pub struct ModWire { /* private fields */ }Expand description
Modulo of a u64 value by a wire-fed divisor.
Signature: mod_wire(input: u64, divisor: u64) -> (u64)
The divisor is computed at cycle time from another node — for
example, a control read or a runtime-derived shard count. The
divisor port declares a NonZeroU64 constraint, so under
// @pragma: strict_values the compiler auto-inserts an
assert_u64_nonzero between the source and the divisor input
(SRD 15 §“Strict Wire Mode”). Without strict mode, the node
trusts the divisor and a zero value will panic at cycle time —
the canonical “panic at hour 14” hazard, opt-out by design.
Use this when the modulus genuinely varies across cycles. For
the const case, prefer Mod which is faster (the divisor
is baked into the JIT closure as a constant).
JIT level: P3 (urem on two wire slots; JitOp::U64ModWire).
Modulo of a u64 by a wire-fed divisor. SRD-80 PR B.14
migration — the #[constraint(NonZeroU64)] attribute carries
the strict-wire-mode assertion contract.
Implementations§
Trait Implementations§
Source§impl PolydatNode for ModWire
impl PolydatNode for ModWire
Source§fn compiled_u64(&self) -> Option<CompiledU64Op>
fn compiled_u64(&self) -> Option<CompiledU64Op>
Source§fn jit_constants(&self) -> Vec<u64>
fn jit_constants(&self) -> Vec<u64>
Source§fn scratch_layout(&self) -> Vec<ScratchElem>
fn scratch_layout(&self) -> Vec<ScratchElem>
Self::eval_in. Empty for a node that evaluates over
Values alone, which is every node but a native cone.Source§fn eval_in(
&self,
scratch: &mut [ScratchBuf],
inputs: &[Value],
outputs: &mut [Value],
)
fn eval_in( &self, scratch: &mut [ScratchBuf], inputs: &[Value], outputs: &mut [Value], )
Self::eval with the node’s scratch, which the evaluating
state owns and hands in: storage belongs to the state, never to
the node, which is shared by every state of the program.Source§fn commutativity(&self) -> Commutativity
fn commutativity(&self) -> Commutativity
Source§fn accepts_none_inputs(&self) -> bool
fn accepts_none_inputs(&self) -> bool
Value::None inputs
directly rather than have the kernel propagate None through
it. Default: false — most nodes follow SRD-74 Rule 1
(None in → None out, no eval invocation). Read moreSource§fn compiled_slot(&self, _wire_types: &[PortType]) -> Option<CompiledSlotKit>
fn compiled_slot(&self, _wire_types: &[PortType]) -> Option<CompiledSlotKit>
(ptr, len) slot
pairs; vector outputs write into kernel-owned scratch.
Checked by the compiled-kernel builders AFTER
Self::compiled_u64 — pure-scalar nodes never need it.
Default None: the node stays on typed eval.Source§fn purity(&self) -> Purity
fn purity(&self) -> Purity
runtime_model.md’s D2 axiom. Default:
Purity::Pure. Override to declare an observable
side channel (Purity::SideChannel) or
eval-call-spanning state (Purity::Nondeterministic). Read moreSource§fn simd_variant(&self) -> Option<SimdVariant>
fn simd_variant(&self) -> Option<SimdVariant>
Source§fn fusion_subgraph(&self) -> Option<FusionSubgraph<'_>>
fn fusion_subgraph(&self) -> Option<FusionSubgraph<'_>>
PolydatProgram::canonical_hash) walks THROUGH fusion
nodes into this subgraph, so identity is invariant to the
engine mix: jit=off and jit=auto compiles of the same
source hash identically, and resume-skip matching survives
mode changes. Default None: ordinary nodes hash as
themselves.