# Copyright 2014 The Chromium OS Authors. All rights reserved.
# Use of this source code is governed by a BSD-style license that can be
# found in the LICENSE file.
"""Classes to do screen comparison."""
import logging
import os
import time
from PIL import ImageChops
class ScreenComparer(object):
"""A class to compare two screens.
Calling its member method compare() does the comparison.
"""
def __init__(self, capturer1, capturer2, output_dir, pixel_diff_margin,
wrong_pixels_margin, skip_if_diff_sizes=False):
"""Initializes the ScreenComparer objects.
@param capture1: The screen capturer object.
@param capture2: The screen capturer object.
@param output_dir: The directory for output images.
@param pixel_diff_margin: The margin for comparing a pixel. Only
if a pixel difference exceeds this margin, will treat as a wrong
pixel. Sets None means using default value by detecting
connector type.
@param wrong_pixels_margin: The percentage of margin for wrong pixels.
The value is in a closed interval [0.0, 1.0]. If the total
number of wrong pixels exceeds this margin, the check fails.
@param skip_if_diff_sizes: Skip the comparison if the image sizes are
different. Used in mirrored test as the internal and external
screens have different resolutions.
"""
# TODO(waihong): Support multiple capturers.
self._capturer1 = capturer1
self._capturer2 = capturer2
self._output_dir = output_dir
self._pixel_diff_margin = pixel_diff_margin
assert 0.0 <= wrong_pixels_margin <= 1.0
self._wrong_pixels_margin = wrong_pixels_margin
self._skip_if_diff_sizes = skip_if_diff_sizes
def compare(self):
"""Compares the screens.
@return: None if the check passes; otherwise, a string of error message.
"""
tags = [self._capturer1.TAG, self._capturer2.TAG]
images = [self._capturer1.capture(), self._capturer2.capture()]
if None in images:
message = ('Failed to capture the screen of %s.' %
tags[images.index(None)])
logging.error(message)
return message
# Sometimes the format of images got from X is not RGB,
# which may lead to ValueError raised by ImageChops.difference().
# So here we check the format before comparing them.
for i, image in enumerate(images):
if image.mode != 'RGB':
images[i] = image.convert('RGB')
message = 'Unexpected exception'
time_str = time.strftime('%H%M%S')
try:
# The size property is the resolution of the image.
if images[0].size != images[1].size:
message = ('Sizes of images %s and %s do not match: '
'%dx%d != %dx%d' %
(tuple(tags) + images[0].size + images[1].size))
if self._skip_if_diff_sizes:
logging.info(message)
return None
else:
logging.error(message)
return message
size = images[0].size[0] * images[0].size[1]
max_acceptable_wrong_pixels = int(self._wrong_pixels_margin * size)
logging.info('Comparing the images between %s and %s...', *tags)
diff_image = ImageChops.difference(*images)
histogram = diff_image.convert('L').histogram()
num_wrong_pixels = sum(histogram[self._pixel_diff_margin + 1:])
max_diff_value = max(filter(
lambda x: histogram[x], xrange(len(histogram))))
if num_wrong_pixels > 0:
logging.debug('Histogram of difference: %r', histogram)
prefix_str = '%s-%dx%d' % ((time_str,) + images[0].size)
message = ('Result of %s: total %d wrong pixels '
'(diff up to %d)' % (
prefix_str, num_wrong_pixels, max_diff_value))
if num_wrong_pixels > max_acceptable_wrong_pixels:
logging.error(message)
return message
message += (', within the acceptable range %d' %
max_acceptable_wrong_pixels)
logging.warning(message)
else:
logging.info('Result: all pixels match (within +/- %d)',
max_diff_value)
message = None
return None
finally:
if message is not None:
for i in (0, 1):
# Use time and image size as the filename prefix.
prefix_str = '%s-%dx%d' % ((time_str,) + images[i].size)
# TODO(waihong): Save to a better lossless format.
file_path = os.path.join(
self._output_dir,
'%s-%s.png' % (prefix_str, tags[i]))
logging.info('Output the image %d to %s', i, file_path)
images[i].save(file_path)
file_path = os.path.join(
self._output_dir, '%s-diff.png' % prefix_str)
logging.info('Output the diff image to %s', file_path)
diff_image = ImageChops.difference(*images)
gray_image = diff_image.convert('L')
bw_image = gray_image.point(
lambda x: 0 if x <= self._pixel_diff_margin else 255,
'1')
bw_image.save(file_path)