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CircuitSyntax.v
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CircuitSyntax.v
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(*! Circuits | Syntax of circuits (RTL) !*)
Require Export Koika.Common Koika.Environments Koika.Primitives.
Import PrimTyped CircuitSignatures.
Section Circuit.
Context {rule_name_t reg_t ext_fn_t: Type}.
Context {rwdata: nat -> Type}. (* Forward declaration *)
Context {CR: reg_t -> nat}.
Context {CSigma: ext_fn_t -> CExternalSignature}.
Inductive rwdata_field :=
| rwdata_r0
| rwdata_r1
| rwdata_w0
| rwdata_w1
| rwdata_data0
| rwdata_data1.
Inductive rwcircuit_field :=
| rwcircuit_rwdata (r: reg_t) (field: rwdata_field)
| rwcircuit_canfire.
Inductive circuit: nat -> Type :=
| CMux {sz} (select: circuit 1) (c1 c2: circuit sz): circuit sz
| CConst {sz} (cst: bits sz): circuit sz
| CReadRegister (reg: reg_t): circuit (CR reg)
| CUnop (fn: fbits1) (a1: circuit (CSigma1 fn).(arg1Sig))
: circuit (CSigma1 fn).(retSig)
| CBinop (fn: fbits2) (a1: circuit (CSigma2 fn).(arg1Sig)) (a2: circuit (CSigma2 fn).(arg2Sig))
: circuit (CSigma2 fn).(retSig)
| CExternal (idx: ext_fn_t)
(a: circuit (CSigma idx).(arg1Sig))
: circuit (CSigma idx).(retSig)
| CBundleRef {sz} (name: rule_name_t) (regs: list reg_t)
(bundle: context (fun r => rwdata (CR r)) regs)
(field: rwcircuit_field) (c: circuit sz): circuit sz
| CAnnot {sz} (annot: string) (c: circuit sz): circuit sz.
End Circuit.
Notation CAnd := (CBinop (And _)).
Notation COr := (CBinop (Or _)).
Notation CNot := (CUnop (Not _)).
Arguments circuit {rule_name_t reg_t ext_fn_t rwdata} CR CSigma sz : assert.