Mercurial > hg > svcore
view data/model/PowerOfSqrtTwoZoomConstraint.cpp @ 1550:1ae6a19464a7 zoom-double
Messing with non-integer zoom ratios. But I don't think this is going anywhere as it stands
author | Chris Cannam |
---|---|
date | Mon, 08 Oct 2018 13:39:40 +0100 |
parents | c1c45c5146bb |
children |
line wrap: on
line source
/* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */ /* Sonic Visualiser An audio file viewer and annotation editor. Centre for Digital Music, Queen Mary, University of London. This file copyright 2006 Chris Cannam. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. See the file COPYING included with this distribution for more information. */ #include "PowerOfSqrtTwoZoomConstraint.h" #include <iostream> #include <cmath> #include "base/Debug.h" ZoomLevel PowerOfSqrtTwoZoomConstraint::getNearestZoomLevel(ZoomLevel requested, RoundingDirection dir) const { int type, power; double blockSize; if (requested.zone == ZoomLevel::FramesPerPixel) { blockSize = getNearestBlockSize(requested.level, type, power, dir); return { requested.zone, blockSize }; } else { RoundingDirection opposite = dir; if (dir == RoundUp) opposite = RoundDown; else if (dir == RoundDown) opposite = RoundUp; blockSize = getNearestBlockSize(requested.level, type, power, opposite); if (blockSize > getMinZoomLevel().level) { blockSize = getMinZoomLevel().level; } if (blockSize == 1) { return { ZoomLevel::FramesPerPixel, 1 }; } else { return { requested.zone, blockSize }; } } } double PowerOfSqrtTwoZoomConstraint::getNearestBlockSize(double blockSize, int &type, int &power, RoundingDirection dir) const { // SVCERR << "given " << blockSize << endl; int minCachePower = getMinCachePower(); double eps = 1e-8; if (blockSize < (1 << minCachePower)) { type = -1; power = 0; double val = 1.0, prevVal = 1.0; while (val + eps < blockSize) { prevVal = val; val *= sqrtf(2.f); } double rval = val; // SVCERR << "got val = " << val << ", rval = " << rval << ", prevVal = " << prevVal << endl; if (rval != blockSize && dir != RoundUp) { if (dir == RoundDown) { rval = prevVal; } else if (val - blockSize < blockSize - prevVal) { rval = val; } else { rval = prevVal; } } // SVCERR << "returning " << rval << endl; return rval; } double prevBase = (1 << minCachePower); int prevPower = minCachePower; int prevType = 0; double result = 0; for (unsigned int i = 0; ; ++i) { power = minCachePower + i/2; type = i % 2; double base; if (type == 0) { base = pow(2.0, power); } else { base = sqrt(2.0) * pow(2.0, power); } // SVCERR << "Testing base " << base << " (i = " << i << ", power = " << power << ", type = " << type << ")" << endl; if (base == blockSize) { result = base; break; } if (base > blockSize) { if (dir == RoundNearest) { if (base - blockSize < blockSize - prevBase) { dir = RoundUp; } else { dir = RoundDown; } } if (dir == RoundUp) { result = base; break; } else { type = prevType; power = prevPower; result = prevBase; break; } } prevType = type; prevPower = power; prevBase = base; } if (result > getMaxZoomLevel().level) { result = getMaxZoomLevel().level; } return result; }