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.gitignore
vendored
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/.idea
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/.idea
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tests/**/__pycache__
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tests/**/__pycache__
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tests/tmp/**
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tests/tmp/**
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tests/config/zgs
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.vscode/*.json
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.vscode/*.json
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/0g-storage-contracts-dev
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/0g-storage-contracts-dev
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73
README.md
73
README.md
@ -2,69 +2,32 @@
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|
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## Overview
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## Overview
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|
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0G Storage is the storage layer for the ZeroGravity data availability (DA) system. The 0G Storage layer holds three important features:
|
0G Storage is a decentralized data storage system designed to address the challenges of high-throughput and low-latency data storage and retrieval, in areas such as AI and gaming.
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|
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* Buit-in - It is natively built into the ZeroGravity DA system for data storage and retrieval.
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In addition, it forms the storage layer for the 0G data availability (DA) system, with the cross-layer integration abstracted away from Rollup and AppChain builders.
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* General purpose - It is designed to support atomic transactions, mutable kv stores as well as archive log systems to enable wide range of applications with various data types.
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* Incentive - Instead of being just a decentralized database, 0G Storage introduces PoRA mining algorithm to incentivize storage network participants.
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To dive deep into the technical details, continue reading [0G Storage Spec.](docs/)
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## System Architecture
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## Integration
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0G Storage consists of two main components:
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We provide a [SDK](https://github.com/0glabs/0g-js-storage-sdk) for users to easily integrate 0G Storage in their applications with the following features:
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1. **Data Publishing Lane**: Ensures quick data availability and verification through the 0G Consensus network.
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2. **Data Storage Lane**: Manages large data transfers and storage using an erasure-coding mechanism for redundancy and reliability.
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* File Merkle Tree Class
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Across the two lanes, 0G Storage supports the following features:
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* Flow Contract Types
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* RPC methods support
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* File upload
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* Support browser environment
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* Tests for different environments (In Progress)
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* File download (In Progress)
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## Deployment
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* **General Purpose Design**: Supports atomic transactions, mutable key-value stores, and archive log systems, enabling a wide range of applications with various data types.
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* **Incentivized Participation**: Utilizes the PoRA (Proof of Random Access) mining algorithm to incentivize storage network participants.
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Please refer to [Deployment](docs/run.md) page for detailed steps to compile and start a 0G Storage node.
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For in-depth technical details about 0G Storage, please read our [Intro to 0G Storage](https://docs.0g.ai/og-storage).
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## Test
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## Documentation
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### Prerequisites
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- If you want to run a node, please refer to the [Running a Node](https://docs.0g.ai/run-a-node/storage-node) guide.
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- If you want build a project using 0G storage, please refer to the [0G Storage SDK](https://docs.0g.ai/build-with-0g/storage-sdk) guide.
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* Required python version: 3.8, 3.9, 3.10, higher version is not guaranteed (e.g. failed to install `pysha3`).
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## Support and Additional Resources
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* Install dependencies under root folder: `pip3 install -r requirements.txt`
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We want to do everything we can to help you be successful while working on your contribution and projects. Here you'll find various resources and communities that may help you complete a project or contribute to 0G.
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|
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### Dependencies
|
### Communities
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- [0G Telegram](https://t.me/web3_0glabs)
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Python test framework will launch blockchain fullnodes at local for storage node to interact with. There are 2 kinds of fullnodes supported:
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- [0G Discord](https://discord.com/invite/0glabs)
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* Conflux eSpace node (by default).
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* BSC node (geth).
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For Conflux eSpace node, the test framework will automatically compile the binary at runtime, and copy the binary to `tests/tmp` folder. For BSC node, the test framework will automatically download the latest version binary from [github](https://github.com/bnb-chain/bsc/releases) to `tests/tmp` folder.
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|
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Alternatively, you could also manually copy specific version binaries (conflux or geth) to the `tests/tmp` folder. Note, do **NOT** copy released conflux binary on github, since block height of some CIPs are hardcoded.
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For testing, it's also dependent on the following repos:
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* [0G Storage Contract](https://github.com/0glabs/0g-storage-contracts): It essentially provides two abi interfaces for 0G Storage Node to interact with the on-chain contracts.
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* ZgsFlow: It contains apis to submit chunk data.
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* PoraMine: It contains apis to submit PoRA answers.
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* [0G Storage Client](https://github.com/0glabs/0g-storage-client): It is used to interact with certain 0G Storage Nodes to upload/download files.
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### Run Tests
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Go to the `tests` folder and run the following command to run all tests:
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```
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python test_all.py
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```
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or, run any single test, e.g.
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```
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python sync_test.py
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```
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## Contributing
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To make contributions to the project, please follow the guidelines [here](contributing.md).
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@ -592,7 +592,7 @@ where
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// peer that originally published the message.
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// peer that originally published the message.
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match PubsubMessage::decode(&gs_msg.topic, &gs_msg.data) {
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match PubsubMessage::decode(&gs_msg.topic, &gs_msg.data) {
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Err(e) => {
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Err(e) => {
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debug!(topic = ?gs_msg.topic, error = ?e, "Could not decode gossipsub message");
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debug!(topic = ?gs_msg.topic, %propagation_source, error = ?e, "Could not decode gossipsub message");
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//reject the message
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//reject the message
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if let Err(e) = self.gossipsub.report_message_validation_result(
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if let Err(e) = self.gossipsub.report_message_validation_result(
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&id,
|
&id,
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@ -601,6 +601,24 @@ where
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) {
|
) {
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warn!(message_id = %id, peer_id = %propagation_source, error = ?e, "Failed to report message validation");
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warn!(message_id = %id, peer_id = %propagation_source, error = ?e, "Failed to report message validation");
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}
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}
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self.peer_manager.report_peer(
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&propagation_source,
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PeerAction::Fatal,
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ReportSource::Gossipsub,
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None,
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|
"gossipsub message decode error",
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|
);
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|
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if let Some(source) = &gs_msg.source {
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self.peer_manager.report_peer(
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source,
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PeerAction::Fatal,
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ReportSource::Gossipsub,
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|
None,
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"gossipsub message decode error",
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|
);
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}
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}
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}
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Ok(msg) => {
|
Ok(msg) => {
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// Notify the network
|
// Notify the network
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1
tests/config/zgs/network/enr.dat
Normal file
1
tests/config/zgs/network/enr.dat
Normal file
@ -0,0 +1 @@
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|
enr:-Ly4QJZwz9htAorBIx_otqoaRFPohX7NQJ31iBB6mcEhBiuPWsOnigc1ABQsg6tLU1OirQdLR6aEvv8SlkkfIbV72T8CgmlkgnY0gmlwhH8AAAGQbmV0d29ya19pZGVudGl0eZ8oIwAAAAAAADPyz8cpvYcPpUtQMmYOBrTPKn-UAAIAiXNlY3AyNTZrMaEDeDdgnDgLPkxNxB39jKb9f1Na30t6R9vVolpTk5zu-hODdGNwgir4g3VkcIIq-A
|
1
tests/config/zgs/network/key
Normal file
1
tests/config/zgs/network/key
Normal file
@ -0,0 +1 @@
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|
Y<13><><02><><EFBFBD>Ң<>-
<0A><>r<>7<EFBFBD><37>jq<6A>p<>}<7D>
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@ -40,14 +40,18 @@ class PrunerTest(TestFramework):
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for i in range(len(segments)):
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for i in range(len(segments)):
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client_index = i % 2
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client_index = i % 2
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self.nodes[client_index].zgs_upload_segment(segments[i])
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self.nodes[client_index].zgs_upload_segment(segments[i])
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wait_until(lambda: self.nodes[0].zgs_get_file_info(data_root) is not None)
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wait_until(lambda: self.nodes[0].zgs_get_file_info(data_root)["finalized"])
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wait_until(lambda: self.nodes[0].zgs_get_file_info(data_root)["finalized"])
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wait_until(lambda: self.nodes[1].zgs_get_file_info(data_root) is not None)
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wait_until(lambda: self.nodes[1].zgs_get_file_info(data_root)["finalized"])
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wait_until(lambda: self.nodes[1].zgs_get_file_info(data_root)["finalized"])
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self.nodes[2].admin_start_sync_file(0)
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self.nodes[2].admin_start_sync_file(0)
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self.nodes[3].admin_start_sync_file(0)
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self.nodes[3].admin_start_sync_file(0)
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wait_until(lambda: self.nodes[2].sync_status_is_completed_or_unknown(0))
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wait_until(lambda: self.nodes[2].sync_status_is_completed_or_unknown(0))
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wait_until(lambda: self.nodes[2].zgs_get_file_info(data_root) is not None)
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wait_until(lambda: self.nodes[2].zgs_get_file_info(data_root)["finalized"])
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wait_until(lambda: self.nodes[2].zgs_get_file_info(data_root)["finalized"])
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wait_until(lambda: self.nodes[3].sync_status_is_completed_or_unknown(0))
|
wait_until(lambda: self.nodes[3].sync_status_is_completed_or_unknown(0))
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wait_until(lambda: self.nodes[3].zgs_get_file_info(data_root) is not None)
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wait_until(lambda: self.nodes[3].zgs_get_file_info(data_root)["finalized"])
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wait_until(lambda: self.nodes[3].zgs_get_file_info(data_root)["finalized"])
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for i in range(len(segments)):
|
for i in range(len(segments)):
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@ -128,10 +128,14 @@ class TestNode:
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poll_per_s = 4
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poll_per_s = 4
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for _ in range(poll_per_s * self.rpc_timeout):
|
for _ in range(poll_per_s * self.rpc_timeout):
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if self.process.poll() is not None:
|
if self.process.poll() is not None:
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|
self.stderr.seek(0)
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|
self.stdout.seek(0)
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raise FailedToStartError(
|
raise FailedToStartError(
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self._node_msg(
|
self._node_msg(
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"exited with status {} during initialization".format(
|
"exited with status {} during initialization \n\nstderr: {}\n\nstdout: {}\n\n".format(
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self.process.returncode
|
self.process.returncode,
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|
self.stderr.read(),
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|
self.stdout.read(),
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)
|
)
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)
|
)
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)
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)
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@ -3,14 +3,9 @@ import subprocess
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import tempfile
|
import tempfile
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|
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from test_framework.blockchain_node import BlockChainNodeType, BlockchainNode
|
from test_framework.blockchain_node import BlockChainNodeType, BlockchainNode
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from utility.utils import blockchain_rpc_port, arrange_port
|
from utility.utils import blockchain_p2p_port, blockchain_rpc_port, blockchain_ws_port, blockchain_rpc_port_tendermint, pprof_port
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from utility.build_binary import build_zg
|
from utility.build_binary import build_zg
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|
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ZGNODE_PORT_CATEGORY_WS = 0
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ZGNODE_PORT_CATEGORY_P2P = 1
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ZGNODE_PORT_CATEGORY_RPC = 2
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ZGNODE_PORT_CATEGORY_PPROF = 3
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|
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def zg_node_init_genesis(binary: str, root_dir: str, num_nodes: int):
|
def zg_node_init_genesis(binary: str, root_dir: str, num_nodes: int):
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assert num_nodes > 0, "Invalid number of blockchain nodes: %s" % num_nodes
|
assert num_nodes > 0, "Invalid number of blockchain nodes: %s" % num_nodes
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|
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@ -26,7 +21,7 @@ def zg_node_init_genesis(binary: str, root_dir: str, num_nodes: int):
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os.mkdir(zgchaind_dir)
|
os.mkdir(zgchaind_dir)
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|
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log_file = tempfile.NamedTemporaryFile(dir=zgchaind_dir, delete=False, prefix="init_genesis_", suffix=".log")
|
log_file = tempfile.NamedTemporaryFile(dir=zgchaind_dir, delete=False, prefix="init_genesis_", suffix=".log")
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p2p_port_start = arrange_port(ZGNODE_PORT_CATEGORY_P2P, 0)
|
p2p_port_start = blockchain_p2p_port(0)
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|
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ret = subprocess.run(
|
ret = subprocess.run(
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args=["bash", shell_script, zgchaind_dir, str(num_nodes), str(p2p_port_start)],
|
args=["bash", shell_script, zgchaind_dir, str(num_nodes), str(p2p_port_start)],
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@ -71,13 +66,13 @@ class ZGNode(BlockchainNode):
|
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# overwrite json rpc http port: 8545
|
# overwrite json rpc http port: 8545
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"--json-rpc.address", "127.0.0.1:%s" % blockchain_rpc_port(index),
|
"--json-rpc.address", "127.0.0.1:%s" % blockchain_rpc_port(index),
|
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# overwrite json rpc ws port: 8546
|
# overwrite json rpc ws port: 8546
|
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"--json-rpc.ws-address", "127.0.0.1:%s" % arrange_port(ZGNODE_PORT_CATEGORY_WS, index),
|
"--json-rpc.ws-address", "127.0.0.1:%s" % blockchain_ws_port(index),
|
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# overwrite p2p port: 26656
|
# overwrite p2p port: 26656
|
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"--p2p.laddr", "tcp://127.0.0.1:%s" % arrange_port(ZGNODE_PORT_CATEGORY_P2P, index),
|
"--p2p.laddr", "tcp://127.0.0.1:%s" % blockchain_p2p_port(index),
|
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# overwrite rpc port: 26657
|
# overwrite rpc port: 26657
|
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"--rpc.laddr", "tcp://127.0.0.1:%s" % arrange_port(ZGNODE_PORT_CATEGORY_RPC, index),
|
"--rpc.laddr", "tcp://127.0.0.1:%s" % blockchain_rpc_port_tendermint(index),
|
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# overwrite pprof port: 6060
|
# overwrite pprof port: 6060
|
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"--rpc.pprof_laddr", "127.0.0.1:%s" % arrange_port(ZGNODE_PORT_CATEGORY_PPROF, index),
|
"--rpc.pprof_laddr", "127.0.0.1:%s" % pprof_port(index),
|
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"--log_level", "debug"
|
"--log_level", "debug"
|
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]
|
]
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|
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|
@ -11,6 +11,7 @@ class PortMin:
|
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|
|
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|
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MAX_NODES = 100
|
MAX_NODES = 100
|
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|
MAX_BLOCKCHAIN_NODES = 50
|
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|
|
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|
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def p2p_port(n):
|
def p2p_port(n):
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@ -23,18 +24,25 @@ def rpc_port(n):
|
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|
|
||||||
|
|
||||||
def blockchain_p2p_port(n):
|
def blockchain_p2p_port(n):
|
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return PortMin.n + 2 * MAX_NODES + n
|
assert n <= MAX_BLOCKCHAIN_NODES
|
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|
return PortMin.n + MAX_NODES + MAX_BLOCKCHAIN_NODES + n
|
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|
|
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|
|
||||||
def blockchain_rpc_port(n):
|
def blockchain_rpc_port(n):
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return PortMin.n + 3 * MAX_NODES + n
|
return PortMin.n + MAX_NODES + 2 * MAX_BLOCKCHAIN_NODES + n
|
||||||
|
|
||||||
|
|
||||||
def blockchain_rpc_port_core(n):
|
def blockchain_rpc_port_core(n):
|
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return PortMin.n + 4 * MAX_NODES + n
|
return PortMin.n + MAX_NODES + 3 * MAX_BLOCKCHAIN_NODES + n
|
||||||
|
|
||||||
def arrange_port(category: int, node_index: int) -> int:
|
def blockchain_ws_port(n):
|
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return PortMin.n + (100 + category) * MAX_NODES + node_index
|
return PortMin.n + MAX_NODES + 4 * MAX_BLOCKCHAIN_NODES + n
|
||||||
|
|
||||||
|
def blockchain_rpc_port_tendermint(n):
|
||||||
|
return PortMin.n + MAX_NODES + 5 * MAX_BLOCKCHAIN_NODES + n
|
||||||
|
|
||||||
|
def pprof_port(n):
|
||||||
|
return PortMin.n + MAX_NODES + 6 * MAX_BLOCKCHAIN_NODES + n
|
||||||
|
|
||||||
def wait_until(predicate, *, attempts=float("inf"), timeout=float("inf"), lock=None):
|
def wait_until(predicate, *, attempts=float("inf"), timeout=float("inf"), lock=None):
|
||||||
if attempts == float("inf") and timeout == float("inf"):
|
if attempts == float("inf") and timeout == float("inf"):
|
||||||
|
Loading…
Reference in New Issue
Block a user