Implement powi_f2
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954e3b7095
commit
6622c49be6
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@ -159,8 +159,8 @@ porting that particular intrinsic.
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- [x] mulodi4.c
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- [x] mulodi4.c
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- [x] mulosi4.c
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- [x] mulosi4.c
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- [ ] mulsf3.c
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- [ ] mulsf3.c
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- [ ] powidf2.c
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- [x] powidf2.c
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- [ ] powisf2.c
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- [x] powisf2.c
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- [ ] subdf3.c
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- [ ] subdf3.c
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- [ ] subsf3.c
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- [ ] subsf3.c
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- [ ] truncdfhf2.c
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- [ ] truncdfhf2.c
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@ -58,6 +58,8 @@ fn main() {
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"udivmodsi4.c",
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"udivmodsi4.c",
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"adddf3.c",
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"adddf3.c",
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"addsf3.c",
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"addsf3.c",
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"powidf2.c",
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"powisf2.c",
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]);
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]);
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for src in sources.files.iter() {
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for src in sources.files.iter() {
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@ -22,6 +22,8 @@ extern {
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fn __umodsi3();
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fn __umodsi3();
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fn __addsf3();
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fn __addsf3();
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fn __adddf3();
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fn __adddf3();
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fn __powisf2();
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fn __powidf2();
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}
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}
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macro_rules! declare {
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macro_rules! declare {
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@ -53,6 +55,8 @@ declare!(___umoddi3, __umoddi3);
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declare!(___umodsi3, __umodsi3);
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declare!(___umodsi3, __umodsi3);
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declare!(___addsf3, __addsf3);
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declare!(___addsf3, __addsf3);
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declare!(___adddf3, __adddf3);
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declare!(___adddf3, __adddf3);
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declare!(___powisf2, __powisf2);
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declare!(___powidf2, __powidf2);
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#[lang = "eh_personality"]
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#[lang = "eh_personality"]
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fn eh_personality() {}
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fn eh_personality() {}
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@ -186,35 +186,10 @@ add!(__adddf3: f64);
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#[cfg(test)]
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#[cfg(test)]
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mod tests {
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mod tests {
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use core::{f32, f64};
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use core::{f32, f64};
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use core::fmt;
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use float::Float;
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use float::{Float, FRepr};
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use qc::{U32, U64};
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use qc::{U32, U64};
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// TODO: Move this to F32/F64 in qc.rs
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#[derive(Copy, Clone)]
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struct FRepr<F>(F);
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impl<F: Float> PartialEq for FRepr<F> {
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fn eq(&self, other: &FRepr<F>) -> bool {
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// NOTE(cfg) for some reason, on hard float targets, our implementation doesn't
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// match the output of its gcc_s counterpart. Until we investigate further, we'll
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// just avoid testing against gcc_s on those targets. Do note that our
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// implementation matches the output of the FPU instruction on *hard* float targets
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// and matches its gcc_s counterpart on *soft* float targets.
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if cfg!(gnueabihf) {
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return true
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}
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self.0.eq_repr(other.0)
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}
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}
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impl<F: fmt::Debug> fmt::Debug for FRepr<F> {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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self.0.fmt(f)
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}
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}
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// TODO: Add F32/F64 to qc so that they print the right values (at the very least)
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// TODO: Add F32/F64 to qc so that they print the right values (at the very least)
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check! {
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check! {
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fn __addsf3(f: extern fn(f32, f32) -> f32,
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fn __addsf3(f: extern fn(f32, f32) -> f32,
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@ -1,6 +1,8 @@
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use core::mem;
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use core::mem;
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use core::fmt;
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pub mod add;
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pub mod add;
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pub mod pow;
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/// Trait for some basic operations on floats
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/// Trait for some basic operations on floats
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pub trait Float: Sized + Copy {
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pub trait Float: Sized + Copy {
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@ -85,3 +87,30 @@ impl Float for f64 {
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(1i32.wrapping_sub(shift as i32), significand << shift as Self::Int)
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(1i32.wrapping_sub(shift as i32), significand << shift as Self::Int)
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}
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}
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}
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}
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// TODO: Move this to F32/F64 in qc.rs
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#[cfg(test)]
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#[derive(Copy, Clone)]
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pub struct FRepr<F>(F);
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#[cfg(test)]
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impl<F: Float> PartialEq for FRepr<F> {
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fn eq(&self, other: &FRepr<F>) -> bool {
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// NOTE(cfg) for some reason, on hard float targets, our implementation doesn't
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// match the output of its gcc_s counterpart. Until we investigate further, we'll
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// just avoid testing against gcc_s on those targets. Do note that our
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// implementation matches the output of the FPU instruction on *hard* float targets
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// and matches its gcc_s counterpart on *soft* float targets.
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if cfg!(gnueabihf) {
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return true
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}
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self.0.eq_repr(other.0)
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}
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}
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#[cfg(test)]
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impl<F: fmt::Debug> fmt::Debug for FRepr<F> {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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self.0.fmt(f)
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}
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}
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@ -0,0 +1,53 @@
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macro_rules! pow {
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($intrinsic:ident: $fty:ty, $ity:ty) => {
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/// Returns `a` raised to the power `b`
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#[cfg_attr(not(test), no_mangle)]
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pub extern "C" fn $intrinsic(a: $fty, b: $ity) -> $fty {
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let (mut a, mut b) = (a, b);
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let recip = b < 0;
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let mut r: $fty = 1.0;
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loop {
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if (b & 1) != 0 {
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r *= a;
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}
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b /= 2;
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if b == 0 {
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break;
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}
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a *= a;
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}
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if recip {
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1.0 / r
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} else {
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r
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}
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}
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}
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}
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pow!(__powisf2: f32, i32);
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pow!(__powidf2: f64, i32);
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#[cfg(test)]
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mod tests {
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use float::{Float, FRepr};
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use qc::{I32, U32, U64};
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check! {
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fn __powisf2(f: extern fn(f32, i32) -> f32,
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a: U32,
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b: I32) -> Option<FRepr<f32> > {
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let (a, b) = (f32::from_repr(a.0), b.0);
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Some(FRepr(f(a, b)))
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}
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fn __powidf2(f: extern fn(f64, i32) -> f64,
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a: U64,
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b: I32) -> Option<FRepr<f64> > {
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let (a, b) = (f64::from_repr(a.0), b.0);
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Some(FRepr(f(a, b)))
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}
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}
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}
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