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160 lines
5.0 KiB
160 lines
5.0 KiB
module.exports = `
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pragma solidity >=0.4.22 <0.7.0;
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library Assert {
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event AssertionEvent(
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bool passed,
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string message
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);
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function ok(bool a, string memory message) public returns (bool result) {
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result = a;
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emit AssertionEvent(result, message);
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}
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function equal(uint a, uint b, string memory message) public returns (bool result) {
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result = (a == b);
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emit AssertionEvent(result, message);
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}
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function equal(int a, int b, string memory message) public returns (bool result) {
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result = (a == b);
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emit AssertionEvent(result, message);
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}
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function equal(bool a, bool b, string memory message) public returns (bool result) {
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result = (a == b);
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emit AssertionEvent(result, message);
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}
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// TODO: only for certain versions of solc
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//function equal(fixed a, fixed b, string message) public returns (bool result) {
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// result = (a == b);
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// emit AssertionEvent(result, message);
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//}
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// TODO: only for certain versions of solc
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//function equal(ufixed a, ufixed b, string message) public returns (bool result) {
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// result = (a == b);
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// emit AssertionEvent(result, message);
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//}
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function equal(address a, address b, string memory message) public returns (bool result) {
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result = (a == b);
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emit AssertionEvent(result, message);
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}
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function equal(bytes32 a, bytes32 b, string memory message) public returns (bool result) {
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result = (a == b);
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emit AssertionEvent(result, message);
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}
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function equal(string memory a, string memory b, string memory message) public returns (bool result) {
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result = (keccak256(abi.encodePacked(a)) == keccak256(abi.encodePacked(b)));
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emit AssertionEvent(result, message);
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}
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function notEqual(uint a, uint b, string memory message) public returns (bool result) {
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result = (a != b);
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emit AssertionEvent(result, message);
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}
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function notEqual(int a, int b, string memory message) public returns (bool result) {
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result = (a != b);
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emit AssertionEvent(result, message);
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}
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function notEqual(bool a, bool b, string memory message) public returns (bool result) {
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result = (a != b);
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emit AssertionEvent(result, message);
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}
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// TODO: only for certain versions of solc
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//function notEqual(fixed a, fixed b, string message) public returns (bool result) {
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// result = (a != b);
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// emit AssertionEvent(result, message);
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//}
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// TODO: only for certain versions of solc
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//function notEqual(ufixed a, ufixed b, string message) public returns (bool result) {
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// result = (a != b);
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// emit AssertionEvent(result, message);
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//}
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function notEqual(address a, address b, string memory message) public returns (bool result) {
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result = (a != b);
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emit AssertionEvent(result, message);
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}
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function notEqual(bytes32 a, bytes32 b, string memory message) public returns (bool result) {
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result = (a != b);
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emit AssertionEvent(result, message);
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}
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function notEqual(string memory a, string memory b, string memory message) public returns (bool result) {
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result = (keccak256(abi.encodePacked(a)) != keccak256(abi.encodePacked(b)));
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emit AssertionEvent(result, message);
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}
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/*----------------- Greater than --------------------*/
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function greaterThan(uint a, uint b, string memory message) public returns (bool result) {
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result = (a > b);
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emit AssertionEvent(result, message);
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}
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function greaterThan(int a, int b, string memory message) public returns (bool result) {
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result = (a > b);
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emit AssertionEvent(result, message);
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}
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// TODO: safely compare between uint and int
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function greaterThan(uint a, int b, string memory message) public returns (bool result) {
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if(b < int(0)) {
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// int is negative uint "a" always greater
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result = true;
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} else {
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result = (a > uint(b));
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}
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emit AssertionEvent(result, message);
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}
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function greaterThan(int a, uint b, string memory message) public returns (bool result) {
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if(a < int(0)) {
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// int is negative uint "b" always greater
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result = false;
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} else {
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result = (uint(a) > b);
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}
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emit AssertionEvent(result, message);
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}
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/*----------------- Lesser than --------------------*/
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function lesserThan(uint a, uint b, string memory message) public returns (bool result) {
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result = (a < b);
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emit AssertionEvent(result, message);
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}
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function lesserThan(int a, int b, string memory message) public returns (bool result) {
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result = (a < b);
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emit AssertionEvent(result, message);
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}
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// TODO: safely compare between uint and int
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function lesserThan(uint a, int b, string memory message) public returns (bool result) {
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if(b < int(0)) {
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// int is negative int "b" always lesser
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result = false;
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} else {
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result = (a < uint(b));
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}
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emit AssertionEvent(result, message);
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}
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function lesserThan(int a, uint b, string memory message) public returns (bool result) {
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if(a < int(0)) {
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// int is negative int "a" always lesser
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result = true;
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} else {
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result = (uint(a) < b);
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}
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emit AssertionEvent(result, message);
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}
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}
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`
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