opencv/3rdparty/openexr/IlmImf/ImfTiledMisc.cpp

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///////////////////////////////////////////////////////////////////////////
//
// Copyright (c) 2004, Industrial Light & Magic, a division of Lucas
// Digital Ltd. LLC
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above
// copyright notice, this list of conditions and the following disclaimer
// in the documentation and/or other materials provided with the
// distribution.
// * Neither the name of Industrial Light & Magic nor the names of
// its contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
//
///////////////////////////////////////////////////////////////////////////
//-----------------------------------------------------------------------------
//
// Miscellaneous stuff related to tiled files
//
//-----------------------------------------------------------------------------
#include <ImfTiledMisc.h>
#include "Iex.h"
#include <ImfMisc.h>
#include <ImfChannelList.h>
namespace Imf {
using Imath::Box2i;
using Imath::V2i;
int
levelSize (int min, int max, int l, LevelRoundingMode rmode)
{
if (l < 0)
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throw Iex::ArgExc ("Argument not in valid range.");
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int a = max - min + 1;
int b = (1 << l);
int size = a / b;
if (rmode == ROUND_UP && size * b < a)
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size += 1;
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return std::max (size, 1);
}
Box2i
dataWindowForLevel (const TileDescription &tileDesc,
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int minX, int maxX,
int minY, int maxY,
int lx, int ly)
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{
V2i levelMin = V2i (minX, minY);
V2i levelMax = levelMin +
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V2i (levelSize (minX, maxX, lx, tileDesc.roundingMode) - 1,
levelSize (minY, maxY, ly, tileDesc.roundingMode) - 1);
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return Box2i(levelMin, levelMax);
}
Box2i
dataWindowForTile (const TileDescription &tileDesc,
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int minX, int maxX,
int minY, int maxY,
int dx, int dy,
int lx, int ly)
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{
V2i tileMin = V2i (minX + dx * tileDesc.xSize,
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minY + dy * tileDesc.ySize);
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V2i tileMax = tileMin + V2i (tileDesc.xSize - 1, tileDesc.ySize - 1);
V2i levelMax = dataWindowForLevel
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(tileDesc, minX, maxX, minY, maxY, lx, ly).max;
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tileMax = V2i (std::min (tileMax[0], levelMax[0]),
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std::min (tileMax[1], levelMax[1]));
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return Box2i (tileMin, tileMax);
}
size_t
calculateBytesPerPixel (const Header &header)
{
const ChannelList &channels = header.channels();
size_t bytesPerPixel = 0;
for (ChannelList::ConstIterator c = channels.begin();
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c != channels.end();
++c)
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{
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bytesPerPixel += pixelTypeSize (c.channel().type);
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}
return bytesPerPixel;
}
namespace {
int
floorLog2 (int x)
{
//
// For x > 0, floorLog2(y) returns floor(log(x)/log(2)).
//
int y = 0;
while (x > 1)
{
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y += 1;
x >>= 1;
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}
return y;
}
int
ceilLog2 (int x)
{
//
// For x > 0, ceilLog2(y) returns ceil(log(x)/log(2)).
//
int y = 0;
int r = 0;
while (x > 1)
{
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if (x & 1)
r = 1;
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y += 1;
x >>= 1;
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}
return y + r;
}
int
roundLog2 (int x, LevelRoundingMode rmode)
{
return (rmode == ROUND_DOWN)? floorLog2 (x): ceilLog2 (x);
}
int
calculateNumXLevels (const TileDescription& tileDesc,
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int minX, int maxX,
int minY, int maxY)
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{
int num = 0;
switch (tileDesc.mode)
{
case ONE_LEVEL:
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num = 1;
break;
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case MIPMAP_LEVELS:
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{
int w = maxX - minX + 1;
int h = maxY - minY + 1;
num = roundLog2 (std::max (w, h), tileDesc.roundingMode) + 1;
}
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break;
case RIPMAP_LEVELS:
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{
int w = maxX - minX + 1;
num = roundLog2 (w, tileDesc.roundingMode) + 1;
}
break;
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default:
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throw Iex::ArgExc ("Unknown LevelMode format.");
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}
return num;
}
int
calculateNumYLevels (const TileDescription& tileDesc,
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int minX, int maxX,
int minY, int maxY)
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{
int num = 0;
switch (tileDesc.mode)
{
case ONE_LEVEL:
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num = 1;
break;
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case MIPMAP_LEVELS:
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{
int w = maxX - minX + 1;
int h = maxY - minY + 1;
num = roundLog2 (std::max (w, h), tileDesc.roundingMode) + 1;
}
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break;
case RIPMAP_LEVELS:
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{
int h = maxY - minY + 1;
num = roundLog2 (h, tileDesc.roundingMode) + 1;
}
break;
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default:
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throw Iex::ArgExc ("Unknown LevelMode format.");
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}
return num;
}
void
calculateNumTiles (int *numTiles,
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int numLevels,
int min, int max,
int size,
LevelRoundingMode rmode)
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{
for (int i = 0; i < numLevels; i++)
{
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numTiles[i] = (levelSize (min, max, i, rmode) + size - 1) / size;
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}
}
} // namespace
void
precalculateTileInfo (const TileDescription& tileDesc,
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int minX, int maxX,
int minY, int maxY,
int *&numXTiles, int *&numYTiles,
int &numXLevels, int &numYLevels)
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{
numXLevels = calculateNumXLevels(tileDesc, minX, maxX, minY, maxY);
numYLevels = calculateNumYLevels(tileDesc, minX, maxX, minY, maxY);
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numXTiles = new int[numXLevels];
numYTiles = new int[numYLevels];
calculateNumTiles (numXTiles,
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numXLevels,
minX, maxX,
tileDesc.xSize,
tileDesc.roundingMode);
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calculateNumTiles (numYTiles,
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numYLevels,
minY, maxY,
tileDesc.ySize,
tileDesc.roundingMode);
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}
} // namespace Imf