Feature Tip: Add private address tag to any address under My Name Tag !
Overview
Max Total Supply
66,487,126.485457315953156508 BAL
Holders
48,940 ( 0.012%)
Market
Price
$2.62 @ 0.000768 ETH (+2.96%)
Onchain Market Cap
$174,196,271.39
Circulating Supply Market Cap
$161,055,922.00
Other Info
Token Contract (WITH 18 Decimals)
Balance
0.081777777777777776 BALValue
$0.21 ( ~6.15539125141918E-05 Eth) [0.0000%]Loading...
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# | Exchange | Pair | Price | 24H Volume | % Volume |
---|---|---|---|---|---|
1 | BTSE | BAL-USDT | $2.62 0.0007678 Eth | $2,813,932.00 1,074,122.512 BAL | 25.2013% |
2 | Bibox | BAL-USDT | $2.62 0.0007685 Eth | $2,007,988.00 766,417.000 BAL | 17.9819% |
3 | Hotcoin | BAL-USDT | $2.62 0.0007688 Eth | $1,037,324.00 395,751.340 BAL | 9.2852% |
4 | Trubit | BAL-USDT | $2.62 0.0007695 Eth | $774,807.00 302,991.900 BAL | 7.1089% |
5 | LBank | BAL-USDT | $2.62 0.0007685 Eth | $766,917.00 292,693.470 BAL | 6.8672% |
6 | Binance | BAL-USDT | $2.62 0.0007690 Eth | $609,644.00 237,448.680 BAL | 5.5711% |
7 | WhiteBIT | BAL-USDT | $2.62 0.0007690 Eth | $374,959.00 143,010.380 BAL | 3.3553% |
8 | Ourbit | BAL-USDT | $2.62 0.0007694 Eth | $315,178.00 122,772.390 BAL | 2.8805% |
9 | Bitazza | BAL-USDT | $2.62 0.0007675 Eth | $266,426.00 104,516.640 BAL | 2.4522% |
10 | Bithumb | BAL-KRW | $2.69 0.0007878 Eth | $226,025.00 84,153.715 BAL | 1.9744% |
11 | HTX | BAL-USDT | $2.62 0.0007683 Eth | $225,934.00 88,605.792 BAL | 2.0789% |
12 | Gate.io | BAL-USDT | $2.62 0.0007682 Eth | $213,249.00 82,490.860 BAL | 1.9354% |
13 | OrangeX | BAL-USDT | $2.62 0.0007682 Eth | $203,751.00 79,558.800 BAL | 1.8666% |
14 | Balancer V2 | 0XBA100000625A3754423978A60C9317C58A424E3D-0XC02AAA39B223FE8D0A0E5C4F27EAD9083C756CC2 | $2.64 0.0007739 Eth | $196,583.00 75,883.432 0XBA100000625A3754423978A60C9317C58A424E3D | 1.7804% |
15 | CoinTR | BAL-USDT | $2.62 0.0007687 Eth | $161,455.00 63,343.170 BAL | 1.4862% |
16 | Toobit | BAL-USDT | $2.62 0.0007700 Eth | $128,917.00 50,252.050 BAL | 1.1790% |
17 | OKX | BAL-USDT | $2.62 0.0007697 Eth | $103,339.00 40,536.128 BAL | 0.9511% |
18 | BitMart | BAL-USDT | $2.62 0.0007700 Eth | $97,538.00 37,157.752 BAL | 0.8718% |
19 | CoinW | BAL-USDT | $2.63 0.0007691 Eth | $96,543.00 36,763.770 BAL | 0.8626% |
20 | BYDFi | BAL-USDT | $2.63 0.0007706 Eth | $67,740.00 25,736.730 BAL | 0.6038% |
21 | Coinbase Exchange | BAL-USD | $2.62 0.0007696 Eth | $63,802.00 24,319.372 BAL | 0.5706% |
22 | Bitget | BAL-USDT | $2.62 0.0007697 Eth | $62,473.00 24,525.843 BAL | 0.5754% |
23 | KickEX | BAL-USDT | $2.62 0.0007687 Eth | $61,933.00 23,631.588 BAL | 0.5544% |
24 | Bitunix | BAL-USDT | $2.62 0.0007685 Eth | $53,136.00 20,289.233 BAL | 0.4760% |
25 | BVOX | BAL-USDT | $2.63 0.0007710 Eth | $40,292.00 15,784.030 BAL | 0.3703% |
26 | DeGate | 0XBA100000625A3754423978A60C9317C58A424E3D-0XA0B86991C6218B36C1D19D4A2E9EB0CE3606EB48 | $2.63 0.0007709 Eth | $31,912.00 12,463.023 0XBA100000625A3754423978A60C9317C58A424E3D | 0.2924% |
27 | BingX | BAL-USDT | $2.62 0.0007691 Eth | $31,833.00 12,459.610 BAL | 0.2923% |
28 | Tokenize | BAL-USD | $2.63 0.0007692 Eth | $23,344.00 8,890.642 BAL | 0.2086% |
29 | Tokenize | BAL-SGD | $2.63 0.0007705 Eth | $23,327.00 8,880.147 BAL | 0.2083% |
30 | P2B | BAL-USDT | $2.63 0.0007712 Eth | $21,894.00 8,318.550 BAL | 0.1952% |
31 | MEXC | BAL-USDT | $2.62 0.0007688 Eth | $19,591.51 7,475.570 BAL | 0.1754% |
32 | Bitrue | BAL-USDT | $2.63 0.0007698 Eth | $16,845.85 6,412.263 BAL | 0.1504% |
33 | Paribu | BAL-TRY | $2.61 0.0007653 Eth | $15,024.90 5,752.954 BAL | 0.1350% |
34 | Kraken | BAL-USD | $2.63 0.0007715 Eth | $14,025.04 5,332.715 BAL | 0.1251% |
35 | Globe | BAL-USDT | $2.63 0.0007701 Eth | $13,417.93 5,208.099 BAL | 0.1222% |
36 | Icrypex | BAL-USDT | $2.62 0.0007664 Eth | $12,610.94 4,821.356 BAL | 0.1131% |
37 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0XDF7837DE1F2FA4631D716CF2502F8B230F1DCC32 | $2.61 0.0007635 Eth | $12,280.77 4,771.211 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.1119% |
38 | Uniswap V3 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X0D500B1D8E8EF31E21C99D1DB9A6444D3ADF1270 | $2.61 0.0007667 Eth | $11,056.88 4,206.789 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0987% |
39 | WEEX | BAL-USDT | $2.62 0.0007692 Eth | $9,367.37 3,663.000 BAL | 0.0859% |
40 | Bitkub | BAL-THB | $2.64 0.0007749 Eth | $8,801.03 3,331.123 BAL | 0.0782% |
41 | MEXC | BAL-ETH | $2.62 0.0007692 Eth | $8,768.46 3,344.030 BAL | 0.0785% |
42 | Bitso | BAL-USD | $2.63 0.0007702 Eth | $8,164.46 3,104.241 BAL | 0.0728% |
43 | KuCoin | BAL-USDT | $2.62 0.0007686 Eth | $8,070.34 3,080.136 BAL | 0.0723% |
44 | Pionex | BAL-USDT | $2.62 0.0007689 Eth | $7,761.10 3,022.869 BAL | 0.0709% |
45 | OKX | BAL-USDC | $2.55 0.0007491 Eth | $4,538.01 1,783.458 BAL | 0.0418% |
46 | Bitlo | BAL-TRY | $2.62 0.0007686 Eth | $4,476.28 1,750.141 BAL | 0.0411% |
47 | Balancer V2 (Arbitrum) | 0X040D1EDC9569D4BAB2D15287DC5A4F10F56A56B8-0X82AF49447D8A07E3BD95BD0D56F35241523FBAB1 | $2.62 0.0007673 Eth | $4,359.87 1,705.425 0X040D1EDC9569D4BAB2D15287DC5A4F10F56A56B8 | 0.0400% |
48 | Uniswap V3 (Base) | 0X4158734D47FC9692176B5085E0F52EE0DA5D47F1-0X4200000000000000000000000000000000000006 | $2.51 0.0007362 Eth | $4,131.45 1,562.869 0X4158734D47FC9692176B5085E0F52EE0DA5D47F1 | 0.0367% |
49 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174 | $2.61 0.0007636 Eth | $4,074.50 1,590.457 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0373% |
50 | Bitvavo | BAL-EUR | $2.63 0.0007700 Eth | $3,973.82 1,513.366 BAL | 0.0355% |
51 | CoinEx | BAL-USDT | $2.63 0.0007702 Eth | $3,678.40 1,444.154 BAL | 0.0339% |
52 | Tothemoon | BAL-USDT | $2.62 0.0007697 Eth | $3,232.23 1,231.700 BAL | 0.0289% |
53 | Balancer V2 (Gnosis) | 0X6C76971F98945AE98DD7D4DFCA8711EBEA946EA6-0X7EF541E2A22058048904FE5744F9C7E4C57AF717 | $2.58 0.0007580 Eth | $2,593.97 0.642 0X6C76971F98945AE98DD7D4DFCA8711EBEA946EA6 | 0.0000% |
54 | Crypto.com Exchange | BAL-USD | $2.62 0.0007675 Eth | $2,107.41 805.460 BAL | 0.0189% |
55 | Kraken | BAL-EUR | $2.64 0.0007747 Eth | $1,901.45 719.968 BAL | 0.0169% |
56 | Bit2Me | BAL-EUR | $2.64 0.0007747 Eth | $1,826.59 705.569 BAL | 0.0166% |
57 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X0D500B1D8E8EF31E21C99D1DB9A6444D3ADF1270 | $2.62 0.0007679 Eth | $1,733.63 657.391 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0154% |
58 | Uniswap V2 (Ethereum) | 0XBA100000625A3754423978A60C9317C58A424E3D-0XC02AAA39B223FE8D0A0E5C4F27EAD9083C756CC2 | $2.57 0.0007543 Eth | $1,715.25 668.764 0XBA100000625A3754423978A60C9317C58A424E3D | 0.0157% |
59 | Balancer V2 (Polygon) | 0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007636 Eth | $1,652.51 1,609.323 0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174 | 0.0378% |
60 | Beethoven X (Optimism) | 0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921-0X4200000000000000000000000000000000000006 | $2.63 0.0007693 Eth | $1,650.41 644.814 0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921 | 0.0151% |
61 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619 | $2.61 0.0007640 Eth | $1,562.56 600.637 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0141% |
62 | Beethoven X (Optimism) | 0X4200000000000000000000000000000000000042-0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921 | $2.61 0.0007665 Eth | $1,169.15 634.377 0X4200000000000000000000000000000000000042 | 0.0149% |
63 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0XD6DF932A45C0F255F85145F286EA0B292B21C90B | $2.65 0.0007761 Eth | $1,161.65 448.581 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0105% |
64 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0XD6DF932A45C0F255F85145F286EA0B292B21C90B | $2.61 0.0007635 Eth | $1,151.24 449.359 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0105% |
65 | Bitazza | BAL-THB | $2.65 0.0007767 Eth | $1,004.61 391.250 BAL | 0.0092% |
66 | Balancer V2 (Polygon) | 0X53E0BCA35EC356BD5DDDFEBBD1FC0FD03FABAD39-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007641 Eth | $754.64 32.193 0X53E0BCA35EC356BD5DDDFEBBD1FC0FD03FABAD39 | 0.0008% |
67 | Balancer V2 (Polygon) | 0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007648 Eth | $689.45 0.201 0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619 | 0.0000% |
68 | Balancer V2 (Base) | 0X1509706A6C66CA549FF0CB464DE88231DDBE213B-0X4158734D47FC9692176B5085E0F52EE0DA5D47F1 | $2.51 0.0007368 Eth | $618.46 1,591.828 0X1509706A6C66CA549FF0CB464DE88231DDBE213B | 0.0373% |
69 | Coinbase Exchange | BAL-BTC | $2.65 0.0007764 Eth | $564.36 213.220 BAL | 0.0050% |
70 | Mudrex | BAL-USDT | $2.62 0.0007692 Eth | $547.33 208.701 BAL | 0.0049% |
71 | Balancer V2 (Polygon) | 0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007651 Eth | $521.20 0.152 0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619 | 0.0000% |
72 | Nami.Exchange | BAL-VNST | $2.63 0.0007728 Eth | $518.39 196.795 BAL | 0.0046% |
73 | Nami.Exchange | BAL-USDT | $2.62 0.0007686 Eth | $514.35 195.963 BAL | 0.0046% |
74 | Balancer V2 (Polygon) | 0X53E0BCA35EC356BD5DDDFEBBD1FC0FD03FABAD39-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007651 Eth | $446.95 19.055 0X53E0BCA35EC356BD5DDDFEBBD1FC0FD03FABAD39 | 0.0004% |
75 | Bittime | BAL-IDR | $2.65 0.0007751 Eth | $230.49 89.620 BAL | 0.0021% |
76 | TokoCrypto | BAL-USDT | $2.62 0.0007687 Eth | $199.44 76.088 BAL | 0.0018% |
77 | Balancer V2 (Arbitrum) | 0X040D1EDC9569D4BAB2D15287DC5A4F10F56A56B8-0X2F2A2543B76A4166549F7AAB2E75BEF0AEFC5B0F | $2.66 0.0007789 Eth | $184.85 50.831 0X040D1EDC9569D4BAB2D15287DC5A4F10F56A56B8 | 0.0012% |
78 | KuCoin | BAL-BTC | $2.60 0.0007624 Eth | $154.11 59.292 BAL | 0.0014% |
79 | Korbit | BAL-KRW | $2.67 0.0007845 Eth | $118.99 45.354 BAL | 0.0011% |
80 | Balancer V2 (Gnosis) | 0X7EF541E2A22058048904FE5744F9C7E4C57AF717-0XE91D153E0B41518A2CE8DD3D7944FA863463A97D | $2.57 0.0007551 Eth | $107.02 42.374 0X7EF541E2A22058048904FE5744F9C7E4C57AF717 | 0.0010% |
81 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0XDF7837DE1F2FA4631D716CF2502F8B230F1DCC32 | $2.60 0.0007605 Eth | $100.08 38.898 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0009% |
82 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174 | $2.61 0.0007651 Eth | $91.50 35.833 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0008% |
83 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0XDF7837DE1F2FA4631D716CF2502F8B230F1DCC32 | $2.61 0.0007644 Eth | $69.61 27.088 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0006% |
84 | Balancer V2 (Gnosis) | 0X7EF541E2A22058048904FE5744F9C7E4C57AF717-0X6A023CCD1FF6F2045C3309768EAD9E68F978F6E1 | $2.59 0.0007599 Eth | $64.49 25.094 0X7EF541E2A22058048904FE5744F9C7E4C57AF717 | 0.0006% |
85 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619 | $2.62 0.0007678 Eth | $55.85 21.490 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0005% |
86 | Balancer V2 (Base) | 0X4158734D47FC9692176B5085E0F52EE0DA5D47F1-0XBEFD5C25A59EF2C1316C5A4944931171F30CD3E4 | $2.70 0.0007902 Eth | $39.99 14.684 0X4158734D47FC9692176B5085E0F52EE0DA5D47F1 | 0.0003% |
87 | Uniswap V3 (Arbitrum One) | 0X040D1EDC9569D4BAB2D15287DC5A4F10F56A56B8-0X82AF49447D8A07E3BD95BD0D56F35241523FBAB1 | $2.63 0.0007708 Eth | $39.13 15.094 0X040D1EDC9569D4BAB2D15287DC5A4F10F56A56B8 | 0.0004% |
88 | Uniswap V3 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619 | $2.60 0.0007627 Eth | $24.14 9.414 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0002% |
89 | Balancer V2 (Gnosis) | 0X1509706A6C66CA549FF0CB464DE88231DDBE213B-0X7EF541E2A22058048904FE5744F9C7E4C57AF717 | $2.58 0.0007555 Eth | $15.99 39.332 0X1509706A6C66CA549FF0CB464DE88231DDBE213B | 0.0009% |
90 | Balancer V2 (Avalanche) | 0XE15BCB9E0EA69E6AB9FA080C4C4A5632896298C3-0XB31F66AA3C1E785363F0875A1B74E27B85FD66C7 | $2.65 0.0007782 Eth | $14.85 5.598 0XE15BCB9E0EA69E6AB9FA080C4C4A5632896298C3 | 0.0001% |
91 | Balancer V2 (Gnosis) | 0X7EF541E2A22058048904FE5744F9C7E4C57AF717-0X9C58BACC331C9AA871AFD802DB6379A98E80CEDB | $2.59 0.0007586 Eth | $6.49 2.522 0X7EF541E2A22058048904FE5744F9C7E4C57AF717 | 0.0001% |
92 | Balancer V2 (Polygon) | 0X0D500B1D8E8EF31E21C99D1DB9A6444D3ADF1270-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007647 Eth | $5.33 10.749 0X0D500B1D8E8EF31E21C99D1DB9A6444D3ADF1270 | 0.0003% |
93 | Beethoven X (Optimism) | 0X7F5C764CBC14F9669B88837CA1490CCA17C31607-0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921 | $2.61 0.0007665 Eth | $5.03 4.973 0X7F5C764CBC14F9669B88837CA1490CCA17C31607 | 0.0001% |
94 | Beethoven X (Optimism) | 0X8C6F28F2F1A3C87F0F938B96D27520D9751EC8D9-0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921 | $2.61 0.0007665 Eth | $1.99 1.964 0X8C6F28F2F1A3C87F0F938B96D27520D9751EC8D9 | 0.0000% |
95 | Balancer V2 (Polygon) | 0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007644 Eth | $1.86 0.001 0X7CEB23FD6BC0ADD59E62AC25578270CFF1B9F619 | 0.0000% |
96 | Balancer V2 (Polygon) | 0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174-0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | $2.61 0.0007647 Eth | $1.66 1.606 0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174 | 0.0000% |
97 | Uniswap V3 (Optimism) | 0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921-0X4200000000000000000000000000000000000006 | $2.60 0.0007638 Eth | $1.65 0.634 0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921 | 0.0000% |
98 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X2791BCA1F2DE4661ED88A30C99A7A9449AA84174 | $2.60 0.0007599 Eth | $1.29 0.494 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0000% |
99 | Balancer V2 (Polygon) | 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3-0X0D500B1D8E8EF31E21C99D1DB9A6444D3ADF1270 | $2.60 0.0007612 Eth | $0.4212 0.162 0X9A71012B13CA4D3D0CDC72A177DF3EF03B0E76A3 | 0.0000% |
100 | Beethoven X (Optimism) | 0X4200000000000000000000000000000000000042-0XFE8B128BA8C78AABC59D4C64CEE7FF28E9379921 | $2.61 0.0007665 Eth | $0.1088 0.059 0X4200000000000000000000000000000000000042 | 0.0000% |
Contract Name:
BalancerGovernanceToken
Compiler Version
v0.6.8+commit.0bbfe453
Contract Source Code (Solidity)
/** *Submitted for verification at Etherscan.io on 2020-06-20 */ // SPDX-License-Identifier: MIT // File @openzeppelin/contracts/utils/[email protected] pragma solidity ^0.6.0; /** * @dev Library for managing * https://en.wikipedia.org/wiki/Set_(abstract_data_type)[sets] of primitive * types. * * Sets have the following properties: * * - Elements are added, removed, and checked for existence in constant time * (O(1)). * - Elements are enumerated in O(n). No guarantees are made on the ordering. * * ``` * contract Example { * // Add the library methods * using EnumerableSet for EnumerableSet.AddressSet; * * // Declare a set state variable * EnumerableSet.AddressSet private mySet; * } * ``` * * As of v3.0.0, only sets of type `address` (`AddressSet`) and `uint256` * (`UintSet`) are supported. */ library EnumerableSet { // To implement this library for multiple types with as little code // repetition as possible, we write it in terms of a generic Set type with // bytes32 values. // The Set implementation uses private functions, and user-facing // implementations (such as AddressSet) are just wrappers around the // underlying Set. // This means that we can only create new EnumerableSets for types that fit // in bytes32. struct Set { // Storage of set values bytes32[] _values; // Position of the value in the `values` array, plus 1 because index 0 // means a value is not in the set. mapping (bytes32 => uint256) _indexes; } /** * @dev Add a value to a set. O(1). * * Returns true if the value was added to the set, that is if it was not * already present. */ function _add(Set storage set, bytes32 value) private returns (bool) { if (!_contains(set, value)) { set._values.push(value); // The value is stored at length-1, but we add 1 to all indexes // and use 0 as a sentinel value set._indexes[value] = set._values.length; return true; } else { return false; } } /** * @dev Removes a value from a set. O(1). * * Returns true if the value was removed from the set, that is if it was * present. */ function _remove(Set storage set, bytes32 value) private returns (bool) { // We read and store the value's index to prevent multiple reads from the same storage slot uint256 valueIndex = set._indexes[value]; if (valueIndex != 0) { // Equivalent to contains(set, value) // To delete an element from the _values array in O(1), we swap the element to delete with the last one in // the array, and then remove the last element (sometimes called as 'swap and pop'). // This modifies the order of the array, as noted in {at}. uint256 toDeleteIndex = valueIndex - 1; uint256 lastIndex = set._values.length - 1; // When the value to delete is the last one, the swap operation is unnecessary. However, since this occurs // so rarely, we still do the swap anyway to avoid the gas cost of adding an 'if' statement. bytes32 lastvalue = set._values[lastIndex]; // Move the last value to the index where the value to delete is set._values[toDeleteIndex] = lastvalue; // Update the index for the moved value set._indexes[lastvalue] = toDeleteIndex + 1; // All indexes are 1-based // Delete the slot where the moved value was stored set._values.pop(); // Delete the index for the deleted slot delete set._indexes[value]; return true; } else { return false; } } /** * @dev Returns true if the value is in the set. O(1). */ function _contains(Set storage set, bytes32 value) private view returns (bool) { return set._indexes[value] != 0; } /** * @dev Returns the number of values on the set. O(1). */ function _length(Set storage set) private view returns (uint256) { return set._values.length; } /** * @dev Returns the value stored at position `index` in the set. O(1). * * Note that there are no guarantees on the ordering of values inside the * array, and it may change when more values are added or removed. * * Requirements: * * - `index` must be strictly less than {length}. */ function _at(Set storage set, uint256 index) private view returns (bytes32) { require(set._values.length > index, "EnumerableSet: index out of bounds"); return set._values[index]; } // AddressSet struct AddressSet { Set _inner; } /** * @dev Add a value to a set. O(1). * * Returns true if the value was added to the set, that is if it was not * already present. */ function add(AddressSet storage set, address value) internal returns (bool) { return _add(set._inner, bytes32(uint256(value))); } /** * @dev Removes a value from a set. O(1). * * Returns true if the value was removed from the set, that is if it was * present. */ function remove(AddressSet storage set, address value) internal returns (bool) { return _remove(set._inner, bytes32(uint256(value))); } /** * @dev Returns true if the value is in the set. O(1). */ function contains(AddressSet storage set, address value) internal view returns (bool) { return _contains(set._inner, bytes32(uint256(value))); } /** * @dev Returns the number of values in the set. O(1). */ function length(AddressSet storage set) internal view returns (uint256) { return _length(set._inner); } /** * @dev Returns the value stored at position `index` in the set. O(1). * * Note that there are no guarantees on the ordering of values inside the * array, and it may change when more values are added or removed. * * Requirements: * * - `index` must be strictly less than {length}. */ function at(AddressSet storage set, uint256 index) internal view returns (address) { return address(uint256(_at(set._inner, index))); } // UintSet struct UintSet { Set _inner; } /** * @dev Add a value to a set. O(1). * * Returns true if the value was added to the set, that is if it was not * already present. */ function add(UintSet storage set, uint256 value) internal returns (bool) { return _add(set._inner, bytes32(value)); } /** * @dev Removes a value from a set. O(1). * * Returns true if the value was removed from the set, that is if it was * present. */ function remove(UintSet storage set, uint256 value) internal returns (bool) { return _remove(set._inner, bytes32(value)); } /** * @dev Returns true if the value is in the set. O(1). */ function contains(UintSet storage set, uint256 value) internal view returns (bool) { return _contains(set._inner, bytes32(value)); } /** * @dev Returns the number of values on the set. O(1). */ function length(UintSet storage set) internal view returns (uint256) { return _length(set._inner); } /** * @dev Returns the value stored at position `index` in the set. O(1). * * Note that there are no guarantees on the ordering of values inside the * array, and it may change when more values are added or removed. * * Requirements: * * - `index` must be strictly less than {length}. */ function at(UintSet storage set, uint256 index) internal view returns (uint256) { return uint256(_at(set._inner, index)); } } // File @openzeppelin/contracts/utils/[email protected] pragma solidity ^0.6.2; /** * @dev Collection of functions related to the address type */ library Address { /** * @dev Returns true if `account` is a contract. * * [IMPORTANT] * ==== * It is unsafe to assume that an address for which this function returns * false is an externally-owned account (EOA) and not a contract. * * Among others, `isContract` will return false for the following * types of addresses: * * - an externally-owned account * - a contract in construction * - an address where a contract will be created * - an address where a contract lived, but was destroyed * ==== */ function isContract(address account) internal view returns (bool) { // According to EIP-1052, 0x0 is the value returned for not-yet created accounts // and 0xc5d2460186f7233c927e7db2dcc703c0e500b653ca82273b7bfad8045d85a470 is returned // for accounts without code, i.e. `keccak256('')` bytes32 codehash; bytes32 accountHash = 0xc5d2460186f7233c927e7db2dcc703c0e500b653ca82273b7bfad8045d85a470; // solhint-disable-next-line no-inline-assembly assembly { codehash := extcodehash(account) } return (codehash != accountHash && codehash != 0x0); } /** * @dev Replacement for Solidity's `transfer`: sends `amount` wei to * `recipient`, forwarding all available gas and reverting on errors. * * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost * of certain opcodes, possibly making contracts go over the 2300 gas limit * imposed by `transfer`, making them unable to receive funds via * `transfer`. {sendValue} removes this limitation. * * https://diligence.consensys.net/posts/2019/09/stop-using-soliditys-transfer-now/[Learn more]. * * IMPORTANT: because control is transferred to `recipient`, care must be * taken to not create reentrancy vulnerabilities. Consider using * {ReentrancyGuard} or the * https://solidity.readthedocs.io/en/v0.5.11/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern]. */ function sendValue(address payable recipient, uint256 amount) internal { require(address(this).balance >= amount, "Address: insufficient balance"); // solhint-disable-next-line avoid-low-level-calls, avoid-call-value (bool success, ) = recipient.call{ value: amount }(""); require(success, "Address: unable to send value, recipient may have reverted"); } } // File @openzeppelin/contracts/GSN/[email protected] pragma solidity ^0.6.0; /* * @dev Provides information about the current execution context, including the * sender of the transaction and its data. While these are generally available * via msg.sender and msg.data, they should not be accessed in such a direct * manner, since when dealing with GSN meta-transactions the account sending and * paying for execution may not be the actual sender (as far as an application * is concerned). * * This contract is only required for intermediate, library-like contracts. */ contract Context { // Empty internal constructor, to prevent people from mistakenly deploying // an instance of this contract, which should be used via inheritance. constructor () internal { } function _msgSender() internal view virtual returns (address payable) { return msg.sender; } function _msgData() internal view virtual returns (bytes memory) { this; // silence state mutability warning without generating bytecode - see https://github.com/ethereum/solidity/issues/2691 return msg.data; } } // File @openzeppelin/contracts/access/[email protected] pragma solidity ^0.6.0; /** * @dev Contract module that allows children to implement role-based access * control mechanisms. * * Roles are referred to by their `bytes32` identifier. These should be exposed * in the external API and be unique. The best way to achieve this is by * using `public constant` hash digests: * * ``` * bytes32 public constant MY_ROLE = keccak256("MY_ROLE"); * ``` * * Roles can be used to represent a set of permissions. To restrict access to a * function call, use {hasRole}: * * ``` * function foo() public { * require(hasRole(MY_ROLE, msg.sender)); * ... * } * ``` * * Roles can be granted and revoked dynamically via the {grantRole} and * {revokeRole} functions. Each role has an associated admin role, and only * accounts that have a role's admin role can call {grantRole} and {revokeRole}. * * By default, the admin role for all roles is `DEFAULT_ADMIN_ROLE`, which means * that only accounts with this role will be able to grant or revoke other * roles. More complex role relationships can be created by using * {_setRoleAdmin}. * * WARNING: The `DEFAULT_ADMIN_ROLE` is also its own admin: it has permission to * grant and revoke this role. Extra precautions should be taken to secure * accounts that have been granted it. */ abstract contract AccessControl is Context { using EnumerableSet for EnumerableSet.AddressSet; using Address for address; struct RoleData { EnumerableSet.AddressSet members; bytes32 adminRole; } mapping (bytes32 => RoleData) private _roles; bytes32 public constant DEFAULT_ADMIN_ROLE = 0x00; /** * @dev Emitted when `account` is granted `role`. * * `sender` is the account that originated the contract call, an admin role * bearer except when using {_setupRole}. */ event RoleGranted(bytes32 indexed role, address indexed account, address indexed sender); /** * @dev Emitted when `account` is revoked `role`. * * `sender` is the account that originated the contract call: * - if using `revokeRole`, it is the admin role bearer * - if using `renounceRole`, it is the role bearer (i.e. `account`) */ event RoleRevoked(bytes32 indexed role, address indexed account, address indexed sender); /** * @dev Returns `true` if `account` has been granted `role`. */ function hasRole(bytes32 role, address account) public view returns (bool) { return _roles[role].members.contains(account); } /** * @dev Returns the number of accounts that have `role`. Can be used * together with {getRoleMember} to enumerate all bearers of a role. */ function getRoleMemberCount(bytes32 role) public view returns (uint256) { return _roles[role].members.length(); } /** * @dev Returns one of the accounts that have `role`. `index` must be a * value between 0 and {getRoleMemberCount}, non-inclusive. * * Role bearers are not sorted in any particular way, and their ordering may * change at any point. * * WARNING: When using {getRoleMember} and {getRoleMemberCount}, make sure * you perform all queries on the same block. See the following * https://forum.openzeppelin.com/t/iterating-over-elements-on-enumerableset-in-openzeppelin-contracts/2296[forum post] * for more information. */ function getRoleMember(bytes32 role, uint256 index) public view returns (address) { return _roles[role].members.at(index); } /** * @dev Returns the admin role that controls `role`. See {grantRole} and * {revokeRole}. * * To change a role's admin, use {_setRoleAdmin}. */ function getRoleAdmin(bytes32 role) public view returns (bytes32) { return _roles[role].adminRole; } /** * @dev Grants `role` to `account`. * * If `account` had not been already granted `role`, emits a {RoleGranted} * event. * * Requirements: * * - the caller must have ``role``'s admin role. */ function grantRole(bytes32 role, address account) public virtual { require(hasRole(_roles[role].adminRole, _msgSender()), "AccessControl: sender must be an admin to grant"); _grantRole(role, account); } /** * @dev Revokes `role` from `account`. * * If `account` had been granted `role`, emits a {RoleRevoked} event. * * Requirements: * * - the caller must have ``role``'s admin role. */ function revokeRole(bytes32 role, address account) public virtual { require(hasRole(_roles[role].adminRole, _msgSender()), "AccessControl: sender must be an admin to revoke"); _revokeRole(role, account); } /** * @dev Revokes `role` from the calling account. * * Roles are often managed via {grantRole} and {revokeRole}: this function's * purpose is to provide a mechanism for accounts to lose their privileges * if they are compromised (such as when a trusted device is misplaced). * * If the calling account had been granted `role`, emits a {RoleRevoked} * event. * * Requirements: * * - the caller must be `account`. */ function renounceRole(bytes32 role, address account) public virtual { require(account == _msgSender(), "AccessControl: can only renounce roles for self"); _revokeRole(role, account); } /** * @dev Grants `role` to `account`. * * If `account` had not been already granted `role`, emits a {RoleGranted} * event. Note that unlike {grantRole}, this function doesn't perform any * checks on the calling account. * * [WARNING] * ==== * This function should only be called from the constructor when setting * up the initial roles for the system. * * Using this function in any other way is effectively circumventing the admin * system imposed by {AccessControl}. * ==== */ function _setupRole(bytes32 role, address account) internal virtual { _grantRole(role, account); } /** * @dev Sets `adminRole` as ``role``'s admin role. */ function _setRoleAdmin(bytes32 role, bytes32 adminRole) internal virtual { _roles[role].adminRole = adminRole; } function _grantRole(bytes32 role, address account) private { if (_roles[role].members.add(account)) { emit RoleGranted(role, account, _msgSender()); } } function _revokeRole(bytes32 role, address account) private { if (_roles[role].members.remove(account)) { emit RoleRevoked(role, account, _msgSender()); } } } // File @openzeppelin/contracts/math/[email protected] pragma solidity ^0.6.0; /** * @dev Wrappers over Solidity's arithmetic operations with added overflow * checks. * * Arithmetic operations in Solidity wrap on overflow. This can easily result * in bugs, because programmers usually assume that an overflow raises an * error, which is the standard behavior in high level programming languages. * `SafeMath` restores this intuition by reverting the transaction when an * operation overflows. * * Using this library instead of the unchecked operations eliminates an entire * class of bugs, so it's recommended to use it always. */ library SafeMath { /** * @dev Returns the addition of two unsigned integers, reverting on * overflow. * * Counterpart to Solidity's `+` operator. * * Requirements: * - Addition cannot overflow. */ function add(uint256 a, uint256 b) internal pure returns (uint256) { uint256 c = a + b; require(c >= a, "SafeMath: addition overflow"); return c; } /** * @dev Returns the subtraction of two unsigned integers, reverting on * overflow (when the result is negative). * * Counterpart to Solidity's `-` operator. * * Requirements: * - Subtraction cannot overflow. */ function sub(uint256 a, uint256 b) internal pure returns (uint256) { return sub(a, b, "SafeMath: subtraction overflow"); } /** * @dev Returns the subtraction of two unsigned integers, reverting with custom message on * overflow (when the result is negative). * * Counterpart to Solidity's `-` operator. * * Requirements: * - Subtraction cannot overflow. */ function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) { require(b <= a, errorMessage); uint256 c = a - b; return c; } /** * @dev Returns the multiplication of two unsigned integers, reverting on * overflow. * * Counterpart to Solidity's `*` operator. * * Requirements: * - Multiplication cannot overflow. */ function mul(uint256 a, uint256 b) internal pure returns (uint256) { // Gas optimization: this is cheaper than requiring 'a' not being zero, but the // benefit is lost if 'b' is also tested. // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522 if (a == 0) { return 0; } uint256 c = a * b; require(c / a == b, "SafeMath: multiplication overflow"); return c; } /** * @dev Returns the integer division of two unsigned integers. Reverts on * division by zero. The result is rounded towards zero. * * Counterpart to Solidity's `/` operator. Note: this function uses a * `revert` opcode (which leaves remaining gas untouched) while Solidity * uses an invalid opcode to revert (consuming all remaining gas). * * Requirements: * - The divisor cannot be zero. */ function div(uint256 a, uint256 b) internal pure returns (uint256) { return div(a, b, "SafeMath: division by zero"); } /** * @dev Returns the integer division of two unsigned integers. Reverts with custom message on * division by zero. The result is rounded towards zero. * * Counterpart to Solidity's `/` operator. Note: this function uses a * `revert` opcode (which leaves remaining gas untouched) while Solidity * uses an invalid opcode to revert (consuming all remaining gas). * * Requirements: * - The divisor cannot be zero. */ function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) { // Solidity only automatically asserts when dividing by 0 require(b > 0, errorMessage); uint256 c = a / b; // assert(a == b * c + a % b); // There is no case in which this doesn't hold return c; } /** * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo), * Reverts when dividing by zero. * * Counterpart to Solidity's `%` operator. This function uses a `revert` * opcode (which leaves remaining gas untouched) while Solidity uses an * invalid opcode to revert (consuming all remaining gas). * * Requirements: * - The divisor cannot be zero. */ function mod(uint256 a, uint256 b) internal pure returns (uint256) { return mod(a, b, "SafeMath: modulo by zero"); } /** * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo), * Reverts with custom message when dividing by zero. * * Counterpart to Solidity's `%` operator. This function uses a `revert` * opcode (which leaves remaining gas untouched) while Solidity uses an * invalid opcode to revert (consuming all remaining gas). * * Requirements: * - The divisor cannot be zero. */ function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) { require(b != 0, errorMessage); return a % b; } } // File @openzeppelin/contracts/math/[email protected] pragma solidity ^0.6.0; /** * @dev Standard math utilities missing in the Solidity language. */ library Math { /** * @dev Returns the largest of two numbers. */ function max(uint256 a, uint256 b) internal pure returns (uint256) { return a >= b ? a : b; } /** * @dev Returns the smallest of two numbers. */ function min(uint256 a, uint256 b) internal pure returns (uint256) { return a < b ? a : b; } /** * @dev Returns the average of two numbers. The result is rounded towards * zero. */ function average(uint256 a, uint256 b) internal pure returns (uint256) { // (a + b) / 2 can overflow, so we distribute return (a / 2) + (b / 2) + ((a % 2 + b % 2) / 2); } } // File @openzeppelin/contracts/utils/[email protected] pragma solidity ^0.6.0; /** * @dev Collection of functions related to array types. */ library Arrays { /** * @dev Searches a sorted `array` and returns the first index that contains * a value greater or equal to `element`. If no such index exists (i.e. all * values in the array are strictly less than `element`), the array length is * returned. Time complexity O(log n). * * `array` is expected to be sorted in ascending order, and to contain no * repeated elements. */ function findUpperBound(uint256[] storage array, uint256 element) internal view returns (uint256) { if (array.length == 0) { return 0; } uint256 low = 0; uint256 high = array.length; while (low < high) { uint256 mid = Math.average(low, high); // Note that mid will always be strictly less than high (i.e. it will be a valid array index) // because Math.average rounds down (it does integer division with truncation). if (array[mid] > element) { high = mid; } else { low = mid + 1; } } // At this point `low` is the exclusive upper bound. We will return the inclusive upper bound. if (low > 0 && array[low - 1] == element) { return low - 1; } else { return low; } } } // File @openzeppelin/contracts/utils/[email protected] pragma solidity ^0.6.0; /** * @title Counters * @author Matt Condon (@shrugs) * @dev Provides counters that can only be incremented or decremented by one. This can be used e.g. to track the number * of elements in a mapping, issuing ERC721 ids, or counting request ids. * * Include with `using Counters for Counters.Counter;` * Since it is not possible to overflow a 256 bit integer with increments of one, `increment` can skip the {SafeMath} * overflow check, thereby saving gas. This does assume however correct usage, in that the underlying `_value` is never * directly accessed. */ library Counters { using SafeMath for uint256; struct Counter { // This variable should never be directly accessed by users of the library: interactions must be restricted to // the library's function. As of Solidity v0.5.2, this cannot be enforced, though there is a proposal to add // this feature: see https://github.com/ethereum/solidity/issues/4637 uint256 _value; // default: 0 } function current(Counter storage counter) internal view returns (uint256) { return counter._value; } function increment(Counter storage counter) internal { // The {SafeMath} overflow check can be skipped here, see the comment at the top counter._value += 1; } function decrement(Counter storage counter) internal { counter._value = counter._value.sub(1); } } // File @openzeppelin/contracts/token/ERC20/[email protected] pragma solidity ^0.6.0; /** * @dev Interface of the ERC20 standard as defined in the EIP. */ interface IERC20 { /** * @dev Returns the amount of tokens in existence. */ function totalSupply() external view returns (uint256); /** * @dev Returns the amount of tokens owned by `account`. */ function balanceOf(address account) external view returns (uint256); /** * @dev Moves `amount` tokens from the caller's account to `recipient`. * * Returns a boolean value indicating whether the operation succeeded. * * Emits a {Transfer} event. */ function transfer(address recipient, uint256 amount) external returns (bool); /** * @dev Returns the remaining number of tokens that `spender` will be * allowed to spend on behalf of `owner` through {transferFrom}. This is * zero by default. * * This value changes when {approve} or {transferFrom} are called. */ function allowance(address owner, address spender) external view returns (uint256); /** * @dev Sets `amount` as the allowance of `spender` over the caller's tokens. * * Returns a boolean value indicating whether the operation succeeded. * * IMPORTANT: Beware that changing an allowance with this method brings the risk * that someone may use both the old and the new allowance by unfortunate * transaction ordering. One possible solution to mitigate this race * condition is to first reduce the spender's allowance to 0 and set the * desired value afterwards: * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729 * * Emits an {Approval} event. */ function approve(address spender, uint256 amount) external returns (bool); /** * @dev Moves `amount` tokens from `sender` to `recipient` using the * allowance mechanism. `amount` is then deducted from the caller's * allowance. * * Returns a boolean value indicating whether the operation succeeded. * * Emits a {Transfer} event. */ function transferFrom(address sender, address recipient, uint256 amount) external returns (bool); /** * @dev Emitted when `value` tokens are moved from one account (`from`) to * another (`to`). * * Note that `value` may be zero. */ event Transfer(address indexed from, address indexed to, uint256 value); /** * @dev Emitted when the allowance of a `spender` for an `owner` is set by * a call to {approve}. `value` is the new allowance. */ event Approval(address indexed owner, address indexed spender, uint256 value); } // File @openzeppelin/contracts/token/ERC20/[email protected] pragma solidity ^0.6.0; /** * @dev Implementation of the {IERC20} interface. * * This implementation is agnostic to the way tokens are created. This means * that a supply mechanism has to be added in a derived contract using {_mint}. * For a generic mechanism see {ERC20MinterPauser}. * * TIP: For a detailed writeup see our guide * https://forum.zeppelin.solutions/t/how-to-implement-erc20-supply-mechanisms/226[How * to implement supply mechanisms]. * * We have followed general OpenZeppelin guidelines: functions revert instead * of returning `false` on failure. This behavior is nonetheless conventional * and does not conflict with the expectations of ERC20 applications. * * Additionally, an {Approval} event is emitted on calls to {transferFrom}. * This allows applications to reconstruct the allowance for all accounts just * by listening to said events. Other implementations of the EIP may not emit * these events, as it isn't required by the specification. * * Finally, the non-standard {decreaseAllowance} and {increaseAllowance} * functions have been added to mitigate the well-known issues around setting * allowances. See {IERC20-approve}. */ contract ERC20 is Context, IERC20 { using SafeMath for uint256; using Address for address; mapping (address => uint256) private _balances; mapping (address => mapping (address => uint256)) private _allowances; uint256 private _totalSupply; string private _name; string private _symbol; uint8 private _decimals; /** * @dev Sets the values for {name} and {symbol}, initializes {decimals} with * a default value of 18. * * To select a different value for {decimals}, use {_setupDecimals}. * * All three of these values are immutable: they can only be set once during * construction. */ constructor (string memory name, string memory symbol) public { _name = name; _symbol = symbol; _decimals = 18; } /** * @dev Returns the name of the token. */ function name() public view returns (string memory) { return _name; } /** * @dev Returns the symbol of the token, usually a shorter version of the * name. */ function symbol() public view returns (string memory) { return _symbol; } /** * @dev Returns the number of decimals used to get its user representation. * For example, if `decimals` equals `2`, a balance of `505` tokens should * be displayed to a user as `5,05` (`505 / 10 ** 2`). * * Tokens usually opt for a value of 18, imitating the relationship between * Ether and Wei. This is the value {ERC20} uses, unless {_setupDecimals} is * called. * * NOTE: This information is only used for _display_ purposes: it in * no way affects any of the arithmetic of the contract, including * {IERC20-balanceOf} and {IERC20-transfer}. */ function decimals() public view returns (uint8) { return _decimals; } /** * @dev See {IERC20-totalSupply}. */ function totalSupply() public view override returns (uint256) { return _totalSupply; } /** * @dev See {IERC20-balanceOf}. */ function balanceOf(address account) public view override returns (uint256) { return _balances[account]; } /** * @dev See {IERC20-transfer}. * * Requirements: * * - `recipient` cannot be the zero address. * - the caller must have a balance of at least `amount`. */ function transfer(address recipient, uint256 amount) public virtual override returns (bool) { _transfer(_msgSender(), recipient, amount); return true; } /** * @dev See {IERC20-allowance}. */ function allowance(address owner, address spender) public view virtual override returns (uint256) { return _allowances[owner][spender]; } /** * @dev See {IERC20-approve}. * * Requirements: * * - `spender` cannot be the zero address. */ function approve(address spender, uint256 amount) public virtual override returns (bool) { _approve(_msgSender(), spender, amount); return true; } /** * @dev See {IERC20-transferFrom}. * * Emits an {Approval} event indicating the updated allowance. This is not * required by the EIP. See the note at the beginning of {ERC20}; * * Requirements: * - `sender` and `recipient` cannot be the zero address. * - `sender` must have a balance of at least `amount`. * - the caller must have allowance for ``sender``'s tokens of at least * `amount`. */ function transferFrom(address sender, address recipient, uint256 amount) public virtual override returns (bool) { _transfer(sender, recipient, amount); _approve(sender, _msgSender(), _allowances[sender][_msgSender()].sub(amount, "ERC20: transfer amount exceeds allowance")); return true; } /** * @dev Atomically increases the allowance granted to `spender` by the caller. * * This is an alternative to {approve} that can be used as a mitigation for * problems described in {IERC20-approve}. * * Emits an {Approval} event indicating the updated allowance. * * Requirements: * * - `spender` cannot be the zero address. */ function increaseAllowance(address spender, uint256 addedValue) public virtual returns (bool) { _approve(_msgSender(), spender, _allowances[_msgSender()][spender].add(addedValue)); return true; } /** * @dev Atomically decreases the allowance granted to `spender` by the caller. * * This is an alternative to {approve} that can be used as a mitigation for * problems described in {IERC20-approve}. * * Emits an {Approval} event indicating the updated allowance. * * Requirements: * * - `spender` cannot be the zero address. * - `spender` must have allowance for the caller of at least * `subtractedValue`. */ function decreaseAllowance(address spender, uint256 subtractedValue) public virtual returns (bool) { _approve(_msgSender(), spender, _allowances[_msgSender()][spender].sub(subtractedValue, "ERC20: decreased allowance below zero")); return true; } /** * @dev Moves tokens `amount` from `sender` to `recipient`. * * This is internal function is equivalent to {transfer}, and can be used to * e.g. implement automatic token fees, slashing mechanisms, etc. * * Emits a {Transfer} event. * * Requirements: * * - `sender` cannot be the zero address. * - `recipient` cannot be the zero address. * - `sender` must have a balance of at least `amount`. */ function _transfer(address sender, address recipient, uint256 amount) internal virtual { require(sender != address(0), "ERC20: transfer from the zero address"); require(recipient != address(0), "ERC20: transfer to the zero address"); _beforeTokenTransfer(sender, recipient, amount); _balances[sender] = _balances[sender].sub(amount, "ERC20: transfer amount exceeds balance"); _balances[recipient] = _balances[recipient].add(amount); emit Transfer(sender, recipient, amount); } /** @dev Creates `amount` tokens and assigns them to `account`, increasing * the total supply. * * Emits a {Transfer} event with `from` set to the zero address. * * Requirements * * - `to` cannot be the zero address. */ function _mint(address account, uint256 amount) internal virtual { require(account != address(0), "ERC20: mint to the zero address"); _beforeTokenTransfer(address(0), account, amount); _totalSupply = _totalSupply.add(amount); _balances[account] = _balances[account].add(amount); emit Transfer(address(0), account, amount); } /** * @dev Destroys `amount` tokens from `account`, reducing the * total supply. * * Emits a {Transfer} event with `to` set to the zero address. * * Requirements * * - `account` cannot be the zero address. * - `account` must have at least `amount` tokens. */ function _burn(address account, uint256 amount) internal virtual { require(account != address(0), "ERC20: burn from the zero address"); _beforeTokenTransfer(account, address(0), amount); _balances[account] = _balances[account].sub(amount, "ERC20: burn amount exceeds balance"); _totalSupply = _totalSupply.sub(amount); emit Transfer(account, address(0), amount); } /** * @dev Sets `amount` as the allowance of `spender` over the `owner`s tokens. * * This is internal function is equivalent to `approve`, and can be used to * e.g. set automatic allowances for certain subsystems, etc. * * Emits an {Approval} event. * * Requirements: * * - `owner` cannot be the zero address. * - `spender` cannot be the zero address. */ function _approve(address owner, address spender, uint256 amount) internal virtual { require(owner != address(0), "ERC20: approve from the zero address"); require(spender != address(0), "ERC20: approve to the zero address"); _allowances[owner][spender] = amount; emit Approval(owner, spender, amount); } /** * @dev Sets {decimals} to a value other than the default one of 18. * * WARNING: This function should only be called from the constructor. Most * applications that interact with token contracts will not expect * {decimals} to ever change, and may work incorrectly if it does. */ function _setupDecimals(uint8 decimals_) internal { _decimals = decimals_; } /** * @dev Hook that is called before any transfer of tokens. This includes * minting and burning. * * Calling conditions: * * - when `from` and `to` are both non-zero, `amount` of ``from``'s tokens * will be to transferred to `to`. * - when `from` is zero, `amount` tokens will be minted for `to`. * - when `to` is zero, `amount` of ``from``'s tokens will be burned. * - `from` and `to` are never both zero. * * To learn more about hooks, head to xref:ROOT:extending-contracts.adoc#using-hooks[Using Hooks]. */ function _beforeTokenTransfer(address from, address to, uint256 amount) internal virtual { } } // File @openzeppelin/contracts/token/ERC20/[email protected] pragma solidity ^0.6.0; /** * @dev This contract extends an ERC20 token with a snapshot mechanism. When a snapshot is created, the balances and * total supply at the time are recorded for later access. * * This can be used to safely create mechanisms based on token balances such as trustless dividends or weighted voting. * In naive implementations it's possible to perform a "double spend" attack by reusing the same balance from different * accounts. By using snapshots to calculate dividends or voting power, those attacks no longer apply. It can also be * used to create an efficient ERC20 forking mechanism. * * Snapshots are created by the internal {_snapshot} function, which will emit the {Snapshot} event and return a * snapshot id. To get the total supply at the time of a snapshot, call the function {totalSupplyAt} with the snapshot * id. To get the balance of an account at the time of a snapshot, call the {balanceOfAt} function with the snapshot id * and the account address. * * ==== Gas Costs * * Snapshots are efficient. Snapshot creation is _O(1)_. Retrieval of balances or total supply from a snapshot is _O(log * n)_ in the number of snapshots that have been created, although _n_ for a specific account will generally be much * smaller since identical balances in subsequent snapshots are stored as a single entry. * * There is a constant overhead for normal ERC20 transfers due to the additional snapshot bookkeeping. This overhead is * only significant for the first transfer that immediately follows a snapshot for a particular account. Subsequent * transfers will have normal cost until the next snapshot, and so on. */ abstract contract ERC20Snapshot is ERC20 { // Inspired by Jordi Baylina's MiniMeToken to record historical balances: // https://github.com/Giveth/minimd/blob/ea04d950eea153a04c51fa510b068b9dded390cb/contracts/MiniMeToken.sol using SafeMath for uint256; using Arrays for uint256[]; using Counters for Counters.Counter; // Snapshotted values have arrays of ids and the value corresponding to that id. These could be an array of a // Snapshot struct, but that would impede usage of functions that work on an array. struct Snapshots { uint256[] ids; uint256[] values; } mapping (address => Snapshots) private _accountBalanceSnapshots; Snapshots private _totalSupplySnapshots; // Snapshot ids increase monotonically, with the first value being 1. An id of 0 is invalid. Counters.Counter private _currentSnapshotId; /** * @dev Emitted by {_snapshot} when a snapshot identified by `id` is created. */ event Snapshot(uint256 id); /** * @dev Creates a new snapshot and returns its snapshot id. * * Emits a {Snapshot} event that contains the same id. * * {_snapshot} is `internal` and you have to decide how to expose it externally. Its usage may be restricted to a * set of accounts, for example using {AccessControl}, or it may be open to the public. * * [WARNING] * ==== * While an open way of calling {_snapshot} is required for certain trust minimization mechanisms such as forking, * you must consider that it can potentially be used by attackers in two ways. * * First, it can be used to increase the cost of retrieval of values from snapshots, although it will grow * logarithmically thus rendering this attack ineffective in the long term. Second, it can be used to target * specific accounts and increase the cost of ERC20 transfers for them, in the ways specified in the Gas Costs * section above. * * We haven't measured the actual numbers; if this is something you're interested in please reach out to us. * ==== */ function _snapshot() internal virtual returns (uint256) { _currentSnapshotId.increment(); uint256 currentId = _currentSnapshotId.current(); emit Snapshot(currentId); return currentId; } /** * @dev Retrieves the balance of `account` at the time `snapshotId` was created. */ function balanceOfAt(address account, uint256 snapshotId) public view returns (uint256) { (bool snapshotted, uint256 value) = _valueAt(snapshotId, _accountBalanceSnapshots[account]); return snapshotted ? value : balanceOf(account); } /** * @dev Retrieves the total supply at the time `snapshotId` was created. */ function totalSupplyAt(uint256 snapshotId) public view returns(uint256) { (bool snapshotted, uint256 value) = _valueAt(snapshotId, _totalSupplySnapshots); return snapshotted ? value : totalSupply(); } // _transfer, _mint and _burn are the only functions where the balances are modified, so it is there that the // snapshots are updated. Note that the update happens _before_ the balance change, with the pre-modified value. // The same is true for the total supply and _mint and _burn. function _transfer(address from, address to, uint256 value) internal virtual override { _updateAccountSnapshot(from); _updateAccountSnapshot(to); super._transfer(from, to, value); } function _mint(address account, uint256 value) internal virtual override { _updateAccountSnapshot(account); _updateTotalSupplySnapshot(); super._mint(account, value); } function _burn(address account, uint256 value) internal virtual override { _updateAccountSnapshot(account); _updateTotalSupplySnapshot(); super._burn(account, value); } function _valueAt(uint256 snapshotId, Snapshots storage snapshots) private view returns (bool, uint256) { require(snapshotId > 0, "ERC20Snapshot: id is 0"); // solhint-disable-next-line max-line-length require(snapshotId <= _currentSnapshotId.current(), "ERC20Snapshot: nonexistent id"); // When a valid snapshot is queried, there are three possibilities: // a) The queried value was not modified after the snapshot was taken. Therefore, a snapshot entry was never // created for this id, and all stored snapshot ids are smaller than the requested one. The value that corresponds // to this id is the current one. // b) The queried value was modified after the snapshot was taken. Therefore, there will be an entry with the // requested id, and its value is the one to return. // c) More snapshots were created after the requested one, and the queried value was later modified. There will be // no entry for the requested id: the value that corresponds to it is that of the smallest snapshot id that is // larger than the requested one. // // In summary, we need to find an element in an array, returning the index of the smallest value that is larger if // it is not found, unless said value doesn't exist (e.g. when all values are smaller). Arrays.findUpperBound does // exactly this. uint256 index = snapshots.ids.findUpperBound(snapshotId); if (index == snapshots.ids.length) { return (false, 0); } else { return (true, snapshots.values[index]); } } function _updateAccountSnapshot(address account) private { _updateSnapshot(_accountBalanceSnapshots[account], balanceOf(account)); } function _updateTotalSupplySnapshot() private { _updateSnapshot(_totalSupplySnapshots, totalSupply()); } function _updateSnapshot(Snapshots storage snapshots, uint256 currentValue) private { uint256 currentId = _currentSnapshotId.current(); if (_lastSnapshotId(snapshots.ids) < currentId) { snapshots.ids.push(currentId); snapshots.values.push(currentValue); } } function _lastSnapshotId(uint256[] storage ids) private view returns (uint256) { if (ids.length == 0) { return 0; } else { return ids[ids.length - 1]; } } } // File contracts/BalancerGovernanceToken.sol pragma solidity =0.6.8; contract BalancerGovernanceToken is AccessControl, ERC20Snapshot { string public constant version = "1"; bytes32 public constant MINTER_ROLE = keccak256("MINTER_ROLE"); bytes32 public constant SNAPSHOT_ROLE = keccak256("SNAPSHOT_ROLE"); bytes32 public immutable DOMAIN_SEPARATOR; // keccak256("Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)"); bytes32 public immutable PERMIT_TYPEHASH = 0x6e71edae12b1b97f4d1f60370fef10105fa2faae0126114a169c64845d6126c9; mapping(address => uint) public nonces; constructor(string memory name, string memory symbol) public ERC20(name, symbol) { _setupRole(DEFAULT_ADMIN_ROLE, _msgSender()); _setupRole(MINTER_ROLE, _msgSender()); _setupRole(SNAPSHOT_ROLE, _msgSender()); uint256 chainId = _chainID(); DOMAIN_SEPARATOR = keccak256( abi.encode( keccak256('EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)'), keccak256(bytes(name)), keccak256(bytes(version)), chainId, address(this) ) ); } function _chainID() private pure returns (uint256) { uint256 chainID; assembly { chainID := chainid() } return chainID; } function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external { require(block.timestamp <= deadline, "ERR_EXPIRED_SIG"); bytes32 digest = keccak256( abi.encodePacked( uint16(0x1901), DOMAIN_SEPARATOR, keccak256(abi.encode(PERMIT_TYPEHASH, owner, spender, value, nonces[owner]++, deadline)) ) ); require(owner == _recover(digest, v, r, s), "ERR_INVALID_SIG"); _approve(owner, spender, value); } function _recover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) private pure returns (address) { // EIP-2 still allows signature malleability for ecrecover(). Remove this possibility and make the signature // unique. Appendix F in the Ethereum Yellow paper (https://ethereum.github.io/yellowpaper/paper.pdf), defines // the valid range for s in (281): 0 < s < secp256k1n ÷ 2 + 1, and for v in (282): v ∈ {27, 28}. Most // signatures from current libraries generate a unique signature with an s-value in the lower half order. // // If your library generates malleable signatures, such as s-values in the upper range, calculate a new s-value // with 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEBAAEDCE6AF48A03BBFD25E8CD0364141 - s1 and flip v from 27 to 28 or // vice versa. If your library also generates signatures with 0/1 for v instead 27/28, add 27 to v to accept // these malleable signatures as well. if (uint256(s) > 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0) { revert("ECDSA: invalid signature 's' value"); } if (v != 27 && v != 28) { revert("ECDSA: invalid signature 'v' value"); } // If the signature is valid (and not malleable), return the signer address address signer = ecrecover(hash, v, r, s); require(signer != address(0), "ECDSA: invalid signature"); return signer; } function mint(address to, uint256 amount) public virtual { require(hasRole(MINTER_ROLE, _msgSender()), "ERR_MINTER_ROLE"); _mint(to, amount); } function burn(uint256 amount) public virtual { _burn(_msgSender(), amount); } function burnFrom(address account, uint256 amount) public virtual { uint256 decreasedAllowance = allowance(account, _msgSender()).sub(amount, "ERC20: burn amount exceeds allowance"); _approve(account, _msgSender(), decreasedAllowance); _burn(account, amount); } function snapshot() public virtual { require(hasRole(SNAPSHOT_ROLE, _msgSender()), "ERR_SNAPSHOT_ROLE"); _snapshot(); } }
Contract Security Audit
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Contract Creation Code
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Constructor Arguments (ABI-Encoded and is the last bytes of the Contract Creation Code above)
00000000000000000000000000000000000000000000000000000000000000400000000000000000000000000000000000000000000000000000000000000080000000000000000000000000000000000000000000000000000000000000000842616c616e636572000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000342414c0000000000000000000000000000000000000000000000000000000000
-----Decoded View---------------
Arg [0] : name (string): Balancer
Arg [1] : symbol (string): BAL
-----Encoded View---------------
6 Constructor Arguments found :
Arg [0] : 0000000000000000000000000000000000000000000000000000000000000040
Arg [1] : 0000000000000000000000000000000000000000000000000000000000000080
Arg [2] : 0000000000000000000000000000000000000000000000000000000000000008
Arg [3] : 42616c616e636572000000000000000000000000000000000000000000000000
Arg [4] : 0000000000000000000000000000000000000000000000000000000000000003
Arg [5] : 42414c0000000000000000000000000000000000000000000000000000000000
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Swarm Source
ipfs://36b4e29998092ccce603509a717a248dc22a68cd57e9675b7d52ce81d123ab3a
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