add some basic throttling

This commit is contained in:
Maximilian Schneider 2023-02-05 17:04:47 +09:00
parent a0af15cb4a
commit c872d32943
2 changed files with 163 additions and 110 deletions

View File

@ -113,7 +113,6 @@ async fn main() -> anyhow::Result<()> {
)
.expect("init transaction builder");
// TODO: throttle cranking, currently runs very fast
transaction_sender::init(
instruction_receiver,
blockhash,

View File

@ -1,4 +1,5 @@
use bytemuck::cast_ref;
use mango_v4::state::FillEvent;
use serum_dex::{instruction::MarketInstruction, state::EventView};
use solana_geyser_connector_lib::{
chain_data::{AccountData, ChainData, SlotData},
@ -20,8 +21,12 @@ use std::{
collections::{BTreeSet, HashMap, HashSet},
convert::TryFrom,
str::FromStr,
time::{Duration, Instant},
};
const MAX_BACKLOG: usize = 2;
const TIMEOUT_INTERVAL: Duration = Duration::from_millis(400);
pub fn init(
perp_queue_pks: Vec<(Pubkey, Pubkey)>,
serum_queue_pks: Vec<(Pubkey, Pubkey)>,
@ -46,7 +51,7 @@ pub fn init(
let (instruction_sender, instruction_receiver) = async_channel::unbounded::<Vec<Instruction>>();
let mut chain_cache = ChainData::new(metrics_sender);
let mut last_evq_versions = HashMap::<String, (u64, u64)>::new();
let mut last_cranked_evq_versions = HashMap::<String, (u64, u64, Instant)>::new();
let all_queue_pks: HashSet<Pubkey> = perp_queue_pks
.iter()
@ -91,76 +96,99 @@ pub fn init(
for (mkt_pk, evq_pk) in perp_queue_pks.iter() {
let evq_b58 = evq_pk.to_string();
let last_evq_version = last_evq_versions.get(&evq_b58).unwrap_or(&(0, 0));
let last_evq_version = last_cranked_evq_versions.get(&evq_b58);
match chain_cache.account(&evq_pk) {
Ok(account_info) => {
// only process if the account state changed
let evq_version = (account_info.slot, account_info.write_version);
trace!("mango perp evq={evq_b58} write_version={:?}", evq_version);
if evq_version == *last_evq_version {
let (is_unchanged, is_on_timeout) = match last_evq_version {
Some((slot, write_version, timestamp)) => (
account_info.slot == *slot
&& account_info.write_version == *write_version,
timestamp.elapsed() < TIMEOUT_INTERVAL,
),
None => Default::default(),
};
trace!("mango perp evq={evq_b58} slot={} v={} is_unchanged={is_unchanged} is_on_timeout={is_on_timeout}", account_info.slot, account_info.write_version);
if is_unchanged || is_on_timeout {
continue;
}
last_evq_versions.insert(evq_b58.clone(), evq_version);
let account = &account_info.account;
let event_queue: mango_v4::state::EventQueue =
mango_v4::state::EventQueue::try_deserialize(
account.data().borrow_mut(),
)
.unwrap();
if !event_queue.is_empty() {
let mango_accounts: BTreeSet<_> = event_queue
.iter()
.take(10)
.flat_map(|e| {
match mango_v4::state::EventType::try_from(e.event_type)
.expect("mango v4 event")
{
mango_v4::state::EventType::Fill => {
let fill: &mango_v4::state::FillEvent = cast_ref(e);
vec![fill.maker, fill.taker]
}
mango_v4::state::EventType::Out => {
let out: &mango_v4::state::OutEvent = cast_ref(e);
vec![out.owner]
}
mango_v4::state::EventType::Liquidate => vec![],
}
})
.collect();
let mut ams: Vec<_> = anchor_lang::ToAccountMetas::to_account_metas(
&mango_v4::accounts::PerpConsumeEvents {
group: group_pk,
perp_market: *mkt_pk,
event_queue: *evq_pk,
},
None,
);
ams.append(
&mut mango_accounts
.iter()
.map(|pk| AccountMeta::new(*pk, false))
.collect(),
);
let ix = Instruction {
program_id: mango_v4::id(),
accounts: ams,
data: anchor_lang::InstructionData::data(
&mango_v4::instruction::PerpConsumeEvents { limit: 10 },
),
};
info!(
"mango perp evq={evq_b58} count={} limit=10",
event_queue.iter().count()
);
instruction_sender.send(vec![ix]).await;
// only crank if at least 1 fill or a sufficient events of other categories are buffered
let contains_fill_events = event_queue
.iter()
.find(|e| e.event_type == mango_v4::state::EventType::Fill as u8)
.is_some();
let has_backlog = event_queue.iter().count() > MAX_BACKLOG;
trace!("mango perp evq={evq_b58} slot={} v={} contains_fill_events={contains_fill_events} has_backlog={has_backlog}", account_info.slot, account_info.write_version);
if !contains_fill_events && !has_backlog {
continue;
}
let mango_accounts: BTreeSet<_> = event_queue
.iter()
.take(10)
.flat_map(|e| {
match mango_v4::state::EventType::try_from(e.event_type)
.expect("mango v4 event")
{
mango_v4::state::EventType::Fill => {
let fill: &mango_v4::state::FillEvent = cast_ref(e);
vec![fill.maker, fill.taker]
}
mango_v4::state::EventType::Out => {
let out: &mango_v4::state::OutEvent = cast_ref(e);
vec![out.owner]
}
mango_v4::state::EventType::Liquidate => vec![],
}
})
.collect();
let mut ams: Vec<_> = anchor_lang::ToAccountMetas::to_account_metas(
&mango_v4::accounts::PerpConsumeEvents {
group: group_pk,
perp_market: *mkt_pk,
event_queue: *evq_pk,
},
None,
);
ams.append(
&mut mango_accounts
.iter()
.map(|pk| AccountMeta::new(*pk, false))
.collect(),
);
let ix = Instruction {
program_id: mango_v4::id(),
accounts: ams,
data: anchor_lang::InstructionData::data(
&mango_v4::instruction::PerpConsumeEvents { limit: 10 },
),
};
info!(
"mango perp evq={evq_b58} count={} limit=10",
event_queue.iter().count()
);
instruction_sender.send(vec![ix]).await;
last_cranked_evq_versions.insert(
evq_b58.clone(),
(
account_info.slot,
account_info.write_version,
Instant::now(),
),
);
}
Err(_) => info!("chain_cache could not find {evq_b58}"),
}
@ -168,17 +196,23 @@ pub fn init(
for (mkt_pk, evq_pk) in serum_queue_pks.iter() {
let evq_b58 = evq_pk.to_string();
let last_evq_version = last_evq_versions.get(&evq_b58).unwrap_or(&(0, 0));
let last_evq_version = last_cranked_evq_versions.get(&evq_b58);
match chain_cache.account(&evq_pk) {
Ok(account_info) => {
// only process if the account state changed
let evq_version = (account_info.slot, account_info.write_version);
trace!("serum evq={evq_b58} write_version={:?}", evq_version);
if evq_version == *last_evq_version {
let (is_unchanged, is_on_timeout) = match last_evq_version {
Some((slot, write_version, timestamp)) => (
account_info.slot == *slot
&& account_info.write_version == *write_version,
timestamp.elapsed() < TIMEOUT_INTERVAL,
),
None => Default::default(),
};
trace!("openbook evq={evq_b58} slot={} v={} is_unchanged={is_unchanged} is_on_timeout={is_on_timeout}", account_info.slot, account_info.write_version);
if is_unchanged || is_on_timeout {
continue;
}
last_evq_versions.insert(evq_b58.clone(), evq_version);
let account = &account_info.account;
@ -188,57 +222,77 @@ pub fn init(
*bytemuck::from_bytes(&inner_data[..header_span]);
let count = header.count;
if count > 0 {
let rest = &inner_data[header_span..];
let event_size = std::mem::size_of::<serum_dex::state::Event>();
let slop = rest.len() % event_size;
let end = rest.len() - slop;
let events =
bytemuck::cast_slice::<u8, serum_dex::state::Event>(&rest[..end]);
let seq_num = header.seq_num;
let rest = &inner_data[header_span..];
let event_size = std::mem::size_of::<serum_dex::state::Event>();
let slop = rest.len() % event_size;
let end = rest.len() - slop;
let events =
bytemuck::cast_slice::<u8, serum_dex::state::Event>(&rest[..end]);
let seq_num = header.seq_num;
let oo_pks: BTreeSet<_> = (0..count)
.map(|i| {
let offset = (seq_num - count + i) % events.len() as u64;
let event: serum_dex::state::Event = events[offset as usize];
let oo_pk = match event.as_view().unwrap() {
EventView::Fill { owner, .. }
| EventView::Out { owner, .. } => {
bytemuck::cast_slice::<u64, Pubkey>(&owner)[0]
}
};
oo_pk
})
.collect();
let events: Vec<_> = (0..count)
.map(|i| {
let offset = (seq_num - count + i) % events.len() as u64;
let event: serum_dex::state::Event = events[offset as usize];
event.as_view().unwrap()
})
.collect();
let mut ams: Vec<_> = oo_pks
.iter()
.map(|pk| AccountMeta::new(*pk, false))
.collect();
// pass two times evq_pk instead of deprecated fee receivers to reduce encoded tx size
ams.append(
&mut [
mkt_pk, evq_pk, evq_pk, /*coin_pk*/
evq_pk, /*pc_pk*/
]
.iter()
.map(|pk| AccountMeta::new(**pk, false))
.collect(),
);
let ix = Instruction {
program_id: Pubkey::from_str(
"srmqPvymJeFKQ4zGQed1GFppgkRHL9kaELCbyksJtPX",
)
.unwrap(),
accounts: ams,
data: MarketInstruction::ConsumeEvents(count as u16).pack(),
};
info!("serum evq={evq_b58} count={count}");
instruction_sender.send(vec![ix]).await;
// only crank if at least 1 fill or a sufficient events of other categories are buffered
let contains_fill_events = events
.iter()
.find(|e| matches!(e, serum_dex::state::EventView::Fill { .. }))
.is_some();
let has_backlog = events.len() > MAX_BACKLOG;
if !contains_fill_events && !has_backlog {
continue;
}
let oo_pks: BTreeSet<_> = events
.iter()
.map(|e| match e {
EventView::Fill { owner, .. } | EventView::Out { owner, .. } => {
bytemuck::cast_slice::<u64, Pubkey>(owner)[0]
}
})
.collect();
let mut ams: Vec<_> = oo_pks
.iter()
.map(|pk| AccountMeta::new(*pk, false))
.collect();
// pass two times evq_pk instead of deprecated fee receivers to reduce encoded tx size
ams.append(
&mut [
mkt_pk, evq_pk, evq_pk, /*coin_pk*/
evq_pk, /*pc_pk*/
]
.iter()
.map(|pk| AccountMeta::new(**pk, false))
.collect(),
);
let ix = Instruction {
program_id: Pubkey::from_str(
"srmqPvymJeFKQ4zGQed1GFppgkRHL9kaELCbyksJtPX",
)
.unwrap(),
accounts: ams,
data: MarketInstruction::ConsumeEvents(count as u16).pack(),
};
info!("openbook evq={evq_b58} count={count}");
instruction_sender.send(vec![ix]).await;
last_cranked_evq_versions.insert(
evq_b58.clone(),
(
account_info.slot,
account_info.write_version,
Instant::now(),
),
);
}
Err(_) => info!("chain_cache could not find {evq_b58}"),
}