package ortac-runtime-qcheck-stm
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Runtime support library for Ortac/QCheck-STM-generated code
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dune-project
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Maintainers
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.tar.gz
md5=1bbffc8b2ecf943c2d66bdf9c72b994a
sha512=f23537bc18149e5cf5f5035139fac0541b55f7087127b1ca963f16d8852096d7fbdd5378b9fbb7703a3ce175b4a90ad8a7dfafc4292b5f1196fa11fbef43a178
doc/src/ortac-runtime-qcheck-stm.domain/ortac_runtime_qcheck_stm_domain.ml.html
Source file ortac_runtime_qcheck_stm_domain.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272open Ortac_runtime_qcheck_stm_util open STM include Ortac_runtime module Report = Report module Model = Stores.Model module SUT = Stores.SUT module type SpecExtOrtac = sig include SpecExt val arb_cmd_seq : state -> cmd QCheck.arbitrary val arb_cmd_dom0 : state -> cmd QCheck.arbitrary val arb_cmd_dom1 : state -> cmd QCheck.arbitrary end module type SpecOrtac = sig include Spec val arb_cmd_seq : state -> cmd QCheck.arbitrary val arb_cmd_dom0 : state -> cmd QCheck.arbitrary val arb_cmd_dom1 : state -> cmd QCheck.arbitrary end (* This is a modified version of STM_domain.MakeExt *) module MakeExt (Spec : SpecExtOrtac) = struct open Util open QCheck open Report open Internal.Make (Spec) [@alert "-internal"] type pos = Prefix | Tail1 | Tail2 type traces = { where_it_failed : pos; trace_prefix : trace list; trace_tail_1 : trace list; trace_tail_2 : trace list; } let empty where_it_failed = { where_it_failed; trace_prefix = []; trace_tail_1 = []; trace_tail_2 = [] } let start_traces pos call res = let traces = empty pos in match pos with | Prefix -> { traces with trace_prefix = [ { call; res } ] } | Tail1 -> { traces with trace_tail_1 = [ { call; res } ] } | Tail2 -> { traces with trace_tail_2 = [ { call; res } ] } let add_trace (pos, trace) traces = match pos with | Prefix -> { traces with trace_prefix = trace :: traces.trace_prefix } | Tail1 -> { traces with trace_tail_1 = trace :: traces.trace_tail_1 } | Tail2 -> { traces with trace_tail_2 = trace :: traces.trace_tail_2 } let append_traces traces (pos, xs) = match pos with | Prefix -> { traces with trace_prefix = traces.trace_prefix @ xs } | Tail1 -> { traces with trace_tail_1 = traces.trace_tail_1 @ xs } | Tail2 -> { traces with trace_tail_2 = traces.trace_tail_2 @ xs } let get_traces pos traces = match pos with | Prefix -> traces.trace_prefix | Tail1 -> traces.trace_tail_1 | Tail2 -> traces.trace_tail_2 let ( <+> ) marked_trace = Option.map (fun (traces, report) -> (add_trace marked_trace traces, report)) let ( <++> ) o marked_traces = Option.map (fun (traces, report) -> (append_traces traces marked_traces, report)) o let ( &&& ) o1 o2 = match o1 with None -> Lazy.force o2 | _ -> o1 let ( ||| ) o1 o2 = match o1 with None -> None | Some _ -> Lazy.force o2 let check_obs ortac_show_cmd postcond = let postcond pos cmd state res = let f report = let call = lazy (ortac_show_cmd cmd (Spec.next_state cmd state) true res) in (start_traces pos call res, report) in Option.map f @@ postcond cmd state res in let mk_trace pos last cmd state res = let call = lazy (ortac_show_cmd cmd state last res) in (pos, { call; res }) in let trace_suffix pos state cs = let rec aux state = function | [] -> [] | (cmd, res) :: tail -> let state' = Spec.next_state cmd state in let call = lazy (ortac_show_cmd cmd state' (tail = []) res) in { call; res } :: aux state' tail in (pos, aux state cs) in let rec aux pref cs1 cs2 s = match pref with | (c, res) :: pref' -> postcond Prefix c s res &&& lazy (let s' = Spec.next_state c s in mk_trace Prefix (pref' = []) c s' res <+> aux pref' cs1 cs2 s') | [] -> ( match (cs1, cs2) with | [], [] -> None | [], (c2, res2) :: cs2' -> postcond Tail2 c2 s res2 &&& lazy (let s' = Spec.next_state c2 s in mk_trace Tail2 (cs2' = []) c2 s' res2 <+> aux pref cs1 cs2' s') | (c1, res1) :: cs1', [] -> postcond Tail1 c1 s res1 &&& lazy (let s' = Spec.next_state c1 s in mk_trace Tail1 (cs1' = []) c1 s' res1 <+> aux pref cs1' cs2 s') | (c1, res1) :: cs1', (c2, res2) :: cs2' -> postcond Tail1 c1 s res1 <++> trace_suffix Tail2 s cs2 &&& lazy (let s' = Spec.next_state c1 s in mk_trace Tail1 (cs1' = []) c1 s' res1 <+> aux pref cs1' cs2 s') ||| lazy (postcond Tail2 c2 s res2 <++> trace_suffix Tail1 s cs1 &&& lazy (let s' = Spec.next_state c2 s in mk_trace Tail2 (cs2' = []) c2 s' res2 <+> aux pref cs1 cs2' (Spec.next_state c2 s)))) in aux let all_interleavings_ok (seq_pref, cmds1, cmds2) = all_interleavings_ok seq_pref cmds1 cmds2 Spec.init_state let arb_cmds_triple = arb_cmds_triple let arb_triple = arb_triple (* Common magic constants, taken from original implementation of STM_domain *) let rep_count = 25 (* No. of repetitions of the non-deterministic property *) let retries = 10 (* Additional factor of repetition during shrinking *) let seq_len = 20 (* max length of the sequential prefix *) let par_len = 12 (* max length of the parallel cmd lists *) (* Shamelessly copy-pasted from the original STM_domains *) (* operate over arrays to avoid needless allocation underway *) let interp_sut_res sut cs = let cs_arr = Array.of_list cs in let res_arr = Array.map (fun c -> Domain.cpu_relax (); Spec.run c sut) cs_arr in List.combine cs (Array.to_list res_arr) (* Shamelessly copy-pasted from the original STM_domains *) let run_par seq_pref cmds1 cmds2 = let sut = Spec.init_sut () in let pref_obs = Spec.wrap_cmd_seq @@ fun () -> interp_sut_res sut seq_pref in let barrier = Atomic.make 2 in let main cmds () = Spec.wrap_cmd_seq @@ fun () -> Atomic.decr barrier; while Atomic.get barrier <> 0 do Domain.cpu_relax () done; try Ok (interp_sut_res sut cmds) with exn -> Error exn in let dom1 = Domain.spawn (main cmds1) in let dom2 = Domain.spawn (main cmds2) in let obs1 = Domain.join dom1 in let obs2 = Domain.join dom2 in let () = Spec.cleanup sut in let obs1 = match obs1 with Ok v -> v | Error exn -> raise exn in let obs2 = match obs2 with Ok v -> v | Error exn -> raise exn in (pref_obs, obs1, obs2) let pp_prefix exp_res ppf traces = let assert_flag = traces.where_it_failed = Prefix in pp_traces assert_flag exp_res ppf @@ get_traces Prefix traces let pp_spawned pos ppf traces = let open Fmt in let rec aux ppf = function | [ { call; res } ] -> pf ppf "%s in@\n(* returned %s *)@\n r" (Lazy.force call) (show_res res) | { call; res } :: xs -> pf ppf "%s in@\n(* returned %s *)@\n" (Lazy.force call) (show_res res); aux ppf xs | _ -> () in match get_traces pos traces with [] -> pf ppf " ()" | xs -> aux ppf xs let pp_program max_suts ppf (traces, report) = let open Fmt in let inits = List.init max_suts (fun i -> Format.asprintf "let sut%d = %s" i report.init_sut) in let join1 = match traces.where_it_failed with | Tail1 -> "let r = Domain.join dom1" | _ -> "let _ = Domain.join dom1" and join2 = match traces.where_it_failed with | Tail2 -> "let r = Domain.join dom2" | _ -> "let _ = Domain.join dom2" in pf ppf "@[%s@\n\ open %s@\n\ let protect f = try Ok (f ()) with e -> Error e@\n\ %a@\n\ %a@\n\ let main1 () =@\n\ \ @[%a@]@\n\ let main2 () =@\n\ \ @[%a@]@\n\ @\n\ let dom1 = Domain.spawn main1@\n\ let dom2 = Domain.spawn main2@\n\ %s@\n\ %s@\n\ %a@\n" "[@@@ocaml.warning \"-8\"]" report.mod_name Format.( pp_print_list ~pp_sep:(fun pf _ -> fprintf pf "@\n") pp_print_string) inits (pp_prefix report.exp_res) traces (pp_spawned Tail1) traces (pp_spawned Tail2) traces join1 join2 pp_expected_result report.exp_res let agree_prop max_suts wrapped_init_state ortac_show_cmd postcond (seq_pref, cmds1, cmds2) = wrapped_init_state (); let pref_obs, obs1, obs2 = run_par seq_pref cmds1 cmds2 in match check_obs ortac_show_cmd postcond pref_obs obs1 obs2 Spec.init_state with | None -> true | Some (traces, report) -> Report.message (pp_program max_suts) traces report let agree_test ~count ~name max_suts wrapped_init_state ortac_show_cmd postcond = let max_gen = 3 * count in (* precond filtering may require extra generation: max. 3*count though *) let test_prop = agree_prop max_suts wrapped_init_state ortac_show_cmd postcond in Test.make ~retries ~max_gen ~count ~name (arb_triple seq_len par_len Spec.arb_cmd_seq Spec.arb_cmd_dom0 Spec.arb_cmd_dom1) (fun triple -> assume (all_interleavings_ok triple); repeat rep_count test_prop triple) (* 25 times each, then 25 * 10 times when shrinking *) end module Make (Spec : SpecOrtac) = MakeExt (struct include SpecDefaults include Spec end)
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