gecko-dev/gfx/layers/BufferUnrotate.cpp
Daniel Holbert 126bd9e1a4 Bug 1412427 part 8: (automated patch) Switch a bunch of C++ files in gfx to use our standard mode lines. r=jrmuizel
This patch was generated automatically by the "modeline.py" script, available
here: https://github.com/amccreight/moz-source-tools/blob/master/modeline.py

For every file that is modified in this patch, the changes are as follows:
 (1) The patch changes the file to use the exact C++ mode lines from the
     Mozilla coding style guide, available here:
https://developer.mozilla.org/en-US/docs/Mozilla/Developer_guide/Coding_Style#Mode_Line

 (2) The patch deletes any blank lines between the mode line & the MPL
     boilerplate comment.

 (3) If the file previously had the mode lines and MPL boilerplate in a
     single contiguous C++ comment, then the patch splits them into
     separate C++ comments, to match the boilerplate in the coding style.

MozReview-Commit-ID: 77D61xpSmIl

--HG--
extra : rebase_source : c6162fa3cf539a07177a19838324bf368faa162b
2017-10-27 16:10:06 -07:00

66 lines
2.3 KiB
C++

/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* vim: set ts=8 sts=2 et sw=2 tw=80: */
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include <algorithm> // min & max
#include <cstdlib>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
void BufferUnrotate(uint8_t* aBuffer, int aByteWidth, int aHeight,
int aByteStride, int aXBoundary, int aYBoundary)
{
if (aXBoundary != 0) {
uint8_t* line = new uint8_t[aByteWidth];
uint32_t smallStart = 0;
uint32_t smallLen = aXBoundary;
uint32_t smallDest = aByteWidth - aXBoundary;
uint32_t largeStart = aXBoundary;
uint32_t largeLen = aByteWidth - aXBoundary;
uint32_t largeDest = 0;
if (aXBoundary > aByteWidth / 2) {
smallStart = aXBoundary;
smallLen = aByteWidth - aXBoundary;
smallDest = 0;
largeStart = 0;
largeLen = aXBoundary;
largeDest = smallLen;
}
for (int y = 0; y < aHeight; y++) {
int yOffset = y * aByteStride;
memcpy(line, &aBuffer[yOffset + smallStart], smallLen);
memmove(&aBuffer[yOffset + largeDest], &aBuffer[yOffset + largeStart], largeLen);
memcpy(&aBuffer[yOffset + smallDest], line, smallLen);
}
delete[] line;
}
if (aYBoundary != 0) {
uint32_t smallestHeight = std::min(aHeight - aYBoundary, aYBoundary);
uint32_t largestHeight = std::max(aHeight - aYBoundary, aYBoundary);
uint32_t smallOffset = 0;
uint32_t largeOffset = aYBoundary * aByteStride;
uint32_t largeDestOffset = 0;
uint32_t smallDestOffset = largestHeight * aByteStride;
if (aYBoundary > aHeight / 2) {
smallOffset = aYBoundary * aByteStride;
largeOffset = 0;
largeDestOffset = smallestHeight * aByteStride;
smallDestOffset = 0;
}
uint8_t* smallestSide = new uint8_t[aByteStride * smallestHeight];
memcpy(smallestSide, &aBuffer[smallOffset], aByteStride * smallestHeight);
memmove(&aBuffer[largeDestOffset], &aBuffer[largeOffset], aByteStride * largestHeight);
memcpy(&aBuffer[smallDestOffset], smallestSide, aByteStride * smallestHeight);
delete[] smallestSide;
}
}