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path: root/docs/hazmat/primitives/symmetric-encryption.rst
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.. hazmat::


Symmetric Encryption
====================

.. currentmodule:: cryptography.hazmat.primitives.ciphers

.. testsetup::

    import binascii
    key = binascii.unhexlify(b"0" * 32)
    iv = binascii.unhexlify(b"0" * 32)


Symmetric encryption is a way to encrypt (hide the plaintext value) material
where the encrypter and decrypter both use the same key. Note that symmetric
encryption is **not** sufficient for most applications, because it only
provides secrecy (an attacker can't see the message) but not authenticity (an
attacker can create bogus messages and force the application to decrypt them).
For this reason it is *strongly* reccomended to combine encryption with a
message authentication code, such as :doc:`HMAC </hazmat/primitives/hmac>`, in
an "encrypt-then-MAC" formulation as `described by Colin Percival`_.

.. class:: Cipher(algorithm, mode)

    Cipher objects combine an algorithm (such as
    :class:`~cryptography.hazmat.primitives.ciphers.algorithms.AES`) with a
    mode (such as
    :class:`~cryptography.hazmat.primitives.ciphers.modes.CBC` or
    :class:`~cryptography.hazmat.primitives.ciphers.modes.CTR`). A simple
    example of encrypting (and then decrypting) content with AES is:

    .. doctest::

        >>> from cryptography.hazmat.primitives.ciphers import Cipher, algorithms, modes
        >>> cipher = Cipher(algorithms.AES(key), modes.CBC(iv))
        >>> encryptor = cipher.encryptor()
        >>> ct = encryptor.update(b"a secret message") + encryptor.finalize()
        >>> decryptor = cipher.decryptor()
        >>> decryptor.update(ct) + decryptor.finalize()
        'a secret message'

    :param algorithms: One of the algorithms described below.
    :param mode: One of the modes described below.

    .. method:: encryptor()

        :return: An encrypting
            :class:`~cryptography.hazmat.primitives.interfaces.CipherContext`
            provider.

        If the backend doesn't support the requested combination of ``cipher``
        and ``mode`` an :class:`cryptography.exceptions.UnsupportedAlgorithm`
        will be raised.

    .. method:: decryptor()

        :return: A decrypting
            :class:`~cryptography.hazmat.primitives.interfaces.CipherContext`
            provider.

        If the backend doesn't support the requested combination of ``cipher``
        and ``mode`` an :class:`cryptography.exceptions.UnsupportedAlgorithm`
        will be raised.


.. currentmodule:: cryptography.hazmat.primitives.interfaces

.. class:: CipherContext

    When calling ``encryptor()`` or ``decryptor()`` on a ``Cipher`` object
    you will receive a return object conforming to the ``CipherContext``
    interface. You can then call ``update(data)`` with data until you have fed
    everything into the context. Once that is done call ``finalize()`` to
    finish the operation and obtain the remainder of the data.

    .. method:: update(data)

        :param bytes data: The data you wish to pass into the context.
        :return bytes: Returns the data that was encrypted or decrypted.
        :raises cryptography.exceptions.AlreadyFinalized: See :meth:`finalize`

        When the ``Cipher`` was constructed in a mode that turns it into a
        stream cipher (e.g.
        :class:`cryptography.hazmat.primitives.ciphers.modes.CTR`), this will
        return bytes immediately, however in other modes it will return chunks,
        whose size is determined by the cipher's block size.

    .. method:: finalize()

        :return bytes: Returns the remainder of the data.

        Once ``finalize`` is called this object can no longer be used and
        :meth:`update` and :meth:`finalize` will raise
        :class:`~cryptography.exceptions.AlreadyFinalized`.

Algorithms
~~~~~~~~~~

.. currentmodule:: cryptography.hazmat.primitives.ciphers.algorithms

.. class:: AES(key)

    AES (Advanced Encryption Standard) is a block cipher standardized by NIST.
    AES is both fast, and cryptographically strong. It is a good default
    choice for encryption.

    :param bytes key: The secret key, either ``128``, ``192``, or ``256`` bits.
                      This must be kept secret.

.. class:: Camellia(key)

    Camellia is a block cipher approved for use by CRYPTREC and ISO/IEC.
    It is considered to have comparable security and performance to AES, but
    is not as widely studied or deployed.

    :param bytes key: The secret key, either ``128``, ``192``, or ``256`` bits.
                      This must be kept secret.


.. class:: TripleDES(key)

    Triple DES (Data Encryption Standard), sometimes refered to as 3DES, is a
    block cipher standardized by NIST. Triple DES has known cryptoanalytic
    flaws, however none of them currently enable a practical attack.
    Nonetheless, Triples DES is not reccomended for new applications because it
    is incredibly slow; old applications should consider moving away from it.

    :param bytes key: The secret key, either ``64``, ``128``, or ``192`` bits
                      (note that DES functionally uses ``56``, ``112``, or
                      ``168`` bits of the key, there is a parity byte in each
                      component of the key), in some materials these are
                      referred to as being up to three separate keys (each
                      ``56`` bits long), they can simply be concatenated to
                      produce the full key. This must be kept secret.

.. class:: CAST5(key)

    CAST5 (also known as CAST-128) is a block cipher approved for use in the
    Canadian government by their Communications Security Establishment. It is a
    variable key length cipher and supports keys from 40-128 bits in length.

    :param bytes key: The secret key, 40-128 bits in length (in increments of
                      8).  This must be kept secret.

Weak Ciphers
------------

.. warning::

    These ciphers are considered weak for a variety of reasons. New
    applications should avoid their use and existing applications should
    strongly consider migrating away.

.. class:: Blowfish(key)

    Blowfish is a block cipher developed by Bruce Schneier. It is known to be
    susceptible to attacks when using weak keys. The author has recommended
    that users of Blowfish move to newer algorithms, such as :class:`AES`.

    :param bytes key: The secret key, 32-448 bits in length (in increments of
                      8).  This must be kept secret.

.. class:: ARC4(key)

    ARC4 (Alleged RC4) is a stream cipher with serious weaknesses in its
    initial stream output. Its use is strongly discouraged. ARC4 does not use
    mode constructions.

    :param bytes key: The secret key, ``40``, ``56``, ``64``, ``80``, ``128``,
                      ``192``, or ``256`` bits in length.  This must be kept
                      secret.

    .. doctest::

        >>> from cryptography.hazmat.primitives.ciphers import Cipher, algorithms, modes
        >>> algorithm = algorithms.ARC4(key)
        >>> cipher = Cipher(algorithm, mode=None)
        >>> encryptor = cipher.encryptor()
        >>> ct = encryptor.update(b"a secret message")
        >>> decryptor = cipher.decryptor()
        >>> decryptor.update(ct)
        'a secret message'


.. _symmetric-encryption-modes:

Modes
~~~~~

.. currentmodule:: cryptography.hazmat.primitives.ciphers.modes

.. class:: CBC(initialization_vector)

    CBC (Cipher block chaining) is a mode of operation for block ciphers. It is
    considered cryptographically strong.

    :param bytes initialization_vector: Must be random bytes. They do not need
                                        to be kept secret (they can be included
                                        in a transmitted message). Must be the
                                        same number of bytes as the
                                        ``block_size`` of the cipher. Each time
                                        something is encrypted a new
                                        ``initialization_vector`` should be
                                        generated. Do not reuse an
                                        ``initialization_vector`` with
                                        a given ``key``, and particularly do
                                        not use a constant
                                        ``initialization_vector``.

    A good construction looks like:

    .. code-block:: pycon

        >>> import os
        >>> iv = os.urandom(16)
        >>> mode = CBC(iv)

    While the following is bad and will leak information:

    .. code-block:: pycon

        >>> iv = "a" * 16
        >>> mode = CBC(iv)


.. class:: CTR(nonce)

    .. warning::

        Counter mode is not recommended for use with block ciphers that have a
        block size of less than 128-bits.

    CTR (Counter) is a mode of operation for block ciphers. It is considered
    cryptographically strong. It transforms a block cipher into a stream
    cipher.

    :param bytes nonce: Should be random bytes. It is critical to never reuse a
                        ``nonce`` with a given key.  Any reuse of a nonce
                        with the same key compromises the security of every
                        message encrypted with that key. Must be the same
                        number of bytes as the ``block_size`` of the cipher
                        with a given key. The nonce does not need to be kept
                        secret and may be included alongside the ciphertext.

.. class:: OFB(initialization_vector)

    OFB (Output Feedback) is a mode of operation for block ciphers. It
    transforms a block cipher into a stream cipher.

    :param bytes initialization_vector: Must be random bytes. They do not need
                                        to be kept secret (they can be included
                                        in a transmitted message). Must be the
                                        same number of bytes as the
                                        ``block_size`` of the cipher. Do not
                                        reuse an ``initialization_vector`` with
                                        a given ``key``.

.. class:: CFB(initialization_vector)

    CFB (Cipher Feedback) is a mode of operation for block ciphers. It
    transforms a block cipher into a stream cipher.

    :param bytes initialization_vector: Must be random bytes. They do not need
                                        to be kept secret (they can be included
                                        in a transmitted message). Must be the
                                        same number of bytes as the
                                        ``block_size`` of the cipher. Do not
                                        reuse an ``initialization_vector`` with
                                        a given ``key``.


Insecure Modes
--------------

.. warning::

    These modes are insecure. New applications should never make use of them,
    and existing applications should strongly consider migrating away.


.. class:: ECB()

    ECB (Electronic Code Book) is the simplest mode of operation for block
    ciphers. Each block of data is encrypted in the same way. This means
    identical plaintext blocks will always result in identical ciphertext
    blocks, and thus result in information leakage


.. _`described by Colin Percival`: http://www.daemonology.net/blog/2009-06-11-cryptographic-right-answers.html
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#include "qttreepropertybrowser.h"
#include <QtCore/QSet>
#include <QIcon>
#include <QTreeWidget>
#include <QItemDelegate>
#include <QHBoxLayout>
#include <QHeaderView>
#include <QPainter>
#include <QApplication>
#include <QFocusEvent>
#include <QStyle>
#include <QPalette>

#if QT_VERSION >= 0x040400
QT_BEGIN_NAMESPACE
#endif

class QtPropertyEditorView;

class QtTreePropertyBrowserPrivate
{
    QtTreePropertyBrowser *q_ptr;
    Q_DECLARE_PUBLIC(QtTreePropertyBrowser)

public:
    QtTreePropertyBrowserPrivate();
    void init(QWidget *parent);

    void propertyInserted(QtBrowserItem *index, QtBrowserItem *afterIndex);
    void propertyRemoved(QtBrowserItem *index);
    void propertyChanged(QtBrowserItem *index);
    QWidget *createEditor(QtProperty *property, QWidget *parent) const
        { return q_ptr->createEditor(property, parent); }
    QtProperty *indexToProperty(const QModelIndex &index) const;
    QTreeWidgetItem *indexToItem(const QModelIndex &index) const;
    QtBrowserItem *indexToBrowserItem(const QModelIndex &index) const;
    QtBrowserItem *itemToBrowserItem(QTreeWidgetItem *item) const { return m_itemToIndex.value(item); };
    bool lastColumn(int column) const;
    void disableItem(QTreeWidgetItem *item) const;
    void enableItem(QTreeWidgetItem *item) const;
    bool hasValue(QTreeWidgetItem *item) const;

    void slotCollapsed(const QModelIndex &index);
    void slotExpanded(const QModelIndex &index);
    void onHoverPropertyChanged(QtBrowserItem *item);

    QColor calculatedBackgroundColor(QtBrowserItem *item) const;

    QtPropertyEditorView *treeWidget() const { return m_treeWidget; }
    bool markPropertiesWithoutValue() const { return m_markPropertiesWithoutValue; }

    QtBrowserItem *currentItem() const;
    void setCurrentItem(QtBrowserItem *browserItem, bool block);
    void editItem(QtBrowserItem *browserItem);

    void slotCurrentBrowserItemChanged(QtBrowserItem *item);
    void slotCurrentTreeItemChanged(QTreeWidgetItem *newItem, QTreeWidgetItem *);

    QTreeWidgetItem *editedItem() const;

private:
    void updateItem(QTreeWidgetItem *item);

    QMap<QtBrowserItem *, QTreeWidgetItem *> m_indexToItem;
    QMap<QTreeWidgetItem *, QtBrowserItem *> m_itemToIndex;

    QMap<QtBrowserItem *, QColor> m_indexToBackgroundColor;

    QtPropertyEditorView *m_treeWidget;

    bool m_headerVisible;
    QtTreePropertyBrowser::ResizeMode m_resizeMode;
    class QtPropertyEditorDelegate *m_delegate;
    bool m_markPropertiesWithoutValue;
    bool m_browserChangedBlocked;
    QIcon m_expandIcon;
};

// ------------ QtPropertyEditorView
class QtPropertyEditorView : public QTreeWidget
{
    Q_OBJECT
public:
    QtPropertyEditorView(QWidget *parent = 0);

    void setEditorPrivate(QtTreePropertyBrowserPrivate *editorPrivate)
        { m_editorPrivate = editorPrivate; }

    QTreeWidgetItem *indexToItem(const QModelIndex &index) const
        { return itemFromIndex(index); }

protected:
    void mouseMoveEvent(QMouseEvent *event) override;
    void leaveEvent(QEvent *event) override;
    void keyPressEvent(QKeyEvent *event);
    void mousePressEvent(QMouseEvent *event);
    void drawRow(QPainter *painter, const QStyleOptionViewItem &option, const QModelIndex &index) const;

Q_SIGNALS:
    void hoverPropertyChanged(QtBrowserItem *item);
private:
    QtTreePropertyBrowserPrivate *m_editorPrivate;
    QModelIndex current;
};

QtPropertyEditorView::QtPropertyEditorView(QWidget *parent) :
    QTreeWidget(parent),
    m_editorPrivate(0)
{
    connect(header(), SIGNAL(sectionDoubleClicked(int)), this, SLOT(resizeColumnToContents(int)));
}

void QtPropertyEditorView::drawRow(QPainter *painter, const QStyleOptionViewItem &option, const QModelIndex &index) const
{
    QStyleOptionViewItem opt = option;
    bool hasValue = true;
    if (m_editorPrivate) {
        QtProperty *property = m_editorPrivate->indexToProperty(index);
        if (property)
            hasValue = property->hasValue();
    }
    if (!hasValue && m_editorPrivate->markPropertiesWithoutValue()) {
        const QColor c = option.palette.color(QPalette::Dark);
        painter->fillRect(option.rect, c);
        opt.palette.setColor(QPalette::AlternateBase, c);
    } else {
        const QColor c = m_editorPrivate->calculatedBackgroundColor(m_editorPrivate->indexToBrowserItem(index));
        if (c.isValid()) {
            painter->fillRect(option.rect, c);
            opt.palette.setColor(QPalette::AlternateBase, c.lighter(112));
        }
    }
    QTreeWidget::drawRow(painter, opt, index);
    QColor color = static_cast<QRgb>(QApplication::style()->styleHint(QStyle::SH_Table_GridLineColor, &opt));
    painter->save();
    painter->setPen(QPen(color));
    painter->drawLine(opt.rect.x(), opt.rect.bottom(), opt.rect.right(), opt.rect.bottom());
    painter->restore();
}

void QtPropertyEditorView::mouseMoveEvent(QMouseEvent *event)
{
    QModelIndex index = indexAt(event->pos());
    if (index!=current) {
        current = index;        
        Q_EMIT hoverPropertyChanged(m_editorPrivate->indexToBrowserItem(index));
    }
    QTreeWidget::mouseMoveEvent(event);
}

void QtPropertyEditorView::leaveEvent(QEvent *event)
{
    Q_EMIT hoverPropertyChanged(nullptr);
}

void QtPropertyEditorView::keyPressEvent(QKeyEvent *event)
{
    switch (event->key()) {
    case Qt::Key_Return:
    case Qt::Key_Enter:
    case Qt::Key_Space: // Trigger Edit
        if (!m_editorPrivate->editedItem())
            if (const QTreeWidgetItem *item = currentItem())
                if (item->columnCount() >= 2 && ((item->flags() & (Qt::ItemIsEditable | Qt::ItemIsEnabled)) == (Qt::ItemIsEditable | Qt::ItemIsEnabled))) {
                    event->accept();
                    // If the current position is at column 0, move to 1.
                    QModelIndex index = currentIndex();
                    if (index.column() == 0) {
                        index = index.sibling(index.row(), 1);
                        setCurrentIndex(index);
                    }
                    edit(index);
                    return;
                }
        break;
    default:
        break;
    }
    QTreeWidget::keyPressEvent(event);
}

void QtPropertyEditorView::mousePressEvent(QMouseEvent *event)
{
    QTreeWidget::mousePressEvent(event);
    QTreeWidgetItem *item = itemAt(event->pos());

    if (item) {
        if ((item != m_editorPrivate->editedItem()) && (event->button() == Qt::LeftButton)
                && (header()->logicalIndexAt(event->pos().x()) == 1)
                && ((item->flags() & (Qt::ItemIsEditable | Qt::ItemIsEnabled)) == (Qt::ItemIsEditable | Qt::ItemIsEnabled))) {
            editItem(item, 1);
        } else if (!m_editorPrivate->hasValue(item) && m_editorPrivate->markPropertiesWithoutValue() && !rootIsDecorated()) {
            if (event->pos().x() + header()->offset() < 20)
                item->setExpanded(!item->isExpanded());
        }
    }
}

// ------------ QtPropertyEditorDelegate
class QtPropertyEditorDelegate : public QItemDelegate
{
    Q_OBJECT
public:
    QtPropertyEditorDelegate(QObject *parent = 0)
        : QItemDelegate(parent), m_editorPrivate(0), m_editedItem(0), m_editedWidget(0), m_disablePainting(false)
        {}

    void setEditorPrivate(QtTreePropertyBrowserPrivate *editorPrivate)
        { m_editorPrivate = editorPrivate; }

    QWidget *createEditor(QWidget *parent, const QStyleOptionViewItem &option,
            const QModelIndex &index) const;

    void updateEditorGeometry(QWidget *editor, const QStyleOptionViewItem &option,
            const QModelIndex &index) const;

    void paint(QPainter *painter, const QStyleOptionViewItem &option,
            const QModelIndex &index) const;

    QSize sizeHint(const QStyleOptionViewItem &option, const QModelIndex &index) const;

    void setModelData(QWidget *, QAbstractItemModel *,
            const QModelIndex &) const {}

    void setEditorData(QWidget *, const QModelIndex &) const {}

    bool eventFilter(QObject *object, QEvent *event);
    void closeEditor(QtProperty *property);

    QTreeWidgetItem *editedItem() const { return m_editedItem; }

protected:

    void drawDecoration(QPainter *painter, const QStyleOptionViewItem &option,
            const QRect &rect, const QPixmap &pixmap) const;
    void drawDisplay(QPainter *painter, const QStyleOptionViewItem &option,
            const QRect &rect, const QString &text) const;

private slots:
    void slotEditorDestroyed(QObject *object);

private:
    int indentation(const QModelIndex &index) const;

    typedef QMap<QWidget *, QtProperty *> EditorToPropertyMap;
    mutable EditorToPropertyMap m_editorToProperty;

    typedef QMap<QtProperty *, QWidget *> PropertyToEditorMap;
    mutable PropertyToEditorMap m_propertyToEditor;
    QtTreePropertyBrowserPrivate *m_editorPrivate;
    mutable QTreeWidgetItem *m_editedItem;
    mutable QWidget *m_editedWidget;
    mutable bool m_disablePainting;
};

int QtPropertyEditorDelegate::indentation(const QModelIndex &index) const
{
    if (!m_editorPrivate)
        return 0;

    QTreeWidgetItem *item = m_editorPrivate->indexToItem(index);
    int indent = 0;
    while (item->parent()) {
        item = item->parent();
        ++indent;
    }
    if (m_editorPrivate->treeWidget()->rootIsDecorated())
        ++indent;
    return indent * m_editorPrivate->treeWidget()->indentation();
}

void QtPropertyEditorDelegate::slotEditorDestroyed(QObject *object)
{
    if (QWidget *w = qobject_cast<QWidget *>(object)) {
        const EditorToPropertyMap::iterator it = m_editorToProperty.find(w);
        if (it != m_editorToProperty.end()) {
            m_propertyToEditor.remove(it.value());
            m_editorToProperty.erase(it);
        }
        if (m_editedWidget == w) {
            m_editedWidget = 0;
            m_editedItem = 0;
        }
    }
}

void QtPropertyEditorDelegate::closeEditor(QtProperty *property)
{
    if (QWidget *w = m_propertyToEditor.value(property, 0))
        w->deleteLater();
}

QWidget *QtPropertyEditorDelegate::createEditor(QWidget *parent,
        const QStyleOptionViewItem &, const QModelIndex &index) const
{
    if (index.column() == 1 && m_editorPrivate) {
        QtProperty *property = m_editorPrivate->indexToProperty(index);
        QTreeWidgetItem *item = m_editorPrivate->indexToItem(index);
        if (property && item && (item->flags() & Qt::ItemIsEnabled)) {
            QWidget *editor = m_editorPrivate->createEditor(property, parent);
            if (editor) {
                editor->setAutoFillBackground(true);
                editor->installEventFilter(const_cast<QtPropertyEditorDelegate *>(this));
                connect(editor, SIGNAL(destroyed(QObject *)), this, SLOT(slotEditorDestroyed(QObject *)));
                m_propertyToEditor[property] = editor;
                m_editorToProperty[editor] = property;
                m_editedItem = item;
                m_editedWidget = editor;
            }
            return editor;
        }
    }
    return 0;
}

void QtPropertyEditorDelegate::updateEditorGeometry(QWidget *editor,
        const QStyleOptionViewItem &option, const QModelIndex &index) const
{
    Q_UNUSED(index)
    editor->setGeometry(option.rect.adjusted(0, 0, 0, -1));
}

void QtPropertyEditorDelegate::paint(QPainter *painter, const QStyleOptionViewItem &option,
            const QModelIndex &index) const
{
    bool hasValue = true;
    if (m_editorPrivate) {
        QtProperty *property = m_editorPrivate->indexToProperty(index);
        if (property)
            hasValue = property->hasValue();
    }
    QStyleOptionViewItem opt = option;
    if ((m_editorPrivate && index.column() == 0) || !hasValue) {
        QtProperty *property = m_editorPrivate->indexToProperty(index);
        if (property && property->isModified()) {
            opt.font.setBold(true);
            opt.fontMetrics = QFontMetrics(opt.font);
        }
    }
    QColor c;
    if (!hasValue && m_editorPrivate->markPropertiesWithoutValue()) {
        c = opt.palette.color(QPalette::Dark);
        opt.palette.setColor(QPalette::Text, opt.palette.color(QPalette::BrightText));
    } else {
        c = m_editorPrivate->calculatedBackgroundColor(m_editorPrivate->indexToBrowserItem(index));
        if (c.isValid() && (opt.features & QStyleOptionViewItemV2::Alternate))
            c = c.lighter(112);
    }
    if (c.isValid())
        painter->fillRect(option.rect, c);
    opt.state &= ~QStyle::State_HasFocus;
    if (index.column() == 1) {
        QTreeWidgetItem *item = m_editorPrivate->indexToItem(index);
        if (m_editedItem && m_editedItem == item)
            m_disablePainting = true;
        }
    QItemDelegate::paint(painter, opt, index);
    m_disablePainting = false;

    opt.palette.setCurrentColorGroup(QPalette::Active);
    QColor color = static_cast<QRgb>(QApplication::style()->styleHint(QStyle::SH_Table_GridLineColor, &opt));
    painter->save();
    painter->setPen(QPen(color));
    if (!m_editorPrivate || (!m_editorPrivate->lastColumn(index.column()) && hasValue)) {
        int right = (option.direction == Qt::LeftToRight) ? option.rect.right() : option.rect.left();
        painter->drawLine(right, option.rect.y(), right, option.rect.bottom());
    }
    painter->restore();
}

void QtPropertyEditorDelegate::drawDecoration(QPainter *painter, const QStyleOptionViewItem &option,
            const QRect &rect, const QPixmap &pixmap) const
{
    if (m_disablePainting)
        return;

    QItemDelegate::drawDecoration(painter, option, rect, pixmap);
}

void QtPropertyEditorDelegate::drawDisplay(QPainter *painter, const QStyleOptionViewItem &option,
            const QRect &rect, const QString &text) const
{
    if (m_disablePainting)
        return;

    QItemDelegate::drawDisplay(painter, option, rect, text);
}

QSize QtPropertyEditorDelegate::sizeHint(const QStyleOptionViewItem &option,
            const QModelIndex &index) const
{
    return QItemDelegate::sizeHint(option, index) + QSize(3, 4);
}

bool QtPropertyEditorDelegate::eventFilter(QObject *object, QEvent *event)
{
    if (event->type() == QEvent::FocusOut) {
        QFocusEvent *fe = static_cast<QFocusEvent *>(event);
        if (fe->reason() == Qt::ActiveWindowFocusReason)
            return false;
    }
    return QItemDelegate::eventFilter(object, event);
}

//  -------- QtTreePropertyBrowserPrivate implementation
QtTreePropertyBrowserPrivate::QtTreePropertyBrowserPrivate() :
    m_treeWidget(0),
    m_headerVisible(true),
    m_resizeMode(QtTreePropertyBrowser::Stretch),
    m_delegate(0),
    m_markPropertiesWithoutValue(false),
    m_browserChangedBlocked(false)
{
}

// Draw an icon indicating opened/closing branches
static QIcon drawIndicatorIcon(const QPalette &palette, QStyle *style)
{
    QPixmap pix(14, 14);
    pix.fill(Qt::transparent);
    QStyleOption branchOption;
    QRect r(QPoint(0, 0), pix.size());
    branchOption.rect = QRect(2, 2, 9, 9); // ### hardcoded in qcommonstyle.cpp
    branchOption.palette = palette;
    branchOption.state = QStyle::State_Children;

    QPainter p;
    // Draw closed state
    p.begin(&pix);
    style->drawPrimitive(QStyle::PE_IndicatorBranch, &branchOption, &p);
    p.end();
    QIcon rc = pix;
    rc.addPixmap(pix, QIcon::Selected, QIcon::Off);
    // Draw opened state
    branchOption.state |= QStyle::State_Open;
    pix.fill(Qt::transparent);
    p.begin(&pix);
    style->drawPrimitive(QStyle::PE_IndicatorBranch, &branchOption, &p);
    p.end();

    rc.addPixmap(pix, QIcon::Normal, QIcon::On);
    rc.addPixmap(pix, QIcon::Selected, QIcon::On);
    return rc;
}

void QtTreePropertyBrowserPrivate::init(QWidget *parent)
{
    QHBoxLayout *layout = new QHBoxLayout(parent);
    layout->setMargin(0);
    m_treeWidget = new QtPropertyEditorView(parent);
    m_treeWidget->setEditorPrivate(this);
    m_treeWidget->setIconSize(QSize(18, 18));
    layout->addWidget(m_treeWidget);

    m_treeWidget->setColumnCount(2);
    QStringList labels;
    labels.append(QApplication::translate("QtTreePropertyBrowser", "Property", 0));
    labels.append(QApplication::translate("QtTreePropertyBrowser", "Value", 0));
    m_treeWidget->setHeaderLabels(labels);
    m_treeWidget->setAlternatingRowColors(true);
    m_treeWidget->setEditTriggers(QAbstractItemView::EditKeyPressed);
    m_delegate = new QtPropertyEditorDelegate(parent);
    m_delegate->setEditorPrivate(this);
    m_treeWidget->setItemDelegate(m_delegate);
    m_treeWidget->header()->setSectionsMovable(false);
    m_treeWidget->header()->setSectionResizeMode(QHeaderView::Stretch);

    m_expandIcon = drawIndicatorIcon(q_ptr->palette(), q_ptr->style());

    QObject::connect(m_treeWidget, SIGNAL(collapsed(const QModelIndex &)), q_ptr, SLOT(slotCollapsed(const QModelIndex &)));
    QObject::connect(m_treeWidget, SIGNAL(expanded(const QModelIndex &)), q_ptr, SLOT(slotExpanded(const QModelIndex &)));
    QObject::connect(m_treeWidget, SIGNAL(currentItemChanged(QTreeWidgetItem*,QTreeWidgetItem*)), q_ptr, SLOT(slotCurrentTreeItemChanged(QTreeWidgetItem*,QTreeWidgetItem*)));
    QObject::connect(m_treeWidget, SIGNAL(hoverPropertyChanged(QtBrowserItem *)), q_ptr, SLOT(onHoverPropertyChanged(QtBrowserItem *)));
}

QtBrowserItem *QtTreePropertyBrowserPrivate::currentItem() const
{
    if (QTreeWidgetItem *treeItem = m_treeWidget->currentItem())
        return m_itemToIndex.value(treeItem);
    return 0;
}

void QtTreePropertyBrowserPrivate::setCurrentItem(QtBrowserItem *browserItem, bool block)
{
    const bool blocked = block ? m_treeWidget->blockSignals(true) : false;
    if (browserItem == 0)
        m_treeWidget->setCurrentItem(0);
    else
        m_treeWidget->setCurrentItem(m_indexToItem.value(browserItem));
    if (block)
        m_treeWidget->blockSignals(blocked);
}

QtProperty *QtTreePropertyBrowserPrivate::indexToProperty(const QModelIndex &index) const
{
    QTreeWidgetItem *item = m_treeWidget->indexToItem(index);
    QtBrowserItem *idx = m_itemToIndex.value(item);
    if (idx)
        return idx->property();
    return 0;
}

QtBrowserItem *QtTreePropertyBrowserPrivate::indexToBrowserItem(const QModelIndex &index) const
{
    QTreeWidgetItem *item = m_treeWidget->indexToItem(index);
    return m_itemToIndex.value(item);
}

QTreeWidgetItem *QtTreePropertyBrowserPrivate::indexToItem(const QModelIndex &index) const
{
    return m_treeWidget->indexToItem(index);
}

bool QtTreePropertyBrowserPrivate::lastColumn(int column) const
{
    return m_treeWidget->header()->visualIndex(column) == m_treeWidget->columnCount() - 1;
}

void QtTreePropertyBrowserPrivate::disableItem(QTreeWidgetItem *item) const
{
    Qt::ItemFlags flags = item->flags();
    if (flags & Qt::ItemIsEnabled) {
        flags &= ~Qt::ItemIsEnabled;
        item->setFlags(flags);
        m_delegate->closeEditor(m_itemToIndex[item]->property());
        const int childCount = item->childCount();
        for (int i = 0; i < childCount; i++) {
            QTreeWidgetItem *child = item->child(i);
            disableItem(child);
        }
    }
}

void QtTreePropertyBrowserPrivate::enableItem(QTreeWidgetItem *item) const
{
    Qt::ItemFlags flags = item->flags();
    flags |= Qt::ItemIsEnabled;
    item->setFlags(flags);
    const int childCount = item->childCount();
    for (int i = 0; i < childCount; i++) {
        QTreeWidgetItem *child = item->child(i);
        QtProperty *property = m_itemToIndex[child]->property();
        if (property->isEnabled()) {
            enableItem(child);
        }
    }
}

bool QtTreePropertyBrowserPrivate::hasValue(QTreeWidgetItem *item) const
{
    QtBrowserItem *browserItem = m_itemToIndex.value(item);
    if (browserItem)
        return browserItem->property()->hasValue();
    return false;
}

void QtTreePropertyBrowserPrivate::propertyInserted(QtBrowserItem *index, QtBrowserItem *afterIndex)
{
    QTreeWidgetItem *afterItem = m_indexToItem.value(afterIndex);
    QTreeWidgetItem *parentItem = m_indexToItem.value(index->parent());

    QTreeWidgetItem *newItem = 0;
    if (parentItem) {
        newItem = new QTreeWidgetItem(parentItem, afterItem);
    } else {
        newItem = new QTreeWidgetItem(m_treeWidget, afterItem);
    }
    m_itemToIndex[newItem] = index;
    m_indexToItem[index] = newItem;

    newItem->setFlags(newItem->flags() | Qt::ItemIsEditable);
    m_treeWidget->setItemExpanded(newItem, true);

    updateItem(newItem);
}

void QtTreePropertyBrowserPrivate::propertyRemoved(QtBrowserItem *index)
{
    QTreeWidgetItem *item = m_indexToItem.value(index);

    if (m_treeWidget->currentItem() == item) {
        m_treeWidget->setCurrentItem(0);
    }

    delete item;

    m_indexToItem.remove(index);
    m_itemToIndex.remove(item);
    m_indexToBackgroundColor.remove(index);
}

void QtTreePropertyBrowserPrivate::propertyChanged(QtBrowserItem *index)
{
    QTreeWidgetItem *item = m_indexToItem.value(index);

    updateItem(item);
}

void QtTreePropertyBrowserPrivate::updateItem(QTreeWidgetItem *item)
{
    QtProperty *property = m_itemToIndex[item]->property();
    QIcon expandIcon;
    if (property->hasValue()) {
        QString toolTip = property->toolTip();
        if (toolTip.isEmpty())
            toolTip = property->valueText();
        item->setToolTip(1, toolTip);
        item->setIcon(1, property->valueIcon());
        item->setText(1, property->valueText());
    } else if (markPropertiesWithoutValue() && !m_treeWidget->rootIsDecorated()) {
        expandIcon = m_expandIcon;
    }
    item->setIcon(0, expandIcon);
    item->setFirstColumnSpanned(!property->hasValue());
    item->setToolTip(0, property->propertyName());
    item->setStatusTip(0, property->statusTip());
    item->setWhatsThis(0, property->whatsThis());
    item->setText(0, property->propertyName());
    bool wasEnabled = item->flags() & Qt::ItemIsEnabled;
    bool isEnabled = wasEnabled;
    if (property->isEnabled()) {
        QTreeWidgetItem *parent = item->parent();
        if (!parent || (parent->flags() & Qt::ItemIsEnabled))
            isEnabled = true;
        else
            isEnabled = false;
    } else {
        isEnabled = false;
    }
    if (wasEnabled != isEnabled) {
        if (isEnabled)
            enableItem(item);
        else
            disableItem(item);
    }
    if (property->isSelectable()) {
        item->setFlags(item->flags() | Qt::ItemIsSelectable);
    } else {
        item->setFlags(item->flags() & ~Qt::ItemIsSelectable);
    }
    m_treeWidget->viewport()->update();
}

QColor QtTreePropertyBrowserPrivate::calculatedBackgroundColor(QtBrowserItem *item) const
{
    QtBrowserItem *i = item;
    const QMap<QtBrowserItem *, QColor>::const_iterator itEnd = m_indexToBackgroundColor.constEnd();
    while (i) {
        QMap<QtBrowserItem *, QColor>::const_iterator it = m_indexToBackgroundColor.constFind(i);
        if (it != itEnd)
            return it.value();
        i = i->parent();
    }
    return QColor();
}

void QtTreePropertyBrowserPrivate::slotCollapsed(const QModelIndex &index)
{
    QTreeWidgetItem *item = indexToItem(index);
    QtBrowserItem *idx = m_itemToIndex.value(item);
    if (item)
        emit q_ptr->collapsed(idx);
}

void QtTreePropertyBrowserPrivate::slotExpanded(const QModelIndex &index)
{
    QTreeWidgetItem *item = indexToItem(index);
    QtBrowserItem *idx = m_itemToIndex.value(item);
    if (item)
        emit q_ptr->expanded(idx);
}

void QtTreePropertyBrowserPrivate::onHoverPropertyChanged(QtBrowserItem *item)
{
    emit q_ptr->hoverPropertyChanged(item);
}


void QtTreePropertyBrowserPrivate::slotCurrentBrowserItemChanged(QtBrowserItem *item)
{
    if (!m_browserChangedBlocked && item != currentItem())
        setCurrentItem(item, true);
}

void QtTreePropertyBrowserPrivate::slotCurrentTreeItemChanged(QTreeWidgetItem *newItem, QTreeWidgetItem *)
{
    QtBrowserItem *browserItem = newItem ? m_itemToIndex.value(newItem) : 0;
    m_browserChangedBlocked = true;
    q_ptr->setCurrentItem(browserItem);
    m_browserChangedBlocked = false;
}

QTreeWidgetItem *QtTreePropertyBrowserPrivate::editedItem() const
{
    return m_delegate->editedItem();
}

void QtTreePropertyBrowserPrivate::editItem(QtBrowserItem *browserItem)
{
    if (QTreeWidgetItem *treeItem = m_indexToItem.value(browserItem, 0)) {
        m_treeWidget->setCurrentItem (treeItem, 1);
        m_treeWidget->editItem(treeItem, 1);
    }
}

/*!
    \class QtTreePropertyBrowser

    \brief The QtTreePropertyBrowser class provides QTreeWidget based
    property browser.

    A property browser is a widget that enables the user to edit a
    given set of properties. Each property is represented by a label
    specifying the property's name, and an editing widget (e.g. a line
    edit or a combobox) holding its value. A property can have zero or
    more subproperties.

    QtTreePropertyBrowser provides a tree based view for all nested
    properties, i.e. properties that have subproperties can be in an
    expanded (subproperties are visible) or collapsed (subproperties
    are hidden) state. For example:

    \image qttreepropertybrowser.png

    Use the QtAbstractPropertyBrowser API to add, insert and remove
    properties from an instance of the QtTreePropertyBrowser class.
    The properties themselves are created and managed by
    implementations of the QtAbstractPropertyManager class.

    \sa QtGroupBoxPropertyBrowser, QtAbstractPropertyBrowser
*/

/*!
    \fn void QtTreePropertyBrowser::collapsed(QtBrowserItem *item)

    This signal is emitted when the \a item is collapsed.

    \sa expanded(), setExpanded()
*/

/*!
    \fn void QtTreePropertyBrowser::expanded(QtBrowserItem *item)

    This signal is emitted when the \a item is expanded.

    \sa collapsed(), setExpanded()
*/

/*!
    Creates a property browser with the given \a parent.
*/
QtTreePropertyBrowser::QtTreePropertyBrowser(QWidget *parent)
    : QtAbstractPropertyBrowser(parent)
{
    d_ptr = new QtTreePropertyBrowserPrivate;
    d_ptr->q_ptr = this;

    d_ptr->init(this);
    connect(this, SIGNAL(currentItemChanged(QtBrowserItem*)), this, SLOT(slotCurrentBrowserItemChanged(QtBrowserItem*)));
}

/*!
    Destroys this property browser.

    Note that the properties that were inserted into this browser are
    \e not destroyed since they may still be used in other
    browsers. The properties are owned by the manager that created
    them.

    \sa QtProperty, QtAbstractPropertyManager
*/
QtTreePropertyBrowser::~QtTreePropertyBrowser()
{
    delete d_ptr;
}

/*!
    \property QtTreePropertyBrowser::indentation
    \brief indentation of the items in the tree view.
*/
int QtTreePropertyBrowser::indentation() const
{
    return d_ptr->m_treeWidget->indentation();
}

void QtTreePropertyBrowser::setIndentation(int i)
{
    d_ptr->m_treeWidget->setIndentation(i);
}

/*!
  \property QtTreePropertyBrowser::rootIsDecorated
  \brief whether to show controls for expanding and collapsing root items.
*/
bool QtTreePropertyBrowser::rootIsDecorated() const
{
    return d_ptr->m_treeWidget->rootIsDecorated();
}

void QtTreePropertyBrowser::setRootIsDecorated(bool show)
{
    d_ptr->m_treeWidget->setRootIsDecorated(show);
    QMapIterator<QTreeWidgetItem *, QtBrowserItem *> it(d_ptr->m_itemToIndex);
    while (it.hasNext()) {
        QtProperty *property = it.next().value()->property();
        if (!property->hasValue())
            d_ptr->updateItem(it.key());
    }
}

/*!
  \property QtTreePropertyBrowser::alternatingRowColors
  \brief whether to draw the background using alternating colors.
  By default this property is set to true.
*/
bool QtTreePropertyBrowser::alternatingRowColors() const
{
    return d_ptr->m_treeWidget->alternatingRowColors();
}

void QtTreePropertyBrowser::setAlternatingRowColors(bool enable)
{
    d_ptr->m_treeWidget->setAlternatingRowColors(enable);
    QMapIterator<QTreeWidgetItem *, QtBrowserItem *> it(d_ptr->m_itemToIndex);
}

/*!
  \property QtTreePropertyBrowser::headerVisible
  \brief whether to show the header.
*/
bool QtTreePropertyBrowser::isHeaderVisible() const
{
    return d_ptr->m_headerVisible;
}

void QtTreePropertyBrowser::setHeaderVisible(bool visible)
{
    if (d_ptr->m_headerVisible == visible)
        return;

    d_ptr->m_headerVisible = visible;
    d_ptr->m_treeWidget->header()->setVisible(visible);
}

/*!
  \enum QtTreePropertyBrowser::ResizeMode

  The resize mode specifies the behavior of the header sections.

  \value Interactive The user can resize the sections.
  The sections can also be resized programmatically using setSplitterPosition().

  \value Fixed The user cannot resize the section.
  The section can only be resized programmatically using setSplitterPosition().

  \value Stretch QHeaderView will automatically resize the section to fill the available space.
  The size cannot be changed by the user or programmatically.

  \value ResizeToContents QHeaderView will automatically resize the section to its optimal
  size based on the contents of the entire column.
  The size cannot be changed by the user or programmatically.

  \sa setResizeMode()
*/

/*!
    \property QtTreePropertyBrowser::resizeMode
    \brief the resize mode of setions in the header.
*/

QtTreePropertyBrowser::ResizeMode QtTreePropertyBrowser::resizeMode() const
{
    return d_ptr->m_resizeMode;
}

void QtTreePropertyBrowser::setResizeMode(QtTreePropertyBrowser::ResizeMode mode)
{
    if (d_ptr->m_resizeMode == mode)
        return;

    d_ptr->m_resizeMode = mode;
    QHeaderView::ResizeMode m = QHeaderView::Stretch;
    switch (mode) {
        case QtTreePropertyBrowser::Interactive:      m = QHeaderView::Interactive;      break;
        case QtTreePropertyBrowser::Fixed:            m = QHeaderView::Fixed;            break;
        case QtTreePropertyBrowser::ResizeToContents: m = QHeaderView::ResizeToContents; break;
        case QtTreePropertyBrowser::Stretch:
        default:                                      m = QHeaderView::Stretch;          break;
    }
    d_ptr->m_treeWidget->header()->setSectionResizeMode(m);
}

/*!
    \property QtTreePropertyBrowser::splitterPosition
    \brief the position of the splitter between the colunms.
*/

int QtTreePropertyBrowser::splitterPosition() const
{
    return d_ptr->m_treeWidget->header()->sectionSize(0);
}

void QtTreePropertyBrowser::setSplitterPosition(int position)
{
    d_ptr->m_treeWidget->header()->resizeSection(0, position);
}

/*!
    Sets the \a item to either collapse or expanded, depending on the value of \a expanded.

    \sa isExpanded(), expanded(), collapsed()
*/

void QtTreePropertyBrowser::setExpanded(QtBrowserItem *item, bool expanded)
{
    QTreeWidgetItem *treeItem = d_ptr->m_indexToItem.value(item);
    if (treeItem)
        treeItem->setExpanded(expanded);
}

/*!
    Returns true if the \a item is expanded; otherwise returns false.

    \sa setExpanded()
*/

bool QtTreePropertyBrowser::isExpanded(QtBrowserItem *item) const
{
    QTreeWidgetItem *treeItem = d_ptr->m_indexToItem.value(item);
    if (treeItem)
        return treeItem->isExpanded();
    return false;
}

/*!
    Returns true if the \a item is visible; otherwise returns false.

    \sa setItemVisible()
    \since 4.5
*/

bool QtTreePropertyBrowser::isItemVisible(QtBrowserItem *item) const
{
    if (const QTreeWidgetItem *treeItem = d_ptr->m_indexToItem.value(item))
        return !treeItem->isHidden();
    return false;
}

/*!
    Sets the \a item to be visible, depending on the value of \a visible.

   \sa isItemVisible()
   \since 4.5
*/

void QtTreePropertyBrowser::setItemVisible(QtBrowserItem *item, bool visible)
{
    if (QTreeWidgetItem *treeItem = d_ptr->m_indexToItem.value(item))
        treeItem->setHidden(!visible);
}

/*!
    Sets the \a item's background color to \a color. Note that while item's background
    is rendered every second row is being drawn with alternate color (which is a bit lighter than items \a color)

    \sa backgroundColor(), calculatedBackgroundColor()
*/

void QtTreePropertyBrowser::setBackgroundColor(QtBrowserItem *item, const QColor &color)
{
    if (!d_ptr->m_indexToItem.contains(item))
        return;
    if (color.isValid())
        d_ptr->m_indexToBackgroundColor[item] = color;
    else
        d_ptr->m_indexToBackgroundColor.remove(item);
    d_ptr->m_treeWidget->viewport()->update();
}

/*!
    Returns the \a item's color. If there is no color set for item it returns invalid color.

    \sa calculatedBackgroundColor(), setBackgroundColor()
*/

QColor QtTreePropertyBrowser::backgroundColor(QtBrowserItem *item) const
{
    return d_ptr->m_indexToBackgroundColor.value(item);
}

/*!
    Returns the \a item's color. If there is no color set for item it returns parent \a item's
    color (if there is no color set for parent it returns grandparent's color and so on). In case
    the color is not set for \a item and it's top level item it returns invalid color.

    \sa backgroundColor(), setBackgroundColor()
*/

QColor QtTreePropertyBrowser::calculatedBackgroundColor(QtBrowserItem *item) const
{
    return d_ptr->calculatedBackgroundColor(item);
}

/*!
    \property QtTreePropertyBrowser::propertiesWithoutValueMarked
    \brief whether to enable or disable marking properties without value.

    When marking is enabled the item's background is rendered in dark color and item's
    foreground is rendered with light color.

    \sa propertiesWithoutValueMarked()
*/
void QtTreePropertyBrowser::setPropertiesWithoutValueMarked(bool mark)
{
    if (d_ptr->m_markPropertiesWithoutValue == mark)
        return;

    d_ptr->m_markPropertiesWithoutValue = mark;
    QMapIterator<QTreeWidgetItem *, QtBrowserItem *> it(d_ptr->m_itemToIndex);
    while (it.hasNext()) {
        QtProperty *property = it.next().value()->property();
        if (!property->hasValue())
            d_ptr->updateItem(it.key());
    }
    d_ptr->m_treeWidget->viewport()->update();
}

bool QtTreePropertyBrowser::propertiesWithoutValueMarked() const
{
    return d_ptr->m_markPropertiesWithoutValue;
}

/*!
    \reimp
*/
void QtTreePropertyBrowser::itemInserted(QtBrowserItem *item, QtBrowserItem *afterItem)
{
    d_ptr->propertyInserted(item, afterItem);
}

/*!
    \reimp
*/
void QtTreePropertyBrowser::itemRemoved(QtBrowserItem *item)
{
    d_ptr->propertyRemoved(item);
}

/*!
    \reimp
*/
void QtTreePropertyBrowser::itemChanged(QtBrowserItem *item)
{
    d_ptr->propertyChanged(item);
}

/*!
    Sets the current item to \a item and opens the relevant editor for it.
*/
void QtTreePropertyBrowser::editItem(QtBrowserItem *item)
{
    d_ptr->editItem(item);
}

QTreeWidget *QtTreePropertyBrowser::treeWidget() const
{
    return d_ptr->treeWidget();
}

QtBrowserItem *QtTreePropertyBrowser::itemToBrowserItem(QTreeWidgetItem *item)
{
    return d_ptr->itemToBrowserItem(item);
}

#if QT_VERSION >= 0x040400
QT_END_NAMESPACE
#endif

#include "moc_qttreepropertybrowser.cpp"
#include "qttreepropertybrowser.moc"