mirror of
https://github.com/d0zingcat/ore.git
synced 2026-05-14 15:10:13 +00:00
comments and cleanup
This commit is contained in:
@@ -105,6 +105,8 @@ pub fn process_initialize<'a, 'info>(
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let bus = Bus::try_from_bytes_mut(&mut bus_data)?;
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bus.id = i as u64;
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bus.rewards = 0;
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bus.theoretical_rewards = 0;
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bus.top_balance = 0;
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}
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// Initialize config.
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@@ -45,6 +45,9 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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load_sysvar(slot_hashes_sysvar, sysvar::slot_hashes::id())?;
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// Authenticate the proof account.
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//
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// Only one proof account can be used for any given transaction. All `mine` instructions
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// in the transaction must use the same proof account.
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authenticate(&instructions_sysvar.data.borrow(), proof_info.key)?;
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// Validate epoch is active.
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@@ -60,6 +63,9 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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}
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// Validate the hash digest.
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//
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// Here we use drillx to validate the provided solution is a valid hash of the challenge.
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// If invalid, we return an error.
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let mut proof_data = proof_info.data.borrow_mut();
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let proof = Proof::try_from_bytes_mut(&mut proof_data)?;
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let solution = Solution::new(args.digest, args.nonce);
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@@ -68,6 +74,9 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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}
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// Reject spam transactions.
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//
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// If a miner attempts to submit solutions too frequently, we reject with an error. In general,
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// miners are limited to 1 hash per epoch on average.
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let t: i64 = clock.unix_timestamp;
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let t_target = proof.last_hash_at.saturating_add(ONE_MINUTE);
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let t_spam = t_target.saturating_sub(TOLERANCE);
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@@ -76,15 +85,18 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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}
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// Validate the hash satisfies the minimum difficulty.
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//
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// We use drillx to get the difficulty (leading zeros) of the hash. If the hash does not have the
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// minimum required difficulty, we reject it with an error.
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let hash = solution.to_hash();
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let difficulty = hash.difficulty();
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if difficulty.lt(&(config.min_difficulty as u32)) {
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return Err(OreError::HashTooEasy.into());
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}
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// Normalize difficulty and calculate reward rate.
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// Normalize the difficulty and calculate the reward amount.
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//
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// The reward double for every bit of difficulty (leading zero) on the hash. We use the normalized
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// The reward doubles for every bit of difficulty (leading zeros) on the hash. We use the normalized
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// difficulty so the minimum accepted difficulty pays out at the base reward rate.
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let normalized_difficulty = difficulty
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.checked_sub(config.min_difficulty as u32)
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@@ -102,7 +114,7 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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let mut bus_data = bus_info.data.borrow_mut();
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let bus = Bus::try_from_bytes_mut(&mut bus_data)?;
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if proof.balance.gt(&0) && proof.last_stake_at.saturating_add(ONE_MINUTE).lt(&t) {
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// Update staking reward
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// Calculate staking reward.
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if config.top_balance.gt(&0) {
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let staking_reward = (reward as u128)
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.checked_mul(proof.balance.min(config.top_balance) as u128)
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@@ -112,7 +124,7 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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reward = reward.checked_add(staking_reward).unwrap();
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}
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// Update bus stake tracker if stake is active
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// Update bus stake tracker.
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if proof.balance.gt(&bus.top_balance) {
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bus.top_balance = proof.balance;
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}
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@@ -124,7 +136,7 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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// should not be possible to spend ~1 hour on a given challenge and submit a hash with a large
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// difficulty value to earn an outsized reward.
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//
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// This penalty works by halving the reward amount for every minute late the solution has been submitted.
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// The penalty works by halving the reward amount for every minute late the solution has been submitted.
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// This ultimately drives the reward to zero given enough time (10-20 minutes).
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let t_liveness = t_target.saturating_add(TOLERANCE);
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if t.gt(&t_liveness) {
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@@ -135,7 +147,7 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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reward = reward.saturating_div(2u64.saturating_pow(halvings as u32));
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}
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// Linear decay between minutes
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// Linear decay with remainder seconds.
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let remainder_secs = tardiness.saturating_sub(halvings.saturating_mul(ONE_MINUTE as u64));
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if remainder_secs.gt(&0) && reward.gt(&0) {
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let penalty = reward
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@@ -148,17 +160,22 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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// Limit payout amount to whatever is left in the bus.
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//
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// Busses are limited 1 ORE per epoch. This is the maximum amount a miner can earn for any one hash.
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// We still track the theoretical rewards that would have been paid out ignoring the bus limit, so the
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// base reward rate will be updated to account for the real hashpower on the network.
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// Busses are limited to distributing 1 ORE per epoch. This is the maximum amount a miner can earn
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// for any given hash.
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let reward_actual = reward.min(bus.rewards);
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// Update balances.
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//
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// We track the theoretical rewards that would have been paid out ignoring the bus limit, so the
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// base reward rate will be updated to account for the real hashpower on the network.
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bus.theoretical_rewards = bus.theoretical_rewards.checked_add(reward).unwrap();
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bus.rewards = bus.rewards.checked_sub(reward_actual).unwrap();
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proof.balance = proof.balance.checked_add(reward_actual).unwrap();
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// Hash recent slot hash into the next challenge to prevent pre-mining attacks.
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// Hash a recent slot hash into the next challenge to prevent pre-mining attacks.
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//
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// The slot hashes are unpredictable values. By seeding the next challenge with the most recent slot hash,
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// miners are forced to submit their current solution before they can begin mining for the next.
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proof.last_hash = hash.h;
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proof.challenge = hashv(&[
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hash.h.as_slice(),
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@@ -174,6 +191,8 @@ pub fn process_mine<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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proof.total_rewards = proof.total_rewards.saturating_add(reward);
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// Log the mined rewards.
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//
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// This data can be used by off-chain indexers to display mining stats.
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set_return_data(
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MineEvent {
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difficulty: difficulty as u64,
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@@ -25,7 +25,7 @@ pub fn process_open<'a, 'info>(accounts: &'a [AccountInfo<'info>], data: &[u8])
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return Err(ProgramError::NotEnoughAccountKeys);
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};
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load_signer(signer)?;
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load_system_account(miner_info, false)?;
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load_any(miner_info, false)?;
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load_signer(payer_info)?;
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load_uninitialized_pda(
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proof_info,
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@@ -12,7 +12,7 @@ use spl_token::state::Mint;
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use crate::utils::AccountDeserialize;
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/// Reset tops up the busses, updates the base reward rate, and sets up the ORE program for the next epoch.
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/// Reset tops up the bus balances, updates the base reward rate, and sets up the ORE program for the next epoch.
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pub fn process_reset<'a, 'info>(accounts: &'a [AccountInfo<'info>], _data: &[u8]) -> ProgramResult {
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// Load accounts.
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let [signer, bus_0_info, bus_1_info, bus_2_info, bus_3_info, bus_4_info, bus_5_info, bus_6_info, bus_7_info, config_info, mint_info, treasury_info, treasury_tokens_info, token_program] =
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@@ -39,7 +39,7 @@ pub fn process_reset<'a, 'info>(accounts: &'a [AccountInfo<'info>], _data: &[u8]
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bus_7_info,
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];
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// Validate enough time has passed since last reset.
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// Validate enough time has passed since the last reset.
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let mut config_data = config_info.data.borrow_mut();
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let config = Config::try_from_bytes_mut(&mut config_data)?;
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let clock = Clock::get().or(Err(ProgramError::InvalidAccountData))?;
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@@ -51,7 +51,7 @@ pub fn process_reset<'a, 'info>(accounts: &'a [AccountInfo<'info>], _data: &[u8]
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return Ok(());
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}
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// Update reset timestamp.
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// Update timestamp.
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config.last_reset_at = clock.unix_timestamp;
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// Reset bus accounts and calculate actual rewards mined since last reset.
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@@ -59,34 +59,41 @@ pub fn process_reset<'a, 'info>(accounts: &'a [AccountInfo<'info>], _data: &[u8]
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let mut total_theoretical_rewards = 0u64;
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let mut top_balance = 0u64;
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for i in 0..BUS_COUNT {
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// Parse bus account.
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let mut bus_data = busses[i].data.borrow_mut();
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let bus = Bus::try_from_bytes_mut(&mut bus_data)?;
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// Track top balance.
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if bus.top_balance.gt(&top_balance) {
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top_balance = bus.top_balance;
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}
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// Track accumulators.
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total_remaining_rewards = total_remaining_rewards.saturating_add(bus.rewards);
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total_theoretical_rewards =
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total_theoretical_rewards.saturating_add(bus.theoretical_rewards);
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// Reset bus account for new epoch.
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bus.rewards = BUS_EPOCH_REWARDS;
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bus.theoretical_rewards = 0;
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bus.top_balance = 0;
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}
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let total_epoch_rewards = MAX_EPOCH_REWARDS.saturating_sub(total_remaining_rewards);
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// Update the top balance.
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// Update global top balance.
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config.top_balance = top_balance;
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// Update base reward rate for next epoch.
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config.base_reward_rate =
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calculate_new_reward_rate(config.base_reward_rate, total_theoretical_rewards);
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// If base_reward_rate is too low, then increment difficulty by 1 and double base reward rate.
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// If base reward rate is too low, increment min difficulty by 1 and double base reward rate.
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if config.base_reward_rate.le(&BASE_REWARD_RATE_MIN_THRESHOLD) {
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config.min_difficulty = config.min_difficulty.checked_add(1).unwrap();
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config.base_reward_rate = config.base_reward_rate.checked_mul(2).unwrap();
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}
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// If base reward rate is too high, then decrement difficulty by 1 and halve base reward rate.
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// If base reward rate is too high, decrement min difficulty by 1 and halve base reward rate.
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if config.base_reward_rate.ge(&BASE_REWARD_RATE_MAX_THRESHOLD) && config.min_difficulty.gt(&1) {
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config.min_difficulty = config.min_difficulty.checked_sub(1).unwrap();
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config.base_reward_rate = config.base_reward_rate.checked_div(2).unwrap();
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@@ -98,7 +105,7 @@ pub fn process_reset<'a, 'info>(accounts: &'a [AccountInfo<'info>], _data: &[u8]
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return Err(OreError::MaxSupply.into());
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}
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// Fund treasury token account.
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// Fund the treasury token account.
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let amount = MAX_SUPPLY
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.saturating_sub(mint.supply)
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.min(total_epoch_rewards);
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@@ -15,7 +15,7 @@ pub fn process_update<'a, 'info>(
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return Err(ProgramError::NotEnoughAccountKeys);
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};
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load_signer(signer)?;
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load_system_account(miner_info, false)?;
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load_any(miner_info, false)?;
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load_proof(proof_info, signer.key, true)?;
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// Update the proof's miner authority.
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