442 lines
15 KiB
Go
442 lines
15 KiB
Go
package communities
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import (
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"context"
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"errors"
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"math"
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"math/big"
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"strconv"
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"strings"
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"go.uber.org/zap"
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maps "golang.org/x/exp/maps"
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slices "golang.org/x/exp/slices"
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gethcommon "github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/common/hexutil"
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"github.com/status-im/status-go/protocol/ens"
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"github.com/status-im/status-go/protocol/protobuf"
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walletcommon "github.com/status-im/status-go/services/wallet/common"
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"github.com/status-im/status-go/services/wallet/thirdparty"
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)
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type PermissionChecker interface {
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CheckPermissionToJoin(*Community, []gethcommon.Address) (*CheckPermissionToJoinResponse, error)
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CheckPermissions(permissions []*CommunityTokenPermission, accountsAndChainIDs []*AccountChainIDsCombination, shortcircuit bool) (*CheckPermissionsResponse, error)
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}
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type DefaultPermissionChecker struct {
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tokenManager TokenManager
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collectiblesManager CollectiblesManager
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ensVerifier *ens.Verifier
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logger *zap.Logger
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}
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func (p *DefaultPermissionChecker) getOwnedENS(addresses []gethcommon.Address) ([]string, error) {
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ownedENS := make([]string, 0)
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if p.ensVerifier == nil {
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p.logger.Warn("no ensVerifier configured for communities manager")
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return ownedENS, nil
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}
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for _, address := range addresses {
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name, err := p.ensVerifier.ReverseResolve(address)
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if err != nil && err.Error() != "not a resolver" {
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return ownedENS, err
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}
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if name != "" {
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ownedENS = append(ownedENS, name)
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}
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}
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return ownedENS, nil
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}
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func (p *DefaultPermissionChecker) GetOwnedERC721Tokens(walletAddresses []gethcommon.Address, tokenRequirements map[uint64]map[string]*protobuf.TokenCriteria, chainIDs []uint64) (CollectiblesByChain, error) {
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if p.collectiblesManager == nil {
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return nil, errors.New("no collectibles manager")
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}
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ctx := context.Background()
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ownedERC721Tokens := make(CollectiblesByChain)
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for chainID, erc721Tokens := range tokenRequirements {
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skipChain := true
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for _, cID := range chainIDs {
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if chainID == cID {
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skipChain = false
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}
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}
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if skipChain {
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continue
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}
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contractAddresses := make([]gethcommon.Address, 0)
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for contractAddress := range erc721Tokens {
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contractAddresses = append(contractAddresses, gethcommon.HexToAddress(contractAddress))
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}
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if _, exists := ownedERC721Tokens[chainID]; !exists {
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ownedERC721Tokens[chainID] = make(map[gethcommon.Address]thirdparty.TokenBalancesPerContractAddress)
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}
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for _, owner := range walletAddresses {
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balances, err := p.collectiblesManager.FetchBalancesByOwnerAndContractAddress(ctx, walletcommon.ChainID(chainID), owner, contractAddresses)
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if err != nil {
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p.logger.Info("couldn't fetch owner assets", zap.Error(err))
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return nil, err
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}
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ownedERC721Tokens[chainID][owner] = balances
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}
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}
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return ownedERC721Tokens, nil
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}
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func (p *DefaultPermissionChecker) accountChainsCombinationToMap(combinations []*AccountChainIDsCombination) map[gethcommon.Address][]uint64 {
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result := make(map[gethcommon.Address][]uint64)
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for _, combination := range combinations {
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result[combination.Address] = combination.ChainIDs
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}
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return result
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}
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// merge valid combinations w/o duplicates
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func (p *DefaultPermissionChecker) MergeValidCombinations(left, right []*AccountChainIDsCombination) []*AccountChainIDsCombination {
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leftMap := p.accountChainsCombinationToMap(left)
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rightMap := p.accountChainsCombinationToMap(right)
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// merge maps, result in left map
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for k, v := range rightMap {
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if _, exists := leftMap[k]; !exists {
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leftMap[k] = v
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continue
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} else {
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// append chains which are new
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chains := leftMap[k]
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for _, chainID := range v {
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if !slices.Contains(chains, chainID) {
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chains = append(chains, chainID)
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}
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}
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leftMap[k] = chains
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}
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}
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result := []*AccountChainIDsCombination{}
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for k, v := range leftMap {
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result = append(result, &AccountChainIDsCombination{
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Address: k,
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ChainIDs: v,
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})
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}
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return result
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}
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func (p *DefaultPermissionChecker) CheckPermissionToJoin(community *Community, addresses []gethcommon.Address) (*CheckPermissionToJoinResponse, error) {
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becomeAdminPermissions := community.TokenPermissionsByType(protobuf.CommunityTokenPermission_BECOME_ADMIN)
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becomeMemberPermissions := community.TokenPermissionsByType(protobuf.CommunityTokenPermission_BECOME_MEMBER)
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becomeTokenMasterPermissions := community.TokenPermissionsByType(protobuf.CommunityTokenPermission_BECOME_TOKEN_MASTER)
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adminOrTokenMasterPermissionsToJoin := append(becomeAdminPermissions, becomeTokenMasterPermissions...)
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allChainIDs, err := p.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(addresses, allChainIDs)
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// Check becomeMember and (admin & token master) permissions separately.
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becomeMemberPermissionsResponse, err := p.checkPermissionsOrDefault(becomeMemberPermissions, accountsAndChainIDs)
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if err != nil {
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return nil, err
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}
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if len(adminOrTokenMasterPermissionsToJoin) <= 0 {
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return becomeMemberPermissionsResponse, nil
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}
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// If there are any admin or token master permissions, combine result.
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adminOrTokenPermissionsResponse, err := p.CheckPermissions(adminOrTokenMasterPermissionsToJoin, accountsAndChainIDs, false)
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if err != nil {
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return nil, err
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}
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mergedPermissions := make(map[string]*PermissionTokenCriteriaResult)
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maps.Copy(mergedPermissions, becomeMemberPermissionsResponse.Permissions)
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maps.Copy(mergedPermissions, adminOrTokenPermissionsResponse.Permissions)
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mergedCombinations := p.MergeValidCombinations(becomeMemberPermissionsResponse.ValidCombinations, adminOrTokenPermissionsResponse.ValidCombinations)
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combinedResponse := &CheckPermissionsResponse{
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Satisfied: becomeMemberPermissionsResponse.Satisfied || adminOrTokenPermissionsResponse.Satisfied,
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Permissions: mergedPermissions,
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ValidCombinations: mergedCombinations,
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}
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return combinedResponse, nil
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}
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func (p *DefaultPermissionChecker) checkPermissionsOrDefault(permissions []*CommunityTokenPermission, accountsAndChainIDs []*AccountChainIDsCombination) (*CheckPermissionsResponse, error) {
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if len(permissions) == 0 {
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// There are no permissions to join on this community at the moment,
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// so we reveal all accounts + all chain IDs
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response := &CheckPermissionsResponse{
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Satisfied: true,
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Permissions: make(map[string]*PermissionTokenCriteriaResult),
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ValidCombinations: accountsAndChainIDs,
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}
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return response, nil
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}
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return p.CheckPermissions(permissions, accountsAndChainIDs, false)
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}
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// CheckPermissions will retrieve balances and check whether the user has
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// permission to join the community, if shortcircuit is true, it will stop as soon
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// as we know the answer
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func (p *DefaultPermissionChecker) CheckPermissions(permissions []*CommunityTokenPermission, accountsAndChainIDs []*AccountChainIDsCombination, shortcircuit bool) (*CheckPermissionsResponse, error) {
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response := &CheckPermissionsResponse{
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Satisfied: false,
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Permissions: make(map[string]*PermissionTokenCriteriaResult),
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ValidCombinations: make([]*AccountChainIDsCombination, 0),
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}
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erc20TokenRequirements, erc721TokenRequirements, _ := ExtractTokenCriteria(permissions)
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erc20ChainIDsMap := make(map[uint64]bool)
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erc721ChainIDsMap := make(map[uint64]bool)
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erc20TokenAddresses := make([]gethcommon.Address, 0)
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accounts := make([]gethcommon.Address, 0)
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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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// figure out chain IDs we're interested in
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for chainID, tokens := range erc20TokenRequirements {
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erc20ChainIDsMap[chainID] = true
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for contractAddress := range tokens {
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erc20TokenAddresses = append(erc20TokenAddresses, gethcommon.HexToAddress(contractAddress))
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}
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}
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for chainID := range erc721TokenRequirements {
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erc721ChainIDsMap[chainID] = true
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}
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chainIDsForERC20 := calculateChainIDsSet(accountsAndChainIDs, erc20ChainIDsMap)
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chainIDsForERC721 := calculateChainIDsSet(accountsAndChainIDs, erc721ChainIDsMap)
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// if there are no chain IDs that match token criteria chain IDs
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// we aren't able to check balances on selected networks
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if len(erc20ChainIDsMap) > 0 && len(chainIDsForERC20) == 0 {
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response.NetworksNotSupported = true
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return response, nil
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}
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ownedERC20TokenBalances := make(map[uint64]map[gethcommon.Address]map[gethcommon.Address]*hexutil.Big, 0)
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if len(chainIDsForERC20) > 0 {
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// this only returns balances for the networks we're actually interested in
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balances, err := p.tokenManager.GetBalancesByChain(context.Background(), accounts, erc20TokenAddresses, chainIDsForERC20)
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if err != nil {
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return nil, err
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}
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ownedERC20TokenBalances = balances
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}
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ownedERC721Tokens := make(CollectiblesByChain)
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if len(chainIDsForERC721) > 0 {
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collectibles, err := p.GetOwnedERC721Tokens(accounts, erc721TokenRequirements, chainIDsForERC721)
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if err != nil {
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return nil, err
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}
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ownedERC721Tokens = collectibles
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}
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accountsChainIDsCombinations := make(map[gethcommon.Address]map[uint64]bool)
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for _, tokenPermission := range permissions {
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permissionRequirementsMet := true
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response.Permissions[tokenPermission.Id] = &PermissionTokenCriteriaResult{Role: tokenPermission.Type}
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// There can be multiple token requirements per permission.
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// If only one is not met, the entire permission is marked
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// as not fulfilled
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for _, tokenRequirement := range tokenPermission.TokenCriteria {
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tokenRequirementMet := false
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tokenRequirementResponse := TokenRequirementResponse{TokenCriteria: tokenRequirement}
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if tokenRequirement.Type == protobuf.CommunityTokenType_ERC721 {
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if len(ownedERC721Tokens) == 0 {
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response.Permissions[tokenPermission.Id].TokenRequirements = append(response.Permissions[tokenPermission.Id].TokenRequirements, tokenRequirementResponse)
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response.Permissions[tokenPermission.Id].Criteria = append(response.Permissions[tokenPermission.Id].Criteria, false)
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continue
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}
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chainIDLoopERC721:
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for chainID, addressStr := range tokenRequirement.ContractAddresses {
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contractAddress := gethcommon.HexToAddress(addressStr)
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if _, exists := ownedERC721Tokens[chainID]; !exists || len(ownedERC721Tokens[chainID]) == 0 {
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continue chainIDLoopERC721
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}
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for account := range ownedERC721Tokens[chainID] {
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if _, exists := ownedERC721Tokens[chainID][account]; !exists {
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continue
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}
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tokenBalances := ownedERC721Tokens[chainID][account][contractAddress]
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if len(tokenBalances) > 0 {
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// 'account' owns some TokenID owned from contract 'address'
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if _, exists := accountsChainIDsCombinations[account]; !exists {
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accountsChainIDsCombinations[account] = make(map[uint64]bool)
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}
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if len(tokenRequirement.TokenIds) == 0 {
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// no specific tokenId of this collection is needed
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tokenRequirementMet = true
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accountsChainIDsCombinations[account][chainID] = true
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break chainIDLoopERC721
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}
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tokenIDsLoop:
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for _, tokenID := range tokenRequirement.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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tokenRequirementMet = true
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accountsChainIDsCombinations[account][chainID] = true
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break tokenIDsLoop
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}
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}
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}
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}
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}
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}
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} else if tokenRequirement.Type == protobuf.CommunityTokenType_ERC20 {
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if len(ownedERC20TokenBalances) == 0 {
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response.Permissions[tokenPermission.Id].TokenRequirements = append(response.Permissions[tokenPermission.Id].TokenRequirements, tokenRequirementResponse)
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response.Permissions[tokenPermission.Id].Criteria = append(response.Permissions[tokenPermission.Id].Criteria, false)
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continue
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}
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accumulatedBalance := new(big.Float)
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chainIDLoopERC20:
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for chainID, address := range tokenRequirement.ContractAddresses {
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if _, exists := ownedERC20TokenBalances[chainID]; !exists || len(ownedERC20TokenBalances[chainID]) == 0 {
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continue chainIDLoopERC20
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}
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contractAddress := gethcommon.HexToAddress(address)
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for account := range ownedERC20TokenBalances[chainID] {
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if _, exists := ownedERC20TokenBalances[chainID][account][contractAddress]; !exists {
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continue
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}
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value := ownedERC20TokenBalances[chainID][account][contractAddress]
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accountChainBalance := new(big.Float).Quo(
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new(big.Float).SetInt(value.ToInt()),
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big.NewFloat(math.Pow(10, float64(tokenRequirement.Decimals))),
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)
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if _, exists := accountsChainIDsCombinations[account]; !exists {
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accountsChainIDsCombinations[account] = make(map[uint64]bool)
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}
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if accountChainBalance.Cmp(big.NewFloat(0)) > 0 {
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// account has balance > 0 on this chain for this token, so let's add it the chain IDs
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accountsChainIDsCombinations[account][chainID] = true
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}
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// check if adding current chain account balance to accumulated balance
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// satisfies required amount
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prevBalance := accumulatedBalance
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accumulatedBalance.Add(prevBalance, accountChainBalance)
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requiredAmount, err := strconv.ParseFloat(tokenRequirement.Amount, 32)
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if err != nil {
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return nil, err
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}
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if accumulatedBalance.Cmp(big.NewFloat(requiredAmount)) != -1 {
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tokenRequirementMet = true
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if shortcircuit {
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break chainIDLoopERC20
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}
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}
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}
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}
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} else if tokenRequirement.Type == protobuf.CommunityTokenType_ENS {
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for _, account := range accounts {
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ownedENSNames, err := p.getOwnedENS([]gethcommon.Address{account})
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if err != nil {
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return nil, err
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}
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if _, exists := accountsChainIDsCombinations[account]; !exists {
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accountsChainIDsCombinations[account] = make(map[uint64]bool)
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}
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if !strings.HasPrefix(tokenRequirement.EnsPattern, "*.") {
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for _, ownedENS := range ownedENSNames {
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if ownedENS == tokenRequirement.EnsPattern {
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tokenRequirementMet = true
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accountsChainIDsCombinations[account][walletcommon.EthereumMainnet] = true
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}
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}
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} else {
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parentName := tokenRequirement.EnsPattern[2:]
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for _, ownedENS := range ownedENSNames {
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if strings.HasSuffix(ownedENS, parentName) {
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tokenRequirementMet = true
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accountsChainIDsCombinations[account][walletcommon.EthereumMainnet] = true
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}
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}
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}
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}
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}
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if !tokenRequirementMet {
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permissionRequirementsMet = false
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}
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tokenRequirementResponse.Satisfied = tokenRequirementMet
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response.Permissions[tokenPermission.Id].TokenRequirements = append(response.Permissions[tokenPermission.Id].TokenRequirements, tokenRequirementResponse)
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response.Permissions[tokenPermission.Id].Criteria = append(response.Permissions[tokenPermission.Id].Criteria, tokenRequirementMet)
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}
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// multiple permissions are treated as logical OR, meaning
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// if only one of them is fulfilled, the user gets permission
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// to join and we can stop early
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if shortcircuit && permissionRequirementsMet {
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break
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}
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}
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// attach valid account and chainID combinations to response
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for account, chainIDs := range accountsChainIDsCombinations {
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combination := &AccountChainIDsCombination{
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Address: account,
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}
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for chainID := range chainIDs {
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combination.ChainIDs = append(combination.ChainIDs, chainID)
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}
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response.ValidCombinations = append(response.ValidCombinations, combination)
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}
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response.calculateSatisfied()
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return response, nil
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}
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