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/*
 * objects.h
 * Copyright 2014 John Lindgren
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions are met:
 *
 * 1. Redistributions of source code must retain the above copyright notice,
 *    this list of conditions, and the following disclaimer.
 *
 * 2. Redistributions in binary form must reproduce the above copyright notice,
 *    this list of conditions, and the following disclaimer in the documentation
 *    provided with the distribution.
 *
 * This software is provided "as is" and without any warranty, express or
 * implied. In no event shall the authors be liable for any damages arising from
 * the use of this software.
 */

#ifndef LIBAUDCORE_OBJECTS_H
#define LIBAUDCORE_OBJECTS_H

#include <libaudcore/templates.h>

// Stores array pointer together with deduced array length.

template<class T>
struct ArrayRef
{
    const T * data;
    int len;

    constexpr ArrayRef (decltype (nullptr) = nullptr) :
        data (nullptr),
        len (0) {}

    template<int N>
    constexpr ArrayRef (const T (& array) [N]) :
        data (array),
        len (N) {}

    constexpr ArrayRef (const T * data, int len) :
        data (data),
        len (len) {}

    const T * begin () const
        { return data; }
    const T * end () const
        { return data + len; }
};

// Smart pointer.  Deletes object pointed to when the pointer goes out of scope.

template<class T>
void SmartPtrDelete (T * ptr)
    { (void) sizeof (T); delete ptr; }

template<class T, void (* deleter) (T *) = SmartPtrDelete>
class SmartPtr
{
public:
    constexpr SmartPtr () :
        ptr (nullptr) {}
    explicit constexpr SmartPtr (T * ptr) :
        ptr (ptr) {}

    ~SmartPtr ()
        { if (ptr) deleter (ptr); }

    void capture (T * ptr2)
    {
        if (ptr) deleter (ptr);
        ptr = ptr2;
    }

    void clear ()
        { capture (nullptr); }

    SmartPtr (SmartPtr && b) :
        ptr (b.ptr)
    {
        b.ptr = nullptr;
    }

    SmartPtr & operator= (SmartPtr && b)
    {
        if (this != & b)
        {
            capture (b.ptr);
            b.ptr = nullptr;
        }
        return * this;
    }

    explicit operator bool () const
        { return (bool) ptr; }

    T * get ()
        { return ptr; }
    const T * get () const
        { return ptr; }
    T & operator* ()
        { return (* ptr); }
    const T & operator* () const
        { return (* ptr); }
    T * operator-> ()
        { return ptr; }
    const T * operator-> () const
        { return ptr; }

private:
    T * ptr;
};

template<class T, class ... Args>
SmartPtr<T> SmartNew (Args && ... args)
{
    return SmartPtr<T> (aud::construct<T>::make (operator new (sizeof (T)),
     std::forward<Args> (args) ...));
}

// Wrapper class for a string stored in the string pool.

class String
{
public:
    constexpr String () :
        raw (nullptr) {}

    ~String ()
        { raw_unref (raw); }

    String (const String & b) :
        raw (raw_ref (b.raw)) {}

    String & operator= (const String & b)
    {
        if (this != & b)
        {
            raw_unref (raw);
            raw = raw_ref (b.raw);
        }
        return * this;
    }

    String (String && b) :
        raw (b.raw)
    {
        b.raw = nullptr;
    }

    String & operator= (String && b)
    {
        if (this != & b)
        {
            raw_unref (raw);
            raw = b.raw;
            b.raw = nullptr;
        }
        return * this;
    }

    bool operator== (const String & b) const
        { return raw_equal (raw, b.raw); }

    explicit String (const char * str) :
        raw (raw_get (str)) {}

    String (decltype (nullptr)) = delete;

    operator const char * () const
        { return raw; }

    unsigned hash () const
        { return raw_hash (raw); }

    // raw interface
    // avoid using where possible

    static String from_raw (char * str)
    {
        String s;
        s.raw = str;
        return s;
    }

    char * to_raw ()
    {
        char * str = raw;
        raw = nullptr;
        return str;
    }

    static char * raw_get (const char * str);
    static char * raw_ref (const char * str);
    static void raw_unref (char * str);
    static unsigned raw_hash (const char * str);
    static bool raw_equal (const char * str1, const char * str2);

private:
    char * raw;
};

struct StringStack;

// Mutable string buffer, allocated on a stack to allow fast allocation.  The
// price for this speed is that only the top string in the stack (i.e. the one
// most recently allocated) can be resized or deleted.  The string is always
// null-terminated (i.e. str[str.len ()] == 0).  Rules for the correct use of
// StringBuf can be summarized as follows:
//
//   1. Always declare StringBufs within function or block scope, never at file
//      or class scope.  Do not attempt to create a StringBuf with new or
//      malloc().
//   2. Only the first StringBuf declared in a function can be used as the
//      return value.  It is possible to create a second StringBuf and then
//      transfer its contents to the first with steal(), but doing so carries
//      a performance penalty.
//   3. Do not truncate the StringBuf by inserting null characters manually;
//      instead, use resize().

class StringBuf
{
public:
    constexpr StringBuf () :
        stack (nullptr),
        m_data (nullptr),
        m_len (0) {}

    // A length of -1 means to use all available space.  This can be useful when
    // the final length of the string is not known in advance, but keep in mind
    // that you will not be able to create any further StringBufs until you call
    // resize().  Also, the string will not be null-terminated in this case.
    explicit StringBuf (int len) :
        stack (nullptr),
        m_data (nullptr),
        m_len (0)
    {
        resize (len);
    }

    StringBuf (StringBuf && other) :
        stack (other.stack),
        m_data (other.m_data),
        m_len (other.m_len)
    {
        other.stack = nullptr;
        other.m_data = nullptr;
        other.m_len = 0;
    }

    // only allowed for top (or null) string
    ~StringBuf ();

    // only allowed for top (or null) string
    void resize (int size);
    void insert (int pos, const char * s, int len = -1);
    void remove (int pos, int len);

    // only allowed for top two strings (or when one string is null)
    void steal (StringBuf && other);
    void combine (StringBuf && other);

    int len () const
        { return m_len; }

    operator char * ()
        { return m_data; }

private:
    StringStack * stack;
    char * m_data;
    int m_len;
};

#endif // LIBAUDCORE_OBJECTS_H