//! storage program //! Receive mining proofs from miners, validate the answers //! and give reward for good proofs. use crate::storage_contract::StorageAccount; use crate::storage_instruction::StorageInstruction; use solana_sdk::account::KeyedAccount; use solana_sdk::instruction::InstructionError; use solana_sdk::pubkey::Pubkey; use solana_sdk::sysvar; pub fn process_instruction( _program_id: &Pubkey, keyed_accounts: &mut [KeyedAccount], data: &[u8], ) -> Result<(), InstructionError> { solana_logger::setup(); let (me, rest) = keyed_accounts.split_at_mut(1); let me_unsigned = me[0].signer_key().is_none(); let mut storage_account = StorageAccount::new(*me[0].unsigned_key(), &mut me[0].account); match bincode::deserialize(data).map_err(|_| InstructionError::InvalidInstructionData)? { StorageInstruction::InitializeReplicatorStorage { owner } => { if !rest.is_empty() { Err(InstructionError::InvalidArgument)?; } storage_account.initialize_replicator_storage(owner) } StorageInstruction::InitializeValidatorStorage { owner } => { if !rest.is_empty() { Err(InstructionError::InvalidArgument)?; } storage_account.initialize_validator_storage(owner) } StorageInstruction::SubmitMiningProof { sha_state, segment_index, signature, blockhash, } => { if me_unsigned || rest.len() != 1 { // This instruction must be signed by `me` Err(InstructionError::InvalidArgument)?; } let clock = sysvar::clock::from_keyed_account(&rest[0])?; storage_account.submit_mining_proof( sha_state, segment_index, signature, blockhash, clock, ) } StorageInstruction::AdvertiseStorageRecentBlockhash { hash, segment } => { if me_unsigned || rest.len() != 1 { // This instruction must be signed by `me` Err(InstructionError::InvalidArgument)?; } let clock = sysvar::clock::from_keyed_account(&rest[0])?; storage_account.advertise_storage_recent_blockhash(hash, segment, clock) } StorageInstruction::ClaimStorageReward => { if rest.len() != 4 { Err(InstructionError::InvalidArgument)?; } let (clock, rest) = rest.split_at_mut(1); let (rewards, rest) = rest.split_at_mut(1); let (rewards_pools, owner) = rest.split_at_mut(1); let rewards = sysvar::rewards::from_keyed_account(&rewards[0])?; let clock = sysvar::clock::from_keyed_account(&clock[0])?; let mut owner = StorageAccount::new(*owner[0].unsigned_key(), &mut owner[0].account); storage_account.claim_storage_reward(&mut rewards_pools[0], clock, rewards, &mut owner) } StorageInstruction::ProofValidation { segment, proofs } => { if rest.is_empty() { Err(InstructionError::InvalidArgument)?; } let (clock, rest) = rest.split_at_mut(1); if me_unsigned || rest.is_empty() { // This instruction must be signed by `me` and `rest` cannot be empty Err(InstructionError::InvalidArgument)?; } let me_id = storage_account.id; let clock = sysvar::clock::from_keyed_account(&clock[0])?; let mut rest: Vec<_> = rest .iter_mut() .map(|keyed_account| { StorageAccount::new(*keyed_account.unsigned_key(), &mut keyed_account.account) }) .collect(); storage_account.proof_validation(&me_id, clock, segment, proofs, &mut rest) } } }