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/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/***************************************************************************
* paintertest.cc
*
* Fri Nov 29 18:08:57 CET 2013
* Copyright 2013 Bent Bisballe Nyeng
* deva@aasimon.org
****************************************************************************/
/*
* This file is part of DrumGizmo.
*
* DrumGizmo 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.
*
* DrumGizmo 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 DrumGizmo; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
*/
#include <uunit.h>
#include <dggui/canvas.h>
#include <dggui/painter.h>
#include <dggui/image.h>
#include <dggui/font.h>
class TestColour
{
public:
TestColour(std::uint8_t r, std::uint8_t g, std::uint8_t b, std::uint8_t a)
: colour(r, g, b, a) {}
TestColour(const GUI::Colour& colour)
: colour(colour) {}
bool operator!=(const TestColour& other) const
{
return
colour.red() != other.colour.red() ||
colour.green() != other.colour.green() ||
colour.blue() != other.colour.blue() ||
colour.alpha() != other.colour.alpha()
;
}
const GUI::Colour colour;
};
std::ostream& operator<<(std::ostream& stream, const TestColour& col)
{
stream << "(" <<
static_cast<int>(col.colour.red()) << ", " <<
static_cast<int>(col.colour.green()) << ", " <<
static_cast<int>(col.colour.blue()) << ", " <<
static_cast<int>(col.colour.alpha()) << ")";
return stream;
}
class TestableCanvas
: public GUI::Canvas
{
public:
TestableCanvas(std::size_t width, std::size_t height)
: pixbuf(width, height)
{}
GUI::PixelBufferAlpha& getPixelBuffer() override
{
return pixbuf;
}
private:
GUI::PixelBufferAlpha pixbuf;
};
class TestImage
: public GUI::Image
{
public:
TestImage(std::uint8_t width, std::uint8_t height, bool alpha)
: GUI::Image(":resources/logo.png") // just load some default image
{
_width = width;
_height = height;
has_alpha = alpha;
image_data.resize(_width * _height);
image_data_raw.resize(_width * _height);
// Store x and y coordinates as red and green colour components
for(std::uint8_t x = 0; x < _width; ++x)
{
for(std::uint8_t y = 0; y < _height; ++y)
{
image_data[x + _width * y] = GUI::Colour(x, y, 0, alpha ? 128 : 255);
image_data_raw[4 * (x + _width * y) + 0] = x;
image_data_raw[4 * (x + _width * y) + 1] = y;
image_data_raw[4 * (x + _width * y) + 2] = 0;
image_data_raw[4 * (x + _width * y) + 3] = alpha ? 128 : 255;
}
}
valid = true;
}
};
class PainterTest
: public uUnit
{
public:
PainterTest()
{
uUNIT_TEST(PainterTest::testDrawImage);
uUNIT_TEST(PainterTest::testDrawText);
uUNIT_TEST(PainterTest::testClipping);
}
void testDrawImage()
{
// Success criterion is simply to not assert in the drawing routines...
GUI::Image image(":resources/logo.png");
{ // Image fits in pixelbuffer
TestableCanvas canvas(image.width(), image.height());
GUI::Painter painter(canvas);
painter.drawImage(0, 0, image);
}
{ // Image fits in pixelbuffer, negative offset
TestableCanvas canvas(image.width(), image.height());
GUI::Painter painter(canvas);
painter.drawImage(-10, -10, image);
}
{ // Image too big for pixelbuffer
TestableCanvas canvas(image.width() / 2, image.height() / 2);
GUI::Painter painter(canvas);
painter.drawImage(0, 0, image);
}
{ // Image fits in pixelbuffer but offset so it is drawn over the edge.
TestableCanvas canvas(image.width(), image.height());
GUI::Painter painter(canvas);
painter.drawImage(10, 10, image);
}
{ // Image is offset to the right and down so nothing is to be drawn.
TestableCanvas canvas(image.width(), image.height());
GUI::Painter painter(canvas);
painter.drawImage(image.width() + 1,
image.height() + 1,
image);
}
{ // Image is offset to the left and up so nothing is to be drawn.
TestableCanvas canvas(image.width(), image.height());
GUI::Painter painter(canvas);
painter.drawImage(-1 * (image.width() + 1),
-1 * (image.height() + 1),
image);
}
}
void testDrawText()
{
// Success criterion is simply to not assert in the drawing routines...
GUI::Font font;
// a string with unicode characters
std::string someText = "Hello World - лæ Библиотека";
std::size_t width = font.textWidth(someText);
std::size_t height = font.textHeight(someText);
{ // Text fits in pixelbuffer
TestableCanvas canvas(width, height);
GUI::Painter painter(canvas);
painter.drawText(0, 0, font, someText);
}
{ // Text fits in pixelbuffer, negative offset
TestableCanvas canvas(width, height);
GUI::Painter painter(canvas);
painter.drawText(-10, -10, font, someText);
}
{ // Text too big for pixelbuffer
TestableCanvas canvas(width / 2, height / 2);
GUI::Painter painter(canvas);
painter.drawText(0, 0, font, someText);
}
{ // Text fits in pixelbuffer but offset so it is drawn over the edge.
TestableCanvas canvas(width, height);
GUI::Painter painter(canvas);
painter.drawText(10, 10, font, someText);
}
{ // Text is offset to the right and down so nothing is to be drawn.
TestableCanvas canvas(width, height);
GUI::Painter painter(canvas);
painter.drawText(width + 1,
height + 1,
font, someText);
}
{ // Text is offset to the left and up so nothing is to be drawn.
TestableCanvas canvas(width, height);
GUI::Painter painter(canvas);
painter.drawText(-1 * (width + 1),
-1 * (height + 1),
font, someText);
}
}
// Test rendering images outside the container is being clipped correctly.
void testClipping()
{
TestableCanvas canvas(100, 100);
GUI::Painter painter(canvas);
{ // Without alpha
TestImage image(16, 16, false);
painter.clear();
painter.drawImage(-10, -10, image);
auto& pixbuf = canvas.getPixelBuffer();
// Top left corner pixel should have the RGBA value (10, 10, 0, 255)
uUNIT_ASSERT_EQUAL(TestColour(10, 10, 0, 255),
TestColour(pixbuf.pixel(0, 0)));
}
{ // With alpha (different pipeline)
TestImage image(16, 16, true);
painter.clear();
painter.drawImage(-10, -10, image);
auto& pixbuf = canvas.getPixelBuffer();
// Top left corner pixel should have the RGBA value (10, 10, 0, 128)
uUNIT_ASSERT_EQUAL(TestColour(10, 10, 0, 128),
TestColour(pixbuf.pixel(0, 0)));
}
}
};
// Registers the fixture into the 'registry'
static PainterTest test;
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