Merge pull request #100 from chainstacklabs/feat/learning-examples-creator-fee

Add/update buy and sell transaction for PumpSwap
This commit is contained in:
Anton
2025-05-14 15:39:02 +00:00
committed by GitHub
13 changed files with 648 additions and 322 deletions
@@ -1,6 +1,6 @@
{
"transaction": [
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],
"meta": {
@@ -8,187 +8,85 @@
"status": {
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},
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@@ -196,54 +94,52 @@
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@@ -251,8 +147,8 @@
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@@ -260,16 +156,16 @@
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@@ -277,72 +173,15 @@
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"Program 11111111111111111111111111111111 success",
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@@ -351,55 +190,76 @@
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"Program 11111111111111111111111111111111 success",
"Program 11111111111111111111111111111111 invoke [3]",
"Program 11111111111111111111111111111111 success",
"Program 11111111111111111111111111111111 invoke [3]",
"Program 11111111111111111111111111111111 success",
"Program data: vdt/007mYe5E+dQlVubfmlZx8g4Yr7VZS6dIqY5CCXXxzYTAYMWwbyBwuBEAAAAAT+SenZMEAAABcFi8Lm3PgW7X4XZm7q8+G4Jf4IaSLzptQdkNfSFrd2m6oSNoAAAAALHaOjAKAAAAgP3BigudAgCxLhc0AwAAAIBlrz56ngEA16qPsGDYKRtMTUddr/diyWvcDazrNsAS6tEu06lIQWFfAAAAAAAAAJ4YKwAAAAAAkJajVbvLxqgCZ/z53+NIXoh5GMXQLRXjoGjmO6GR/6UFAAAAAAAAAKpEAgAAAAAA",
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P invoke [3]",
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P consumed 2006 of 33261 compute units",
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P success",
"Program data: vdt/007mYe6+Tmm/fs6CYuRP+33ojAhkpB6YAYwQJNh0/zpnqW4v7wCrkEEAAAAAKeutVYQiAAAB9jHS98ZQO9G4CKU5UVWCeclO3OIAhpFcs7kaV1CWL5oKQsNmAAAAAABXtD0HAAAA1yQq8l6tAwAAq5BBAAAAANeMF6bNrgIA",
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P consumed 37457 of 103146 compute units",
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P success"
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P consumed 40072 of 70491 compute units",
"Program 6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P success",
"Program b1oomGGqPKGD6errbyfbVMBuzSC8WtAAYo8MwNafWW1 consumed 48895 of 78713 compute units",
"Program b1oomGGqPKGD6errbyfbVMBuzSC8WtAAYo8MwNafWW1 success"
],
"preTokenBalances": [
{
"accountIndex": 8,
"mint": "5eFg3giaX2c3RydHvx1S3yEKpYjBuwtLUsmbAAG9pump",
"uiTokenAmount": {
"uiAmount": 667654902.731215,
"decimals": 6,
"amount": "667654902731215",
"uiAmountString": "667654902.731215"
},
"owner": "7Q1e26aB8kpyamjKPCt5oD73b2Hx7nAEjAMUwfHmZy7G",
"programId": "TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss623VQ5DA"
}
],
"preTokenBalances": [],
"postTokenBalances": [
{
"accountIndex": 4,
"mint": "Dosp4t6w5kDzAgBQBMEsZSUNzdwTC5zHYiVZQqMKpump",
"accountIndex": 5,
"mint": "5eFg3giaX2c3RydHvx1S3yEKpYjBuwtLUsmbAAG9pump",
"uiTokenAmount": {
"uiAmount": 962048231.511255,
"uiAmount": 5032051.139663,
"decimals": 6,
"amount": "962048231511255",
"uiAmountString": "962048231.511255"
"amount": "5032051139663",
"uiAmountString": "5032051.139663"
},
"owner": "52EdRamuJQsj94DnpLBguCfXx8cGbyJiFBL5n1hmP5Ln",
"owner": "8ZZ97eWp2k8gfoK2Jk2WQcdofk9hyJpEGDPGiqFryH1S",
"programId": "TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss623VQ5DA"
},
{
"accountIndex": 6,
"mint": "Dosp4t6w5kDzAgBQBMEsZSUNzdwTC5zHYiVZQqMKpump",
"accountIndex": 8,
"mint": "5eFg3giaX2c3RydHvx1S3yEKpYjBuwtLUsmbAAG9pump",
"uiTokenAmount": {
"uiAmount": 37951768.488745,
"uiAmount": 662622851.591552,
"decimals": 6,
"amount": "37951768488745",
"uiAmountString": "37951768.488745"
"amount": "662622851591552",
"uiAmountString": "662622851.591552"
},
"owner": "Ha3MnRTxb5iGbXkjCTF2VyLPSsbCaNG4ZaJkHaoQWqJ9",
"owner": "7Q1e26aB8kpyamjKPCt5oD73b2Hx7nAEjAMUwfHmZy7G",
"programId": "TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss623VQ5DA"
}
],
@@ -408,7 +268,7 @@
"writable": [],
"readonly": []
},
"computeUnitsConsumed": 184311
"computeUnitsConsumed": 71182
},
"version": 0
"version": "legacy"
}
@@ -2,14 +2,11 @@ import asyncio
import hashlib
import json
import os
import sys
import websockets
from solders.pubkey import Pubkey
sys.path.append(os.path.abspath(os.path.join(os.path.dirname(__file__), "..")))
from core.pubkeys import PumpAddresses
PUMP_PROGRAM = Pubkey.from_string("6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P")
WSS_ENDPOINT = os.environ.get("SOLANA_NODE_WSS_ENDPOINT")
@@ -30,7 +27,7 @@ async def listen_for_transactions():
"id": 1,
"method": "blockSubscribe",
"params": [
{"mentionsAccountOrProgram": str(PumpAddresses.PROGRAM)},
{"mentionsAccountOrProgram": str(PUMP_PROGRAM)},
{
"commitment": "confirmed",
"encoding": "base64",
@@ -42,7 +39,7 @@ async def listen_for_transactions():
},
)
await websocket.send(subscription_message)
print(f"Subscribed to blocks mentioning program: {PumpAddresses.PROGRAM}")
print(f"Subscribed to blocks mentioning program: {PUMP_PROGRAM}")
while True:
try:
@@ -1,6 +1,9 @@
"""
Module for checking the status of a token's bonding curve on the Solana network using
the Pump.fun program. It allows querying the bonding curve state and completion status.
Note: creator fee upgrade introduced updates in bonding curve structure.
https://github.com/pump-fun/pump-public-docs/blob/main/docs/PUMP_CREATOR_FEE_README.md
"""
import asyncio
@@ -8,7 +11,7 @@ import os
import struct
from typing import Final
from construct import Flag, Int64ul, Struct
from construct import Bytes, Flag, Int64ul, Struct
from dotenv import load_dotenv
from solana.rpc.async_api import AsyncClient
from solders.pubkey import Pubkey
@@ -37,7 +40,7 @@ class BondingCurveState:
token_total_supply: Total token supply in the curve
complete: Whether the curve has completed and liquidity migrated
"""
_STRUCT = Struct(
_STRUCT_1 = Struct(
"virtual_token_reserves" / Int64ul,
"virtual_sol_reserves" / Int64ul,
"real_token_reserves" / Int64ul,
@@ -46,9 +49,33 @@ class BondingCurveState:
"complete" / Flag,
)
# Struct after creator fee update has been introduced
# https://github.com/pump-fun/pump-public-docs/blob/main/docs/PUMP_CREATOR_FEE_README.md
_STRUCT_2 = Struct(
"virtual_token_reserves" / Int64ul,
"virtual_sol_reserves" / Int64ul,
"real_token_reserves" / Int64ul,
"real_sol_reserves" / Int64ul,
"token_total_supply" / Int64ul,
"complete" / Flag,
"creator" / Bytes(32), # Added new creator field - 32 bytes for Pubkey
)
def __init__(self, data: bytes) -> None:
parsed = self._STRUCT.parse(data[8:])
self.__dict__.update(parsed)
"""Parse bonding curve data."""
if data[:8] != EXPECTED_DISCRIMINATOR:
raise ValueError("Invalid curve state discriminator")
if len(data) < 150:
parsed = self._STRUCT_1.parse(data[8:])
self.__dict__.update(parsed)
else:
parsed = self._STRUCT_1.parse(data[8:])
self.__dict__.update(parsed)
# Convert raw bytes to Pubkey for creator field
if hasattr(self, 'creator') and isinstance(self.creator, bytes):
self.creator = Pubkey.from_bytes(self.creator)
def get_associated_bonding_curve_address(
@@ -1,12 +1,11 @@
import os
import sys
from solders.pubkey import Pubkey
sys.path.append(os.path.abspath(os.path.join(os.path.dirname(__file__), "..")))
from core.pubkeys import PumpAddresses, SystemAddresses
# Global constants
PUMP_PROGRAM = Pubkey.from_string("6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P")
SYSTEM_TOKEN_PROGRAM = Pubkey.from_string("TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss623VQ5DA")
SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM = Pubkey.from_string(
"ATokenGPvbdGVxr1b2hvZbsiqW5xWH25efTNsLJA8knL"
)
def get_bonding_curve_address(mint: Pubkey, program_id: Pubkey) -> tuple[Pubkey, int]:
"""
@@ -24,10 +23,10 @@ def find_associated_bonding_curve(mint: Pubkey, bonding_curve: Pubkey) -> Pubkey
derived_address, _ = Pubkey.find_program_address(
[
bytes(bonding_curve),
bytes(SystemAddresses.TOKEN_PROGRAM),
bytes(SYSTEM_TOKEN_PROGRAM),
bytes(mint),
],
SystemAddresses.ASSOCIATED_TOKEN_PROGRAM,
SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM,
)
return derived_address
@@ -39,7 +38,7 @@ def main():
mint = Pubkey.from_string(mint_address)
bonding_curve_address, bump = get_bonding_curve_address(
mint, PumpAddresses.PROGRAM
mint, PUMP_PROGRAM
)
# Calculate the associated bonding curve
@@ -56,7 +55,7 @@ def main():
print("-" * 50)
except ValueError as e:
print(f"Error: Invalid address format - {str(e)}")
print(f"Error: Invalid address format - {e!s}")
if __name__ == "__main__":
@@ -26,7 +26,7 @@ def decode_instruction(ix_data, ix_def):
if arg["type"] == "u64":
value = struct.unpack_from("<Q", ix_data, offset)[0]
offset += 8
elif arg["type"] == "publicKey":
elif arg["type"] == "pubkey":
value = ix_data[offset : offset + 32].hex()
offset += 32
elif arg["type"] == "string":
@@ -76,9 +76,8 @@ def decode_transaction(tx_data, idl):
program_id = str(account_keys[ix.program_id_index])
print(f"\nInstruction {idx}:")
print(f"Program ID: {program_id}")
print(f"IDL program address: {idl['metadata']['address']}")
if program_id == idl["metadata"]["address"]:
if program_id == "6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P": # Pump Fun Program
ix_data = bytes(ix.data)
discriminator = struct.unpack("<Q", ix_data[:8])[0]
@@ -2,7 +2,8 @@ import base64
import json
import struct
from construct import Flag, Int64ul, Struct
from construct import Bytes, Flag, Int64ul, Struct
from solders.pubkey import Pubkey
LAMPORTS_PER_SOL = 1_000_000_000
TOKEN_DECIMALS = 6
@@ -10,7 +11,7 @@ EXPECTED_DISCRIMINATOR = struct.pack("<Q", 6966180631402821399)
class BondingCurveState:
_STRUCT = Struct(
_STRUCT_1 = Struct(
"virtual_token_reserves" / Int64ul,
"virtual_sol_reserves" / Int64ul,
"real_token_reserves" / Int64ul,
@@ -19,9 +20,33 @@ class BondingCurveState:
"complete" / Flag,
)
# Struct after creator fee update has been introduced
# https://github.com/pump-fun/pump-public-docs/blob/main/docs/PUMP_CREATOR_FEE_README.md
_STRUCT_2 = Struct(
"virtual_token_reserves" / Int64ul,
"virtual_sol_reserves" / Int64ul,
"real_token_reserves" / Int64ul,
"real_sol_reserves" / Int64ul,
"token_total_supply" / Int64ul,
"complete" / Flag,
"creator" / Bytes(32), # Added new creator field - 32 bytes for Pubkey
)
def __init__(self, data: bytes) -> None:
parsed = self._STRUCT.parse(data[8:])
self.__dict__.update(parsed)
"""Parse bonding curve data."""
if data[:8] != EXPECTED_DISCRIMINATOR:
raise ValueError("Invalid curve state discriminator")
if len(data) < 150:
parsed = self._STRUCT_1.parse(data[8:])
self.__dict__.update(parsed)
else:
parsed = self._STRUCT_2.parse(data[8:])
self.__dict__.update(parsed)
# Convert raw bytes to Pubkey for creator field
if hasattr(self, 'creator') and isinstance(self.creator, bytes):
self.creator = Pubkey.from_bytes(self.creator)
def calculate_bonding_curve_price(curve_state: BondingCurveState) -> float:
@@ -41,7 +66,7 @@ def decode_bonding_curve_data(raw_data: str) -> BondingCurveState:
# Load the JSON data
with open("learning-examples/raw_bondingCurve_from_getAccountInfo.json", "r") as file:
with open("learning-examples/raw_bondingCurve_from_getAccountInfo.json") as file:
json_data = json.load(file)
# Extract the base64 encoded data
@@ -76,7 +76,7 @@ for ix in instructions:
if "parsed" in ix:
print(f"Parsed instruction: {ix['program']} - {ix['parsed']['type']}")
print(f"Info: {json.dumps(ix['parsed']['info'], indent=2)}")
elif program_id == idl["metadata"]["address"]:
elif program_id == "6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P": # Pump Fun Program
matching_instruction = find_matching_instruction(accounts, data)
if matching_instruction:
decoded_data = decode_instruction_data(
@@ -69,6 +69,7 @@ def parse_market_account_data(data):
("pool_base_token_account", "pubkey"),
("pool_quote_token_account", "pubkey"),
("lp_supply", "u64"),
("coin_creator", "pubkey")
]
try:
+27 -6
View File
@@ -8,7 +8,7 @@ import struct
import base58
import spl.token.instructions as spl_token
import websockets
from construct import Flag, Int64ul, Struct
from construct import Bytes, Flag, Int64ul, Struct
from solana.rpc.async_api import AsyncClient
from solana.rpc.commitment import Confirmed
from solana.rpc.types import TxOpts
@@ -36,7 +36,6 @@ SYSTEM_TOKEN_PROGRAM = Pubkey.from_string("TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss62
SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM = Pubkey.from_string(
"ATokenGPvbdGVxr1b2hvZbsiqW5xWH25efTNsLJA8knL"
)
SYSTEM_RENT = Pubkey.from_string("SysvarRent111111111111111111111111111111111")
SOL = Pubkey.from_string("So11111111111111111111111111111111111111112")
LAMPORTS_PER_SOL = 1_000_000_000
@@ -53,11 +52,20 @@ class BondingCurveState:
"real_sol_reserves" / Int64ul,
"token_total_supply" / Int64ul,
"complete" / Flag,
"creator" / Bytes(32), # Added new creator field - 32 bytes for Pubkey
)
def __init__(self, data: bytes) -> None:
"""Parse bonding curve data."""
if data[:8] != EXPECTED_DISCRIMINATOR:
raise ValueError("Invalid curve state discriminator")
parsed = self._STRUCT.parse(data[8:])
self.__dict__.update(parsed)
# Convert raw bytes to Pubkey for creator field
if hasattr(self, 'creator') and isinstance(self.creator, bytes):
self.creator = Pubkey.from_bytes(self.creator)
async def get_pump_curve_state(
@@ -83,10 +91,22 @@ def calculate_pump_curve_price(curve_state: BondingCurveState) -> float:
)
def _find_creator_vault(creator: Pubkey) -> Pubkey:
derived_address, _ = Pubkey.find_program_address(
[
b"creator-vault",
bytes(creator)
],
PUMP_PROGRAM,
)
return derived_address
async def buy_token(
mint: Pubkey,
bonding_curve: Pubkey,
associated_bonding_curve: Pubkey,
creator_vault: Pubkey,
amount: float,
slippage: float = 0.25,
max_retries=5,
@@ -188,7 +208,7 @@ async def buy_token(
AccountMeta(
pubkey=SYSTEM_TOKEN_PROGRAM, is_signer=False, is_writable=False
),
AccountMeta(pubkey=SYSTEM_RENT, is_signer=False, is_writable=False),
AccountMeta(pubkey=creator_vault, is_signer=False, is_writable=True),
AccountMeta(
pubkey=PUMP_EVENT_AUTHORITY, is_signer=False, is_writable=False
),
@@ -254,8 +274,8 @@ def decode_create_instruction(ix_data, ix_def, accounts):
offset += 4
value = ix_data[offset : offset + length].decode("utf-8")
offset += length
elif arg["type"] == "publicKey":
value = base64.b64encode(ix_data[offset : offset + 32]).decode("utf-8")
elif arg["type"] == "pubkey":
value = base58.b58encode(ix_data[offset : offset + 32]).decode("utf-8")
offset += 32
else:
raise ValueError(f"Unsupported type: {arg['type']}")
@@ -362,6 +382,7 @@ async def main():
mint = Pubkey.from_string(token_data["mint"])
bonding_curve = Pubkey.from_string(token_data["bondingCurve"])
associated_bonding_curve = Pubkey.from_string(token_data["associatedBondingCurve"])
creator_vault = _find_creator_vault(Pubkey.from_string(token_data["creator"]))
# Fetch the token price
async with AsyncClient(RPC_ENDPOINT) as client:
@@ -377,7 +398,7 @@ async def main():
print(
f"Buying {amount:.6f} SOL worth of the new token with {slippage * 100:.1f}% slippage tolerance..."
)
await buy_token(mint, bonding_curve, associated_bonding_curve, amount, slippage)
await buy_token(mint, bonding_curve, associated_bonding_curve, creator_vault, amount, slippage)
if __name__ == "__main__":
+49 -10
View File
@@ -3,7 +3,7 @@ import os
import struct
import base58
from construct import Flag, Int64ul, Struct
from construct import Bytes, Flag, Int64ul, Struct
from solana.rpc.async_api import AsyncClient
from solana.rpc.commitment import Confirmed
from solana.rpc.types import TxOpts
@@ -37,7 +37,6 @@ LAMPORTS_PER_SOL = 1_000_000_000
UNIT_PRICE = 10_000_000
UNIT_BUDGET = 100_000
# RPC endpoint
RPC_ENDPOINT = os.environ.get("SOLANA_NODE_RPC_ENDPOINT")
@@ -49,11 +48,20 @@ class BondingCurveState:
"real_sol_reserves" / Int64ul,
"token_total_supply" / Int64ul,
"complete" / Flag,
"creator" / Bytes(32), # Added new creator field - 32 bytes for Pubkey
)
def __init__(self, data: bytes) -> None:
"""Parse bonding curve data."""
if data[:8] != EXPECTED_DISCRIMINATOR:
raise ValueError("Invalid curve state discriminator")
parsed = self._STRUCT.parse(data[8:])
self.__dict__.update(parsed)
# Convert raw bytes to Pubkey for creator field
if hasattr(self, 'creator') and isinstance(self.creator, bytes):
self.creator = Pubkey.from_bytes(self.creator)
async def get_pump_curve_state(
@@ -70,6 +78,33 @@ async def get_pump_curve_state(
return BondingCurveState(data)
def get_bonding_curve_address(mint: Pubkey) -> tuple[Pubkey, int]:
return Pubkey.find_program_address([b"bonding-curve", bytes(mint)], PUMP_PROGRAM)
def find_associated_bonding_curve(mint: Pubkey, bonding_curve: Pubkey) -> Pubkey:
derived_address, _ = Pubkey.find_program_address(
[
bytes(bonding_curve),
bytes(SYSTEM_TOKEN_PROGRAM),
bytes(mint),
],
SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM,
)
return derived_address
def find_creator_vault(creator: Pubkey) -> Pubkey:
derived_address, _ = Pubkey.find_program_address(
[
b"creator-vault",
bytes(creator)
],
PUMP_PROGRAM,
)
return derived_address
def calculate_pump_curve_price(curve_state: BondingCurveState) -> float:
if curve_state.virtual_token_reserves <= 0 or curve_state.virtual_sol_reserves <= 0:
raise ValueError("Invalid reserve state")
@@ -90,6 +125,7 @@ async def sell_token(
mint: Pubkey,
bonding_curve: Pubkey,
associated_bonding_curve: Pubkey,
creator_vault: Pubkey,
slippage: float = 0.25,
max_retries=5,
):
@@ -148,9 +184,9 @@ async def sell_token(
pubkey=SYSTEM_PROGRAM, is_signer=False, is_writable=False
),
AccountMeta(
pubkey=SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM,
pubkey=creator_vault,
is_signer=False,
is_writable=False,
is_writable=True,
),
AccountMeta(
pubkey=SYSTEM_TOKEN_PROGRAM, is_signer=False, is_writable=False
@@ -199,17 +235,20 @@ async def sell_token(
async def main():
# Replace these with the actual values for the token you want to sell
mint = Pubkey.from_string("7aXYndxpkHRU9xg1hyAE6z3X3KYPc2LR3dJMzYTSpump")
bonding_curve = Pubkey.from_string("5UYdCZigGDyAh1doCW8FdnA7VwJTJePayTLCyZkAWMxg")
associated_bonding_curve = Pubkey.from_string(
"BS2RUaPXjQpfzncizvmEfnARZG6SNp1imXnv5USA7PMA"
)
mint = Pubkey.from_string("5GkGpfvRLusWGqxSkwk7uEs6mHzNxH8QaZD6uPvYpump")
bonding_curve, _ = get_bonding_curve_address(mint)
associated_bonding_curve = find_associated_bonding_curve(mint, bonding_curve)
async with AsyncClient(RPC_ENDPOINT) as client:
curve_state = await get_pump_curve_state(client, bonding_curve)
creator_vault = find_creator_vault(curve_state.creator)
slippage = 0.25 # 25% slippage tolerance
print(f"Bonding curve address: {bonding_curve}")
print(f"Selling tokens with {slippage * 100:.1f}% slippage tolerance...")
await sell_token(mint, bonding_curve, associated_bonding_curve, slippage)
await sell_token(mint, bonding_curve, associated_bonding_curve, creator_vault, slippage)
if __name__ == "__main__":
@@ -60,6 +60,7 @@ async def get_market_data(market_address: Pubkey):
("pool_base_token_account", "pubkey"),
("pool_quote_token_account", "pubkey"),
("lp_supply", "u64"),
("coin_creator", "pubkey"),
]
for field_name, field_type in fields:
@@ -0,0 +1,323 @@
"""
Solana PUMP AMM Interface
This module provides functionality to interact with the PUMP AMM program on Solana, enabling:
- Finding market addresses by token mint
- Fetching and parsing market data from PUMP AMM pools
- Calculating token prices in AMM pools
- Creating associated token accounts (ATAs) idempotently
- Buying tokens on the PUMP AMM with slippage protection
"""
import asyncio
import os
import struct
import base58
from dotenv import load_dotenv
from solana.rpc.async_api import AsyncClient
from solana.rpc.commitment import Confirmed
from solana.rpc.types import MemcmpOpts, TxOpts
from solders.compute_budget import set_compute_unit_limit, set_compute_unit_price
from solders.instruction import AccountMeta, Instruction
from solders.keypair import Keypair
from solders.message import Message
from solders.pubkey import Pubkey
from solders.transaction import VersionedTransaction
from spl.token.instructions import (
create_idempotent_associated_token_account,
get_associated_token_address,
)
load_dotenv()
# Configuration constants
RPC_ENDPOINT = os.environ.get("SOLANA_NODE_RPC_ENDPOINT")
TOKEN_MINT = Pubkey.from_string("...")
PRIVATE_KEY = base58.b58decode(os.environ.get("SOLANA_PRIVATE_KEY"))
PAYER = Keypair.from_bytes(PRIVATE_KEY)
SLIPPAGE = 0.3 # Slippage tolerance (30%) - the maximum price movement you'll accept
TOKEN_DECIMALS = 6
BUY_DISCRIMINATOR = bytes.fromhex("66063d1201daebea") # Program instruction identifier for the buy function
# Solana system addresses and program IDs
SOL = Pubkey.from_string("So11111111111111111111111111111111111111112")
PUMP_AMM_PROGRAM_ID = Pubkey.from_string("pAMMBay6oceH9fJKBRHGP5D4bD4sWpmSwMn52FMfXEA")
PUMP_SWAP_GLOBAL_CONFIG = Pubkey.from_string("ADyA8hdefvWN2dbGGWFotbzWxrAvLW83WG6QCVXvJKqw")
PUMP_PROTOCOL_FEE_RECIPIENT = Pubkey.from_string("7VtfL8fvgNfhz17qKRMjzQEXgbdpnHHHQRh54R9jP2RJ")
PUMP_PROTOCOL_FEE_RECIPIENT_TOKEN_ACCOUNT = Pubkey.from_string("7GFUN3bWzJMKMRZ34JLsvcqdssDbXnp589SiE33KVwcC")
SYSTEM_TOKEN_PROGRAM = Pubkey.from_string("TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss623VQ5DA")
SYSTEM_PROGRAM = Pubkey.from_string("11111111111111111111111111111111")
SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM = Pubkey.from_string("ATokenGPvbdGVxr1b2hvZbsiqW5xWH25efTNsLJA8knL")
PUMP_SWAP_EVENT_AUTHORITY = Pubkey.from_string("GS4CU59F31iL7aR2Q8zVS8DRrcRnXX1yjQ66TqNVQnaR")
LAMPORTS_PER_SOL = 1_000_000_000
COMPUTE_UNIT_PRICE = 10_000 # Price in micro-lamports per compute unit
COMPUTE_UNIT_BUDGET = 100_000 # Maximum compute units to use
async def get_market_address_by_base_mint(client: AsyncClient, base_mint_address: Pubkey, amm_program_id: Pubkey) -> Pubkey:
"""Find the market address for a given token mint.
Searches for the AMM pool that contains the specified token mint as its base token
by querying program accounts with a filter for the base_mint field.
Args:
client: Solana RPC client instance
base_mint_address: Address of the token mint you want to find the market for
amm_program_id: Address of the AMM program
Returns:
The Pubkey of the market (AMM pool) for the token
"""
base_mint_bytes = bytes(base_mint_address)
offset = 43 # Offset where the base_mint field is stored in the account data structure
filters = [
MemcmpOpts(offset=offset, bytes=base_mint_bytes)
]
response = await client.get_program_accounts(
amm_program_id,
encoding="base64",
filters=filters
)
market_address = [account.pubkey for account in response.value][0]
return market_address
async def get_market_data(client: AsyncClient, market_address: Pubkey) -> dict:
"""Fetch and parse market data from the blockchain.
Retrieves and deserializes the binary data stored in the market account
into a structured dictionary containing key market information.
Args:
client: Solana RPC client instance
market_address: Address of the market (AMM pool) to fetch data for
Returns:
Dictionary containing the parsed market data
"""
response = await client.get_account_info(market_address, encoding="base64")
data = response.value.data
parsed_data: dict = {}
# Start after the 8-byte discriminator
offset = 8
# Define the structure of the market account data
fields = [
("pool_bump", "u8"),
("index", "u16"),
("creator", "pubkey"),
("base_mint", "pubkey"),
("quote_mint", "pubkey"),
("lp_mint", "pubkey"),
("pool_base_token_account", "pubkey"),
("pool_quote_token_account", "pubkey"),
("lp_supply", "u64"),
("coin_creator", "pubkey")
]
for field_name, field_type in fields:
if field_type == "pubkey":
value = data[offset:offset + 32]
parsed_data[field_name] = base58.b58encode(value).decode("utf-8")
offset += 32
elif field_type in {"u64", "i64"}:
value = struct.unpack("<Q", data[offset:offset + 8])[0] if field_type == "u64" else struct.unpack("<q", data[offset:offset + 8])[0]
parsed_data[field_name] = value
offset += 8
elif field_type == "u16":
value = struct.unpack("<H", data[offset:offset + 2])[0]
parsed_data[field_name] = value
offset += 2
elif field_type == "u8":
value = data[offset]
parsed_data[field_name] = value
offset += 1
return parsed_data
def find_coin_creator_vault(coin_creator: Pubkey) -> Pubkey:
"""Derive the Program Derived Address (PDA) for a coin creator's vault.
Calculates the deterministic PDA that serves as the vault authority
for a specific coin creator in the PUMP AMM protocol.
Args:
coin_creator: Pubkey of the coin creator account
Returns:
Pubkey of the derived coin creator vault authority
Note:
This vault is used to collect creator fees from token transactions
"""
derived_address, _ = Pubkey.find_program_address(
[
b"creator_vault",
bytes(coin_creator)
],
PUMP_AMM_PROGRAM_ID,
)
return derived_address
async def calculate_token_pool_price(client: AsyncClient, pool_base_token_account: Pubkey, pool_quote_token_account: Pubkey) -> float:
"""Calculate the current price of tokens in an AMM pool.
Fetches the balance of tokens in the pool and calculates the price ratio
between the base token and quote token (typically SOL).
Args:
client: Solana RPC client instance
pool_base_token_account: Address of the pool's base token account (your token)
pool_quote_token_account: Address of the pool's quote token account (SOL)
Returns:
The price of the base token in terms of the quote token (SOL per token)
"""
base_balance_resp = await client.get_token_account_balance(pool_base_token_account)
quote_balance_resp = await client.get_token_account_balance(pool_quote_token_account)
# Extract the UI amounts (human-readable with decimals)
base_amount = float(base_balance_resp.value.ui_amount)
quote_amount = float(quote_balance_resp.value.ui_amount)
token_price = quote_amount / base_amount
return token_price
async def buy_pump_swap(client: AsyncClient, pump_fun_amm_market: Pubkey, payer: Keypair,
base_mint: Pubkey, user_base_token_account: Pubkey,
user_quote_token_account: Pubkey, pool_base_token_account: Pubkey,
pool_quote_token_account: Pubkey, coin_creator_vault_authority: Pubkey,
coin_creator_vault_ata: Pubkey, sol_amount_to_spend: int, slippage: float = 0.25) -> str | None:
"""Buy tokens on the PUMP AMM with slippage protection.
Executes a token purchase on the PUMP AMM protocol, calculating the expected
token amount based on the current pool price and applying slippage protection.
Args:
client: Solana RPC client instance
pump_fun_amm_market: Address of the AMM market
payer: Keypair of the transaction signer and token buyer
base_mint: Address of the token mint being purchased
user_base_token_account: Address of the user's token account for receiving purchased tokens
user_quote_token_account: Address of the user's SOL token account
pool_base_token_account: Address of the pool's token account for the token being purchased
pool_quote_token_account: Address of the pool's SOL token account
coin_creator_vault_authority: Address of the coin creator's vault authority
coin_creator_vault_ata: Address of the coin creator's associated token account for fees
sol_amount_to_spend: Amount of SOL to spend on the purchase (in SOL, not lamports)
slippage: Maximum acceptable price slippage, as a decimal (0.25 = 25%)
Returns:
Transaction signature if successful, None otherwise
"""
# Calculate token price
token_price_sol = await calculate_token_pool_price(client, pool_base_token_account, pool_quote_token_account)
print(f"Token price in SOL: {token_price_sol:.10f} SOL")
# Calculate maximum SOL input with slippage protection
base_amount_out = int((sol_amount_to_spend / token_price_sol) * 10**TOKEN_DECIMALS)
slippage_factor = 1 + slippage
max_sol_input = int((sol_amount_to_spend * slippage_factor) * LAMPORTS_PER_SOL)
print(f"Buying {base_amount_out / (10**TOKEN_DECIMALS):.10f} tokens")
print(f"Maximum SOL input: {max_sol_input / LAMPORTS_PER_SOL:.10f} SOL")
# Define all accounts needed for the buy instruction
accounts = [
AccountMeta(pubkey=pump_fun_amm_market, is_signer=False, is_writable=False),
AccountMeta(pubkey=payer.pubkey(), is_signer=True, is_writable=True),
AccountMeta(pubkey=PUMP_SWAP_GLOBAL_CONFIG, is_signer=False, is_writable=True),
AccountMeta(pubkey=base_mint, is_signer=False, is_writable=False),
AccountMeta(pubkey=SOL, is_signer=False, is_writable=False),
AccountMeta(pubkey=user_base_token_account, is_signer=False, is_writable=True),
AccountMeta(pubkey=user_quote_token_account, is_signer=False, is_writable=True),
AccountMeta(pubkey=pool_base_token_account, is_signer=False, is_writable=True),
AccountMeta(pubkey=pool_quote_token_account, is_signer=False, is_writable=True),
AccountMeta(pubkey=PUMP_PROTOCOL_FEE_RECIPIENT, is_signer=False, is_writable=False),
AccountMeta(pubkey=PUMP_PROTOCOL_FEE_RECIPIENT_TOKEN_ACCOUNT, is_signer=False, is_writable=True),
AccountMeta(pubkey=SYSTEM_TOKEN_PROGRAM, is_signer=False, is_writable=False),
AccountMeta(pubkey=SYSTEM_TOKEN_PROGRAM, is_signer=False, is_writable=False),
AccountMeta(pubkey=SYSTEM_PROGRAM, is_signer=False, is_writable=False),
AccountMeta(pubkey=SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM, is_signer=False, is_writable=False),
AccountMeta(pubkey=PUMP_SWAP_EVENT_AUTHORITY, is_signer=False, is_writable=False),
AccountMeta(pubkey=PUMP_AMM_PROGRAM_ID, is_signer=False, is_writable=False),
AccountMeta(pubkey=coin_creator_vault_ata, is_signer=False, is_writable=True),
AccountMeta(pubkey=coin_creator_vault_authority, is_signer=False, is_writable=False),
]
data = BUY_DISCRIMINATOR + struct.pack("<Q", base_amount_out) + struct.pack("<Q", max_sol_input)
compute_limit_ix = set_compute_unit_limit(COMPUTE_UNIT_BUDGET)
compute_price_ix = set_compute_unit_price(COMPUTE_UNIT_PRICE)
idempotent_ata_ix = create_idempotent_associated_token_account(
payer.pubkey(),
payer.pubkey(),
base_mint,
SYSTEM_TOKEN_PROGRAM
)
buy_ix = Instruction(PUMP_AMM_PROGRAM_ID, data, accounts)
blockhash_resp = await client.get_latest_blockhash()
recent_blockhash = blockhash_resp.value.blockhash
msg = Message.new_with_blockhash(
[compute_limit_ix, compute_price_ix, idempotent_ata_ix, buy_ix],
payer.pubkey(),
recent_blockhash
)
tx_buy = VersionedTransaction(
message=msg,
keypairs=[payer]
)
try:
tx_sig = await client.send_transaction(
tx_buy,
opts=TxOpts(skip_preflight=True, preflight_commitment=Confirmed),
)
tx_hash = tx_sig.value
print(f"Transaction sent: https://explorer.solana.com/tx/{tx_hash}")
await client.confirm_transaction(tx_hash, commitment="confirmed")
print("Transaction confirmed")
return tx_hash
except Exception as e:
print(f"Error sending transaction: {e!s}")
return None
async def main():
"""Main function to execute the token buying process."""
sol_amount_to_spend = 0.000001
async with AsyncClient(RPC_ENDPOINT) as client:
market_address = await get_market_address_by_base_mint(client, TOKEN_MINT, PUMP_AMM_PROGRAM_ID)
market_data = await get_market_data(client, market_address)
coin_creator_vault_authority = find_coin_creator_vault(Pubkey.from_string(market_data["coin_creator"]))
coin_creator_vault_ata = get_associated_token_address(coin_creator_vault_authority, SOL)
await buy_pump_swap(
client,
market_address,
PAYER,
TOKEN_MINT,
get_associated_token_address(PAYER.pubkey(), TOKEN_MINT),
get_associated_token_address(PAYER.pubkey(), SOL),
Pubkey.from_string(market_data["pool_base_token_account"]),
Pubkey.from_string(market_data["pool_quote_token_account"]),
coin_creator_vault_authority,
coin_creator_vault_ata,
sol_amount_to_spend,
SLIPPAGE,
)
if __name__ == "__main__":
asyncio.run(main())
@@ -28,7 +28,7 @@ load_dotenv()
# Configuration constants
RPC_ENDPOINT = os.environ.get("SOLANA_NODE_RPC_ENDPOINT")
TOKEN_MINT = Pubkey.from_string("8XNrSusWrzYpizYXJb5yeB66AWX1cfQ86SBJFqVTpump")
TOKEN_MINT = Pubkey.from_string("...")
PRIVATE_KEY = base58.b58decode(os.environ.get("SOLANA_PRIVATE_KEY"))
PAYER = Keypair.from_bytes(PRIVATE_KEY)
SLIPPAGE = 0.25 # Slippage tolerance (25%) - the maximum price movement you'll accept
@@ -108,6 +108,7 @@ async def get_market_data(client: AsyncClient, market_address: Pubkey) -> dict:
("pool_base_token_account", "pubkey"),
("pool_quote_token_account", "pubkey"),
("lp_supply", "u64"),
("coin_creator", "pubkey")
]
for field_name, field_type in fields:
@@ -130,6 +131,30 @@ async def get_market_data(client: AsyncClient, market_address: Pubkey) -> dict:
return parsed_data
def find_coin_creator_vault(coin_creator: Pubkey) -> Pubkey:
"""Derive the Program Derived Address (PDA) for a coin creator's vault.
Calculates the deterministic PDA that serves as the vault authority
for a specific coin creator in the PUMP AMM protocol.
Args:
coin_creator: Pubkey of the coin creator account
Returns:
Pubkey of the derived coin creator vault authority
Note:
This vault is used to collect creator fees from token transactions
"""
derived_address, _ = Pubkey.find_program_address(
[
b"creator_vault",
bytes(coin_creator)
],
PUMP_AMM_PROGRAM_ID,
)
return derived_address
async def calculate_token_pool_price(client: AsyncClient, pool_base_token_account: Pubkey, pool_quote_token_account: Pubkey) -> float:
"""Calculate the price of tokens in the pool.
@@ -186,7 +211,8 @@ def create_ata_idempotent_ix(payer_pubkey: Pubkey) -> Instruction:
async def sell_pump_swap(client: AsyncClient, pump_fun_amm_market: Pubkey, payer: Keypair,
base_mint: Pubkey, user_base_token_account: Pubkey,
user_quote_token_account: Pubkey, pool_base_token_account: Pubkey,
pool_quote_token_account: Pubkey, slippage: float = 0.25) -> str | None:
pool_quote_token_account: Pubkey, coin_creator_vault_authority: Pubkey,
coin_creator_vault_ata: Pubkey, slippage: float = 0.25) -> str | None:
"""Sell tokens on the PUMP AMM.
This function sells all tokens in the user's token account with the specified slippage tolerance.
@@ -200,6 +226,8 @@ async def sell_pump_swap(client: AsyncClient, pump_fun_amm_market: Pubkey, payer
user_quote_token_account: Address of the user's SOL token account
pool_base_token_account: Address of the pool's token account for the token being sold
pool_quote_token_account: Address of the pool's SOL token account
coin_creator_vault_authority: Address of the coin creator's vault authority
coin_creator_vault_ata: Address of the coin creator's associated token account for fees
slippage: Maximum acceptable price slippage, as a decimal (0.25 = 25%)
Returns:
@@ -245,6 +273,8 @@ async def sell_pump_swap(client: AsyncClient, pump_fun_amm_market: Pubkey, payer
AccountMeta(pubkey=SYSTEM_ASSOCIATED_TOKEN_ACCOUNT_PROGRAM, is_signer=False, is_writable=False),
AccountMeta(pubkey=PUMP_SWAP_EVENT_AUTHORITY, is_signer=False, is_writable=False),
AccountMeta(pubkey=PUMP_AMM_PROGRAM_ID, is_signer=False, is_writable=False),
AccountMeta(pubkey=coin_creator_vault_ata, is_signer=False, is_writable=True),
AccountMeta(pubkey=coin_creator_vault_authority, is_signer=False, is_writable=False),
]
data = SELL_DISCRIMINATOR + struct.pack("<Q", amount) + struct.pack("<Q", min_sol_output)
@@ -294,6 +324,8 @@ async def main():
async with AsyncClient(RPC_ENDPOINT) as client:
market_address = await get_market_address_by_base_mint(client, TOKEN_MINT, PUMP_AMM_PROGRAM_ID)
market_data = await get_market_data(client, market_address)
coin_creator_vault_authority = find_coin_creator_vault(Pubkey.from_string(market_data["coin_creator"]))
coin_creator_vault_ata = get_associated_token_address(coin_creator_vault_authority, SOL)
await sell_pump_swap(
client,
@@ -304,6 +336,8 @@ async def main():
get_associated_token_address(PAYER.pubkey(), SOL),
Pubkey.from_string(market_data["pool_base_token_account"]),
Pubkey.from_string(market_data["pool_quote_token_account"]),
coin_creator_vault_authority,
coin_creator_vault_ata,
SLIPPAGE
)