ligo/src/client/client_node_rpcs.ml

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(**************************************************************************)
(* *)
(* Copyright (c) 2014 - 2016. *)
(* Dynamic Ledger Solutions, Inc. <contact@tezos.com> *)
(* *)
(* All rights reserved. No warranty, explicit or implicit, provided. *)
(* *)
(**************************************************************************)
(* Tezos Command line interface - RPC Calls *)
open Client_rpcs
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module Services = Node_rpc_services
let errors cctxt =
call_service0 cctxt Services.Error.service ()
let forge_block cctxt ?net_id ?level ?proto_level ?predecessor ?timestamp fitness ops header =
call_service0 cctxt Services.forge_block
(net_id, level, proto_level, predecessor, timestamp, fitness, ops, header)
let validate_block cctxt net block =
call_err_service0 cctxt Services.validate_block (net, block)
type operation = Node_rpc_services.operation =
| Blob of Operation.t
| Hash of Operation_hash.t
let operation_encoding = Node_rpc_services.operation_encoding
let inject_block cctxt ?(async = false) ?(force = false) raw operations =
call_err_service0 cctxt Services.inject_block
{ raw ; blocking = not async ; force ; operations }
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let inject_operation cctxt ?(async = false) ?force operation =
call_err_service0 cctxt Services.inject_operation
(operation, not async, force)
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let inject_protocol cctxt ?(async = false) ?force protocol =
call_err_service0 cctxt Services.inject_protocol
(protocol, not async, force)
let bootstrapped cctxt =
call_streamed_service0 cctxt Services.bootstrapped ()
let complete cctxt ?block prefix =
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match block with
| None ->
call_service1 cctxt Services.complete prefix ()
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| Some block ->
call_service2 cctxt Services.Blocks.complete block prefix ()
let describe config ?recurse path =
call_describe0 config Services.describe path recurse
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module Blocks = struct
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type block = Services.Blocks.block
type block_info = Services.Blocks.block_info = {
hash: Block_hash.t ;
net_id: Net_id.t ;
level: Int32.t ;
proto_level: int ; (* uint8 *)
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predecessor: Block_hash.t ;
timestamp: Time.t ;
operations_hash: Operation_list_list_hash.t ;
fitness: MBytes.t list ;
data: MBytes.t ;
operations: Operation_hash.t list list option ;
protocol: Protocol_hash.t ;
test_network: Context.test_network;
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}
type preapply_param = Services.Blocks.preapply_param = {
operations: operation list ;
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sort: bool ;
timestamp: Time.t option ;
}
type preapply_result = Services.Blocks.preapply_result = {
operations: error Prevalidation.preapply_result ;
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fitness: MBytes.t list ;
timestamp: Time.t ;
}
let net cctxt h =
call_service1 cctxt Services.Blocks.net h ()
let level cctxt h =
call_service1 cctxt Services.Blocks.level h ()
let predecessor cctxt h =
call_service1 cctxt Services.Blocks.predecessor h ()
let predecessors cctxt h l =
call_service1 cctxt Services.Blocks.predecessors h l
let hash cctxt h =
call_service1 cctxt Services.Blocks.hash h ()
let timestamp cctxt h =
call_service1 cctxt Services.Blocks.timestamp h ()
let fitness cctxt h =
call_service1 cctxt Services.Blocks.fitness h ()
let operations cctxt ?(contents = false) h =
call_service1 cctxt Services.Blocks.operations h
{ contents ; monitor = false }
let protocol cctxt h =
call_service1 cctxt Services.Blocks.protocol h ()
let test_network cctxt h =
call_service1 cctxt Services.Blocks.test_network h ()
let preapply cctxt h ?timestamp ?(sort = false) operations =
call_err_service1
cctxt Services.Blocks.preapply h
{ operations ; sort ; timestamp }
let pending_operations cctxt block =
call_service1 cctxt Services.Blocks.pending_operations block ()
let info cctxt ?(include_ops = true) h =
call_service1 cctxt Services.Blocks.info h include_ops
let complete cctxt block prefix =
call_service2 cctxt Services.Blocks.complete block prefix ()
let list cctxt ?(include_ops = false)
?length ?heads ?delay ?min_date ?min_heads () =
call_service0 cctxt Services.Blocks.list
{ include_ops ; length ; heads ; monitor = Some false ; delay ;
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min_date ; min_heads }
let monitor cctxt ?(include_ops = false)
?length ?heads ?delay ?min_date ?min_heads () =
call_streamed_service0 cctxt Services.Blocks.list
{ include_ops ; length ; heads ; monitor = Some true ; delay ;
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min_date ; min_heads }
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end
module Operations = struct
let monitor cctxt ?(contents = false) () =
call_streamed_service1 cctxt Services.Blocks.operations
`Prevalidation
{ contents ; monitor = true }
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end
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module Protocols = struct
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let contents cctxt hash =
call_service1 cctxt Services.Protocols.contents hash ()
let list cctxt ?contents () =
call_service0
cctxt Services.Protocols.list
{ contents; monitor = Some false }
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end
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module Network = struct
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let stat cctxt =
call_service0 cctxt Services.Network.stat ()
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let connections cctxt =
call_service0 cctxt Services.Network.Connection.list ()
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let peers cctxt =
call_service0 cctxt Services.Network.Peer_id.list []
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let points cctxt =
call_service0 cctxt Services.Network.Point.list []
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end