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Define Shostak printing immediately after type definition
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These functions are useful when debugging and should be defined early so
that they are usable everywhere in the file.
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bclement-ocp committed Sep 12, 2023
1 parent 7b5094d commit 9ca530c
Showing 1 changed file with 90 additions and 90 deletions.
180 changes: 90 additions & 90 deletions src/lib/reasoners/shostak.ml
Original file line number Diff line number Diff line change
Expand Up @@ -71,6 +71,96 @@ struct

type r = {v : rview ; id : int}

(*BISECT-IGNORE-BEGIN*)
module Debug = struct
open Printer

let print fmt r =
let open Format in
if Options.get_term_like_pp () then begin
match r.v with
| X1 t -> fprintf fmt "%a" X1.print t
| X2 t -> fprintf fmt "%a" X2.print t
| X3 t -> fprintf fmt "%a" X3.print t
| X4 t -> fprintf fmt "%a" X4.print t
| X5 t -> fprintf fmt "%a" X5.print t
| X6 t -> fprintf fmt "%a" X6.print t
| X7 t -> fprintf fmt "%a" X7.print t
| Term t -> fprintf fmt "%a" Expr.print t
| Ac t -> fprintf fmt "%a" AC.print t
end
else begin
match r.v with
| X1 t -> fprintf fmt "X1(%s):[%a]" X1.name X1.print t
| X2 t -> fprintf fmt "X2(%s):[%a]" X2.name X2.print t
| X3 t -> fprintf fmt "X3(%s):[%a]" X3.name X3.print t
| X4 t -> fprintf fmt "X4(%s):[%a]" X4.name X4.print t
| X5 t -> fprintf fmt "X5(%s):[%a]" X5.name X5.print t
| X6 t -> fprintf fmt "X6(%s):[%a]" X6.name X6.print t
| X7 t -> fprintf fmt "X7(%s):[%a]" X7.name X7.print t
| Term t -> fprintf fmt "FT:[%a]" Expr.print t
| Ac t -> fprintf fmt "Ac:[%a]" AC.print t
end

let print_sbt msg sbs =
let c = ref 0 in
let print fmt (p,v) =
incr c;
Format.fprintf fmt "<%d) %a |-> %a@ "
!c print p print v
in
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"print_sbt"
"@[<v 2>%s subst:@ %a@]"
msg
(pp_list_no_space print) sbs

let debug_abstraction_result oa ob a b acc =
let c = ref 0 in
let print fmt (p,v) =
incr c;
Format.fprintf fmt "(%d) %a |-> %a@ "
!c CX.print p CX.print v
in
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"abstraction_result"
"@[<v 0>== get_debug_abstraction_result ==@ \
Initial equaliy: %a = %a@ \
abstracted equality: %a = %a@ \
@[<v 2>selectors elimination result:@ \
%a@]@]"
CX.print oa CX.print ob CX.print a CX.print b
(pp_list_no_space print) acc

let solve_one a b =
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"solve_one"
"solve one %a = %a" CX.print a CX.print b

let debug_abstract_selectors a =
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"abstract_selectors"
"abstract selectors of %a" CX.print a

let assert_have_mem_types tya tyb =
assert (
not (Options.get_enable_assertions()) ||
if not (Ty.compare tya tyb = 0) then (
print_err "@[<v 0>@ Tya = %a and @ Tyb = %a@]"
Ty.print tya Ty.print tyb;
false)
else true)

end
(*BISECT-IGNORE-END*)

let print = Debug.print


(* begin: Hashconsing modules and functions *)

module View = struct
Expand Down Expand Up @@ -365,96 +455,6 @@ struct
| false , false , false , false, false, false, true , false -> X7.color ac
| _ -> ac_embed ac


(*BISECT-IGNORE-BEGIN*)
module Debug = struct
open Printer

let print fmt r =
let open Format in
if Options.get_term_like_pp () then begin
match r.v with
| X1 t -> fprintf fmt "%a" X1.print t
| X2 t -> fprintf fmt "%a" X2.print t
| X3 t -> fprintf fmt "%a" X3.print t
| X4 t -> fprintf fmt "%a" X4.print t
| X5 t -> fprintf fmt "%a" X5.print t
| X6 t -> fprintf fmt "%a" X6.print t
| X7 t -> fprintf fmt "%a" X7.print t
| Term t -> fprintf fmt "%a" Expr.print t
| Ac t -> fprintf fmt "%a" AC.print t
end
else begin
match r.v with
| X1 t -> fprintf fmt "X1(%s):[%a]" X1.name X1.print t
| X2 t -> fprintf fmt "X2(%s):[%a]" X2.name X2.print t
| X3 t -> fprintf fmt "X3(%s):[%a]" X3.name X3.print t
| X4 t -> fprintf fmt "X4(%s):[%a]" X4.name X4.print t
| X5 t -> fprintf fmt "X5(%s):[%a]" X5.name X5.print t
| X6 t -> fprintf fmt "X6(%s):[%a]" X6.name X6.print t
| X7 t -> fprintf fmt "X7(%s):[%a]" X7.name X7.print t
| Term t -> fprintf fmt "FT:[%a]" Expr.print t
| Ac t -> fprintf fmt "Ac:[%a]" AC.print t
end

let print_sbt msg sbs =
let c = ref 0 in
let print fmt (p,v) =
incr c;
Format.fprintf fmt "<%d) %a |-> %a@ "
!c print p print v
in
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"print_sbt"
"@[<v 2>%s subst:@ %a@]"
msg
(pp_list_no_space print) sbs

let debug_abstraction_result oa ob a b acc =
let c = ref 0 in
let print fmt (p,v) =
incr c;
Format.fprintf fmt "(%d) %a |-> %a@ "
!c CX.print p CX.print v
in
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"abstraction_result"
"@[<v 0>== get_debug_abstraction_result ==@ \
Initial equaliy: %a = %a@ \
abstracted equality: %a = %a@ \
@[<v 2>selectors elimination result:@ \
%a@]@]"
CX.print oa CX.print ob CX.print a CX.print b
(pp_list_no_space print) acc

let solve_one a b =
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"solve_one"
"solve one %a = %a" CX.print a CX.print b

let debug_abstract_selectors a =
if Options.get_debug_combine () then
print_dbg
~module_name:"Shostak" ~function_name:"abstract_selectors"
"abstract selectors of %a" CX.print a

let assert_have_mem_types tya tyb =
assert (
not (Options.get_enable_assertions()) ||
if not (Ty.compare tya tyb = 0) then (
print_err "@[<v 0>@ Tya = %a and @ Tyb = %a@]"
Ty.print tya Ty.print tyb;
false)
else true)

end
(*BISECT-IGNORE-END*)

let print = Debug.print

let abstract_selectors a acc =
Debug.debug_abstract_selectors a;
match a.v with
Expand Down

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