Test
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@@ -25,7 +25,7 @@ std::string GatewaysBind(uint64_t txfee,std::string coin,uint256 tokenid,int64_t
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std::string GatewaysDeposit(uint64_t txfee,uint256 bindtxid,int32_t height,std::string refcoin,uint256 cointxid,int32_t claimvout,std::string deposithex,std::vector<uint8_t>proof,CPubKey destpub,int64_t amount);
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std::string GatewaysDeposit(uint64_t txfee,uint256 bindtxid,int32_t height,std::string refcoin,uint256 cointxid,int32_t claimvout,std::string deposithex,std::vector<uint8_t>proof,CPubKey destpub,int64_t amount);
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std::string GatewaysClaim(uint64_t txfee,uint256 bindtxid,std::string refcoin,uint256 deposittxid,CPubKey destpub,int64_t amount);
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std::string GatewaysClaim(uint64_t txfee,uint256 bindtxid,std::string refcoin,uint256 deposittxid,CPubKey destpub,int64_t amount);
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std::string GatewaysWithdraw(uint64_t txfee,uint256 bindtxid,std::string refcoin,std::vector<uint8_t> withdrawpub,int64_t amount);
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std::string GatewaysWithdraw(uint64_t txfee,uint256 bindtxid,std::string refcoin,std::vector<uint8_t> withdrawpub,int64_t amount);
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UniValue GatewaysPendingWithdraws(std::string refcoin,uint256 bindtxid);
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UniValue GatewaysPendingWithdraws(uint256 bindtxid,std::string refcoin);
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// CCcustom
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// CCcustom
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UniValue GatewaysInfo(uint256 bindtxid);
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UniValue GatewaysInfo(uint256 bindtxid);
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@@ -125,6 +125,12 @@ string oracles
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ef3cc452da006eb2edda6b6ed3d3347664be51260f3e91f59ec44ec9701367f0
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ef3cc452da006eb2edda6b6ed3d3347664be51260f3e91f59ec44ec9701367f0
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Now there is a withdraw pending, so it needs to be processed by the signing nodes on the KMD side
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Now there is a withdraw pending, so it needs to be processed by the signing nodes on the KMD side
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gatewayspending bindtxid coin
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gatewayspending will display all pending withdraws and if it is done on one of the msigpubkeys, then it will queue it for processing
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./c gatewayspending e6c99f79d4afb216aa8063658b4222edb773dd24bb0f8e91bd4ef341f3e47e5e KMD
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*/
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*/
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@@ -758,7 +764,7 @@ std::string GatewaysWithdraw(uint64_t txfee,uint256 bindtxid,std::string refcoin
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return("");
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return("");
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}
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}
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UniValue GatewaysPendingWithdraws(std::string refcoin,uint256 bindtxid)
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UniValue GatewaysPendingWithdraws(uint256 bindtxid,std::string refcoin)
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{
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{
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UniValue result(UniValue::VOBJ),pending(UniValue::VARR),obj(UniValue::VOBJ); CTransaction tx; std::string coin; CPubKey mypk,gatewayspk; std::vector<CPubKey> msigpubkeys; uint256 hashBlock,assetid,txid,oracletxid; uint8_t M,N,taddr,prefix,prefix2; char depositaddr[64],withmarker[64],coinaddr[64],destaddr[64],str[65],withaddr[64],numstr[32]; int32_t i,n,numvouts,vout,numqueued,queueflag; int64_t totalsupply; struct CCcontract_info *cp,C;
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UniValue result(UniValue::VOBJ),pending(UniValue::VARR),obj(UniValue::VOBJ); CTransaction tx; std::string coin; CPubKey mypk,gatewayspk; std::vector<CPubKey> msigpubkeys; uint256 hashBlock,assetid,txid,oracletxid; uint8_t M,N,taddr,prefix,prefix2; char depositaddr[64],withmarker[64],coinaddr[64],destaddr[64],str[65],withaddr[64],numstr[32]; int32_t i,n,numvouts,vout,numqueued,queueflag; int64_t totalsupply; struct CCcontract_info *cp,C;
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std::vector<std::pair<CAddressUnspentKey, CAddressUnspentValue> > unspentOutputs;
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std::vector<std::pair<CAddressUnspentKey, CAddressUnspentValue> > unspentOutputs;
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