164 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			Prolog
		
	
	
	
	
	
			
		
		
	
	
			164 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			Prolog
		
	
	
	
	
	
| /*************************************************************************
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| *									 *
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| *	 YAP Prolog 							 *
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| *									 *
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| *	Yap Prolog was developed at NCCUP - Universidade do Porto	 *
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| *									 *
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| * Copyright L.Damas, V.S.Costa and Universidade do Porto 1985-2006	 *
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| *									 *
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| **************************************************************************
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| *									 *
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| * File:		matrix.yap						 *
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| * Last rev:								 *
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| * mods:									 *
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| * comments:	Have some fun with blobs				 *
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| *									 *
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| *************************************************************************/
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| 
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| /*
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|   A matrix is an object with integer or floating point numbers. A matrix
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|   may have a number of dimensions. These routines implement a number of
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|   routine manipulation procedures.
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| 
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|   matrix(Type,D1,D2,...,Dn,data(......))
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| 
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|   Type = int, float
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| 
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|   Operations:
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|   
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| typedef enum {
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|   MAT_SUM=0,
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|   MAT_SUB=1,
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|   MAT_TIMES=2,
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|   MAT_DIV=3,
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|   MAT_IDIV=4,
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|   MAT_ZDIV=5
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| } op_type;
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| 
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|   */
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| 
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| :- module( matrix,
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| 	   [
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| 	    matrix_new/3,
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| 	    matrix_new/4,
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| 	    matrix_new_set/4,
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| 	    matrix_dims/2,
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| 	    matrix_ndims/2,
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| 	    matrix_size/2,
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| 	    matrix_type/2,
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| 	    matrix_to_list/2,
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| 	    matrix_get/3,
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| 	    matrix_set/3,
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| 	    matrix_set_all/2,
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| 	    matrix_add/3,
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| 	    matrix_inc/2,
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| 	    matrix_dec/2,
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| 	    matrix_mult/2,
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| 	    matrix_inc/3,
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| 	    matrix_dec/3,
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| 	    matrix_arg_to_offset/3,
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| 	    matrix_offset_to_arg/3,
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| 	    matrix_max/2,
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| 	    matrix_maxarg/2,
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| 	    matrix_min/2,
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| 	    matrix_minarg/2,
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| 	    matrix_sum/2,
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| 	    matrix_sum_out/3,
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| 	    matrix_sum_out_several/3,
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| 	    matrix_sum_logs_out/3,
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| 	    matrix_sum_logs_out_several/3,
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| 	    matrix_add_to_all/2,
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| 	    matrix_agg_lines/3,
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| 	    matrix_agg_cols/3,
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| 	    matrix_to_logs/1,
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| 	    matrix_to_exps/1,
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| 	    matrix_to_exps2/1,
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| 	    matrix_to_logs/2,
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| 	    matrix_to_exps/2,
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| 	    matrix_op/4,
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| 	    matrix_op_to_all/4,
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| 	    matrix_op_to_lines/4,
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| 	    matrix_op_to_cols/4,
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| 	    matrix_shuffle/3,
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| 	    matrix_transpose/2,
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| 	    matrix_set_all_that_disagree/5,
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| 	    matrix_expand/3,
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| 	    matrix_select/4,
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| 	    matrix_column/3
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| 	    ]).
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| 
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| :- load_foreign_files([matrix], [], init_matrix).
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| 
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| matrix_new(ints,Dims,Matrix) :-
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| 	length(Dims,NDims),
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| 	new_ints_matrix_set(NDims, Dims, 0, Matrix).
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| matrix_new(floats,Dims,Matrix) :-
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| 	length(Dims,NDims),
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| 	new_floats_matrix_set(NDims, Dims, 0.0, Matrix).
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| 
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| 
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| matrix_new(ints,Dims,Data,Matrix) :-
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| 	length(Dims,NDims),
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| 	new_ints_matrix(NDims, Dims, Data, Matrix).
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| matrix_new(floats,Dims,Data,Matrix) :-
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| 	length(Dims,NDims),
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| 	new_floats_matrix(NDims, Dims, Data, Matrix).
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| 
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| 
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| matrix_new_set(ints,Dims,Elem,Matrix) :-
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| 	length(Dims,NDims),
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| 	new_ints_matrix_set(NDims, Dims, Elem, Matrix).
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| matrix_new_set(floats,Dims,Elem,Matrix) :-
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| 	length(Dims,NDims),
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| 	new_floats_matrix_set(NDims, Dims, Elem, Matrix).
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| 
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| 
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| matrix_type(Matrix,Type) :-
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| 	matrix_type_as_number(Matrix, 0), !,
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| 	Type = ints.
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| matrix_type(_,floats).
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| 
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| 	
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| matrix_agg_lines(M1,+,NM) :-
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| 	do_matrix_agg_lines(M1,0,NM).
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| /* other operations: *, logprod */
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| 
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| matrix_agg_cols(M1,+,NM) :-
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| 	do_matrix_agg_cols(M1,0,NM).
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| /* other operations: *, logprod */
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| 
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| matrix_op(M1,M2,+,NM) :-
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| 	do_matrix_op(M1,M2,0,NM).
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| matrix_op(M1,M2,-,NM) :-
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| 	do_matrix_op(M1,M2,1,NM).
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| matrix_op(M1,M2,*,NM) :-
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| 	do_matrix_op(M1,M2,2,NM).
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| matrix_op(M1,M2,/,NM) :-
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| 	do_matrix_op(M1,M2,3,NM).
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| matrix_op(M1,M2,zdiv,NM) :-
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| 	do_matrix_op(M1,M2,5,NM).
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| 
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| matrix_op_to_all(M1,+,Num,NM) :-
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| 	do_matrix_op_to_all(M1,0,Num,NM).
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| matrix_op_to_all(M1,*,Num,NM) :-
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| 	do_matrix_op_to_all(M1,2,Num,NM).
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| matrix_op_to_all(M1,/,Num,NM) :-
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| 	% can only use floats.
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| 	FNum is float(Num),
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| 	do_matrix_op_to_all(M1,3,FNum,NM).
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| /* other operations: *, logprod */
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| 
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| matrix_op_to_lines(M1,M2,/,NM) :-
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| 	do_matrix_op_to_lines(M1,M2,3,NM).
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| /* other operations: *, logprod */
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| 
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| matrix_op_to_cols(M1,M2,+,NM) :-
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| 	do_matrix_op_to_cols(M1,M2,0,NM).
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| /* other operations: *, logprod */
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| 
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| 
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| matrix_transpose(M1,M2) :-
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| 	matrix_shuffle(M1,[1,0],M2).
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| 
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| 
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