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2802414473
* Companion for substrate * Minor update * Formatting * Fixes for cumulus * Fixes tests in polkadot-runtime-parachains * Minor update * Removes unused import * Fixes tests in polkadot-runtime-common * Minor fix * Update roadmap/implementers-guide/src/runtime/configuration.md Co-authored-by: ordian <write@reusable.software> * ".git/.scripts/commands/fmt/fmt.sh" * update lockfile for {"substrate"} --------- Co-authored-by: ordian <write@reusable.software> Co-authored-by: command-bot <>
1331 lines
46 KiB
Rust
1331 lines
46 KiB
Rust
// Copyright (C) Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Polkadot is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Polkadot. If not, see <http://www.gnu.org/licenses/>.
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//! Configuration manager for the Polkadot runtime parachains logic.
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//!
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//! Configuration can change only at session boundaries and is buffered until then.
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use crate::{inclusion::MAX_UPWARD_MESSAGE_SIZE_BOUND, shared};
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use frame_support::{pallet_prelude::*, DefaultNoBound};
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use frame_system::pallet_prelude::*;
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use parity_scale_codec::{Decode, Encode};
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use polkadot_parachain::primitives::{MAX_HORIZONTAL_MESSAGE_NUM, MAX_UPWARD_MESSAGE_NUM};
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use primitives::{
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vstaging::AsyncBackingParams, Balance, ExecutorParams, SessionIndex, MAX_CODE_SIZE,
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MAX_HEAD_DATA_SIZE, MAX_POV_SIZE,
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};
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use sp_runtime::traits::Zero;
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use sp_std::prelude::*;
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#[cfg(test)]
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mod tests;
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#[cfg(feature = "runtime-benchmarks")]
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mod benchmarking;
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pub mod migration;
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pub mod migration_ump;
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pub use pallet::*;
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const LOG_TARGET: &str = "runtime::configuration";
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/// All configuration of the runtime with respect to parachains and parathreads.
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#[derive(
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Clone,
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Encode,
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Decode,
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PartialEq,
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sp_core::RuntimeDebug,
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scale_info::TypeInfo,
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serde::Serialize,
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serde::Deserialize,
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)]
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pub struct HostConfiguration<BlockNumber> {
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// NOTE: This structure is used by parachains via merkle proofs. Therefore, this struct requires
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// special treatment.
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//
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// A parachain requested this struct can only depend on the subset of this struct. Specifically,
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// only a first few fields can be depended upon. These fields cannot be changed without
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// corresponding migration of the parachains.
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/**
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* The parameters that are required for the parachains.
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*/
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/// The maximum validation code size, in bytes.
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pub max_code_size: u32,
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/// The maximum head-data size, in bytes.
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pub max_head_data_size: u32,
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/// Total number of individual messages allowed in the parachain -> relay-chain message queue.
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pub max_upward_queue_count: u32,
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/// Total size of messages allowed in the parachain -> relay-chain message queue before which
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/// no further messages may be added to it. If it exceeds this then the queue may contain only
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/// a single message.
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pub max_upward_queue_size: u32,
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/// The maximum size of an upward message that can be sent by a candidate.
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///
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/// This parameter affects the size upper bound of the `CandidateCommitments`.
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pub max_upward_message_size: u32,
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/// The maximum number of messages that a candidate can contain.
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///
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/// This parameter affects the size upper bound of the `CandidateCommitments`.
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pub max_upward_message_num_per_candidate: u32,
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/// The maximum number of outbound HRMP messages can be sent by a candidate.
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///
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/// This parameter affects the upper bound of size of `CandidateCommitments`.
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pub hrmp_max_message_num_per_candidate: u32,
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/// The minimum period, in blocks, between which parachains can update their validation code.
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///
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/// This number is used to prevent parachains from spamming the relay chain with validation code
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/// upgrades. The only thing it controls is the number of blocks the `UpgradeRestrictionSignal`
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/// is set for the parachain in question.
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///
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/// If PVF pre-checking is enabled this should be greater than the maximum number of blocks
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/// PVF pre-checking can take. Intuitively, this number should be greater than the duration
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/// specified by [`pvf_voting_ttl`]. Unlike, [`pvf_voting_ttl`], this parameter uses blocks
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/// as a unit.
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#[cfg_attr(feature = "std", serde(alias = "validation_upgrade_frequency"))]
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pub validation_upgrade_cooldown: BlockNumber,
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/// The delay, in blocks, after which an upgrade of the validation code is applied.
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///
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/// The upgrade for a parachain takes place when the first candidate which has relay-parent >=
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/// the relay-chain block where the upgrade is scheduled. This block is referred as to
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/// `expected_at`.
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///
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/// `expected_at` is determined when the upgrade is scheduled. This happens when the candidate
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/// that signals the upgrade is enacted. Right now, the relay-parent block number of the
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/// candidate scheduling the upgrade is used to determine the `expected_at`. This may change in
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/// the future with [#4601].
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///
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/// When PVF pre-checking is enabled, the upgrade is scheduled only after the PVF pre-check has
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/// been completed.
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///
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/// Note, there are situations in which `expected_at` in the past. For example, if
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/// [`chain_availability_period`] or [`thread_availability_period`] is less than the delay set by
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/// this field or if PVF pre-check took more time than the delay. In such cases, the upgrade is
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/// further at the earliest possible time determined by [`minimum_validation_upgrade_delay`].
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///
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/// The rationale for this delay has to do with relay-chain reversions. In case there is an
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/// invalid candidate produced with the new version of the code, then the relay-chain can revert
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/// [`validation_upgrade_delay`] many blocks back and still find the new code in the storage by
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/// hash.
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///
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/// [#4601]: https://github.com/paritytech/polkadot/issues/4601
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pub validation_upgrade_delay: BlockNumber,
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/**
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* The parameters that are not essential, but still may be of interest for parachains.
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*/
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/// Asynchronous backing parameters.
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pub async_backing_params: AsyncBackingParams,
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/// The maximum POV block size, in bytes.
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pub max_pov_size: u32,
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/// The maximum size of a message that can be put in a downward message queue.
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///
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/// Since we require receiving at least one DMP message the obvious upper bound of the size is
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/// the PoV size. Of course, there is a lot of other different things that a parachain may
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/// decide to do with its PoV so this value in practice will be picked as a fraction of the PoV
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/// size.
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pub max_downward_message_size: u32,
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/// The maximum number of outbound HRMP channels a parachain is allowed to open.
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pub hrmp_max_parachain_outbound_channels: u32,
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/// The maximum number of outbound HRMP channels a parathread is allowed to open.
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pub hrmp_max_parathread_outbound_channels: u32,
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/// The deposit that the sender should provide for opening an HRMP channel.
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pub hrmp_sender_deposit: Balance,
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/// The deposit that the recipient should provide for accepting opening an HRMP channel.
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pub hrmp_recipient_deposit: Balance,
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/// The maximum number of messages allowed in an HRMP channel at once.
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pub hrmp_channel_max_capacity: u32,
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/// The maximum total size of messages in bytes allowed in an HRMP channel at once.
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pub hrmp_channel_max_total_size: u32,
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/// The maximum number of inbound HRMP channels a parachain is allowed to accept.
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pub hrmp_max_parachain_inbound_channels: u32,
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/// The maximum number of inbound HRMP channels a parathread is allowed to accept.
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pub hrmp_max_parathread_inbound_channels: u32,
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/// The maximum size of a message that could ever be put into an HRMP channel.
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///
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/// This parameter affects the upper bound of size of `CandidateCommitments`.
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pub hrmp_channel_max_message_size: u32,
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/// The executor environment parameters
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pub executor_params: ExecutorParams,
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/**
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* Parameters that will unlikely be needed by parachains.
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*/
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/// How long to keep code on-chain, in blocks. This should be sufficiently long that disputes
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/// have concluded.
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pub code_retention_period: BlockNumber,
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/// The amount of execution cores to dedicate to parathread execution.
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pub parathread_cores: u32,
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/// The number of retries that a parathread author has to submit their block.
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pub parathread_retries: u32,
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/// How often parachain groups should be rotated across parachains.
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///
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/// Must be non-zero.
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pub group_rotation_frequency: BlockNumber,
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/// The availability period, in blocks, for parachains. This is the amount of blocks
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/// after inclusion that validators have to make the block available and signal its availability to
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/// the chain.
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///
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/// Must be at least 1.
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pub chain_availability_period: BlockNumber,
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/// The availability period, in blocks, for parathreads. Same as the `chain_availability_period`,
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/// but a differing timeout due to differing requirements.
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///
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/// Must be at least 1.
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pub thread_availability_period: BlockNumber,
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/// The amount of blocks ahead to schedule parachains and parathreads.
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pub scheduling_lookahead: u32,
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/// The maximum number of validators to have per core.
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///
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/// `None` means no maximum.
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pub max_validators_per_core: Option<u32>,
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/// The maximum number of validators to use for parachain consensus, period.
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///
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/// `None` means no maximum.
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pub max_validators: Option<u32>,
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/// The amount of sessions to keep for disputes.
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pub dispute_period: SessionIndex,
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/// How long after dispute conclusion to accept statements.
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pub dispute_post_conclusion_acceptance_period: BlockNumber,
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/// The amount of consensus slots that must pass between submitting an assignment and
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/// submitting an approval vote before a validator is considered a no-show.
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///
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/// Must be at least 1.
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pub no_show_slots: u32,
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/// The number of delay tranches in total.
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pub n_delay_tranches: u32,
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/// The width of the zeroth delay tranche for approval assignments. This many delay tranches
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/// beyond 0 are all consolidated to form a wide 0 tranche.
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pub zeroth_delay_tranche_width: u32,
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/// The number of validators needed to approve a block.
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pub needed_approvals: u32,
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/// The number of samples to do of the `RelayVRFModulo` approval assignment criterion.
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pub relay_vrf_modulo_samples: u32,
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/// If an active PVF pre-checking vote observes this many number of sessions it gets automatically
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/// rejected.
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///
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/// 0 means PVF pre-checking will be rejected on the first observed session unless the voting
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/// gained supermajority before that the session change.
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pub pvf_voting_ttl: SessionIndex,
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/// The lower bound number of blocks an upgrade can be scheduled.
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///
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/// Typically, upgrade gets scheduled [`validation_upgrade_delay`] relay-chain blocks after
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/// the relay-parent of the parablock that signalled the validation code upgrade. However,
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/// in the case a pre-checking voting was concluded in a longer duration the upgrade will be
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/// scheduled to the next block.
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///
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/// That can disrupt parachain inclusion. Specifically, it will make the blocks that were
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/// already backed invalid.
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///
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/// To prevent that, we introduce the minimum number of blocks after which the upgrade can be
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/// scheduled. This number is controlled by this field.
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///
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/// This value should be greater than [`chain_availability_period`] and
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/// [`thread_availability_period`].
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pub minimum_validation_upgrade_delay: BlockNumber,
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}
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impl<BlockNumber: Default + From<u32>> Default for HostConfiguration<BlockNumber> {
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fn default() -> Self {
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Self {
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async_backing_params: AsyncBackingParams {
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max_candidate_depth: 0,
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allowed_ancestry_len: 0,
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},
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group_rotation_frequency: 1u32.into(),
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chain_availability_period: 1u32.into(),
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thread_availability_period: 1u32.into(),
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no_show_slots: 1u32.into(),
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validation_upgrade_cooldown: Default::default(),
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validation_upgrade_delay: 2u32.into(),
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code_retention_period: Default::default(),
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max_code_size: Default::default(),
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max_pov_size: Default::default(),
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max_head_data_size: Default::default(),
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parathread_cores: Default::default(),
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parathread_retries: Default::default(),
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scheduling_lookahead: Default::default(),
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max_validators_per_core: Default::default(),
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max_validators: None,
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dispute_period: 6,
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dispute_post_conclusion_acceptance_period: 100.into(),
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n_delay_tranches: Default::default(),
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zeroth_delay_tranche_width: Default::default(),
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needed_approvals: Default::default(),
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relay_vrf_modulo_samples: Default::default(),
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max_upward_queue_count: Default::default(),
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max_upward_queue_size: Default::default(),
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max_downward_message_size: Default::default(),
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max_upward_message_size: Default::default(),
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max_upward_message_num_per_candidate: Default::default(),
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hrmp_sender_deposit: Default::default(),
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hrmp_recipient_deposit: Default::default(),
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hrmp_channel_max_capacity: Default::default(),
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hrmp_channel_max_total_size: Default::default(),
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hrmp_max_parachain_inbound_channels: Default::default(),
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hrmp_max_parathread_inbound_channels: Default::default(),
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hrmp_channel_max_message_size: Default::default(),
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hrmp_max_parachain_outbound_channels: Default::default(),
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hrmp_max_parathread_outbound_channels: Default::default(),
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hrmp_max_message_num_per_candidate: Default::default(),
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pvf_voting_ttl: 2u32.into(),
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minimum_validation_upgrade_delay: 2.into(),
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executor_params: Default::default(),
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}
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}
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}
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/// Enumerates the possible inconsistencies of `HostConfiguration`.
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#[derive(Debug)]
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pub enum InconsistentError<BlockNumber> {
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/// `group_rotation_frequency` is set to zero.
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ZeroGroupRotationFrequency,
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/// `chain_availability_period` is set to zero.
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ZeroChainAvailabilityPeriod,
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/// `thread_availability_period` is set to zero.
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ZeroThreadAvailabilityPeriod,
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/// `no_show_slots` is set to zero.
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ZeroNoShowSlots,
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/// `max_code_size` exceeds the hard limit of `MAX_CODE_SIZE`.
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MaxCodeSizeExceedHardLimit { max_code_size: u32 },
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/// `max_head_data_size` exceeds the hard limit of `MAX_HEAD_DATA_SIZE`.
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MaxHeadDataSizeExceedHardLimit { max_head_data_size: u32 },
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/// `max_pov_size` exceeds the hard limit of `MAX_POV_SIZE`.
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MaxPovSizeExceedHardLimit { max_pov_size: u32 },
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/// `minimum_validation_upgrade_delay` is less than `chain_availability_period`.
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MinimumValidationUpgradeDelayLessThanChainAvailabilityPeriod {
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minimum_validation_upgrade_delay: BlockNumber,
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chain_availability_period: BlockNumber,
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},
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/// `minimum_validation_upgrade_delay` is less than `thread_availability_period`.
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MinimumValidationUpgradeDelayLessThanThreadAvailabilityPeriod {
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minimum_validation_upgrade_delay: BlockNumber,
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thread_availability_period: BlockNumber,
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},
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/// `validation_upgrade_delay` is less than or equal 1.
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ValidationUpgradeDelayIsTooLow { validation_upgrade_delay: BlockNumber },
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/// Maximum UMP message size ([`MAX_UPWARD_MESSAGE_SIZE_BOUND`]) exceeded.
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MaxUpwardMessageSizeExceeded { max_message_size: u32 },
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/// Maximum HRMP message num ([`MAX_HORIZONTAL_MESSAGE_NUM`]) exceeded.
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MaxHorizontalMessageNumExceeded { max_message_num: u32 },
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/// Maximum UMP message num ([`MAX_UPWARD_MESSAGE_NUM`]) exceeded.
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MaxUpwardMessageNumExceeded { max_message_num: u32 },
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/// Maximum number of HRMP outbound channels exceeded.
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MaxHrmpOutboundChannelsExceeded,
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/// Maximum number of HRMP inbound channels exceeded.
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MaxHrmpInboundChannelsExceeded,
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}
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impl<BlockNumber> HostConfiguration<BlockNumber>
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where
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BlockNumber: Zero + PartialOrd + sp_std::fmt::Debug + Clone + From<u32>,
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{
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/// Checks that this instance is consistent with the requirements on each individual member.
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///
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/// # Errors
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///
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/// This function returns an error if the configuration is inconsistent.
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pub fn check_consistency(&self) -> Result<(), InconsistentError<BlockNumber>> {
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use InconsistentError::*;
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if self.group_rotation_frequency.is_zero() {
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return Err(ZeroGroupRotationFrequency)
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}
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if self.chain_availability_period.is_zero() {
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return Err(ZeroChainAvailabilityPeriod)
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}
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if self.thread_availability_period.is_zero() {
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return Err(ZeroThreadAvailabilityPeriod)
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}
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if self.no_show_slots.is_zero() {
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return Err(ZeroNoShowSlots)
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}
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if self.max_code_size > MAX_CODE_SIZE {
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return Err(MaxCodeSizeExceedHardLimit { max_code_size: self.max_code_size })
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}
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if self.max_head_data_size > MAX_HEAD_DATA_SIZE {
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return Err(MaxHeadDataSizeExceedHardLimit {
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max_head_data_size: self.max_head_data_size,
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})
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}
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if self.max_pov_size > MAX_POV_SIZE {
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return Err(MaxPovSizeExceedHardLimit { max_pov_size: self.max_pov_size })
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}
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if self.minimum_validation_upgrade_delay <= self.chain_availability_period {
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return Err(MinimumValidationUpgradeDelayLessThanChainAvailabilityPeriod {
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minimum_validation_upgrade_delay: self.minimum_validation_upgrade_delay.clone(),
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chain_availability_period: self.chain_availability_period.clone(),
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})
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} else if self.minimum_validation_upgrade_delay <= self.thread_availability_period {
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return Err(MinimumValidationUpgradeDelayLessThanThreadAvailabilityPeriod {
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minimum_validation_upgrade_delay: self.minimum_validation_upgrade_delay.clone(),
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thread_availability_period: self.thread_availability_period.clone(),
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})
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}
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if self.validation_upgrade_delay <= 1.into() {
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return Err(ValidationUpgradeDelayIsTooLow {
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validation_upgrade_delay: self.validation_upgrade_delay.clone(),
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})
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}
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if self.max_upward_message_size > crate::inclusion::MAX_UPWARD_MESSAGE_SIZE_BOUND {
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return Err(MaxUpwardMessageSizeExceeded {
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max_message_size: self.max_upward_message_size,
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})
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}
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if self.hrmp_max_message_num_per_candidate > MAX_HORIZONTAL_MESSAGE_NUM {
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return Err(MaxHorizontalMessageNumExceeded {
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max_message_num: self.hrmp_max_message_num_per_candidate,
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})
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}
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if self.max_upward_message_num_per_candidate > MAX_UPWARD_MESSAGE_NUM {
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return Err(MaxUpwardMessageNumExceeded {
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max_message_num: self.max_upward_message_num_per_candidate,
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})
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}
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if self.hrmp_max_parachain_outbound_channels > crate::hrmp::HRMP_MAX_OUTBOUND_CHANNELS_BOUND
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{
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return Err(MaxHrmpOutboundChannelsExceeded)
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}
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if self.hrmp_max_parachain_inbound_channels > crate::hrmp::HRMP_MAX_INBOUND_CHANNELS_BOUND {
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return Err(MaxHrmpInboundChannelsExceeded)
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}
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Ok(())
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}
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/// Checks that this instance is consistent with the requirements on each individual member.
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///
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/// # Panics
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///
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|
/// This function panics if the configuration is inconsistent.
|
|
pub fn panic_if_not_consistent(&self) {
|
|
if let Err(err) = self.check_consistency() {
|
|
panic!("Host configuration is inconsistent: {:?}\nCfg:\n{:#?}", err, self);
|
|
}
|
|
}
|
|
}
|
|
|
|
pub trait WeightInfo {
|
|
fn set_config_with_block_number() -> Weight;
|
|
fn set_config_with_u32() -> Weight;
|
|
fn set_config_with_option_u32() -> Weight;
|
|
fn set_config_with_balance() -> Weight;
|
|
fn set_hrmp_open_request_ttl() -> Weight;
|
|
fn set_config_with_executor_params() -> Weight;
|
|
}
|
|
|
|
pub struct TestWeightInfo;
|
|
impl WeightInfo for TestWeightInfo {
|
|
fn set_config_with_block_number() -> Weight {
|
|
Weight::MAX
|
|
}
|
|
fn set_config_with_u32() -> Weight {
|
|
Weight::MAX
|
|
}
|
|
fn set_config_with_option_u32() -> Weight {
|
|
Weight::MAX
|
|
}
|
|
fn set_config_with_balance() -> Weight {
|
|
Weight::MAX
|
|
}
|
|
fn set_hrmp_open_request_ttl() -> Weight {
|
|
Weight::MAX
|
|
}
|
|
fn set_config_with_executor_params() -> Weight {
|
|
Weight::MAX
|
|
}
|
|
}
|
|
|
|
#[frame_support::pallet]
|
|
pub mod pallet {
|
|
use super::*;
|
|
|
|
/// The current storage version.
|
|
///
|
|
/// v0-v1: <https://github.com/paritytech/polkadot/pull/3575>
|
|
/// v1-v2: <https://github.com/paritytech/polkadot/pull/4420>
|
|
/// v2-v3: <https://github.com/paritytech/polkadot/pull/6091>
|
|
/// v3-v4: <https://github.com/paritytech/polkadot/pull/6345>
|
|
/// v4-v5: <https://github.com/paritytech/polkadot/pull/6937>
|
|
/// + <https://github.com/paritytech/polkadot/pull/6961>
|
|
/// + <https://github.com/paritytech/polkadot/pull/6934>
|
|
/// v5-v6: <https://github.com/paritytech/polkadot/pull/6271> (remove UMP dispatch queue)
|
|
const STORAGE_VERSION: StorageVersion = StorageVersion::new(6);
|
|
|
|
#[pallet::pallet]
|
|
#[pallet::storage_version(STORAGE_VERSION)]
|
|
#[pallet::without_storage_info]
|
|
pub struct Pallet<T>(_);
|
|
|
|
#[pallet::config]
|
|
pub trait Config: frame_system::Config + shared::Config {
|
|
/// Weight information for extrinsics in this pallet.
|
|
type WeightInfo: WeightInfo;
|
|
}
|
|
|
|
#[pallet::error]
|
|
pub enum Error<T> {
|
|
/// The new value for a configuration parameter is invalid.
|
|
InvalidNewValue,
|
|
}
|
|
|
|
/// The active configuration for the current session.
|
|
#[pallet::storage]
|
|
#[pallet::getter(fn config)]
|
|
pub(crate) type ActiveConfig<T: Config> =
|
|
StorageValue<_, HostConfiguration<BlockNumberFor<T>>, ValueQuery>;
|
|
|
|
/// Pending configuration changes.
|
|
///
|
|
/// This is a list of configuration changes, each with a session index at which it should
|
|
/// be applied.
|
|
///
|
|
/// The list is sorted ascending by session index. Also, this list can only contain at most
|
|
/// 2 items: for the next session and for the `scheduled_session`.
|
|
#[pallet::storage]
|
|
pub(crate) type PendingConfigs<T: Config> =
|
|
StorageValue<_, Vec<(SessionIndex, HostConfiguration<BlockNumberFor<T>>)>, ValueQuery>;
|
|
|
|
/// If this is set, then the configuration setters will bypass the consistency checks. This
|
|
/// is meant to be used only as the last resort.
|
|
#[pallet::storage]
|
|
pub(crate) type BypassConsistencyCheck<T: Config> = StorageValue<_, bool, ValueQuery>;
|
|
|
|
#[pallet::genesis_config]
|
|
#[derive(DefaultNoBound)]
|
|
pub struct GenesisConfig<T: Config> {
|
|
pub config: HostConfiguration<BlockNumberFor<T>>,
|
|
}
|
|
|
|
#[pallet::genesis_build]
|
|
impl<T: Config> BuildGenesisConfig for GenesisConfig<T> {
|
|
fn build(&self) {
|
|
self.config.panic_if_not_consistent();
|
|
ActiveConfig::<T>::put(&self.config);
|
|
}
|
|
}
|
|
|
|
#[pallet::call]
|
|
impl<T: Config> Pallet<T> {
|
|
/// Set the validation upgrade cooldown.
|
|
#[pallet::call_index(0)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_validation_upgrade_cooldown(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.validation_upgrade_cooldown = new;
|
|
})
|
|
}
|
|
|
|
/// Set the validation upgrade delay.
|
|
#[pallet::call_index(1)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_validation_upgrade_delay(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.validation_upgrade_delay = new;
|
|
})
|
|
}
|
|
|
|
/// Set the acceptance period for an included candidate.
|
|
#[pallet::call_index(2)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_code_retention_period(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.code_retention_period = new;
|
|
})
|
|
}
|
|
|
|
/// Set the max validation code size for incoming upgrades.
|
|
#[pallet::call_index(3)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_code_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_code_size = new;
|
|
})
|
|
}
|
|
|
|
/// Set the max POV block size for incoming upgrades.
|
|
#[pallet::call_index(4)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_pov_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_pov_size = new;
|
|
})
|
|
}
|
|
|
|
/// Set the max head data size for paras.
|
|
#[pallet::call_index(5)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_head_data_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_head_data_size = new;
|
|
})
|
|
}
|
|
|
|
/// Set the number of parathread execution cores.
|
|
#[pallet::call_index(6)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_parathread_cores(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.parathread_cores = new;
|
|
})
|
|
}
|
|
|
|
/// Set the number of retries for a particular parathread.
|
|
#[pallet::call_index(7)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_parathread_retries(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.parathread_retries = new;
|
|
})
|
|
}
|
|
|
|
/// Set the parachain validator-group rotation frequency
|
|
#[pallet::call_index(8)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_group_rotation_frequency(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.group_rotation_frequency = new;
|
|
})
|
|
}
|
|
|
|
/// Set the availability period for parachains.
|
|
#[pallet::call_index(9)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_chain_availability_period(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.chain_availability_period = new;
|
|
})
|
|
}
|
|
|
|
/// Set the availability period for parathreads.
|
|
#[pallet::call_index(10)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_thread_availability_period(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.thread_availability_period = new;
|
|
})
|
|
}
|
|
|
|
/// Set the scheduling lookahead, in expected number of blocks at peak throughput.
|
|
#[pallet::call_index(11)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_scheduling_lookahead(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.scheduling_lookahead = new;
|
|
})
|
|
}
|
|
|
|
/// Set the maximum number of validators to assign to any core.
|
|
#[pallet::call_index(12)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_option_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_validators_per_core(
|
|
origin: OriginFor<T>,
|
|
new: Option<u32>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_validators_per_core = new;
|
|
})
|
|
}
|
|
|
|
/// Set the maximum number of validators to use in parachain consensus.
|
|
#[pallet::call_index(13)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_option_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_validators(origin: OriginFor<T>, new: Option<u32>) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_validators = new;
|
|
})
|
|
}
|
|
|
|
/// Set the dispute period, in number of sessions to keep for disputes.
|
|
#[pallet::call_index(14)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_dispute_period(origin: OriginFor<T>, new: SessionIndex) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.dispute_period = new;
|
|
})
|
|
}
|
|
|
|
/// Set the dispute post conclusion acceptance period.
|
|
#[pallet::call_index(15)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_dispute_post_conclusion_acceptance_period(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.dispute_post_conclusion_acceptance_period = new;
|
|
})
|
|
}
|
|
|
|
/// Set the no show slots, in number of number of consensus slots.
|
|
/// Must be at least 1.
|
|
#[pallet::call_index(18)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_no_show_slots(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.no_show_slots = new;
|
|
})
|
|
}
|
|
|
|
/// Set the total number of delay tranches.
|
|
#[pallet::call_index(19)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_n_delay_tranches(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.n_delay_tranches = new;
|
|
})
|
|
}
|
|
|
|
/// Set the zeroth delay tranche width.
|
|
#[pallet::call_index(20)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_zeroth_delay_tranche_width(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.zeroth_delay_tranche_width = new;
|
|
})
|
|
}
|
|
|
|
/// Set the number of validators needed to approve a block.
|
|
#[pallet::call_index(21)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_needed_approvals(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.needed_approvals = new;
|
|
})
|
|
}
|
|
|
|
/// Set the number of samples to do of the `RelayVRFModulo` approval assignment criterion.
|
|
#[pallet::call_index(22)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_relay_vrf_modulo_samples(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.relay_vrf_modulo_samples = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum items that can present in a upward dispatch queue at once.
|
|
#[pallet::call_index(23)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_upward_queue_count(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_upward_queue_count = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum total size of items that can present in a upward dispatch queue at once.
|
|
#[pallet::call_index(24)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_upward_queue_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
ensure!(new <= MAX_UPWARD_MESSAGE_SIZE_BOUND, Error::<T>::InvalidNewValue);
|
|
|
|
Self::schedule_config_update(|config| {
|
|
config.max_upward_queue_size = new;
|
|
})
|
|
}
|
|
|
|
/// Set the critical downward message size.
|
|
#[pallet::call_index(25)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_downward_message_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_downward_message_size = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum size of an upward message that can be sent by a candidate.
|
|
#[pallet::call_index(27)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_upward_message_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_upward_message_size = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of messages that a candidate can contain.
|
|
#[pallet::call_index(28)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_max_upward_message_num_per_candidate(
|
|
origin: OriginFor<T>,
|
|
new: u32,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.max_upward_message_num_per_candidate = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the number of sessions after which an HRMP open channel request expires.
|
|
#[pallet::call_index(29)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_hrmp_open_request_ttl(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
// Deprecated, but is not marked as such, because that would trigger warnings coming from
|
|
// the macro.
|
|
pub fn set_hrmp_open_request_ttl(_origin: OriginFor<T>, _new: u32) -> DispatchResult {
|
|
Err("this doesn't have any effect".into())
|
|
}
|
|
|
|
/// Sets the amount of funds that the sender should provide for opening an HRMP channel.
|
|
#[pallet::call_index(30)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_balance(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_sender_deposit(origin: OriginFor<T>, new: Balance) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_sender_deposit = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the amount of funds that the recipient should provide for accepting opening an HRMP
|
|
/// channel.
|
|
#[pallet::call_index(31)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_balance(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_recipient_deposit(origin: OriginFor<T>, new: Balance) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_recipient_deposit = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of messages allowed in an HRMP channel at once.
|
|
#[pallet::call_index(32)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_channel_max_capacity(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_channel_max_capacity = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum total size of messages in bytes allowed in an HRMP channel at once.
|
|
#[pallet::call_index(33)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_channel_max_total_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_channel_max_total_size = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of inbound HRMP channels a parachain is allowed to accept.
|
|
#[pallet::call_index(34)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_max_parachain_inbound_channels(
|
|
origin: OriginFor<T>,
|
|
new: u32,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_max_parachain_inbound_channels = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of inbound HRMP channels a parathread is allowed to accept.
|
|
#[pallet::call_index(35)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_max_parathread_inbound_channels(
|
|
origin: OriginFor<T>,
|
|
new: u32,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_max_parathread_inbound_channels = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum size of a message that could ever be put into an HRMP channel.
|
|
#[pallet::call_index(36)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_channel_max_message_size(origin: OriginFor<T>, new: u32) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_channel_max_message_size = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of outbound HRMP channels a parachain is allowed to open.
|
|
#[pallet::call_index(37)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_max_parachain_outbound_channels(
|
|
origin: OriginFor<T>,
|
|
new: u32,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_max_parachain_outbound_channels = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of outbound HRMP channels a parathread is allowed to open.
|
|
#[pallet::call_index(38)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_max_parathread_outbound_channels(
|
|
origin: OriginFor<T>,
|
|
new: u32,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_max_parathread_outbound_channels = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the maximum number of outbound HRMP messages can be sent by a candidate.
|
|
#[pallet::call_index(39)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_hrmp_max_message_num_per_candidate(
|
|
origin: OriginFor<T>,
|
|
new: u32,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.hrmp_max_message_num_per_candidate = new;
|
|
})
|
|
}
|
|
|
|
/// Set the number of session changes after which a PVF pre-checking voting is rejected.
|
|
#[pallet::call_index(42)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_u32(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_pvf_voting_ttl(origin: OriginFor<T>, new: SessionIndex) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.pvf_voting_ttl = new;
|
|
})
|
|
}
|
|
|
|
/// Sets the minimum delay between announcing the upgrade block for a parachain until the
|
|
/// upgrade taking place.
|
|
///
|
|
/// See the field documentation for information and constraints for the new value.
|
|
#[pallet::call_index(43)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_block_number(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_minimum_validation_upgrade_delay(
|
|
origin: OriginFor<T>,
|
|
new: BlockNumberFor<T>,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.minimum_validation_upgrade_delay = new;
|
|
})
|
|
}
|
|
|
|
/// Setting this to true will disable consistency checks for the configuration setters.
|
|
/// Use with caution.
|
|
#[pallet::call_index(44)]
|
|
#[pallet::weight((
|
|
T::DbWeight::get().writes(1),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_bypass_consistency_check(origin: OriginFor<T>, new: bool) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
BypassConsistencyCheck::<T>::put(new);
|
|
Ok(())
|
|
}
|
|
|
|
/// Set the asynchronous backing parameters.
|
|
#[pallet::call_index(45)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_option_u32(), // The same size in bytes.
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_async_backing_params(
|
|
origin: OriginFor<T>,
|
|
new: AsyncBackingParams,
|
|
) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.async_backing_params = new;
|
|
})
|
|
}
|
|
|
|
/// Set PVF executor parameters.
|
|
#[pallet::call_index(46)]
|
|
#[pallet::weight((
|
|
T::WeightInfo::set_config_with_executor_params(),
|
|
DispatchClass::Operational,
|
|
))]
|
|
pub fn set_executor_params(origin: OriginFor<T>, new: ExecutorParams) -> DispatchResult {
|
|
ensure_root(origin)?;
|
|
Self::schedule_config_update(|config| {
|
|
config.executor_params = new;
|
|
})
|
|
}
|
|
}
|
|
|
|
#[pallet::hooks]
|
|
impl<T: Config> Hooks<BlockNumberFor<T>> for Pallet<T> {
|
|
fn integrity_test() {
|
|
assert_eq!(
|
|
&ActiveConfig::<T>::hashed_key(),
|
|
primitives::well_known_keys::ACTIVE_CONFIG,
|
|
"`well_known_keys::ACTIVE_CONFIG` doesn't match key of `ActiveConfig`! Make sure that the name of the\
|
|
configuration pallet is `Configuration` in the runtime!",
|
|
);
|
|
}
|
|
}
|
|
}
|
|
|
|
/// A struct that holds the configuration that was active before the session change and optionally
|
|
/// a configuration that became active after the session change.
|
|
pub struct SessionChangeOutcome<BlockNumber> {
|
|
/// Previously active configuration.
|
|
pub prev_config: HostConfiguration<BlockNumber>,
|
|
/// If new configuration was applied during the session change, this is the new configuration.
|
|
pub new_config: Option<HostConfiguration<BlockNumber>>,
|
|
}
|
|
|
|
impl<T: Config> Pallet<T> {
|
|
/// Called by the initializer to initialize the configuration pallet.
|
|
pub(crate) fn initializer_initialize(_now: BlockNumberFor<T>) -> Weight {
|
|
Weight::zero()
|
|
}
|
|
|
|
/// Called by the initializer to finalize the configuration pallet.
|
|
pub(crate) fn initializer_finalize() {}
|
|
|
|
/// Called by the initializer to note that a new session has started.
|
|
///
|
|
/// Returns the configuration that was actual before the session change and the configuration
|
|
/// that became active after the session change. If there were no scheduled changes, both will
|
|
/// be the same.
|
|
pub(crate) fn initializer_on_new_session(
|
|
session_index: &SessionIndex,
|
|
) -> SessionChangeOutcome<BlockNumberFor<T>> {
|
|
let pending_configs = <PendingConfigs<T>>::get();
|
|
let prev_config = ActiveConfig::<T>::get();
|
|
|
|
// No pending configuration changes, so we're done.
|
|
if pending_configs.is_empty() {
|
|
return SessionChangeOutcome { prev_config, new_config: None }
|
|
}
|
|
|
|
let (mut past_and_present, future) = pending_configs
|
|
.into_iter()
|
|
.partition::<Vec<_>, _>(|&(apply_at_session, _)| apply_at_session <= *session_index);
|
|
|
|
if past_and_present.len() > 1 {
|
|
// This should never happen since we schedule configuration changes only into the future
|
|
// sessions and this handler called for each session change.
|
|
log::error!(
|
|
target: LOG_TARGET,
|
|
"Skipping applying configuration changes scheduled sessions in the past",
|
|
);
|
|
}
|
|
|
|
let new_config = past_and_present.pop().map(|(_, config)| config);
|
|
if let Some(ref new_config) = new_config {
|
|
// Apply the new configuration.
|
|
ActiveConfig::<T>::put(new_config);
|
|
}
|
|
|
|
<PendingConfigs<T>>::put(future);
|
|
|
|
SessionChangeOutcome { prev_config, new_config }
|
|
}
|
|
|
|
/// Return the session index that should be used for any future scheduled changes.
|
|
fn scheduled_session() -> SessionIndex {
|
|
shared::Pallet::<T>::scheduled_session()
|
|
}
|
|
|
|
/// Forcibly set the active config. This should be used with extreme care, and typically
|
|
/// only when enabling parachains runtime pallets for the first time on a chain which has
|
|
/// been running without them.
|
|
pub fn force_set_active_config(config: HostConfiguration<BlockNumberFor<T>>) {
|
|
ActiveConfig::<T>::set(config);
|
|
}
|
|
|
|
/// This function should be used to update members of the configuration.
|
|
///
|
|
/// This function is used to update the configuration in a way that is safe. It will check the
|
|
/// resulting configuration and ensure that the update is valid. If the update is invalid, it
|
|
/// will check if the previous configuration was valid. If it was invalid, we proceed with
|
|
/// updating the configuration, giving a chance to recover from such a condition.
|
|
///
|
|
/// The actual configuration change take place after a couple of sessions have passed. In case
|
|
/// this function is called more than once in a session, then the pending configuration change
|
|
/// will be updated and the changes will be applied at once.
|
|
// NOTE: Explicitly tell rustc not to inline this because otherwise heuristics note the incoming
|
|
// closure making it's attractive to inline. However, in this case, we will end up with lots of
|
|
// duplicated code (making this function to show up in the top of heaviest functions) only for
|
|
// the sake of essentially avoiding an indirect call. Doesn't worth it.
|
|
#[inline(never)]
|
|
pub(crate) fn schedule_config_update(
|
|
updater: impl FnOnce(&mut HostConfiguration<BlockNumberFor<T>>),
|
|
) -> DispatchResult {
|
|
let mut pending_configs = <PendingConfigs<T>>::get();
|
|
|
|
// 1. pending_configs = []
|
|
// No pending configuration changes.
|
|
//
|
|
// That means we should use the active config as the base configuration. We will insert
|
|
// the new pending configuration as (cur+2, new_config) into the list.
|
|
//
|
|
// 2. pending_configs = [(cur+2, X)]
|
|
// There is a configuration that is pending for the scheduled session.
|
|
//
|
|
// We will use X as the base configuration. We can update the pending configuration X
|
|
// directly.
|
|
//
|
|
// 3. pending_configs = [(cur+1, X)]
|
|
// There is a pending configuration scheduled and it will be applied in the next session.
|
|
//
|
|
// We will use X as the base configuration. We need to schedule a new configuration change
|
|
// for the `scheduled_session` and use X as the base for the new configuration.
|
|
//
|
|
// 4. pending_configs = [(cur+1, X), (cur+2, Y)]
|
|
// There is a pending configuration change in the next session and for the scheduled
|
|
// session. Due to case №3, we can be sure that Y is based on top of X. This means we
|
|
// can use Y as the base configuration and update Y directly.
|
|
//
|
|
// There cannot be (cur, X) because those are applied in the session change handler for the
|
|
// current session.
|
|
|
|
// First, we need to decide what we should use as the base configuration.
|
|
let mut base_config = pending_configs
|
|
.last()
|
|
.map(|(_, config)| config.clone())
|
|
.unwrap_or_else(Self::config);
|
|
let base_config_consistent = base_config.check_consistency().is_ok();
|
|
|
|
// Now, we need to decide what the new configuration should be.
|
|
// We also move the `base_config` to `new_config` to empahsize that the base config was
|
|
// destroyed by the `updater`.
|
|
updater(&mut base_config);
|
|
let new_config = base_config;
|
|
|
|
if BypassConsistencyCheck::<T>::get() {
|
|
// This will emit a warning each configuration update if the consistency check is
|
|
// bypassed. This is an attempt to make sure the bypass is not accidentally left on.
|
|
log::warn!(
|
|
target: LOG_TARGET,
|
|
"Bypassing the consistency check for the configuration change!",
|
|
);
|
|
} else if let Err(e) = new_config.check_consistency() {
|
|
if base_config_consistent {
|
|
// Base configuration is consistent and the new configuration is inconsistent.
|
|
// This means that the value set by the `updater` is invalid and we can return
|
|
// it as an error.
|
|
log::warn!(
|
|
target: LOG_TARGET,
|
|
"Configuration change rejected due to invalid configuration: {:?}",
|
|
e,
|
|
);
|
|
return Err(Error::<T>::InvalidNewValue.into())
|
|
} else {
|
|
// The configuration was already broken, so we can as well proceed with the update.
|
|
// You cannot break something that is already broken.
|
|
//
|
|
// That will allow to call several functions and ultimately return the configuration
|
|
// into consistent state.
|
|
log::warn!(
|
|
target: LOG_TARGET,
|
|
"The new configuration is broken but the old is broken as well. Proceeding",
|
|
);
|
|
}
|
|
}
|
|
|
|
let scheduled_session = Self::scheduled_session();
|
|
|
|
if let Some(&mut (_, ref mut config)) = pending_configs
|
|
.iter_mut()
|
|
.find(|&&mut (apply_at_session, _)| apply_at_session >= scheduled_session)
|
|
{
|
|
*config = new_config;
|
|
} else {
|
|
// We are scheduling a new configuration change for the scheduled session.
|
|
pending_configs.push((scheduled_session, new_config));
|
|
}
|
|
|
|
<PendingConfigs<T>>::put(pending_configs);
|
|
|
|
Ok(())
|
|
}
|
|
}
|