[wip] templating vanillae ts tx deconstruction
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@@ -198,7 +198,24 @@ import * as rlp from './rlp.js'
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*/
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type tx_str = string;
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/**
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* Alias type for a `sg_...` string
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*/
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type sg_str = string;
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/**
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* types of decoded tx we currently support
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* @internal
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*/
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type tx_type_str
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= 'SignedTx'
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| 'SpendTx'
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| 'ContractCreateTx'
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| 'ContractCallTx';
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/**
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* Results of deconstruct_tx
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*/
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type deconstructed_tx
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= {type : 'SignedTx',
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@@ -222,6 +239,28 @@ type deconstructed_tx
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type rlpdata = rlp.decoded_data;
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/**
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* Fields types
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*/
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type fields
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= fields_SignedTx
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| fields_SpendTx
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| fields_ContractCreateTx
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| fields_ContractCallTx;
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type fields_SignedTx
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= {signatures : Array<sg_str>,
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transaction : tx_str};
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type fields_SpendTx
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= {sender : string,
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recipient : string,
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amount : bigint,
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fee : bigint,
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ttl : bigint,
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nonce : bigint,
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payload : Uint8Array};
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/**
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* Deconstruct a Tx
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*/
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@@ -234,10 +273,10 @@ deconstruct_tx
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let tx_rlp_encoded : Uint8Array = b64.decode(b64_str); // [...] -> bytes
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let tx_data : Array<rlpdata> = shasha_rlp_decode_list(tx_rlp_encoded); // decode data and check the double-sha thing
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let tx_type : bigint = bin.bytes_to_bigint(tx_data[0]); // get a bigint
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let tx_type_str : tx_type_str = tx_type_str(tx_type);
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let tts : tx_type_str = tx_type_str(tx_type);
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let tx_version : bigint = bin.bytes_to_bigint(tx_data[1]);
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let tx_fields : fields = deconstruct_fields(tx_type_str, tx_version, tx_data.slice(2));
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return {type : tx_type_str,
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let tx_fields : fields = deconstruct_fields(tts, tx_version, tx_data.slice(2));
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return {type : tts,
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version : tx_version,
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fields : tx_fields};
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}
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@@ -254,12 +293,111 @@ deconstruct_tx
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*
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* This function undoes step 3 and step 2, returns back the rlp decode data
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*
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* FIXME: Does not check double-sha (yet); need to figure out way to handle hash failures
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* FIXME: No good way to handle failure cases
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*
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* @internal
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*/
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function
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shasha_rlp_decode
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shasha_rlp_decode_list
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(hashed_bs : Uint8Array)
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: Array<rlpdata>
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{
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let len = hashed_bs.length;
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let bytes = hashed_bs.slice(0, len - 4);
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let {decoded_data} = rlp.decode(bytes);
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return (decoded_data as Array<rlpdata>);
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}
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/**
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* Convert an object tag that's a type of transaction to the type string
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*
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* See: https://github.com/aeternity/protocol/blob/master/serializations.md#table-of-object-tags
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*
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* @internal
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*/
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function
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tx_type_str
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(tx_type_int : bigint)
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: tx_type_str
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{
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switch (tx_type_int)
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{
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case 11n: return 'SignedTx';
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case 12n: return 'SpendTx';
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case 42n: return 'ContractCreateTx';
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case 43n: return 'ContractCallTx';
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default: throw new Error('invalid transaction type: ' + tx_type_int);
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}
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}
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/**
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* Given an array of data decoded from RLP, convert it to the fields, as
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* appropriate as given by the tx type string and the version
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*/
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function
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deconstruct_fields
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(tx_type_str : tx_type_str,
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tx_version : bigint,
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tx_rawfields : Array<rlpdata>)
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: fields
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{
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switch (tx_type_str)
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{
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// case 'SignedTx' : return deconstruct_fields_SignedTx(tx_rawfields);
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case 'SpendTx' : return deconstruct_fields_SpendTx(tx_rawfields);
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// case 'ContractCreateTx' : return deconstruct_fields_ContractCreateTx(tx_rawfields);
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// case 'ContractCallTx' : return deconstruct_fields_ContractCallTx(tx_rawfields);
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default : throw new Error('invalid tx type str: ' + tx_type_str);
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}
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}
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// TODO: do all this in Erlang
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function
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deconstruct_fields_SpendTx
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(fields: Array<rlpdata>)
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: fields_SpendTx
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{
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let sender_bytes = fields[0];
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let recip_bytes = fields[1];
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let amount_bytes = fields[2];
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let fee_bytes = fields[3];
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let ttl_bytes = fields[4];
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let nonce_bytes = fields[5];
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let payload_bytes = fields[6];
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return {sender : encode_id(sender_bytes),
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recipient : encode_id(sender_bytes),
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amount : bin.bytes_to_bigint(amount_bytes),
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fee : bin.bytes_to_bigint(fee_bytes),
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ttl : bin.bytes_to_bigint(ttl_bytes),
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nonce : bin.bytes_to_bigint(nonce_bytes),
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payload : bin.bytes_to_bigint(payload_bytes)};
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}
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/**
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* Convert a binary account/name/etc binary id into the appropriate type of string
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*
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* @internal
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*/
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function
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encode_id
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(id: Uint8Array)
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: string
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{
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throw new Error('nyi');
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}
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/*
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FIXME:
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1. work out all this in Erlang to clear conceptual goo
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2. think about how i want type safety etc to work
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3. think about a language to assert that the data has the correct shape to it
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4. get some examples working in Erlang
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5. convert erlang code back to ts
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*/
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@@ -9,6 +9,9 @@
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*
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* This work can be found in ../test/testgen/
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*
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* FIXME: need to have Safe assertions for "i am decoding a list", "i am
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* decoding a binary", "I am decoding something with no remainder", etc
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*
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* @module
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*/
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