| 'use strict'; |
| |
| require('../common'); |
| const assert = require('assert'); |
| |
| const b = Buffer.allocUnsafe(1024); |
| const c = Buffer.allocUnsafe(512); |
| |
| let cntr = 0; |
| |
| { |
| // copy 512 bytes, from 0 to 512. |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = b.copy(c, 0, 0, 512); |
| assert.strictEqual(copied, 512); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], b[i]); |
| } |
| } |
| |
| { |
| // Current behavior is to coerce values to integers. |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = b.copy(c, '0', '0', '512'); |
| assert.strictEqual(copied, 512); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], b[i]); |
| } |
| } |
| |
| { |
| // Floats will be converted to integers via `Math.floor` |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = b.copy(c, 0, 0, 512.5); |
| assert.strictEqual(copied, 512); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], b[i]); |
| } |
| } |
| |
| { |
| // Copy c into b, without specifying sourceEnd |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = c.copy(b, 0, 0); |
| assert.strictEqual(copied, c.length); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(b[i], c[i]); |
| } |
| } |
| |
| { |
| // Copy c into b, without specifying sourceStart |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = c.copy(b, 0); |
| assert.strictEqual(copied, c.length); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(b[i], c[i]); |
| } |
| } |
| |
| { |
| // Copied source range greater than source length |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = c.copy(b, 0, 0, c.length + 1); |
| assert.strictEqual(copied, c.length); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(b[i], c[i]); |
| } |
| } |
| |
| { |
| // Copy longer buffer b to shorter c without targetStart |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = b.copy(c); |
| assert.strictEqual(copied, c.length); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], b[i]); |
| } |
| } |
| |
| { |
| // Copy starting near end of b to c |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = b.copy(c, 0, b.length - Math.floor(c.length / 2)); |
| assert.strictEqual(copied, Math.floor(c.length / 2)); |
| for (let i = 0; i < Math.floor(c.length / 2); i++) { |
| assert.strictEqual(c[i], b[b.length - Math.floor(c.length / 2) + i]); |
| } |
| for (let i = Math.floor(c.length / 2) + 1; i < c.length; i++) { |
| assert.strictEqual(c[c.length - 1], c[i]); |
| } |
| } |
| |
| { |
| // Try to copy 513 bytes, and check we don't overrun c |
| b.fill(++cntr); |
| c.fill(++cntr); |
| const copied = b.copy(c, 0, 0, 513); |
| assert.strictEqual(copied, c.length); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], b[i]); |
| } |
| } |
| |
| { |
| // copy 768 bytes from b into b |
| b.fill(++cntr); |
| b.fill(++cntr, 256); |
| const copied = b.copy(b, 0, 256, 1024); |
| assert.strictEqual(copied, 768); |
| for (let i = 0; i < b.length; i++) { |
| assert.strictEqual(b[i], cntr); |
| } |
| } |
| |
| // Copy string longer than buffer length (failure will segfault) |
| const bb = Buffer.allocUnsafe(10); |
| bb.fill('hello crazy world'); |
| |
| |
| // Try to copy from before the beginning of b. Should not throw. |
| b.copy(c, 0, 100, 10); |
| |
| // Throw with invalid source type |
| assert.throws( |
| () => Buffer.prototype.copy.call(0), |
| { |
| code: 'ERR_INVALID_ARG_TYPE', |
| name: 'TypeError', |
| } |
| ); |
| |
| // Copy throws at negative targetStart |
| assert.throws( |
| () => Buffer.allocUnsafe(5).copy(Buffer.allocUnsafe(5), -1, 0), |
| { |
| code: 'ERR_OUT_OF_RANGE', |
| name: 'RangeError', |
| message: 'The value of "targetStart" is out of range. ' + |
| 'It must be >= 0. Received -1' |
| } |
| ); |
| |
| // Copy throws at negative sourceStart |
| assert.throws( |
| () => Buffer.allocUnsafe(5).copy(Buffer.allocUnsafe(5), 0, -1), |
| { |
| code: 'ERR_OUT_OF_RANGE', |
| name: 'RangeError', |
| } |
| ); |
| |
| // Copy throws if sourceStart is greater than length of source |
| assert.throws( |
| () => Buffer.allocUnsafe(5).copy(Buffer.allocUnsafe(5), 0, 100), |
| { |
| code: 'ERR_OUT_OF_RANGE', |
| name: 'RangeError', |
| } |
| ); |
| |
| { |
| // Check sourceEnd resets to targetEnd if former is greater than the latter |
| b.fill(++cntr); |
| c.fill(++cntr); |
| b.copy(c, 0, 0, 1025); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], b[i]); |
| } |
| } |
| |
| // Throw with negative sourceEnd |
| assert.throws( |
| () => b.copy(c, 0, 0, -1), |
| { |
| code: 'ERR_OUT_OF_RANGE', |
| name: 'RangeError', |
| message: 'The value of "sourceEnd" is out of range. ' + |
| 'It must be >= 0. Received -1' |
| } |
| ); |
| |
| // When sourceStart is greater than sourceEnd, zero copied |
| assert.strictEqual(b.copy(c, 0, 100, 10), 0); |
| |
| // When targetStart > targetLength, zero copied |
| assert.strictEqual(b.copy(c, 512, 0, 10), 0); |
| |
| // Test that the `target` can be a Uint8Array. |
| { |
| const d = new Uint8Array(c); |
| // copy 512 bytes, from 0 to 512. |
| b.fill(++cntr); |
| d.fill(++cntr); |
| const copied = b.copy(d, 0, 0, 512); |
| assert.strictEqual(copied, 512); |
| for (let i = 0; i < d.length; i++) { |
| assert.strictEqual(d[i], b[i]); |
| } |
| } |
| |
| // Test that the source can be a Uint8Array, too. |
| { |
| const e = new Uint8Array(b); |
| // copy 512 bytes, from 0 to 512. |
| e.fill(++cntr); |
| c.fill(++cntr); |
| const copied = Buffer.prototype.copy.call(e, c, 0, 0, 512); |
| assert.strictEqual(copied, 512); |
| for (let i = 0; i < c.length; i++) { |
| assert.strictEqual(c[i], e[i]); |
| } |
| } |
| |
| // https://github.com/nodejs/node/issues/23668: Do not crash for invalid input. |
| c.fill('c'); |
| b.copy(c, 'not a valid offset'); |
| // Make sure this acted like a regular copy with `0` offset. |
| assert.deepStrictEqual(c, b.slice(0, c.length)); |
| |
| // Copy into a Uint16Array target; bytes are packed into 16-bit elements. |
| { |
| const x = new Uint16Array(4); |
| const buf = Buffer.of(1, 2, 3, 4); |
| const copied = buf.copy(x); |
| assert.strictEqual(copied, 4); |
| assert.ok(x instanceof Uint16Array); |
| const bytes = new Uint8Array(x.buffer, x.byteOffset, 4); |
| assert.deepStrictEqual(Array.from(bytes), [1, 2, 3, 4]); |
| const remaining = new Uint8Array( |
| x.buffer, |
| x.byteOffset + 4, |
| x.byteLength - 4 |
| ); |
| assert.ok(remaining.every((b) => b === 0)); |
| } |
| |
| { |
| c.fill('C'); |
| assert.throws(() => { |
| b.copy(c, { [Symbol.toPrimitive]() { throw new Error('foo'); } }); |
| }, /foo/); |
| // No copying took place: |
| assert.deepStrictEqual(c.toString(), 'C'.repeat(c.length)); |
| } |
| |
| // Copying to/from SharedArrayBuffer-backed buffers. The relaxed-atomic copy |
| // path is used only when both sides are backed by a SharedArrayBuffer; mixed |
| // copies (one shared, one not) go through the regular non-atomic overload. |
| { |
| // SharedArrayBuffer -> SharedArrayBuffer. |
| const src = Buffer.from(new SharedArrayBuffer(512)).fill(0x61); |
| const dst = Buffer.from(new SharedArrayBuffer(512)).fill(0x62); |
| const copied = src.copy(dst, 0, 0, 512); |
| assert.strictEqual(copied, 512); |
| assert.deepStrictEqual(Buffer.from(dst), Buffer.from(src)); |
| } |
| |
| { |
| // SharedArrayBuffer source -> regular Buffer target (mixed). |
| const src = Buffer.from(new SharedArrayBuffer(256)).fill(0x63); |
| const dst = Buffer.allocUnsafe(256).fill(0x64); |
| assert.strictEqual(src.copy(dst), 256); |
| assert.deepStrictEqual(dst, Buffer.from(src)); |
| } |
| |
| { |
| // Regular Buffer source -> SharedArrayBuffer target (mixed). |
| const src = Buffer.allocUnsafe(256).fill(0x65); |
| const dst = Buffer.from(new SharedArrayBuffer(256)).fill(0x66); |
| assert.strictEqual(src.copy(dst), 256); |
| assert.deepStrictEqual(Buffer.from(dst), src); |
| } |
| |
| { |
| // Views with a non-zero byteOffset over a SharedArrayBuffer. The native copy |
| // is relative to the underlying ArrayBuffer, so the view's byteOffset must be |
| // accounted for. |
| const sab = new SharedArrayBuffer(16); |
| const whole = Buffer.from(sab); |
| for (let i = 0; i < 16; i++) whole[i] = i; |
| const src = Buffer.from(sab, 4, 8); // sab bytes 4..11 |
| const dst = Buffer.from(sab, 12, 4); // sab bytes 12..15 |
| assert.strictEqual(src.copy(dst, 0, 0, 4), 4); |
| assert.deepStrictEqual( |
| [...whole], |
| [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 4, 5, 6, 7]); |
| } |
| |
| { |
| // Overlapping copy within a single SharedArrayBuffer uses memmove semantics. |
| const buf = Buffer.from(new SharedArrayBuffer(8)); |
| for (let i = 0; i < 8; i++) buf[i] = i + 1; // [1,2,3,4,5,6,7,8] |
| assert.strictEqual(buf.copy(buf, 2, 0, 6), 6); |
| assert.deepStrictEqual([...buf], [1, 2, 1, 2, 3, 4, 5, 6]); |
| } |