121 lines
3.6 KiB
C++
121 lines
3.6 KiB
C++
#ifndef __nettypes_H
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#define __nettypes_H
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/*
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* Copyright (c) 2012 Stephen Williams (steve@icarus.com)
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*
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* This source code is free software; you can redistribute it
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* and/or modify it in source code form under the terms of the GNU
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* General Public License as published by the Free Software
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* Foundation; either version 2 of the License, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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# include "ivl_target.h"
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# include <list>
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# include <vector>
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# include <climits>
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# include <ostream>
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# include <cassert>
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class netrange_t;
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/*
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* This is a fully abstract type that is a type that can be attached
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* to a NetNet object.
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*/
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class ivl_type_s {
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public:
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virtual ~ivl_type_s() =0;
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virtual long packed_width(void) const;
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virtual std::vector<netrange_t> slice_dimensions() const;
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// Some types have a base variable type.
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virtual ivl_variable_type_t base_type() const;
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virtual bool get_signed() const;
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virtual std::ostream& debug_dump(std::ostream&) const;
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};
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/*
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* There are a couple types of array types. This class represents the
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* common bits of array types.
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*/
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class netarray_t : public ivl_type_s {
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public:
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inline explicit netarray_t(ivl_type_t etype) : element_type_(etype) { }
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~netarray_t();
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public:
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// Some virtual methods have a common implementation for arrays.
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ivl_variable_type_t base_type() const;
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public:
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inline ivl_type_t element_type() const { return element_type_; }
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private:
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ivl_type_t element_type_;
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};
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inline static std::ostream& operator << (std::ostream&out, const ivl_type_s&obj)
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{
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return obj.debug_dump(out);
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}
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class netrange_t {
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public:
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// Create an undefined range. An undefined range is a range
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// used to declare dynamic arrays, etc.
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inline netrange_t() : msb_(LONG_MAX), lsb_(LONG_MAX) { }
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// Create a properly defined netrange
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inline netrange_t(long m, long l) : msb_(m), lsb_(l) { }
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// Copy constructure.
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inline netrange_t(const netrange_t&that)
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: msb_(that.msb_), lsb_(that.lsb_) { }
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inline netrange_t& operator = (const netrange_t&that)
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{ msb_ = that.msb_; lsb_ = that.lsb_; return *this; }
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inline bool defined() const
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{ return msb_!=LONG_MAX || lsb_!= LONG_MAX; }
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inline unsigned long width()const
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{ if (!defined()) return 0;
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else if (msb_ >= lsb_) return msb_-lsb_+1;
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else return lsb_-msb_+1;
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}
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inline long get_msb() const { assert(defined()); return msb_; }
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inline long get_lsb() const { assert(defined()); return lsb_; }
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private:
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long msb_;
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long lsb_;
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};
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extern std::ostream&operator << (std::ostream&out, const std::list<netrange_t>&rlist);
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extern std::ostream&operator << (std::ostream&out, const std::vector<netrange_t>&rlist);
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extern unsigned long netrange_width(const std::vector<netrange_t>&dims);
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/*
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* Take as input a list of packed dimensions and a list of prefix
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* indices, and calculate the offset/width of the resulting slice into
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* the packed array.
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*/
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extern bool prefix_to_slice(const std::vector<netrange_t>&dims,
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const std::list<long>&prefix, long sb,
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long&loff, unsigned long&lwid);
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#endif
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