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https://github.com/grassrootseconomics/erc20-pool.git
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12
solidity/Makefile
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12
solidity/Makefile
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SOLC = /usr/bin/solc
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all:
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$(SOLC) --bin SwapPool.sol --evm-version byzantium | awk 'NR>3' > SwapPool.bin
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$(SOLC) --abi SwapPool.sol --evm-version byzantium | awk 'NR>3' > SwapPool.json
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$(SOLC) --metadata SwapPool.sol --evm-version byzantium | awk 'NR>3' > SwapPool.metadata.json
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truncate -s -1 SwapPool.bin
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install: all
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cp -v *.json ../python/erc20_swap_pool/data/
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cp -v *.bin ../python/erc20_swap_pool/data/
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101
solidity/SwapPool.sol
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101
solidity/SwapPool.sol
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pragma solidity ^0.8.0;
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// Author: Louis Holbrook <dev@holbrook.no> 0826EDA1702D1E87C6E2875121D2E7BB88C2A746
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// SPDX-License-Identifier: AGPL-3.0-or-later
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// File-Version: 1
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// Description: Voting contract using ERC20 tokens as shares
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contract SwapPool {
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address registry;
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address quoter;
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uint256 feePpm;
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address feeAddress;
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uint256 public totalSupply;
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mapping ( address => uint256 ) fees;
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constructor(address _tokenRegistry) {
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registry = _tokenRegistry;
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}
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function deposit(address _token, uint256 _value) public {
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bool r;
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bytes memory v;
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allowedToken(_token, registry);
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(r, v) = _token.call(abi.encodeWithSignature('transferFrom(address,address,uint256)', msg.sender, this, _value));
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require(r, "ERR_TOKEN");
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r = abi.decode(v, (bool));
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require(r, "ERR_TRANSFER");
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}
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function getFee(uint256 _value) private view returns (uint256) {
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uint256 fee;
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fee = _value * feePpm;
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fee /= 1000000;
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return fee;
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}
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function getQuote(address _outToken, address _inToken, uint256 _value) private returns (uint256) {
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bool r;
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bytes memory v;
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uint256 quote;
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if (quoter == address(0x0)) {
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return _value;
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}
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(r, v) = quoter.call(abi.encodeWithSignature('valueFor(address,address,uint256)', _outToken, _inToken, _value));
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require(r, "ERR_QUOTER");
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quote = abi.decode(v, (uint256));
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return quote;
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}
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function withdraw(address _outToken, address _inToken, uint256 _value) public {
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bool r;
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bytes memory v;
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uint256 netValue;
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uint256 balance;
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uint256 fee;
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fee = getFee(_value);
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netValue = _value - fee;
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netValue = getQuote(_outToken, _inToken, netValue);
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(r, v) = _outToken.call(abi.encodeWithSignature("balanceOf(address)", this));
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require(r, "ERR_TOKEN");
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balance = abi.decode(v, (uint256));
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require(balance >= netValue + fee, "ERR_BALANCE");
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deposit(_inToken, _value);
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(r, v) = _outToken.call(abi.encodeWithSignature('transferFrom(address,address,uint256)', this, msg.sender, netValue));
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require(r, "ERR_TOKEN");
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r = abi.decode(v, (bool));
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require(r, "ERR_TRANSFER");
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if (feeAddress != address(0)) {
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fees[_outToken] += fee;
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}
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}
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function withdraw(address _token, uint256 _value) public returns (uint256) {
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}
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function allowedToken(address _token, address _registry) private {
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bool r;
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bytes memory v;
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if (_registry == address(0)) {
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return;
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}
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(r, v) = _registry.call(abi.encodeWithSignature('have(address)', _token));
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require(r, "ERR_REGISTRY");
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r = abi.decode(v, (bool));
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require(r, "ERR_UNAUTH_TOKEN");
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}
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}
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