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git://holbrook.no/erc20-demurrage-token
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Apply redistribution correction from singlecap to singlenocap contract
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@ -1,4 +1,7 @@
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- 0.0.2-pending
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- 0.0.9
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* Fix wrong redistribution calculation in single nocap
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[...]
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- 0.0.2
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* Move to chainlib-eth
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* Move to chainlib-eth
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- 0.0.1-unreleased
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- 0.0.1-unreleased
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* Interface for redistributed and non-redistributed, with or without cap
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* Interface for redistributed and non-redistributed, with or without cap
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@ -1,3 +1,3 @@
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chainlib-eth~=0.0.15
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chainlib-eth~=0.0.27
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eth-erc20~=0.1.5
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eth-erc20~=0.1.10
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funga-eth~=0.5.1
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funga-eth~=0.5.6
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@ -1,6 +1,6 @@
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[metadata]
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[metadata]
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name = erc20-demurrage-token
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name = erc20-demurrage-token
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version = 0.0.8
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version = 0.0.9
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description = ERC20 token with redistributed continual demurrage
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description = ERC20 token with redistributed continual demurrage
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author = Louis Holbrook
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author = Louis Holbrook
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author_email = dev@holbrook.no
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author_email = dev@holbrook.no
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@ -107,10 +107,11 @@ class TestBasic(TestDemurrageDefault):
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r = self.rpc.do(o)
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r = self.rpc.do(o)
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demurrage_amount = c.parse_demurrage_amount(r)
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demurrage_amount = c.parse_demurrage_amount(r)
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modifier_base = ((1000000 - self.tax_level) / 1000000) ** 10
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modifier_base = ((1000000 - self.tax_level) / 1000000) ** 10
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logg.warning('mod base {}'.format(modifier_base))
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modifier = int(modifier_base * (10 ** 12))
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modifier = int(modifier_base * (10 ** 12))
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rounding_tolerance_nano = 4000000 # 0.000004% precision
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rounding_tolerance_nano = 4000000 # 0.000004% precision
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demurrage_amount_truncate = int(demurrage_amount / (10 ** 26)) # equals 12 decimal places
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demurrage_amount_truncate = int(demurrage_amount / (10 ** 16)) # equals 38 decimal places - 14 for the modifier magniture - 2 for percent int calc + 6 for token decimals (originally equalled 12 decimal places)
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self.assertGreaterEqual(modifier, demurrage_amount_truncate - rounding_tolerance_nano)
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self.assertGreaterEqual(modifier, demurrage_amount_truncate - rounding_tolerance_nano)
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self.assertLessEqual(modifier, demurrage_amount_truncate)
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self.assertLessEqual(modifier, demurrage_amount_truncate)
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@ -311,6 +311,10 @@ contract DemurrageTokenSingleCap {
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// Calculate and cache the demurrage value corresponding to the (period of the) time of the method call
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// Calculate and cache the demurrage value corresponding to the (period of the) time of the method call
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function applyDemurrage() public returns (bool) {
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function applyDemurrage() public returns (bool) {
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return applyDemurrageLimited(0);
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}
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function applyDemurrageLimited(uint256 _rounds) public returns (bool) {
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//uint128 epochPeriodCount;
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//uint128 epochPeriodCount;
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uint256 periodCount;
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uint256 periodCount;
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uint256 lastDemurrageAmount;
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uint256 lastDemurrageAmount;
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@ -323,6 +327,12 @@ contract DemurrageTokenSingleCap {
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return false;
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return false;
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}
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}
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lastDemurrageAmount = demurrageAmount;
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lastDemurrageAmount = demurrageAmount;
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// safety limit for exponential calculation to ensure that we can always
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// execute this code no matter how much time passes.
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if (_rounds > 0 && _rounds < periodCount) {
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periodCount = _rounds;
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}
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demurrageAmount = uint128(decayBy(lastDemurrageAmount, periodCount));
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demurrageAmount = uint128(decayBy(lastDemurrageAmount, periodCount));
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//demurragePeriod = epochPeriodCount;
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//demurragePeriod = epochPeriodCount;
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demurrageTimestamp = demurrageTimestamp + (periodCount * 60);
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demurrageTimestamp = demurrageTimestamp + (periodCount * 60);
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@ -278,7 +278,8 @@ contract DemurrageTokenSingleCap {
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function getDistribution(uint256 _supply, uint256 _demurrageAmount) public view returns (uint256) {
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function getDistribution(uint256 _supply, uint256 _demurrageAmount) public view returns (uint256) {
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uint256 difference;
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uint256 difference;
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difference = _supply * (resolutionFactor - _demurrageAmount); //(nanoDivider - ((resolutionFactor - _demurrageAmount) / nanoDivider));
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//difference = _supply * (resolutionFactor - _demurrageAmount); //(nanoDivider - ((resolutionFactor - _demurrageAmount) / nanoDivider));
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difference = _supply * (resolutionFactor - (_demurrageAmount * 10000000000)); //(nanoDivider - ((resolutionFactor - _demurrageAmount) / nanoDivider));
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return difference / resolutionFactor;
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return difference / resolutionFactor;
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}
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}
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@ -307,6 +308,10 @@ contract DemurrageTokenSingleCap {
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// Calculate and cache the demurrage value corresponding to the (period of the) time of the method call
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// Calculate and cache the demurrage value corresponding to the (period of the) time of the method call
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function applyDemurrage() public returns (bool) {
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function applyDemurrage() public returns (bool) {
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return applyDemurrageLimited(0);
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}
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function applyDemurrageLimited(uint256 _rounds) public returns (bool) {
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//uint128 epochPeriodCount;
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//uint128 epochPeriodCount;
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uint256 periodCount;
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uint256 periodCount;
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uint256 lastDemurrageAmount;
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uint256 lastDemurrageAmount;
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@ -319,6 +324,13 @@ contract DemurrageTokenSingleCap {
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return false;
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return false;
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}
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}
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lastDemurrageAmount = demurrageAmount;
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lastDemurrageAmount = demurrageAmount;
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// safety limit for exponential calculation to ensure that we can always
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// execute this code no matter how much time passes.
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if (_rounds > 0 && _rounds < periodCount) {
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periodCount = _rounds;
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}
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demurrageAmount = uint128(decayBy(lastDemurrageAmount, periodCount));
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demurrageAmount = uint128(decayBy(lastDemurrageAmount, periodCount));
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//demurragePeriod = epochPeriodCount;
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//demurragePeriod = epochPeriodCount;
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demurrageTimestamp = demurrageTimestamp + (periodCount * 60);
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demurrageTimestamp = demurrageTimestamp + (periodCount * 60);
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