2016-07-20 01:02:39 +03:00
/* raster.c - Handles output to raster files */
/*
libzint - the open source barcode library
2017-05-11 23:14:38 +03:00
Copyright ( C ) 2009 - 2017 Robin Stuart < rstuart114 @ gmail . com >
2016-07-20 01:02:39 +03:00
Redistribution and use in source and binary forms , with or without
modification , are permitted provided that the following conditions
are met :
2017-10-23 22:37:52 +03:00
1. Redistributions of source code must retain the above copyright
notice , this list of conditions and the following disclaimer .
2016-07-20 01:02:39 +03:00
2. Redistributions in binary form must reproduce the above copyright
notice , this list of conditions and the following disclaimer in the
2017-10-23 22:37:52 +03:00
documentation and / or other materials provided with the distribution .
2016-07-20 01:02:39 +03:00
3. Neither the name of the project nor the names of its contributors
may be used to endorse or promote products derived from this software
2017-10-23 22:37:52 +03:00
without specific prior written permission .
2016-07-20 01:02:39 +03:00
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS " AS IS " AND
ANY EXPRESS OR IMPLIED WARRANTIES , INCLUDING , BUT NOT LIMITED TO , THE
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
ARE DISCLAIMED . IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE
FOR ANY DIRECT , INDIRECT , INCIDENTAL , SPECIAL , EXEMPLARY , OR CONSEQUENTIAL
DAMAGES ( INCLUDING , BUT NOT LIMITED TO , PROCUREMENT OF SUBSTITUTE GOODS
OR SERVICES ; LOSS OF USE , DATA , OR PROFITS ; OR BUSINESS INTERRUPTION )
HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY , WHETHER IN CONTRACT , STRICT
LIABILITY , OR TORT ( INCLUDING NEGLIGENCE OR OTHERWISE ) ARISING IN ANY WAY
2017-10-23 22:37:52 +03:00
OUT OF THE USE OF THIS SOFTWARE , EVEN IF ADVISED OF THE POSSIBILITY OF
2016-07-20 01:02:39 +03:00
SUCH DAMAGE .
*/
# include <stdio.h>
# ifdef _MSC_VER
# include <fcntl.h>
# include <io.h>
# endif
# include <stdlib.h>
# include <string.h>
# include "common.h"
# ifdef _MSC_VER
2017-10-23 22:37:52 +03:00
# include <malloc.h>
2016-07-20 01:02:39 +03:00
# endif /* _MSC_VER */
2016-08-09 01:18:55 +03:00
# include "font.h" /* Font for human readable text */
2016-07-20 01:02:39 +03:00
2016-10-27 19:50:10 +03:00
# define SSET "0123456789ABCDEF"
2016-07-20 01:02:39 +03:00
# ifndef NO_PNG
2016-09-11 10:42:31 +03:00
extern int png_pixel_plot ( struct zint_symbol * symbol , char * pixelbuf ) ;
2016-07-20 01:02:39 +03:00
# endif /* NO_PNG */
2016-09-11 10:42:31 +03:00
extern int bmp_pixel_plot ( struct zint_symbol * symbol , char * pixelbuf ) ;
extern int pcx_pixel_plot ( struct zint_symbol * symbol , char * pixelbuf ) ;
extern int gif_pixel_plot ( struct zint_symbol * symbol , char * pixelbuf ) ;
2016-12-30 23:25:58 +03:00
extern int tif_pixel_plot ( struct zint_symbol * symbol , char * pixelbuf ) ;
2016-07-20 01:02:39 +03:00
2016-10-02 12:45:47 +03:00
void buffer_plot ( struct zint_symbol * symbol , char * pixelbuf ) {
/* Place pixelbuffer into symbol */
int fgred , fggrn , fgblu , bgred , bggrn , bgblu ;
int row , column , i ;
2017-10-23 22:37:52 +03:00
2016-10-02 12:45:47 +03:00
symbol - > bitmap = ( char * ) malloc ( symbol - > bitmap_width * symbol - > bitmap_height * 3 ) ;
2017-10-23 22:37:52 +03:00
2016-10-02 12:45:47 +03:00
fgred = ( 16 * ctoi ( symbol - > fgcolour [ 0 ] ) ) + ctoi ( symbol - > fgcolour [ 1 ] ) ;
fggrn = ( 16 * ctoi ( symbol - > fgcolour [ 2 ] ) ) + ctoi ( symbol - > fgcolour [ 3 ] ) ;
fgblu = ( 16 * ctoi ( symbol - > fgcolour [ 4 ] ) ) + ctoi ( symbol - > fgcolour [ 5 ] ) ;
bgred = ( 16 * ctoi ( symbol - > bgcolour [ 0 ] ) ) + ctoi ( symbol - > bgcolour [ 1 ] ) ;
bggrn = ( 16 * ctoi ( symbol - > bgcolour [ 2 ] ) ) + ctoi ( symbol - > bgcolour [ 3 ] ) ;
bgblu = ( 16 * ctoi ( symbol - > bgcolour [ 4 ] ) ) + ctoi ( symbol - > bgcolour [ 5 ] ) ;
2017-10-23 22:37:52 +03:00
2016-10-02 12:45:47 +03:00
for ( row = 0 ; row < symbol - > bitmap_height ; row + + ) {
for ( column = 0 ; column < symbol - > bitmap_width ; column + + ) {
i = ( ( row * symbol - > bitmap_width ) + column ) * 3 ;
2016-10-14 18:08:03 +03:00
switch ( * ( pixelbuf + ( symbol - > bitmap_width * row ) + column ) ) {
2016-10-02 12:45:47 +03:00
case ' 1 ' :
symbol - > bitmap [ i ] = fgred ;
symbol - > bitmap [ i + 1 ] = fggrn ;
symbol - > bitmap [ i + 2 ] = fgblu ;
break ;
default :
symbol - > bitmap [ i ] = bgred ;
symbol - > bitmap [ i + 1 ] = bggrn ;
symbol - > bitmap [ i + 2 ] = bgblu ;
break ;
}
}
}
}
2016-07-20 01:02:39 +03:00
int save_raster_image_to_file ( struct zint_symbol * symbol , int image_height , int image_width , char * pixelbuf , int rotate_angle , int image_type ) {
int error_number ;
2016-09-11 10:42:31 +03:00
int row , column ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
char * rotated_pixbuf ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
if ( ! ( rotated_pixbuf = ( char * ) malloc ( image_width * image_height ) ) ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 650: Insufficient memory for pixel buffer " ) ;
2016-10-27 19:50:10 +03:00
return ZINT_ERROR_ENCODING_PROBLEM ;
}
2016-07-20 01:02:39 +03:00
2016-09-11 10:42:31 +03:00
switch ( rotate_angle ) {
case 0 :
case 180 :
symbol - > bitmap_width = image_width ;
symbol - > bitmap_height = image_height ;
break ;
case 90 :
case 270 :
symbol - > bitmap_width = image_height ;
symbol - > bitmap_height = image_width ;
break ;
}
2017-10-23 22:37:52 +03:00
2016-09-11 10:42:31 +03:00
/* sort out colour options */
to_upper ( ( unsigned char * ) symbol - > fgcolour ) ;
to_upper ( ( unsigned char * ) symbol - > bgcolour ) ;
if ( strlen ( symbol - > fgcolour ) ! = 6 ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 651: Malformed foreground colour target " ) ;
2017-06-28 22:46:29 +03:00
free ( rotated_pixbuf ) ;
2016-09-11 10:42:31 +03:00
return ZINT_ERROR_INVALID_OPTION ;
}
if ( strlen ( symbol - > bgcolour ) ! = 6 ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 652: Malformed background colour target " ) ;
2017-06-28 22:46:29 +03:00
free ( rotated_pixbuf ) ;
2016-09-11 10:42:31 +03:00
return ZINT_ERROR_INVALID_OPTION ;
}
error_number = is_sane ( SSET , ( unsigned char * ) symbol - > fgcolour , strlen ( symbol - > fgcolour ) ) ;
if ( error_number = = ZINT_ERROR_INVALID_DATA ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 653: Malformed foreground colour target " ) ;
2017-06-28 22:46:29 +03:00
free ( rotated_pixbuf ) ;
2016-09-11 10:42:31 +03:00
return ZINT_ERROR_INVALID_OPTION ;
}
error_number = is_sane ( SSET , ( unsigned char * ) symbol - > bgcolour , strlen ( symbol - > fgcolour ) ) ;
if ( error_number = = ZINT_ERROR_INVALID_DATA ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 654: Malformed background colour target " ) ;
2017-06-28 22:46:29 +03:00
free ( rotated_pixbuf ) ;
2016-09-11 10:42:31 +03:00
return ZINT_ERROR_INVALID_OPTION ;
}
2017-10-23 22:37:52 +03:00
2016-09-11 10:42:31 +03:00
/* Rotate image before plotting */
switch ( rotate_angle ) {
case 0 : /* Plot the right way up */
for ( row = 0 ; row < image_height ; row + + ) {
for ( column = 0 ; column < image_width ; column + + ) {
rotated_pixbuf [ ( row * image_width ) + column ] =
2016-10-27 19:50:10 +03:00
pixelbuf [ ( image_width * row ) + column ] ;
2016-09-11 10:42:31 +03:00
}
}
break ;
case 90 : /* Plot 90 degrees clockwise */
for ( row = 0 ; row < image_width ; row + + ) {
for ( column = 0 ; column < image_height ; column + + ) {
rotated_pixbuf [ ( row * image_height ) + column ] =
* ( pixelbuf + ( image_width * ( image_height - column - 1 ) ) + row ) ;
}
}
break ;
case 180 : /* Plot upside down */
for ( row = 0 ; row < image_height ; row + + ) {
for ( column = 0 ; column < image_width ; column + + ) {
rotated_pixbuf [ ( row * image_width ) + column ] =
* ( pixelbuf + ( image_width * ( image_height - row - 1 ) ) + ( image_width - column - 1 ) ) ;
}
}
break ;
case 270 : /* Plot 90 degrees anti-clockwise */
for ( row = 0 ; row < image_width ; row + + ) {
for ( column = 0 ; column < image_height ; column + + ) {
rotated_pixbuf [ ( row * image_height ) + column ] =
* ( pixelbuf + ( image_width * column ) + ( image_width - row - 1 ) ) ;
}
}
break ;
}
2017-10-23 22:37:52 +03:00
2016-08-09 01:18:55 +03:00
switch ( image_type ) {
2016-10-02 12:45:47 +03:00
case OUT_BUFFER :
buffer_plot ( symbol , rotated_pixbuf ) ;
error_number = 0 ;
break ;
2016-07-23 17:08:55 +03:00
case OUT_PNG_FILE :
2016-07-20 01:02:39 +03:00
# ifndef NO_PNG
2016-09-11 10:42:31 +03:00
error_number = png_pixel_plot ( symbol , rotated_pixbuf ) ;
2016-07-20 01:02:39 +03:00
# else
2017-06-28 22:46:29 +03:00
free ( rotated_pixbuf ) ;
2016-07-23 17:08:55 +03:00
return ZINT_ERROR_INVALID_OPTION ;
2016-07-20 01:02:39 +03:00
# endif
2016-07-23 17:08:55 +03:00
break ;
case OUT_PCX_FILE :
2016-09-11 10:42:31 +03:00
error_number = pcx_pixel_plot ( symbol , rotated_pixbuf ) ;
2016-08-09 01:18:55 +03:00
break ;
case OUT_GIF_FILE :
2016-09-11 10:42:31 +03:00
error_number = gif_pixel_plot ( symbol , rotated_pixbuf ) ;
2016-07-23 17:08:55 +03:00
break ;
2016-12-30 23:25:58 +03:00
case OUT_TIF_FILE :
error_number = tif_pixel_plot ( symbol , rotated_pixbuf ) ;
break ;
2016-07-23 17:08:55 +03:00
default :
2016-09-11 10:42:31 +03:00
error_number = bmp_pixel_plot ( symbol , rotated_pixbuf ) ;
2016-07-23 17:08:55 +03:00
break ;
2016-07-20 01:02:39 +03:00
}
2016-10-27 19:50:10 +03:00
free ( rotated_pixbuf ) ;
2016-07-20 01:02:39 +03:00
return error_number ;
}
void draw_bar ( char * pixelbuf , int xpos , int xlen , int ypos , int ylen , int image_width , int image_height ) {
/* Draw a rectangle */
int i , j , png_ypos ;
png_ypos = image_height - ypos - ylen ;
/* This fudge is needed because EPS measures height from the bottom up but
PNG measures y position from the top down */
for ( i = ( xpos ) ; i < ( xpos + xlen ) ; i + + ) {
for ( j = ( png_ypos ) ; j < ( png_ypos + ylen ) ; j + + ) {
* ( pixelbuf + ( image_width * j ) + i ) = ' 1 ' ;
}
}
}
2016-09-18 16:09:58 +03:00
void draw_circle ( char * pixelbuf , int image_width , int image_height , int x0 , int y0 , float radius , char fill ) {
2016-09-12 23:47:40 +03:00
int x , y ;
2016-09-18 16:09:58 +03:00
int radius_i = ( int ) radius ;
2017-10-23 22:37:52 +03:00
2016-09-18 16:09:58 +03:00
for ( y = - radius_i ; y < = radius_i ; y + + ) {
for ( x = - radius_i ; x < = radius_i ; x + + ) {
if ( ( x * x ) + ( y * y ) < = ( radius_i * radius_i ) ) {
2016-09-12 23:47:40 +03:00
if ( ( y + y0 > = 0 ) & & ( y + y0 < image_height )
& & ( x + x0 > = 0 ) & & ( x + x0 < image_width ) ) {
* ( pixelbuf + ( ( y + y0 ) * image_width ) + ( x + x0 ) ) = fill ;
}
}
}
}
}
2017-10-09 13:17:11 +03:00
void draw_bullseye ( char * pixelbuf , int image_width , int image_height , int cx , int cy , int scaler ) {
2016-07-20 01:02:39 +03:00
/* Central bullseye in Maxicode symbols */
2017-10-23 22:37:52 +03:00
2017-10-09 13:17:11 +03:00
draw_circle ( pixelbuf , image_width , image_height , cx , cy , ( int ) ( 4.571 * scaler ) + 1 , ' 1 ' ) ;
draw_circle ( pixelbuf , image_width , image_height , cx , cy , ( int ) ( 3.779 * scaler ) + 1 , ' 0 ' ) ;
draw_circle ( pixelbuf , image_width , image_height , cx , cy , ( int ) ( 2.988 * scaler ) + 1 , ' 1 ' ) ;
draw_circle ( pixelbuf , image_width , image_height , cx , cy , ( int ) ( 2.196 * scaler ) + 1 , ' 0 ' ) ;
draw_circle ( pixelbuf , image_width , image_height , cx , cy , ( int ) ( 1.394 * scaler ) + 1 , ' 1 ' ) ;
draw_circle ( pixelbuf , image_width , image_height , cx , cy , ( int ) ( 0.602 * scaler ) + 1 , ' 0 ' ) ;
2016-07-20 01:02:39 +03:00
}
2016-10-27 19:50:10 +03:00
void draw_hexagon ( char * pixelbuf , int image_width , char * scaled_hexagon , int hexagon_size , int xposn , int yposn ) {
2016-07-20 01:02:39 +03:00
/* Put a hexagon into the pixel buffer */
int i , j ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
for ( i = 0 ; i < hexagon_size ; i + + ) {
for ( j = 0 ; j < hexagon_size ; j + + ) {
if ( scaled_hexagon [ ( i * hexagon_size ) + j ] = = ' 1 ' ) {
2016-07-20 01:02:39 +03:00
* ( pixelbuf + ( image_width * i ) + ( image_width * yposn ) + xposn + j ) = ' 1 ' ;
}
}
}
}
void draw_letter ( char * pixelbuf , unsigned char letter , int xposn , int yposn , int textflags , int image_width , int image_height ) {
/* Put a letter into a position */
2017-09-10 18:03:09 +03:00
int skip ;
2016-07-20 01:02:39 +03:00
skip = 0 ;
if ( letter < 33 ) {
skip = 1 ;
}
if ( ( letter > 127 ) & & ( letter < 161 ) ) {
skip = 1 ;
}
if ( xposn < 0 | | yposn < 0 ) {
skip = 1 ;
}
if ( skip = = 0 ) {
2017-09-10 18:03:09 +03:00
int glyph_no ;
2017-10-23 22:34:31 +03:00
int x , y ;
2016-07-20 01:02:39 +03:00
if ( letter > 128 ) {
glyph_no = letter - 66 ;
} else {
glyph_no = letter - 33 ;
}
2016-08-09 01:18:55 +03:00
2016-07-20 01:02:39 +03:00
switch ( textflags ) {
2017-09-10 18:03:09 +03:00
int max_x , max_y ;
2016-08-09 01:18:55 +03:00
case 1 : // small font 5x9
max_x = 5 ;
max_y = 9 ;
2016-07-20 01:02:39 +03:00
2016-08-09 01:18:55 +03:00
if ( xposn + max_x > = image_width ) {
max_x = image_width - xposn - 1 ;
}
if ( yposn + max_y > = image_height ) {
max_y = image_height - yposn - 1 ;
}
for ( y = 0 ; y < max_y ; y + + ) {
for ( x = 0 ; x < max_x ; x + + ) {
if ( small_font [ ( glyph_no * 9 ) + y ] & ( 0x10 > > x ) ) {
* ( pixelbuf + ( y * image_width ) + ( yposn * image_width ) + xposn + x ) = ' 1 ' ;
}
}
}
break ;
case 2 : // bold font -> twice the regular font
{
char * linePtr ;
max_x = 7 ;
max_y = 14 ;
2016-07-20 01:02:39 +03:00
2016-08-09 01:18:55 +03:00
if ( xposn + max_x + 1 > = image_width ) {
max_x = image_width - xposn - 2 ;
}
if ( yposn + max_y > = image_height ) {
max_y = image_height - yposn - 1 ;
}
linePtr = pixelbuf + ( yposn * image_width ) + xposn + 1 ;
for ( y = 0 ; y < max_y ; y + + ) {
char * pixelPtr = linePtr ;
int extra_dot = 0 ;
for ( x = 0 ; x < 7 ; x + + ) {
if ( ascii_font [ ( glyph_no * 14 ) + y ] & ( 0x40 > > x ) ) {
* pixelPtr = ' 1 ' ;
extra_dot = 1 ;
} else {
if ( extra_dot ) {
* pixelPtr = ' 1 ' ;
}
extra_dot = 0 ;
}
+ + pixelPtr ;
}
if ( extra_dot ) {
* pixelPtr = ' 1 ' ;
}
linePtr + = image_width ;
}
}
break ;
default : // regular font 7x15
max_x = 7 ;
max_y = 14 ;
2016-07-20 01:02:39 +03:00
2016-08-09 01:18:55 +03:00
if ( xposn + max_x > = image_width ) {
max_x = image_width - xposn - 1 ;
}
if ( yposn + max_y > = image_height ) {
max_y = image_height - yposn - 1 ;
}
2016-07-20 01:02:39 +03:00
2016-08-09 01:18:55 +03:00
for ( y = 0 ; y < max_y ; y + + ) {
for ( x = 0 ; x < 7 ; x + + ) {
if ( ascii_font [ ( glyph_no * 14 ) + y ] & ( 0x40 > > x ) ) {
* ( pixelbuf + ( y * image_width ) + ( yposn * image_width ) + xposn + x ) = ' 1 ' ;
}
}
}
break ;
2016-07-20 01:02:39 +03:00
}
}
}
/* Plot a string into the pixel buffer */
void draw_string ( char * pixbuf , char input_string [ ] , int xposn , int yposn , int textflags , int image_width , int image_height ) {
int i , string_length , string_left_hand , letter_width = 7 ;
switch ( textflags ) {
2016-08-09 01:18:55 +03:00
case 1 : // small font 5x9
letter_width = 5 ;
break ;
2016-07-20 01:02:39 +03:00
2016-08-09 01:18:55 +03:00
case 2 : // bold font -> width of the regular font + 1 extra dot + 1 extra space
letter_width = 9 ;
break ;
2016-07-20 01:02:39 +03:00
2016-08-09 01:18:55 +03:00
default : // regular font 7x15
letter_width = 7 ;
break ;
2016-07-20 01:02:39 +03:00
}
2016-08-09 01:18:55 +03:00
2016-07-20 01:02:39 +03:00
string_length = strlen ( input_string ) ;
string_left_hand = xposn - ( ( letter_width * string_length ) / 2 ) ;
for ( i = 0 ; i < string_length ; i + + ) {
draw_letter ( pixbuf , input_string [ i ] , string_left_hand + ( i * letter_width ) , yposn , textflags , image_width , image_height ) ;
}
}
2016-10-27 19:50:10 +03:00
void plot_hexline ( char * scaled_hexagon , int hexagon_size , float start_x , float start_y , float end_x , float end_y ) {
/* Draw a straight line from start to end */
int i ;
float inc_x , inc_y ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
inc_x = ( end_x - start_x ) / hexagon_size ;
inc_y = ( end_y - start_y ) / hexagon_size ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
for ( i = 0 ; i < hexagon_size ; i + + ) {
2017-09-10 18:03:09 +03:00
float this_x = start_x + ( ( float ) i * inc_x ) ;
float this_y = start_y + ( ( float ) i * inc_y ) ;
2016-10-27 19:50:10 +03:00
if ( ( ( this_x > = 0 ) & & ( this_x < hexagon_size ) ) & & ( ( this_y > = 0 ) & & ( this_y < hexagon_size ) ) ) {
scaled_hexagon [ ( hexagon_size * ( int ) this_y ) + ( int ) this_x ] = ' 1 ' ;
}
}
}
void plot_hexagon ( char * scaled_hexagon , int hexagon_size ) {
/* Create a hexagon shape and fill it */
int line , i ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
float x_offset [ 6 ] ;
float y_offset [ 6 ] ;
float start_x , start_y ;
float end_x , end_y ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
x_offset [ 0 ] = 0.0 ;
x_offset [ 1 ] = 0.86 ;
x_offset [ 2 ] = 0.86 ;
x_offset [ 3 ] = 0.0 ;
x_offset [ 4 ] = - 0.86 ;
x_offset [ 5 ] = - 0.86 ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
y_offset [ 0 ] = 1.0 ;
y_offset [ 1 ] = 0.5 ;
y_offset [ 2 ] = - 0.5 ;
y_offset [ 3 ] = - 1.0 ;
y_offset [ 4 ] = - 0.5 ;
y_offset [ 5 ] = 0.5 ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
/* Plot hexagon outline */
for ( line = 0 ; line < 5 ; line + + ) {
start_x = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * x_offset [ line ] ) ;
start_y = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * y_offset [ line ] ) ;
end_x = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * x_offset [ line + 1 ] ) ;
end_y = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * y_offset [ line + 1 ] ) ;
plot_hexline ( scaled_hexagon , hexagon_size , start_x , start_y , end_x , end_y ) ;
}
start_x = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * x_offset [ line ] ) ;
start_y = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * y_offset [ line ] ) ;
end_x = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * x_offset [ 0 ] ) ;
end_y = ( ( float ) hexagon_size / 2.0 ) + ( ( ( float ) hexagon_size / 2.0 ) * y_offset [ 0 ] ) ;
plot_hexline ( scaled_hexagon , hexagon_size , start_x , start_y , end_x , end_y ) ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
/* Fill hexagon */
for ( line = 0 ; line < hexagon_size ; line + + ) {
2017-09-10 18:03:09 +03:00
char ink = ' 0 ' ;
2016-10-27 19:50:10 +03:00
for ( i = 0 ; i < hexagon_size ; i + + ) {
if ( scaled_hexagon [ ( hexagon_size * line ) + i ] = = ' 1 ' ) {
if ( i < ( hexagon_size / 2 ) ) {
ink = ' 1 ' ;
} else {
ink = ' 0 ' ;
}
}
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
if ( ink = = ' 1 ' ) {
scaled_hexagon [ ( hexagon_size * line ) + i ] = ink ;
}
}
}
}
2016-07-20 01:02:39 +03:00
int plot_raster_maxicode ( struct zint_symbol * symbol , int rotate_angle , int data_type ) {
2016-10-27 19:50:10 +03:00
/* Plot a MaxiCode symbol with hexagons and bullseye */
2017-09-10 18:03:09 +03:00
int i , row , column , xposn ;
2016-07-20 01:02:39 +03:00
int image_height , image_width ;
char * pixelbuf ;
int error_number ;
int xoffset , yoffset ;
2016-08-09 01:18:55 +03:00
float scaler = symbol - > scale ;
2016-10-27 19:50:10 +03:00
char * scaled_hexagon ;
int hexagon_size ;
2017-10-23 22:37:52 +03:00
2016-07-20 01:02:39 +03:00
xoffset = symbol - > border_width + symbol - > whitespace_width ;
yoffset = symbol - > border_width ;
2016-10-27 19:50:10 +03:00
image_width = ( 300 + ( 2 * xoffset * 2 ) ) * scaler ;
image_height = ( 300 + ( 2 * yoffset * 2 ) ) * scaler ;
2016-07-20 01:02:39 +03:00
if ( ! ( pixelbuf = ( char * ) malloc ( image_width * image_height ) ) ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 655: Insufficient memory for pixel buffer " ) ;
2016-07-20 01:02:39 +03:00
return ZINT_ERROR_ENCODING_PROBLEM ;
} else {
for ( i = 0 ; i < ( image_width * image_height ) ; i + + ) {
* ( pixelbuf + i ) = ' 0 ' ;
}
}
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
hexagon_size = ( int ) scaler * 10 ;
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
if ( ! ( scaled_hexagon = ( char * ) malloc ( hexagon_size * hexagon_size ) ) ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 656: Insufficient memory for pixel buffer " ) ;
2017-06-28 22:46:29 +03:00
free ( pixelbuf ) ;
2016-10-27 19:50:10 +03:00
return ZINT_ERROR_ENCODING_PROBLEM ;
} else {
for ( i = 0 ; i < ( hexagon_size * hexagon_size ) ; i + + ) {
* ( scaled_hexagon + i ) = ' 0 ' ;
}
}
2017-10-23 22:37:52 +03:00
2016-10-27 19:50:10 +03:00
plot_hexagon ( scaled_hexagon , hexagon_size ) ;
2016-07-20 01:02:39 +03:00
for ( row = 0 ; row < symbol - > rows ; row + + ) {
2017-09-10 18:03:09 +03:00
int yposn = row * 9 ;
2016-07-20 01:02:39 +03:00
for ( column = 0 ; column < symbol - > width ; column + + ) {
xposn = column * 10 ;
if ( module_is_set ( symbol , row , column ) ) {
if ( row & 1 ) {
/* Odd (reduced) row */
xposn + = 5 ;
2016-10-27 19:50:10 +03:00
draw_hexagon ( pixelbuf , image_width , scaled_hexagon , hexagon_size , ( xposn + ( 2 * xoffset ) ) * scaler , ( yposn + ( 2 * yoffset ) ) * scaler ) ;
2016-07-20 01:02:39 +03:00
} else {
/* Even (full) row */
2016-10-27 19:50:10 +03:00
draw_hexagon ( pixelbuf , image_width , scaled_hexagon , hexagon_size , ( xposn + ( 2 * xoffset ) ) * scaler , ( yposn + ( 2 * yoffset ) ) * scaler ) ;
2016-07-20 01:02:39 +03:00
}
}
}
}
2017-10-23 22:37:52 +03:00
2017-10-09 13:17:11 +03:00
draw_bullseye ( pixelbuf , image_width , image_height , ( int ) ( ( ( 14.5 * 10.0 ) + ( 2.0 * xoffset ) ) * scaler ) , ( int ) ( ( ( 16.5 * 9.0 ) + ( 2.0 * yoffset ) ) * scaler ) , scaler * 10 ) ;
2017-10-23 22:37:52 +03:00
2017-10-09 13:17:11 +03:00
// Virtual hexagon
//draw_hexagon(pixelbuf, image_width, scaled_hexagon, hexagon_size, ((14 * 10) + (2 * xoffset)) * scaler, ((16 * 9) + (2 * yoffset)) * scaler);
2017-10-23 22:37:52 +03:00
2016-08-26 17:13:40 +03:00
if ( ( symbol - > output_options & BARCODE_BOX ) | | ( symbol - > output_options & BARCODE_BIND ) ) {
2016-07-20 01:02:39 +03:00
/* boundary bars */
draw_bar ( pixelbuf , 0 , image_width , 0 , symbol - > border_width * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , 0 , image_width , 300 + ( symbol - > border_width * 2 ) , symbol - > border_width * 2 , image_width , image_height ) ;
}
2016-08-26 17:13:40 +03:00
if ( symbol - > output_options & BARCODE_BOX ) {
2016-07-20 01:02:39 +03:00
/* side bars */
draw_bar ( pixelbuf , 0 , symbol - > border_width * 2 , 0 , image_height , image_width , image_height ) ;
draw_bar ( pixelbuf , 300 + ( ( symbol - > border_width + symbol - > whitespace_width + symbol - > whitespace_width ) * 2 ) , symbol - > border_width * 2 , 0 , image_height , image_width , image_height ) ;
}
2016-10-27 19:50:10 +03:00
error_number = save_raster_image_to_file ( symbol , image_height , image_width , pixelbuf , rotate_angle , data_type ) ;
free ( scaled_hexagon ) ;
2016-07-20 01:02:39 +03:00
free ( pixelbuf ) ;
return error_number ;
}
/* Convert UTF-8 to Latin1 Codepage for the interpretation line */
void to_latin1 ( unsigned char source [ ] , unsigned char preprocessed [ ] ) {
int j , i , input_length ;
input_length = ustrlen ( source ) ;
j = 0 ;
i = 0 ;
while ( i < input_length ) {
switch ( source [ i ] ) {
case 0xC2 :
/* UTF-8 C2xxh */
/* Character range: C280h (latin: 80h) to C2BFh (latin: BFh) */
i + + ;
preprocessed [ j ] = source [ i ] ;
j + + ;
break ;
case 0xC3 :
/* UTF-8 C3xx */
/* Character range: C380h (latin: C0h) to C3BFh (latin: FFh) */
i + + ;
preprocessed [ j ] = source [ i ] + 64 ;
j + + ;
break ;
default :
/* Process ASCII (< 80h), all other unicode points are ignored */
if ( source [ i ] < 128 ) {
preprocessed [ j ] = source [ i ] ;
j + + ;
}
break ;
}
i + + ;
}
preprocessed [ j ] = ' \0 ' ;
return ;
}
2016-08-09 01:18:55 +03:00
int plot_raster_dotty ( struct zint_symbol * symbol , int rotate_angle , int data_type ) {
float scaler = 2 * symbol - > scale ;
char * scaled_pixelbuf ;
int r , i ;
int scale_width , scale_height ;
int error_number = 0 ;
int xoffset , yoffset , image_width , image_height ;
symbol - > height = symbol - > rows ; // This is true because only 2d matrix symbols are processed here
xoffset = symbol - > border_width + symbol - > whitespace_width ;
yoffset = symbol - > border_width ;
image_width = symbol - > width + xoffset + xoffset ;
image_height = symbol - > height + yoffset + yoffset ;
if ( scaler < 2.0 ) {
scaler = 2.0 ;
}
scale_width = ( image_width * scaler ) + 1 ;
scale_height = ( image_height * scaler ) + 1 ;
/* Apply scale options by creating another pixel buffer */
if ( ! ( scaled_pixelbuf = ( char * ) malloc ( scale_width * scale_height ) ) ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 657: Insufficient memory for pixel buffer " ) ;
2016-08-09 01:18:55 +03:00
return ZINT_ERROR_ENCODING_PROBLEM ;
} else {
for ( i = 0 ; i < ( scale_width * scale_height ) ; i + + ) {
* ( scaled_pixelbuf + i ) = ' 0 ' ;
}
}
/* Plot the body of the symbol to the pixel buffer */
for ( r = 0 ; r < symbol - > rows ; r + + ) {
for ( i = 0 ; i < symbol - > width ; i + + ) {
if ( module_is_set ( symbol , r , i ) ) {
draw_circle ( scaled_pixelbuf , scale_width , scale_height ,
( int ) ( ( i + xoffset ) * scaler ) + ( scaler / 2.0 ) ,
( int ) ( ( r + yoffset ) * scaler ) + ( scaler / 2.0 ) ,
2016-09-18 16:09:58 +03:00
( symbol - > dot_size / 2.0 ) * scaler ,
2016-09-12 23:47:40 +03:00
' 1 ' ) ;
2016-08-09 01:18:55 +03:00
}
}
}
error_number = save_raster_image_to_file ( symbol , scale_height , scale_width , scaled_pixelbuf , rotate_angle , data_type ) ;
free ( scaled_pixelbuf ) ;
return error_number ;
}
2016-07-20 01:02:39 +03:00
int plot_raster_default ( struct zint_symbol * symbol , int rotate_angle , int data_type ) {
int textdone , main_width , comp_offset , large_bar_count ;
char textpart [ 10 ] , addon [ 6 ] ;
float addon_text_posn , preset_height , large_bar_height ;
int i , r , textoffset , yoffset , xoffset , latch , image_width , image_height ;
char * pixelbuf ;
int addon_latch = 0 , textflags = 0 ;
2017-09-10 18:03:09 +03:00
int block_width , textpos ;
2016-07-20 01:02:39 +03:00
float row_height , row_posn ;
int error_number ;
int default_text_posn ;
int next_yposn ;
2016-08-09 01:18:55 +03:00
float scaler = symbol - > scale ;
char * scaled_pixelbuf ;
int horiz , vert ;
int scale_width , scale_height ;
2016-07-20 01:02:39 +03:00
# ifndef _MSC_VER
unsigned char local_text [ ustrlen ( symbol - > text ) + 1 ] ;
# else
unsigned char * local_text = ( unsigned char * ) _alloca ( ustrlen ( symbol - > text ) + 1 ) ;
# endif
if ( symbol - > show_hrt ! = 0 ) {
/* Copy text from symbol */
to_latin1 ( symbol - > text , local_text ) ;
} else {
/* No text needed */
switch ( symbol - > symbology ) {
case BARCODE_EANX :
case BARCODE_EANX_CC :
case BARCODE_ISBNX :
case BARCODE_UPCA :
case BARCODE_UPCE :
case BARCODE_UPCA_CC :
case BARCODE_UPCE_CC :
/* For these symbols use dummy text to ensure formatting is done
* properly even if no text is required */
for ( i = 0 ; i < ustrlen ( symbol - > text ) ; i + + ) {
if ( symbol - > text [ i ] = = ' + ' ) {
local_text [ i ] = ' + ' ;
} else {
local_text [ i ] = ' ' ;
}
local_text [ ustrlen ( symbol - > text ) ] = ' \0 ' ;
}
break ;
default :
/* For everything else, just remove the text */
local_text [ 0 ] = ' \0 ' ;
break ;
}
}
textdone = 0 ;
main_width = symbol - > width ;
strcpy ( addon , " " ) ;
comp_offset = 0 ;
addon_text_posn = 0.0 ;
row_height = 0 ;
if ( symbol - > output_options & SMALL_TEXT ) {
textflags = 1 ;
2016-08-09 01:18:55 +03:00
} else if ( symbol - > output_options & BOLD_TEXT ) {
2016-07-20 01:02:39 +03:00
textflags = 2 ;
}
if ( symbol - > height = = 0 ) {
symbol - > height = 50 ;
}
large_bar_count = 0 ;
preset_height = 0.0 ;
for ( i = 0 ; i < symbol - > rows ; i + + ) {
preset_height + = symbol - > row_height [ i ] ;
if ( symbol - > row_height [ i ] = = 0 ) {
large_bar_count + + ;
}
}
if ( large_bar_count = = 0 ) {
symbol - > height = preset_height ;
large_bar_height = 10 ;
} else {
large_bar_height = ( symbol - > height - preset_height ) / large_bar_count ;
}
while ( ! ( module_is_set ( symbol , symbol - > rows - 1 , comp_offset ) ) ) {
comp_offset + + ;
}
/* Certain symbols need whitespace otherwise characters get chopped off the sides */
if ( ( ( ( symbol - > symbology = = BARCODE_EANX ) & & ( symbol - > rows = = 1 ) ) | | ( symbol - > symbology = = BARCODE_EANX_CC ) )
| | ( symbol - > symbology = = BARCODE_ISBNX ) ) {
switch ( ustrlen ( local_text ) ) {
case 13 : /* EAN 13 */
case 16 :
case 19 :
if ( symbol - > whitespace_width = = 0 ) {
symbol - > whitespace_width = 10 ;
}
main_width = 96 + comp_offset ;
break ;
default :
main_width = 68 + comp_offset ;
}
}
if ( ( ( symbol - > symbology = = BARCODE_UPCA ) & & ( symbol - > rows = = 1 ) ) | | ( symbol - > symbology = = BARCODE_UPCA_CC ) ) {
if ( symbol - > whitespace_width = = 0 ) {
symbol - > whitespace_width = 10 ;
main_width = 96 + comp_offset ;
}
}
if ( ( ( symbol - > symbology = = BARCODE_UPCE ) & & ( symbol - > rows = = 1 ) ) | | ( symbol - > symbology = = BARCODE_UPCE_CC ) ) {
if ( symbol - > whitespace_width = = 0 ) {
symbol - > whitespace_width = 10 ;
main_width = 51 + comp_offset ;
}
}
latch = 0 ;
r = 0 ;
/* Isolate add-on text */
if ( is_extendable ( symbol - > symbology ) ) {
for ( i = 0 ; i < ustrlen ( local_text ) ; i + + ) {
if ( latch = = 1 ) {
addon [ r ] = local_text [ i ] ;
r + + ;
}
if ( symbol - > text [ i ] = = ' + ' ) {
latch = 1 ;
}
}
}
addon [ r ] = ' \0 ' ;
if ( ustrlen ( local_text ) ! = 0 ) {
textoffset = 9 ;
} else {
textoffset = 0 ;
}
2016-08-09 01:18:55 +03:00
2016-07-20 01:02:39 +03:00
xoffset = symbol - > border_width + symbol - > whitespace_width ;
yoffset = symbol - > border_width ;
image_width = 2 * ( symbol - > width + xoffset + xoffset ) ;
image_height = 2 * ( symbol - > height + textoffset + yoffset + yoffset ) ;
if ( ! ( pixelbuf = ( char * ) malloc ( image_width * image_height ) ) ) {
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 658: Insufficient memory for pixel buffer " ) ;
2016-07-20 01:02:39 +03:00
return ZINT_ERROR_ENCODING_PROBLEM ;
} else {
for ( i = 0 ; i < ( image_width * image_height ) ; i + + ) {
* ( pixelbuf + i ) = ' 0 ' ;
}
}
2016-08-26 17:13:40 +03:00
if ( ( symbol - > output_options & BARCODE_BOX ) | | ( symbol - > output_options & BARCODE_BIND ) ) {
2016-07-20 01:02:39 +03:00
default_text_posn = image_height - 17 ;
} else {
default_text_posn = image_height - 17 - symbol - > border_width - symbol - > border_width ;
}
row_posn = textoffset + yoffset ;
next_yposn = textoffset + yoffset ;
row_height = 0 ;
/* Plot the body of the symbol to the pixel buffer */
for ( r = 0 ; r < symbol - > rows ; r + + ) {
2017-10-23 22:34:31 +03:00
int plot_yposn ;
int plot_height ;
2017-09-10 18:03:09 +03:00
int this_row = symbol - > rows - r - 1 ; /* invert r otherwise plots upside down */
2016-07-20 01:02:39 +03:00
row_posn + = row_height ;
2017-10-16 20:26:54 +03:00
plot_yposn = next_yposn ;
2016-07-20 01:02:39 +03:00
if ( symbol - > row_height [ this_row ] = = 0 ) {
row_height = large_bar_height ;
} else {
row_height = symbol - > row_height [ this_row ] ;
}
next_yposn = ( int ) ( row_posn + row_height ) ;
2017-10-16 20:26:54 +03:00
plot_height = next_yposn - plot_yposn ;
2016-07-20 01:02:39 +03:00
i = 0 ;
if ( module_is_set ( symbol , this_row , 0 ) ) {
latch = 1 ;
} else {
latch = 0 ;
}
do {
block_width = 0 ;
do {
block_width + + ;
2017-01-31 23:29:09 +03:00
} while ( ( i + block_width < symbol - > width ) & & module_is_set ( symbol , this_row , i + block_width ) = = module_is_set ( symbol , this_row , i ) ) ;
2016-07-20 01:02:39 +03:00
if ( ( addon_latch = = 0 ) & & ( r = = 0 ) & & ( i > main_width ) ) {
plot_height = ( int ) ( row_height - 5.0 ) ;
plot_yposn = ( int ) ( row_posn - 5.0 ) ;
addon_text_posn = row_posn + row_height - 8.0 ;
addon_latch = 1 ;
}
if ( latch = = 1 ) {
/* a bar */
draw_bar ( pixelbuf , ( i + xoffset ) * 2 , block_width * 2 , plot_yposn * 2 , plot_height * 2 , image_width , image_height ) ;
latch = 0 ;
} else {
/* a space */
latch = 1 ;
}
i + = block_width ;
} while ( i < symbol - > width ) ;
}
xoffset + = comp_offset ;
if ( ( ( ( symbol - > symbology = = BARCODE_EANX ) & & ( symbol - > rows = = 1 ) ) | | ( symbol - > symbology = = BARCODE_EANX_CC ) ) | | ( symbol - > symbology = = BARCODE_ISBNX ) ) {
/* guard bar extensions and text formatting for EAN8 and EAN13 */
switch ( ustrlen ( local_text ) ) {
case 8 : /* EAN-8 */
case 11 :
case 14 :
draw_bar ( pixelbuf , ( 0 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 2 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 32 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 34 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 64 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 66 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
for ( i = 0 ; i < 4 ; i + + ) {
textpart [ i ] = local_text [ i ] ;
}
textpart [ 4 ] = ' \0 ' ;
textpos = 2 * ( 17 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
for ( i = 0 ; i < 4 ; i + + ) {
textpart [ i ] = local_text [ i + 4 ] ;
}
textpart [ 4 ] = ' \0 ' ;
textpos = 2 * ( 50 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
textdone = 1 ;
switch ( strlen ( addon ) ) {
case 2 :
textpos = 2 * ( xoffset + 86 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
case 5 :
textpos = 2 * ( xoffset + 100 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
}
break ;
case 13 : /* EAN 13 */
case 16 :
case 19 :
draw_bar ( pixelbuf , ( 0 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 2 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 46 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 48 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 92 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 94 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
textpart [ 0 ] = local_text [ 0 ] ;
textpart [ 1 ] = ' \0 ' ;
textpos = 2 * ( - 7 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
for ( i = 0 ; i < 6 ; i + + ) {
textpart [ i ] = local_text [ i + 1 ] ;
}
textpart [ 6 ] = ' \0 ' ;
textpos = 2 * ( 24 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
for ( i = 0 ; i < 6 ; i + + ) {
textpart [ i ] = local_text [ i + 7 ] ;
}
textpart [ 6 ] = ' \0 ' ;
textpos = 2 * ( 71 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
textdone = 1 ;
switch ( strlen ( addon ) ) {
case 2 :
textpos = 2 * ( xoffset + 114 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
case 5 :
textpos = 2 * ( xoffset + 128 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
}
break ;
}
}
if ( ( ( symbol - > symbology = = BARCODE_UPCA ) & & ( symbol - > rows = = 1 ) ) | | ( symbol - > symbology = = BARCODE_UPCA_CC ) ) {
/* guard bar extensions and text formatting for UPCA */
latch = 1 ;
i = 0 + comp_offset ;
do {
block_width = 0 ;
do {
block_width + + ;
} while ( module_is_set ( symbol , symbol - > rows - 1 , i + block_width ) = = module_is_set ( symbol , symbol - > rows - 1 , i ) ) ;
if ( latch = = 1 ) {
/* a bar */
draw_bar ( pixelbuf , ( i + xoffset - comp_offset ) * 2 , block_width * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
latch = 0 ;
} else {
/* a space */
latch = 1 ;
}
i + = block_width ;
} while ( i < 11 + comp_offset ) ;
draw_bar ( pixelbuf , ( 46 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 48 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
latch = 1 ;
i = 85 + comp_offset ;
do {
block_width = 0 ;
do {
block_width + + ;
} while ( module_is_set ( symbol , symbol - > rows - 1 , i + block_width ) = = module_is_set ( symbol , symbol - > rows - 1 , i ) ) ;
if ( latch = = 1 ) {
/* a bar */
draw_bar ( pixelbuf , ( i + xoffset - comp_offset ) * 2 , block_width * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
latch = 0 ;
} else {
/* a space */
latch = 1 ;
}
i + = block_width ;
} while ( i < 96 + comp_offset ) ;
textpart [ 0 ] = local_text [ 0 ] ;
textpart [ 1 ] = ' \0 ' ;
textpos = 2 * ( - 5 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
for ( i = 0 ; i < 5 ; i + + ) {
textpart [ i ] = local_text [ i + 1 ] ;
}
textpart [ 5 ] = ' \0 ' ;
textpos = 2 * ( 27 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
for ( i = 0 ; i < 5 ; i + + ) {
textpart [ i ] = local_text [ i + 6 ] ;
}
textpart [ 6 ] = ' \0 ' ;
textpos = 2 * ( 68 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
textpart [ 0 ] = local_text [ 11 ] ;
textpart [ 1 ] = ' \0 ' ;
textpos = 2 * ( 100 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
textdone = 1 ;
switch ( strlen ( addon ) ) {
case 2 :
textpos = 2 * ( xoffset + 116 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
case 5 :
textpos = 2 * ( xoffset + 130 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
}
}
if ( ( ( symbol - > symbology = = BARCODE_UPCE ) & & ( symbol - > rows = = 1 ) ) | | ( symbol - > symbology = = BARCODE_UPCE_CC ) ) {
/* guard bar extensions and text formatting for UPCE */
draw_bar ( pixelbuf , ( 0 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 2 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 46 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 48 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( 50 + xoffset ) * 2 , 1 * 2 , ( 4 + ( int ) yoffset ) * 2 , 5 * 2 , image_width , image_height ) ;
textpart [ 0 ] = local_text [ 0 ] ;
textpart [ 1 ] = ' \0 ' ;
textpos = 2 * ( - 5 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
for ( i = 0 ; i < 6 ; i + + ) {
textpart [ i ] = local_text [ i + 1 ] ;
}
textpart [ 6 ] = ' \0 ' ;
textpos = 2 * ( 24 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
textpart [ 0 ] = local_text [ 7 ] ;
textpart [ 1 ] = ' \0 ' ;
textpos = 2 * ( 55 + xoffset ) ;
draw_string ( pixelbuf , textpart , textpos , default_text_posn , textflags , image_width , image_height ) ;
textdone = 1 ;
switch ( strlen ( addon ) ) {
case 2 :
textpos = 2 * ( xoffset + 70 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
case 5 :
textpos = 2 * ( xoffset + 84 ) ;
draw_string ( pixelbuf , addon , textpos , image_height - ( addon_text_posn * 2 ) - 13 , textflags , image_width , image_height ) ;
break ;
}
}
xoffset - = comp_offset ;
/* Put boundary bars or box around symbol */
2016-08-26 17:13:40 +03:00
if ( ( symbol - > output_options & BARCODE_BOX ) | | ( symbol - > output_options & BARCODE_BIND ) ) {
2016-07-20 01:02:39 +03:00
/* boundary bars */
2016-09-12 23:47:40 +03:00
if ( symbol - > symbology ! = BARCODE_CODABLOCKF ) {
draw_bar ( pixelbuf , 0 , ( symbol - > width + xoffset + xoffset ) * 2 , textoffset * 2 , symbol - > border_width * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , 0 , ( symbol - > width + xoffset + xoffset ) * 2 , ( textoffset + symbol - > height + symbol - > border_width ) * 2 , symbol - > border_width * 2 , image_width , image_height ) ;
} else {
draw_bar ( pixelbuf , xoffset * 2 , symbol - > width * 2 , textoffset * 2 , symbol - > border_width * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , xoffset * 2 , symbol - > width * 2 , ( textoffset + symbol - > height + symbol - > border_width ) * 2 , symbol - > border_width * 2 , image_width , image_height ) ;
}
2016-07-20 01:02:39 +03:00
if ( ( symbol - > output_options & BARCODE_BIND ) ! = 0 ) {
if ( ( symbol - > rows > 1 ) & & ( is_stackable ( symbol - > symbology ) = = 1 ) ) {
/* row binding */
2016-09-12 23:47:40 +03:00
if ( symbol - > symbology ! = BARCODE_CODABLOCKF ) {
for ( r = 1 ; r < symbol - > rows ; r + + ) {
draw_bar ( pixelbuf , xoffset * 2 , symbol - > width * 2 , ( ( r * row_height ) + textoffset + yoffset - 1 ) * 2 , 2 * 2 , image_width , image_height ) ;
}
} else {
for ( r = 1 ; r < symbol - > rows ; r + + ) {
draw_bar ( pixelbuf , ( xoffset + 11 ) * 2 , ( symbol - > width - 25 ) * 2 , ( ( r * row_height ) + textoffset + yoffset - 1 ) * 2 , 2 * 2 , image_width , image_height ) ;
}
2016-07-20 01:02:39 +03:00
}
}
}
}
2016-08-26 17:13:40 +03:00
if ( symbol - > output_options & BARCODE_BOX ) {
2016-07-20 01:02:39 +03:00
/* side bars */
draw_bar ( pixelbuf , 0 , symbol - > border_width * 2 , textoffset * 2 , ( symbol - > height + ( 2 * symbol - > border_width ) ) * 2 , image_width , image_height ) ;
draw_bar ( pixelbuf , ( symbol - > width + xoffset + xoffset - symbol - > border_width ) * 2 , symbol - > border_width * 2 , textoffset * 2 , ( symbol - > height + ( 2 * symbol - > border_width ) ) * 2 , image_width , image_height ) ;
}
/* Put the human readable text at the bottom */
if ( ( textdone = = 0 ) & & ( ustrlen ( local_text ) ! = 0 ) ) {
textpos = ( image_width / 2 ) ;
draw_string ( pixelbuf , ( char * ) local_text , textpos , default_text_posn , textflags , image_width , image_height ) ;
}
2016-08-09 01:18:55 +03:00
if ( scaler = = 0 ) {
scaler = 0.5 ;
}
scale_width = image_width * scaler ;
scale_height = image_height * scaler ;
/* Apply scale options by creating another pixel buffer */
if ( ! ( scaled_pixelbuf = ( char * ) malloc ( scale_width * scale_height ) ) ) {
2016-09-03 20:45:09 +03:00
free ( pixelbuf ) ;
2017-07-27 18:01:53 +03:00
strcpy ( symbol - > errtxt , " 659: Insufficient memory for pixel buffer " ) ;
2016-08-09 01:18:55 +03:00
return ZINT_ERROR_ENCODING_PROBLEM ;
} else {
for ( i = 0 ; i < ( scale_width * scale_height ) ; i + + ) {
* ( scaled_pixelbuf + i ) = ' 0 ' ;
}
}
for ( vert = 0 ; vert < scale_height ; vert + + ) {
for ( horiz = 0 ; horiz < scale_width ; horiz + + ) {
* ( scaled_pixelbuf + ( vert * scale_width ) + horiz ) = * ( pixelbuf + ( ( int ) ( vert / scaler ) * image_width ) + ( int ) ( horiz / scaler ) ) ;
}
}
error_number = save_raster_image_to_file ( symbol , scale_height , scale_width , scaled_pixelbuf , rotate_angle , data_type ) ;
free ( scaled_pixelbuf ) ;
2016-07-20 01:02:39 +03:00
free ( pixelbuf ) ;
return error_number ;
}
int plot_raster ( struct zint_symbol * symbol , int rotate_angle , int file_type ) {
int error ;
# ifdef NO_PNG
if ( file_type = = OUT_PNG_FILE ) {
return ZINT_ERROR_INVALID_OPTION ;
}
2017-10-23 22:37:52 +03:00
# endif /* NO_PNG */
2016-08-09 01:18:55 +03:00
2016-08-26 17:13:40 +03:00
if ( symbol - > output_options & BARCODE_DOTTY_MODE ) {
2016-08-09 01:18:55 +03:00
error = plot_raster_dotty ( symbol , rotate_angle , file_type ) ;
2016-07-20 01:02:39 +03:00
} else {
2016-08-09 01:18:55 +03:00
if ( symbol - > symbology = = BARCODE_MAXICODE ) {
error = plot_raster_maxicode ( symbol , rotate_angle , file_type ) ;
} else {
error = plot_raster_default ( symbol , rotate_angle , file_type ) ;
}
2016-07-20 01:02:39 +03:00
}
return error ;
}
2017-10-23 22:34:31 +03:00
2017-10-23 22:37:52 +03:00