typed_address: test values are unsigned
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@ -186,68 +186,68 @@ static_assert(std::is_trivially_destructible_v<PhysicalAddress>);
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static_assert(std::is_trivially_destructible_v<VirtualAddress>);
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static_assert(std::is_trivially_destructible_v<VirtualAddress>);
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static_assert(std::is_trivially_destructible_v<ProcessAddress>);
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static_assert(std::is_trivially_destructible_v<ProcessAddress>);
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static_assert(Null<uint64_t> == 0);
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static_assert(Null<uint64_t> == 0U);
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static_assert(Null<PhysicalAddress> == Null<uint64_t>);
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static_assert(Null<PhysicalAddress> == Null<uint64_t>);
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static_assert(Null<VirtualAddress> == Null<uint64_t>);
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static_assert(Null<VirtualAddress> == Null<uint64_t>);
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static_assert(Null<ProcessAddress> == Null<uint64_t>);
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static_assert(Null<ProcessAddress> == Null<uint64_t>);
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// Constructor/assignment validations.
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// Constructor/assignment validations.
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static_assert([] {
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static_assert([] {
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const PhysicalAddress a(5);
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const PhysicalAddress a(5U);
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PhysicalAddress b(a);
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PhysicalAddress b(a);
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return b;
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return b;
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}() == PhysicalAddress(5));
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}() == PhysicalAddress(5U));
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static_assert([] {
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static_assert([] {
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const PhysicalAddress a(5);
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const PhysicalAddress a(5U);
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PhysicalAddress b(10);
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PhysicalAddress b(10U);
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b = a;
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b = a;
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return b;
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return b;
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}() == PhysicalAddress(5));
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}() == PhysicalAddress(5U));
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// Arithmetic validations.
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// Arithmetic validations.
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static_assert(PhysicalAddress(10) + 5 == PhysicalAddress(15));
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static_assert(PhysicalAddress(10U) + 5U == PhysicalAddress(15U));
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static_assert(PhysicalAddress(10) - 5 == PhysicalAddress(5));
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static_assert(PhysicalAddress(10U) - 5U == PhysicalAddress(5U));
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static_assert([] {
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static_assert([] {
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PhysicalAddress v(10);
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PhysicalAddress v(10U);
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v += 5;
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v += 5U;
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return v;
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return v;
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}() == PhysicalAddress(15));
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}() == PhysicalAddress(15U));
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static_assert([] {
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static_assert([] {
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PhysicalAddress v(10);
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PhysicalAddress v(10U);
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v -= 5;
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v -= 5U;
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return v;
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return v;
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}() == PhysicalAddress(5));
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}() == PhysicalAddress(5U));
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static_assert(PhysicalAddress(10)++ == PhysicalAddress(10));
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static_assert(PhysicalAddress(10U)++ == PhysicalAddress(10U));
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static_assert(++PhysicalAddress(10) == PhysicalAddress(11));
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static_assert(++PhysicalAddress(10U) == PhysicalAddress(11U));
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static_assert(PhysicalAddress(10)-- == PhysicalAddress(10));
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static_assert(PhysicalAddress(10U)-- == PhysicalAddress(10U));
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static_assert(--PhysicalAddress(10) == PhysicalAddress(9));
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static_assert(--PhysicalAddress(10U) == PhysicalAddress(9U));
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// Logical validations.
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// Logical validations.
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static_assert((PhysicalAddress(0b11111111) >> 1) == 0b01111111);
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static_assert((PhysicalAddress(0b11111111U) >> 1) == 0b01111111U);
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static_assert((PhysicalAddress(0b10101010) >> 1) == 0b01010101);
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static_assert((PhysicalAddress(0b10101010U) >> 1) == 0b01010101U);
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static_assert((PhysicalAddress(0b11111111) << 1) == 0b111111110);
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static_assert((PhysicalAddress(0b11111111U) << 1) == 0b111111110U);
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static_assert((PhysicalAddress(0b01010101) << 1) == 0b10101010);
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static_assert((PhysicalAddress(0b01010101U) << 1) == 0b10101010U);
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static_assert((PhysicalAddress(0b11111111) & 0b01010101) == 0b01010101);
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static_assert((PhysicalAddress(0b11111111U) & 0b01010101U) == 0b01010101U);
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static_assert((PhysicalAddress(0b11111111) & 0b10101010) == 0b10101010);
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static_assert((PhysicalAddress(0b11111111U) & 0b10101010U) == 0b10101010U);
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static_assert((PhysicalAddress(0b01010101) & 0b10101010) == 0b00000000);
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static_assert((PhysicalAddress(0b01010101U) & 0b10101010U) == 0b00000000U);
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static_assert((PhysicalAddress(0b00000000) | 0b01010101) == 0b01010101);
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static_assert((PhysicalAddress(0b00000000U) | 0b01010101U) == 0b01010101U);
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static_assert((PhysicalAddress(0b11111111) | 0b01010101) == 0b11111111);
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static_assert((PhysicalAddress(0b11111111U) | 0b01010101U) == 0b11111111U);
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static_assert((PhysicalAddress(0b10101010) | 0b01010101) == 0b11111111);
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static_assert((PhysicalAddress(0b10101010U) | 0b01010101U) == 0b11111111U);
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// Comparisons.
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// Comparisons.
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static_assert(PhysicalAddress(0) == PhysicalAddress(0));
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static_assert(PhysicalAddress(0U) == PhysicalAddress(0U));
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static_assert(PhysicalAddress(0) != PhysicalAddress(1));
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static_assert(PhysicalAddress(0U) != PhysicalAddress(1U));
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static_assert(PhysicalAddress(0) < PhysicalAddress(1));
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static_assert(PhysicalAddress(0U) < PhysicalAddress(1U));
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static_assert(PhysicalAddress(0) <= PhysicalAddress(1));
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static_assert(PhysicalAddress(0U) <= PhysicalAddress(1U));
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static_assert(PhysicalAddress(1) > PhysicalAddress(0));
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static_assert(PhysicalAddress(1U) > PhysicalAddress(0U));
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static_assert(PhysicalAddress(1) >= PhysicalAddress(0));
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static_assert(PhysicalAddress(1U) >= PhysicalAddress(0U));
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static_assert(!(PhysicalAddress(0) == PhysicalAddress(1)));
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static_assert(!(PhysicalAddress(0U) == PhysicalAddress(1U)));
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static_assert(!(PhysicalAddress(0) != PhysicalAddress(0)));
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static_assert(!(PhysicalAddress(0U) != PhysicalAddress(0U)));
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static_assert(!(PhysicalAddress(1) < PhysicalAddress(0)));
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static_assert(!(PhysicalAddress(1U) < PhysicalAddress(0U)));
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static_assert(!(PhysicalAddress(1) <= PhysicalAddress(0)));
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static_assert(!(PhysicalAddress(1U) <= PhysicalAddress(0U)));
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static_assert(!(PhysicalAddress(0) > PhysicalAddress(1)));
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static_assert(!(PhysicalAddress(0U) > PhysicalAddress(1U)));
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static_assert(!(PhysicalAddress(0) >= PhysicalAddress(1)));
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static_assert(!(PhysicalAddress(0U) >= PhysicalAddress(1U)));
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} // namespace Common
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} // namespace Common
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