experimental:
optimisation mémoire déplacement de T_Vector dans son propre module suppression des types private (à débattre si on garde) fix des whitespaces dans les fichiers Utilisation de Ada.Text_IO.Float_IO git-svn-id: http://cregut.svn.enseeiht.fr/2020/1sn/pim/projets/GH-05@209562 e13453a9-b01f-0410-a051-f404c4f0c485
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@ -17,42 +17,6 @@ package body Google_Naive is
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return vec;
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end "*";
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function "*"(left: T_Element; right: T_Google) return T_Google is
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mat: T_Google;
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begin
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initialize(mat);
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for i in 0..N-1 loop
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for j in 0..N-1 loop
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mat(i,j) := left*right(i,j);
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end loop;
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end loop;
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return mat;
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end "*";
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function "/"(left: T_Google; right: T_Element) return T_Google is
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mat: T_Google;
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begin
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initialize(mat);
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for i in 0..N-1 loop
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for j in 0..N-1 loop
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mat(i,j) := left(i,j)/right;
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end loop;
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end loop;
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return mat;
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end "/";
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function "+"(left, right: T_Google) return T_Google is
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mat: T_Google;
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begin
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initialize(mat);
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for i in 0..N-1 loop
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for j in 0..N-1 loop
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mat(i,j) := left(i,j) + right(i,j);
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end loop;
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end loop;
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return mat;
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end "+";
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procedure initialize(mat: in out T_Google) is
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begin
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for i in 0..N-1 loop
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@ -62,37 +26,13 @@ package body Google_Naive is
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end loop;
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end initialize;
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procedure initialize(vec: in out T_Vecteur) is
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begin
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for i in 0..N-1 loop
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vec(i) := 1.0/T_Element(N);
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end loop;
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end initialize;
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function ones return T_Google is
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mat: T_Google;
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begin
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initialize(mat);
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for i in 0..N-1 loop
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for j in 0..N-1 loop
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mat(i,j) := 1.0;
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end loop;
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end loop;
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return mat;
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end ones;
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procedure insert(mat: in out T_Google; i, j: Natural; elm: T_Element) is
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begin
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mat(i,j) := elm;
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end insert;
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procedure create_H(mat: in out T_Google; file: in Ada.Text_IO.File_Type) is
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row, col: Integer;
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begin
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while not end_of_File(file) loop
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get(file, row);
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get(file, col);
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insert(mat, row, col, 1.0);
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mat(row, col) := 1.0;
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end loop;
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end create_H;
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@ -104,13 +44,14 @@ package body Google_Naive is
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for j in 0..N-1 loop
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sum := sum + mat(i,j);
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end loop;
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if sum /= 0.0 then
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for j in 0..N-1 loop
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if mat(i,j) /= 0.0 then
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mat(i,j) := 1.0/sum;
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end if;
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end loop;
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else -- sum == 0
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else -- sum == 0 then
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for j in 0..N-1 loop
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mat(i,j) := 1.0/T_Element(N);
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end loop;
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@ -119,16 +60,13 @@ package body Google_Naive is
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end create_S;
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procedure create_G(mat: in out T_Google; alpha: in T_Element) is
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begin
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mat := alpha*mat + (1.0-alpha)/T_Element(N)*ones;
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end create_G;
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procedure put(vec: in T_Vecteur) is
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begin
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for i in 0..N-1 loop
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put(vec(i)); new_line;
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for j in 0..N-1 loop
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mat(i,j) := alpha*mat(i,j) + (1.0-alpha)/T_Element(N);
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end loop;
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end put;
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end loop;
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end create_G;
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procedure put(mat: in T_Google) is
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begin
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@ -140,42 +78,4 @@ package body Google_Naive is
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end loop;
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end put;
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procedure put(file: in out Ada.Text_IO.File_Type; vec: in T_Vecteur) is
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begin
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for i in 0..N-1 loop
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put(file, vec(i));
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new_line(file);
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end loop;
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end put;
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procedure sort_with_index_desc(pi: in T_Vecteur; pi_sorted: out T_Vecteur; pi_index: out T_Vecteur) is
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tmp: T_Element;
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max: Natural;
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begin
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pi_sorted := pi;
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initialize(pi_index);
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for i in 0..N-1 loop
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pi_index(i) := T_Element(i);
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end loop;
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for i in 0..N-2 loop
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max := i;
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for j in i+1..N-1 loop
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if pi_sorted(max) < pi_sorted(j) then
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max := j;
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end if;
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end loop;
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if max /= i then
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tmp := pi_sorted(i);
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pi_sorted(i) := pi_sorted(max);
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pi_sorted(max) := tmp;
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tmp := pi_index(i);
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pi_index(i) := pi_index(max);
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pi_index(max) := tmp;
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end if;
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end loop;
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end sort_with_index_desc;
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end Google_Naive;
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@ -1,9 +1,11 @@
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with Ada.Text_IO; use Ada.Text_IO;
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with Vector;
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generic
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type T_Element is digits <>;
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N: Positive;
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with package Vector_T_Element is new Vector(T_Element => T_Element, N => N);
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package Google_Naive is
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new Ada.Text_IO.Float_IO(Num => T_Element);
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use Text_T_Element;
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type T_Google is private;
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type T_Vecteur is private;
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-- on utilise le module Vector
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use Vector_T_Element;
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type T_Google is array (0..N-1, 0..N-1) of T_Element;
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function "*"(left: T_Vecteur; right: T_Google) return T_Vecteur;
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function "*"(left: T_Element; right: T_Google) return T_Google;
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function "/"(left: T_Google; right: T_Element) return T_Google with Pre => right /= 0.0;
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function "+"(left, right: T_Google) return T_Google;
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procedure initialize(mat: in out T_Google);
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procedure initialize(vec: in out T_Vecteur);
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function ones return T_Google;
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procedure insert(mat: in out T_Google; i, j: Natural; elm: T_Element);
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procedure create_H(mat: in out T_Google; file: in Ada.Text_IO.File_Type);
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procedure create_S(mat: in out T_Google);
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procedure create_G(mat: in out T_Google; alpha: in T_Element);
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procedure put(vec: in T_Vecteur);
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procedure put(mat: in T_Google);
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procedure put(file: in out Ada.Text_IO.File_Type; vec: in T_Vecteur);
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procedure sort_with_index_desc(pi: in T_Vecteur; pi_sorted: out T_Vecteur; pi_index: out T_Vecteur);
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private
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type T_Google is array (0..N-1, 0..N-1) of T_Element;
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type T_Vecteur is array (0..N-1) of T_Element;
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end Google_Naive;
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@ -4,13 +4,14 @@ with Ada.Command_Line; use Ada.Command_Line;
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with Ada.Strings.Unbounded; use Ada.Strings.Unbounded;
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with Google_Naive;
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with Vector;
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procedure pageRank is
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ERROR_args: Exception;
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-- on définit le type T_Double, et on utilise le module générique Float_IO pour pouvoir l'afficher
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Type T_Double is digits 10;
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Type T_Double is digits 11;
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package Text_T_Double is
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new Ada.Text_IO.Float_IO(Num => T_Double);
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use Text_T_Double;
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alpha: T_Double;
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ite_max: Natural;
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naif: Boolean) is
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-- on utilise le module générique
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package Google is
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new Google_Naive(T_Element => T_Double, N => N);
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use Google;
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package Vector_T_Double is
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new Vector(T_Element => T_Double, N => N);
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use Vector_T_Double;
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procedure algorithm_naif(file: in out Ada.Text_IO.File_Type;
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alpha: in T_Double;
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ite_max: in Natural;
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pi: out T_Vecteur) is
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-- on utilise le module générique
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package Google is
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new Google_Naive(T_Element => T_Double, N => N, Vector_T_Element => Vector_T_Double);
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use Google;
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G: T_Google;
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begin
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initialize(pi);
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--new_line;
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--put_line("final pi:");
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--put(pi); new_line;
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--put(pi);
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end algorithm_naif;
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-- procedure algorithm_creux(); -- TODO
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procedure write_to_files(filename: in Unbounded_String; pi_sorted: in T_Vecteur; pi_index: in T_Vecteur) is
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procedure write_to_files(filename: in Unbounded_String; pi_sorted: in T_Vecteur; pi_index: in T_Vecteur_Index) is
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file: Ada.Text_IO.File_Type;
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begin
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create(file, Out_File, To_String(filename & ".p"));
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put(file, N);
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put(file, alpha);
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put(file, ite_max);
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put(file, N, 1);
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put(file, alpha, 2);
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put(file, ite_max, 2);
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new_line(file);
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put(file, pi_sorted);
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close(file);
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close(file);
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end write_to_files;
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pi, pi_sorted, pi_index: T_Vecteur;
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pi: T_Vecteur;
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pi_index: T_Vecteur_Index;
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begin
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end if;
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-- on trie les poids par ordre décroissant, on tri en même temps les indices des pages
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sort_with_index_desc(pi, pi_sorted, pi_index);
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initialize(pi_index);
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sort_with_index_desc(pi, pi_index);
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new_line;
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put_line("sorted pi:");
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put(pi); new_line;
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-- on écrit les resultats dans des fichiers
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write_to_files(filename, pi_sorted, pi_index);
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write_to_files(filename, pi, pi_index);
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end choix_type_algo;
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