use super::{
display_contract_exec_result,
display_events,
dry_run_error_details,
load_metadata,
parse_balance,
wait_for_success_and_handle_error,
Balance,
ContractMessageTranscoder,
ExtrinsicOpts,
PairSigner,
RuntimeApi,
RuntimeDispatchError,
EXEC_RESULT_MAX_KEY_COL_WIDTH,
};
use crate::name_value_println;
use anyhow::Result;
use jsonrpsee::{
core::client::ClientT,
rpc_params,
ws_client::WsClientBuilder,
};
use pallet_contracts_primitives::{
ContractResult,
ExecReturnValue,
};
use serde::Serialize;
use sp_core::Bytes;
use std::{
fmt::Debug,
result,
};
use subxt::{
rpc::NumberOrHex,
ClientBuilder,
Config,
DefaultConfig,
};
type ContractExecResult =
ContractResult<result::Result<ExecReturnValue, RuntimeDispatchError>, Balance>;
#[derive(Debug, clap::Args)]
#[clap(name = "call", about = "Call a contract")]
pub struct CallCommand {
#[clap(name = "contract", long, env = "CONTRACT")]
contract: <DefaultConfig as Config>::AccountId,
#[clap(long, short)]
message: String,
#[clap(long, multiple_values = true)]
args: Vec<String>,
#[clap(flatten)]
extrinsic_opts: ExtrinsicOpts,
#[clap(name = "gas", long, default_value = "50000000000")]
gas_limit: u64,
#[clap(name = "value", long, parse(try_from_str = parse_balance), default_value = "0")]
value: Balance,
}
impl CallCommand {
pub fn run(&self) -> Result<()> {
let (_, contract_metadata) =
load_metadata(self.extrinsic_opts.manifest_path.as_ref())?;
let transcoder = ContractMessageTranscoder::new(&contract_metadata);
let call_data = transcoder.encode(&self.message, &self.args)?;
log::debug!("message data: {:?}", hex::encode(&call_data));
let signer = super::pair_signer(self.extrinsic_opts.signer()?);
async_std::task::block_on(async {
let url = self.extrinsic_opts.url.to_string();
let api = ClientBuilder::new()
.set_url(&url)
.build()
.await?
.to_runtime_api::<RuntimeApi>();
if self.extrinsic_opts.dry_run {
self.call_rpc(&api, call_data, &signer, &transcoder).await
} else {
self.call(&api, call_data, &signer, &transcoder).await
}
})
}
async fn call_rpc(
&self,
api: &RuntimeApi,
data: Vec<u8>,
signer: &PairSigner,
transcoder: &ContractMessageTranscoder<'_>,
) -> Result<()> {
let url = self.extrinsic_opts.url.to_string();
let cli = WsClientBuilder::default().build(&url).await?;
let storage_deposit_limit = self
.extrinsic_opts
.storage_deposit_limit
.as_ref()
.map(|limit| NumberOrHex::Hex((*limit).into()));
let call_request = RpcCallRequest {
origin: signer.account_id().clone(),
dest: self.contract.clone(),
value: NumberOrHex::Hex(self.value.into()),
gas_limit: NumberOrHex::Number(self.gas_limit),
storage_deposit_limit,
input_data: Bytes(data),
};
let params = rpc_params![call_request];
let result: ContractExecResult = cli.request("contracts_call", params).await?;
match result.result {
Ok(ref ret_val) => {
let value =
transcoder.decode_return(&self.message, &mut &ret_val.data.0[..])?;
name_value_println!(
"Result",
String::from("Success!"),
EXEC_RESULT_MAX_KEY_COL_WIDTH
);
name_value_println!(
"Reverted",
format!("{:?}", ret_val.did_revert()),
EXEC_RESULT_MAX_KEY_COL_WIDTH
);
name_value_println!(
"Data",
format!("{}", value),
EXEC_RESULT_MAX_KEY_COL_WIDTH
);
}
Err(ref err) => {
let err = dry_run_error_details(api, err).await?;
name_value_println!("Result", err, EXEC_RESULT_MAX_KEY_COL_WIDTH);
}
}
display_contract_exec_result(&result)?;
Ok(())
}
async fn call(
&self,
api: &RuntimeApi,
data: Vec<u8>,
signer: &PairSigner,
transcoder: &ContractMessageTranscoder<'_>,
) -> Result<()> {
log::debug!("calling contract {:?}", self.contract);
let tx_progress = api
.tx()
.contracts()
.call(
self.contract.clone().into(),
self.value,
self.gas_limit,
self.extrinsic_opts.storage_deposit_limit,
data,
)?
.sign_and_submit_then_watch_default(signer)
.await?;
let result = wait_for_success_and_handle_error(tx_progress).await?;
display_events(
&result,
transcoder,
api.client.metadata(),
&self.extrinsic_opts.verbosity()?,
)
}
}
#[derive(Serialize)]
#[serde(rename_all = "camelCase")]
pub struct RpcCallRequest {
origin: <DefaultConfig as Config>::AccountId,
dest: <DefaultConfig as Config>::AccountId,
value: NumberOrHex,
gas_limit: NumberOrHex,
storage_deposit_limit: Option<NumberOrHex>,
input_data: Bytes,
}