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Monorepo for Aesthetic.Computer aesthetic.computer
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Python
123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350"""Keeps FA2 v3 - Aesthetic Computer NFT Contract
This contract extends the SmartPy FA2 library with a custom `keep` entrypointthat accepts pre-encoded bytes for all TZIP-21 metadata fields.
v3 Changes from v2:- edit_metadata: Now allows token OWNER to edit (not just admin) This preserves artist attribution on objkt.com when updating metadata.- Added token_creators bigmap to track original creator for each token
Key feature: Metadata bytes are stored directly WITHOUT sp.pack(),ensuring compatibility with TzKT, objkt, and other Tezos indexers."""
import smartpy as spfrom smartpy.templates import fa2_lib as fa2
main = fa2.main
@sp.moduledef keeps_module(): import main
# Order of inheritance: [Admin], [<policy>], <base class>, [<other mixins>]. class KeepsFA2( main.Admin, main.Nft, main.MintNft, main.BurnNft, main.OnchainviewBalanceOf, ): """ FA2 NFT contract for aesthetic.computer Keeps (v3). Extends the standard FA2 library with a custom `keep` entrypoint that accepts all TZIP-21 metadata fields as pre-encoded bytes. v3: Token owners can edit their own token metadata. """ def __init__(self, admin_address, contract_metadata, ledger, token_metadata): # Initialize on-chain balance view main.OnchainviewBalanceOf.__init__(self) # Initialize the NFT-specific entrypoints main.BurnNft.__init__(self) main.MintNft.__init__(self) # Initialize the NFT base class main.Nft.__init__(self, contract_metadata, ledger, token_metadata) # Initialize administrative permissions main.Admin.__init__(self, admin_address) # Additional storage for metadata locking self.data.metadata_locked = sp.cast( sp.big_map(), sp.big_map[sp.nat, sp.bool] ) # Track content hashes to prevent duplicate mints # Maps content_hash (bytes) -> token_id (nat) self.data.content_hashes = sp.cast( sp.big_map(), sp.big_map[sp.bytes, sp.nat] ) # Track original creator for each token (v3) # Maps token_id -> creator address (the first minter) self.data.token_creators = sp.cast( sp.big_map(), sp.big_map[sp.nat, sp.address] ) # Contract-level metadata lock flag self.data.contract_metadata_locked = False # Mint fee configuration (admin-adjustable) # Default: 0 tez (free minting via admin key) # Can be set to require payment when users mint via their wallets self.data.keep_fee = sp.tez(0) @sp.entrypoint def keep(self, params): """ Mint a new Keep token with full TZIP-21 metadata. Two modes: 1. Admin calling with owner param: mints to specified owner (for server-side minting) 2. User calling directly: mints to sender, requires fee payment - This makes the USER the firstMinter for proper artist attribution All bytes parameters should be raw hex-encoded UTF-8 strings (NOT Michelson-packed with 0x05 prefix). """ sp.cast(params, sp.record( name=sp.bytes, description=sp.bytes, artifactUri=sp.bytes, displayUri=sp.bytes, thumbnailUri=sp.bytes, decimals=sp.bytes, symbol=sp.bytes, isBooleanAmount=sp.bytes, shouldPreferSymbol=sp.bytes, formats=sp.bytes, tags=sp.bytes, attributes=sp.bytes, creators=sp.bytes, rights=sp.bytes, content_type=sp.bytes, content_hash=sp.bytes, metadata_uri=sp.bytes, owner=sp.address )) # Determine minting mode and owner is_admin = self.is_administrator_() # Non-admin callers must pay the fee and can only mint to themselves if not is_admin: assert sp.amount >= self.data.keep_fee, "INSUFFICIENT_FEE" # User must mint to themselves (ensures they are firstMinter) assert params.owner == sp.sender, "MUST_MINT_TO_SELF" # Check for duplicate content hash assert not self.data.content_hashes.contains(params.content_hash), "DUPLICATE_CONTENT_HASH" # Get next token ID from the library's counter token_id = self.data.next_token_id # Build token_info map with all TZIP-21 fields # Values are stored as raw bytes (no packing) token_info = sp.cast({ "name": params.name, "description": params.description, "artifactUri": params.artifactUri, "displayUri": params.displayUri, "thumbnailUri": params.thumbnailUri, "decimals": params.decimals, "symbol": params.symbol, "isBooleanAmount": params.isBooleanAmount, "shouldPreferSymbol": params.shouldPreferSymbol, "formats": params.formats, "tags": params.tags, "attributes": params.attributes, "creators": params.creators, "rights": params.rights, "content_type": params.content_type, "content_hash": params.content_hash, "": params.metadata_uri # Empty key for off-chain metadata URI }, sp.map[sp.string, sp.bytes]) # Store token metadata using the library's mechanism self.data.token_metadata[token_id] = sp.record( token_id=token_id, token_info=token_info ) # Assign token to owner using the library's ledger format (NFT: token_id -> owner) self.data.ledger[token_id] = params.owner # Initialize as not locked self.data.metadata_locked[token_id] = False # Store content hash to prevent future duplicates self.data.content_hashes[params.content_hash] = token_id # Track the original creator (v3) # Use sender for user mints, owner param for admin mints self.data.token_creators[token_id] = params.owner # Increment token counter self.data.next_token_id = token_id + 1 @sp.entrypoint def edit_metadata(self, params): """ Update metadata for an existing token. v3: Can be called by: - Admin (contract administrator) - Token owner (current holder of the token) - Original creator (the address that first minted the token) This allows artists to update their work without admin intervention, preserving proper attribution on marketplaces like objkt.com. """ sp.cast(params, sp.record( token_id=sp.nat, token_info=sp.map[sp.string, sp.bytes] )) assert self.data.token_metadata.contains(params.token_id), "FA2_TOKEN_UNDEFINED" # Check authorization: admin, owner, or original creator is_admin = self.is_administrator_() is_owner = self.data.ledger.get(params.token_id, default=sp.address("tz1burnburnburnburnburnburnburjAYjjX")) == sp.sender is_creator = self.data.token_creators.get(params.token_id, default=sp.address("tz1burnburnburnburnburnburnburjAYjjX")) == sp.sender assert is_admin or is_owner or is_creator, "NOT_AUTHORIZED" # Check if locked is_locked = self.data.metadata_locked.get(params.token_id, default=False) assert not is_locked, "METADATA_LOCKED" # Update metadata self.data.token_metadata[params.token_id] = sp.record( token_id=params.token_id, token_info=params.token_info ) @sp.entrypoint def lock_metadata(self, token_id): """Permanently lock metadata for a token (admin or owner only).""" sp.cast(token_id, sp.nat) assert self.data.token_metadata.contains(token_id), "FA2_TOKEN_UNDEFINED" # Check authorization: admin or owner is_admin = self.is_administrator_() is_owner = self.data.ledger.get(token_id, default=sp.address("tz1burnburnburnburnburnburnburjAYjjX")) == sp.sender assert is_admin or is_owner, "NOT_AUTHORIZED" self.data.metadata_locked[token_id] = True
@sp.entrypoint def set_contract_metadata(self, params): """Update contract-level metadata (admin only, if not locked). Use this to set collection icon, banner, description etc. params: list of (key, value) pairs to set in the metadata big_map """ sp.cast(params, sp.list[sp.record(key=sp.string, value=sp.bytes)]) assert self.is_administrator_(), "FA2_NOT_ADMIN" assert not self.data.contract_metadata_locked, "CONTRACT_METADATA_LOCKED" for item in params: self.data.metadata[item.key] = item.value @sp.entrypoint def lock_contract_metadata(self): """Permanently lock contract-level metadata (admin only).""" assert self.is_administrator_(), "FA2_NOT_ADMIN" self.data.contract_metadata_locked = True
@sp.entrypoint def set_keep_fee(self, new_fee): """ Set the keep fee required for keeping new tokens. Admin only. Fee is in mutez (1 tez = 1,000,000 mutez). Set to 0 for free keeping. """ sp.cast(new_fee, sp.mutez) assert self.is_administrator_(), "FA2_NOT_ADMIN" self.data.keep_fee = new_fee
@sp.entrypoint def withdraw_fees(self, destination): """ Withdraw accumulated fees from the contract. Admin only. Sends the entire contract balance to the destination. """ sp.cast(destination, sp.address) assert self.is_administrator_(), "FA2_NOT_ADMIN" sp.send(destination, sp.balance)
@sp.entrypoint def burn_keep(self, token_id): """ Burn a token and remove its content_hash from the registry. This allows the same piece name to be minted again. Admin only. """ sp.cast(token_id, sp.nat) assert self.is_administrator_(), "FA2_NOT_ADMIN" assert self.data.token_metadata.contains(token_id), "FA2_TOKEN_UNDEFINED" # Get the content_hash before burning so we can remove it token_info = self.data.token_metadata[token_id].token_info content_hash = token_info.get("content_hash", default=sp.bytes("0x")) # Remove from content_hashes registry (allows re-minting this piece) if self.data.content_hashes.contains(content_hash): del self.data.content_hashes[content_hash] # Remove from ledger if self.data.ledger.contains(token_id): del self.data.ledger[token_id] # Remove token metadata del self.data.token_metadata[token_id] # Remove metadata lock entry if self.data.metadata_locked.contains(token_id): del self.data.metadata_locked[token_id] # Remove creator entry (v3) if self.data.token_creators.contains(token_id): del self.data.token_creators[token_id]
@sp.onchain_view() def get_token_creator(self, token_id): """Get the original creator of a token.""" sp.cast(token_id, sp.nat) return self.data.token_creators.get(token_id, default=sp.address("tz1burnburnburnburnburnburnburjAYjjX"))
def _get_balance(fa2_contract, args): """Utility function to call the contract's get_balance view.""" return sp.View(fa2_contract, "get_balance")(args)
def _total_supply(fa2_contract, args): """Utility function to call the contract's total_supply view.""" return sp.View(fa2_contract, "total_supply")(args)
@sp.add_test()def test(): """Simple test to compile the contract.""" scenario = sp.test_scenario("KeepsFA2v3") scenario.h1("Keeps FA2 v3 - Compile Test") # Define test accounts admin = sp.test_account("Admin") # Create empty initial state ledger = {} token_metadata = [] # Deploy contract contract = keeps_module.KeepsFA2( admin.address, sp.big_map(), ledger, token_metadata ) scenario += contract # Just verify it compiles - actual tests done manually scenario.h2("Contract compiled successfully") scenario.p("v3 features: token owner/creator can edit metadata")