365 lines
9.1 KiB
C
365 lines
9.1 KiB
C
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#include "mupdf/fitz.h"
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#include <zlib.h>
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typedef struct ps_band_writer_s
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{
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fz_band_writer super;
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z_stream stream;
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int stream_ended;
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int input_size;
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unsigned char *input;
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int output_size;
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unsigned char *output;
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} ps_band_writer;
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void
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fz_write_ps_file_header(fz_context *ctx, fz_output *out)
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{
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fz_write_printf(ctx, out,
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"%%!PS-Adobe-3.0\n"
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//"%%%%BoundingBox: 0 0 612 792\n"
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//"%%%%HiResBoundingBox: 0 0 612 792\n"
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"%%%%Creator: MuPDF\n"
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"%%%%LanguageLevel: 2\n"
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"%%%%CreationDate: D:20160318101706Z00'00'\n"
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"%%%%DocumentData: Binary\n"
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"%%%%Pages: (atend)\n"
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"%%%%EndComments\n"
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"\n"
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"%%%%BeginProlog\n"
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"%%%%EndProlog\n"
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"\n"
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"%%%%BeginSetup\n"
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"%%%%EndSetup\n"
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"\n"
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);
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}
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void
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fz_write_ps_file_trailer(fz_context *ctx, fz_output *out, int pages)
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{
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fz_write_printf(ctx, out, "%%%%Trailer\n%%%%Pages: %d\n%%%%EOF\n", pages);
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}
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static void
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ps_write_header(fz_context *ctx, fz_band_writer *writer_, fz_colorspace *cs)
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{
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ps_band_writer *writer = (ps_band_writer *)writer_;
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fz_output *out = writer->super.out;
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int w = writer->super.w;
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int h = writer->super.h;
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int n = writer->super.n;
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int alpha = writer->super.alpha;
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int xres = writer->super.xres;
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int yres = writer->super.yres;
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int pagenum = writer->super.pagenum;
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int w_points = (w * 72 + (xres>>1)) / xres;
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int h_points = (h * 72 + (yres>>1)) / yres;
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float sx = (float) w / w_points;
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float sy = (float) h / h_points;
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int err;
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if (writer->super.s != 0)
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fz_throw(ctx, FZ_ERROR_GENERIC, "Postscript writer cannot cope with spot colors");
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if (alpha != 0)
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fz_throw(ctx, FZ_ERROR_GENERIC, "Postscript output cannot have alpha");
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writer->super.w = w;
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writer->super.h = h;
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writer->super.n = n;
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writer->stream.zalloc = fz_zlib_alloc;
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writer->stream.zfree = fz_zlib_free;
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writer->stream.opaque = ctx;
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err = deflateInit(&writer->stream, Z_DEFAULT_COMPRESSION);
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if (err != Z_OK)
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fz_throw(ctx, FZ_ERROR_GENERIC, "compression error %d", err);
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fz_write_printf(ctx, out, "%%%%Page: %d %d\n", pagenum, pagenum);
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fz_write_printf(ctx, out, "%%%%PageBoundingBox: 0 0 %d %d\n", w_points, h_points);
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fz_write_printf(ctx, out, "%%%%BeginPageSetup\n");
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fz_write_printf(ctx, out, "<</PageSize [%d %d]>> setpagedevice\n", w_points, h_points);
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fz_write_printf(ctx, out, "%%%%EndPageSetup\n\n");
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fz_write_printf(ctx, out, "/DataFile currentfile /FlateDecode filter def\n\n");
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switch(n)
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{
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case 1:
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fz_write_string(ctx, out, "/DeviceGray setcolorspace\n");
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break;
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case 3:
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fz_write_string(ctx, out, "/DeviceRGB setcolorspace\n");
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break;
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case 4:
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fz_write_string(ctx, out, "/DeviceCMYK setcolorspace\n");
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break;
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default:
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fz_throw(ctx, FZ_ERROR_GENERIC, "Unexpected colorspace for ps output");
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}
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fz_write_printf(ctx, out,
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"<<\n"
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"/ImageType 1\n"
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"/Width %d\n"
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"/Height %d\n"
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"/ImageMatrix [ %g 0 0 -%g 0 %d ]\n"
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"/MultipleDataSources false\n"
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"/DataSource DataFile\n"
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"/BitsPerComponent 8\n"
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//"/Decode [0 1]\n"
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"/Interpolate false\n"
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">>\n"
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"image\n"
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, w, h, sx, sy, h);
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}
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static void
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ps_write_trailer(fz_context *ctx, fz_band_writer *writer_)
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{
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ps_band_writer *writer = (ps_band_writer *)writer_;
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fz_output *out = writer->super.out;
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int err;
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writer->stream.next_in = NULL;
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writer->stream.avail_in = 0;
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writer->stream.next_out = (Bytef*)writer->output;
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writer->stream.avail_out = (uInt)writer->output_size;
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err = deflate(&writer->stream, Z_FINISH);
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if (err != Z_STREAM_END)
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fz_throw(ctx, FZ_ERROR_GENERIC, "compression error %d", err);
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writer->stream_ended = 1;
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err = deflateEnd(&writer->stream);
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if (err != Z_OK)
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fz_throw(ctx, FZ_ERROR_GENERIC, "compression error %d", err);
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fz_write_data(ctx, out, writer->output, writer->output_size - writer->stream.avail_out);
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fz_write_string(ctx, out, "\nshowpage\n%%%%PageTrailer\n%%%%EndPageTrailer\n\n");
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}
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static void
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ps_drop_band_writer(fz_context *ctx, fz_band_writer *writer_)
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{
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ps_band_writer *writer = (ps_band_writer *)writer_;
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if (!writer->stream_ended)
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{
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int err = deflateEnd(&writer->stream);
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if (err != Z_OK)
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fz_warn(ctx, "ignoring compression error %d", err);
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}
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fz_free(ctx, writer->input);
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fz_free(ctx, writer->output);
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}
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void fz_write_pixmap_as_ps(fz_context *ctx, fz_output *out, const fz_pixmap *pixmap)
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{
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fz_band_writer *writer;
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fz_write_ps_file_header(ctx, out);
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writer = fz_new_ps_band_writer(ctx, out);
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fz_try(ctx)
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{
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fz_write_header(ctx, writer, pixmap->w, pixmap->h, pixmap->n, pixmap->alpha, pixmap->xres, pixmap->yres, 0, pixmap->colorspace, pixmap->seps);
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fz_write_band(ctx, writer, pixmap->stride, pixmap->h, pixmap->samples);
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}
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fz_always(ctx)
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{
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fz_drop_band_writer(ctx, writer);
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}
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fz_catch(ctx)
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{
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fz_rethrow(ctx);
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}
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fz_write_ps_file_trailer(ctx, out, 1);
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}
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void fz_save_pixmap_as_ps(fz_context *ctx, fz_pixmap *pixmap, char *filename, int append)
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{
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fz_output *out = fz_new_output_with_path(ctx, filename, append);
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fz_try(ctx)
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{
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fz_write_pixmap_as_ps(ctx, out, pixmap);
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fz_close_output(ctx, out);
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}
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fz_always(ctx)
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fz_drop_output(ctx, out);
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fz_catch(ctx)
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fz_rethrow(ctx);
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}
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static void
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ps_write_band(fz_context *ctx, fz_band_writer *writer_, int stride, int band_start, int band_height, const unsigned char *samples)
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{
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ps_band_writer *writer = (ps_band_writer *)writer_;
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fz_output *out = writer->super.out;
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int w = writer->super.w;
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int h = writer->super.h;
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int n = writer->super.n;
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int x, y, i, err;
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int required_input;
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int required_output;
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unsigned char *o;
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if (!out)
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return;
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if (band_start+band_height >= h)
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band_height = h - band_start;
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required_input = w*n*band_height;
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required_output = (int)deflateBound(&writer->stream, required_input);
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if (writer->input == NULL || writer->input_size < required_input)
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{
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fz_free(ctx, writer->input);
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writer->input = NULL;
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writer->input = fz_malloc(ctx, required_input);
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writer->input_size = required_input;
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}
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if (writer->output == NULL || writer->output_size < required_output)
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{
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fz_free(ctx, writer->output);
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writer->output = NULL;
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writer->output = fz_malloc(ctx, required_output);
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writer->output_size = required_output;
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}
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o = writer->input;
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for (y = 0; y < band_height; y++)
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{
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for (x = 0; x < w; x++)
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{
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for (i = n; i > 0; i--)
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*o++ = *samples++;
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}
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samples += stride - w*n;
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}
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writer->stream.next_in = (Bytef*)writer->input;
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writer->stream.avail_in = required_input;
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writer->stream.next_out = (Bytef*)writer->output;
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writer->stream.avail_out = (uInt)writer->output_size;
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err = deflate(&writer->stream, Z_NO_FLUSH);
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if (err != Z_OK)
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fz_throw(ctx, FZ_ERROR_GENERIC, "compression error %d", err);
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fz_write_data(ctx, out, writer->output, writer->output_size - writer->stream.avail_out);
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}
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fz_band_writer *fz_new_ps_band_writer(fz_context *ctx, fz_output *out)
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{
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ps_band_writer *writer = fz_new_band_writer(ctx, ps_band_writer, out);
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writer->super.header = ps_write_header;
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writer->super.band = ps_write_band;
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writer->super.trailer = ps_write_trailer;
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writer->super.drop = ps_drop_band_writer;
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return &writer->super;
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}
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/* High-level document writer interface */
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typedef struct fz_ps_writer_s fz_ps_writer;
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struct fz_ps_writer_s
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{
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fz_document_writer super;
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fz_draw_options draw;
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fz_pixmap *pixmap;
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fz_output *out;
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int count;
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};
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static fz_device *
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ps_begin_page(fz_context *ctx, fz_document_writer *wri_, fz_rect mediabox)
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{
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fz_ps_writer *wri = (fz_ps_writer*)wri_;
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wri->count++;
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return fz_new_draw_device_with_options(ctx, &wri->draw, mediabox, &wri->pixmap);
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}
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static void
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ps_end_page(fz_context *ctx, fz_document_writer *wri_, fz_device *dev)
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{
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fz_ps_writer *wri = (fz_ps_writer*)wri_;
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fz_pixmap *pix = wri->pixmap;
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fz_band_writer *bw;
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fz_try(ctx)
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{
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fz_close_device(ctx, dev);
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bw = fz_new_ps_band_writer(ctx, wri->out);
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fz_write_header(ctx, bw, pix->w, pix->h, pix->n, pix->alpha, pix->xres, pix->yres, 0, pix->colorspace, pix->seps);
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fz_write_band(ctx, bw, pix->stride, pix->h, pix->samples);
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}
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fz_always(ctx)
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{
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fz_drop_device(ctx, dev);
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fz_drop_band_writer(ctx, bw);
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fz_drop_pixmap(ctx, wri->pixmap);
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wri->pixmap = NULL;
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}
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fz_catch(ctx)
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fz_rethrow(ctx);
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}
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static void
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ps_close_writer(fz_context *ctx, fz_document_writer *wri_)
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{
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fz_ps_writer *wri = (fz_ps_writer*)wri_;
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fz_write_ps_file_trailer(ctx, wri->out, wri->count);
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fz_close_output(ctx, wri->out);
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}
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static void
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ps_drop_writer(fz_context *ctx, fz_document_writer *wri_)
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{
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fz_ps_writer *wri = (fz_ps_writer*)wri_;
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fz_drop_pixmap(ctx, wri->pixmap);
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fz_drop_output(ctx, wri->out);
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}
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fz_document_writer *
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fz_new_ps_writer_with_output(fz_context *ctx, fz_output *out, const char *options)
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{
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fz_ps_writer *wri = fz_new_derived_document_writer(ctx, fz_ps_writer, ps_begin_page, ps_end_page, ps_close_writer, ps_drop_writer);
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fz_try(ctx)
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{
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fz_parse_draw_options(ctx, &wri->draw, options);
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wri->out = out;
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fz_write_ps_file_header(ctx, wri->out);
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}
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fz_catch(ctx)
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{
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fz_free(ctx, wri);
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fz_rethrow(ctx);
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}
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return (fz_document_writer*)wri;
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}
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fz_document_writer *
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fz_new_ps_writer(fz_context *ctx, const char *path, const char *options)
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{
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fz_output *out = fz_new_output_with_path(ctx, path ? path : "out.ps", 0);
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fz_document_writer *wri = NULL;
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fz_try(ctx)
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wri = fz_new_ps_writer_with_output(ctx, out, options);
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fz_catch(ctx)
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{
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fz_drop_output(ctx, out);
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fz_rethrow(ctx);
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}
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return wri;
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}
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