view base/ResizeableBitset.h @ 335:02d2ad95ea52 spectrogram-cache-rejig

* Get storage advice for each cache in an FFT data server. Allows us to be more confident about the actual memory situation and cut over from memory to disc part way through an FFT calculation if necessary. StorageAdviser is now a bit too optimistic though (it's too keen to allocate large numbers of small blocks in memory).
author Chris Cannam
date Tue, 13 Nov 2007 13:54:10 +0000
parents 146eb9e35baa
children 95391b480e17
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/* -*- 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.
*/

#ifndef _RESIZEABLE_BITMAP_H_
#define _RESIZEABLE_BITMAP_H_

#include <vector>
#include <stdint.h>

class ResizeableBitset {

public:
    ResizeableBitset() : m_bits(0) {
    }
    ResizeableBitset(size_t size) : m_bits(new std::vector<uint8_t>) {
        m_bits->assign((size >> 3) + 1, 0);
    }
    ResizeableBitset(const ResizeableBitset &b) {
        m_bits = new std::vector<uint8_t>(*b.m_bits);
    }
    ResizeableBitset &operator=(const ResizeableBitset &b) {
        if (&b != this) return *this;
        delete m_bits;
        m_bits = new std::vector<uint8_t>(*b.m_bits);
        return *this;
    }
    ~ResizeableBitset() {
        delete m_bits;
    }
    
    void resize(size_t bits) { // losing all data
        if (!m_bits || bits < m_bits->size()) {
            delete m_bits;
            m_bits = new std::vector<uint8_t>;
        }
        m_bits->assign((bits >> 3) + 1, 0);
    }
    
    bool get(size_t column) const {
        return ((*m_bits)[column >> 3]) & (1u << (column & 0x07));
    }
    
    void set(size_t column) {
        ((*m_bits)[column >> 3]) |=  (uint8_t(1) << (column & 0x07));
    }

    void reset(size_t column) {
        ((*m_bits)[column >> 3]) &= ~(uint8_t(1) << (column & 0x07));
    }

    void copy(size_t source, size_t dest) {
        get(source) ? set(dest) : reset(dest);
    }
    
private:
    std::vector<uint8_t> *m_bits;
};


#endif