view OrthancFramework/Sources/DicomFormat/DicomValue.cpp @ 5911:bfae0fc2ea1b get-scu-test

Started to work on handling errors as warnings when trying to store instances whose SOPClassUID has not been accepted during the negotiation. Work to be finalized later
author Alain Mazy <am@orthanc.team>
date Mon, 09 Dec 2024 10:07:19 +0100
parents f7adfb22e20e
children
line wrap: on
line source

/**
 * Orthanc - A Lightweight, RESTful DICOM Store
 * Copyright (C) 2012-2016 Sebastien Jodogne, Medical Physics
 * Department, University Hospital of Liege, Belgium
 * Copyright (C) 2017-2023 Osimis S.A., Belgium
 * Copyright (C) 2024-2024 Orthanc Team SRL, Belgium
 * Copyright (C) 2021-2024 Sebastien Jodogne, ICTEAM UCLouvain, Belgium
 *
 * This program is free software: you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public License
 * as published by the Free Software Foundation, either version 3 of
 * the License, or (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
 * License along with this program. If not, see
 * <http://www.gnu.org/licenses/>.
 **/


#include "../PrecompiledHeaders.h"
#include "DicomValue.h"

#include "../OrthancException.h"
#include "../SerializationToolbox.h"
#include "../Toolbox.h"

#include <boost/lexical_cast.hpp>

namespace Orthanc
{
  DicomValue::DicomValue() :
    type_(Type_Null)
  {
  }


  DicomValue::DicomValue(const DicomValue& other) :
    type_(other.type_),
    content_(other.content_),
    sequenceJson_(other.sequenceJson_)
  {
  }


  DicomValue::DicomValue(const std::string& content,
                         bool isBinary) :
    type_(isBinary ? Type_Binary : Type_String),
    content_(content)
  {
  }
  
  
  DicomValue::DicomValue(const char* data,
                         size_t size,
                         bool isBinary) :
    type_(isBinary ? Type_Binary : Type_String)
  {
    content_.assign(data, size);
  }
    
  DicomValue::DicomValue(const Json::Value& value) :
    type_(Type_SequenceAsJson),
    sequenceJson_(value)
  {
    if (value.type() != Json::arrayValue)
    {
      throw OrthancException(ErrorCode_BadParameterType);
    }
  }
  
  const std::string& DicomValue::GetContent() const
  {
    if (type_ == Type_Null || type_ == Type_SequenceAsJson)
    {
      throw OrthancException(ErrorCode_BadParameterType);
    }
    else
    {
      return content_;
    }
  }

  const Json::Value& DicomValue::GetSequenceContent() const
  {
    if (type_ != Type_SequenceAsJson)
    {
      throw OrthancException(ErrorCode_BadParameterType);
    }
    else
    {
      return sequenceJson_;
    }
  }


  bool DicomValue::IsNull() const
  {
    return type_ == Type_Null;
  }

  bool DicomValue::IsBinary() const
  {
    return type_ == Type_Binary;
  }

  bool DicomValue::IsString() const
  {
    return type_ == Type_String;
  }

  bool DicomValue::IsSequence() const
  {
    return type_ == Type_SequenceAsJson;
  }

  DicomValue* DicomValue::Clone() const
  {
    return new DicomValue(*this);
  }

  
#if ORTHANC_ENABLE_BASE64 == 1
  void DicomValue::FormatDataUriScheme(std::string& target,
                                       const std::string& mime) const
  {
    Toolbox::EncodeBase64(target, GetContent());
    target.insert(0, "data:" + mime + ";base64,");
  }

  void DicomValue::FormatDataUriScheme(std::string& target) const
  {
    FormatDataUriScheme(target, MIME_BINARY);
  }
#endif

  bool DicomValue::ParseInteger32(int32_t& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseInteger32(result, GetContent());
    }
  }

  bool DicomValue::ParseInteger64(int64_t& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseInteger64(result, GetContent());
    }
  }

  bool DicomValue::ParseUnsignedInteger32(uint32_t& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseUnsignedInteger32(result, GetContent());
    }
  }

  bool DicomValue::ParseUnsignedInteger64(uint64_t& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseUnsignedInteger64(result, GetContent());
    }
  }

  bool DicomValue::ParseFloat(float& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseFloat(result, GetContent());
    }
  }

  bool DicomValue::ParseDouble(double& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseDouble(result, GetContent());
    }
  }

  bool DicomValue::ParseFirstFloat(float& result) const
  {
    if (!IsString())
    {
      return false;
    }
    else
    {
      return SerializationToolbox::ParseFirstFloat(result, GetContent());
    }
  }

  bool DicomValue::ParseFirstUnsignedInteger(unsigned int& result) const
  {
    uint64_t value;

    if (!IsString())
    {
      return false;
    }
    else if (SerializationToolbox::ParseFirstUnsignedInteger64(value, GetContent()))
    {
      result = static_cast<unsigned int>(value);
      return (static_cast<uint64_t>(result) == value);   // Check no overflow
    }
    else
    {
      return false;
    }
  }

  bool DicomValue::CopyToString(std::string& result,
                                bool allowBinary) const
  {
    if (IsNull())
    {
      return false;
    }
    else if (IsSequence())
    {
      return false;
    }
    else if (IsBinary() && !allowBinary)
    {
      return false;
    }
    else
    {
      result.assign(content_);
      return true;
    }
  }    


  static const char* KEY_TYPE = "Type";
  static const char* KEY_CONTENT = "Content";
  
  void DicomValue::Serialize(Json::Value& target) const
  {
    target = Json::objectValue;

    switch (type_)
    {
      case Type_Null:
        target[KEY_TYPE] = "Null";
        break;

      case Type_String:
        target[KEY_TYPE] = "String";
        target[KEY_CONTENT] = content_;
        break;

      case Type_Binary:
      {
        target[KEY_TYPE] = "Binary";

        std::string base64;
        Toolbox::EncodeBase64(base64, content_);
        target[KEY_CONTENT] = base64;
        break;
      }

      case Type_SequenceAsJson:
      {
        throw OrthancException(ErrorCode_NotImplemented);
      }

      default:
        throw OrthancException(ErrorCode_InternalError);
    }
  }

  void DicomValue::Unserialize(const Json::Value& source)
  {
    std::string type = SerializationToolbox::ReadString(source, KEY_TYPE);

    if (type == "Null")
    {
      type_ = Type_Null;
      content_.clear();
    }
    else if (type == "String")
    {
      type_ = Type_String;
      content_ = SerializationToolbox::ReadString(source, KEY_CONTENT);
    }
    else if (type == "Binary")
    {
      type_ = Type_Binary;

      const std::string base64 =SerializationToolbox::ReadString(source, KEY_CONTENT);
      Toolbox::DecodeBase64(content_, base64);
    }
    else if (type == "Sequence")
    {
      throw OrthancException(ErrorCode_NotImplemented);
    }
    else
    {
      throw OrthancException(ErrorCode_BadFileFormat);
    }
  }
}