runtime

package
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Published: Jun 13, 2020 License: Apache-2.0, MIT Imports: 8 Imported by: 12

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Types

type CBORBytes

type CBORBytes []byte

Wraps already-serialized bytes as CBOR-marshalable.

func (CBORBytes) MarshalCBOR

func (b CBORBytes) MarshalCBOR(w io.Writer) error

func (*CBORBytes) UnmarshalCBOR added in v0.5.1

func (b *CBORBytes) UnmarshalCBOR(r io.Reader) error

type CBORMarshaler

type CBORMarshaler interface {
	MarshalCBOR(w io.Writer) error
}

These interfaces are intended to match those from whyrusleeping/cbor-gen, such that code generated from that system is automatically usable here (but not mandatory).

type CBORUnmarshaler

type CBORUnmarshaler interface {
	UnmarshalCBOR(r io.Reader) error
}

type CBORer

type CBORer interface {
	CBORMarshaler
	CBORUnmarshaler
}

type ConsensusFault

type ConsensusFault struct {
	// Address of the miner at fault (always an ID address).
	Target addr.Address
	// Epoch of the fault, which is the higher epoch of the two blocks causing it.
	Epoch abi.ChainEpoch
	// Type of fault.
	Type ConsensusFaultType
}

Result of checking two headers for a consensus fault.

type ConsensusFaultType

type ConsensusFaultType int64
const (
	//ConsensusFaultNone             ConsensusFaultType = 0
	ConsensusFaultDoubleForkMining ConsensusFaultType = 1
	ConsensusFaultParentGrinding   ConsensusFaultType = 2
	ConsensusFaultTimeOffsetMining ConsensusFaultType = 3
)

type Message

type Message interface {
	// The address of the immediate calling actor. Always an ID-address.
	Caller() addr.Address

	// The address of the actor receiving the message. Always an ID-address.
	Receiver() addr.Address

	// The value attached to the message being processed, implicitly added to CurrentBalance() before method invocation.
	ValueReceived() abi.TokenAmount
}

Message contains information available to the actor about the executing message.

type Runtime

type Runtime interface {
	// Information related to the current message being executed.
	Message() Message

	// The current chain epoch number. The genesis block has epoch zero.
	CurrEpoch() abi.ChainEpoch

	// Validates the caller against some predicate.
	// Exported actor methods must invoke at least one caller validation before returning.
	ValidateImmediateCallerAcceptAny()
	ValidateImmediateCallerIs(addrs ...addr.Address)
	ValidateImmediateCallerType(types ...cid.Cid)

	// The balance of the receiver.
	CurrentBalance() abi.TokenAmount

	// Resolves an address of any protocol to an ID address (via the Init actor's table).
	// This allows resolution of externally-provided SECP, BLS, or actor addresses to the canonical form.
	// If the argument is an ID address it is returned directly.
	ResolveAddress(address addr.Address) (addr.Address, bool)

	// Look up the code ID at an actor address.
	GetActorCodeCID(addr addr.Address) (ret cid.Cid, ok bool)

	// Randomness returns a (pseudo)random byte array drawing from a
	// random beacon at a given epoch and incorporating reequisite entropy
	GetRandomness(personalization crypto.DomainSeparationTag, randEpoch abi.ChainEpoch, entropy []byte) abi.Randomness

	// Provides a handle for the actor's state object.
	State() StateHandle

	Store() Store

	// Sends a message to another actor, returning the exit code and return value envelope.
	// If the invoked method does not return successfully, its state changes (and that of any messages it sent in turn)
	// will be rolled back.
	Send(toAddr addr.Address, methodNum abi.MethodNum, params CBORMarshaler, value abi.TokenAmount) (SendReturn, exitcode.ExitCode)

	// Halts execution upon an error from which the receiver cannot recover. The caller will receive the exitcode and
	// an empty return value. State changes made within this call will be rolled back.
	// This method does not return.
	// The message and args are for diagnostic purposes and do not persist on chain. They should be suitable for
	// passing to fmt.Errorf(msg, args...).
	Abortf(errExitCode exitcode.ExitCode, msg string, args ...interface{})

	// Computes an address for a new actor. The returned address is intended to uniquely refer to
	// the actor even in the event of a chain re-org (whereas an ID-address might refer to a
	// different actor after messages are re-ordered).
	// Always an ActorExec address.
	NewActorAddress() addr.Address

	// Creates an actor with code `codeID` and address `address`, with empty state. May only be called by Init actor.
	CreateActor(codeId cid.Cid, address addr.Address)

	// Deletes the executing actor from the state tree, transferring any balance to beneficiary.
	// Aborts if the beneficiary does not exist.
	// May only be called by the actor itself.
	DeleteActor(beneficiary addr.Address)

	// Provides the system call interface.
	Syscalls() Syscalls

	TotalFilCircSupply() abi.TokenAmount

	// Provides a Go context for use by HAMT, etc.
	// The VM is intended to provide an idealised machine abstraction, with infinite storage etc, so this context
	// should not be used by actor code directly.
	Context() context.Context

	// Starts a new tracing span. The span must be End()ed explicitly, typically with a deferred invocation.
	StartSpan(name string) TraceSpan
}

Runtime is the VM's internal runtime object. this is everything that is accessible to actors, beyond parameters.

type SendReturn

type SendReturn interface {
	Into(CBORUnmarshaler) error
}

The return type from a message send from one actor to another. This abstracts over the internal representation of the return, in particular whether it has been serialized to bytes or just passed through. Production code is expected to de/serialize, but test and other code may pass the value straight through.

type StateHandle

type StateHandle interface {
	// Create initializes the state object.
	// This is only valid in a constructor function and when the state has not yet been initialized.
	Create(obj CBORMarshaler)

	// Readonly loads a readonly copy of the state into the argument.
	//
	// Any modification to the state is illegal and will result in an abort.
	Readonly(obj CBORUnmarshaler)

	// Transaction loads a mutable version of the state into the `obj` argument and protects
	// the execution from side effects (including message send).
	//
	// The second argument is a function which allows the caller to mutate the state.
	// The return value from that function will be returned from the call to Transaction().
	//
	// If the state is modified after this function returns, execution will abort.
	//
	// The gas cost of this method is that of a Store.Put of the mutated state object.
	//
	// Note: the Go signature is not ideal due to lack of type system power.
	//
	// # Usage
	// “`go
	// var state SomeState
	// ret := rt.State().Transaction(&state, func() (interface{}) {
	//   // make some changes
	//	 st.ImLoaded = True
	//   return st.Thing, nil
	// })
	// // state.ImLoaded = False // BAD!! state is readonly outside the lambda, it will panic
	// “`
	Transaction(obj CBORer, f func() interface{}) interface{}
}

StateHandle provides mutable, exclusive access to actor state.

type Store

type Store interface {
	// Retrieves and deserializes an object from the store into `o`. Returns whether successful.
	Get(c cid.Cid, o CBORUnmarshaler) bool
	// Serializes and stores an object, returning its CID.
	Put(x CBORMarshaler) cid.Cid
}

Store defines the storage module exposed to actors.

type Syscalls

type Syscalls interface {
	// Verifies that a signature is valid for an address and plaintext.
	VerifySignature(signature crypto.Signature, signer addr.Address, plaintext []byte) error
	// Hashes input data using blake2b with 256 bit output.
	HashBlake2b(data []byte) [32]byte
	// Computes an unsealed sector CID (CommD) from its constituent piece CIDs (CommPs) and sizes.
	ComputeUnsealedSectorCID(reg abi.RegisteredSealProof, pieces []abi.PieceInfo) (cid.Cid, error)
	// Verifies a sector seal proof.
	VerifySeal(vi abi.SealVerifyInfo) error

	BatchVerifySeals(vis map[address.Address][]abi.SealVerifyInfo) (map[address.Address][]bool, error)

	// Verifies a proof of spacetime.
	VerifyPoSt(vi abi.WindowPoStVerifyInfo) error
	// Verifies that two block headers provide proof of a consensus fault:
	// - both headers mined by the same actor
	// - headers are different
	// - first header is of the same or lower epoch as the second
	// - the headers provide evidence of a fault (see the spec for the different fault types).
	// The parameters are all serialized block headers. The third "extra" parameter is consulted only for
	// the "parent grinding fault", in which case it must be the sibling of h1 (same parent tipset) and one of the
	// blocks in an ancestor of h2.
	// Returns nil and an error if the headers don't prove a fault.
	VerifyConsensusFault(h1, h2, extra []byte) (*ConsensusFault, error)
}

Pure functions implemented as primitives by the runtime.

type TraceSpan

type TraceSpan interface {
	// Ends the span
	End()
}

Provides (minimal) tracing facilities to actor code.

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