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153 lines
5.4 KiB
153 lines
5.4 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 <algorithm> |
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#include "core/fxge/cfx_graphstatedata.h" |
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#include "core/fxge/cfx_pathdata.h" |
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#include "core/fxge/cfx_renderdevice.h" |
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#include "third_party/base/numerics/safe_math.h" |
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#include "third_party/base/ptr_util.h" |
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#include "xfa/fxbarcode/BC_TwoDimWriter.h" |
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#include "xfa/fxbarcode/BC_Writer.h" |
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#include "xfa/fxbarcode/common/BC_CommonBitMatrix.h" |
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CBC_TwoDimWriter::CBC_TwoDimWriter() : m_iCorrectLevel(1), m_bFixedSize(true) {} |
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CBC_TwoDimWriter::~CBC_TwoDimWriter() {} |
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void CBC_TwoDimWriter::RenderDeviceResult(CFX_RenderDevice* device, |
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const CFX_Matrix* matrix) { |
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CFX_GraphStateData stateData; |
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CFX_PathData path; |
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path.AppendRect(0, 0, (FX_FLOAT)m_Width, (FX_FLOAT)m_Height); |
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device->DrawPath(&path, matrix, &stateData, m_backgroundColor, |
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m_backgroundColor, FXFILL_ALTERNATE); |
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int32_t leftPos = 0; |
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int32_t topPos = 0; |
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if (m_bFixedSize) { |
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leftPos = (m_Width - m_output->GetWidth()) / 2; |
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topPos = (m_Height - m_output->GetHeight()) / 2; |
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} |
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CFX_Matrix matri = *matrix; |
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if (m_Width < m_output->GetWidth() && m_Height < m_output->GetHeight()) { |
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CFX_Matrix matriScale( |
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(FX_FLOAT)m_Width / (FX_FLOAT)m_output->GetWidth(), 0.0, 0.0, |
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(FX_FLOAT)m_Height / (FX_FLOAT)m_output->GetHeight(), 0.0, 0.0); |
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matriScale.Concat(*matrix); |
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matri = matriScale; |
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} |
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for (int32_t x = 0; x < m_output->GetWidth(); x++) { |
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for (int32_t y = 0; y < m_output->GetHeight(); y++) { |
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CFX_PathData rect; |
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rect.AppendRect((FX_FLOAT)leftPos + x, (FX_FLOAT)topPos + y, |
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(FX_FLOAT)(leftPos + x + 1), (FX_FLOAT)(topPos + y + 1)); |
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if (m_output->Get(x, y)) { |
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CFX_GraphStateData data; |
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device->DrawPath(&rect, &matri, &data, m_barColor, 0, FXFILL_WINDING); |
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} |
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} |
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} |
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} |
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int32_t CBC_TwoDimWriter::GetErrorCorrectionLevel() const { |
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return m_iCorrectLevel; |
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} |
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void CBC_TwoDimWriter::RenderBitmapResult(CFX_DIBitmap*& pOutBitmap, |
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int32_t& e) { |
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if (m_bFixedSize) { |
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pOutBitmap = CreateDIBitmap(m_Width, m_Height); |
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} else { |
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pOutBitmap = CreateDIBitmap(m_output->GetWidth(), m_output->GetHeight()); |
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} |
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if (!pOutBitmap) { |
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e = BCExceptionFailToCreateBitmap; |
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return; |
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} |
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pOutBitmap->Clear(m_backgroundColor); |
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int32_t leftPos = 0; |
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int32_t topPos = 0; |
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if (m_bFixedSize) { |
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leftPos = (m_Width - m_output->GetWidth()) / 2; |
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topPos = (m_Height - m_output->GetHeight()) / 2; |
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} |
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for (int32_t x = 0; x < m_output->GetWidth(); x++) { |
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for (int32_t y = 0; y < m_output->GetHeight(); y++) { |
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if (m_output->Get(x, y)) { |
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pOutBitmap->SetPixel(leftPos + x, topPos + y, m_barColor); |
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} |
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} |
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} |
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if (!m_bFixedSize) { |
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std::unique_ptr<CFX_DIBitmap> pStretchBitmap = |
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pOutBitmap->StretchTo(m_Width, m_Height); |
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delete pOutBitmap; |
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pOutBitmap = pStretchBitmap.release(); |
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} |
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} |
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void CBC_TwoDimWriter::RenderResult(uint8_t* code, |
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int32_t codeWidth, |
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int32_t codeHeight, |
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int32_t& e) { |
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int32_t inputWidth = codeWidth; |
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int32_t inputHeight = codeHeight; |
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int32_t tempWidth = inputWidth + 2; |
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int32_t tempHeight = inputHeight + 2; |
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FX_FLOAT moduleHSize = std::min(m_ModuleWidth, m_ModuleHeight); |
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moduleHSize = std::min(moduleHSize, 8.0f); |
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moduleHSize = std::max(moduleHSize, 1.0f); |
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pdfium::base::CheckedNumeric<int32_t> scaledWidth = tempWidth; |
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pdfium::base::CheckedNumeric<int32_t> scaledHeight = tempHeight; |
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scaledWidth *= moduleHSize; |
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scaledHeight *= moduleHSize; |
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int32_t outputWidth = scaledWidth.ValueOrDie(); |
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int32_t outputHeight = scaledHeight.ValueOrDie(); |
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if (m_bFixedSize) { |
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if (m_Width < outputWidth || m_Height < outputHeight) { |
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e = BCExceptionBitmapSizeError; |
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return; |
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} |
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} else { |
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if (m_Width > outputWidth || m_Height > outputHeight) { |
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outputWidth = (int32_t)(outputWidth * |
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ceil((FX_FLOAT)m_Width / (FX_FLOAT)outputWidth)); |
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outputHeight = (int32_t)( |
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outputHeight * ceil((FX_FLOAT)m_Height / (FX_FLOAT)outputHeight)); |
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} |
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} |
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int32_t multiX = (int32_t)ceil((FX_FLOAT)outputWidth / (FX_FLOAT)tempWidth); |
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int32_t multiY = (int32_t)ceil((FX_FLOAT)outputHeight / (FX_FLOAT)tempHeight); |
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if (m_bFixedSize) { |
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multiX = std::min(multiX, multiY); |
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multiY = multiX; |
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} |
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int32_t leftPadding = (outputWidth - (inputWidth * multiX)) / 2; |
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int32_t topPadding = (outputHeight - (inputHeight * multiY)) / 2; |
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if (leftPadding < 0) { |
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leftPadding = 0; |
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} |
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if (topPadding < 0) { |
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topPadding = 0; |
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} |
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m_output = pdfium::MakeUnique<CBC_CommonBitMatrix>(); |
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m_output->Init(outputWidth, outputHeight); |
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for (int32_t inputY = 0, outputY = topPadding; |
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(inputY < inputHeight) && (outputY < outputHeight - multiY); |
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inputY++, outputY += multiY) { |
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for (int32_t inputX = 0, outputX = leftPadding; |
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(inputX < inputWidth) && (outputX < outputWidth - multiX); |
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inputX++, outputX += multiX) { |
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if (code[inputX + inputY * inputWidth] == 1) { |
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m_output->SetRegion(outputX, outputY, multiX, multiY, e); |
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if (e != BCExceptionNO) |
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return; |
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} |
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} |
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} |
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}
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