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miri: make float min/max non-deterministic
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@ -747,7 +747,13 @@ impl<'tcx, M: Machine<'tcx>> InterpCx<'tcx, M> {
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{
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let a: F = self.read_scalar(&args[0])?.to_float()?;
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let b: F = self.read_scalar(&args[1])?.to_float()?;
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let res = self.adjust_nan(a.min(b), &[a, b]);
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let res = if a == b {
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// They are definitely not NaN (those are never equal), but they could be `+0` and `-0`.
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// Let the machine decide which one to return.
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M::equal_float_min_max(self, a, b)
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} else {
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self.adjust_nan(a.min(b), &[a, b])
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};
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self.write_scalar(res, dest)?;
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interp_ok(())
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}
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@ -762,7 +768,13 @@ impl<'tcx, M: Machine<'tcx>> InterpCx<'tcx, M> {
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{
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let a: F = self.read_scalar(&args[0])?.to_float()?;
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let b: F = self.read_scalar(&args[1])?.to_float()?;
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let res = self.adjust_nan(a.max(b), &[a, b]);
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let res = if a == b {
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// They are definitely not NaN (those are never equal), but they could be `+0` and `-0`.
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// Let the machine decide which one to return.
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M::equal_float_min_max(self, a, b)
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} else {
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self.adjust_nan(a.max(b), &[a, b])
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};
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self.write_scalar(res, dest)?;
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interp_ok(())
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}
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@ -278,6 +278,12 @@ pub trait Machine<'tcx>: Sized {
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F2::NAN
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}
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/// Determines the result of `min`/`max` on floats when the arguments are equal.
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fn equal_float_min_max<F: Float>(_ecx: &InterpCx<'tcx, Self>, a: F, _b: F) -> F {
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// By default, we pick the left argument.
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a
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}
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/// Called before a basic block terminator is executed.
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#[inline]
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fn before_terminator(_ecx: &mut InterpCx<'tcx, Self>) -> InterpResult<'tcx> {
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@ -11,6 +11,7 @@ use std::{fmt, process};
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use rand::rngs::StdRng;
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use rand::{Rng, SeedableRng};
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use rustc_abi::{Align, ExternAbi, Size};
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use rustc_apfloat::{Float, FloatConvert};
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use rustc_attr_parsing::InlineAttr;
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use rustc_data_structures::fx::{FxHashMap, FxHashSet};
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#[allow(unused)]
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@ -1129,20 +1130,24 @@ impl<'tcx> Machine<'tcx> for MiriMachine<'tcx> {
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}
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#[inline(always)]
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fn generate_nan<
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F1: rustc_apfloat::Float + rustc_apfloat::FloatConvert<F2>,
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F2: rustc_apfloat::Float,
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>(
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fn generate_nan<F1: Float + FloatConvert<F2>, F2: Float>(
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ecx: &InterpCx<'tcx, Self>,
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inputs: &[F1],
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) -> F2 {
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ecx.generate_nan(inputs)
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}
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#[inline(always)]
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fn equal_float_min_max<F: Float>(ecx: &MiriInterpCx<'tcx>, a: F, b: F) -> F {
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ecx.equal_float_min_max(a, b)
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}
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#[inline(always)]
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fn ub_checks(ecx: &InterpCx<'tcx, Self>) -> InterpResult<'tcx, bool> {
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interp_ok(ecx.tcx.sess.ub_checks())
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}
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#[inline(always)]
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fn thread_local_static_pointer(
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ecx: &mut MiriInterpCx<'tcx>,
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def_id: DefId,
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@ -115,4 +115,11 @@ pub trait EvalContextExt<'tcx>: crate::MiriInterpCxExt<'tcx> {
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nan
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}
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}
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fn equal_float_min_max<F: Float>(&self, a: F, b: F) -> F {
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let this = self.eval_context_ref();
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// Return one side non-deterministically.
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let mut rand = this.machine.rng.borrow_mut();
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if rand.gen() { a } else { b }
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}
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}
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@ -31,6 +31,7 @@ fn main() {
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test_fast();
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test_algebraic();
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test_fmuladd();
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test_min_max_nondet();
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}
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trait Float: Copy + PartialEq + Debug {
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@ -1211,3 +1212,30 @@ fn test_fmuladd() {
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test_operations_f32(0.1, 0.2, 0.3);
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test_operations_f64(1.1, 1.2, 1.3);
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}
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/// `min` and `max` on equal arguments are non-deterministic.
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fn test_min_max_nondet() {
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/// Ensure that if we call the closure often enough, we see both `true` and `false.`
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#[track_caller]
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fn ensure_both(f: impl Fn() -> bool) {
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let rounds = 16;
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let first = f();
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for _ in 1..rounds {
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if f() != first {
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// We saw two different values!
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return;
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}
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}
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// We saw the same thing N times.
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panic!("expected non-determinism, got {rounds} times the same result: {first:?}");
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}
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ensure_both(|| f16::min(0.0, -0.0).is_sign_positive());
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ensure_both(|| f16::max(0.0, -0.0).is_sign_positive());
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ensure_both(|| f32::min(0.0, -0.0).is_sign_positive());
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ensure_both(|| f32::max(0.0, -0.0).is_sign_positive());
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ensure_both(|| f64::min(0.0, -0.0).is_sign_positive());
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ensure_both(|| f64::max(0.0, -0.0).is_sign_positive());
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ensure_both(|| f128::min(0.0, -0.0).is_sign_positive());
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ensure_both(|| f128::max(0.0, -0.0).is_sign_positive());
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}
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