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@ -101,11 +101,12 @@ union BitsCvtImpl<4>{
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NumberTraits<4>::float_t _float;
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// 1 + 8 + 23
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unsigned int sign() const noexcept { return _int >> 31; }
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int sign() const noexcept { return _int >> 31; }
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unsigned int exp() const noexcept { return (_int >> 23) & 0b1111'1111; }
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uint64_t mantissa() const noexcept { return _int & 0x7fffff; }
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void set_exp(uint64_t exp) noexcept { _int = (_int & 0x807f'ffff) | (exp << 23); }
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void set_exp(int exp) noexcept { _int = (_int & 0x807f'ffff) | (exp << 23); }
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void set_sign(int sign) noexcept { _int = (_int & 0x7fff'ffff) | (sign << 31); }
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void zero_mantissa() noexcept { _int &= 0xff80'0000; }
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static constexpr int C0 = 127; // 2^7 - 1
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@ -130,11 +131,12 @@ union BitsCvtImpl<8>{
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NumberTraits<8>::float_t _float;
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// 1 + 11 + 52
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unsigned int sign() const noexcept { return _int >> 63; }
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int sign() const noexcept { return _int >> 63; }
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unsigned int exp() const noexcept { return (_int >> 52) & 0b0111'1111'1111; }
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uint64_t mantissa() const noexcept { return _int & 0xfffffffffffff; }
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void set_exp(uint64_t exp) noexcept { _int = (_int & 0x800f'ffff'ffff'ffff) | (exp << 52); }
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void set_sign(uint64_t sign) noexcept { _int = (_int & 0x7fff'ffff'ffff'ffff) | (sign << 63); }
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void zero_mantissa() noexcept { _int &= 0xfff0'0000'0000'0000; }
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static constexpr int C0 = 1023; // 2^10 - 1
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@ -195,9 +197,8 @@ inline PyObject* tag_float(f64 val){
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BitsCvt decomposed(val);
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// std::cout << "tagging: " << val << std::endl;
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// decomposed.print();
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// std::cout << "exp: " << decomposed.exp() << std::endl;
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int sign = decomposed.sign();
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int exp_7b = decomposed.exp() - BitsCvt::C0;
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// std::cout << "exp_7b: " << exp_7b << std::endl;
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if(exp_7b < BitsCvt::C1){
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exp_7b = BitsCvt::C1 - 1; // -63 + 63 = 0
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decomposed.zero_mantissa();
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@ -208,6 +209,7 @@ inline PyObject* tag_float(f64 val){
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decomposed.set_exp(exp_7b + BitsCvt::C2);
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// decomposed.print();
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decomposed._int = (decomposed._int << 1) | 0b01;
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decomposed.set_sign(sign);
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// decomposed.print();
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return reinterpret_cast<PyObject*>(decomposed._int);
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}
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@ -383,11 +383,9 @@ void init_builtins(VM* _vm) {
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auto py_number_pow = [](VM* vm, PyObject* lhs_, PyObject* rhs_) {
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i64 lhs, rhs;
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if(try_cast_int(lhs_, &lhs) && try_cast_int(rhs_, &rhs)){
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bool flag = false;
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if(rhs < 0) {
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if(lhs == 0) vm->ZeroDivisionError("0.0 cannot be raised to a negative power");
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flag = true;
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rhs = -rhs;
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return VAR((f64)std::pow(lhs, rhs));
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}
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i64 ret = 1;
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while(rhs){
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@ -395,7 +393,6 @@ void init_builtins(VM* _vm) {
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lhs *= lhs;
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rhs >>= 1;
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}
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if(flag) return VAR((f64)(1.0 / ret));
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return VAR(ret);
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}else{
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return VAR((f64)std::pow(CAST_F(lhs_), CAST_F(rhs_)));
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@ -1,7 +1,7 @@
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# test int literals
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assert 0xffff == 65535
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assert 0xAAFFFF == 11206655
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assert 0x7fffffff == 2147483647 # will fail on 32-bit systems
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assert 0x7fffffff == 2147483647
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# test == != >= <= < >
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assert -1 == -1
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@ -45,3 +45,13 @@ assert eq(float(1.5), 1.5)
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assert eq(float(-1.5), -1.5)
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assert eq(float("123"), 123.0)
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assert eq(float("123.456"), 123.456)
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import math
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inf = float("inf")
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assert 1/0 == inf
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assert -1/0 == -inf
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assert 1/inf == 0
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assert -1/inf == 0
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assert math.isnan(0/0)
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