
  136. });
  137. });
  138. describe('reverseBytes4', function () {
  139. it('reverses bytes correctly', async function () {
  140. await expect(this.mock.$reverseBytes4(bytes4(0))).to.eventually.equal(bytes4(0));
  141. await expect(this.mock.$reverseBytes4(bytes4(MAX_UINT32))).to.eventually.equal(bytes4(MAX_UINT32));
  142. // Test known pattern: 0x12345678 -> 0x78563412
  143. await expect(this.mock.$reverseBytes4(bytes4(0x12345678))).to.eventually.equal(bytes4(0x78563412));
  144. });
  145. it('double reverse returns original', async function () {
  146. const values = [0n, 1n, 0x12345678n, MAX_UINT32];
  147. for (const value of values) {
  148. const reversed = await this.mock.$reverseBytes4(bytes4(value));
  149. // Cast back to uint32 for comparison since function returns uint256
  150. await expect(this.mock.$reverseBytes4(reversed)).to.eventually.equal(bytes4(value & MAX_UINT32));
  151. }
  152. });
  153. });
  154. describe('reverseBytes2', function () {
  155. it('reverses bytes correctly', async function () {
  156. await expect(this.mock.$reverseBytes2(bytes2(0))).to.eventually.equal(bytes2(0));
  157. await expect(this.mock.$reverseBytes2(bytes2(MAX_UINT16))).to.eventually.equal(bytes2(MAX_UINT16));
  158. // Test known pattern: 0x1234 -> 0x3412
  159. await expect(this.mock.$reverseBytes2(bytes2(0x1234))).to.eventually.equal(bytes2(0x3412));
  160. });
  161. it('double reverse returns original', async function () {
  162. const values = [0n, 1n, 0x1234n, MAX_UINT16];
  163. for (const value of values) {
  164. const reversed = await this.mock.$reverseBytes2(bytes2(value));
  165. // Cast back to uint16 for comparison since function returns uint256
  166. await expect(this.mock.$reverseBytes2(reversed)).to.eventually.equal(bytes2(value & MAX_UINT16));
  167. }
  168. });
  169. });
  170. describe('edge cases', function () {
  171. it('handles single byte values', async function () {
  172. await expect(this.mock.$reverseBytes2(bytes2(0x00ff))).to.eventually.equal(bytes2(0xff00));
  173. await expect(this.mock.$reverseBytes4(bytes4(0x000000ff))).to.eventually.equal(bytes4(0xff000000));
  174. });
  175. it('handles alternating patterns', async function () {
  176. await expect(this.mock.$reverseBytes2(bytes2(0xaaaa))).to.eventually.equal(bytes2(0xaaaa));
  177. await expect(this.mock.$reverseBytes2(bytes2(0x5555))).to.eventually.equal(bytes2(0x5555));
  178. await expect(this.mock.$reverseBytes4(bytes4(0xaaaaaaaa))).to.eventually.equal(bytes4(0xaaaaaaaa));
  179. await expect(this.mock.$reverseBytes4(bytes4(0x55555555))).to.eventually.equal(bytes4(0x55555555));
  180. });
  181. });
  182. });
  183. });