596 lines
21 KiB
C
596 lines
21 KiB
C
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// Copyright (C) 2004-2023 Artifex Software, Inc.
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//
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// This file is part of MuPDF.
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//
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// MuPDF is free software: you can redistribute it and/or modify it under the
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// terms of the GNU Affero General Public License as published by the Free
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// Software Foundation, either version 3 of the License, or (at your option)
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// any later version.
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//
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// MuPDF is distributed in the hope that it will be useful, but WITHOUT ANY
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// WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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// FOR A PARTICULAR PURPOSE. See the GNU Affero General Public License for more
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// details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with MuPDF. If not, see <https://www.gnu.org/licenses/agpl-3.0.en.html>
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//
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// Alternative licensing terms are available from the licensor.
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// For commercial licensing, see <https://www.artifex.com/> or contact
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// Artifex Software, Inc., 39 Mesa Street, Suite 108A, San Francisco,
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// CA 94129, USA, for further information.
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#ifndef MUPDF_FITZ_DEVICE_H
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#define MUPDF_FITZ_DEVICE_H
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#include "mupdf/fitz/system.h"
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#include "mupdf/fitz/context.h"
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#include "mupdf/fitz/geometry.h"
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#include "mupdf/fitz/image.h"
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#include "mupdf/fitz/shade.h"
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#include "mupdf/fitz/path.h"
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#include "mupdf/fitz/text.h"
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/**
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The different format handlers (pdf, xps etc) interpret pages to
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a device. These devices can then process the stream of calls
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they receive in various ways:
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The trace device outputs debugging information for the calls.
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The draw device will render them.
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The list device stores them in a list to play back later.
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The text device performs text extraction and searching.
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The bbox device calculates the bounding box for the page.
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Other devices can (and will) be written in the future.
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*/
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typedef struct fz_device fz_device;
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enum
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{
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/* Flags */
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FZ_DEVFLAG_MASK = 1,
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FZ_DEVFLAG_COLOR = 2,
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FZ_DEVFLAG_UNCACHEABLE = 4,
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FZ_DEVFLAG_FILLCOLOR_UNDEFINED = 8,
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FZ_DEVFLAG_STROKECOLOR_UNDEFINED = 16,
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FZ_DEVFLAG_STARTCAP_UNDEFINED = 32,
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FZ_DEVFLAG_DASHCAP_UNDEFINED = 64,
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FZ_DEVFLAG_ENDCAP_UNDEFINED = 128,
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FZ_DEVFLAG_LINEJOIN_UNDEFINED = 256,
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FZ_DEVFLAG_MITERLIMIT_UNDEFINED = 512,
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FZ_DEVFLAG_LINEWIDTH_UNDEFINED = 1024,
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/* Arguably we should have a bit for the dash pattern itself
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* being undefined, but that causes problems; do we assume that
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* it should always be set to non-dashing at the start of every
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* glyph? */
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FZ_DEVFLAG_BBOX_DEFINED = 2048,
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FZ_DEVFLAG_GRIDFIT_AS_TILED = 4096,
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};
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enum
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{
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/* PDF 1.4 -- standard separable */
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FZ_BLEND_NORMAL,
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FZ_BLEND_MULTIPLY,
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FZ_BLEND_SCREEN,
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FZ_BLEND_OVERLAY,
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FZ_BLEND_DARKEN,
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FZ_BLEND_LIGHTEN,
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FZ_BLEND_COLOR_DODGE,
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FZ_BLEND_COLOR_BURN,
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FZ_BLEND_HARD_LIGHT,
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FZ_BLEND_SOFT_LIGHT,
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FZ_BLEND_DIFFERENCE,
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FZ_BLEND_EXCLUSION,
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/* PDF 1.4 -- standard non-separable */
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FZ_BLEND_HUE,
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FZ_BLEND_SATURATION,
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FZ_BLEND_COLOR,
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FZ_BLEND_LUMINOSITY,
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/* For packing purposes */
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FZ_BLEND_MODEMASK = 15,
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FZ_BLEND_ISOLATED = 16,
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FZ_BLEND_KNOCKOUT = 32
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};
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/**
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Map from (case sensitive) blend mode string to enumeration.
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*/
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int fz_lookup_blendmode(const char *name);
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/**
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Map from enumeration to blend mode string.
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The string is static, with arbitrary lifespan.
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*/
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const char *fz_blendmode_name(int blendmode);
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/**
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The device structure is public to allow devices to be
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implemented outside of fitz.
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Device methods should always be called using e.g.
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fz_fill_path(ctx, dev, ...) rather than
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dev->fill_path(ctx, dev, ...)
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*/
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/**
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Devices can keep track of containers (clips/masks/groups/tiles)
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as they go to save callers having to do it.
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*/
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typedef struct
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{
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fz_rect scissor;
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int type;
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int user;
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} fz_device_container_stack;
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enum
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{
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fz_device_container_stack_is_clip,
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fz_device_container_stack_is_mask,
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fz_device_container_stack_is_group,
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fz_device_container_stack_is_tile,
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};
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/* Structure types */
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typedef enum
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{
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FZ_STRUCTURE_INVALID = -1,
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/* Grouping elements (PDF 1.7 - Table 10.20) */
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FZ_STRUCTURE_DOCUMENT,
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FZ_STRUCTURE_PART,
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FZ_STRUCTURE_ART,
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FZ_STRUCTURE_SECT,
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FZ_STRUCTURE_DIV,
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FZ_STRUCTURE_BLOCKQUOTE,
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FZ_STRUCTURE_CAPTION,
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FZ_STRUCTURE_TOC,
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FZ_STRUCTURE_TOCI,
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FZ_STRUCTURE_INDEX,
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FZ_STRUCTURE_NONSTRUCT,
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FZ_STRUCTURE_PRIVATE,
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/* Grouping elements (PDF 2.0 - Table 364) */
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FZ_STRUCTURE_DOCUMENTFRAGMENT,
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/* Grouping elements (PDF 2.0 - Table 365) */
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FZ_STRUCTURE_ASIDE,
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/* Grouping elements (PDF 2.0 - Table 366) */
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FZ_STRUCTURE_TITLE,
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FZ_STRUCTURE_FENOTE,
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/* Grouping elements (PDF 2.0 - Table 367) */
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FZ_STRUCTURE_SUB,
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/* Paragraphlike elements (PDF 1.7 - Table 10.21) */
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FZ_STRUCTURE_P,
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FZ_STRUCTURE_H,
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FZ_STRUCTURE_H1,
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FZ_STRUCTURE_H2,
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FZ_STRUCTURE_H3,
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FZ_STRUCTURE_H4,
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FZ_STRUCTURE_H5,
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FZ_STRUCTURE_H6,
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/* List elements (PDF 1.7 - Table 10.23) */
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FZ_STRUCTURE_LIST,
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FZ_STRUCTURE_LISTITEM,
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FZ_STRUCTURE_LABEL,
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FZ_STRUCTURE_LISTBODY,
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/* Table elements (PDF 1.7 - Table 10.24) */
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FZ_STRUCTURE_TABLE,
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FZ_STRUCTURE_TR,
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FZ_STRUCTURE_TH,
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FZ_STRUCTURE_TD,
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FZ_STRUCTURE_THEAD,
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FZ_STRUCTURE_TBODY,
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FZ_STRUCTURE_TFOOT,
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/* Inline elements (PDF 1.7 - Table 10.25) */
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FZ_STRUCTURE_SPAN,
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FZ_STRUCTURE_QUOTE,
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FZ_STRUCTURE_NOTE,
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FZ_STRUCTURE_REFERENCE,
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FZ_STRUCTURE_BIBENTRY,
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FZ_STRUCTURE_CODE,
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FZ_STRUCTURE_LINK,
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FZ_STRUCTURE_ANNOT,
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/* Inline elements (PDF 2.0 - Table 368) */
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FZ_STRUCTURE_EM,
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FZ_STRUCTURE_STRONG,
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/* Ruby inline element (PDF 1.7 - Table 10.26) */
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FZ_STRUCTURE_RUBY,
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FZ_STRUCTURE_RB,
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FZ_STRUCTURE_RT,
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FZ_STRUCTURE_RP,
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/* Warichu inline element (PDF 1.7 - Table 10.26) */
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FZ_STRUCTURE_WARICHU,
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FZ_STRUCTURE_WT,
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FZ_STRUCTURE_WP,
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/* Illustration elements (PDF 1.7 - Table 10.27) */
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FZ_STRUCTURE_FIGURE,
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FZ_STRUCTURE_FORMULA,
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FZ_STRUCTURE_FORM,
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/* Artifact structure type (PDF 2.0 - Table 375) */
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FZ_STRUCTURE_ARTIFACT
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} fz_structure;
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const char *fz_structure_to_string(fz_structure type);
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fz_structure fz_structure_from_string(const char *str);
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typedef enum
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{
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FZ_METATEXT_ACTUALTEXT,
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FZ_METATEXT_ALT,
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FZ_METATEXT_ABBREVIATION,
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FZ_METATEXT_TITLE
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} fz_metatext;
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struct fz_device
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{
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int refs;
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int hints;
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int flags;
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void (*close_device)(fz_context *, fz_device *);
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void (*drop_device)(fz_context *, fz_device *);
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void (*fill_path)(fz_context *, fz_device *, const fz_path *, int even_odd, fz_matrix, fz_colorspace *, const float *color, float alpha, fz_color_params );
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void (*stroke_path)(fz_context *, fz_device *, const fz_path *, const fz_stroke_state *, fz_matrix, fz_colorspace *, const float *color, float alpha, fz_color_params );
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void (*clip_path)(fz_context *, fz_device *, const fz_path *, int even_odd, fz_matrix, fz_rect scissor);
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void (*clip_stroke_path)(fz_context *, fz_device *, const fz_path *, const fz_stroke_state *, fz_matrix, fz_rect scissor);
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void (*fill_text)(fz_context *, fz_device *, const fz_text *, fz_matrix, fz_colorspace *, const float *color, float alpha, fz_color_params );
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void (*stroke_text)(fz_context *, fz_device *, const fz_text *, const fz_stroke_state *, fz_matrix, fz_colorspace *, const float *color, float alpha, fz_color_params );
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void (*clip_text)(fz_context *, fz_device *, const fz_text *, fz_matrix, fz_rect scissor);
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void (*clip_stroke_text)(fz_context *, fz_device *, const fz_text *, const fz_stroke_state *, fz_matrix, fz_rect scissor);
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void (*ignore_text)(fz_context *, fz_device *, const fz_text *, fz_matrix );
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void (*fill_shade)(fz_context *, fz_device *, fz_shade *shd, fz_matrix ctm, float alpha, fz_color_params color_params);
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void (*fill_image)(fz_context *, fz_device *, fz_image *img, fz_matrix ctm, float alpha, fz_color_params color_params);
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void (*fill_image_mask)(fz_context *, fz_device *, fz_image *img, fz_matrix ctm, fz_colorspace *, const float *color, float alpha, fz_color_params color_params);
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void (*clip_image_mask)(fz_context *, fz_device *, fz_image *img, fz_matrix ctm, fz_rect scissor);
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void (*pop_clip)(fz_context *, fz_device *);
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void (*begin_mask)(fz_context *, fz_device *, fz_rect area, int luminosity, fz_colorspace *, const float *bc, fz_color_params );
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void (*end_mask)(fz_context *, fz_device *);
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void (*begin_group)(fz_context *, fz_device *, fz_rect area, fz_colorspace *cs, int isolated, int knockout, int blendmode, float alpha);
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void (*end_group)(fz_context *, fz_device *);
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int (*begin_tile)(fz_context *, fz_device *, fz_rect area, fz_rect view, float xstep, float ystep, fz_matrix ctm, int id);
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void (*end_tile)(fz_context *, fz_device *);
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void (*render_flags)(fz_context *, fz_device *, int set, int clear);
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void (*set_default_colorspaces)(fz_context *, fz_device *, fz_default_colorspaces *);
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void (*begin_layer)(fz_context *, fz_device *, const char *layer_name);
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void (*end_layer)(fz_context *, fz_device *);
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void (*begin_structure)(fz_context *, fz_device *, fz_structure standard, const char *raw, int uid);
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void (*end_structure)(fz_context *, fz_device *);
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void (*begin_metatext)(fz_context *, fz_device *, fz_metatext meta, const char *text);
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void (*end_metatext)(fz_context *, fz_device *);
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fz_rect d1_rect;
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int container_len;
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int container_cap;
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fz_device_container_stack *container;
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};
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/**
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Device calls; graphics primitives and containers.
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*/
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void fz_fill_path(fz_context *ctx, fz_device *dev, const fz_path *path, int even_odd, fz_matrix ctm, fz_colorspace *colorspace, const float *color, float alpha, fz_color_params color_params);
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void fz_stroke_path(fz_context *ctx, fz_device *dev, const fz_path *path, const fz_stroke_state *stroke, fz_matrix ctm, fz_colorspace *colorspace, const float *color, float alpha, fz_color_params color_params);
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void fz_clip_path(fz_context *ctx, fz_device *dev, const fz_path *path, int even_odd, fz_matrix ctm, fz_rect scissor);
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void fz_clip_stroke_path(fz_context *ctx, fz_device *dev, const fz_path *path, const fz_stroke_state *stroke, fz_matrix ctm, fz_rect scissor);
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void fz_fill_text(fz_context *ctx, fz_device *dev, const fz_text *text, fz_matrix ctm, fz_colorspace *colorspace, const float *color, float alpha, fz_color_params color_params);
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void fz_stroke_text(fz_context *ctx, fz_device *dev, const fz_text *text, const fz_stroke_state *stroke, fz_matrix ctm, fz_colorspace *colorspace, const float *color, float alpha, fz_color_params color_params);
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void fz_clip_text(fz_context *ctx, fz_device *dev, const fz_text *text, fz_matrix ctm, fz_rect scissor);
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void fz_clip_stroke_text(fz_context *ctx, fz_device *dev, const fz_text *text, const fz_stroke_state *stroke, fz_matrix ctm, fz_rect scissor);
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void fz_ignore_text(fz_context *ctx, fz_device *dev, const fz_text *text, fz_matrix ctm);
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void fz_pop_clip(fz_context *ctx, fz_device *dev);
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void fz_fill_shade(fz_context *ctx, fz_device *dev, fz_shade *shade, fz_matrix ctm, float alpha, fz_color_params color_params);
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void fz_fill_image(fz_context *ctx, fz_device *dev, fz_image *image, fz_matrix ctm, float alpha, fz_color_params color_params);
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void fz_fill_image_mask(fz_context *ctx, fz_device *dev, fz_image *image, fz_matrix ctm, fz_colorspace *colorspace, const float *color, float alpha, fz_color_params color_params);
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void fz_clip_image_mask(fz_context *ctx, fz_device *dev, fz_image *image, fz_matrix ctm, fz_rect scissor);
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void fz_begin_mask(fz_context *ctx, fz_device *dev, fz_rect area, int luminosity, fz_colorspace *colorspace, const float *bc, fz_color_params color_params);
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void fz_end_mask(fz_context *ctx, fz_device *dev);
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void fz_begin_group(fz_context *ctx, fz_device *dev, fz_rect area, fz_colorspace *cs, int isolated, int knockout, int blendmode, float alpha);
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void fz_end_group(fz_context *ctx, fz_device *dev);
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void fz_begin_tile(fz_context *ctx, fz_device *dev, fz_rect area, fz_rect view, float xstep, float ystep, fz_matrix ctm);
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int fz_begin_tile_id(fz_context *ctx, fz_device *dev, fz_rect area, fz_rect view, float xstep, float ystep, fz_matrix ctm, int id);
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void fz_end_tile(fz_context *ctx, fz_device *dev);
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void fz_render_flags(fz_context *ctx, fz_device *dev, int set, int clear);
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void fz_set_default_colorspaces(fz_context *ctx, fz_device *dev, fz_default_colorspaces *default_cs);
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void fz_begin_layer(fz_context *ctx, fz_device *dev, const char *layer_name);
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void fz_end_layer(fz_context *ctx, fz_device *dev);
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void fz_begin_structure(fz_context *ctx, fz_device *dev, fz_structure standard, const char *raw, int uid);
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void fz_end_structure(fz_context *ctx, fz_device *dev);
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void fz_begin_metatext(fz_context *ctx, fz_device *dev, fz_metatext meta, const char *text);
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void fz_end_metatext(fz_context *ctx, fz_device *dev);
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/**
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Devices are created by calls to device implementations, for
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instance: foo_new_device(). These will be implemented by calling
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fz_new_derived_device(ctx, foo_device) where foo_device is a
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structure "derived from" fz_device, for instance
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typedef struct { fz_device base; ...extras...} foo_device;
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*/
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fz_device *fz_new_device_of_size(fz_context *ctx, int size);
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#define fz_new_derived_device(CTX, TYPE) \
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((TYPE *)Memento_label(fz_new_device_of_size(ctx,sizeof(TYPE)),#TYPE))
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/**
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Signal the end of input, and flush any buffered output.
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This is NOT called implicitly on fz_drop_device. This
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|
may throw exceptions.
|
||
|
*/
|
||
|
void fz_close_device(fz_context *ctx, fz_device *dev);
|
||
|
|
||
|
/**
|
||
|
Reduce the reference count on a device. When the reference count
|
||
|
reaches zero, the device and its resources will be freed.
|
||
|
Don't forget to call fz_close_device before dropping the device,
|
||
|
or you may get incomplete output!
|
||
|
|
||
|
Never throws exceptions.
|
||
|
*/
|
||
|
void fz_drop_device(fz_context *ctx, fz_device *dev);
|
||
|
|
||
|
/**
|
||
|
Increment the reference count for a device. Returns the same
|
||
|
pointer.
|
||
|
|
||
|
Never throws exceptions.
|
||
|
*/
|
||
|
fz_device *fz_keep_device(fz_context *ctx, fz_device *dev);
|
||
|
|
||
|
/**
|
||
|
Enable (set) hint bits within the hint bitfield for a device.
|
||
|
*/
|
||
|
void fz_enable_device_hints(fz_context *ctx, fz_device *dev, int hints);
|
||
|
|
||
|
/**
|
||
|
Disable (clear) hint bits within the hint bitfield for a device.
|
||
|
*/
|
||
|
void fz_disable_device_hints(fz_context *ctx, fz_device *dev, int hints);
|
||
|
|
||
|
/**
|
||
|
Find current scissor region as tracked by the device.
|
||
|
*/
|
||
|
fz_rect fz_device_current_scissor(fz_context *ctx, fz_device *dev);
|
||
|
|
||
|
enum
|
||
|
{
|
||
|
/* Hints */
|
||
|
FZ_DONT_INTERPOLATE_IMAGES = 1,
|
||
|
FZ_NO_CACHE = 2,
|
||
|
};
|
||
|
|
||
|
/**
|
||
|
Cookie support - simple communication channel between app/library.
|
||
|
*/
|
||
|
|
||
|
/**
|
||
|
Provide two-way communication between application and library.
|
||
|
Intended for multi-threaded applications where one thread is
|
||
|
rendering pages and another thread wants to read progress
|
||
|
feedback or abort a job that takes a long time to finish. The
|
||
|
communication is unsynchronized without locking.
|
||
|
|
||
|
abort: The application should set this field to 0 before
|
||
|
calling fz_run_page to render a page. At any point when the
|
||
|
page is being rendered the application my set this field to 1
|
||
|
which will cause the rendering to finish soon. This field is
|
||
|
checked periodically when the page is rendered, but exactly
|
||
|
when is not known, therefore there is no upper bound on
|
||
|
exactly when the rendering will abort. If the application
|
||
|
did not provide a set of locks to fz_new_context, it must also
|
||
|
await the completion of fz_run_page before issuing another
|
||
|
call to fz_run_page. Note that once the application has set
|
||
|
this field to 1 after it called fz_run_page it may not change
|
||
|
the value again.
|
||
|
|
||
|
progress: Communicates rendering progress back to the
|
||
|
application and is read only. Increments as a page is being
|
||
|
rendered. The value starts out at 0 and is limited to less
|
||
|
than or equal to progress_max, unless progress_max is -1.
|
||
|
|
||
|
progress_max: Communicates the known upper bound of rendering
|
||
|
back to the application and is read only. The maximum value
|
||
|
that the progress field may take. If there is no known upper
|
||
|
bound on how long the rendering may take this value is -1 and
|
||
|
progress is not limited. Note that the value of progress_max
|
||
|
may change from -1 to a positive value once an upper bound is
|
||
|
known, so take this into consideration when comparing the
|
||
|
value of progress to that of progress_max.
|
||
|
|
||
|
errors: count of errors during current rendering.
|
||
|
|
||
|
incomplete: Initially should be set to 0. Will be set to
|
||
|
non-zero if a TRYLATER error is thrown during rendering.
|
||
|
*/
|
||
|
typedef struct
|
||
|
{
|
||
|
int abort;
|
||
|
int progress;
|
||
|
size_t progress_max; /* (size_t)-1 for unknown */
|
||
|
int errors;
|
||
|
int incomplete;
|
||
|
} fz_cookie;
|
||
|
|
||
|
/**
|
||
|
Create a device to print a debug trace of all device calls.
|
||
|
*/
|
||
|
fz_device *fz_new_trace_device(fz_context *ctx, fz_output *out);
|
||
|
|
||
|
/**
|
||
|
Create a device to output raw information.
|
||
|
*/
|
||
|
fz_device *fz_new_xmltext_device(fz_context *ctx, fz_output *out);
|
||
|
|
||
|
/**
|
||
|
Create a device to compute the bounding
|
||
|
box of all marks on a page.
|
||
|
|
||
|
The returned bounding box will be the union of all bounding
|
||
|
boxes of all objects on a page.
|
||
|
*/
|
||
|
fz_device *fz_new_bbox_device(fz_context *ctx, fz_rect *rectp);
|
||
|
|
||
|
/**
|
||
|
Create a device to test for features.
|
||
|
|
||
|
Currently only tests for the presence of non-grayscale colors.
|
||
|
|
||
|
is_color: Possible values returned:
|
||
|
0: Definitely greyscale
|
||
|
1: Probably color (all colors were grey, but there
|
||
|
were images or shadings in a non grey colorspace).
|
||
|
2: Definitely color
|
||
|
|
||
|
threshold: The difference from grayscale that will be tolerated.
|
||
|
Typical values to use are either 0 (be exact) and 0.02 (allow an
|
||
|
imperceptible amount of slop).
|
||
|
|
||
|
options: A set of bitfield options, from the FZ_TEST_OPT set.
|
||
|
|
||
|
passthrough: A device to pass all calls through to, or NULL.
|
||
|
If set, then the test device can both test and pass through to
|
||
|
an underlying device (like, say, the display list device). This
|
||
|
means that a display list can be created and at the end we'll
|
||
|
know if it's colored or not.
|
||
|
|
||
|
In the absence of a passthrough device, the device will throw
|
||
|
an exception to stop page interpretation when color is found.
|
||
|
*/
|
||
|
fz_device *fz_new_test_device(fz_context *ctx, int *is_color, float threshold, int options, fz_device *passthrough);
|
||
|
|
||
|
enum
|
||
|
{
|
||
|
/* If set, test every pixel of images exhaustively.
|
||
|
* If clear, just look at colorspaces for images. */
|
||
|
FZ_TEST_OPT_IMAGES = 1,
|
||
|
|
||
|
/* If set, test every pixel of shadings. */
|
||
|
/* If clear, just look at colorspaces for shadings. */
|
||
|
FZ_TEST_OPT_SHADINGS = 2
|
||
|
};
|
||
|
|
||
|
/**
|
||
|
Create a device to draw on a pixmap.
|
||
|
|
||
|
dest: Target pixmap for the draw device. See fz_new_pixmap*
|
||
|
for how to obtain a pixmap. The pixmap is not cleared by the
|
||
|
draw device, see fz_clear_pixmap* for how to clear it prior to
|
||
|
calling fz_new_draw_device. Free the device by calling
|
||
|
fz_drop_device.
|
||
|
|
||
|
transform: Transform from user space in points to device space
|
||
|
in pixels.
|
||
|
*/
|
||
|
fz_device *fz_new_draw_device(fz_context *ctx, fz_matrix transform, fz_pixmap *dest);
|
||
|
|
||
|
/**
|
||
|
Create a device to draw on a pixmap.
|
||
|
|
||
|
dest: Target pixmap for the draw device. See fz_new_pixmap*
|
||
|
for how to obtain a pixmap. The pixmap is not cleared by the
|
||
|
draw device, see fz_clear_pixmap* for how to clear it prior to
|
||
|
calling fz_new_draw_device. Free the device by calling
|
||
|
fz_drop_device.
|
||
|
|
||
|
transform: Transform from user space in points to device space
|
||
|
in pixels.
|
||
|
|
||
|
clip: Bounding box to restrict any marking operations of the
|
||
|
draw device.
|
||
|
*/
|
||
|
fz_device *fz_new_draw_device_with_bbox(fz_context *ctx, fz_matrix transform, fz_pixmap *dest, const fz_irect *clip);
|
||
|
|
||
|
/**
|
||
|
Create a device to draw on a pixmap.
|
||
|
|
||
|
dest: Target pixmap for the draw device. See fz_new_pixmap*
|
||
|
for how to obtain a pixmap. The pixmap is not cleared by the
|
||
|
draw device, see fz_clear_pixmap* for how to clear it prior to
|
||
|
calling fz_new_draw_device. Free the device by calling
|
||
|
fz_drop_device.
|
||
|
|
||
|
transform: Transform from user space in points to device space
|
||
|
in pixels.
|
||
|
|
||
|
proof_cs: Intermediate color space to map though when mapping to
|
||
|
color space defined by pixmap.
|
||
|
*/
|
||
|
fz_device *fz_new_draw_device_with_proof(fz_context *ctx, fz_matrix transform, fz_pixmap *dest, fz_colorspace *proof_cs);
|
||
|
|
||
|
/**
|
||
|
Create a device to draw on a pixmap.
|
||
|
|
||
|
dest: Target pixmap for the draw device. See fz_new_pixmap*
|
||
|
for how to obtain a pixmap. The pixmap is not cleared by the
|
||
|
draw device, see fz_clear_pixmap* for how to clear it prior to
|
||
|
calling fz_new_draw_device. Free the device by calling
|
||
|
fz_drop_device.
|
||
|
|
||
|
transform: Transform from user space in points to device space
|
||
|
in pixels.
|
||
|
|
||
|
clip: Bounding box to restrict any marking operations of the
|
||
|
draw device.
|
||
|
|
||
|
proof_cs: Color space to render to prior to mapping to color
|
||
|
space defined by pixmap.
|
||
|
*/
|
||
|
fz_device *fz_new_draw_device_with_bbox_proof(fz_context *ctx, fz_matrix transform, fz_pixmap *dest, const fz_irect *clip, fz_colorspace *cs);
|
||
|
|
||
|
fz_device *fz_new_draw_device_type3(fz_context *ctx, fz_matrix transform, fz_pixmap *dest);
|
||
|
|
||
|
/**
|
||
|
struct fz_draw_options: Options for creating a pixmap and draw
|
||
|
device.
|
||
|
*/
|
||
|
typedef struct
|
||
|
{
|
||
|
int rotate;
|
||
|
int x_resolution;
|
||
|
int y_resolution;
|
||
|
int width;
|
||
|
int height;
|
||
|
fz_colorspace *colorspace;
|
||
|
int alpha;
|
||
|
int graphics;
|
||
|
int text;
|
||
|
} fz_draw_options;
|
||
|
|
||
|
FZ_DATA extern const char *fz_draw_options_usage;
|
||
|
|
||
|
/**
|
||
|
Parse draw device options from a comma separated key-value string.
|
||
|
*/
|
||
|
fz_draw_options *fz_parse_draw_options(fz_context *ctx, fz_draw_options *options, const char *string);
|
||
|
|
||
|
/**
|
||
|
Create a new pixmap and draw device, using the specified options.
|
||
|
|
||
|
options: Options to configure the draw device, and choose the
|
||
|
resolution and colorspace.
|
||
|
|
||
|
mediabox: The bounds of the page in points.
|
||
|
|
||
|
pixmap: An out parameter containing the newly created pixmap.
|
||
|
*/
|
||
|
fz_device *fz_new_draw_device_with_options(fz_context *ctx, const fz_draw_options *options, fz_rect mediabox, fz_pixmap **pixmap);
|
||
|
|
||
|
#endif
|