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220 lines
8.6 KiB
Go
Executable File
220 lines
8.6 KiB
Go
Executable File
package keeper
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import (
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"context"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/sonr-io/sonr/x/dex/types"
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)
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var _ types.MsgServer = msgServer{}
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type msgServer struct {
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Keeper
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}
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// NewMsgServerImpl returns an implementation of the module MsgServer interface.
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func NewMsgServerImpl(keeper Keeper) types.MsgServer {
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return &msgServer{Keeper: keeper}
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}
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// RegisterDEXAccount implements types.MsgServer.
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func (ms msgServer) RegisterDEXAccount(
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ctx context.Context,
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msg *types.MsgRegisterDEXAccount,
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) (*types.MsgRegisterDEXAccountResponse, error) {
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sdkCtx := sdk.UnwrapSDKContext(ctx)
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// Register the DEX account using the keeper's ICA controller logic
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account, err := ms.Keeper.RegisterDEXAccount(
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sdkCtx,
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msg.Did,
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msg.ConnectionId,
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msg.Features,
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)
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if err != nil {
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return nil, err
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}
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// Emit event for account registration
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sdkCtx.EventManager().EmitEvent(
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sdk.NewEvent(
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types.EventTypeDEXAccountRegistered,
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sdk.NewAttribute("did", msg.Did),
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sdk.NewAttribute("connection_id", msg.ConnectionId),
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sdk.NewAttribute("port_id", account.PortId),
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),
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)
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return &types.MsgRegisterDEXAccountResponse{
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PortId: account.PortId,
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AccountAddress: account.AccountAddress,
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}, nil
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}
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// TODO: ExecuteSwap - Implement cross-chain swap execution via ICA
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// This method should handle token swaps on remote chains through Interchain Accounts
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// Required implementation steps:
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// 1. Validate the sender's DID exists and is active using did keeper
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// 2. Verify UCAN token has proper swap capabilities (resource: swap, action: execute)
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// 3. Retrieve the ICA account for this DID and connection from state
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// 4. Build the appropriate swap message for the target chain's DEX protocol
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// 5. Create ICA packet data with the swap transaction
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// 6. Send ICA packet through IBC channel and await acknowledgment
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// 7. Store transaction details in DWN for user history tracking
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// 8. Emit events for indexing and monitoring
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// Returns: Sequence number and transaction ID on success
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// ExecuteSwap implements types.MsgServer.
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func (ms msgServer) ExecuteSwap(
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ctx context.Context,
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msg *types.MsgExecuteSwap,
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) (*types.MsgExecuteSwapResponse, error) {
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// Validate UCAN permission if token provided
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if msg.UcanToken != "" {
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// Use connection ID as resource ID for swap operations
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if err := ms.validateUCANPermission(ctx, msg.UcanToken, "swap", msg.ConnectionId, types.DEXOpExecuteSwap); err != nil {
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return nil, err
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}
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}
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// TODO: Implement swap execution via ICA
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// 1. Validate DID
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// 2. Get ICA account for this DID and connection
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// 3. Construct swap message for remote chain
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// 4. Send ICA packet with swap instruction
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// 5. Track transaction in DWN
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return &types.MsgExecuteSwapResponse{}, nil
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}
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// validateUCANPermission validates UCAN token for a DEX operation
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func (ms msgServer) validateUCANPermission(
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ctx context.Context,
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ucanToken string,
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resourceType string,
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resourceID string,
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operation types.DEXOperation,
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) error {
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if ms.permissionValidator == nil {
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// Permission validator not available - skip validation
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return nil
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}
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return ms.permissionValidator.ValidatePermission(
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ctx,
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ucanToken,
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resourceType,
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resourceID,
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operation,
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)
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}
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// TODO: ProvideLiquidity - Implement cross-chain liquidity provision via ICA
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// This method should handle adding liquidity to pools on remote chains
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// Required implementation steps:
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// 1. Validate the sender's DID exists and is active using did keeper
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// 2. Verify UCAN token has liquidity provision capabilities (resource: liquidity, action: provide)
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// 3. Retrieve the ICA account for this DID and connection from state
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// 4. Calculate appropriate liquidity amounts based on pool ratios
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// 5. Build liquidity provision message for target chain's AMM protocol
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// 6. Create ICA packet data with the liquidity transaction
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// 7. Send ICA packet through IBC channel and await acknowledgment
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// 8. Store LP token information in DWN for tracking
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// 9. Update user's position records in state
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// Returns: Sequence number and LP token amount on success
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// ProvideLiquidity implements types.MsgServer.
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func (ms msgServer) ProvideLiquidity(
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ctx context.Context,
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msg *types.MsgProvideLiquidity,
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) (*types.MsgProvideLiquidityResponse, error) {
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// TODO: Implement liquidity provision via ICA
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// 1. Validate DID and UCAN token
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// 2. Get ICA account for this DID and connection
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// 3. Construct liquidity provision message for remote chain
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// 4. Send ICA packet with liquidity instruction
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// 5. Track transaction in DWN
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return &types.MsgProvideLiquidityResponse{}, nil
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}
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// TODO: RemoveLiquidity - Implement cross-chain liquidity removal via ICA
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// This method should handle removing liquidity from pools on remote chains
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// Required implementation steps:
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// 1. Validate the sender's DID exists and is active using did keeper
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// 2. Verify UCAN token has liquidity removal capabilities (resource: liquidity, action: remove)
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// 3. Retrieve the ICA account for this DID and connection from state
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// 4. Verify user has sufficient LP tokens to remove
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// 5. Build liquidity removal message for target chain's AMM protocol
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// 6. Create ICA packet data with the removal transaction
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// 7. Send ICA packet through IBC channel and await acknowledgment
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// 8. Update LP token information in DWN after removal
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// 9. Clear user's position records from state if fully withdrawn
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// Returns: Sequence number and withdrawn token amounts on success
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// RemoveLiquidity implements types.MsgServer.
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func (ms msgServer) RemoveLiquidity(
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ctx context.Context,
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msg *types.MsgRemoveLiquidity,
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) (*types.MsgRemoveLiquidityResponse, error) {
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// TODO: Implement liquidity removal via ICA
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// 1. Validate DID and UCAN token
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// 2. Get ICA account for this DID and connection
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// 3. Construct liquidity removal message for remote chain
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// 4. Send ICA packet with removal instruction
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// 5. Track transaction in DWN
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return &types.MsgRemoveLiquidityResponse{}, nil
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}
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// TODO: CreateLimitOrder - Implement cross-chain limit order creation via ICA
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// This method should handle placing limit orders on remote chain order books
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// Required implementation steps:
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// 1. Validate the sender's DID exists and is active using did keeper
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// 2. Verify UCAN token has order creation capabilities (resource: order, action: create)
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// 3. Retrieve the ICA account for this DID and connection from state
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// 4. Validate order parameters (price, amount, expiry) against market conditions
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// 5. Build limit order message for target chain's order book protocol
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// 6. Create ICA packet data with the order placement transaction
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// 7. Send ICA packet through IBC channel and await acknowledgment
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// 8. Store order details in local state for tracking
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// 9. Create order record in DWN with unique order ID
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// 10. Set up monitoring for order fills and expiration
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// Returns: Sequence number and unique order ID on success
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// CreateLimitOrder implements types.MsgServer.
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func (ms msgServer) CreateLimitOrder(
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ctx context.Context,
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msg *types.MsgCreateLimitOrder,
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) (*types.MsgCreateLimitOrderResponse, error) {
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// TODO: Implement limit order creation via ICA
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// 1. Validate DID and UCAN token
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// 2. Get ICA account for this DID and connection
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// 3. Construct limit order message for remote chain
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// 4. Send ICA packet with order instruction
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// 5. Track order in DWN
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return &types.MsgCreateLimitOrderResponse{}, nil
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}
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// TODO: CancelOrder - Implement cross-chain order cancellation via ICA
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// This method should handle cancelling existing limit orders on remote chains
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// Required implementation steps:
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// 1. Validate the sender's DID exists and is active using did keeper
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// 2. Verify UCAN token has order cancellation capabilities (resource: order, action: cancel)
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// 3. Retrieve the ICA account for this DID and connection from state
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// 4. Verify the order exists and belongs to the sender
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// 5. Check order status is still open (not filled or already cancelled)
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// 6. Build order cancellation message for target chain's order book protocol
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// 7. Create ICA packet data with the cancellation transaction
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// 8. Send ICA packet through IBC channel and await acknowledgment
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// 9. Update order status in local state to cancelled
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// 10. Update order record in DWN with cancellation details
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// Returns: Sequence number on successful cancellation
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// CancelOrder implements types.MsgServer.
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func (ms msgServer) CancelOrder(
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ctx context.Context,
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msg *types.MsgCancelOrder,
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) (*types.MsgCancelOrderResponse, error) {
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// TODO: Implement order cancellation via ICA
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// 1. Validate DID and UCAN token
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// 2. Get ICA account for this DID and connection
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// 3. Construct order cancellation message for remote chain
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// 4. Send ICA packet with cancellation instruction
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// 5. Update order status in DWN
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return &types.MsgCancelOrderResponse{}, nil
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}
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