package electrod
sectionYPositions = computeSectionYPositions($el), 10)"
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Formal analysis for the Electrod formal pivot language
Install
dune-project
Dependency
Authors
Maintainers
Sources
electrod-0.9.0.tbz
sha256=b2263601350f2ffe3cb1671d8bdd256729986b248c1ec39e84ec76a2f2b8408c
sha512=f4c0e7a196c7a14fff51e7f0cc6f91ed8b3df965523d878ab507320f9771ec69efddb31252ff9763ed2f92bc8c369cea73ca20edebbc3c9ff327fe500f33bdf0
doc/electrod.libelectrod/Libelectrod/Gen_goal/index.html
Module Libelectrod.Gen_goalSource
Implements the type for concrete (Raw) and abstract (Ast) syntax trees, before inference of De Bruijn indices and simplification into Elo trees.
Source
and ('v, 'i) prim_fml = private | True| False| Qual of rqualify * ('v, 'i) exp| RComp of ('v, 'i) exp * comp_op * ('v, 'i) exp| IComp of ('v, 'i) iexp * icomp_op * ('v, 'i) iexp| LUn of lunop * ('v, 'i) fml| LBin of ('v, 'i) fml * lbinop * ('v, 'i) fml| Quant of quant * ('v, 'i) sim_binding list * ('v, 'i) block| Let of ('v, 'i) binding list * ('v, 'i) block| FIte of ('v, 'i) fml * ('v, 'i) fml * ('v, 'i) fml| Block of ('v, 'i) block
Source
val pp :
'a Fmtc.t ->
(Format.formatter -> 'b -> unit) ->
Format.formatter ->
('a, 'b) t ->
unitSource
val pp_prim_fml :
'a Fmtc.t ->
(Format.formatter -> 'b -> unit) ->
Format.formatter ->
('a, 'b) prim_fml ->
unitSource
val pp_sim_binding :
'a Fmtc.t ->
(Format.formatter -> 'b -> unit) ->
('a, 'b) sim_binding Fmtc.tSource
val pp_prim_exp :
'a Fmtc.t ->
(Format.formatter -> 'b -> unit) ->
Format.formatter ->
('a, 'b) prim_exp ->
unitSource
val pp_iexp :
'a Fmtc.t ->
(Format.formatter -> 'b -> unit) ->
Format.formatter ->
('a, 'b) iexp ->
unitSource
val pp_prim_iexp :
'a Fmtc.t ->
(Format.formatter -> 'b -> unit) ->
Format.formatter ->
('a, 'b) prim_iexp ->
unit sectionYPositions = computeSectionYPositions($el), 10)"
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