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example file, that uses LazyGraph to represent memory layout of values (and compute their size)
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3 changed files with 61 additions and 1 deletions
2
.merlin
2
.merlin
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@ -1,7 +1,9 @@
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S .
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S tests
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S examples
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B _build
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B _build/tests
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B _build/examples
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PKG oUnit
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PKG bench
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PKG threads
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5
Makefile
5
Makefile
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@ -17,6 +17,9 @@ lib:
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lib_thread:
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ocamlbuild $(OPTIONS) $(TARGETS_LIB) $(TARGET_THREAD_LIB)
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examples:
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ocamlbuild $(OPTIONS) -I . examples/mem_size.native
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tests:
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ocamlbuild $(OPTIONS) -package oUnit -I . tests/run_tests.native
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@ -29,5 +32,5 @@ clean:
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tags:
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otags *.ml *.mli
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.PHONY: all all_thread clean tests tags
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.PHONY: all all_thread clean tests tags examples
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55
examples/mem_size.ml
Normal file
55
examples/mem_size.ml
Normal file
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@ -0,0 +1,55 @@
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(** Compute the memory footprint of a value (and its subvalues). Reference is
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http://rwmj.wordpress.com/2009/08/05/ocaml-internals-part-2-strings-and-other-types/ *)
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module G = LazyGraph.PhysicalMake(struct type t = Obj.t end)
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(** Graph on memory values *)
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open Enum.Infix
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(** A graph vertex is an Obj.t value *)
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let graph x =
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if Obj.is_block x
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then
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let children = Enum.map (fun i -> i, Obj.field x i) (0--(Obj.size x - 1)) in
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G.Node (x, Obj.tag x, children)
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else
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G.Node (x, Obj.obj x, Enum.empty)
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let word_size = Sys.word_size / 8
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let size x =
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if Obj.is_block x
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then (1+Obj.size x) * word_size
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else word_size
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let compute_size x =
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let o = Obj.repr x in
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let vertices = G.bfs graph o in
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Enum.fold (fun sum (o',_,_) -> size o' + sum) 0 vertices
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let print_val fmt x =
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let o = Obj.repr x in
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let graph' = G.map ~edges:(fun i -> [`Label (string_of_int i)])
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~vertices:(fun v -> [`Label (string_of_int v)]) graph in
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G.Dot.pp ~name:"value" graph' fmt (Enum.singleton o)
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let print_val_file filename x =
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let out = open_out filename in
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let fmt = Format.formatter_of_out_channel out in
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print_val fmt x;
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Format.pp_print_flush fmt ();
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close_out out
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let process_val ~name x =
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print_val_file (Format.sprintf "/tmp/%s.dot" name) x;
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Format.printf "size of val is %d@." (compute_size x)
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module ISet = Set.Make(struct type t = int let compare = compare end)
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let _ =
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let s = Enum.fold (fun s x -> ISet.add x s) ISet.empty (1--100) in
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process_val ~name:"foo" s;
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let l = Enum.to_list (Enum.map (fun i -> Enum.to_list (i--(i+42)))
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(Enum.of_list [0;100;1000])) in
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process_val ~name:"bar" l;
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()
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