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1272 lines
38 KiB
1272 lines
38 KiB
// Copyright 2014 PDFium Authors. All rights reserved. |
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// Use of this source code is governed by a BSD-style license that can be |
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// found in the LICENSE file. |
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// Original code copyright 2014 Foxit Software Inc. http://www.foxitsoftware.com |
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#include "public/fpdfview.h" |
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#include <memory> |
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#include <utility> |
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#include "core/fpdfapi/cpdf_modulemgr.h" |
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#include "core/fpdfapi/cpdf_pagerendercontext.h" |
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#include "core/fpdfapi/page/cpdf_page.h" |
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#include "core/fpdfapi/parser/cpdf_array.h" |
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#include "core/fpdfapi/parser/cpdf_document.h" |
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#include "core/fpdfapi/parser/fpdf_parser_decode.h" |
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#include "core/fpdfapi/render/cpdf_progressiverenderer.h" |
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#include "core/fpdfapi/render/cpdf_renderoptions.h" |
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#include "core/fpdfdoc/cpdf_annotlist.h" |
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#include "core/fpdfdoc/cpdf_nametree.h" |
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#include "core/fpdfdoc/cpdf_occontext.h" |
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#include "core/fpdfdoc/cpdf_viewerpreferences.h" |
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#include "core/fxcodec/fx_codec.h" |
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#include "core/fxcrt/fx_memory.h" |
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#include "core/fxcrt/fx_safe_types.h" |
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#include "core/fxge/cfx_fxgedevice.h" |
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#include "core/fxge/cfx_gemodule.h" |
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#include "fpdfsdk/cpdfsdk_formfillenvironment.h" |
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#include "fpdfsdk/cpdfsdk_pageview.h" |
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#include "fpdfsdk/fsdk_define.h" |
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#include "fpdfsdk/fsdk_pauseadapter.h" |
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#include "fpdfsdk/javascript/ijs_runtime.h" |
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#include "public/fpdf_ext.h" |
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#include "public/fpdf_progressive.h" |
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#include "third_party/base/numerics/safe_conversions_impl.h" |
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#include "third_party/base/ptr_util.h" |
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#ifdef PDF_ENABLE_XFA |
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#include "fpdfsdk/fpdfxfa/cpdfxfa_context.h" |
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#include "fpdfsdk/fpdfxfa/cpdfxfa_page.h" |
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#include "fpdfsdk/fpdfxfa/cxfa_fwladaptertimermgr.h" |
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#include "public/fpdf_formfill.h" |
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#include "xfa/fxbarcode/BC_Library.h" |
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#endif // PDF_ENABLE_XFA |
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#ifdef PDF_ENABLE_XFA_BMP |
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#include "core/fxcodec/codec/ccodec_bmpmodule.h" |
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#endif |
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#ifdef PDF_ENABLE_XFA_GIF |
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#include "core/fxcodec/codec/ccodec_gifmodule.h" |
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#endif |
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#ifdef PDF_ENABLE_XFA_PNG |
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#include "core/fxcodec/codec/ccodec_pngmodule.h" |
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#endif |
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#ifdef PDF_ENABLE_XFA_TIFF |
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#include "core/fxcodec/codec/ccodec_tiffmodule.h" |
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#endif |
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#if _FXM_PLATFORM_ == _FXM_PLATFORM_WINDOWS_ |
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#include "core/fxge/cfx_windowsdevice.h" |
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#endif |
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namespace { |
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// Also indicates whether library is currently initialized. |
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CCodec_ModuleMgr* g_pCodecModule = nullptr; |
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void RenderPageImpl(CPDF_PageRenderContext* pContext, |
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CPDF_Page* pPage, |
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const CFX_Matrix& matrix, |
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const FX_RECT& clipping_rect, |
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int flags, |
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bool bNeedToRestore, |
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IFSDK_PAUSE_Adapter* pause) { |
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if (!pContext->m_pOptions) |
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pContext->m_pOptions = pdfium::MakeUnique<CPDF_RenderOptions>(); |
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if (flags & FPDF_LCD_TEXT) |
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pContext->m_pOptions->m_Flags |= RENDER_CLEARTYPE; |
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else |
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pContext->m_pOptions->m_Flags &= ~RENDER_CLEARTYPE; |
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if (flags & FPDF_NO_NATIVETEXT) |
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pContext->m_pOptions->m_Flags |= RENDER_NO_NATIVETEXT; |
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if (flags & FPDF_RENDER_LIMITEDIMAGECACHE) |
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pContext->m_pOptions->m_Flags |= RENDER_LIMITEDIMAGECACHE; |
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if (flags & FPDF_RENDER_FORCEHALFTONE) |
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pContext->m_pOptions->m_Flags |= RENDER_FORCE_HALFTONE; |
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#ifndef PDF_ENABLE_XFA |
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if (flags & FPDF_RENDER_NO_SMOOTHTEXT) |
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pContext->m_pOptions->m_Flags |= RENDER_NOTEXTSMOOTH; |
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if (flags & FPDF_RENDER_NO_SMOOTHIMAGE) |
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pContext->m_pOptions->m_Flags |= RENDER_NOIMAGESMOOTH; |
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if (flags & FPDF_RENDER_NO_SMOOTHPATH) |
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pContext->m_pOptions->m_Flags |= RENDER_NOPATHSMOOTH; |
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#endif // PDF_ENABLE_XFA |
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// Grayscale output |
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if (flags & FPDF_GRAYSCALE) { |
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pContext->m_pOptions->m_ColorMode = RENDER_COLOR_GRAY; |
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pContext->m_pOptions->m_ForeColor = 0; |
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pContext->m_pOptions->m_BackColor = 0xffffff; |
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} |
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const CPDF_OCContext::UsageType usage = |
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(flags & FPDF_PRINTING) ? CPDF_OCContext::Print : CPDF_OCContext::View; |
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pContext->m_pOptions->m_AddFlags = flags >> 8; |
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pContext->m_pOptions->m_pOCContext = |
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pdfium::MakeRetain<CPDF_OCContext>(pPage->m_pDocument, usage); |
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pContext->m_pDevice->SaveState(); |
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pContext->m_pDevice->SetClip_Rect(clipping_rect); |
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pContext->m_pContext = pdfium::MakeUnique<CPDF_RenderContext>(pPage); |
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pContext->m_pContext->AppendLayer(pPage, &matrix); |
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if (flags & FPDF_ANNOT) { |
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pContext->m_pAnnots = pdfium::MakeUnique<CPDF_AnnotList>(pPage); |
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bool bPrinting = pContext->m_pDevice->GetDeviceClass() != FXDC_DISPLAY; |
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pContext->m_pAnnots->DisplayAnnots(pPage, pContext->m_pContext.get(), |
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bPrinting, &matrix, false, nullptr); |
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} |
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pContext->m_pRenderer = pdfium::MakeUnique<CPDF_ProgressiveRenderer>( |
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pContext->m_pContext.get(), pContext->m_pDevice.get(), |
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pContext->m_pOptions.get()); |
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pContext->m_pRenderer->Start(pause); |
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if (bNeedToRestore) |
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pContext->m_pDevice->RestoreState(false); |
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} |
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class CPDF_CustomAccess final : public IFX_SeekableReadStream { |
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public: |
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static CFX_RetainPtr<CPDF_CustomAccess> Create(FPDF_FILEACCESS* pFileAccess) { |
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return CFX_RetainPtr<CPDF_CustomAccess>(new CPDF_CustomAccess(pFileAccess)); |
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} |
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// IFX_SeekableReadStream |
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FX_FILESIZE GetSize() override; |
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bool ReadBlock(void* buffer, FX_FILESIZE offset, size_t size) override; |
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private: |
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explicit CPDF_CustomAccess(FPDF_FILEACCESS* pFileAccess); |
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FPDF_FILEACCESS m_FileAccess; |
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}; |
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CPDF_CustomAccess::CPDF_CustomAccess(FPDF_FILEACCESS* pFileAccess) |
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: m_FileAccess(*pFileAccess) {} |
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FX_FILESIZE CPDF_CustomAccess::GetSize() { |
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return m_FileAccess.m_FileLen; |
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} |
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bool CPDF_CustomAccess::ReadBlock(void* buffer, |
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FX_FILESIZE offset, |
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size_t size) { |
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if (offset < 0) |
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return false; |
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FX_SAFE_FILESIZE newPos = pdfium::base::checked_cast<FX_FILESIZE>(size); |
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newPos += offset; |
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if (!newPos.IsValid() || |
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newPos.ValueOrDie() > static_cast<FX_FILESIZE>(m_FileAccess.m_FileLen)) { |
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return false; |
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} |
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return !!m_FileAccess.m_GetBlock(m_FileAccess.m_Param, offset, |
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reinterpret_cast<uint8_t*>(buffer), size); |
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} |
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#ifdef PDF_ENABLE_XFA |
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class CFPDF_FileStream : public IFX_SeekableStream { |
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public: |
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static CFX_RetainPtr<CFPDF_FileStream> Create(FPDF_FILEHANDLER* pFS) { |
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return CFX_RetainPtr<CFPDF_FileStream>(new CFPDF_FileStream(pFS)); |
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} |
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~CFPDF_FileStream() override; |
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// IFX_SeekableStream: |
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FX_FILESIZE GetSize() override; |
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bool IsEOF() override; |
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FX_FILESIZE GetPosition() override; |
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bool ReadBlock(void* buffer, FX_FILESIZE offset, size_t size) override; |
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size_t ReadBlock(void* buffer, size_t size) override; |
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bool WriteBlock(const void* buffer, FX_FILESIZE offset, size_t size) override; |
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bool Flush() override; |
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void SetPosition(FX_FILESIZE pos) { m_nCurPos = pos; } |
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protected: |
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explicit CFPDF_FileStream(FPDF_FILEHANDLER* pFS); |
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FPDF_FILEHANDLER* m_pFS; |
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FX_FILESIZE m_nCurPos; |
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}; |
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CFPDF_FileStream::CFPDF_FileStream(FPDF_FILEHANDLER* pFS) { |
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m_pFS = pFS; |
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m_nCurPos = 0; |
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} |
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CFPDF_FileStream::~CFPDF_FileStream() { |
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if (m_pFS && m_pFS->Release) |
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m_pFS->Release(m_pFS->clientData); |
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} |
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FX_FILESIZE CFPDF_FileStream::GetSize() { |
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if (m_pFS && m_pFS->GetSize) |
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return (FX_FILESIZE)m_pFS->GetSize(m_pFS->clientData); |
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return 0; |
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} |
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bool CFPDF_FileStream::IsEOF() { |
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return m_nCurPos >= GetSize(); |
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} |
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FX_FILESIZE CFPDF_FileStream::GetPosition() { |
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return m_nCurPos; |
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} |
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bool CFPDF_FileStream::ReadBlock(void* buffer, |
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FX_FILESIZE offset, |
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size_t size) { |
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if (!buffer || !size || !m_pFS->ReadBlock) |
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return false; |
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if (m_pFS->ReadBlock(m_pFS->clientData, (FPDF_DWORD)offset, buffer, |
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(FPDF_DWORD)size) == 0) { |
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m_nCurPos = offset + size; |
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return true; |
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} |
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return false; |
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} |
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size_t CFPDF_FileStream::ReadBlock(void* buffer, size_t size) { |
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if (!buffer || !size || !m_pFS->ReadBlock) |
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return 0; |
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FX_FILESIZE nSize = GetSize(); |
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if (m_nCurPos >= nSize) |
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return 0; |
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FX_FILESIZE dwAvail = nSize - m_nCurPos; |
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if (dwAvail < (FX_FILESIZE)size) |
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size = (size_t)dwAvail; |
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if (m_pFS->ReadBlock(m_pFS->clientData, (FPDF_DWORD)m_nCurPos, buffer, |
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(FPDF_DWORD)size) == 0) { |
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m_nCurPos += size; |
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return size; |
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} |
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return 0; |
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} |
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bool CFPDF_FileStream::WriteBlock(const void* buffer, |
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FX_FILESIZE offset, |
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size_t size) { |
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if (!m_pFS || !m_pFS->WriteBlock) |
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return false; |
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if (m_pFS->WriteBlock(m_pFS->clientData, (FPDF_DWORD)offset, buffer, |
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(FPDF_DWORD)size) == 0) { |
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m_nCurPos = offset + size; |
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return true; |
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} |
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return false; |
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} |
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bool CFPDF_FileStream::Flush() { |
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if (!m_pFS || !m_pFS->Flush) |
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return true; |
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return m_pFS->Flush(m_pFS->clientData) == 0; |
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} |
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#endif // PDF_ENABLE_XFA |
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} // namespace |
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UnderlyingDocumentType* UnderlyingFromFPDFDocument(FPDF_DOCUMENT doc) { |
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return static_cast<UnderlyingDocumentType*>(doc); |
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} |
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FPDF_DOCUMENT FPDFDocumentFromUnderlying(UnderlyingDocumentType* doc) { |
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return static_cast<FPDF_DOCUMENT>(doc); |
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} |
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UnderlyingPageType* UnderlyingFromFPDFPage(FPDF_PAGE page) { |
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return static_cast<UnderlyingPageType*>(page); |
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} |
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CPDF_Document* CPDFDocumentFromFPDFDocument(FPDF_DOCUMENT doc) { |
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#ifdef PDF_ENABLE_XFA |
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return doc ? UnderlyingFromFPDFDocument(doc)->GetPDFDoc() : nullptr; |
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#else // PDF_ENABLE_XFA |
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return UnderlyingFromFPDFDocument(doc); |
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#endif // PDF_ENABLE_XFA |
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} |
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FPDF_DOCUMENT FPDFDocumentFromCPDFDocument(CPDF_Document* doc) { |
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#ifdef PDF_ENABLE_XFA |
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return doc ? FPDFDocumentFromUnderlying( |
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new CPDFXFA_Context(pdfium::WrapUnique(doc))) |
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: nullptr; |
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#else // PDF_ENABLE_XFA |
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return FPDFDocumentFromUnderlying(doc); |
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#endif // PDF_ENABLE_XFA |
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} |
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CPDF_Page* CPDFPageFromFPDFPage(FPDF_PAGE page) { |
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#ifdef PDF_ENABLE_XFA |
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return page ? UnderlyingFromFPDFPage(page)->GetPDFPage() : nullptr; |
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#else // PDF_ENABLE_XFA |
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return UnderlyingFromFPDFPage(page); |
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#endif // PDF_ENABLE_XFA |
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} |
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CFX_DIBitmap* CFXBitmapFromFPDFBitmap(FPDF_BITMAP bitmap) { |
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return static_cast<CFX_DIBitmap*>(bitmap); |
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} |
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CFX_RetainPtr<IFX_SeekableReadStream> MakeSeekableReadStream( |
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FPDF_FILEACCESS* pFileAccess) { |
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return CPDF_CustomAccess::Create(pFileAccess); |
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} |
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#ifdef PDF_ENABLE_XFA |
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CFX_RetainPtr<IFX_SeekableStream> MakeSeekableStream( |
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FPDF_FILEHANDLER* pFilehandler) { |
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return CFPDF_FileStream::Create(pFilehandler); |
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} |
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#endif // PDF_ENABLE_XFA |
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// 0 bit: FPDF_POLICY_MACHINETIME_ACCESS |
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static uint32_t foxit_sandbox_policy = 0xFFFFFFFF; |
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void FSDK_SetSandBoxPolicy(FPDF_DWORD policy, FPDF_BOOL enable) { |
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switch (policy) { |
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case FPDF_POLICY_MACHINETIME_ACCESS: { |
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if (enable) |
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foxit_sandbox_policy |= 0x01; |
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else |
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foxit_sandbox_policy &= 0xFFFFFFFE; |
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} break; |
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default: |
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break; |
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} |
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} |
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FPDF_BOOL FSDK_IsSandBoxPolicyEnabled(FPDF_DWORD policy) { |
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switch (policy) { |
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case FPDF_POLICY_MACHINETIME_ACCESS: |
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return !!(foxit_sandbox_policy & 0x01); |
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default: |
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return false; |
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} |
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} |
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DLLEXPORT void STDCALL FPDF_InitLibrary() { |
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FPDF_InitLibraryWithConfig(nullptr); |
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} |
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DLLEXPORT void STDCALL |
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FPDF_InitLibraryWithConfig(const FPDF_LIBRARY_CONFIG* cfg) { |
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if (g_pCodecModule) |
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return; |
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g_pCodecModule = new CCodec_ModuleMgr(); |
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CFX_GEModule* pModule = CFX_GEModule::Get(); |
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pModule->Init(cfg ? cfg->m_pUserFontPaths : nullptr, g_pCodecModule); |
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CPDF_ModuleMgr* pModuleMgr = CPDF_ModuleMgr::Get(); |
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pModuleMgr->SetCodecModule(g_pCodecModule); |
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pModuleMgr->InitPageModule(); |
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pModuleMgr->LoadEmbeddedGB1CMaps(); |
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pModuleMgr->LoadEmbeddedJapan1CMaps(); |
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pModuleMgr->LoadEmbeddedCNS1CMaps(); |
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pModuleMgr->LoadEmbeddedKorea1CMaps(); |
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#ifdef PDF_ENABLE_XFA_BMP |
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pModuleMgr->GetCodecModule()->SetBmpModule( |
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pdfium::MakeUnique<CCodec_BmpModule>()); |
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#endif |
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#ifdef PDF_ENABLE_XFA_GIF |
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pModuleMgr->GetCodecModule()->SetGifModule( |
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pdfium::MakeUnique<CCodec_GifModule>()); |
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#endif |
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#ifdef PDF_ENABLE_XFA_PNG |
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pModuleMgr->GetCodecModule()->SetPngModule( |
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pdfium::MakeUnique<CCodec_PngModule>()); |
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#endif |
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#ifdef PDF_ENABLE_XFA_TIFF |
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pModuleMgr->GetCodecModule()->SetTiffModule( |
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pdfium::MakeUnique<CCodec_TiffModule>()); |
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#endif |
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#ifdef PDF_ENABLE_XFA |
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FXJSE_Initialize(); |
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BC_Library_Init(); |
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#endif // PDF_ENABLE_XFA |
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if (cfg && cfg->version >= 2) |
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IJS_Runtime::Initialize(cfg->m_v8EmbedderSlot, cfg->m_pIsolate); |
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} |
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DLLEXPORT void STDCALL FPDF_DestroyLibrary() { |
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if (!g_pCodecModule) |
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return; |
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#ifdef PDF_ENABLE_XFA |
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BC_Library_Destory(); |
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FXJSE_Finalize(); |
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#endif // PDF_ENABLE_XFA |
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CPDF_ModuleMgr::Destroy(); |
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CFX_GEModule::Destroy(); |
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delete g_pCodecModule; |
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g_pCodecModule = nullptr; |
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IJS_Runtime::Destroy(); |
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} |
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#ifndef _WIN32 |
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int g_LastError; |
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void SetLastError(int err) { |
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g_LastError = err; |
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} |
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int GetLastError() { |
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return g_LastError; |
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} |
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#endif // _WIN32 |
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void ProcessParseError(CPDF_Parser::Error err) { |
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uint32_t err_code = FPDF_ERR_SUCCESS; |
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// Translate FPDFAPI error code to FPDFVIEW error code |
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switch (err) { |
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case CPDF_Parser::SUCCESS: |
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err_code = FPDF_ERR_SUCCESS; |
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break; |
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case CPDF_Parser::FILE_ERROR: |
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err_code = FPDF_ERR_FILE; |
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break; |
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case CPDF_Parser::FORMAT_ERROR: |
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err_code = FPDF_ERR_FORMAT; |
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break; |
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case CPDF_Parser::PASSWORD_ERROR: |
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err_code = FPDF_ERR_PASSWORD; |
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break; |
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case CPDF_Parser::HANDLER_ERROR: |
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err_code = FPDF_ERR_SECURITY; |
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break; |
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} |
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SetLastError(err_code); |
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} |
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DLLEXPORT void STDCALL FPDF_SetSandBoxPolicy(FPDF_DWORD policy, |
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FPDF_BOOL enable) { |
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return FSDK_SetSandBoxPolicy(policy, enable); |
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} |
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#if defined(_WIN32) |
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#if defined(PDFIUM_PRINT_TEXT_WITH_GDI) |
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DLLEXPORT void STDCALL |
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FPDF_SetTypefaceAccessibleFunc(PDFiumEnsureTypefaceCharactersAccessible func) { |
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g_pdfium_typeface_accessible_func = func; |
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} |
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DLLEXPORT void STDCALL FPDF_SetPrintTextWithGDI(FPDF_BOOL use_gdi) { |
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g_pdfium_print_text_with_gdi = !!use_gdi; |
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} |
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#endif // PDFIUM_PRINT_TEXT_WITH_GDI |
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DLLEXPORT FPDF_BOOL STDCALL FPDF_SetPrintPostscriptLevel(int postscript_level) { |
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if (postscript_level != 0 && postscript_level != 2 && postscript_level != 3) |
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return FALSE; |
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g_pdfium_print_postscript_level = postscript_level; |
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return TRUE; |
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} |
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#endif // defined(_WIN32) |
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DLLEXPORT FPDF_DOCUMENT STDCALL FPDF_LoadDocument(FPDF_STRING file_path, |
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FPDF_BYTESTRING password) { |
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// NOTE: the creation of the file needs to be by the embedder on the |
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// other side of this API. |
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CFX_RetainPtr<IFX_SeekableReadStream> pFileAccess = |
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IFX_SeekableReadStream::CreateFromFilename((const FX_CHAR*)file_path); |
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if (!pFileAccess) |
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return nullptr; |
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auto pParser = pdfium::MakeUnique<CPDF_Parser>(); |
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pParser->SetPassword(password); |
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auto pDocument = pdfium::MakeUnique<CPDF_Document>(std::move(pParser)); |
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CPDF_Parser::Error error = |
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pDocument->GetParser()->StartParse(pFileAccess, pDocument.get()); |
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if (error != CPDF_Parser::SUCCESS) { |
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ProcessParseError(error); |
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return nullptr; |
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} |
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return FPDFDocumentFromCPDFDocument(pDocument.release()); |
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} |
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#ifdef PDF_ENABLE_XFA |
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DLLEXPORT FPDF_BOOL STDCALL FPDF_HasXFAField(FPDF_DOCUMENT document, |
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int* docType) { |
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if (!document) |
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return false; |
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CPDF_Document* pdfDoc = |
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(static_cast<CPDFXFA_Context*>(document))->GetPDFDoc(); |
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if (!pdfDoc) |
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return false; |
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CPDF_Dictionary* pRoot = pdfDoc->GetRoot(); |
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if (!pRoot) |
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return false; |
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CPDF_Dictionary* pAcroForm = pRoot->GetDictFor("AcroForm"); |
|
if (!pAcroForm) |
|
return false; |
|
|
|
CPDF_Object* pXFA = pAcroForm->GetObjectFor("XFA"); |
|
if (!pXFA) |
|
return false; |
|
|
|
bool bDynamicXFA = pRoot->GetBooleanFor("NeedsRendering", false); |
|
*docType = bDynamicXFA ? DOCTYPE_DYNAMIC_XFA : DOCTYPE_STATIC_XFA; |
|
return true; |
|
} |
|
|
|
DLLEXPORT FPDF_BOOL STDCALL FPDF_LoadXFA(FPDF_DOCUMENT document) { |
|
return document && (static_cast<CPDFXFA_Context*>(document))->LoadXFADoc(); |
|
} |
|
#endif // PDF_ENABLE_XFA |
|
|
|
class CMemFile final : public IFX_SeekableReadStream { |
|
public: |
|
static CFX_RetainPtr<CMemFile> Create(uint8_t* pBuf, FX_FILESIZE size) { |
|
return CFX_RetainPtr<CMemFile>(new CMemFile(pBuf, size)); |
|
} |
|
|
|
FX_FILESIZE GetSize() override { return m_size; } |
|
bool ReadBlock(void* buffer, FX_FILESIZE offset, size_t size) override { |
|
if (offset < 0) |
|
return false; |
|
|
|
FX_SAFE_FILESIZE newPos = pdfium::base::checked_cast<FX_FILESIZE>(size); |
|
newPos += offset; |
|
if (!newPos.IsValid() || newPos.ValueOrDie() > m_size) |
|
return false; |
|
|
|
FXSYS_memcpy(buffer, m_pBuf + offset, size); |
|
return true; |
|
} |
|
|
|
private: |
|
CMemFile(uint8_t* pBuf, FX_FILESIZE size) : m_pBuf(pBuf), m_size(size) {} |
|
|
|
uint8_t* const m_pBuf; |
|
const FX_FILESIZE m_size; |
|
}; |
|
|
|
DLLEXPORT FPDF_DOCUMENT STDCALL FPDF_LoadMemDocument(const void* data_buf, |
|
int size, |
|
FPDF_BYTESTRING password) { |
|
CFX_RetainPtr<CMemFile> pMemFile = CMemFile::Create((uint8_t*)data_buf, size); |
|
auto pParser = pdfium::MakeUnique<CPDF_Parser>(); |
|
pParser->SetPassword(password); |
|
|
|
auto pDocument = pdfium::MakeUnique<CPDF_Document>(std::move(pParser)); |
|
CPDF_Parser::Error error = |
|
pDocument->GetParser()->StartParse(pMemFile, pDocument.get()); |
|
if (error != CPDF_Parser::SUCCESS) { |
|
ProcessParseError(error); |
|
return nullptr; |
|
} |
|
CheckUnSupportError(pDocument.get(), error); |
|
return FPDFDocumentFromCPDFDocument(pDocument.release()); |
|
} |
|
|
|
DLLEXPORT FPDF_DOCUMENT STDCALL |
|
FPDF_LoadCustomDocument(FPDF_FILEACCESS* pFileAccess, |
|
FPDF_BYTESTRING password) { |
|
CFX_RetainPtr<CPDF_CustomAccess> pFile = |
|
CPDF_CustomAccess::Create(pFileAccess); |
|
auto pParser = pdfium::MakeUnique<CPDF_Parser>(); |
|
pParser->SetPassword(password); |
|
|
|
auto pDocument = pdfium::MakeUnique<CPDF_Document>(std::move(pParser)); |
|
CPDF_Parser::Error error = |
|
pDocument->GetParser()->StartParse(pFile, pDocument.get()); |
|
if (error != CPDF_Parser::SUCCESS) { |
|
ProcessParseError(error); |
|
return nullptr; |
|
} |
|
CheckUnSupportError(pDocument.get(), error); |
|
return FPDFDocumentFromCPDFDocument(pDocument.release()); |
|
} |
|
|
|
DLLEXPORT FPDF_BOOL STDCALL FPDF_GetFileVersion(FPDF_DOCUMENT doc, |
|
int* fileVersion) { |
|
if (!fileVersion) |
|
return false; |
|
|
|
*fileVersion = 0; |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(doc); |
|
if (!pDoc) |
|
return false; |
|
|
|
CPDF_Parser* pParser = pDoc->GetParser(); |
|
if (!pParser) |
|
return false; |
|
|
|
*fileVersion = pParser->GetFileVersion(); |
|
return true; |
|
} |
|
|
|
// jabdelmalek: changed return type from uint32_t to build on Linux (and match |
|
// header). |
|
DLLEXPORT unsigned long STDCALL FPDF_GetDocPermissions(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
// https://bugs.chromium.org/p/pdfium/issues/detail?id=499 |
|
if (!pDoc) { |
|
#ifndef PDF_ENABLE_XFA |
|
return 0; |
|
#else // PDF_ENABLE_XFA |
|
return 0xFFFFFFFF; |
|
#endif // PDF_ENABLE_XFA |
|
} |
|
|
|
return pDoc->GetUserPermissions(); |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDF_GetSecurityHandlerRevision(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc || !pDoc->GetParser()) |
|
return -1; |
|
|
|
CPDF_Dictionary* pDict = pDoc->GetParser()->GetEncryptDict(); |
|
return pDict ? pDict->GetIntegerFor("R") : -1; |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDF_GetPageCount(FPDF_DOCUMENT document) { |
|
UnderlyingDocumentType* pDoc = UnderlyingFromFPDFDocument(document); |
|
return pDoc ? pDoc->GetPageCount() : 0; |
|
} |
|
|
|
DLLEXPORT FPDF_PAGE STDCALL FPDF_LoadPage(FPDF_DOCUMENT document, |
|
int page_index) { |
|
UnderlyingDocumentType* pDoc = UnderlyingFromFPDFDocument(document); |
|
if (!pDoc) |
|
return nullptr; |
|
|
|
if (page_index < 0 || page_index >= pDoc->GetPageCount()) |
|
return nullptr; |
|
|
|
#ifdef PDF_ENABLE_XFA |
|
return pDoc->GetXFAPage(page_index); |
|
#else // PDF_ENABLE_XFA |
|
CPDF_Dictionary* pDict = pDoc->GetPage(page_index); |
|
if (!pDict) |
|
return nullptr; |
|
|
|
CPDF_Page* pPage = new CPDF_Page(pDoc, pDict, true); |
|
pPage->ParseContent(); |
|
return pPage; |
|
#endif // PDF_ENABLE_XFA |
|
} |
|
|
|
DLLEXPORT double STDCALL FPDF_GetPageWidth(FPDF_PAGE page) { |
|
UnderlyingPageType* pPage = UnderlyingFromFPDFPage(page); |
|
return pPage ? pPage->GetPageWidth() : 0.0; |
|
} |
|
|
|
DLLEXPORT double STDCALL FPDF_GetPageHeight(FPDF_PAGE page) { |
|
UnderlyingPageType* pPage = UnderlyingFromFPDFPage(page); |
|
return pPage ? pPage->GetPageHeight() : 0.0; |
|
} |
|
|
|
#if defined(_WIN32) |
|
DLLEXPORT void STDCALL FPDF_RenderPage(HDC dc, |
|
FPDF_PAGE page, |
|
int start_x, |
|
int start_y, |
|
int size_x, |
|
int size_y, |
|
int rotate, |
|
int flags) { |
|
CPDF_Page* pPage = CPDFPageFromFPDFPage(page); |
|
if (!pPage) |
|
return; |
|
|
|
CPDF_PageRenderContext* pContext = new CPDF_PageRenderContext; |
|
pPage->SetRenderContext(pdfium::WrapUnique(pContext)); |
|
|
|
std::unique_ptr<CFX_DIBitmap> pBitmap; |
|
// TODO: This results in unnecessary rasterization of some PDFs due to |
|
// HasImageMask() returning true. If any image on the page is a mask, the |
|
// entire page gets rasterized and the spool size gets huge. |
|
const bool bNewBitmap = |
|
pPage->BackgroundAlphaNeeded() || pPage->HasImageMask(); |
|
if (bNewBitmap) { |
|
pBitmap = pdfium::MakeUnique<CFX_DIBitmap>(); |
|
pBitmap->Create(size_x, size_y, FXDIB_Argb); |
|
pBitmap->Clear(0x00ffffff); |
|
CFX_FxgeDevice* pDevice = new CFX_FxgeDevice; |
|
pContext->m_pDevice = pdfium::WrapUnique(pDevice); |
|
pDevice->Attach(pBitmap.get(), false, nullptr, false); |
|
} else { |
|
pContext->m_pDevice = pdfium::MakeUnique<CFX_WindowsDevice>(dc); |
|
} |
|
|
|
FPDF_RenderPage_Retail(pContext, page, start_x, start_y, size_x, size_y, |
|
rotate, flags, true, nullptr); |
|
|
|
if (bNewBitmap) { |
|
CFX_WindowsDevice WinDC(dc); |
|
if (WinDC.GetDeviceCaps(FXDC_DEVICE_CLASS) == FXDC_PRINTER) { |
|
std::unique_ptr<CFX_DIBitmap> pDst = pdfium::MakeUnique<CFX_DIBitmap>(); |
|
int pitch = pBitmap->GetPitch(); |
|
pDst->Create(size_x, size_y, FXDIB_Rgb32); |
|
FXSYS_memset(pDst->GetBuffer(), -1, pitch * size_y); |
|
pDst->CompositeBitmap(0, 0, size_x, size_y, pBitmap.get(), 0, 0, |
|
FXDIB_BLEND_NORMAL, nullptr, false, nullptr); |
|
WinDC.StretchDIBits(pDst.get(), 0, 0, size_x, size_y); |
|
} else { |
|
WinDC.SetDIBits(pBitmap.get(), 0, 0); |
|
} |
|
} |
|
|
|
pPage->SetRenderContext(nullptr); |
|
} |
|
#endif // defined(_WIN32) |
|
|
|
DLLEXPORT void STDCALL FPDF_RenderPageBitmap(FPDF_BITMAP bitmap, |
|
FPDF_PAGE page, |
|
int start_x, |
|
int start_y, |
|
int size_x, |
|
int size_y, |
|
int rotate, |
|
int flags) { |
|
if (!bitmap) |
|
return; |
|
|
|
CPDF_Page* pPage = CPDFPageFromFPDFPage(page); |
|
if (!pPage) |
|
return; |
|
|
|
CPDF_PageRenderContext* pContext = new CPDF_PageRenderContext; |
|
pPage->SetRenderContext(pdfium::WrapUnique(pContext)); |
|
CFX_FxgeDevice* pDevice = new CFX_FxgeDevice; |
|
pContext->m_pDevice.reset(pDevice); |
|
CFX_DIBitmap* pBitmap = CFXBitmapFromFPDFBitmap(bitmap); |
|
pDevice->Attach(pBitmap, !!(flags & FPDF_REVERSE_BYTE_ORDER), nullptr, false); |
|
|
|
FPDF_RenderPage_Retail(pContext, page, start_x, start_y, size_x, size_y, |
|
rotate, flags, true, nullptr); |
|
|
|
#ifdef _SKIA_SUPPORT_PATHS_ |
|
pDevice->Flush(); |
|
pBitmap->UnPreMultiply(); |
|
#endif |
|
pPage->SetRenderContext(nullptr); |
|
} |
|
|
|
DLLEXPORT void STDCALL FPDF_RenderPageBitmapWithMatrix(FPDF_BITMAP bitmap, |
|
FPDF_PAGE page, |
|
const FS_MATRIX* matrix, |
|
const FS_RECTF* clipping, |
|
int flags) { |
|
if (!bitmap) |
|
return; |
|
|
|
CPDF_Page* pPage = CPDFPageFromFPDFPage(page); |
|
if (!pPage) |
|
return; |
|
|
|
CPDF_PageRenderContext* pContext = new CPDF_PageRenderContext; |
|
pPage->SetRenderContext(pdfium::WrapUnique(pContext)); |
|
CFX_FxgeDevice* pDevice = new CFX_FxgeDevice; |
|
pContext->m_pDevice.reset(pDevice); |
|
CFX_DIBitmap* pBitmap = CFXBitmapFromFPDFBitmap(bitmap); |
|
pDevice->Attach(pBitmap, !!(flags & FPDF_REVERSE_BYTE_ORDER), nullptr, false); |
|
|
|
CFX_Matrix transform_matrix = pPage->GetPageMatrix(); |
|
if (matrix) { |
|
transform_matrix.Concat(CFX_Matrix(matrix->a, matrix->b, matrix->c, |
|
matrix->d, matrix->e, matrix->f)); |
|
} |
|
|
|
CFX_FloatRect clipping_rect; |
|
if (clipping) { |
|
clipping_rect.left = clipping->left; |
|
clipping_rect.bottom = clipping->bottom; |
|
clipping_rect.right = clipping->right; |
|
clipping_rect.top = clipping->top; |
|
} |
|
RenderPageImpl(pContext, pPage, transform_matrix, clipping_rect.ToFxRect(), |
|
flags, true, nullptr); |
|
|
|
pPage->SetRenderContext(nullptr); |
|
} |
|
|
|
#ifdef _SKIA_SUPPORT_ |
|
DLLEXPORT FPDF_RECORDER STDCALL FPDF_RenderPageSkp(FPDF_PAGE page, |
|
int size_x, |
|
int size_y) { |
|
CPDF_Page* pPage = CPDFPageFromFPDFPage(page); |
|
if (!pPage) |
|
return nullptr; |
|
|
|
CPDF_PageRenderContext* pContext = new CPDF_PageRenderContext; |
|
pPage->SetRenderContext(pdfium::WrapUnique(pContext)); |
|
CFX_FxgeDevice* skDevice = new CFX_FxgeDevice; |
|
FPDF_RECORDER recorder = skDevice->CreateRecorder(size_x, size_y); |
|
pContext->m_pDevice.reset(skDevice); |
|
FPDF_RenderPage_Retail(pContext, page, 0, 0, size_x, size_y, 0, 0, true, |
|
nullptr); |
|
pPage->SetRenderContext(nullptr); |
|
return recorder; |
|
} |
|
#endif |
|
|
|
DLLEXPORT void STDCALL FPDF_ClosePage(FPDF_PAGE page) { |
|
UnderlyingPageType* pPage = UnderlyingFromFPDFPage(page); |
|
if (!page) |
|
return; |
|
#ifdef PDF_ENABLE_XFA |
|
pPage->Release(); |
|
#else // PDF_ENABLE_XFA |
|
CPDFSDK_PageView* pPageView = |
|
static_cast<CPDFSDK_PageView*>(pPage->GetView()); |
|
if (pPageView) { |
|
// We're already destroying the pageview, so bail early. |
|
if (pPageView->IsBeingDestroyed()) |
|
return; |
|
|
|
if (pPageView->IsLocked()) { |
|
pPageView->TakePageOwnership(); |
|
return; |
|
} |
|
|
|
bool owned = pPageView->OwnsPage(); |
|
// This will delete the |pPageView| object. We must cleanup the PageView |
|
// first because it will attempt to reset the View on the |pPage| during |
|
// destruction. |
|
pPageView->GetFormFillEnv()->RemovePageView(pPage); |
|
// If the page was owned then the pageview will have deleted the page. |
|
if (owned) |
|
return; |
|
} |
|
delete pPage; |
|
#endif // PDF_ENABLE_XFA |
|
} |
|
|
|
DLLEXPORT void STDCALL FPDF_CloseDocument(FPDF_DOCUMENT document) { |
|
delete UnderlyingFromFPDFDocument(document); |
|
} |
|
|
|
DLLEXPORT unsigned long STDCALL FPDF_GetLastError() { |
|
return GetLastError(); |
|
} |
|
|
|
DLLEXPORT void STDCALL FPDF_DeviceToPage(FPDF_PAGE page, |
|
int start_x, |
|
int start_y, |
|
int size_x, |
|
int size_y, |
|
int rotate, |
|
int device_x, |
|
int device_y, |
|
double* page_x, |
|
double* page_y) { |
|
if (!page || !page_x || !page_y) |
|
return; |
|
UnderlyingPageType* pPage = UnderlyingFromFPDFPage(page); |
|
#ifdef PDF_ENABLE_XFA |
|
pPage->DeviceToPage(start_x, start_y, size_x, size_y, rotate, device_x, |
|
device_y, page_x, page_y); |
|
#else // PDF_ENABLE_XFA |
|
CFX_Matrix page2device = |
|
pPage->GetDisplayMatrix(start_x, start_y, size_x, size_y, rotate); |
|
CFX_Matrix device2page; |
|
device2page.SetReverse(page2device); |
|
|
|
CFX_PointF pos = device2page.Transform(CFX_PointF( |
|
static_cast<FX_FLOAT>(device_x), static_cast<FX_FLOAT>(device_y))); |
|
|
|
*page_x = pos.x; |
|
*page_y = pos.y; |
|
#endif // PDF_ENABLE_XFA |
|
} |
|
|
|
DLLEXPORT void STDCALL FPDF_PageToDevice(FPDF_PAGE page, |
|
int start_x, |
|
int start_y, |
|
int size_x, |
|
int size_y, |
|
int rotate, |
|
double page_x, |
|
double page_y, |
|
int* device_x, |
|
int* device_y) { |
|
if (!device_x || !device_y) |
|
return; |
|
UnderlyingPageType* pPage = UnderlyingFromFPDFPage(page); |
|
if (!pPage) |
|
return; |
|
#ifdef PDF_ENABLE_XFA |
|
pPage->PageToDevice(start_x, start_y, size_x, size_y, rotate, page_x, page_y, |
|
device_x, device_y); |
|
#else // PDF_ENABLE_XFA |
|
CFX_Matrix page2device = |
|
pPage->GetDisplayMatrix(start_x, start_y, size_x, size_y, rotate); |
|
CFX_PointF pos = page2device.Transform( |
|
CFX_PointF(static_cast<FX_FLOAT>(page_x), static_cast<FX_FLOAT>(page_y))); |
|
|
|
*device_x = FXSYS_round(pos.x); |
|
*device_y = FXSYS_round(pos.y); |
|
#endif // PDF_ENABLE_XFA |
|
} |
|
|
|
DLLEXPORT FPDF_BITMAP STDCALL FPDFBitmap_Create(int width, |
|
int height, |
|
int alpha) { |
|
auto pBitmap = pdfium::MakeUnique<CFX_DIBitmap>(); |
|
if (!pBitmap->Create(width, height, alpha ? FXDIB_Argb : FXDIB_Rgb32)) |
|
return nullptr; |
|
|
|
return pBitmap.release(); |
|
} |
|
|
|
DLLEXPORT FPDF_BITMAP STDCALL FPDFBitmap_CreateEx(int width, |
|
int height, |
|
int format, |
|
void* first_scan, |
|
int stride) { |
|
FXDIB_Format fx_format; |
|
switch (format) { |
|
case FPDFBitmap_Gray: |
|
fx_format = FXDIB_8bppRgb; |
|
break; |
|
case FPDFBitmap_BGR: |
|
fx_format = FXDIB_Rgb; |
|
break; |
|
case FPDFBitmap_BGRx: |
|
fx_format = FXDIB_Rgb32; |
|
break; |
|
case FPDFBitmap_BGRA: |
|
fx_format = FXDIB_Argb; |
|
break; |
|
default: |
|
return nullptr; |
|
} |
|
CFX_DIBitmap* pBitmap = new CFX_DIBitmap; |
|
pBitmap->Create(width, height, fx_format, (uint8_t*)first_scan, stride); |
|
return pBitmap; |
|
} |
|
|
|
DLLEXPORT void STDCALL FPDFBitmap_FillRect(FPDF_BITMAP bitmap, |
|
int left, |
|
int top, |
|
int width, |
|
int height, |
|
FPDF_DWORD color) { |
|
if (!bitmap) |
|
return; |
|
|
|
CFX_FxgeDevice device; |
|
CFX_DIBitmap* pBitmap = CFXBitmapFromFPDFBitmap(bitmap); |
|
device.Attach(pBitmap, false, nullptr, false); |
|
if (!pBitmap->HasAlpha()) |
|
color |= 0xFF000000; |
|
FX_RECT rect(left, top, left + width, top + height); |
|
device.FillRect(&rect, color); |
|
} |
|
|
|
DLLEXPORT void* STDCALL FPDFBitmap_GetBuffer(FPDF_BITMAP bitmap) { |
|
return bitmap ? CFXBitmapFromFPDFBitmap(bitmap)->GetBuffer() : nullptr; |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDFBitmap_GetWidth(FPDF_BITMAP bitmap) { |
|
return bitmap ? CFXBitmapFromFPDFBitmap(bitmap)->GetWidth() : 0; |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDFBitmap_GetHeight(FPDF_BITMAP bitmap) { |
|
return bitmap ? CFXBitmapFromFPDFBitmap(bitmap)->GetHeight() : 0; |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDFBitmap_GetStride(FPDF_BITMAP bitmap) { |
|
return bitmap ? CFXBitmapFromFPDFBitmap(bitmap)->GetPitch() : 0; |
|
} |
|
|
|
DLLEXPORT void STDCALL FPDFBitmap_Destroy(FPDF_BITMAP bitmap) { |
|
delete CFXBitmapFromFPDFBitmap(bitmap); |
|
} |
|
|
|
void FPDF_RenderPage_Retail(CPDF_PageRenderContext* pContext, |
|
FPDF_PAGE page, |
|
int start_x, |
|
int start_y, |
|
int size_x, |
|
int size_y, |
|
int rotate, |
|
int flags, |
|
bool bNeedToRestore, |
|
IFSDK_PAUSE_Adapter* pause) { |
|
CPDF_Page* pPage = CPDFPageFromFPDFPage(page); |
|
if (!pPage) |
|
return; |
|
|
|
RenderPageImpl(pContext, pPage, pPage->GetDisplayMatrix( |
|
start_x, start_y, size_x, size_y, rotate), |
|
FX_RECT(start_x, start_y, start_x + size_x, start_y + size_y), |
|
flags, bNeedToRestore, pause); |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDF_GetPageSizeByIndex(FPDF_DOCUMENT document, |
|
int page_index, |
|
double* width, |
|
double* height) { |
|
UnderlyingDocumentType* pDoc = UnderlyingFromFPDFDocument(document); |
|
if (!pDoc) |
|
return false; |
|
|
|
#ifdef PDF_ENABLE_XFA |
|
int count = pDoc->GetPageCount(); |
|
if (page_index < 0 || page_index >= count) |
|
return false; |
|
CPDFXFA_Page* pPage = pDoc->GetXFAPage(page_index); |
|
if (!pPage) |
|
return false; |
|
*width = pPage->GetPageWidth(); |
|
*height = pPage->GetPageHeight(); |
|
#else // PDF_ENABLE_XFA |
|
CPDF_Dictionary* pDict = pDoc->GetPage(page_index); |
|
if (!pDict) |
|
return false; |
|
|
|
CPDF_Page page(pDoc, pDict, true); |
|
*width = page.GetPageWidth(); |
|
*height = page.GetPageHeight(); |
|
#endif // PDF_ENABLE_XFA |
|
|
|
return true; |
|
} |
|
|
|
DLLEXPORT FPDF_BOOL STDCALL |
|
FPDF_VIEWERREF_GetPrintScaling(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc) |
|
return true; |
|
CPDF_ViewerPreferences viewRef(pDoc); |
|
return viewRef.PrintScaling(); |
|
} |
|
|
|
DLLEXPORT int STDCALL FPDF_VIEWERREF_GetNumCopies(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
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if (!pDoc) |
|
return 1; |
|
CPDF_ViewerPreferences viewRef(pDoc); |
|
return viewRef.NumCopies(); |
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} |
|
|
|
DLLEXPORT FPDF_PAGERANGE STDCALL |
|
FPDF_VIEWERREF_GetPrintPageRange(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc) |
|
return nullptr; |
|
CPDF_ViewerPreferences viewRef(pDoc); |
|
return viewRef.PrintPageRange(); |
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} |
|
|
|
DLLEXPORT FPDF_DUPLEXTYPE STDCALL |
|
FPDF_VIEWERREF_GetDuplex(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
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if (!pDoc) |
|
return DuplexUndefined; |
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CPDF_ViewerPreferences viewRef(pDoc); |
|
CFX_ByteString duplex = viewRef.Duplex(); |
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if ("Simplex" == duplex) |
|
return Simplex; |
|
if ("DuplexFlipShortEdge" == duplex) |
|
return DuplexFlipShortEdge; |
|
if ("DuplexFlipLongEdge" == duplex) |
|
return DuplexFlipLongEdge; |
|
return DuplexUndefined; |
|
} |
|
|
|
DLLEXPORT unsigned long STDCALL FPDF_VIEWERREF_GetName(FPDF_DOCUMENT document, |
|
FPDF_BYTESTRING key, |
|
char* buffer, |
|
unsigned long length) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc) |
|
return 0; |
|
|
|
CPDF_ViewerPreferences viewRef(pDoc); |
|
CFX_ByteString bsVal; |
|
if (!viewRef.GenericName(key, &bsVal)) |
|
return 0; |
|
|
|
unsigned long dwStringLen = bsVal.GetLength() + 1; |
|
if (buffer && length >= dwStringLen) |
|
memcpy(buffer, bsVal.c_str(), dwStringLen); |
|
return dwStringLen; |
|
} |
|
|
|
DLLEXPORT FPDF_DWORD STDCALL FPDF_CountNamedDests(FPDF_DOCUMENT document) { |
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc) |
|
return 0; |
|
|
|
CPDF_Dictionary* pRoot = pDoc->GetRoot(); |
|
if (!pRoot) |
|
return 0; |
|
|
|
CPDF_NameTree nameTree(pDoc, "Dests"); |
|
pdfium::base::CheckedNumeric<FPDF_DWORD> count = nameTree.GetCount(); |
|
CPDF_Dictionary* pDest = pRoot->GetDictFor("Dests"); |
|
if (pDest) |
|
count += pDest->GetCount(); |
|
|
|
if (!count.IsValid()) |
|
return 0; |
|
|
|
return count.ValueOrDie(); |
|
} |
|
|
|
DLLEXPORT FPDF_DEST STDCALL FPDF_GetNamedDestByName(FPDF_DOCUMENT document, |
|
FPDF_BYTESTRING name) { |
|
if (!name || name[0] == 0) |
|
return nullptr; |
|
|
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc) |
|
return nullptr; |
|
|
|
CPDF_NameTree name_tree(pDoc, "Dests"); |
|
return name_tree.LookupNamedDest(pDoc, name); |
|
} |
|
|
|
#ifdef PDF_ENABLE_XFA |
|
DLLEXPORT FPDF_RESULT STDCALL FPDF_BStr_Init(FPDF_BSTR* str) { |
|
if (!str) |
|
return -1; |
|
|
|
FXSYS_memset(str, 0, sizeof(FPDF_BSTR)); |
|
return 0; |
|
} |
|
|
|
DLLEXPORT FPDF_RESULT STDCALL FPDF_BStr_Set(FPDF_BSTR* str, |
|
FPDF_LPCSTR bstr, |
|
int length) { |
|
if (!str) |
|
return -1; |
|
if (!bstr || !length) |
|
return -1; |
|
if (length == -1) |
|
length = FXSYS_strlen(bstr); |
|
|
|
if (length == 0) { |
|
if (str->str) { |
|
FX_Free(str->str); |
|
str->str = nullptr; |
|
} |
|
str->len = 0; |
|
return 0; |
|
} |
|
|
|
if (str->str && str->len < length) |
|
str->str = FX_Realloc(char, str->str, length + 1); |
|
else if (!str->str) |
|
str->str = FX_Alloc(char, length + 1); |
|
|
|
str->str[length] = 0; |
|
FXSYS_memcpy(str->str, bstr, length); |
|
str->len = length; |
|
|
|
return 0; |
|
} |
|
|
|
DLLEXPORT FPDF_RESULT STDCALL FPDF_BStr_Clear(FPDF_BSTR* str) { |
|
if (!str) |
|
return -1; |
|
|
|
if (str->str) { |
|
FX_Free(str->str); |
|
str->str = nullptr; |
|
} |
|
str->len = 0; |
|
return 0; |
|
} |
|
#endif // PDF_ENABLE_XFA |
|
|
|
DLLEXPORT FPDF_DEST STDCALL FPDF_GetNamedDest(FPDF_DOCUMENT document, |
|
int index, |
|
void* buffer, |
|
long* buflen) { |
|
if (!buffer) |
|
*buflen = 0; |
|
|
|
if (index < 0) |
|
return nullptr; |
|
|
|
CPDF_Document* pDoc = CPDFDocumentFromFPDFDocument(document); |
|
if (!pDoc) |
|
return nullptr; |
|
|
|
CPDF_Dictionary* pRoot = pDoc->GetRoot(); |
|
if (!pRoot) |
|
return nullptr; |
|
|
|
CPDF_Object* pDestObj = nullptr; |
|
CFX_ByteString bsName; |
|
CPDF_NameTree nameTree(pDoc, "Dests"); |
|
int count = nameTree.GetCount(); |
|
if (index >= count) { |
|
CPDF_Dictionary* pDest = pRoot->GetDictFor("Dests"); |
|
if (!pDest) |
|
return nullptr; |
|
|
|
pdfium::base::CheckedNumeric<int> checked_count = count; |
|
checked_count += pDest->GetCount(); |
|
if (!checked_count.IsValid() || index >= checked_count.ValueOrDie()) |
|
return nullptr; |
|
|
|
index -= count; |
|
int i = 0; |
|
for (const auto& it : *pDest) { |
|
bsName = it.first; |
|
pDestObj = it.second.get(); |
|
if (!pDestObj) |
|
continue; |
|
if (i == index) |
|
break; |
|
i++; |
|
} |
|
} else { |
|
pDestObj = nameTree.LookupValue(index, bsName); |
|
} |
|
if (!pDestObj) |
|
return nullptr; |
|
if (CPDF_Dictionary* pDict = pDestObj->AsDictionary()) { |
|
pDestObj = pDict->GetArrayFor("D"); |
|
if (!pDestObj) |
|
return nullptr; |
|
} |
|
if (!pDestObj->IsArray()) |
|
return nullptr; |
|
|
|
CFX_WideString wsName = PDF_DecodeText(bsName); |
|
CFX_ByteString utf16Name = wsName.UTF16LE_Encode(); |
|
int len = utf16Name.GetLength(); |
|
if (!buffer) { |
|
*buflen = len; |
|
} else if (len <= *buflen) { |
|
memcpy(buffer, utf16Name.c_str(), len); |
|
*buflen = len; |
|
} else { |
|
*buflen = -1; |
|
} |
|
return (FPDF_DEST)pDestObj; |
|
}
|
|
|