package goblint
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Static analysis framework for C
Install
dune-project
Dependency
Authors
Maintainers
Sources
goblint-2.2.1.tbz
sha256=ca24f72fa9a87d288affe97c411753f14b7802bab4ca3649b337276b89bf5674
sha512=394b3521ccda0da91540cebb2f433f7525763060be4bbe179edd3b952a3580a8e173c4e410fc6895dc67fe6d17e6699aeddfed600f4692858bec093dd912bf1e
doc/goblint.lib/Goblint_lib/Td3/Base/index.html
Module Td3.Base
Parameters
module Arg : Analyses.IncrSolverArgmodule S : Analyses.EqConstrSysmodule HM : Batteries.Hashtbl.S with type key = S.vSignature
include sig ... end
val stack_d : int refval max_c : int refval histo : int HM.tval increase : S.Var.t -> unitval new_var_event : S.Var.t -> unitval get_var_event : S.Var.t -> unitval eval_rhs_event : S.Var.t -> unitval print_solver_stats : (unit -> unit) refval ncontexts : int refval print_context_stats : 'a HM.t -> unitval stats_csv : unit BatIO.output optionval write_csv : string list -> unit BatIO.output -> unitmodule VS : sig ... endtype solver_data = {st : (S.Var.t * S.Dom.t) list;infl : VS.t HM.t;sides : VS.t HM.t;rho : S.Dom.t HM.t;wpoint : unit HM.t;stable : unit HM.t;side_dep : VS.t HM.t;(*Dependencies of side-effected variables. Knowing these allows restarting them and re-triggering all side effects.
*)side_infl : VS.t HM.t;(*Influences to side-effected variables. Not normally in
*)infl, but used for restarting them.var_messages : Messages.Message.t HM.t;(*Messages from right-hand sides of variables. Used for incremental postsolving.
*)rho_write : S.Dom.t HM.t HM.t;(*Side effects from variables to write-only variables with values. Used for fast incremental restarting of write-only variables.
*)dep : VS.t HM.t;(*Dependencies of variables. Inverse of
*)infl. Used for fast pre-reachable pruning in incremental postsolving.
}type marshal = solver_dataval create_empty_data : unit -> solver_dataval print_data : solver_data -> unitval print_data_verbose : solver_data -> string -> unitval verify_data : solver_data -> unitval pp_phase :
Ppx_deriving_runtime.Format.formatter ->
phase ->
Ppx_deriving_runtime.unitval show_phase : phase -> Ppx_deriving_runtime.stringmodule CurrentVarS : sig ... endmodule S = CurrentVarS.Sval solve :
(S.Var.t * S.Dom.t) list ->
HM.key list ->
solver_data option ->
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