mirror of
https://github.com/fluencelabs/aqua-ipfs
synced 2025-03-16 05:30:50 +00:00
108 lines
3.6 KiB
Plaintext
108 lines
3.6 KiB
Plaintext
import "@fluencelabs/aqua-lib/builtin.aqua"
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import "ipfs.aqua"
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alias Multiaddr: string
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alias PeerId: string
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alias CID: string
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alias Path: string
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-- Download file from remote IPFS node to Fluence node and then
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-- put that file to local IPFS node, effectively caching it on the local IPFS node.
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--
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-- Arguments:
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-- node - PeerId of the node where execution should happen
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-- cid – IPFS Content ID to download
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-- from - Multiaddress of IPFS node to download `cid` from
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-- error - callback to notify function caller about errors
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--
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-- Returns:
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-- Path on the node's local filesystem. It will be available only during single particle execution.
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--
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-- Errors:
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-- If Ipfs.get_from or Ipfs.put fails, nil is returned.
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-- Errors are reported to the `error` callback.
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func get_and_cache(
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node: PeerId,
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cid: CID,
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from: Multiaddr,
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error: string, string -> ()
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) -> ?CID:
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-- localCid will be the same as cid
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localCid: *CID
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on node:
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-- Download file from remote IPFS to local filesystem
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get <- Ipfs.get_from(cid, from)
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if get.success:
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-- Put file to local IPFS node
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put <- Ipfs.put(get.path)
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if put.success:
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localCid <<- put.hash
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else:
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-- report error in background co-routine
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co error("Ipfs.put failed", put.error)
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else:
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-- report error in background co-routine
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co error("Ipfs.get failed", get.error)
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<- localCid
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-- Upload file `path` to IPFS node running on `node`
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-- path should exist & be available to `aqua-ipfs`
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func put(node: PeerId, path: string) -> IpfsPutResult:
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on node:
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result <- Ipfs.put(path)
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<- result
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-- Upload file `path` as a dag to IPFS node running on `node`
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-- path should exist & be available to `aqua-ipfs`
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func dag_put(node: PeerId, path: string) -> IpfsPutResult:
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on node:
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result <- Ipfs.dag_put(path)
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<- result
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-- Returns file path of the dag `cid` from local cache of IPFS node `node`
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func dag_get(node: PeerId, cid: CID) -> IpfsGetResult:
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on node:
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result <- Ipfs.dag_get(cid)
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<- result
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-- Download file `cid` from IPFS node `from` and save it to `node`
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func get_from(node: PeerId, cid: CID, from: Multiaddr) -> IpfsGetResult:
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on node:
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result <- Ipfs.get_from(cid, from)
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<- result
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-- Return contents of the dag `cid` from IPFS node `from` and save it to `node`
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func dag_get_from(node: PeerId, cid: CID, from: Multiaddr) -> IpfsGetResult:
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on node:
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result <- Ipfs.dag_get_from(cid, from)
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<- result
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-- Return contents of the file `cid` from IPFS node `from`
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func cat_from(node: PeerId, cid: CID, from: Multiaddr) -> IpfsCatResult:
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on node:
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result <- Ipfs.cat_from(cid, from)
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<- result
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-- Set timeout for IPFS calls in `aqua-ipfs`
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func set_timeout(node: PeerId, timeout_sec: u64):
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on node:
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Ipfs.set_timeout(timeout_sec)
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-- Get externally available multiaddress of IPFS's HTTP RPC endpoint (usually on port 5001)
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func get_external_api_multiaddr(node: PeerId) -> IpfsMultiaddrResult:
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on node:
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result <- Ipfs.get_external_api_multiaddr()
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<- result
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-- Get externally available multiaddress of IPFS's Swarm endpoint (usually on port 4001)
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func get_external_swarm_multiaddr(node: PeerId) -> IpfsMultiaddrResult:
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on node:
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result <- Ipfs.get_external_swarm_multiaddr()
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<- result
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-- Get local multiaddress of IPFS's HTTP RPC endpoint (usually on port 5001)
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func get_local_api_multiaddr(node: PeerId) -> IpfsMultiaddrResult:
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on node:
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result <- Ipfs.get_local_api_multiaddr()
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<- result
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