Auto merge of #2469 - RalfJung:math, r=RalfJung
implement some missing float functions With this we support the entire float API surface of the standard library. :) Also fixes https://github.com/rust-lang/miri/issues/2468 by using host floats to implement FMA.
This commit is contained in:
commit
f633537f3e
@ -575,35 +575,42 @@ fn emulate_foreign_item_by_name(
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this.write_scalar(Scalar::from_machine_usize(u64::try_from(n).unwrap(), this), dest)?;
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}
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// math functions
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// math functions (note that there are also intrinsics for some other functions)
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#[rustfmt::skip]
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| "cbrtf"
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| "coshf"
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| "sinhf"
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| "tanf"
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| "tanhf"
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| "acosf"
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| "asinf"
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| "atanf"
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| "log1pf"
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| "expm1f"
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=> {
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let [f] = this.check_shim(abi, Abi::C { unwind: false }, link_name, args)?;
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// FIXME: Using host floats.
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let f = f32::from_bits(this.read_scalar(f)?.to_u32()?);
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let f = match link_name.as_str() {
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let res = match link_name.as_str() {
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"cbrtf" => f.cbrt(),
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"coshf" => f.cosh(),
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"sinhf" => f.sinh(),
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"tanf" => f.tan(),
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"tanhf" => f.tanh(),
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"acosf" => f.acos(),
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"asinf" => f.asin(),
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"atanf" => f.atan(),
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"log1pf" => f.ln_1p(),
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"expm1f" => f.exp_m1(),
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_ => bug!(),
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};
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this.write_scalar(Scalar::from_u32(f.to_bits()), dest)?;
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this.write_scalar(Scalar::from_u32(res.to_bits()), dest)?;
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}
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#[rustfmt::skip]
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| "_hypotf"
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| "hypotf"
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| "atan2f"
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| "fdimf"
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=> {
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let [f1, f2] = this.check_shim(abi, Abi::C { unwind: false }, link_name, args)?;
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// underscore case for windows, here and below
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@ -611,52 +618,63 @@ fn emulate_foreign_item_by_name(
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// FIXME: Using host floats.
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let f1 = f32::from_bits(this.read_scalar(f1)?.to_u32()?);
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let f2 = f32::from_bits(this.read_scalar(f2)?.to_u32()?);
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let n = match link_name.as_str() {
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let res = match link_name.as_str() {
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"_hypotf" | "hypotf" => f1.hypot(f2),
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"atan2f" => f1.atan2(f2),
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#[allow(deprecated)]
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"fdimf" => f1.abs_sub(f2),
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_ => bug!(),
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};
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this.write_scalar(Scalar::from_u32(n.to_bits()), dest)?;
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this.write_scalar(Scalar::from_u32(res.to_bits()), dest)?;
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}
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#[rustfmt::skip]
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| "cbrt"
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| "cosh"
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| "sinh"
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| "tan"
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| "tanh"
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| "acos"
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| "asin"
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| "atan"
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| "log1p"
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| "expm1"
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=> {
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let [f] = this.check_shim(abi, Abi::C { unwind: false }, link_name, args)?;
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// FIXME: Using host floats.
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let f = f64::from_bits(this.read_scalar(f)?.to_u64()?);
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let f = match link_name.as_str() {
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let res = match link_name.as_str() {
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"cbrt" => f.cbrt(),
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"cosh" => f.cosh(),
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"sinh" => f.sinh(),
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"tan" => f.tan(),
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"tanh" => f.tanh(),
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"acos" => f.acos(),
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"asin" => f.asin(),
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"atan" => f.atan(),
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"log1p" => f.ln_1p(),
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"expm1" => f.exp_m1(),
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_ => bug!(),
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};
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this.write_scalar(Scalar::from_u64(f.to_bits()), dest)?;
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this.write_scalar(Scalar::from_u64(res.to_bits()), dest)?;
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}
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#[rustfmt::skip]
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| "_hypot"
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| "hypot"
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| "atan2"
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| "fdim"
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=> {
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let [f1, f2] = this.check_shim(abi, Abi::C { unwind: false }, link_name, args)?;
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// FIXME: Using host floats.
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let f1 = f64::from_bits(this.read_scalar(f1)?.to_u64()?);
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let f2 = f64::from_bits(this.read_scalar(f2)?.to_u64()?);
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let n = match link_name.as_str() {
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let res = match link_name.as_str() {
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"_hypot" | "hypot" => f1.hypot(f2),
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"atan2" => f1.atan2(f2),
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#[allow(deprecated)]
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"fdim" => f1.abs_sub(f2),
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_ => bug!(),
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};
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this.write_scalar(Scalar::from_u64(n.to_bits()), dest)?;
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this.write_scalar(Scalar::from_u64(res.to_bits()), dest)?;
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}
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#[rustfmt::skip]
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| "_ldexp"
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@ -668,7 +686,7 @@ fn emulate_foreign_item_by_name(
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let x = this.read_scalar(x)?.to_f64()?;
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let exp = this.read_scalar(exp)?.to_i32()?;
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// Saturating cast to i16. Even those are outside the valid exponent range to
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// Saturating cast to i16. Even those are outside the valid exponent range so
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// `scalbn` below will do its over/underflow handling.
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let exp = if exp > i32::from(i16::MAX) {
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i16::MAX
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@ -285,7 +285,8 @@ fn emulate_intrinsic_by_name(
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// FIXME: Using host floats.
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let f = f32::from_bits(this.read_scalar(f)?.to_u32()?);
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let f2 = f32::from_bits(this.read_scalar(f2)?.to_u32()?);
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this.write_scalar(Scalar::from_u32(f.powf(f2).to_bits()), dest)?;
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let res = f.powf(f2);
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this.write_scalar(Scalar::from_u32(res.to_bits()), dest)?;
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}
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"powf64" => {
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@ -293,25 +294,28 @@ fn emulate_intrinsic_by_name(
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// FIXME: Using host floats.
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let f = f64::from_bits(this.read_scalar(f)?.to_u64()?);
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let f2 = f64::from_bits(this.read_scalar(f2)?.to_u64()?);
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this.write_scalar(Scalar::from_u64(f.powf(f2).to_bits()), dest)?;
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let res = f.powf(f2);
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this.write_scalar(Scalar::from_u64(res.to_bits()), dest)?;
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}
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"fmaf32" => {
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let [a, b, c] = check_arg_count(args)?;
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let a = this.read_scalar(a)?.to_f32()?;
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let b = this.read_scalar(b)?.to_f32()?;
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let c = this.read_scalar(c)?.to_f32()?;
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let res = a.mul_add(b, c).value;
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this.write_scalar(Scalar::from_f32(res), dest)?;
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// FIXME: Using host floats, to work around https://github.com/rust-lang/miri/issues/2468.
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let a = f32::from_bits(this.read_scalar(a)?.to_u32()?);
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let b = f32::from_bits(this.read_scalar(b)?.to_u32()?);
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let c = f32::from_bits(this.read_scalar(c)?.to_u32()?);
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let res = a.mul_add(b, c);
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this.write_scalar(Scalar::from_u32(res.to_bits()), dest)?;
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}
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"fmaf64" => {
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let [a, b, c] = check_arg_count(args)?;
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let a = this.read_scalar(a)?.to_f64()?;
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let b = this.read_scalar(b)?.to_f64()?;
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let c = this.read_scalar(c)?.to_f64()?;
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let res = a.mul_add(b, c).value;
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this.write_scalar(Scalar::from_f64(res), dest)?;
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// FIXME: Using host floats, to work around https://github.com/rust-lang/miri/issues/2468.
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let a = f64::from_bits(this.read_scalar(a)?.to_u64()?);
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let b = f64::from_bits(this.read_scalar(b)?.to_u64()?);
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let c = f64::from_bits(this.read_scalar(c)?.to_u64()?);
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let res = a.mul_add(b, c);
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this.write_scalar(Scalar::from_u64(res.to_bits()), dest)?;
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}
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"powif32" => {
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@ -319,7 +323,8 @@ fn emulate_intrinsic_by_name(
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// FIXME: Using host floats.
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let f = f32::from_bits(this.read_scalar(f)?.to_u32()?);
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let i = this.read_scalar(i)?.to_i32()?;
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this.write_scalar(Scalar::from_u32(f.powi(i).to_bits()), dest)?;
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let res = f.powi(i);
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this.write_scalar(Scalar::from_u32(res.to_bits()), dest)?;
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}
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"powif64" => {
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@ -327,7 +332,8 @@ fn emulate_intrinsic_by_name(
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// FIXME: Using host floats.
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let f = f64::from_bits(this.read_scalar(f)?.to_u64()?);
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let i = this.read_scalar(i)?.to_i32()?;
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this.write_scalar(Scalar::from_u64(f.powi(i).to_bits()), dest)?;
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let res = f.powi(i);
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this.write_scalar(Scalar::from_u64(res.to_bits()), dest)?;
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}
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"float_to_int_unchecked" => {
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@ -238,14 +238,25 @@ enum Op {
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let dest = this.mplace_index(&dest, i)?;
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// Works for f32 and f64.
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// FIXME: using host floats to work around https://github.com/rust-lang/miri/issues/2468.
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let ty::Float(float_ty) = dest.layout.ty.kind() else {
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span_bug!(this.cur_span(), "{} operand is not a float", intrinsic_name)
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};
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let val = match float_ty {
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FloatTy::F32 =>
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Scalar::from_f32(a.to_f32()?.mul_add(b.to_f32()?, c.to_f32()?).value),
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FloatTy::F64 =>
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Scalar::from_f64(a.to_f64()?.mul_add(b.to_f64()?, c.to_f64()?).value),
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FloatTy::F32 => {
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let a = f32::from_bits(a.to_u32()?);
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let b = f32::from_bits(b.to_u32()?);
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let c = f32::from_bits(c.to_u32()?);
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let res = a.mul_add(b, c);
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Scalar::from_u32(res.to_bits())
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}
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FloatTy::F64 => {
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let a = f64::from_bits(a.to_u64()?);
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let b = f64::from_bits(b.to_u64()?);
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let c = f64::from_bits(c.to_u64()?);
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let res = a.mul_add(b, c);
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Scalar::from_u64(res.to_bits())
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}
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};
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this.write_scalar(val, &dest.into())?;
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}
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@ -32,24 +32,24 @@ pub fn main() {
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assert_approx_eq!(25f32.powi(-2), 0.0016f32);
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assert_approx_eq!(23.2f64.powi(2), 538.24f64);
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assert_approx_eq!(0f32.sin(), 0f32);
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assert_approx_eq!((f64::consts::PI / 2f64).sin(), 1f64);
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assert_approx_eq!(0f32.cos(), 1f32);
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assert_approx_eq!((f64::consts::PI * 2f64).cos(), 1f64);
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assert_approx_eq!(25f32.powf(-2f32), 0.0016f32);
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assert_approx_eq!(400f64.powf(0.5f64), 20f64);
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assert_approx_eq!((1f32.exp() - f32::consts::E).abs(), 0f32);
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assert_approx_eq!(1f32.exp(), f32::consts::E);
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assert_approx_eq!(1f64.exp(), f64::consts::E);
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assert_approx_eq!(1f32.exp_m1(), f32::consts::E - 1.0);
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assert_approx_eq!(1f64.exp_m1(), f64::consts::E - 1.0);
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assert_approx_eq!(10f32.exp2(), 1024f32);
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assert_approx_eq!(50f64.exp2(), 1125899906842624f64);
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assert_approx_eq!((f32::consts::E.ln() - 1f32).abs(), 0f32);
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assert_approx_eq!(f32::consts::E.ln(), 1f32);
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assert_approx_eq!(1f64.ln(), 0f64);
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assert_approx_eq!(0f32.ln_1p(), 0f32);
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assert_approx_eq!(0f64.ln_1p(), 0f64);
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assert_approx_eq!(10f32.log10(), 1f32);
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assert_approx_eq!(f64::consts::E.log10(), f64::consts::LOG10_E);
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@ -60,10 +60,18 @@ pub fn main() {
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assert_eq!(0.0f32.mul_add(-2.0, f32::consts::E), f32::consts::E);
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assert_approx_eq!(3.0f64.mul_add(2.0, 5.0), 11.0);
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assert_eq!(0.0f64.mul_add(-2.0f64, f64::consts::E), f64::consts::E);
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assert_eq!((-3.2f32).mul_add(2.4, f32::NEG_INFINITY), f32::NEG_INFINITY);
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assert_eq!((-3.2f64).mul_add(2.4, f64::NEG_INFINITY), f64::NEG_INFINITY);
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assert_approx_eq!((-1.0f32).abs(), 1.0f32);
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assert_approx_eq!(34.2f64.abs(), 34.2f64);
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#[allow(deprecated)]
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{
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assert_approx_eq!(5.0f32.abs_sub(3.0), 2.0);
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assert_approx_eq!(3.0f64.abs_sub(5.0), 0.0);
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}
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assert_approx_eq!(3.8f32.floor(), 3.0f32);
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assert_approx_eq!((-1.1f64).floor(), -2.0f64);
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@ -79,31 +87,54 @@ pub fn main() {
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assert_approx_eq!(3.0f32.hypot(4.0f32), 5.0f32);
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assert_approx_eq!(3.0f64.hypot(4.0f64), 5.0f64);
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assert_approx_eq!(1.0f32.atan2(2.0f32), 0.46364761f32);
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assert_approx_eq!(1.0f32.atan2(2.0f32), 0.46364761f32);
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assert_approx_eq!(1.0f32.cosh(), 1.54308f32);
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assert_approx_eq!(1.0f64.cosh(), 1.54308f64);
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assert_approx_eq!(1.0f32.sinh(), 1.1752012f32);
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assert_approx_eq!(1.0f64.sinh(), 1.1752012f64);
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assert_approx_eq!(1.0f32.tan(), 1.557408f32);
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assert_approx_eq!(1.0f64.tan(), 1.557408f64);
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assert_approx_eq!(f32::consts::FRAC_PI_4.cos().acos(), f32::consts::FRAC_PI_4);
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assert_approx_eq!(f64::consts::FRAC_PI_4.cos().acos(), f64::consts::FRAC_PI_4);
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assert_approx_eq!(f32::consts::FRAC_PI_4.sin().asin(), f32::consts::FRAC_PI_4);
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assert_approx_eq!(f64::consts::FRAC_PI_4.sin().asin(), f64::consts::FRAC_PI_4);
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assert_approx_eq!(1.0_f32, 1.0_f32.tan().atan());
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assert_approx_eq!(1.0_f64, 1.0_f64.tan().atan());
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assert_eq!(3.3_f32.round(), 3.0);
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assert_eq!(3.3_f64.round(), 3.0);
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assert_eq!(ldexp(0.65f64, 3i32), 5.2f64);
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assert_eq!(ldexp(1.42, 0xFFFF), f64::INFINITY);
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assert_eq!(ldexp(1.42, -0xFFFF), 0f64);
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// Trigonometric functions.
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assert_approx_eq!(0f32.sin(), 0f32);
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assert_approx_eq!((f64::consts::PI / 2f64).sin(), 1f64);
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assert_approx_eq!(f32::consts::FRAC_PI_6.sin(), 0.5);
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assert_approx_eq!(f64::consts::FRAC_PI_6.sin(), 0.5);
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assert_approx_eq!(f32::consts::FRAC_PI_4.sin().asin(), f32::consts::FRAC_PI_4);
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assert_approx_eq!(f64::consts::FRAC_PI_4.sin().asin(), f64::consts::FRAC_PI_4);
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assert_approx_eq!(1.0f32.sinh(), 1.1752012f32);
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assert_approx_eq!(1.0f64.sinh(), 1.1752012f64);
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assert_approx_eq!(2.0f32.asinh(), 1.443635475178810342493276740273105f32);
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assert_approx_eq!((-2.0f64).asinh(), -1.443635475178810342493276740273105f64);
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assert_approx_eq!(0f32.cos(), 1f32);
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assert_approx_eq!((f64::consts::PI * 2f64).cos(), 1f64);
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assert_approx_eq!(f32::consts::FRAC_PI_3.cos(), 0.5);
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assert_approx_eq!(f64::consts::FRAC_PI_3.cos(), 0.5);
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assert_approx_eq!(f32::consts::FRAC_PI_4.cos().acos(), f32::consts::FRAC_PI_4);
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assert_approx_eq!(f64::consts::FRAC_PI_4.cos().acos(), f64::consts::FRAC_PI_4);
|
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assert_approx_eq!(1.0f32.cosh(), 1.54308f32);
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assert_approx_eq!(1.0f64.cosh(), 1.54308f64);
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assert_approx_eq!(2.0f32.acosh(), 1.31695789692481670862504634730796844f32);
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assert_approx_eq!(3.0f64.acosh(), 1.76274717403908605046521864995958461f64);
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assert_approx_eq!(1.0f32.tan(), 1.557408f32);
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assert_approx_eq!(1.0f64.tan(), 1.557408f64);
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assert_approx_eq!(1.0_f32, 1.0_f32.tan().atan());
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assert_approx_eq!(1.0_f64, 1.0_f64.tan().atan());
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assert_approx_eq!(1.0f32.atan2(2.0f32), 0.46364761f32);
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assert_approx_eq!(1.0f32.atan2(2.0f32), 0.46364761f32);
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assert_approx_eq!(
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1.0f32.tanh(),
|
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(1.0 - f32::consts::E.powi(-2)) / (1.0 + f32::consts::E.powi(-2))
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);
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assert_approx_eq!(
|
||||
1.0f64.tanh(),
|
||||
(1.0 - f64::consts::E.powi(-2)) / (1.0 + f64::consts::E.powi(-2))
|
||||
);
|
||||
assert_approx_eq!(0.5f32.atanh(), 0.54930614433405484569762261846126285f32);
|
||||
assert_approx_eq!(0.5f64.atanh(), 0.54930614433405484569762261846126285f64);
|
||||
}
|
||||
|
@ -18,6 +18,11 @@ fn simd_ops_f32() {
|
||||
|
||||
assert_eq!(a.mul_add(b, a), (a * b) + a);
|
||||
assert_eq!(b.mul_add(b, a), (b * b) + a);
|
||||
assert_eq!(a.mul_add(b, b), (a * b) + b);
|
||||
assert_eq!(
|
||||
f32x4::splat(-3.2).mul_add(b, f32x4::splat(f32::NEG_INFINITY)),
|
||||
f32x4::splat(f32::NEG_INFINITY)
|
||||
);
|
||||
assert_eq!((a * a).sqrt(), a);
|
||||
assert_eq!((b * b).sqrt(), b.abs());
|
||||
|
||||
@ -67,6 +72,11 @@ fn simd_ops_f64() {
|
||||
|
||||
assert_eq!(a.mul_add(b, a), (a * b) + a);
|
||||
assert_eq!(b.mul_add(b, a), (b * b) + a);
|
||||
assert_eq!(a.mul_add(b, b), (a * b) + b);
|
||||
assert_eq!(
|
||||
f64x4::splat(-3.2).mul_add(b, f64x4::splat(f64::NEG_INFINITY)),
|
||||
f64x4::splat(f64::NEG_INFINITY)
|
||||
);
|
||||
assert_eq!((a * a).sqrt(), a);
|
||||
assert_eq!((b * b).sqrt(), b.abs());
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user