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sol-trade-sdk/src/common/fast_fn.rs
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use clru::CLruCache;
use once_cell::sync::Lazy;
use parking_lot::RwLock;
use solana_sdk::{
instruction::{AccountMeta, Instruction},
pubkey::Pubkey,
};
use spl_associated_token_account::{
get_associated_token_address_with_program_id, ID as ASSOCIATED_TOKEN_PROGRAM_ID,
};
use std::num::NonZeroUsize;
const MAX_PDA_CACHE_SIZE: usize = 10000;
const MAX_ATA_CACHE_SIZE: usize = 10000;
const MAX_INSTRUCTION_CACHE_SIZE: usize = 10000;
// --------------------- Instruction Cache ---------------------
/// Instruction cache key for uniquely identifying instruction types and parameters
#[derive(Debug, Clone, PartialEq, Eq, Hash)]
pub enum InstructionCacheKey {
/// Associated Token Account creation instruction
CreateAssociatedTokenAccount {
payer: Pubkey,
owner: Pubkey,
mint: Pubkey,
token_program: Pubkey,
use_seed: bool,
},
/// Close wSOL Account
CloseWsolAccount { payer: Pubkey, wsol_token_account: Pubkey },
}
/// Global instruction cache for storing common instructions
static INSTRUCTION_CACHE: Lazy<RwLock<CLruCache<InstructionCacheKey, Vec<Instruction>>>> =
Lazy::new(|| {
RwLock::new(CLruCache::new(NonZeroUsize::new(MAX_INSTRUCTION_CACHE_SIZE).unwrap()))
});
/// Get cached instruction, compute and cache if not exists
pub fn get_cached_instructions<F>(cache_key: InstructionCacheKey, compute_fn: F) -> Vec<Instruction>
where
F: FnOnce() -> Vec<Instruction>,
{
// Try to get from cache (using read lock)
{
let cache = INSTRUCTION_CACHE.read();
if let Some(cached_instruction) = cache.peek(&cache_key) {
return cached_instruction.clone();
}
}
// Cache miss, compute new instruction
let instruction = compute_fn();
// Store computation result in cache (using write lock)
{
let mut cache = INSTRUCTION_CACHE.write();
cache.put(cache_key, instruction.clone());
}
instruction
}
// --------------------- Associated Token Account ---------------------
pub fn create_associated_token_account_idempotent_fast_use_seed(
payer: &Pubkey,
owner: &Pubkey,
mint: &Pubkey,
token_program: &Pubkey,
use_seed: bool,
) -> Vec<Instruction> {
_create_associated_token_account_idempotent_fast(payer, owner, mint, token_program, use_seed)
}
pub fn create_associated_token_account_idempotent_fast(
payer: &Pubkey,
owner: &Pubkey,
mint: &Pubkey,
token_program: &Pubkey,
) -> Vec<Instruction> {
_create_associated_token_account_idempotent_fast(payer, owner, mint, token_program, false)
}
pub fn _create_associated_token_account_idempotent_fast(
payer: &Pubkey,
owner: &Pubkey,
mint: &Pubkey,
token_program: &Pubkey,
use_seed: bool,
) -> Vec<Instruction> {
// Create cache key
let cache_key = InstructionCacheKey::CreateAssociatedTokenAccount {
payer: *payer,
owner: *owner,
mint: *mint,
token_program: *token_program,
use_seed,
};
// Only use seed if the mint address is not wSOL or SOL
// token 2022 测试不成功(TODO
if use_seed
&& !mint.eq(&crate::constants::WSOL_TOKEN_ACCOUNT)
&& !mint.eq(&crate::constants::SOL_TOKEN_ACCOUNT)
&& token_program.eq(&spl_token::ID)
{
// Use cache to get instruction
get_cached_instructions(cache_key, || {
super::seed::create_associated_token_account_use_seed(payer, owner, mint, token_program)
.unwrap()
})
} else {
// Use cache to get instruction
get_cached_instructions(cache_key, || {
// Get Associated Token Address using cache
let associated_token_address =
get_associated_token_address_with_program_id_fast(owner, mint, token_program);
// Create Associated Token Account instruction
// Reference implementation of spl_associated_token_account::instruction::create_associated_token_account
vec![Instruction {
program_id: ASSOCIATED_TOKEN_PROGRAM_ID,
accounts: vec![
AccountMeta::new(*payer, true), // Payer (signer, writable)
AccountMeta::new(associated_token_address, false), // ATA address (writable, non-signer)
AccountMeta::new_readonly(*owner, false), // Token account owner (readonly, non-signer)
AccountMeta::new_readonly(*mint, false), // Token mint address (readonly, non-signer)
crate::constants::SYSTEM_PROGRAM_META,
AccountMeta::new_readonly(*token_program, false), // Token program (readonly, non-signer)
],
data: vec![1],
}]
})
}
}
// --------------------- PDA ---------------------
/// PDA cache key for uniquely identifying PDA computation input parameters
#[derive(Debug, Clone, PartialEq, Eq, Hash)]
pub enum PdaCacheKey {
PumpFunUserVolume(Pubkey),
PumpFunBondingCurve(Pubkey),
PumpFunCreatorVault(Pubkey),
BonkPool(Pubkey, Pubkey),
BonkVault(Pubkey, Pubkey),
PumpSwapUserVolume(Pubkey),
}
/// Global PDA cache for storing computation results
static PDA_CACHE: Lazy<RwLock<CLruCache<PdaCacheKey, Pubkey>>> =
Lazy::new(|| RwLock::new(CLruCache::new(NonZeroUsize::new(MAX_PDA_CACHE_SIZE).unwrap())));
/// Get cached PDA, compute and cache if not exists
pub fn get_cached_pda<F>(cache_key: PdaCacheKey, compute_fn: F) -> Option<Pubkey>
where
F: FnOnce() -> Option<Pubkey>,
{
// Try to get from cache (using read lock)
{
let cache = PDA_CACHE.read();
if let Some(cached_pda) = cache.peek(&cache_key) {
return Some(*cached_pda);
}
}
// Cache miss, compute new PDA
let pda_result = compute_fn();
// If computation succeeds, store result in cache (using write lock)
if let Some(pda) = pda_result {
let mut cache = PDA_CACHE.write();
cache.put(cache_key, pda);
}
pda_result
}
// --------------------- ATA ---------------------
/// ATA cache key for Associated Token Address caching
#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash)]
struct AtaCacheKey {
wallet_address: Pubkey,
token_mint_address: Pubkey,
token_program_id: Pubkey,
use_seed: bool,
}
/// Global ATA cache for storing Associated Token Address computation results
static ATA_CACHE: Lazy<RwLock<CLruCache<AtaCacheKey, Pubkey>>> =
Lazy::new(|| RwLock::new(CLruCache::new(NonZeroUsize::new(MAX_ATA_CACHE_SIZE).unwrap())));
pub fn get_associated_token_address_with_program_id_fast_use_seed(
wallet_address: &Pubkey,
token_mint_address: &Pubkey,
token_program_id: &Pubkey,
use_seed: bool,
) -> Pubkey {
_get_associated_token_address_with_program_id_fast(
wallet_address,
token_mint_address,
token_program_id,
use_seed,
)
}
/// Get cached Associated Token Address, compute and cache if not exists
pub fn get_associated_token_address_with_program_id_fast(
wallet_address: &Pubkey,
token_mint_address: &Pubkey,
token_program_id: &Pubkey,
) -> Pubkey {
_get_associated_token_address_with_program_id_fast(
wallet_address,
token_mint_address,
token_program_id,
false,
)
}
fn _get_associated_token_address_with_program_id_fast(
wallet_address: &Pubkey,
token_mint_address: &Pubkey,
token_program_id: &Pubkey,
use_seed: bool,
) -> Pubkey {
let cache_key = AtaCacheKey {
wallet_address: *wallet_address,
token_mint_address: *token_mint_address,
token_program_id: *token_program_id,
use_seed,
};
// Try to get from cache (using read lock)
{
let cache = ATA_CACHE.read();
if let Some(cached_ata) = cache.peek(&cache_key) {
return *cached_ata;
}
}
// Cache miss, compute new ATA
// Only use seed if the token mint address is not wSOL or SOL
// token 2022 测试不成功(TODO
let ata = if use_seed
&& !token_mint_address.eq(&crate::constants::WSOL_TOKEN_ACCOUNT)
&& !token_mint_address.eq(&crate::constants::SOL_TOKEN_ACCOUNT)
&& token_program_id.eq(&spl_token::ID)
{
super::seed::get_associated_token_address_with_program_id_use_seed(
wallet_address,
token_mint_address,
token_program_id,
)
.unwrap()
} else {
get_associated_token_address_with_program_id(
wallet_address,
token_mint_address,
token_program_id,
)
};
// Store computation result in cache (using write lock)
{
let mut cache = ATA_CACHE.write();
cache.put(cache_key, ata);
}
ata
}
// --------------------- Initialize Accounts ---------------------
pub fn fast_init(payer: &Pubkey) {
// Get PumpFun user volume accumulator PDA
crate::instruction::utils::pumpfun::get_user_volume_accumulator_pda(payer);
// Get PumpSwap user volume accumulator PDA
crate::instruction::utils::pumpswap::get_user_volume_accumulator_pda(payer);
// Get wSOL ATA address
let wsol_token_account = get_associated_token_address_with_program_id_fast(
payer,
&crate::constants::WSOL_TOKEN_ACCOUNT,
&crate::constants::TOKEN_PROGRAM,
);
// Get Close wSOL Account instruction
get_cached_instructions(
crate::common::fast_fn::InstructionCacheKey::CloseWsolAccount {
payer: *payer,
wsol_token_account,
},
|| {
vec![spl_token::instruction::close_account(
&crate::constants::TOKEN_PROGRAM,
&wsol_token_account,
&payer,
&payer,
&[],
)
.unwrap()]
},
);
}