2024-02-06 01:09:08 +00:00
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package communities
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import (
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"context"
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"math/big"
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"strconv"
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"github.com/pkg/errors"
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gethcommon "github.com/ethereum/go-ethereum/common"
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"github.com/status-im/status-go/eth-node/types"
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"github.com/status-im/status-go/protocol/protobuf"
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"github.com/status-im/status-go/services/wallet/bigint"
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"github.com/status-im/status-go/services/wallet/thirdparty"
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)
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type PermissionedBalance struct {
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Type protobuf.CommunityTokenType `json:"type"`
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Symbol string `json:"symbol"`
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Name string `json:"name"`
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Amount *bigint.BigInt `json:"amount"`
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Decimals uint64 `json:"decimals"`
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}
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func calculatePermissionedBalancesERC20(
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accountAddresses []gethcommon.Address,
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balances BalancesByChain,
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tokenPermissions []*CommunityTokenPermission,
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) map[gethcommon.Address]map[string]*PermissionedBalance {
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res := make(map[gethcommon.Address]map[string]*PermissionedBalance)
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// Set with composite key (chain ID + wallet address + contract address) to
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// store if we already processed the balance.
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usedBalances := make(map[string]bool)
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for _, permission := range tokenPermissions {
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for _, criteria := range permission.TokenCriteria {
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if criteria.Type != protobuf.CommunityTokenType_ERC20 {
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continue
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}
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for _, accountAddress := range accountAddresses {
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for chainID, hexContractAddress := range criteria.ContractAddresses {
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usedKey := strconv.FormatUint(chainID, 10) + "-" + accountAddress.Hex() + "-" + hexContractAddress
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if _, ok := balances[chainID]; !ok {
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continue
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}
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if _, ok := balances[chainID][accountAddress]; !ok {
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continue
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}
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contractAddress := gethcommon.HexToAddress(hexContractAddress)
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value, ok := balances[chainID][accountAddress][contractAddress]
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if !ok {
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continue
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}
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// Skip the contract address if it has been used already in the sum.
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if _, ok := usedBalances[usedKey]; ok {
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continue
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}
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if _, ok := res[accountAddress]; !ok {
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res[accountAddress] = make(map[string]*PermissionedBalance, 0)
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}
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if _, ok := res[accountAddress][criteria.Symbol]; !ok {
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res[accountAddress][criteria.Symbol] = &PermissionedBalance{
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Type: criteria.Type,
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Symbol: criteria.Symbol,
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Name: criteria.Name,
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Decimals: criteria.Decimals,
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Amount: &bigint.BigInt{Int: big.NewInt(0)},
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}
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}
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res[accountAddress][criteria.Symbol].Amount.Add(
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res[accountAddress][criteria.Symbol].Amount.Int,
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value.ToInt(),
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)
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usedBalances[usedKey] = true
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}
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}
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}
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}
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return res
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}
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func isERC721CriteriaSatisfied(tokenBalances []thirdparty.TokenBalance, criteria *protobuf.TokenCriteria) bool {
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2024-02-06 05:41:46 +00:00
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// No token IDs to compare against, so the criteria is satisfied.
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if len(criteria.TokenIds) == 0 {
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return true
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}
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2024-02-06 01:09:08 +00:00
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for _, tokenID := range criteria.TokenIds {
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tokenIDBigInt := new(big.Int).SetUint64(tokenID)
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for _, asset := range tokenBalances {
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if asset.TokenID.Cmp(tokenIDBigInt) == 0 && asset.Balance.Sign() > 0 {
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return true
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}
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}
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}
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2024-02-06 05:41:46 +00:00
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2024-02-06 01:09:08 +00:00
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return false
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}
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2024-02-06 05:41:46 +00:00
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func (m *Manager) calculatePermissionedBalancesERC721(
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2024-02-06 01:09:08 +00:00
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accountAddresses []gethcommon.Address,
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balances CollectiblesByChain,
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tokenPermissions []*CommunityTokenPermission,
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) map[gethcommon.Address]map[string]*PermissionedBalance {
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res := make(map[gethcommon.Address]map[string]*PermissionedBalance)
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// Set with composite key (chain ID + wallet address + contract address) to
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// store if we already processed the balance.
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usedBalances := make(map[string]bool)
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for _, permission := range tokenPermissions {
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for _, criteria := range permission.TokenCriteria {
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if criteria.Type != protobuf.CommunityTokenType_ERC721 {
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continue
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}
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for _, accountAddress := range accountAddresses {
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for chainID, hexContractAddress := range criteria.ContractAddresses {
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usedKey := strconv.FormatUint(chainID, 10) + "-" + accountAddress.Hex() + "-" + hexContractAddress
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if _, ok := balances[chainID]; !ok {
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continue
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}
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if _, ok := balances[chainID][accountAddress]; !ok {
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continue
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}
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contractAddress := gethcommon.HexToAddress(hexContractAddress)
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tokenBalances, ok := balances[chainID][accountAddress][contractAddress]
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if !ok || len(tokenBalances) == 0 {
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continue
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}
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// Skip the contract address if it has been used already in the sum.
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if _, ok := usedBalances[usedKey]; ok {
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continue
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}
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usedBalances[usedKey] = true
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if _, ok := res[accountAddress]; !ok {
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res[accountAddress] = make(map[string]*PermissionedBalance, 0)
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}
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if _, ok := res[accountAddress][criteria.Symbol]; !ok {
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res[accountAddress][criteria.Symbol] = &PermissionedBalance{
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Type: criteria.Type,
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Symbol: criteria.Symbol,
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Name: criteria.Name,
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Decimals: criteria.Decimals,
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Amount: &bigint.BigInt{Int: big.NewInt(0)},
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}
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}
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if isERC721CriteriaSatisfied(tokenBalances, criteria) {
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// We don't care about summing balances, thus setting as 1 is
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// sufficient.
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res[accountAddress][criteria.Symbol].Amount = &bigint.BigInt{Int: big.NewInt(1)}
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}
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}
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}
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}
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}
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return res
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}
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2024-02-06 05:41:46 +00:00
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func (m *Manager) calculatePermissionedBalances(
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2024-02-06 01:09:08 +00:00
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chainIDs []uint64,
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accountAddresses []gethcommon.Address,
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erc20Balances BalancesByChain,
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erc721Balances CollectiblesByChain,
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tokenPermissions []*CommunityTokenPermission,
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) map[gethcommon.Address][]PermissionedBalance {
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res := make(map[gethcommon.Address][]PermissionedBalance, 0)
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2024-02-06 05:41:46 +00:00
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aggregatedERC721Balances := m.calculatePermissionedBalancesERC721(accountAddresses, erc721Balances, tokenPermissions)
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2024-02-06 01:09:08 +00:00
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for accountAddress, tokens := range aggregatedERC721Balances {
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for _, permissionedToken := range tokens {
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if permissionedToken.Amount.Sign() > 0 {
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res[accountAddress] = append(res[accountAddress], *permissionedToken)
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}
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}
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}
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aggregatedERC20Balances := calculatePermissionedBalancesERC20(accountAddresses, erc20Balances, tokenPermissions)
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for accountAddress, tokens := range aggregatedERC20Balances {
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for _, permissionedToken := range tokens {
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if permissionedToken.Amount.Sign() > 0 {
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res[accountAddress] = append(res[accountAddress], *permissionedToken)
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}
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}
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}
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return res
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}
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func keepRoleTokenPermissions(tokenPermissions map[string]*CommunityTokenPermission) []*CommunityTokenPermission {
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res := make([]*CommunityTokenPermission, 0)
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for _, p := range tokenPermissions {
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if p.Type == protobuf.CommunityTokenPermission_BECOME_MEMBER ||
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p.Type == protobuf.CommunityTokenPermission_BECOME_ADMIN ||
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p.Type == protobuf.CommunityTokenPermission_BECOME_TOKEN_MASTER ||
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p.Type == protobuf.CommunityTokenPermission_BECOME_TOKEN_OWNER {
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res = append(res, p)
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}
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}
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return res
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}
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// GetPermissionedBalances returns balances indexed by account address.
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//
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// It assumes balances in different chains with the same symbol can be summed.
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// It also assumes the criteria's decimals field is the same across different
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// criteria when they refer to the same asset (by symbol).
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func (m *Manager) GetPermissionedBalances(
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ctx context.Context,
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communityID types.HexBytes,
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accountAddresses []gethcommon.Address,
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) (map[gethcommon.Address][]PermissionedBalance, error) {
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community, err := m.GetByID(communityID)
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if err != nil {
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return nil, err
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}
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if community == nil {
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return nil, errors.Errorf("community does not exist ID='%s'", communityID)
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}
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tokenPermissions := keepRoleTokenPermissions(community.TokenPermissions())
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allChainIDs, err := m.tokenManager.GetAllChainIDs()
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if err != nil {
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return nil, err
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}
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accountsAndChainIDs := combineAddressesAndChainIDs(accountAddresses, allChainIDs)
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erc20TokenCriteriaByChain, erc721TokenCriteriaByChain, _ := ExtractTokenCriteria(tokenPermissions)
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accounts := make([]gethcommon.Address, 0, len(accountsAndChainIDs))
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for _, accountAndChainIDs := range accountsAndChainIDs {
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accounts = append(accounts, accountAndChainIDs.Address)
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}
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erc20ChainIDsSet := make(map[uint64]bool)
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erc20TokenAddresses := make([]gethcommon.Address, 0)
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for chainID, criterionByContractAddress := range erc20TokenCriteriaByChain {
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erc20ChainIDsSet[chainID] = true
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for contractAddress := range criterionByContractAddress {
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erc20TokenAddresses = append(erc20TokenAddresses, gethcommon.HexToAddress(contractAddress))
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}
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}
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erc721ChainIDsSet := make(map[uint64]bool)
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for chainID := range erc721TokenCriteriaByChain {
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erc721ChainIDsSet[chainID] = true
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}
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erc20ChainIDs := calculateChainIDsSet(accountsAndChainIDs, erc20ChainIDsSet)
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erc721ChainIDs := calculateChainIDsSet(accountsAndChainIDs, erc721ChainIDsSet)
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erc20Balances, err := m.tokenManager.GetBalancesByChain(ctx, accounts, erc20TokenAddresses, erc20ChainIDs)
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if err != nil {
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return nil, err
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}
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erc721Balances := make(CollectiblesByChain)
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if len(erc721ChainIDs) > 0 {
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balances, err := m.GetOwnedERC721Tokens(accounts, erc721TokenCriteriaByChain, erc721ChainIDs)
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if err != nil {
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return nil, err
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}
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erc721Balances = balances
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}
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2024-02-06 05:41:46 +00:00
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return m.calculatePermissionedBalances(allChainIDs, accountAddresses, erc20Balances, erc721Balances, tokenPermissions), nil
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2024-02-06 01:09:08 +00:00
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}
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