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@@ -16,10 +16,13 @@ const uint256 = value => ethers.Typed.uint256(value);
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bytes.zero = '0x';
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uint256.zero = 0n;
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-async function testCommutative(fn, lhs, rhs, expected, ...extra) {
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- expect(await fn(lhs, rhs, ...extra)).to.deep.equal(expected);
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- expect(await fn(rhs, lhs, ...extra)).to.deep.equal(expected);
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-}
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+const testCommutative = (fn, lhs, rhs, expected, ...extra) =>
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+ Promise.all([
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+ expect(fn(lhs, rhs, ...extra)).to.eventually.deep.equal(expected),
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+ expect(fn(rhs, lhs, ...extra)).to.eventually.deep.equal(expected),
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+ ]);
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+
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+const splitHighLow = n => [n / (1n << 256n), n % (1n << 256n)];
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async function fixture() {
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const mock = await ethers.deployContract('$Math');
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@@ -39,6 +42,24 @@ describe('Math', function () {
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Object.assign(this, await loadFixture(fixture));
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});
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+ describe('add512', function () {
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+ it('adds correctly without reverting', async function () {
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+ const values = [0n, 1n, 17n, 42n, ethers.MaxUint256 - 1n, ethers.MaxUint256];
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+ for (const [a, b] of product(values, values)) {
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+ await expect(this.mock.$add512(a, b)).to.eventually.deep.equal(splitHighLow(a + b));
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+ }
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+ });
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+ });
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+
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+ describe('mul512', function () {
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+ it('multiplies correctly without reverting', async function () {
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+ const values = [0n, 1n, 17n, 42n, ethers.MaxUint256 - 1n, ethers.MaxUint256];
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+ for (const [a, b] of product(values, values)) {
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+ await expect(this.mock.$mul512(a, b)).to.eventually.deep.equal(splitHighLow(a * b));
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+ }
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+ });
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+ });
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+
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describe('tryAdd', function () {
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it('adds correctly', async function () {
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const a = 5678n;
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@@ -57,13 +78,13 @@ describe('Math', function () {
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it('subtracts correctly', async function () {
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const a = 5678n;
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const b = 1234n;
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- expect(await this.mock.$trySub(a, b)).to.deep.equal([true, a - b]);
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+ await expect(this.mock.$trySub(a, b)).to.eventually.deep.equal([true, a - b]);
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});
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it('reverts if subtraction result would be negative', async function () {
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const a = 1234n;
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const b = 5678n;
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- expect(await this.mock.$trySub(a, b)).to.deep.equal([false, 0n]);
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+ await expect(this.mock.$trySub(a, b)).to.eventually.deep.equal([false, 0n]);
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});
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});
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@@ -91,25 +112,25 @@ describe('Math', function () {
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it('divides correctly', async function () {
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const a = 5678n;
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const b = 5678n;
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- expect(await this.mock.$tryDiv(a, b)).to.deep.equal([true, a / b]);
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+ await expect(this.mock.$tryDiv(a, b)).to.eventually.deep.equal([true, a / b]);
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});
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it('divides zero correctly', async function () {
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const a = 0n;
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const b = 5678n;
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- expect(await this.mock.$tryDiv(a, b)).to.deep.equal([true, a / b]);
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+ await expect(this.mock.$tryDiv(a, b)).to.eventually.deep.equal([true, a / b]);
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});
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it('returns complete number result on non-even division', async function () {
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const a = 7000n;
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const b = 5678n;
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- expect(await this.mock.$tryDiv(a, b)).to.deep.equal([true, a / b]);
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+ await expect(this.mock.$tryDiv(a, b)).to.eventually.deep.equal([true, a / b]);
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});
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it('reverts on division by zero', async function () {
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const a = 5678n;
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const b = 0n;
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- expect(await this.mock.$tryDiv(a, b)).to.deep.equal([false, 0n]);
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+ await expect(this.mock.$tryDiv(a, b)).to.eventually.deep.equal([false, 0n]);
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});
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});
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@@ -118,32 +139,88 @@ describe('Math', function () {
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it('when the dividend is smaller than the divisor', async function () {
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const a = 284n;
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const b = 5678n;
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- expect(await this.mock.$tryMod(a, b)).to.deep.equal([true, a % b]);
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+ await expect(this.mock.$tryMod(a, b)).to.eventually.deep.equal([true, a % b]);
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});
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it('when the dividend is equal to the divisor', async function () {
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const a = 5678n;
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const b = 5678n;
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- expect(await this.mock.$tryMod(a, b)).to.deep.equal([true, a % b]);
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+ await expect(this.mock.$tryMod(a, b)).to.eventually.deep.equal([true, a % b]);
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});
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it('when the dividend is larger than the divisor', async function () {
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const a = 7000n;
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const b = 5678n;
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- expect(await this.mock.$tryMod(a, b)).to.deep.equal([true, a % b]);
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+ await expect(this.mock.$tryMod(a, b)).to.eventually.deep.equal([true, a % b]);
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});
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it('when the dividend is a multiple of the divisor', async function () {
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const a = 17034n; // 17034 == 5678 * 3
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const b = 5678n;
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- expect(await this.mock.$tryMod(a, b)).to.deep.equal([true, a % b]);
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+ await expect(this.mock.$tryMod(a, b)).to.eventually.deep.equal([true, a % b]);
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});
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});
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it('reverts with a 0 divisor', async function () {
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const a = 5678n;
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const b = 0n;
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- expect(await this.mock.$tryMod(a, b)).to.deep.equal([false, 0n]);
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+ await expect(this.mock.$tryMod(a, b)).to.eventually.deep.equal([false, 0n]);
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+ });
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+ });
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+
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+ describe('saturatingAdd', function () {
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+ it('adds correctly', async function () {
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+ const a = 5678n;
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+ const b = 1234n;
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+ await testCommutative(this.mock.$saturatingAdd, a, b, a + b);
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+ await testCommutative(this.mock.$saturatingAdd, a, 0n, a);
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+ await testCommutative(this.mock.$saturatingAdd, ethers.MaxUint256, 0n, ethers.MaxUint256);
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+ });
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+
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+ it('bounds on addition overflow', async function () {
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+ await testCommutative(this.mock.$saturatingAdd, ethers.MaxUint256, 1n, ethers.MaxUint256);
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+ await expect(this.mock.$saturatingAdd(ethers.MaxUint256, ethers.MaxUint256)).to.eventually.equal(
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+ ethers.MaxUint256,
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+ );
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+ });
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+ });
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+
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+ describe('saturatingSub', function () {
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+ it('subtracts correctly', async function () {
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+ const a = 5678n;
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+ const b = 1234n;
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+ await expect(this.mock.$saturatingSub(a, b)).to.eventually.equal(a - b);
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+ await expect(this.mock.$saturatingSub(a, a)).to.eventually.equal(0n);
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+ await expect(this.mock.$saturatingSub(a, 0n)).to.eventually.equal(a);
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+ await expect(this.mock.$saturatingSub(0n, a)).to.eventually.equal(0n);
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+ await expect(this.mock.$saturatingSub(ethers.MaxUint256, 1n)).to.eventually.equal(ethers.MaxUint256 - 1n);
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+ });
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+
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+ it('bounds on subtraction overflow', async function () {
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+ await expect(this.mock.$saturatingSub(0n, 1n)).to.eventually.equal(0n);
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+ await expect(this.mock.$saturatingSub(1n, 2n)).to.eventually.equal(0n);
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+ await expect(this.mock.$saturatingSub(1n, ethers.MaxUint256)).to.eventually.equal(0n);
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+ await expect(this.mock.$saturatingSub(ethers.MaxUint256 - 1n, ethers.MaxUint256)).to.eventually.equal(0n);
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+ });
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+ });
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+
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+ describe('saturatingMul', function () {
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+ it('multiplies correctly', async function () {
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+ const a = 1234n;
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+ const b = 5678n;
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+ await testCommutative(this.mock.$saturatingMul, a, b, a * b);
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+ });
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+
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+ it('multiplies by zero correctly', async function () {
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+ const a = 0n;
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+ const b = 5678n;
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+ await testCommutative(this.mock.$saturatingMul, a, b, 0n);
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+ });
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+
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+ it('bounds on multiplication overflow', async function () {
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+ const a = ethers.MaxUint256;
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+ const b = 2n;
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+ await testCommutative(this.mock.$saturatingMul, a, b, ethers.MaxUint256);
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});
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});
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@@ -163,24 +240,24 @@ describe('Math', function () {
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it('is correctly calculated with two odd numbers', async function () {
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const a = 57417n;
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const b = 95431n;
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- expect(await this.mock.$average(a, b)).to.equal((a + b) / 2n);
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+ await expect(this.mock.$average(a, b)).to.eventually.equal((a + b) / 2n);
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});
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it('is correctly calculated with two even numbers', async function () {
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const a = 42304n;
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const b = 84346n;
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- expect(await this.mock.$average(a, b)).to.equal((a + b) / 2n);
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+ await expect(this.mock.$average(a, b)).to.eventually.equal((a + b) / 2n);
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});
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it('is correctly calculated with one even and one odd number', async function () {
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const a = 57417n;
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const b = 84346n;
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- expect(await this.mock.$average(a, b)).to.equal((a + b) / 2n);
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+ await expect(this.mock.$average(a, b)).to.eventually.equal((a + b) / 2n);
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});
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it('is correctly calculated with two max uint256 numbers', async function () {
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const a = ethers.MaxUint256;
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- expect(await this.mock.$average(a, a)).to.equal(a);
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+ await expect(this.mock.$average(a, a)).to.eventually.equal(a);
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});
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});
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@@ -196,35 +273,35 @@ describe('Math', function () {
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const a = 0n;
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const b = 2n;
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const r = 0n;
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- expect(await this.mock.$ceilDiv(a, b)).to.equal(r);
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+ await expect(this.mock.$ceilDiv(a, b)).to.eventually.equal(r);
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});
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it('does not round up on exact division', async function () {
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const a = 10n;
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const b = 5n;
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const r = 2n;
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- expect(await this.mock.$ceilDiv(a, b)).to.equal(r);
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+ await expect(this.mock.$ceilDiv(a, b)).to.eventually.equal(r);
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});
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it('rounds up on division with remainders', async function () {
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const a = 42n;
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const b = 13n;
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const r = 4n;
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- expect(await this.mock.$ceilDiv(a, b)).to.equal(r);
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+ await expect(this.mock.$ceilDiv(a, b)).to.eventually.equal(r);
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});
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it('does not overflow', async function () {
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const a = ethers.MaxUint256;
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const b = 2n;
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const r = 1n << 255n;
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- expect(await this.mock.$ceilDiv(a, b)).to.equal(r);
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+ await expect(this.mock.$ceilDiv(a, b)).to.eventually.equal(r);
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});
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it('correctly computes max uint256 divided by 1', async function () {
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const a = ethers.MaxUint256;
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const b = 1n;
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const r = ethers.MaxUint256;
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- expect(await this.mock.$ceilDiv(a, b)).to.equal(r);
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+ await expect(this.mock.$ceilDiv(a, b)).to.eventually.equal(r);
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});
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});
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@@ -248,28 +325,30 @@ describe('Math', function () {
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describe('does round down', function () {
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it('small values', async function () {
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for (const rounding of RoundingDown) {
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- expect(await this.mock.$mulDiv(3n, 4n, 5n, rounding)).to.equal(2n);
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- expect(await this.mock.$mulDiv(3n, 5n, 5n, rounding)).to.equal(3n);
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+ await expect(this.mock.$mulDiv(3n, 4n, 5n, rounding)).to.eventually.equal(2n);
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+ await expect(this.mock.$mulDiv(3n, 5n, 5n, rounding)).to.eventually.equal(3n);
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}
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});
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it('large values', async function () {
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for (const rounding of RoundingDown) {
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- expect(await this.mock.$mulDiv(42n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding)).to.equal(41n);
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+ await expect(this.mock.$mulDiv(42n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding)).to.eventually.equal(
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+ 41n,
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+ );
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- expect(await this.mock.$mulDiv(17n, ethers.MaxUint256, ethers.MaxUint256, rounding)).to.equal(17n);
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+ await expect(this.mock.$mulDiv(17n, ethers.MaxUint256, ethers.MaxUint256, rounding)).to.eventually.equal(17n);
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- expect(
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- await this.mock.$mulDiv(ethers.MaxUint256 - 1n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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- ).to.equal(ethers.MaxUint256 - 2n);
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+ await expect(
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+ this.mock.$mulDiv(ethers.MaxUint256 - 1n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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+ ).to.eventually.equal(ethers.MaxUint256 - 2n);
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- expect(
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- await this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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- ).to.equal(ethers.MaxUint256 - 1n);
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+ await expect(
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+ this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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+ ).to.eventually.equal(ethers.MaxUint256 - 1n);
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- expect(await this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256, ethers.MaxUint256, rounding)).to.equal(
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- ethers.MaxUint256,
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- );
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+ await expect(
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+ this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256, ethers.MaxUint256, rounding),
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+ ).to.eventually.equal(ethers.MaxUint256);
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}
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});
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});
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@@ -277,28 +356,91 @@ describe('Math', function () {
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describe('does round up', function () {
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it('small values', async function () {
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for (const rounding of RoundingUp) {
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- expect(await this.mock.$mulDiv(3n, 4n, 5n, rounding)).to.equal(3n);
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- expect(await this.mock.$mulDiv(3n, 5n, 5n, rounding)).to.equal(3n);
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+ await expect(this.mock.$mulDiv(3n, 4n, 5n, rounding)).to.eventually.equal(3n);
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+ await expect(this.mock.$mulDiv(3n, 5n, 5n, rounding)).to.eventually.equal(3n);
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}
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});
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it('large values', async function () {
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for (const rounding of RoundingUp) {
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- expect(await this.mock.$mulDiv(42n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding)).to.equal(42n);
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+ await expect(this.mock.$mulDiv(42n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding)).to.eventually.equal(
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+ 42n,
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+ );
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- expect(await this.mock.$mulDiv(17n, ethers.MaxUint256, ethers.MaxUint256, rounding)).to.equal(17n);
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+ await expect(this.mock.$mulDiv(17n, ethers.MaxUint256, ethers.MaxUint256, rounding)).to.eventually.equal(17n);
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- expect(
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- await this.mock.$mulDiv(ethers.MaxUint256 - 1n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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- ).to.equal(ethers.MaxUint256 - 1n);
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+ await expect(
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+ this.mock.$mulDiv(ethers.MaxUint256 - 1n, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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+ ).to.eventually.equal(ethers.MaxUint256 - 1n);
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- expect(
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- await this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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- ).to.equal(ethers.MaxUint256 - 1n);
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+ await expect(
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+ this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256 - 1n, ethers.MaxUint256, rounding),
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+ ).to.eventually.equal(ethers.MaxUint256 - 1n);
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- expect(await this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256, ethers.MaxUint256, rounding)).to.equal(
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+ await expect(
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+ this.mock.$mulDiv(ethers.MaxUint256, ethers.MaxUint256, ethers.MaxUint256, rounding),
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+ ).to.eventually.equal(ethers.MaxUint256);
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+ }
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+ });
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+ });
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+ });
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+
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+ describe('mulShr', function () {
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+ it('reverts with result higher than 2 ^ 256', async function () {
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+ const a = 5n;
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+ const b = ethers.MaxUint256;
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+ const c = 1n;
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|
+ await expect(this.mock.$mulShr(a, b, c, Rounding.Floor)).to.be.revertedWithPanic(
|
|
|
+ PANIC_CODES.ARITHMETIC_UNDER_OR_OVERFLOW,
|
|
|
+ );
|
|
|
+ });
|
|
|
+
|
|
|
+ describe('does round down', function () {
|
|
|
+ it('small values', async function () {
|
|
|
+ for (const rounding of RoundingDown) {
|
|
|
+ await expect(this.mock.$mulShr(3n, 5n, 1n, rounding)).to.eventually.equal(7n);
|
|
|
+ await expect(this.mock.$mulShr(3n, 5n, 2n, rounding)).to.eventually.equal(3n);
|
|
|
+ }
|
|
|
+ });
|
|
|
+
|
|
|
+ it('large values', async function () {
|
|
|
+ for (const rounding of RoundingDown) {
|
|
|
+ await expect(this.mock.$mulShr(42n, ethers.MaxUint256, 255n, rounding)).to.eventually.equal(83n);
|
|
|
+
|
|
|
+ await expect(this.mock.$mulShr(17n, ethers.MaxUint256, 255n, rounding)).to.eventually.equal(33n);
|
|
|
+
|
|
|
+ await expect(this.mock.$mulShr(ethers.MaxUint256, ethers.MaxInt256 + 1n, 255n, rounding)).to.eventually.equal(
|
|
|
+ ethers.MaxUint256,
|
|
|
+ );
|
|
|
+
|
|
|
+ await expect(this.mock.$mulShr(ethers.MaxUint256, ethers.MaxInt256, 255n, rounding)).to.eventually.equal(
|
|
|
+ ethers.MaxUint256 - 2n,
|
|
|
+ );
|
|
|
+ }
|
|
|
+ });
|
|
|
+ });
|
|
|
+
|
|
|
+ describe('does round up', function () {
|
|
|
+ it('small values', async function () {
|
|
|
+ for (const rounding of RoundingUp) {
|
|
|
+ await expect(this.mock.$mulShr(3n, 5n, 1n, rounding)).to.eventually.equal(8n);
|
|
|
+ await expect(this.mock.$mulShr(3n, 5n, 2n, rounding)).to.eventually.equal(4n);
|
|
|
+ }
|
|
|
+ });
|
|
|
+
|
|
|
+ it('large values', async function () {
|
|
|
+ for (const rounding of RoundingUp) {
|
|
|
+ await expect(this.mock.$mulShr(42n, ethers.MaxUint256, 255n, rounding)).to.eventually.equal(84n);
|
|
|
+
|
|
|
+ await expect(this.mock.$mulShr(17n, ethers.MaxUint256, 255n, rounding)).to.eventually.equal(34n);
|
|
|
+
|
|
|
+ await expect(this.mock.$mulShr(ethers.MaxUint256, ethers.MaxInt256 + 1n, 255n, rounding)).to.eventually.equal(
|
|
|
ethers.MaxUint256,
|
|
|
);
|
|
|
+
|
|
|
+ await expect(this.mock.$mulShr(ethers.MaxUint256, ethers.MaxInt256, 255n, rounding)).to.eventually.equal(
|
|
|
+ ethers.MaxUint256 - 1n,
|
|
|
+ );
|
|
|
}
|
|
|
});
|
|
|
});
|
|
@@ -320,8 +462,8 @@ describe('Math', function () {
|
|
|
|
|
|
describe(`using p=${p} which is ${p > 1 && factors.length > 1 ? 'not ' : ''}a prime`, function () {
|
|
|
it('trying to inverse 0 returns 0', async function () {
|
|
|
- expect(await this.mock.$invMod(0, p)).to.equal(0n);
|
|
|
- expect(await this.mock.$invMod(p, p)).to.equal(0n); // p is 0 mod p
|
|
|
+ await expect(this.mock.$invMod(0, p)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$invMod(p, p)).to.eventually.equal(0n); // p is 0 mod p
|
|
|
});
|
|
|
|
|
|
if (p != 0) {
|
|
@@ -349,7 +491,7 @@ describe('Math', function () {
|
|
|
const e = 200n;
|
|
|
const m = 50n;
|
|
|
|
|
|
- expect(await this.mock.$modExp(type(b), type(e), type(m))).to.equal(type(b ** e % m).value);
|
|
|
+ await expect(this.mock.$modExp(type(b), type(e), type(m))).to.eventually.equal(type(b ** e % m).value);
|
|
|
});
|
|
|
|
|
|
it('is correctly reverting when modulus is zero', async function () {
|
|
@@ -373,7 +515,9 @@ describe('Math', function () {
|
|
|
it(`calculates b ** e % m (b=2**${log2b}+1) (e=2**${log2e}+1) (m=2**${log2m}+1)`, async function () {
|
|
|
const mLength = ethers.dataLength(ethers.toBeHex(m));
|
|
|
|
|
|
- expect(await this.mock.$modExp(bytes(b), bytes(e), bytes(m))).to.equal(bytes(modExp(b, e, m), mLength).value);
|
|
|
+ await expect(this.mock.$modExp(bytes(b), bytes(e), bytes(m))).to.eventually.equal(
|
|
|
+ bytes(modExp(b, e, m), mLength).value,
|
|
|
+ );
|
|
|
});
|
|
|
}
|
|
|
});
|
|
@@ -387,7 +531,10 @@ describe('Math', function () {
|
|
|
const e = 200n;
|
|
|
const m = 50n;
|
|
|
|
|
|
- expect(await this.mock.$tryModExp(type(b), type(e), type(m))).to.deep.equal([true, type(b ** e % m).value]);
|
|
|
+ await expect(this.mock.$tryModExp(type(b), type(e), type(m))).to.eventually.deep.equal([
|
|
|
+ true,
|
|
|
+ type(b ** e % m).value,
|
|
|
+ ]);
|
|
|
});
|
|
|
|
|
|
it('is correctly reverting when modulus is zero', async function () {
|
|
@@ -395,7 +542,7 @@ describe('Math', function () {
|
|
|
const e = 200n;
|
|
|
const m = 0n;
|
|
|
|
|
|
- expect(await this.mock.$tryModExp(type(b), type(e), type(m))).to.deep.equal([false, type.zero]);
|
|
|
+ await expect(this.mock.$tryModExp(type(b), type(e), type(m))).to.eventually.deep.equal([false, type.zero]);
|
|
|
});
|
|
|
});
|
|
|
}
|
|
@@ -409,7 +556,7 @@ describe('Math', function () {
|
|
|
it(`calculates b ** e % m (b=2**${log2b}+1) (e=2**${log2e}+1) (m=2**${log2m}+1)`, async function () {
|
|
|
const mLength = ethers.dataLength(ethers.toBeHex(m));
|
|
|
|
|
|
- expect(await this.mock.$tryModExp(bytes(b), bytes(e), bytes(m))).to.deep.equal([
|
|
|
+ await expect(this.mock.$tryModExp(bytes(b), bytes(e), bytes(m))).to.eventually.deep.equal([
|
|
|
true,
|
|
|
bytes(modExp(b, e, m), mLength).value,
|
|
|
]);
|
|
@@ -421,35 +568,39 @@ describe('Math', function () {
|
|
|
describe('sqrt', function () {
|
|
|
it('rounds down', async function () {
|
|
|
for (const rounding of RoundingDown) {
|
|
|
- expect(await this.mock.$sqrt(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$sqrt(1n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$sqrt(2n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$sqrt(3n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$sqrt(4n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$sqrt(144n, rounding)).to.equal(12n);
|
|
|
- expect(await this.mock.$sqrt(999999n, rounding)).to.equal(999n);
|
|
|
- expect(await this.mock.$sqrt(1000000n, rounding)).to.equal(1000n);
|
|
|
- expect(await this.mock.$sqrt(1000001n, rounding)).to.equal(1000n);
|
|
|
- expect(await this.mock.$sqrt(1002000n, rounding)).to.equal(1000n);
|
|
|
- expect(await this.mock.$sqrt(1002001n, rounding)).to.equal(1001n);
|
|
|
- expect(await this.mock.$sqrt(ethers.MaxUint256, rounding)).to.equal(340282366920938463463374607431768211455n);
|
|
|
+ await expect(this.mock.$sqrt(0n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$sqrt(1n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$sqrt(2n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$sqrt(3n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$sqrt(4n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$sqrt(144n, rounding)).to.eventually.equal(12n);
|
|
|
+ await expect(this.mock.$sqrt(999999n, rounding)).to.eventually.equal(999n);
|
|
|
+ await expect(this.mock.$sqrt(1000000n, rounding)).to.eventually.equal(1000n);
|
|
|
+ await expect(this.mock.$sqrt(1000001n, rounding)).to.eventually.equal(1000n);
|
|
|
+ await expect(this.mock.$sqrt(1002000n, rounding)).to.eventually.equal(1000n);
|
|
|
+ await expect(this.mock.$sqrt(1002001n, rounding)).to.eventually.equal(1001n);
|
|
|
+ await expect(this.mock.$sqrt(ethers.MaxUint256, rounding)).to.eventually.equal(
|
|
|
+ 340282366920938463463374607431768211455n,
|
|
|
+ );
|
|
|
}
|
|
|
});
|
|
|
|
|
|
it('rounds up', async function () {
|
|
|
for (const rounding of RoundingUp) {
|
|
|
- expect(await this.mock.$sqrt(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$sqrt(1n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$sqrt(2n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$sqrt(3n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$sqrt(4n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$sqrt(144n, rounding)).to.equal(12n);
|
|
|
- expect(await this.mock.$sqrt(999999n, rounding)).to.equal(1000n);
|
|
|
- expect(await this.mock.$sqrt(1000000n, rounding)).to.equal(1000n);
|
|
|
- expect(await this.mock.$sqrt(1000001n, rounding)).to.equal(1001n);
|
|
|
- expect(await this.mock.$sqrt(1002000n, rounding)).to.equal(1001n);
|
|
|
- expect(await this.mock.$sqrt(1002001n, rounding)).to.equal(1001n);
|
|
|
- expect(await this.mock.$sqrt(ethers.MaxUint256, rounding)).to.equal(340282366920938463463374607431768211456n);
|
|
|
+ await expect(this.mock.$sqrt(0n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$sqrt(1n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$sqrt(2n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$sqrt(3n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$sqrt(4n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$sqrt(144n, rounding)).to.eventually.equal(12n);
|
|
|
+ await expect(this.mock.$sqrt(999999n, rounding)).to.eventually.equal(1000n);
|
|
|
+ await expect(this.mock.$sqrt(1000000n, rounding)).to.eventually.equal(1000n);
|
|
|
+ await expect(this.mock.$sqrt(1000001n, rounding)).to.eventually.equal(1001n);
|
|
|
+ await expect(this.mock.$sqrt(1002000n, rounding)).to.eventually.equal(1001n);
|
|
|
+ await expect(this.mock.$sqrt(1002001n, rounding)).to.eventually.equal(1001n);
|
|
|
+ await expect(this.mock.$sqrt(ethers.MaxUint256, rounding)).to.eventually.equal(
|
|
|
+ 340282366920938463463374607431768211456n,
|
|
|
+ );
|
|
|
}
|
|
|
});
|
|
|
});
|
|
@@ -458,33 +609,33 @@ describe('Math', function () {
|
|
|
describe('log2', function () {
|
|
|
it('rounds down', async function () {
|
|
|
for (const rounding of RoundingDown) {
|
|
|
- expect(await this.mock.$log2(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log2(1n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log2(2n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log2(3n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log2(4n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log2(5n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log2(6n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log2(7n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log2(8n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log2(9n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log2(ethers.MaxUint256, rounding)).to.equal(255n);
|
|
|
+ await expect(this.mock.$log2(0n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log2(1n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log2(2n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log2(3n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log2(4n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log2(5n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log2(6n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log2(7n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log2(8n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log2(9n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log2(ethers.MaxUint256, rounding)).to.eventually.equal(255n);
|
|
|
}
|
|
|
});
|
|
|
|
|
|
it('rounds up', async function () {
|
|
|
for (const rounding of RoundingUp) {
|
|
|
- expect(await this.mock.$log2(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log2(1n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log2(2n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log2(3n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log2(4n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log2(5n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log2(6n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log2(7n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log2(8n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log2(9n, rounding)).to.equal(4n);
|
|
|
- expect(await this.mock.$log2(ethers.MaxUint256, rounding)).to.equal(256n);
|
|
|
+ await expect(this.mock.$log2(0n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log2(1n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log2(2n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log2(3n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log2(4n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log2(5n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log2(6n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log2(7n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log2(8n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log2(9n, rounding)).to.eventually.equal(4n);
|
|
|
+ await expect(this.mock.$log2(ethers.MaxUint256, rounding)).to.eventually.equal(256n);
|
|
|
}
|
|
|
});
|
|
|
});
|
|
@@ -492,37 +643,37 @@ describe('Math', function () {
|
|
|
describe('log10', function () {
|
|
|
it('rounds down', async function () {
|
|
|
for (const rounding of RoundingDown) {
|
|
|
- expect(await this.mock.$log10(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log10(1n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log10(2n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log10(9n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log10(10n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log10(11n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log10(99n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log10(100n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log10(101n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log10(999n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log10(1000n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log10(1001n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log10(ethers.MaxUint256, rounding)).to.equal(77n);
|
|
|
+ await expect(this.mock.$log10(0n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log10(1n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log10(2n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log10(9n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log10(10n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log10(11n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log10(99n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log10(100n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log10(101n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log10(999n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log10(1000n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log10(1001n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log10(ethers.MaxUint256, rounding)).to.eventually.equal(77n);
|
|
|
}
|
|
|
});
|
|
|
|
|
|
it('rounds up', async function () {
|
|
|
for (const rounding of RoundingUp) {
|
|
|
- expect(await this.mock.$log10(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log10(1n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log10(2n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log10(9n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log10(10n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log10(11n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log10(99n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log10(100n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log10(101n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log10(999n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log10(1000n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log10(1001n, rounding)).to.equal(4n);
|
|
|
- expect(await this.mock.$log10(ethers.MaxUint256, rounding)).to.equal(78n);
|
|
|
+ await expect(this.mock.$log10(0n, rounding)).to.eventually.equal(0n);
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+ await expect(this.mock.$log10(1n, rounding)).to.eventually.equal(0n);
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+ await expect(this.mock.$log10(2n, rounding)).to.eventually.equal(1n);
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+ await expect(this.mock.$log10(9n, rounding)).to.eventually.equal(1n);
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+ await expect(this.mock.$log10(10n, rounding)).to.eventually.equal(1n);
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+ await expect(this.mock.$log10(11n, rounding)).to.eventually.equal(2n);
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+ await expect(this.mock.$log10(99n, rounding)).to.eventually.equal(2n);
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+ await expect(this.mock.$log10(100n, rounding)).to.eventually.equal(2n);
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+ await expect(this.mock.$log10(101n, rounding)).to.eventually.equal(3n);
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+ await expect(this.mock.$log10(999n, rounding)).to.eventually.equal(3n);
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+ await expect(this.mock.$log10(1000n, rounding)).to.eventually.equal(3n);
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+ await expect(this.mock.$log10(1001n, rounding)).to.eventually.equal(4n);
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+ await expect(this.mock.$log10(ethers.MaxUint256, rounding)).to.eventually.equal(78n);
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}
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});
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});
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@@ -530,31 +681,31 @@ describe('Math', function () {
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describe('log256', function () {
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it('rounds down', async function () {
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for (const rounding of RoundingDown) {
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- expect(await this.mock.$log256(0n, rounding)).to.equal(0n);
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- expect(await this.mock.$log256(1n, rounding)).to.equal(0n);
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- expect(await this.mock.$log256(2n, rounding)).to.equal(0n);
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- expect(await this.mock.$log256(255n, rounding)).to.equal(0n);
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- expect(await this.mock.$log256(256n, rounding)).to.equal(1n);
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- expect(await this.mock.$log256(257n, rounding)).to.equal(1n);
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- expect(await this.mock.$log256(65535n, rounding)).to.equal(1n);
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- expect(await this.mock.$log256(65536n, rounding)).to.equal(2n);
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- expect(await this.mock.$log256(65537n, rounding)).to.equal(2n);
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|
|
- expect(await this.mock.$log256(ethers.MaxUint256, rounding)).to.equal(31n);
|
|
|
+ await expect(this.mock.$log256(0n, rounding)).to.eventually.equal(0n);
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|
|
+ await expect(this.mock.$log256(1n, rounding)).to.eventually.equal(0n);
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|
|
+ await expect(this.mock.$log256(2n, rounding)).to.eventually.equal(0n);
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|
|
+ await expect(this.mock.$log256(255n, rounding)).to.eventually.equal(0n);
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|
|
+ await expect(this.mock.$log256(256n, rounding)).to.eventually.equal(1n);
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|
|
+ await expect(this.mock.$log256(257n, rounding)).to.eventually.equal(1n);
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|
|
+ await expect(this.mock.$log256(65535n, rounding)).to.eventually.equal(1n);
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|
|
+ await expect(this.mock.$log256(65536n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log256(65537n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log256(ethers.MaxUint256, rounding)).to.eventually.equal(31n);
|
|
|
}
|
|
|
});
|
|
|
|
|
|
it('rounds up', async function () {
|
|
|
for (const rounding of RoundingUp) {
|
|
|
- expect(await this.mock.$log256(0n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log256(1n, rounding)).to.equal(0n);
|
|
|
- expect(await this.mock.$log256(2n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log256(255n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log256(256n, rounding)).to.equal(1n);
|
|
|
- expect(await this.mock.$log256(257n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log256(65535n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log256(65536n, rounding)).to.equal(2n);
|
|
|
- expect(await this.mock.$log256(65537n, rounding)).to.equal(3n);
|
|
|
- expect(await this.mock.$log256(ethers.MaxUint256, rounding)).to.equal(32n);
|
|
|
+ await expect(this.mock.$log256(0n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log256(1n, rounding)).to.eventually.equal(0n);
|
|
|
+ await expect(this.mock.$log256(2n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log256(255n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log256(256n, rounding)).to.eventually.equal(1n);
|
|
|
+ await expect(this.mock.$log256(257n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log256(65535n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log256(65536n, rounding)).to.eventually.equal(2n);
|
|
|
+ await expect(this.mock.$log256(65537n, rounding)).to.eventually.equal(3n);
|
|
|
+ await expect(this.mock.$log256(ethers.MaxUint256, rounding)).to.eventually.equal(32n);
|
|
|
}
|
|
|
});
|
|
|
});
|