Update with the most recent storage contract (#142)

* Update with the most recent storage contract

* fix nits
This commit is contained in:
bruno-valante 2024-07-24 13:01:30 +08:00 committed by GitHub
parent 533bacb234
commit 7d73ccd1e1
No known key found for this signature in database
GPG Key ID: B5690EEEBB952194
23 changed files with 1639 additions and 646 deletions

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@ -9,6 +9,7 @@ mod loader;
mod metrics; mod metrics;
mod mine; mod mine;
mod miner_id; mod miner_id;
mod monitor;
pub mod pora; pub mod pora;
mod recall_range; mod recall_range;
mod sealer; mod sealer;

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@ -9,7 +9,6 @@ use tokio::time::{sleep, Duration, Instant};
use storage::config::ShardConfig; use storage::config::ShardConfig;
use zgs_spec::{SECTORS_PER_LOAD, SECTORS_PER_MAX_MINING_RANGE, SECTORS_PER_PRICING}; use zgs_spec::{SECTORS_PER_LOAD, SECTORS_PER_MAX_MINING_RANGE, SECTORS_PER_PRICING};
use super::metrics;
use crate::recall_range::RecallRange; use crate::recall_range::RecallRange;
use crate::{ use crate::{
pora::{AnswerWithoutProof, Miner}, pora::{AnswerWithoutProof, Miner},
@ -20,7 +19,7 @@ use crate::{
use std::sync::Arc; use std::sync::Arc;
pub struct PoraService { pub struct PoraService {
mine_context_receiver: mpsc::UnboundedReceiver<MineContextMessage>, mine_context_receiver: broadcast::Receiver<MineContextMessage>,
mine_answer_sender: mpsc::UnboundedSender<AnswerWithoutProof>, mine_answer_sender: mpsc::UnboundedSender<AnswerWithoutProof>,
msg_recv: broadcast::Receiver<MinerMessage>, msg_recv: broadcast::Receiver<MinerMessage>,
loader: Arc<dyn PoraLoader>, loader: Arc<dyn PoraLoader>,
@ -33,9 +32,29 @@ pub struct PoraService {
iter_batch: usize, iter_batch: usize,
} }
struct PoraPuzzle { #[derive(Debug, Clone, PartialEq, Eq)]
pub(super) struct PoraPuzzle {
context: MineContext, context: MineContext,
target_quality: U256, target_quality: U256,
max_shards: u64,
}
impl PoraPuzzle {
pub fn new(context: MineContext, target_quality: U256, max_shards: u64) -> Self {
Self {
context,
target_quality,
max_shards,
}
}
pub fn max_shards(&self) -> u64 {
self.max_shards
}
pub fn context_digest(&self) -> H256 {
H256(self.context.digest)
}
} }
#[derive(Clone, Debug, Default)] #[derive(Clone, Debug, Default)]
pub struct MineRangeConfig { pub struct MineRangeConfig {
@ -89,7 +108,7 @@ impl PoraService {
pub fn spawn( pub fn spawn(
executor: TaskExecutor, executor: TaskExecutor,
msg_recv: broadcast::Receiver<MinerMessage>, msg_recv: broadcast::Receiver<MinerMessage>,
mine_context_receiver: mpsc::UnboundedReceiver<MineContextMessage>, mine_context_receiver: broadcast::Receiver<MineContextMessage>,
loader: Arc<dyn PoraLoader>, loader: Arc<dyn PoraLoader>,
config: &MinerConfig, config: &MinerConfig,
miner_id: H256, miner_id: H256,
@ -138,13 +157,17 @@ impl PoraService {
Ok(MinerMessage::SetStartPosition(pos)) => { Ok(MinerMessage::SetStartPosition(pos)) => {
info!("Change start position to: {:?}", pos); info!("Change start position to: {:?}", pos);
self.mine_range.start_position = pos; self.mine_range.start_position = pos;
self.report_reason_if_mine_stop("update mine range");
} }
Ok(MinerMessage::SetEndPosition(pos)) => { Ok(MinerMessage::SetEndPosition(pos)) => {
info!("Change end position to: {:?}", pos); info!("Change end position to: {:?}", pos);
self.mine_range.end_position = pos; self.mine_range.end_position = pos;
self.report_reason_if_mine_stop("update mine range");
} }
Ok(MinerMessage::SetShardConfig(shard_config)) => { Ok(MinerMessage::SetShardConfig(shard_config)) => {
self.mine_range.shard_config = shard_config; self.mine_range.shard_config = shard_config;
self.report_reason_if_mine_stop("update shard");
} }
Err(broadcast::error::RecvError::Closed) => { Err(broadcast::error::RecvError::Closed) => {
warn!("Unexpected: Mine service config channel closed."); warn!("Unexpected: Mine service config channel closed.");
@ -157,21 +180,26 @@ impl PoraService {
} }
maybe_msg = self.mine_context_receiver.recv() => { maybe_msg = self.mine_context_receiver.recv() => {
if let Some(msg) = maybe_msg { match maybe_msg {
Ok(msg) => {
info!("Update mine service: {:?}", msg); info!("Update mine service: {:?}", msg);
info!("Mine iterations statistics: {}", metrics::report()); self.puzzle = msg;
self.puzzle = msg.map(|(context, target_quality)| PoraPuzzle { self.report_reason_if_mine_stop("update mine context");
context, target_quality },
}); Err(broadcast::error::RecvError::Closed) => {
} else {
warn!("Mine context channel closed."); warn!("Mine context channel closed.");
},
Err(_) => {}
} }
} }
() = &mut diastole, if !diastole.is_elapsed() => { () = &mut diastole, if !diastole.is_elapsed() => {
} }
_ = async {}, if mining_enabled && cpu_percent > 0 && self.as_miner().map_or(false, |miner| miner.range.mining_length > 0) && diastole.is_elapsed() => { _ = async {}, if mining_enabled
&& cpu_percent > 0
&& self.as_miner().is_ok()
&& diastole.is_elapsed() => {
let nonce = H256(rand::thread_rng().gen()); let nonce = H256(rand::thread_rng().gen());
let miner = self.as_miner().unwrap(); let miner = self.as_miner().unwrap();
@ -194,13 +222,27 @@ impl PoraService {
} }
#[inline] #[inline]
fn as_miner(&self) -> Option<Miner> { fn as_miner(&self) -> Result<Miner, &'static str> {
let puzzle = self.puzzle.as_ref()?; let puzzle = self.puzzle.as_ref().ok_or("no mine context")?;
let range = self.mine_range.to_valid_range(&puzzle.context)?; let range = self
(range.mining_length > 0).then_some(())?; .mine_range
.to_valid_range(&puzzle.context)
.ok_or("no mine range")?;
Some(Miner { if range.mining_length == 0 {
return Err("mine range is zero");
}
if puzzle.max_shards() < self.mine_range.shard_config.num_shard as u64 {
return Err("too many mine shards");
}
if self.mine_range.shard_config.num_shard as u64 > puzzle.context.flow_length.as_u64() {
return Err("Not enough flow length to shard");
}
Ok(Miner {
range, range,
miner_id: &self.miner_id, miner_id: &self.miner_id,
mine_range_config: &self.mine_range, mine_range_config: &self.mine_range,
@ -209,4 +251,10 @@ impl PoraService {
loader: &*self.loader, loader: &*self.loader,
}) })
} }
fn report_reason_if_mine_stop(&self, event: &'static str) {
if let Err(reason) = self.as_miner() {
info!(reason, "Mine stopped on {}", event);
}
}
} }

27
node/miner/src/monitor.rs Normal file
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@ -0,0 +1,27 @@
use std::time::Duration;
use task_executor::TaskExecutor;
use tokio::time::sleep;
use super::metrics;
pub struct Monitor {
period: Duration,
}
impl Monitor {
pub fn spawn(executor: TaskExecutor, period: Duration) {
let monitor = Monitor { period };
executor.spawn(
async move { Box::pin(monitor.start()).await },
"pora_master",
);
}
async fn start(&self) {
loop {
info!("Mine iterations statistics: {}", metrics::report());
let _ = sleep(self.period).await;
}
}
}

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@ -102,15 +102,16 @@ impl<'a> Miner<'a> {
} }
let quality = self.pora(idx, &sealed_data, pad_seed); let quality = self.pora(idx, &sealed_data, pad_seed);
let quality_scale = self.range.shard_mask.count_zeros(); let difficulty_scale_x64 = self
if quality <= U256::MAX >> quality_scale .range
&& quality << quality_scale <= *self.target_quality .difficulty_scale_x64(self.context.flow_length.as_u64());
{
if quality <= (self.target_quality / difficulty_scale_x64) << 64 {
debug!( debug!(
"Find a PoRA valid answer, quality: {}, target_quality {}, scale {}", "Find a PoRA valid answer, quality: {}, target_quality {}, scale {:.3}",
U256::MAX / quality, U256::MAX / quality,
U256::MAX / self.target_quality, U256::MAX / self.target_quality,
quality_scale difficulty_scale_x64.as_u128() as f64 / (u64::MAX as f64 + 1.0)
); );
inc_counter(&HIT_COUNT); inc_counter(&HIT_COUNT);
// Undo mix data when find a valid solition // Undo mix data when find a valid solition

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@ -1,6 +1,6 @@
use ethereum_types::U256; use ethereum_types::U256;
use tiny_keccak::{Hasher, Keccak}; use tiny_keccak::{Hasher, Keccak};
use zgs_spec::SECTORS_PER_LOAD; use zgs_spec::{SECTORS_PER_LOAD, SECTORS_PER_MAX_MINING_RANGE};
#[derive(PartialEq, Eq, Clone, Copy, Debug)] #[derive(PartialEq, Eq, Clone, Copy, Debug)]
pub struct RecallRange { pub struct RecallRange {
@ -38,6 +38,16 @@ impl RecallRange {
Some(self.start_position + recall_offset * SECTORS_PER_LOAD as u64) Some(self.start_position + recall_offset * SECTORS_PER_LOAD as u64)
} }
pub fn difficulty_scale_x64(&self, flow_length: u64) -> U256 {
let no_shard_mine_length = std::cmp::min(flow_length, SECTORS_PER_MAX_MINING_RANGE as u64);
let sharded_mine_length = std::cmp::min(
flow_length >> self.shard_mask.count_zeros(),
SECTORS_PER_MAX_MINING_RANGE as u64,
);
(U256::from(no_shard_mine_length) << 64) / sharded_mine_length
}
} }
impl From<RecallRange> for contract_interface::RecallRange { impl From<RecallRange> for contract_interface::RecallRange {

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@ -1,9 +1,11 @@
use crate::miner_id::check_and_request_miner_id; use crate::miner_id::check_and_request_miner_id;
use crate::monitor::Monitor;
use crate::sealer::Sealer; use crate::sealer::Sealer;
use crate::submitter::Submitter; use crate::submitter::Submitter;
use crate::{config::MinerConfig, mine::PoraService, watcher::MineContextWatcher}; use crate::{config::MinerConfig, mine::PoraService, watcher::MineContextWatcher};
use network::NetworkMessage; use network::NetworkMessage;
use std::sync::Arc; use std::sync::Arc;
use std::time::Duration;
use storage::config::ShardConfig; use storage::config::ShardConfig;
use storage_async::Store; use storage_async::Store;
use tokio::sync::broadcast; use tokio::sync::broadcast;
@ -48,7 +50,7 @@ impl MineService {
let mine_answer_receiver = PoraService::spawn( let mine_answer_receiver = PoraService::spawn(
executor.clone(), executor.clone(),
msg_recv.resubscribe(), msg_recv.resubscribe(),
mine_context_receiver, mine_context_receiver.resubscribe(),
store.clone(), store.clone(),
&config, &config,
miner_id, miner_id,
@ -57,12 +59,15 @@ impl MineService {
Submitter::spawn( Submitter::spawn(
executor.clone(), executor.clone(),
mine_answer_receiver, mine_answer_receiver,
mine_context_receiver,
provider.clone(), provider.clone(),
store.clone(), store.clone(),
&config, &config,
); );
Sealer::spawn(executor, provider, store, &config, miner_id); Sealer::spawn(executor.clone(), provider, store, &config, miner_id);
Monitor::spawn(executor, Duration::from_secs(5));
debug!("Starting miner service"); debug!("Starting miner service");

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@ -6,19 +6,23 @@ use ethers::providers::PendingTransaction;
use hex::ToHex; use hex::ToHex;
use shared_types::FlowRangeProof; use shared_types::FlowRangeProof;
use std::sync::Arc; use std::sync::Arc;
use std::time::Duration;
use storage::H256;
use storage_async::Store; use storage_async::Store;
use task_executor::TaskExecutor; use task_executor::TaskExecutor;
use tokio::sync::mpsc; use tokio::sync::{broadcast, mpsc};
use crate::config::{MineServiceMiddleware, MinerConfig}; use crate::config::{MineServiceMiddleware, MinerConfig};
use crate::pora::AnswerWithoutProof; use crate::pora::AnswerWithoutProof;
use crate::watcher::MineContextMessage;
use zgs_spec::{BYTES_PER_SEAL, SECTORS_PER_SEAL}; use zgs_spec::{BYTES_PER_SEAL, SECTORS_PER_SEAL};
const SUBMISSION_RETIES: usize = 3; const SUBMISSION_RETIES: usize = 15;
pub struct Submitter { pub struct Submitter {
mine_answer_receiver: mpsc::UnboundedReceiver<AnswerWithoutProof>, mine_answer_receiver: mpsc::UnboundedReceiver<AnswerWithoutProof>,
mine_context_receiver: broadcast::Receiver<MineContextMessage>,
mine_contract: PoraMine<MineServiceMiddleware>, mine_contract: PoraMine<MineServiceMiddleware>,
flow_contract: ZgsFlow<MineServiceMiddleware>, flow_contract: ZgsFlow<MineServiceMiddleware>,
default_gas_limit: Option<U256>, default_gas_limit: Option<U256>,
@ -29,6 +33,7 @@ impl Submitter {
pub fn spawn( pub fn spawn(
executor: TaskExecutor, executor: TaskExecutor,
mine_answer_receiver: mpsc::UnboundedReceiver<AnswerWithoutProof>, mine_answer_receiver: mpsc::UnboundedReceiver<AnswerWithoutProof>,
mine_context_receiver: broadcast::Receiver<MineContextMessage>,
provider: Arc<MineServiceMiddleware>, provider: Arc<MineServiceMiddleware>,
store: Arc<Store>, store: Arc<Store>,
config: &MinerConfig, config: &MinerConfig,
@ -39,6 +44,7 @@ impl Submitter {
let submitter = Submitter { let submitter = Submitter {
mine_answer_receiver, mine_answer_receiver,
mine_context_receiver,
mine_contract, mine_contract,
flow_contract, flow_contract,
store, store,
@ -51,18 +57,39 @@ impl Submitter {
} }
async fn start(mut self) { async fn start(mut self) {
let mut current_context_digest: Option<H256> = None;
loop { loop {
match self.mine_answer_receiver.recv().await { tokio::select! {
answer_msg = self.mine_answer_receiver.recv() => {
match answer_msg {
Some(answer) => { Some(answer) => {
if Some(answer.context_digest) != current_context_digest {
info!("Skip submission because of inconsistent context digest");
continue;
}
if let Err(e) = self.submit_answer(answer).await { if let Err(e) = self.submit_answer(answer).await {
warn!(e) warn!(e);
} }
} }
None => { None => {
warn!("Mine submitter stopped because mine answer channel is closed."); warn!("Mine submitter stopped because mine answer channel is closed.");
break; return;
}
}
}
context_msg = self.mine_context_receiver.recv() => {
match context_msg {
Ok(puzzle) => {
current_context_digest = puzzle.map(|p| p.context_digest());
}
Err(broadcast::error::RecvError::Closed) => {
warn!("Mine context channel closed.");
},
Err(_) => {}
}
}
} }
};
} }
} }
@ -136,6 +163,7 @@ impl Submitter {
let receipt = pending_transaction let receipt = pending_transaction
.retries(SUBMISSION_RETIES) .retries(SUBMISSION_RETIES)
.interval(Duration::from_secs(2))
.await .await
.map_err(|e| format!("Fail to execute mine answer transaction: {:?}", e))? .map_err(|e| format!("Fail to execute mine answer transaction: {:?}", e))?
.ok_or(format!( .ok_or(format!(

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@ -19,9 +19,9 @@ use std::sync::Arc;
use std::time::Duration; use std::time::Duration;
use std::{ops::DerefMut, str::FromStr}; use std::{ops::DerefMut, str::FromStr};
use crate::{config::MineServiceMiddleware, MinerConfig, MinerMessage}; use crate::{config::MineServiceMiddleware, mine::PoraPuzzle, MinerConfig, MinerMessage};
pub type MineContextMessage = Option<(MineContext, U256)>; pub type MineContextMessage = Option<PoraPuzzle>;
lazy_static! { lazy_static! {
pub static ref EMPTY_HASH: H256 = pub static ref EMPTY_HASH: H256 =
@ -33,7 +33,7 @@ pub struct MineContextWatcher {
flow_contract: ZgsFlow<MineServiceMiddleware>, flow_contract: ZgsFlow<MineServiceMiddleware>,
mine_contract: PoraMine<MineServiceMiddleware>, mine_contract: PoraMine<MineServiceMiddleware>,
mine_context_sender: mpsc::UnboundedSender<MineContextMessage>, mine_context_sender: broadcast::Sender<MineContextMessage>,
last_report: MineContextMessage, last_report: MineContextMessage,
msg_recv: broadcast::Receiver<MinerMessage>, msg_recv: broadcast::Receiver<MinerMessage>,
@ -45,14 +45,14 @@ impl MineContextWatcher {
msg_recv: broadcast::Receiver<MinerMessage>, msg_recv: broadcast::Receiver<MinerMessage>,
provider: Arc<MineServiceMiddleware>, provider: Arc<MineServiceMiddleware>,
config: &MinerConfig, config: &MinerConfig,
) -> mpsc::UnboundedReceiver<MineContextMessage> { ) -> broadcast::Receiver<MineContextMessage> {
let provider = provider; let provider = provider;
let mine_contract = PoraMine::new(config.mine_address, provider.clone()); let mine_contract = PoraMine::new(config.mine_address, provider.clone());
let flow_contract = ZgsFlow::new(config.flow_address, provider.clone()); let flow_contract = ZgsFlow::new(config.flow_address, provider.clone());
let (mine_context_sender, mine_context_receiver) = let (mine_context_sender, mine_context_receiver) =
mpsc::unbounded_channel::<MineContextMessage>(); broadcast::channel::<MineContextMessage>(4096);
let watcher = MineContextWatcher { let watcher = MineContextWatcher {
provider, provider,
flow_contract, flow_contract,
@ -108,12 +108,17 @@ impl MineContextWatcher {
let context_call = self.flow_contract.make_context_with_result(); let context_call = self.flow_contract.make_context_with_result();
let valid_call = self.mine_contract.can_submit(); let valid_call = self.mine_contract.can_submit();
let quality_call = self.mine_contract.pora_target(); let quality_call = self.mine_contract.pora_target();
let shards_call = self.mine_contract.max_shards();
let (context, can_submit, quality) = let (context, can_submit, quality, max_shards) = try_join!(
try_join!(context_call.call(), valid_call.call(), quality_call.call()) context_call.call(),
valid_call.call(),
quality_call.call(),
shards_call.call()
)
.map_err(|e| format!("Failed to query mining context: {:?}", e))?; .map_err(|e| format!("Failed to query mining context: {:?}", e))?;
let report = if can_submit && context.digest != EMPTY_HASH.0 { let report = if can_submit && context.digest != EMPTY_HASH.0 {
Some((context, quality)) Some(PoraPuzzle::new(context, quality, max_shards))
} else { } else {
None None
}; };

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@ -8,5 +8,5 @@ check_abis() {
diff $(./scripts/search_abi.sh "$artifacts_path" "$contract_name.json") "storage-contracts-abis/$contract_name.json" diff $(./scripts/search_abi.sh "$artifacts_path" "$contract_name.json") "storage-contracts-abis/$contract_name.json"
done done
} }
check_abis DummyMarket DummyReward Flow PoraMine PoraMineTest FixedPrice OnePoolReward FixedPriceFlow check_abis DummyMarket DummyReward Flow PoraMine PoraMineTest FixedPrice ChunkLinearReward FixedPriceFlow

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@ -54,7 +54,7 @@ copy_abis() {
done done
} }
copy_abis DummyMarket DummyReward Flow PoraMine PoraMineTest FixedPrice OnePoolReward FixedPriceFlow copy_abis DummyMarket DummyReward Flow PoraMine PoraMineTest FixedPrice ChunkLinearReward FixedPriceFlow
# Step 4: Get the current Git revision and write it to a specified file # Step 4: Get the current Git revision and write it to a specified file

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@ -1 +1 @@
6ec57942cba3068d3373bcb2c88f8fd51d2322b1 dbeff538b949599c203e43be6ecc05e9e997d09d

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@ -45,14 +45,14 @@ class MineTest(TestFramework):
self.log.info("Submission done, current epoch is %d", start_epoch) self.log.info("Submission done, current epoch is %d", start_epoch)
self.log.info("Wait for the first mine context release") self.log.info("Wait for the first mine context release")
wait_until(lambda: int(blockchain.eth_blockNumber(), 16) >= start_epoch + 1, timeout=180) wait_until(lambda: self.contract.epoch() >= start_epoch + 1, timeout=180)
self.contract.update_context() self.contract.update_context()
self.log.info("Wait for the first mine answer") self.log.info("Wait for the first mine answer")
wait_until(lambda: self.mine_contract.last_mined_epoch() == start_epoch + 1 and not self.mine_contract.can_submit(), timeout=180) wait_until(lambda: self.mine_contract.last_mined_epoch() == start_epoch + 1 and not self.mine_contract.can_submit(), timeout=180)
self.log.info("Wait for the second mine context release") self.log.info("Wait for the second mine context release")
wait_until(lambda: int(blockchain.eth_blockNumber(), 16) >= start_epoch + 2, timeout=180) wait_until(lambda: self.contract.epoch() >= start_epoch + 2, timeout=180)
self.contract.update_context() self.contract.update_context()
self.log.info("Wait for the second mine answer") self.log.info("Wait for the second mine answer")
@ -60,7 +60,7 @@ class MineTest(TestFramework):
self.nodes[0].miner_stop() self.nodes[0].miner_stop()
self.log.info("Wait for the third mine context release") self.log.info("Wait for the third mine context release")
wait_until(lambda: int(blockchain.eth_blockNumber(), 16) >= start_epoch + 3, timeout=180) wait_until(lambda: self.contract.epoch() >= start_epoch + 3, timeout=180)
self.contract.update_context() self.contract.update_context()
self.log.info("Submit the second data chunk") self.log.info("Submit the second data chunk")

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@ -50,6 +50,7 @@ class MineTest(TestFramework):
SECTORS_PER_PRICING = int(8 * ( 2 ** 30 ) / 256) SECTORS_PER_PRICING = int(8 * ( 2 ** 30 ) / 256)
self.log.info("Submit the actual data chunk (256 MB)") self.log.info("Submit the actual data chunk (256 MB)")
self.submit_data(b"\x11", int(SECTORS_PER_PRICING / 32)) self.submit_data(b"\x11", int(SECTORS_PER_PRICING / 32))
@ -74,7 +75,7 @@ class MineTest(TestFramework):
firstReward = rewards[0].args.amount firstReward = rewards[0].args.amount
self.log.info("Received reward %d Gwei", firstReward / (10**9)) self.log.info("Received reward %d Gwei", firstReward / (10**9))
self.reward_contract.transfer(10000 * 10 ** 18) self.reward_contract.donate(10000 * 10 ** 18)
self.log.info("Donation Done") self.log.info("Donation Done")
self.log.info("Submit the data hash only (8 GB)") self.log.info("Submit the data hash only (8 GB)")
self.submit_data(b"\x11", int(SECTORS_PER_PRICING), no_submit=True) self.submit_data(b"\x11", int(SECTORS_PER_PRICING), no_submit=True)

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@ -303,7 +303,7 @@ class BlockchainNode(TestNode):
mine_contract.functions.setTargetSubmissions(2).transact(TX_PARAMS) mine_contract.functions.setTargetSubmissions(2).transact(TX_PARAMS)
self.log.debug("Mine Initialized") self.log.debug("Mine Initialized")
flow_initialize_hash = (flow_contract.get_function_by_signature('initialize(address)'))(dummy_market_contract.address).transact(TX_PARAMS) flow_initialize_hash = flow_contract.functions.initialize(dummy_market_contract.address).transact(TX_PARAMS)
self.log.debug("Flow Initialized") self.log.debug("Flow Initialized")
self.wait_for_transaction_receipt(w3, flow_initialize_hash) self.wait_for_transaction_receipt(w3, flow_initialize_hash)
@ -325,7 +325,7 @@ class BlockchainNode(TestNode):
market_contract, _ = deploy_contract("FixedPrice", []) market_contract, _ = deploy_contract("FixedPrice", [])
self.log.debug("Market deployed") self.log.debug("Market deployed")
reward_contract, _ =deploy_contract("OnePoolReward", [LIFETIME_MONTH]) reward_contract, _ =deploy_contract("ChunkLinearReward", [LIFETIME_MONTH * 31 * 86400])
self.log.debug("Reward deployed") self.log.debug("Reward deployed")
flow_contract, _ = deploy_contract("FixedPriceFlow", [mine_period, 0]) flow_contract, _ = deploy_contract("FixedPriceFlow", [mine_period, 0])
@ -336,13 +336,15 @@ class BlockchainNode(TestNode):
mine_contract.functions.setTargetSubmissions(2).transact(TX_PARAMS) mine_contract.functions.setTargetSubmissions(2).transact(TX_PARAMS)
self.log.debug("Mine Initialized") self.log.debug("Mine Initialized")
market_contract.functions.initialize(LIFETIME_MONTH, flow_contract.address, reward_contract.address).transact(TX_PARAMS) price_per_sector = int(LIFETIME_MONTH * 256 * 10 * 1_000_000_000_000_000_000 / 1024 / 1024 / 1024 / 12)
market_contract.functions.initialize(price_per_sector, flow_contract.address, reward_contract.address).transact(TX_PARAMS)
self.log.debug("Market Initialized") self.log.debug("Market Initialized")
reward_contract.functions.initialize(market_contract.address, mine_contract.address).transact(TX_PARAMS) reward_contract.functions.initialize(market_contract.address, mine_contract.address).transact(TX_PARAMS)
reward_contract.functions.setBaseReward(10 ** 18).transact(TX_PARAMS)
self.log.debug("Reward Initialized") self.log.debug("Reward Initialized")
flow_initialize_hash = (flow_contract.get_function_by_signature('initialize(address)'))(market_contract.address).transact(TX_PARAMS) flow_initialize_hash = flow_contract.functions.initialize(market_contract.address).transact(TX_PARAMS)
self.log.debug("Flow Initialized") self.log.debug("Flow Initialized")
self.wait_for_transaction_receipt(w3, flow_initialize_hash) self.wait_for_transaction_receipt(w3, flow_initialize_hash)

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@ -29,6 +29,14 @@ class ContractProxy:
contract = self._get_contract(node_idx) contract = self._get_contract(node_idx)
return getattr(contract.functions, fn_name)(**args).transact(copy(TX_PARAMS)) return getattr(contract.functions, fn_name)(**args).transact(copy(TX_PARAMS))
def _send_payable(self, fn_name, node_idx, value, **args):
assert node_idx < len(self.blockchain_nodes)
contract = self._get_contract(node_idx)
tx_params = copy(TX_PARAMS)
tx_params["value"] = value
return getattr(contract.functions, fn_name)(**args).transact(tx_params)
def _logs(self, event_name, node_idx, **args): def _logs(self, event_name, node_idx, **args):
assert node_idx < len(self.blockchain_nodes) assert node_idx < len(self.blockchain_nodes)
@ -66,7 +74,6 @@ class FlowContractProxy(ContractProxy):
contract.w3, tx_hash, parent_hash=parent_hash contract.w3, tx_hash, parent_hash=parent_hash
) )
if receipt["status"] != 1: if receipt["status"] != 1:
print(receipt)
assert_equal(receipt["status"], 1) assert_equal(receipt["status"], 1)
return tx_hash return tx_hash
@ -98,6 +105,12 @@ class MineContractProxy(ContractProxy):
class IRewardContractProxy(ContractProxy): class RewardContractProxy(ContractProxy):
def reward_distributes(self, node_idx=0): def reward_distributes(self, node_idx=0):
return self._logs("DistributeReward", node_idx) return self._logs("DistributeReward", node_idx)
def donate(self, value, node_idx = 0):
return self._send_payable("donate", node_idx, value)
def base_reward(self, node_idx = 0):
return self._call("baseReward", node_idx)

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@ -15,7 +15,7 @@ from pathlib import Path
from eth_utils import encode_hex from eth_utils import encode_hex
from test_framework.bsc_node import BSCNode from test_framework.bsc_node import BSCNode
from test_framework.contract_proxy import FlowContractProxy, MineContractProxy, IRewardContractProxy from test_framework.contract_proxy import FlowContractProxy, MineContractProxy, RewardContractProxy
from test_framework.zgs_node import ZgsNode from test_framework.zgs_node import ZgsNode
from test_framework.blockchain_node import BlockChainNodeType from test_framework.blockchain_node import BlockChainNodeType
from test_framework.conflux_node import ConfluxNode, connect_sample_nodes from test_framework.conflux_node import ConfluxNode, connect_sample_nodes
@ -174,7 +174,7 @@ class TestFramework:
contract, tx_hash, mine_contract, reward_contract = self.blockchain_nodes[0].setup_contract(self.enable_market, self.mine_period) contract, tx_hash, mine_contract, reward_contract = self.blockchain_nodes[0].setup_contract(self.enable_market, self.mine_period)
self.contract = FlowContractProxy(contract, self.blockchain_nodes) self.contract = FlowContractProxy(contract, self.blockchain_nodes)
self.mine_contract = MineContractProxy(mine_contract, self.blockchain_nodes) self.mine_contract = MineContractProxy(mine_contract, self.blockchain_nodes)
self.reward_contract = IRewardContractProxy(reward_contract, self.blockchain_nodes) self.reward_contract = RewardContractProxy(reward_contract, self.blockchain_nodes)
for node in self.blockchain_nodes[1:]: for node in self.blockchain_nodes[1:]: