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https://github.com/RPCS3/rpcs3.git
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a974ee009e
Mostly vm::var initialization introduced. Added vm::make_var function.
141 lines
2.9 KiB
C++
141 lines
2.9 KiB
C++
#pragma once
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// BitField access helper class (N bits from I position), intended to be put in union
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template<typename T, u32 I, u32 N> class bf_t
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{
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// Checks
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static_assert(I < sizeof(T) * 8, "bf_t<> error: I out of bounds");
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static_assert(N < sizeof(T) * 8, "bf_t<> error: N out of bounds");
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static_assert(I + N <= sizeof(T) * 8, "bf_t<> error: values out of bounds");
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// Underlying data type
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using type = typename std::remove_cv<T>::type;
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// Underlying value type (native endianness)
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using vtype = typename to_ne<type>::type;
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// Mask of size N
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constexpr static vtype s_mask = (static_cast<vtype>(1) << N) - 1;
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// Underlying data member
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type m_data;
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// Conversion operator helper (uses SFINAE)
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template<typename T2, typename = void> struct converter {};
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template<typename T2> struct converter<T2, std::enable_if_t<std::is_unsigned<T2>::value>>
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{
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// Load unsigned value
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static inline T2 convert(const type& data)
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{
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return (data >> I) & s_mask;
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}
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};
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template<typename T2> struct converter<T2, std::enable_if_t<std::is_signed<T2>::value>>
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{
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// Load signed value (sign-extended)
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static inline T2 convert(const type& data)
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{
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return data << (sizeof(T) * 8 - I - N) >> (sizeof(T) * 8 - N);
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}
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};
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public:
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// Assignment operator (store bitfield value)
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bf_t& operator =(vtype value)
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{
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m_data = (m_data & ~(s_mask << I)) | (value & s_mask) << I;
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return *this;
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}
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// Conversion operator (load bitfield value)
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operator vtype() const
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{
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return converter<vtype>::convert(m_data);
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}
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// Get raw data with mask applied
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type unshifted() const
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{
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return (m_data & (s_mask << I));
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}
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// Optimized bool conversion
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explicit operator bool() const
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{
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return unshifted() != 0;
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}
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// Postfix increment operator
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vtype operator ++(int)
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{
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vtype result = *this;
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*this = result + 1;
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return result;
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}
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// Prefix increment operator
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bf_t& operator ++()
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{
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return *this = *this + 1;
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}
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// Postfix decrement operator
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vtype operator --(int)
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{
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vtype result = *this;
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*this = result - 1;
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return result;
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}
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// Prefix decrement operator
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bf_t& operator --()
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{
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return *this = *this - 1;
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}
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// Addition assignment operator
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bf_t& operator +=(vtype right)
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{
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return *this = *this + right;
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}
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// Subtraction assignment operator
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bf_t& operator -=(vtype right)
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{
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return *this = *this - right;
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}
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// Multiplication assignment operator
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bf_t& operator *=(vtype right)
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{
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return *this = *this * right;
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}
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// Bitwise AND assignment operator
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bf_t& operator &=(vtype right)
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{
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m_data &= (right & s_mask) << I;
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return *this;
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}
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// Bitwise OR assignment operator
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bf_t& operator |=(vtype right)
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{
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m_data |= (right & s_mask) << I;
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return *this;
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}
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// Bitwise XOR assignment operator
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bf_t& operator ^=(vtype right)
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{
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m_data ^= (right & s_mask) << I;
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return *this;
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}
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};
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template<typename T, u32 I, u32 N> using bf_be_t = bf_t<be_t<T>, I, N>;
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template<typename T, u32 I, u32 N> using bf_le_t = bf_t<le_t<T>, I, N>;
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