mirror of https://github.com/GNOME/gimp.git
444 lines
16 KiB
C
444 lines
16 KiB
C
/*
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* "$Id$"
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*
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* Print plug-in header file for the GIMP.
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*
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* Copyright 1997-2000 Michael Sweet (mike@easysw.com) and
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* Robert Krawitz (rlk@alum.mit.edu)
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the Free
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* Software Foundation; either version 2 of the License, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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* Revision History:
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*
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* See ChangeLog
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*/
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/*
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* This file must include only standard C header files. The core code must
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* compile on generic platforms that don't support glib, gimp, gtk, etc.
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*/
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#ifndef PRINT_HEADER
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#define PRINT_HEADER
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/*
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* Include necessary header files...
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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/*
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* Constants...
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*/
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#define OUTPUT_GRAY 0 /* Grayscale output */
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#define OUTPUT_COLOR 1 /* Color output */
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#define OUTPUT_GRAY_COLOR 2 /* Grayscale output using color */
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#define ORIENT_AUTO -1 /* Best orientation */
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#define ORIENT_PORTRAIT 0 /* Portrait orientation */
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#define ORIENT_LANDSCAPE 1 /* Landscape orientation */
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#define ORIENT_UPSIDEDOWN 2 /* Reverse portrait orientation */
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#define ORIENT_SEASCAPE 3 /* Reverse landscape orientation */
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#define MAX_CARRIAGE_WIDTH 80 /* This really needs to go away */
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/* For now, this is wide enough for 4B ISO */
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#define IMAGE_LINE_ART 0
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#define IMAGE_SOLID_TONE 1
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#define IMAGE_CONTINUOUS 2
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#define IMAGE_MONOCHROME 3
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#define NIMAGE_TYPES 4
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/* Uncomment the next line to get performance statistics:
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* look for QUANT(#) in the code. At the end of escp2-print
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* run, it will print out how long and how many time did
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* certain pieces of code take. Of course, don't forget about
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* overhead of call to gettimeofday - it's not zero.
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* If you need more detailed performance stats, just put
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* QUANT() calls in the interesting spots in the code */
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/*#define QUANTIFY*/
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#ifdef QUANTIFY
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#include <assert.h>
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#include <sys/time.h>
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#include <unistd.h>
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#else
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#define QUANT(n)
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#endif
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/*
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* Printer driver control structure. See "print.c" for the actual list...
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*/
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typedef struct /* Plug-in variables */
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{
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char output_to[256], /* Name of file or command to print to */
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driver[64], /* Name of printer "driver" */
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ppd_file[256]; /* PPD file */
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int output_type; /* Color or grayscale output */
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char resolution[64], /* Resolution */
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media_size[64], /* Media size */
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media_type[64], /* Media type */
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media_source[64], /* Media source */
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ink_type[64], /* Ink or cartridge */
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dither_algorithm[64]; /* Dithering algorithm */
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float brightness; /* Output brightness */
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float scaling; /* Scaling, percent of printable area */
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int orientation, /* Orientation - 0 = port., 1 = land.,
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-1 = auto */
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left, /* Offset from lower-lefthand corner, points */
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top; /* ... */
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float gamma; /* Gamma */
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float contrast, /* Output Contrast */
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cyan, /* Output red level */
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magenta, /* Output green level */
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yellow; /* Output blue level */
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int linear; /* Linear density (mostly for testing!) */
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float saturation; /* Output saturation */
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float density; /* Maximum output density */
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int image_type; /* Image type (line art etc.) */
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int unit; /* Units for preview area 0=Inch 1=Metric */
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float app_gamma; /* Application gamma */
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int page_width; /* Width of page in points */
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int page_height; /* Height of page in points */
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void *lut; /* Look-up table */
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unsigned char *cmap; /* Color map */
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} vars_t;
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typedef struct /**** Printer List ****/
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{
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int active; /* Do we know about this printer? */
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char name[128]; /* Name of printer */
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vars_t v;
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} plist_t;
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typedef enum papersize_unit
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{
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PAPERSIZE_ENGLISH,
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PAPERSIZE_METRIC
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} papersize_unit_t;
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typedef struct
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{
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char name[32];
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unsigned width;
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unsigned length;
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papersize_unit_t paper_unit;
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} papersize_t;
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/*
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* Abstract data type for interfacing with the image creation program
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* (in this case, the Gimp).
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*/
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typedef void *Image;
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/* For how to create an Image wrapping a Gimp drawable, see print_gimp.h */
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extern void Image_init(Image image);
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extern void Image_reset(Image image);
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extern void Image_transpose(Image image);
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extern void Image_hflip(Image image);
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extern void Image_vflip(Image image);
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extern void Image_crop(Image image, int left, int top, int right, int bottom);
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extern void Image_rotate_ccw(Image image);
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extern void Image_rotate_cw(Image image);
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extern void Image_rotate_180(Image image);
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extern int Image_bpp(Image image);
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extern int Image_width(Image image);
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extern int Image_height(Image image);
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extern void Image_get_row(Image image, unsigned char *data, int row);
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extern const char *Image_get_appname(Image image);
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extern void Image_progress_init(Image image);
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extern void Image_note_progress(Image image, double current, double total);
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extern void Image_progress_conclude(Image image);
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typedef struct printer
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{
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char *long_name, /* Long name for UI */
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*driver; /* Short name for printrc file */
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int model; /* Model number */
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char **(*parameters)(const struct printer *printer, char *ppd_file,
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char *name, int *count);
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/* Parameter names */
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void (*media_size)(const struct printer *printer, const vars_t *v,
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int *width, int *length);
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void (*imageable_area)(const struct printer *printer, const vars_t *v,
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int *left, int *right, int *bottom, int *top);
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void (*limit)(const struct printer *printer, const vars_t *v,
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int *width, int *length);
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/* Print function */
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void (*print)(const struct printer *printer, int copies, FILE *prn,
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Image image, const vars_t *v);
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const char *(*default_resolution)(const struct printer *printer);
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vars_t printvars;
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} printer_t;
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typedef void (*convert_t)(unsigned char *in, unsigned short *out, int width,
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int bpp, unsigned char *cmap, const vars_t *vars);
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typedef struct
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{
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double value;
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unsigned bit_pattern;
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int is_dark;
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unsigned dot_size;
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} simple_dither_range_t;
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typedef struct
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{
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double value;
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double lower;
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double upper;
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unsigned bit_pattern;
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int is_dark;
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unsigned dot_size;
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} dither_range_t;
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typedef struct
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{
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double value_l;
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double value_h;
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unsigned bits_l;
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unsigned bits_h;
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int isdark_l;
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int isdark_h;
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} full_dither_range_t;
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/*
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* Prototypes...
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*/
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extern void * init_dither(int in_width, int out_width, int horizontal_aspect,
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int vertical_aspect, vars_t *vars);
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extern void dither_set_transition(void *vd, double);
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extern void dither_set_density(void *vd, double);
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extern void dither_set_black_lower(void *vd, double);
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extern void dither_set_black_upper(void *vd, double);
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extern void dither_set_black_levels(void *vd, double, double, double);
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extern void dither_set_randomizers(void *vd, double, double, double, double);
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extern void dither_set_ink_darkness(void *vd, double, double, double);
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extern void dither_set_light_inks(void *vd, double, double, double, double);
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extern void dither_set_c_ranges(void *vd, int nlevels,
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const simple_dither_range_t *ranges,
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double density);
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extern void dither_set_m_ranges(void *vd, int nlevels,
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const simple_dither_range_t *ranges,
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double density);
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extern void dither_set_y_ranges(void *vd, int nlevels,
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const simple_dither_range_t *ranges,
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double density);
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extern void dither_set_k_ranges(void *vd, int nlevels,
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const simple_dither_range_t *ranges,
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double density);
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extern void dither_set_k_ranges_full(void *vd, int nlevels,
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const full_dither_range_t *ranges,
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double density);
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extern void dither_set_c_ranges_full(void *vd, int nlevels,
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const full_dither_range_t *ranges,
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double density);
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extern void dither_set_m_ranges_full(void *vd, int nlevels,
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const full_dither_range_t *ranges,
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double density);
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extern void dither_set_y_ranges_full(void *vd, int nlevels,
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const full_dither_range_t *ranges,
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double density);
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extern void dither_set_c_ranges_simple(void *vd, int nlevels,
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const double *levels, double density);
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extern void dither_set_m_ranges_simple(void *vd, int nlevels,
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const double *levels, double density);
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extern void dither_set_y_ranges_simple(void *vd, int nlevels,
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const double *levels, double density);
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extern void dither_set_k_ranges_simple(void *vd, int nlevels,
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const double *levels, double density);
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extern void dither_set_c_ranges_complete(void *vd, int nlevels,
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const dither_range_t *ranges);
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extern void dither_set_m_ranges_complete(void *vd, int nlevels,
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const dither_range_t *ranges);
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extern void dither_set_y_ranges_complete(void *vd, int nlevels,
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const dither_range_t *ranges);
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extern void dither_set_k_ranges_complete(void *vd, int nlevels,
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const dither_range_t *ranges);
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extern void dither_set_ink_spread(void *vd, int spread);
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extern void dither_set_max_ink(void *vd, int, double);
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extern void dither_set_x_oversample(void *vd, int os);
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extern void dither_set_y_oversample(void *vd, int os);
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extern void dither_set_adaptive_divisor(void *vd, unsigned divisor);
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extern void free_dither(void *);
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extern void * initialize_weave_params(int S, int J, int O,
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int firstrow, int lastrow,
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int pagelength, int strategy);
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extern void calculate_row_parameters(void *w, int row, int subpass,
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int *pass, int *jet, int *startrow,
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int *phantomrows, int *jetsused);
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extern void destroy_weave_params(void *vw);
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extern void dither_monochrome(const unsigned short *, int, void *,
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unsigned char *, int duplicate_line);
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extern void dither_black(const unsigned short *, int, void *,
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unsigned char *, int duplicate_line);
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extern void dither_cmyk(const unsigned short *, int, void *,
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unsigned char *,
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unsigned char *, unsigned char *,
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unsigned char *, unsigned char *,
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unsigned char *, unsigned char *,
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int duplicate_line);
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extern void merge_printvars(vars_t *user, const vars_t *print);
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extern void free_lut(vars_t *v);
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extern void compute_lut(size_t steps, vars_t *v);
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extern void default_media_size(const printer_t *printer, const vars_t *v,
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int *width, int *length);
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extern char **escp2_parameters(const printer_t *printer, char *ppd_file,
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char *name, int *count);
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extern void escp2_imageable_area(const printer_t *printer, const vars_t *v,
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int *left, int *right,
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int *bottom, int *top);
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extern void escp2_limit(const printer_t *printer, const vars_t *v,
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int *width, int *length);
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extern void escp2_print(const printer_t *printer, int copies, FILE *prn,
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Image image, const vars_t *v);
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extern const char *escp2_default_resolution(const printer_t *printer);
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extern char **canon_parameters(const printer_t *printer, char *ppd_file,
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char *name, int *count);
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extern void canon_imageable_area(const printer_t *printer, const vars_t *v,
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int *left, int *right,
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int *bottom, int *top);
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extern void canon_limit(const printer_t *printer, const vars_t *v,
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int *width, int *length);
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extern void canon_print(const printer_t *printer, int copies, FILE *prn,
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Image image, const vars_t *v);
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extern const char *canon_default_resolution(const printer_t *printer);
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extern char **pcl_parameters(const printer_t *printer, char *ppd_file,
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char *name, int *count);
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extern void pcl_imageable_area(const printer_t *printer, const vars_t *v,
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int *left, int *right,
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int *bottom, int *top);
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extern void pcl_limit(const printer_t *printer, const vars_t *v,
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int *width, int *length);
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extern void pcl_print(const printer_t *printer, int copies, FILE *prn,
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Image image, const vars_t *v);
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extern const char *pcl_default_resolution(const printer_t *printer);
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extern char **ps_parameters(const printer_t *printer, char *ppd_file,
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char *name, int *count);
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extern void ps_media_size(const printer_t *printer, const vars_t *v,
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int *width, int *length);
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extern void ps_imageable_area(const printer_t *printer, const vars_t *v,
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int *left, int *right,
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int *bottom, int *top);
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extern void ps_limit(const printer_t *printer, const vars_t *v,
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int *width, int *length);
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extern void ps_print(const printer_t *printer, int copies, FILE *prn,
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Image image, const vars_t *v);
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extern const char *ps_default_resolution(const printer_t *printer);
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extern const char *default_dither_algorithm(void);
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extern int known_papersizes(void);
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extern const papersize_t *get_papersizes(void);
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extern const papersize_t *get_papersize_by_name(const char *);
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extern const papersize_t *get_papersize_by_size(int l, int w);
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extern int known_printers(void);
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extern const printer_t *get_printers(void);
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extern const printer_t *get_printer_by_index(int);
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extern const printer_t *get_printer_by_long_name(const char *);
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extern const printer_t *get_printer_by_driver(const char *);
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extern int get_printer_index_by_driver(const char *);
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extern int num_dither_algos;
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extern char *dither_algo_names[];
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extern convert_t choose_colorfunc(int, int, const unsigned char *, int *,
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const vars_t *);
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extern void
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compute_page_parameters(int page_right, int page_left, int page_top,
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int page_bottom, double scaling, int image_width,
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int image_height, Image image, int *orientation,
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int *page_width, int *page_height, int *out_width,
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int *out_height, int *left, int *top);
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extern int
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verify_printer_params(const printer_t *, const vars_t *);
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extern const vars_t *print_default_settings(void);
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extern const vars_t *print_maximum_settings(void);
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extern const vars_t *print_minimum_settings(void);
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#ifdef QUANTIFY
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/* Used for performance analysis - to be called before and after
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* the interval to be quantified */
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#define NUM_QUANTIFY_BUCKETS 1024
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extern unsigned quantify_counts[NUM_QUANTIFY_BUCKETS];
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extern struct timeval quantify_buckets[NUM_QUANTIFY_BUCKETS];
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extern int quantify_high_index;
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extern int quantify_first_time;
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extern struct timeval quantify_cur_time;
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extern struct timeval quantify_prev_time;
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#define QUANT(number) \
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{\
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gettimeofday(&quantify_cur_time, NULL);\
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assert(number < NUM_QUANTIFY_BUCKETS);\
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quantify_counts[number]++;\
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\
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if (quantify_first_time) {\
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quantify_first_time = 0;\
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} else {\
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if (number > quantify_high_index) quantify_high_index = number;\
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if (quantify_prev_time.tv_usec > quantify_cur_time.tv_usec) {\
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quantify_buckets[number].tv_usec += ((quantify_cur_time.tv_usec + 1000000) - quantify_prev_time.tv_usec);\
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quantify_buckets[number].tv_sec += (quantify_cur_time.tv_sec - quantify_prev_time.tv_sec - 1);\
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} else {\
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quantify_buckets[number].tv_sec += quantify_cur_time.tv_sec - quantify_prev_time.tv_sec;\
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quantify_buckets[number].tv_usec += quantify_cur_time.tv_usec - quantify_prev_time.tv_usec;\
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}\
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if (quantify_buckets[number].tv_usec >= 1000000)\
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{\
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quantify_buckets[number].tv_usec -= 1000000;\
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quantify_buckets[number].tv_sec++;\
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}\
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}\
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\
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gettimeofday(&quantify_prev_time, NULL);\
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}
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extern void print_timers(void );
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#endif
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#endif /* PRINT_HEADER */
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/*
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* End of "$Id$".
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*/
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