@version 1 #################################### # EVM => Archethic : Request funds # #################################### condition triggered_by: transaction, on: request_funds(end_time, amount, user_address, secret_hash), as: [ type: "contract", code: valid_chargeable_code?(end_time, amount, user_address, secret_hash), timestamp: ( # End time cannot be less than now or more than 1 day now = Time.now() end_time > now && end_time <= (now + 86400) ), content: ( # Ensure the pool has enough UCO to send the requested fund balance = Chain.get_uco_balance(contract.address) balance >= amount ), address: ( # Here ensure Ethereum contract exists and check rules # How to ensure Ethereum contract is a valid one ? # Maybe get the ABI of HTLC on github and compare it to the one on Ethereum # Then control rules true ) ] actions triggered_by: transaction, on: request_funds(_end_time, amount, _user_address, _secret_hash) do Contract.set_type "transfer" Contract.add_uco_transfer to: transaction.address, amount: amount end ########################################## # Archethic => EVM : Request secret hash # ########################################## condition triggered_by: transaction, on: request_secret_hash(htlc_genesis_address, amount, user_address, chain_id), as: [ type: "transfer", code: valid_signed_code?(htlc_genesis_address, amount, user_address), previous_public_key: ( # Ensure contract has enough fund to withdraw previous_address = Chain.get_previous_address() balance = Chain.get_uco_balance(previous_address) balance >= amount ), content: List.in?([11155111,80001,97], chain_id), uco_transfers: ( htlc_genesis_address = String.to_hex(htlc_genesis_address) Map.get(htlc_genesis_address) == amount ) ] actions triggered_by: transaction, on: request_secret_hash(htlc_genesis_address, _amount, _user_address, chain_id) do # Here delete old secret that hasn't been used before endTime contract_content = Map.new() if Json.is_valid?(contract.content) do contract_content = Json.parse(contract.content) end for key in Map.keys(contract_content) do htlc_map = Map.get(contract_content, key) if htlc_map.end_time <= Time.now() do contract_content = Map.delete(contract_content, key) end end secret = Crypto.hmac(transaction.address) secret_hash = Crypto.hash(secret, "sha256") # Build signature for EVM decryption signature = sign_for_evm(secret_hash, chain_id) # Calculate endtime now + 2 hours now = Time.now() end_time = now - Math.rem(now, 60) + 7200 # Add secret and signature in content htlc_map = [ hmac_address: transaction.address, end_time: end_time, chain_id: chain_id ] htlc_genesis_address = String.to_hex(htlc_genesis_address) contract_content = Map.set(contract_content, htlc_genesis_address, htlc_map) Contract.set_content Json.to_string(contract_content) Contract.add_recipient address: htlc_genesis_address, action: "set_secret_hash", args: [secret_hash, signature, end_time] end #################################### # Archethic => EVM : Reveal secret # #################################### condition triggered_by: transaction, on: reveal_secret(htlc_genesis_address), as: [ type: "transfer", content: ( # Ensure htlc_genesis_address exists in pool state # and end_time has not been reached valid? = false if Json.is_valid?(contract.content) do htlc_genesis_address = String.to_hex(htlc_genesis_address) htlc_map = Map.get(Json.parse(contract.content), htlc_genesis_address) if htlc_map != nil do valid? = htlc_map.end_time > Time.now() end end valid? ), address: ( # Here ensure Ethereum contract exists and check rules # How to ensure Ethereum contract is a valid one ? # Maybe get the ABI of HTLC on github and compare it to the one on Ethereum # Then control rules true ) ] actions triggered_by: transaction, on: reveal_secret(htlc_genesis_address) do contract_content = Json.parse(contract.content) htlc_genesis_address = String.to_hex(htlc_genesis_address) htlc_map = Map.get(contract_content, htlc_genesis_address) contract_content = Map.delete(contract_content, htlc_genesis_address) secret = Crypto.hmac(htlc_map.hmac_address) # Do not use chain ID in signature for the secret reveal signature = sign_for_evm(secret, nil) Contract.set_content Json.to_string(contract_content) Contract.add_recipient address: htlc_genesis_address, action: "reveal_secret", args: [secret, signature] end condition triggered_by: transaction, on: update_code(new_code), as: [ previous_public_key: ( # Pool code can only be updated from the master chain if the bridge # Transaction is not yet validated so we need to use previous address # to get the genesis address previous_address = Chain.get_previous_address() Chain.get_genesis_address(previous_address) == 0x000020a6911478356ca264174e35d26021fb4cbe870703bb7c3859e01cdb34bcd823 ), code: Code.is_valid?(new_code) ] actions triggered_by: transaction, on: update_code(new_code) do Contract.set_type "contract" # Keep contract state Contract.set_content contract.content Contract.set_code new_code end #################### # Public functions # #################### export fun get_token_address() do "UCO" end ##################### # Private functions # ##################### fun valid_chargeable_code?(end_time, amount, user_address, secret_hash) do args = [ end_time, user_address, 0x000018d60115ece0c7558a46b4693749bf6beab524fddccf9b10b910619e4ee08801, secret_hash, "UCO", amount ] expected_code = Contract.call_function(0x0000795bfd6ca2f5ea9f378c20775caf798e9bfbff6aec94bf87ad8d59233b4fa299, "get_chargeable_htlc", args) Code.is_same?(expected_code, transaction.code) end fun valid_signed_code?(htlc_address, amount, user_address) do valid? = false htlc_address = String.to_hex(htlc_address) last_htlc_transaction = Chain.get_last_transaction(htlc_address) if last_htlc_transaction != nil do args = [ user_address, 0x000018d60115ece0c7558a46b4693749bf6beab524fddccf9b10b910619e4ee08801, "UCO", amount ] expected_code = Contract.call_function(0x0000795bfd6ca2f5ea9f378c20775caf798e9bfbff6aec94bf87ad8d59233b4fa299, "get_signed_htlc", args) valid? = Code.is_same?(expected_code, last_htlc_transaction.code) end valid? end fun sign_for_evm(data, chain_id) do hash = data if chain_id != nil do # Perform a first hash to combine data and chain_id abi_data = Evm.abi_encode("(bytes32,uint)", [data, chain_id]) hash = Crypto.hash(abi_data, "keccak256") end prefix = String.to_hex("\x19Ethereum Signed Message:\n32") signature_payload = Crypto.hash("#{prefix}#{hash}", "keccak256") sig = Crypto.sign_with_recovery(signature_payload) if sig.v == 0 do sig = Map.set(sig, "v", 27) else sig = Map.set(sig, "v", 28) end sig end
{ "00008B502CF859CD0BEB2BC89FDA72F3C7F9901B482B7CB133EF2572645BED711AE1": { "chain_id": 11155111, "end_time": 1697802120, "hmac_address": "0000DE1FED4D061653CEED0FF4A0DC7F686D6639192537756A3C526B7A3338B3C451" }, "0000CF1172FC915739196B86FA1D30989F443F0E69D22F224CA3A54DA69CBEF93FB5": { "chain_id": 11155111, "end_time": 1697801880, "hmac_address": "00009095B8C9711D3A86C1110D6495656AF4C1B9EFB506EFCD1BD9D247884C6D836F" }, "0000D35B8492869E2AD2B726DD6F7631F101A6730336C51CA8F74A495993535AF702": { "chain_id": 11155111, "end_time": 1697803020, "hmac_address": "00008F4AF87F5D2436267526AC57FEB3FB0FB21BA588855ACC081EBA09E811FA3F58" } }
State (0 B)
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Secret shared with 1 key
Encoded secret
DCE2FBEB064FEE0659D7799698A22C503C97A8B4DC0A285B98B4CA49964A024A2B36D159C221DB1EF72E10C0098822290D51A1A418F1B88B553E3501
Authorized keys
- 00017877BCF4122095926A49489009649603AB129822A19EF9D573B8FD714911ED7F
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Resolved 0000C01A...AC72set_secret_hash
[ "2E2386ADD626CC7B3BE95E6831BDE1ECD510806927D0B892AA6305C5ACF918F5", { "r": "ACA949E36C38DD758CA5F21819F25900A2CD206C74033C0853F698AA2CB7AF36", "s": "2B61D9EBC8218D6BE9033F5A09CE7CD04A5B714211EF3544A781F41A9D902D22", "v": 27 }, 1697803020 ]
Inputs (0)
Contract inputs (0)
Unspent outputs (1)
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From 00007691...24B9At 2023-10-20 09:57:38 UTCAmount 248.06494885 UCO
Previous public key
00017A59289CD6F8329E03B21E19F79C8801FCA56C7F0F98F03E8B4B50E0EDB1755C
Previous signature
1208268CEFCF4AAD1C4916B87D7D86B242A6C29EB77B9A69391CB22FC6E1C81F927CF53475740EE02C360821573116758E01A32A412B479E47659B991DA22C04
Origin signature
30450220633FC44170D120E31AF3B5FA138BED95A460E11A5FED7D3C94E26E749FE0B380022100880B607324254A8C9C1A80FFFBCBAB62E21B634E81A6D169CF22C67BD600077F
Proof of work
010104EB90F7BDD03D5A7FD9B61D9128D7CF24C11F3F7DA96825DA3680C2B6BCC48F1AFCE26E0A5F1A903EDAA4BC9390210A0A4F175847EC2A2BB325BB6D1CE8EC8F90
Proof of integrity
00B868179C8F3734D0BB3D90B93A68AB19845B3B3FBE00156CFD7399737E03360A
Coordinator signature
4754918C544142A8DF13D1F7075BA2CA8F2D5D58F75F764943EA7BD1DE24977233450D2CAF0EFA00E976CC7B88D3AA384E939249325C52AA0EC1496F036C890E
Validator #1 public key
0001500FBE298B79FFBDD5CCA1798F30FD88A53D26EC39DE5DDE1F4137B032A4BC34
Validator #1 signature
7CDF1F866FAD43EF098B0F8BED614FFE52F661CA833BD5797B733C2CD9F3499F887828390AE8FFE0369276B562A06DDA4F3BB2E7A011133FDC5C3E4C5DFDD101
Validator #2 public key
00018A312AFA617E98B343D09AD2E73F0AB661DB0A59FB986D5DB8CE7664E14C25FC
Validator #2 signature
3A8CDA5D65DB01AFF2FBB87EDAAC45D2A66E251C39E7E40BFD9FCD866D4B4D1A37EEF7DD16C16D980391F10E1C16EB6CAD1828EB0558C1190302348F19B89608