package grenier

  1. Overview
  2. Docs
Legend:
Page
Library
Module
Module type
Parameter
Class
Class type
Source

Source file order_indir.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
type order = {
  mutable n: int;
  mutable n0: int;
}

type t = {
  mutable repr: Order_list.t;
  mutable tag: int;
  mutable prev: t;
  mutable next: t;
  order: order;
}

let rec sentinel = { repr = Order_list.root (); tag = 0;
                     order = { n = 0; n0 = 0 };
                     prev = sentinel; next = sentinel }

let is_global_last t = t.next == t
let is_global_first t = t.prev == t

let is_local_last t = is_global_last t || t.next.repr != t.repr
let is_local_first t = is_global_first t || t.prev.repr != t.repr

let average x y = (x land y) + (x lxor y) / 2

(** Check if two elements belong to the same order. O(1) *)
let same_order t1 t2 =
  t1.order == t2.order

(** Compare two elements. O(1) *)
let compare t1 t2 =
  if t1.repr == t2.repr then
    compare t1.tag t2.tag
  else
    Order_list.compare t1.repr t2.repr

(** How many elements are ordered. O(1) *)
let cardinal t = t.order.n

let is_valid t = t.prev != sentinel

let root () =
  let rec t = { repr = Order_list.root ();
                tag = 0; order = { n = 1; n0 = 1};
                prev = t; next = t}
  in
  t

let global_relabel t =
  (* prerr_endline "global_relabel"; *)
  let t =
    let rec first t =
      if is_global_first t then t
      else first t.prev
    in
    first t
  in
  let n = t.order.n in
  t.order.n0 <- n;
  let count = int_of_float (log (float n) *. 4.0) in
  let step = max_int / (count + 1) * 2 in
  let tag  = ref min_int in
  let repr = ref t.repr in
  let k    = ref count in
  let r    = ref t in
  while !r != sentinel do
    let t = !r in

    if !k = 0 then begin
      let repr' = Order_list.unsafe_next !repr in
      repr := (if repr' == !repr then
                 Order_list.after repr'
               else repr');
      tag := min_int;
      k := count;
    end;

    tag := !tag + step;
    (* Printf.eprintf "tag = %d\n" !tag; *)

    t.tag <- !tag;
    t.repr <- !repr;
    decr k;

    if is_global_last t then
      r := sentinel
    else
      r := (!r).next
  done;
  if !repr != Order_list.unsafe_next !repr then begin
    let rec release repr =
      let repr' = Order_list.unsafe_next repr in
      Order_list.forget repr;
      if repr != repr' then release repr'
    in
    release (Order_list.unsafe_next !repr)
  end

let local_relabel t =
  (* prerr_endline "local_relabel"; *)
  let count = ref 1 in
  let first =
    let t = ref t in
    while not (is_local_first !t) do
      incr count;
      t := (!t).prev
    done;
    !t
  in
  let count =
    let t = ref t in
    while not (is_local_last !t) do
      incr count;
      t := (!t).next
    done;
    !count
  in
  let step = max_int / (count + 1) * 2 in
  let rec aux0 t tag = function
    | 0 -> t
    | n ->
      t.tag <- tag;
      (* Printf.eprintf "tag0 = %d\n" tag; *)
      aux0 t.next (tag + step) (n - 1)
  in
  let mid = aux0 first (min_int + step) (count / 2) in
  let repr = Order_list.after t.repr in
  let rec aux1 t tag =
    let is_local_last = is_local_last t in
    t.repr <- repr;
    t.tag <- tag;
    (* Printf.eprintf "tag1 = %d\n" tag; *)
    if not is_local_last then
      aux1 t.next (tag + step)
  in
  aux1 mid (min_int + step)

let relabel t =
  (* prerr_endline "relabel"; *)
  let {n; n0} = t.order in
  if n > Sys.word_size && (n * 3 < n0 * 2 || n0 * 3 < n * 2) then
    global_relabel t
  else
    local_relabel t

let after t =
  (* prerr_endline "after"; *)
  assert (is_valid t);
  let tag1 = t.tag in
  let tag2 = if is_local_last t then max_int else t.next.tag in
  let tag = average tag1 tag2 in
  let {next; repr; order; _} = t in
  let t' = {repr; tag; order; prev = t; next} in
  if is_global_last t then
    t'.next <- t'
  else
    next.prev <- t';
  t.next <- t';
  order.n <- order.n + 1;
  if tag = tag1 || tag = tag2 then relabel t;
  t'

let before t =
  (* prerr_endline "before"; *)
  assert (is_valid t);
  let tag1 = if is_local_first t then min_int else t.prev.tag in
  let tag2 = t.tag in
  let tag = average tag1 tag2 in
  let {prev; repr; order; _} = t in
  let t' = {repr; tag; order; prev; next = t} in
  if is_global_first t then
    t'.prev <- t'
  else
    prev.next <- t';
  t.prev <- t';
  order.n <- order.n + 1;
  if tag = tag1 || tag = tag2 then relabel t';
  t'

let forget t =
  (* prerr_endline "forget"; *)
  if is_valid t then
  begin
    (* Update inner order *)
    if is_local_first t && is_local_last t then
      Order_list.forget t.repr;
    (* Update linked list *)
    let {next; prev; _} = t in
    if is_global_first t then
      next.prev <- next
    else
      next.prev <- prev;
    if is_global_last t then
      prev.next <- prev
    else
      prev.next <- next;
    (* Update global order *)
    t.order.n <- t.order.n - 1;
    t.prev <- sentinel;
    t.next <- sentinel;
    t.repr <- sentinel.repr;
  end

let check t =
  assert (Order_list.is_valid t.repr);
  assert (t.order == t.next.order);
  assert (t.order == t.prev.order);
  assert (Order_list.compare t.prev.repr t.repr <= 0);
  assert (Order_list.compare t.repr t.next.repr <= 0);
  if is_local_first t then begin
    assert (Order_list.same_order t.prev.repr t.repr);
    if not (is_global_first t) then
      assert (Order_list.compare t.prev.repr t.repr < 0);
  end
  else begin
    assert (t.repr == t.prev.repr);
    assert (t.prev.tag < t.tag);
  end;
  if is_local_last t then begin
    assert (Order_list.same_order t.repr t.next.repr);
    if not (is_global_last t) then
      assert (Order_list.compare t.repr t.next.repr < 0);
  end
  else begin
    assert (t.repr == t.next.repr);
    assert (t.tag < t.next.tag);
  end

let unsafe_check t msg =
  Order_list.unsafe_check t.repr msg;
  try
    if is_valid t then check t
    else begin
      assert (t.prev == sentinel);
      assert (t.next == sentinel);
    end
  with Assert_failure (file, line, col) ->
    raise (Assert_failure (msg ^ ": " ^ file, line, col))
OCaml

Innovation. Community. Security.