Meteora logo

Meteora

Organization
sendaifun
meteora

Complete Meteora DeFi SDK suite for building liquidity pools, AMMs, bonding curves, vaults, token launches, and zap operations on Solana. Use when integrating DLMM, DAMM v2, DAMM v1, Dynamic Bonding Curves, Alpha Vaults, Zap, or Stake-for-Fee functionality.

Overview

Publishersendaifun
Repositoryskills
Skill namemeteora
Stars
128
Forks
81
Bundled files
32
LicenseApache-2.0
Links
  • Markdown instructions

    A SKILL.md file the model loads on demand, so it only costs tokens when a request actually matches.

  • Works with any LLM

    AI skills are plain Markdown, not provider-specific code, so this works with GPT, Claude, Gemini, Grok, or a local model.

  • 32 bundled files

    Scripts, templates, and references the model can read while it works. Files are read-only and never executed.

  • Open source

    Published by sendaifun on GitHub. Read the source before you install it.

Installation

Install the Meteora AI skill in TypingMind to use it with any LLM, or drop it into another agent that reads SKILL.md.

1

Install in TypingMind

TypingMind installs a skill straight from its GitHub folder — it reads SKILL.md, bundles the resource files, and stores the result locally.

  1. Open the app and go to Plugins → Skills.
  2. Choose "Install from GitHub".
  3. Paste the skill folder URL below and confirm.
  4. Enable the skill in any chat where you want it available.
Plugins → Skills → Add skill → From GitHub URL, then paste the folder URL and press Continue.
2

Install in another agent

Any agent that reads the Agent Skills format can use this skill — copy the folder into that agent's skills directory.

Claude Code — .claude/skills
git clone --depth 1 https://github.com/sendaifun/skills.git /tmp/skills
mkdir -p .claude/skills
cp -r /tmp/skills/skills/meteora .claude/skills/meteora
Restart Claude Code after copying so it picks up the new skill.

Use it in TypingMind

Enable Meteora in any TypingMind chat and the model takes it from there. Its name and description sit in the system prompt, and the moment a request matches, the model loads the full instructions itself — you never invoke it by hand, and it costs no tokens until it is actually used.

The model loads Meteora on its own as soon as a request matches it.

Works with any AI model

AI skills are plain Markdown instructions rather than provider-specific code, so Meteora is not tied to the model it was written for. Install it once in TypingMind and use it with GPT-5, Claude, Gemini, Grok, DeepSeek, Mistral, Llama, or a local model you run yourself — all on your own API keys.

  • Loaded only when it is needed

    The system prompt carries just the name and description. The instructions are fetched on the first matching request, so an idle skill costs nothing.

  • Switch models mid-chat

    Because the skill is instructions rather than code, changing model does not break it — the next model reads the same SKILL.md.

Skill instructions

This is the SKILL.md content the model loads. Read it before installing — a skill is instructions your model will follow.

Meteora Protocol Development Guide

A comprehensive guide for building Solana DeFi applications with Meteora's suite of SDKs - the leading liquidity infrastructure on Solana.

What is Meteora?

Meteora is Solana's premier liquidity layer, powering the infrastructure that connects liquidity providers (LPs), token launchers, and traders. It offers:

  • $2B+ Total Value Locked across all protocols
  • Multiple AMM Types - DLMM (concentrated), DAMM v2/v1 (constant product)
  • Token Launch Infrastructure - Dynamic Bonding Curves, Alpha Vault anti-bot protection
  • Yield Optimization - Dynamic Vaults, Stake-for-Fee (M3M3)
  • Developer Tools - TypeScript/Go SDKs, CLI tools, Zap for single-token entry

Why Use Meteora?

FeatureBenefit
Low Pool Creation Cost0.022 SOL (vs 0.25+ SOL on competitors)
Dynamic FeesVolatility-adjusted fees maximize LP returns
Anti-Snipe ProtectionFee schedulers and Alpha Vault prevent bot exploitation
Token-2022 SupportFull Token Extensions compatibility
PermissionlessCreate pools, farms, and launches without approval
Auto-GraduationBonding curves auto-migrate to AMM pools

Overview

Meteora provides a complete DeFi infrastructure stack on Solana:

  • DLMM (Dynamic Liquidity Market Maker): Concentrated liquidity with dynamic fees
  • DAMM v2 (Dynamic AMM): Next-generation constant product AMM with position NFTs
  • DAMM v1 (Legacy AMM): Original constant product AMM with stable/weighted pools
  • Dynamic Bonding Curve: Customizable token launch curves with auto-graduation
  • Dynamic Vault: Yield-optimized token vaults
  • Alpha Vault: Anti-bot protection for token launches
  • Stake-for-Fee (M3M3): Staking rewards from trading fees
  • Zap SDK: Single-token entry/exit for liquidity positions
  • Presale Vault (Beta): Token presale infrastructure

Quick Start

Installation

bash
# DLMM SDK - Concentrated liquidity
npm install @meteora-ag/dlmm @coral-xyz/anchor @solana/web3.js

# DAMM v2 SDK - Next-gen constant product AMM
npm install @meteora-ag/cp-amm-sdk @solana/web3.js

# DAMM v1 SDK - Legacy AMM (stable pools, weighted pools)
npm install @meteora-ag/dynamic-amm @solana/web3.js @coral-xyz/anchor

# Dynamic Bonding Curve SDK - Token launches
npm install @meteora-ag/dynamic-bonding-curve-sdk

# Vault SDK - Yield optimization
npm install @meteora-ag/vault-sdk @coral-xyz/anchor @solana/web3.js @solana/spl-token

# Alpha Vault SDK - Anti-bot protection
npm install @meteora-ag/alpha-vault

# Stake-for-Fee (M3M3) SDK - Fee staking
npm install @meteora-ag/m3m3 @coral-xyz/anchor @solana/web3.js @solana/spl-token

# Zap SDK - Single-token entry/exit (requires Jupiter API key)
npm install @meteora-ag/zap-sdk

# Pool Farms SDK - Farm creation and staking
npm install @meteora-ag/farming

Program Addresses

ProgramMainnet/Devnet Address
DLMMLBUZKhRxPF3XUpBCjp4YzTKgLccjZhTSDM9YuVaPwxo
DAMM v2cpamdpZCGKUy5JxQXB4dcpGPiikHawvSWAd6mEn1sGG
DAMM v1Eo7WjKq67rjJQSZxS6z3YkapzY3eMj6Xy8X5EQVn5UaB
Dynamic Bonding Curvedbcij3LWUppWqq96dh6gJWwBifmcGfLSB5D4DuSMaqN
Dynamic Vault24Uqj9JCLxUeoC3hGfh5W3s9FM9uCHDS2SG3LYwBpyTi
Stake-for-FeeFEESngU3neckdwib9X3KWqdL7Mjmqk9XNp3uh5JbP4KP
ZapzapvX9M3uf5pvy4wRPAbQgdQsM1xmuiFnkfHKPvwMiz

DLMM SDK (Dynamic Liquidity Market Maker)

The DLMM SDK provides programmatic access to Meteora's concentrated liquidity protocol with dynamic fees based on volatility.

Basic Setup

typescript
import { Connection, PublicKey, Keypair } from '@solana/web3.js';
import DLMM from '@meteora-ag/dlmm';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const poolAddress = new PublicKey('POOL_ADDRESS');

// Create DLMM instance for existing pool
const dlmm = await DLMM.create(connection, poolAddress);

// Create multiple pools
const dlmmPools = await DLMM.createMultiple(connection, [pool1, pool2, pool3]);

Core Operations

Get Active Bin (Current Price)
typescript
const activeBin = await dlmm.getActiveBin();
console.log('Active Bin ID:', activeBin.binId);
console.log('Price:', activeBin.price);
console.log('X Amount:', activeBin.xAmount.toString());
console.log('Y Amount:', activeBin.yAmount.toString());
Price and Bin Conversions
typescript
// Get price from bin ID
const price = dlmm.getPriceOfBinByBinId(binId);

// Get bin ID from price
const binId = dlmm.getBinIdFromPrice(price, true); // true = round down

// Convert to/from lamport representation
const lamportPrice = dlmm.toPricePerLamport(21.23);
const realPrice = dlmm.fromPricePerLamport(lamportPrice);

// Get bins in a range
const bins = await dlmm.getBinsBetweenLowerAndUpperBound(minBinId, maxBinId);

// Get bins around active bin
const surroundingBins = await dlmm.getBinsAroundActiveBin(10); // 10 bins each side
Swap Operations
typescript
import { BN } from '@coral-xyz/anchor';

// Get swap quote
const swapAmount = new BN(1_000_000); // 1 USDC (6 decimals)
const swapForY = true; // Swap X for Y
const slippageBps = 100; // 1% slippage

const binArrays = await dlmm.getBinArrayForSwap(swapForY);
const swapQuote = dlmm.swapQuote(swapAmount, swapForY, slippageBps, binArrays);

console.log('Amount In:', swapQuote.consumedInAmount.toString());
console.log('Amount Out:', swapQuote.outAmount.toString());
console.log('Min Amount Out:', swapQuote.minOutAmount.toString());
console.log('Price Impact:', swapQuote.priceImpact);
console.log('Fee:', swapQuote.fee.toString());

// Execute swap
const swapTx = await dlmm.swap({
  inToken: tokenXMint,
  outToken: tokenYMint,
  inAmount: swapAmount,
  minOutAmount: swapQuote.minOutAmount,
  lbPair: dlmm.pubkey,
  user: wallet.publicKey,
  binArraysPubkey: swapQuote.binArraysPubkey,
});

const txHash = await sendAndConfirmTransaction(connection, swapTx, [wallet]);
Liquidity Management
typescript
import { StrategyType } from '@meteora-ag/dlmm';

// Get user positions
const positions = await dlmm.getPositionsByUserAndLbPair(wallet.publicKey);

// Initialize position and add liquidity with strategy
const newPositionTx = await dlmm.initializePositionAndAddLiquidityByStrategy({
  positionPubKey: newPositionKeypair.publicKey,
  user: wallet.publicKey,
  totalXAmount: new BN(100_000_000), // 100 tokens
  totalYAmount: new BN(100_000_000),
  strategy: {
    maxBinId: activeBin.binId + 10,
    minBinId: activeBin.binId - 10,
    strategyType: StrategyType.SpotBalanced,
  },
});

// Add liquidity to existing position
const addLiquidityTx = await dlmm.addLiquidityByStrategy({
  positionPubKey: existingPosition.publicKey,
  user: wallet.publicKey,
  totalXAmount: new BN(50_000_000),
  totalYAmount: new BN(50_000_000),
  strategy: {
    maxBinId: activeBin.binId + 5,
    minBinId: activeBin.binId - 5,
    strategyType: StrategyType.SpotBalanced,
  },
});

// Remove liquidity
const removeLiquidityTx = await dlmm.removeLiquidity({
  position: position.publicKey,
  user: wallet.publicKey,
  binIds: position.positionData.positionBinData.map(b => b.binId),
  bps: new BN(10000), // 100% (basis points)
  shouldClaimAndClose: true,
});
Claim Fees and Rewards
typescript
// Get claimable fees
const claimableFees = await DLMM.getClaimableSwapFee(connection, position.publicKey);
console.log('Claimable Fee X:', claimableFees.feeX.toString());
console.log('Claimable Fee Y:', claimableFees.feeY.toString());

// Get claimable LM rewards
const claimableRewards = await DLMM.getClaimableLMReward(connection, position.publicKey);

// Claim swap fees
const claimFeeTx = await dlmm.claimSwapFee({
  owner: wallet.publicKey,
  position: position.publicKey,
});

// Claim all fees from multiple positions
const claimAllFeesTx = await dlmm.claimAllSwapFee({
  owner: wallet.publicKey,
  positions: positions.map(p => p.publicKey),
});

// Claim LM rewards
const claimRewardTx = await dlmm.claimLMReward({
  owner: wallet.publicKey,
  position: position.publicKey,
});

// Claim all rewards
const claimAllTx = await dlmm.claimAllRewards({
  owner: wallet.publicKey,
  positions: positions.map(p => p.publicKey),
});
Position Strategies
typescript
import { StrategyType } from '@meteora-ag/dlmm';

// Available strategies
StrategyType.SpotOneSide      // Single-sided liquidity at current price
StrategyType.CurveOneSide     // Curve distribution on one side
StrategyType.BidAskOneSide    // Bid/ask distribution on one side
StrategyType.SpotBalanced     // Balanced around current price
StrategyType.CurveBalanced    // Curve distribution around current price
StrategyType.BidAskBalanced   // Bid/ask distribution around current price
StrategyType.SpotImBalanced   // Imbalanced spot distribution
StrategyType.CurveImBalanced  // Imbalanced curve distribution
StrategyType.BidAskImBalanced // Imbalanced bid/ask distribution

DAMM v2 SDK (CP-AMM)

The DAMM v2 SDK provides a comprehensive interface for Meteora's next-generation constant product AMM with significant improvements over V1.

Key DAMM V2 Features (New in 2025)

FeatureDescription
Dynamic FeesOptional fee scheduler with anti-sniper mechanism
Position NFTsLPs receive transferrable NFT instead of LP token
Token2022 SupportFull support for Token Extensions standard
Locked LiquidityBuilt-in liquidity locking options
Permissionless FarmsCreate farms without protocol approval
Lower CostsPool creation costs only 0.022 SOL (vs 0.25 SOL on old DLMM)

Fee Scheduler (Anti-Snipe)

The fee scheduler starts with high swap fees that taper over time, protecting against sniping:

typescript
// Create pool with fee scheduler
const createPoolTx = await cpAmm.createCustomPool({
  // ... other params
  poolFees: {
    baseFee: {
      cliffFeeNumerator: new BN(10000000), // 1% initial fee
      numberOfPeriod: 10,
      reductionFactor: new BN(500000),     // Reduce by 0.05% each period
      periodFrequency: new BN(300),        // Every 5 minutes
      feeSchedulerMode: 1,                 // Linear reduction
    },
    // ...
  },
});

Basic Setup

typescript
import { Connection } from '@solana/web3.js';
import { CpAmm } from '@meteora-ag/cp-amm-sdk';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const cpAmm = new CpAmm(connection);

Pool Management

Create Pool
typescript
// Create standard pool from config
const createPoolTx = await cpAmm.createPool({
  creator: wallet.publicKey,
  configAddress: configPubkey,
  tokenAMint,
  tokenBMint,
  tokenAAmount: new BN(1_000_000_000),
  tokenBAmount: new BN(1_000_000_000),
});

// Create custom pool with specific parameters
const createCustomPoolTx = await cpAmm.createCustomPool({
  creator: wallet.publicKey,
  tokenAMint,
  tokenBMint,
  tokenAAmount: new BN(1_000_000_000),
  tokenBAmount: new BN(1_000_000_000),
  poolFees: {
    baseFee: {
      cliffFeeNumerator: new BN(2500000), // 0.25%
      numberOfPeriod: 0,
      reductionFactor: new BN(0),
      periodFrequency: new BN(0),
      feeSchedulerMode: 0,
    },
    dynamicFee: null,
    protocolFeePercent: 20,
    partnerFeePercent: 0,
    referralFeePercent: 20,
    dynamicFeeConfig: null,
  },
  hasAlphaVault: false,
  activationType: 0, // 0 = slot, 1 = timestamp
  activationPoint: null, // null = immediate
  collectFeeMode: 0,
});
Fetch Pool State
typescript
// Fetch single pool
const poolState = await cpAmm.fetchPoolState(poolAddress);
console.log('Token A Vault:', poolState.tokenAVault.toString());
console.log('Token B Vault:', poolState.tokenBVault.toString());
console.log('Sqrt Price:', poolState.sqrtPrice.toString());
console.log('Liquidity:', poolState.liquidity.toString());

// Fetch all pools
const allPools = await cpAmm.getAllPools();

// Check if pool exists
const exists = await cpAmm.isPoolExist(tokenAMint, tokenBMint);

Position Operations

Create and Manage Positions
typescript
// Create position
const createPositionTx = await cpAmm.createPosition({
  owner: wallet.publicKey,
  pool: poolAddress,
});

// Add liquidity
const addLiquidityTx = await cpAmm.addLiquidity({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
  tokenAAmountIn: new BN(100_000_000),
  tokenBAmountIn: new BN(100_000_000),
  liquidityMin: new BN(0),
});

// Get deposit quote
const depositQuote = cpAmm.getDepositQuote({
  poolState,
  tokenAAmount: new BN(100_000_000),
  tokenBAmount: new BN(100_000_000),
  slippageBps: 100,
});

// Remove liquidity
const removeLiquidityTx = await cpAmm.removeLiquidity({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
  liquidityAmount: new BN(50_000_000),
  tokenAAmountMin: new BN(0),
  tokenBAmountMin: new BN(0),
});

// Get withdraw quote
const withdrawQuote = cpAmm.getWithdrawQuote({
  poolState,
  positionState,
  liquidityAmount: new BN(50_000_000),
  slippageBps: 100,
});

// Merge positions
const mergePositionTx = await cpAmm.mergePosition({
  owner: wallet.publicKey,
  pool: poolAddress,
  sourcePositions: [position1, position2],
  destinationPosition: destPosition,
});

// Split position
const splitPositionTx = await cpAmm.splitPosition({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
  percentage: 50, // Split 50%
  newPosition: newPositionKeypair.publicKey,
});

Swapping

typescript
import { SwapMode } from '@meteora-ag/cp-amm-sdk';

// Available swap modes
SwapMode.ExactIn     // Specify exact input amount
SwapMode.ExactOut    // Specify exact output amount
SwapMode.PartialFill // Allow partial fills

// Get swap quote
const quote = cpAmm.getQuote({
  poolState,
  inputTokenMint: tokenAMint,
  outputTokenMint: tokenBMint,
  amount: new BN(1_000_000),
  slippageBps: 100,
  swapMode: SwapMode.ExactIn,
});

console.log('Input Amount:', quote.inputAmount.toString());
console.log('Output Amount:', quote.outputAmount.toString());
console.log('Min Output:', quote.minimumOutputAmount.toString());
console.log('Price Impact:', quote.priceImpact);
console.log('Fee:', quote.fee.toString());

// Execute swap
const swapTx = await cpAmm.swap({
  payer: wallet.publicKey,
  pool: poolAddress,
  inputTokenMint: tokenAMint,
  outputTokenMint: tokenBMint,
  amountIn: new BN(1_000_000),
  minimumAmountOut: quote.minimumOutputAmount,
  referralAccount: null,
});

Fee and Reward Management

typescript
// Claim position fees
const claimFeeTx = await cpAmm.claimPositionFee({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
});

// Initialize reward (pool creator only)
const initRewardTx = await cpAmm.initializeReward({
  pool: poolAddress,
  rewardMint,
  rewardDuration: new BN(86400 * 7), // 7 days
  funder: wallet.publicKey,
});

// Fund reward
const fundRewardTx = await cpAmm.fundReward({
  pool: poolAddress,
  rewardMint,
  amount: new BN(1_000_000_000),
  funder: wallet.publicKey,
});

// Claim rewards
const claimRewardTx = await cpAmm.claimReward({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
  rewardIndex: 0,
});

Position Locking and Vesting

typescript
// Lock position with vesting schedule
const lockPositionTx = await cpAmm.lockPosition({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
  vestingDuration: new BN(86400 * 30), // 30 days
  cliffDuration: new BN(86400 * 7),    // 7 day cliff
});

// Permanent lock (irreversible)
const permanentLockTx = await cpAmm.permanentLockPosition({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
  liquidityAmount: new BN(50_000_000), // Amount to permanently lock
});

// Refresh vesting (unlock available tokens)
const refreshVestingTx = await cpAmm.refreshVesting({
  owner: wallet.publicKey,
  pool: poolAddress,
  position: positionAddress,
});

// Check if position is locked
const isLocked = cpAmm.isLockedPosition(positionState);

Helper Functions

typescript
// Price conversions
const price = cpAmm.getPriceFromSqrtPrice(sqrtPrice, tokenADecimals, tokenBDecimals);
const sqrtPrice = cpAmm.getSqrtPriceFromPrice(price, tokenADecimals, tokenBDecimals);

// Fee conversions
const feeNumerator = cpAmm.bpsToFeeNumerator(25); // 0.25% = 25 bps
const bps = cpAmm.feeNumeratorToBps(feeNumerator);

// Slippage calculations
const minAmount = cpAmm.getAmountWithSlippage(amount, slippageBps, false);
const maxAmount = cpAmm.getMaxAmountWithSlippage(amount, slippageBps);

// Get price impact
const priceImpact = cpAmm.getPriceImpact(amountIn, amountOut, currentPrice);

// Get liquidity delta
const liquidityDelta = cpAmm.getLiquidityDelta({
  poolState,
  tokenAAmount: new BN(100_000_000),
  tokenBAmount: new BN(100_000_000),
});

Dynamic Bonding Curve SDK

The Dynamic Bonding Curve SDK enables building customizable token launches with automatic graduation to DAMM.

Basic Setup

typescript
import { Connection } from '@solana/web3.js';
import { DynamicBondingCurve } from '@meteora-ag/dynamic-bonding-curve-sdk';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const dbc = new DynamicBondingCurve(connection, 'confirmed');

Token Launch Flow

The DBC follows a 5-step progression:

  1. Partner Configuration: Set up pool parameters
  2. Pool Creation: Creator launches the bonding curve
  3. Trading Phase: Users buy/sell on the curve
  4. Graduation: Auto-migrate to DAMM v1 or v2 when threshold is met
  5. Post-Graduation: Trade on the graduated AMM

Create Pool with Bonding Curve

typescript
// Create a new bonding curve pool
const createPoolTx = await dbc.createPool({
  creator: wallet.publicKey,
  baseMint: baseTokenMint,
  quoteMint: quoteTokenMint, // Usually SOL or USDC
  config: configAddress,
  baseAmount: new BN(1_000_000_000_000), // Total supply
  quoteAmount: new BN(0), // Initial quote (usually 0)
  name: 'My Token',
  symbol: 'MTK',
  uri: 'https://arweave.net/metadata.json',
});

Trading on Bonding Curve

typescript
// Get quote for buying tokens
const buyQuote = await dbc.getBuyQuote({
  pool: poolAddress,
  quoteAmount: new BN(1_000_000_000), // 1 SOL
});

console.log('Tokens to receive:', buyQuote.baseAmount.toString());
console.log('Price per token:', buyQuote.price.toString());

// Execute buy
const buyTx = await dbc.buy({
  payer: wallet.publicKey,
  pool: poolAddress,
  quoteAmount: new BN(1_000_000_000),
  minBaseAmount: buyQuote.minBaseAmount,
});

// Get quote for selling tokens
const sellQuote = await dbc.getSellQuote({
  pool: poolAddress,
  baseAmount: new BN(1_000_000), // Tokens to sell
});

// Execute sell
const sellTx = await dbc.sell({
  payer: wallet.publicKey,
  pool: poolAddress,
  baseAmount: new BN(1_000_000),
  minQuoteAmount: sellQuote.minQuoteAmount,
});

Pool Graduation

typescript
// Check graduation status
const poolState = await dbc.fetchPoolState(poolAddress);
const isGraduated = poolState.graduated;
const graduationThreshold = poolState.graduationThreshold;
const currentMarketCap = poolState.currentMarketCap;

// Manual migration to DAMM v2 (if auto-graduation not triggered)
const migrateTx = await dbc.migrateToDAMMV2({
  pool: poolAddress,
  payer: wallet.publicKey,
});

// For DAMM v1 migration (more steps required)
// 1. Create metadata
const createMetadataTx = await dbc.createMetadata({
  pool: poolAddress,
  payer: wallet.publicKey,
});

// 2. Execute migration
const migrateToDammV1Tx = await dbc.migrateToDAMMV1({
  pool: poolAddress,
  payer: wallet.publicKey,
});

// 3. Lock LP tokens (optional)
const lockLpTx = await dbc.lockLpTokens({
  pool: poolAddress,
  payer: wallet.publicKey,
  lockDuration: new BN(86400 * 365), // 1 year
});

// 4. Claim LP tokens after lock expires
const claimLpTx = await dbc.claimLpTokens({
  pool: poolAddress,
  payer: wallet.publicKey,
});

Fee Configuration Options

The DBC supports multiple fee tier configurations:

TierFee (bps)Use Case
125Standard launches
250Community tokens
3100Meme tokens
4200High volatility
5400Experimental
6600Maximum protection

Dynamic Vault SDK

The Vault SDK provides yield-optimized token storage with automatic strategy management.

Basic Setup

typescript
import { Connection, PublicKey } from '@solana/web3.js';
import { VaultImpl } from '@meteora-ag/vault-sdk';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const tokenMint = new PublicKey('TOKEN_MINT_ADDRESS');

// Create vault instance
const vault = await VaultImpl.create(connection, tokenMint);

// With affiliate ID (for partner integrations)
const vaultWithAffiliate = await VaultImpl.create(connection, tokenMint, {
  affiliateId: new PublicKey('PARTNER_KEY'),
});

Vault Operations

typescript
// Get vault information
const lpSupply = vault.lpSupply; // Or use vault.getVaultSupply() to refresh
const withdrawableAmount = await vault.getWithdrawableAmount();

console.log('Total LP Supply:', lpSupply.toString());
console.log('Locked Amount:', withdrawableAmount.locked.toString());
console.log('Unlocked Amount:', withdrawableAmount.unlocked.toString());

// Get user balance
const userLpBalance = await vault.getUserBalance(wallet.publicKey);

// Deposit tokens
const depositTx = await vault.deposit(wallet.publicKey, new BN(1_000_000_000));
await sendAndConfirmTransaction(connection, depositTx, [wallet]);

// Withdraw tokens
const withdrawTx = await vault.withdraw(wallet.publicKey, new BN(500_000_000));
await sendAndConfirmTransaction(connection, withdrawTx, [wallet]);

Share Calculations

typescript
import { getAmountByShare, getUnmintAmount } from '@meteora-ag/vault-sdk';

// Convert LP tokens to underlying amount
const underlyingAmount = getAmountByShare(
  userLpBalance,      // User's LP tokens
  unlockedAmount,     // Vault's unlocked balance
  lpSupply            // Total LP supply
);

// Calculate LP tokens needed for specific withdrawal
const lpNeeded = getUnmintAmount(
  targetWithdrawAmount, // Amount to withdraw
  unlockedAmount,       // Vault's unlocked balance
  lpSupply              // Total LP supply
);

Affiliate Integration

typescript
// Get affiliate info
const affiliateInfo = await vault.getAffiliateInfo();
console.log('Partner:', affiliateInfo.partner.toString());
console.log('Fee Rate:', affiliateInfo.feeRate);
console.log('Outstanding Fee:', affiliateInfo.outstandingFee.toString());

Alpha Vault SDK

The Alpha Vault SDK provides anti-bot protection for token launches, ensuring fair distribution.

Basic Setup

typescript
import { Connection, PublicKey } from '@solana/web3.js';
import { AlphaVault } from '@meteora-ag/alpha-vault';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const vaultAddress = new PublicKey('VAULT_ADDRESS');

const alphaVault = await AlphaVault.create(connection, vaultAddress);

Vault Operations

typescript
// Get vault state
const vaultState = await alphaVault.getVaultState();
console.log('Total Deposited:', vaultState.totalDeposited.toString());
console.log('Max Deposit:', vaultState.maxDeposit.toString());
console.log('Start Time:', vaultState.startTime.toString());
console.log('End Time:', vaultState.endTime.toString());

// Deposit to vault (during deposit window)
const depositTx = await alphaVault.deposit({
  payer: wallet.publicKey,
  amount: new BN(1_000_000_000), // 1 SOL
});

// Withdraw from vault (if allowed)
const withdrawTx = await alphaVault.withdraw({
  payer: wallet.publicKey,
  amount: new BN(500_000_000),
});

// Claim tokens (after launch)
const claimTx = await alphaVault.claimTokens({
  payer: wallet.publicKey,
});

// Get user allocation
const allocation = await alphaVault.getUserAllocation(wallet.publicKey);
console.log('Deposit Amount:', allocation.depositAmount.toString());
console.log('Token Allocation:', allocation.tokenAllocation.toString());
console.log('Claimed:', allocation.claimed);

Stake-for-Fee SDK (M3M3)

The M3M3 SDK enables staking tokens to earn fees from trading activity.

Basic Setup

typescript
import { Connection, PublicKey } from '@solana/web3.js';
import { StakeForFee } from '@meteora-ag/m3m3';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const poolAddress = new PublicKey('POOL_ADDRESS');

const m3m3 = await StakeForFee.create(connection, poolAddress);

Staking Operations

typescript
// Get user stake and claimable balance
const userBalance = await m3m3.getUserStakeAndClaimBalance(wallet.publicKey);
console.log('Staked Amount:', userBalance.stakedAmount.toString());
console.log('Claimable Fees:', userBalance.claimableFees.toString());

// Stake tokens
const stakeTx = await m3m3.stake(new BN(1_000_000_000), wallet.publicKey);
await sendAndConfirmTransaction(connection, stakeTx, [wallet]);

// Claim accumulated fees
const claimTx = await m3m3.claimFee(wallet.publicKey, null); // null = claim all
await sendAndConfirmTransaction(connection, claimTx, [wallet]);

// Initiate unstake (starts lock period)
const unstakeTx = await m3m3.unstake(
  new BN(500_000_000),
  destinationTokenAccount,
  wallet.publicKey
);

// Cancel pending unstake
const cancelUnstakeTx = await m3m3.cancelUnstake(escrowAddress, wallet.publicKey);

// Complete withdrawal (after lock period)
const withdrawTx = await m3m3.withdraw(escrowAddress, wallet.publicKey);

// Get unstake period
const unstakePeriod = m3m3.getUnstakePeriod(); // Duration in seconds

// Refresh states
await m3m3.refreshStates();

DAMM v1 SDK (Legacy Dynamic AMM)

The DAMM v1 SDK is the original constant product AMM, still widely used for stable pools, weighted pools, and LST pools. While DAMM v2 is recommended for new pools, v1 remains fully supported.

Basic Setup

typescript
import { Connection, PublicKey, Keypair } from '@solana/web3.js';
import AmmImpl from '@meteora-ag/dynamic-amm';

const connection = new Connection('https://api.mainnet-beta.solana.com');

// Create pool instance
const pool = await AmmImpl.create(connection, new PublicKey('POOL_ADDRESS'));

// Or create multiple pools
const pools = await AmmImpl.createMultiple(connection, [poolAddress1, poolAddress2]);

Pool Creation

typescript
// Create permissionless constant product pool
const createPoolTx = await AmmImpl.createPermissionlessConstantProductPoolWithConfig(
  connection,
  wallet.publicKey,
  tokenAMint,
  tokenBMint,
  tokenAAmount,
  tokenBAmount,
  configAddress, // Fee configuration
  {
    lockLiquidity: false, // Lock initial liquidity
    activationPoint: null, // Optional delayed activation
  }
);

// Create memecoin pool (optimized for token launches)
const memePoolTx = await AmmImpl.createPermissionlessConstantProductMemecoinPoolWithConfig(
  connection,
  wallet.publicKey,
  tokenAMint,
  tokenBMint,
  tokenAAmount,
  tokenBAmount,
  configAddress,
  {
    lockLiquidity: true, // Lock liquidity for trust
  }
);

Pool State Queries

typescript
// Get LP token supply
const lpSupply = await pool.getLpSupply();

// Get user's LP token balance
const userBalance = await pool.getUserBalance(wallet.publicKey);

// Get swap quote
const swapQuote = pool.getSwapQuote(
  inputMint,
  inputAmount,
  slippageBps // 100 = 1%
);
console.log('Output amount:', swapQuote.outAmount.toString());
console.log('Fee:', swapQuote.fee.toString());
console.log('Price impact:', swapQuote.priceImpact);

// Get deposit quote
const depositQuote = pool.getDepositQuote(
  tokenAAmount,
  tokenBAmount,
  true, // balanced deposit
  slippageBps
);
console.log('LP tokens to receive:', depositQuote.lpAmount.toString());

// Get withdraw quote
const withdrawQuote = pool.getWithdrawQuote(
  lpAmount,
  slippageBps
);
console.log('Token A out:', withdrawQuote.tokenAAmount.toString());
console.log('Token B out:', withdrawQuote.tokenBAmount.toString());

// Refresh pool state
await pool.updateState();

Liquidity Operations

typescript
// Deposit liquidity
const depositTx = await pool.deposit(
  wallet.publicKey,
  tokenAAmount,
  tokenBAmount,
  lpAmountMin // Minimum LP tokens to receive
);

// Withdraw liquidity
const withdrawTx = await pool.withdraw(
  wallet.publicKey,
  lpAmount,
  tokenAMin, // Minimum token A to receive
  tokenBMin  // Minimum token B to receive
);

Swapping

typescript
// Execute swap
const swapTx = await pool.swap(
  wallet.publicKey,
  inputMint,
  inputAmount,
  minOutputAmount
);

Pool Types

Pool TypeUse CaseFeatures
Constant ProductGeneral trading pairsStandard x*y=k AMM
StableStablecoin pairs (USDC/USDT)Lower slippage for pegged assets
WeightedUnbalanced pools (80/20)Custom token weights
LSTLiquid staking tokensOptimized for staking derivatives

Zap SDK

The Zap SDK enables single-token entry and exit for liquidity positions, automatically handling swaps through Jupiter or the pool's built-in routing.

Basic Setup

typescript
import { Connection, PublicKey } from '@solana/web3.js';
import { Zap } from '@meteora-ag/zap-sdk';

const connection = new Connection('https://api.mainnet-beta.solana.com');

// Jupiter API key is required (get from Jupiter Portal)
const JUPITER_API_URL = 'https://api.jup.ag/swap/v1';
const JUPITER_API_KEY = 'your-api-key';

const zap = new Zap(connection, JUPITER_API_URL, JUPITER_API_KEY);

Zap Into DLMM Position

typescript
// Zap single token into DLMM concentrated liquidity position
const zapInDlmmTx = await zap.zapInDlmm({
  user: wallet.publicKey,
  lbPairAddress: dlmmPoolAddress,
  inputMint: SOL_MINT,
  inputAmount: new BN(1_000_000_000), // 1 SOL
  slippageBps: 100, // 1%
  positionPubkey: positionAddress, // Existing or new position
  strategyType: 'SpotBalanced', // Distribution strategy
  minBinId: activeBinId - 10,
  maxBinId: activeBinId + 10,
});

await sendAndConfirmTransaction(connection, zapInDlmmTx, [wallet]);

Zap Into DAMM v2 Position

typescript
// Zap single token into DAMM v2 pool
const zapInDammV2Tx = await zap.zapInDammV2({
  user: wallet.publicKey,
  poolAddress: dammV2PoolAddress,
  inputMint: USDC_MINT,
  inputAmount: new BN(100_000_000), // 100 USDC
  slippageBps: 100,
  positionPubkey: positionAddress,
});

await sendAndConfirmTransaction(connection, zapInDammV2Tx, [wallet]);

Zap Out Operations

typescript
// Zap out from DLMM to single token
const zapOutDlmmTx = await zap.zapOutDlmm({
  user: wallet.publicKey,
  lbPairAddress: dlmmPoolAddress,
  outputMint: SOL_MINT, // Receive everything as SOL
  positionPubkey: positionAddress,
  percentageToZap: 100, // 100% of position
  slippageBps: 100,
});

// Zap out from DAMM v2 to single token
const zapOutDammV2Tx = await zap.zapOutDammV2({
  user: wallet.publicKey,
  poolAddress: dammV2PoolAddress,
  outputMint: USDC_MINT,
  positionPubkey: positionAddress,
  percentageToZap: 50, // 50% of position
  slippageBps: 100,
});

Zap Through Jupiter

typescript
// Get Jupiter quote for optimal routing
const jupiterQuote = await zap.getJupiterQuote({
  inputMint: SOL_MINT,
  outputMint: USDC_MINT,
  amount: new BN(1_000_000_000),
  slippageBps: 50,
});

// Zap out through Jupiter aggregator
const zapOutJupiterTx = await zap.zapOutThroughJupiter({
  user: wallet.publicKey,
  inputMint: tokenMint,
  outputMint: SOL_MINT,
  jupiterSwapResponse: jupiterQuote,
  maxSwapAmount: new BN(1_000_000_000),
  percentageToZap: 100,
});

Helper Functions

typescript
// Get token program from mint
const tokenProgram = await zap.getTokenProgramFromMint(connection, mintAddress);

// Get Jupiter swap instruction
const swapIx = await zap.getJupiterSwapInstruction(jupiterQuote, wallet.publicKey);

Pool Farms SDK

The Pool Farms SDK enables creating and managing liquidity mining farms on DAMM v1 pools.

Basic Setup

typescript
import { Connection, PublicKey } from '@solana/web3.js';
import { FarmImpl } from '@meteora-ag/farming';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const farmAddress = new PublicKey('FARM_ADDRESS');

const farm = await FarmImpl.create(connection, farmAddress);

Farm Operations

typescript
// Deposit LP tokens to farm
const depositTx = await farm.deposit(
  wallet.publicKey,
  lpAmount
);

// Withdraw LP tokens from farm
const withdrawTx = await farm.withdraw(
  wallet.publicKey,
  lpAmount
);

// Claim farming rewards
const claimTx = await farm.claim(wallet.publicKey);

// Get pending rewards
const pendingRewards = await farm.getPendingRewards(wallet.publicKey);
console.log('Pending rewards:', pendingRewards.toString());

// Get user stake info
const stakeInfo = await farm.getUserStakeInfo(wallet.publicKey);
console.log('Staked amount:', stakeInfo.amount.toString());

Common Patterns

Pattern 1: Initialize with Wallet

typescript
import { Connection, Keypair } from '@solana/web3.js';
import { Wallet, AnchorProvider } from '@coral-xyz/anchor';
import DLMM from '@meteora-ag/dlmm';

const connection = new Connection('https://api.mainnet-beta.solana.com');
const keypair = Keypair.fromSecretKey(/* your secret key */);
const wallet = new Wallet(keypair);

const provider = new AnchorProvider(connection, wallet, {
  commitment: 'confirmed',
});

// Now use provider.wallet.publicKey for transactions
const dlmm = await DLMM.create(connection, poolAddress);

Pattern 2: Error Handling

typescript
try {
  const swapTx = await dlmm.swap(swapParams);
  const txHash = await sendAndConfirmTransaction(connection, swapTx, [wallet]);
  console.log('Success:', txHash);
} catch (error) {
  if (error.message.includes('Slippage')) {
    console.error('Slippage exceeded - try increasing tolerance');
  } else if (error.message.includes('InsufficientFunds')) {
    console.error('Not enough balance for this trade');
  } else if (error.message.includes('PoolNotFound')) {
    console.error('Pool does not exist');
  } else {
    throw error;
  }
}

Pattern 3: Batch Operations

typescript
import { Transaction } from '@solana/web3.js';

// Combine multiple instructions in one transaction
const transaction = new Transaction();

const claimFeeIx = await dlmm.claimSwapFee({ owner: wallet.publicKey, position: pos1 });
const claimRewardIx = await dlmm.claimLMReward({ owner: wallet.publicKey, position: pos1 });

transaction.add(...claimFeeIx.instructions);
transaction.add(...claimRewardIx.instructions);

const txHash = await sendAndConfirmTransaction(connection, transaction, [wallet]);

Pattern 4: Monitor Pool State

typescript
// Periodically refresh pool state
async function monitorPool(dlmm: DLMM, interval: number = 5000) {
  setInterval(async () => {
    await dlmm.refetchStates();
    const activeBin = await dlmm.getActiveBin();
    console.log(`Current price: ${activeBin.price}`);

    const feeInfo = dlmm.getFeeInfo();
    console.log(`Current fee rate: ${feeInfo.baseFeeRate}%`);
  }, interval);
}

New Features (2025-2026)

DLMM Limit Orders

DLMM now supports fee-free on-chain limit orders:

typescript
// Place limit order on DLMM
const limitOrderTx = await dlmm.placeLimitOrder({
  user: wallet.publicKey,
  binId: targetBinId,
  amount: new BN(1_000_000),
  side: "buy", // or "sell"
});

Auto Vaults (Coming Q1 2026)

Auto vaults automatically compound fees and support custom market-making strategies through APIs. These vaults help users earn more with less effort.

Universal Curve (DBC)

The Dynamic Bonding Curve now supports programmable 16-point curves, giving LPs precise control over price trajectories:

typescript
// Create pool with custom curve
const createPoolTx = await dbc.createPoolWithCurve({
  creator: wallet.publicKey,
  baseMint,
  quoteMint,
  curvePoints: [
    { price: 0.001, supply: 0 },
    { price: 0.01, supply: 100_000_000 },
    { price: 0.1, supply: 500_000_000 },
    // ... up to 16 points
  ],
});

Presale Vault (Beta)

Presale Vault is Meteora's token presale infrastructure, currently in beta. It enables projects to run presales with built-in protection mechanisms.

Note: Presale Vault is in active development. Check the Meteora documentation for the latest information.


GitHub Repositories

TypeScript SDKs

RepositoryDescriptionStars
dlmm-sdkDLMM concentrated liquidity SDK280+
damm-v2-sdkDAMM v2 constant product AMM SDK44+
damm-v1-sdkLegacy DAMM v1 SDK126+
dynamic-bonding-curve-sdkToken launch bonding curves35+
zap-sdkSingle-token entry/exit2+
vault-sdkDynamic vault SDK-
alpha-vault-sdkAnti-bot launch protection-
m3m3Stake-for-fee SDK-

Go SDKs

RepositoryDescription
damm-v2-goDAMM v2 Go implementation
dbc-goDynamic Bonding Curve Go SDK

Core Programs (Rust)

RepositoryDescriptionStars
damm-v2DAMM v2 program98+
dynamic-bonding-curveDBC program86+
zap-programZap on-chain program-

Meteora Invent (CLI Tool)

Metsumi is Meteora's CLI tool for launching tokens and executing on-chain actions with minimal configuration.

Installation

bash
# Prerequisites: Node.js ≥ 18.0.0, pnpm ≥ 10.0.0
git clone https://github.com/MeteoraAg/meteora-invent.git
cd meteora-invent
npm install -g pnpm
pnpm install

Available Commands

DLMM Operations
bash
# Create permissionless pool
pnpm dlmm-create-pool

# Seed liquidity
pnpm dlmm-seed-liquidity-lfg
pnpm dlmm-seed-liquidity-single-bin

# Control pool trading
pnpm dlmm-set-pool-status
DAMM v2 Operations
bash
# Create pools
pnpm damm-v2-create-balanced-pool
pnpm damm-v2-create-one-sided-pool

# Manage liquidity
pnpm damm-v2-add-liquidity
pnpm damm-v2-remove-liquidity
pnpm damm-v2-split-position

# Claim fees
pnpm damm-v2-claim-position-fee
Dynamic Bonding Curve Operations
bash
# Create bonding curve
pnpm dbc-create-config
pnpm dbc-create-pool

# Trade on curve
pnpm dbc-swap

# Graduate to AMM
pnpm dbc-migrate-to-damm-v1
pnpm dbc-migrate-to-damm-v2
Vault Operations
bash
# Alpha Vault for anti-bot launches
pnpm alpha-vault-create

# Presale Vault (beta)
pnpm presale-vault-create

Configuration Files

Configurations are stored in studio/config/:

  • dlmm_config.jsonc - DLMM pool settings
  • damm_v1_config.jsonc - DAMM v1 settings
  • damm_v2_config.jsonc - DAMM v2 settings
  • dbc_config.jsonc - Bonding curve settings
  • alpha_vault_config.jsonc - Alpha vault settings

Resources


Skill Structure

meteora/
├── SKILL.md                          # This file
├── resources/
│   ├── dlmm-api-reference.md         # DLMM SDK complete API
│   ├── damm-v2-api-reference.md      # DAMM v2 SDK complete API
│   ├── damm-v1-api-reference.md      # DAMM v1 SDK complete API
│   ├── zap-api-reference.md          # Zap SDK API reference
│   ├── pool-farms-reference.md       # Pool Farms SDK reference
│   ├── bonding-curve-reference.md    # DBC SDK reference
│   ├── vault-api-reference.md        # Vault SDK reference
│   ├── alpha-vault-reference.md      # Alpha Vault SDK reference
│   ├── m3m3-api-reference.md         # Stake-for-Fee SDK reference
│   ├── github-repos.md               # All GitHub repositories
│   └── program-addresses.md          # All program addresses
├── examples/
│   ├── dlmm/
│   │   ├── swap.ts                   # Basic swap example
│   │   ├── add-liquidity.ts          # Adding liquidity
│   │   └── claim-fees.ts             # Claiming fees/rewards
│   ├── damm-v2/
│   │   ├── create-pool.ts            # Pool creation
│   │   ├── swap.ts                   # Swapping tokens
│   │   └── manage-position.ts        # Position management
│   ├── damm-v1/
│   │   └── basic-operations.ts       # DAMM v1 pool operations
│   ├── zap/
│   │   └── zap-operations.ts         # Zap in/out examples
│   ├── bonding-curve/
│   │   ├── create-token.ts           # Launch token on curve
│   │   ├── trade.ts                  # Buy/sell on curve
│   │   └── graduation.ts             # Pool graduation
│   ├── vault/
│   │   └── deposit-withdraw.ts       # Vault operations
│   ├── alpha-vault/
│   │   └── participation.ts          # Alpha vault participation
│   └── stake-for-fee/
│       └── staking.ts                # Staking operations
├── templates/
│   ├── trading-bot.ts                # Market making template
│   ├── token-launch.ts               # Token launch template
│   └── liquidity-manager.ts          # LP management template
└── docs/
    ├── fee-structures.md             # Fee configuration guide
    ├── migration-guide.md            # DBC to DAMM migration
    ├── strategy-guide.md             # Liquidity strategies
    └── troubleshooting.md            # Common issues

Bundled files

The model reads these on demand while the skill is loaded. They are exposed as readable files and are never executed.

Frequently asked questions

What does the Meteora AI skill do?

Complete Meteora DeFi SDK suite for building liquidity pools, AMMs, bonding curves, vaults, token launches, and zap operations on Solana. Use when integrating DLMM, DAMM v2, DAMM v1, Dynamic Bonding Curves, Alpha Vaults, Zap, or Stake-for-Fee functionality.

Why use Meteora on TypingMind?

Because you install it once and use it with any model. Meteora is plain Markdown rather than provider-specific code, so the same skill runs on GPT-5, Claude, Gemini, Grok, or a local model — and you can switch model mid-chat without it breaking. TypingMind runs on your own API keys, so you pay providers directly instead of a per-seat subscription, and your skills and chats stay in your own storage.

How do I install Meteora in TypingMind?

Open Plugins → Skills → Install from GitHub in TypingMind and paste https://github.com/sendaifun/skills/tree/main/skills/meteora. TypingMind reads its SKILL.md and bundles its files and installs it as a skill you can enable per chat.

Which AI models can use Meteora?

Any model you connect in TypingMind. AI skills are plain Markdown instructions rather than provider-specific code, so GPT, Claude, Gemini, Grok, and local models can all load this skill when a request matches it.

How many AI models can I use with Meteora?

As many as you like. As long as a model supports skills, you can use Meteora with it — GPT, Claude, Gemini, Grok, DeepSeek, Mistral, Llama and more — all on TypingMind with your own API keys.

Is the Meteora AI skill free?

Yes. It is published on GitHub by sendaifun under the Apache-2.0 license. You only pay your own AI provider for the tokens you use.

What are AI skills?

An AI skill is a reusable instruction bundle that teaches an AI model how to do one specific task. It follows the open Agent Skills format: a SKILL.md file with a name and description, plus any scripts, templates or reference files the model may need. The model reads the instructions only when your request matches the skill, so an installed skill costs nothing until it is used.

How are AI skills different from plugins or MCP servers?

A plugin or MCP server gives a model new tools to call — code that runs somewhere and returns a result. An AI skill gives the model knowledge and process instead: how to approach a task, which steps to follow, what good output looks like. Skills are plain Markdown, so they need no server, no API key and no runtime, and they work with any model.

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