@@ -1189,6 +1189,10 @@ function modf(x::T) where T<:IEEEFloat
11891189 return (rx, ix)
11901190end
11911191
1192+ @inline function use_power_by_squaring (n:: Integer )
1193+ - 2 ^ 12 <= n <= 3 * 2 ^ 13
1194+ end
1195+
11921196# @constprop aggressive to help the compiler see the switch between the integer and float
11931197# variants for callers with constant `y`
11941198@constprop :aggressive function ^ (x:: Float64 , y:: Float64 )
@@ -1201,24 +1205,33 @@ end
12011205 y = sign (y)* 0x1 .8 p62
12021206 end
12031207 yint = unsafe_trunc (Int64, y) # This is actually safe since julia freezes the result
1204- y == yint && return @noinline x^ yint
1205- 2 * xu== 0 && return abs (y)* Inf * (! (y> 0 )) # if x==0
1206- x< 0 && throw_exp_domainerror (x) # |y| is small enough that y isn't an integer
1207- ! isfinite (x) && return x* (y> 0 || isnan (x)) # x is inf or NaN
1208+ yisint = y == yint
1209+ if yisint
1210+ yint == 0 && return 1.0
1211+ use_power_by_squaring (yint) && return @noinline pow_body (x, yint)
1212+ end
1213+ 2 * xu== 0 && return abs (y)* Inf * (! (y> 0 )) # if x === +0.0 or -0.0 (Inf * false === 0.0)
1214+ s = 1
1215+ if x < 0
1216+ ! yisint && throw_exp_domainerror (x) # y isn't an integer
1217+ s = ifelse (isodd (yint), - 1 , 1 )
1218+ end
1219+ ! isfinite (x) && return copysign (x,s)* (y> 0 || isnan (x)) # x is inf or NaN
1220+ return copysign (pow_body (abs (x), y), s)
1221+ end
1222+
1223+ @assume_effects :foldable @noinline function pow_body (x:: Float64 , y:: Float64 )
1224+ xu = reinterpret (UInt64, x)
12081225 if xu < (UInt64 (1 )<< 52 ) # x is subnormal
12091226 xu = reinterpret (UInt64, x * 0x1 p52) # normalize x
12101227 xu &= ~ sign_mask (Float64)
12111228 xu -= UInt64 (52 ) << 52 # mess with the exponent
12121229 end
1213- return pow_body (xu, y)
1214- end
1215-
1216- @inline function pow_body (xu:: UInt64 , y:: Float64 )
1217- logxhi,logxlo = Base. Math. _log_ext (xu)
1230+ logxhi,logxlo = _log_ext (xu)
12181231 xyhi, xylo = two_mul (logxhi,y)
12191232 xylo = muladd (logxlo, y, xylo)
12201233 hi = xyhi+ xylo
1221- return Base. Math. exp_impl (hi, xylo- (hi- xyhi), Val (:ℯ ))
1234+ return @inline Base. Math. exp_impl (hi, xylo- (hi- xyhi), Val (:ℯ ))
12221235end
12231236
12241237@constprop :aggressive function ^ (x:: T , y:: T ) where T <: Union{Float16, Float32}
@@ -1242,12 +1255,29 @@ end
12421255 return T (exp2 (log2 (abs (widen (x))) * y))
12431256end
12441257
1245- # compensated power by squaring
12461258@constprop :aggressive @inline function ^ (x:: Float64 , n:: Integer )
1259+ x^ clamp (n, Int64)
1260+ end
1261+ @constprop :aggressive @inline function ^ (x:: Float64 , n:: Int64 )
12471262 n == 0 && return one (x)
1248- return pow_body (x, n)
1263+ if use_power_by_squaring (n)
1264+ return pow_body (x, n)
1265+ else
1266+ s = ifelse (x < 0 && isodd (n), - 1.0 , 1.0 )
1267+ x = abs (x)
1268+ y = float (n)
1269+ if y == n
1270+ return copysign (pow_body (x, y), s)
1271+ else
1272+ n2 = n % 1024
1273+ y = float (n - n2)
1274+ return pow_body (x, y) * copysign (pow_body (x, n2), s)
1275+ end
1276+ end
12491277end
12501278
1279+ # compensated power by squaring
1280+ # this method is only reliable for -2^20 < n < 2^20 (cf. #53881 #53886)
12511281@assume_effects :terminates_locally @noinline function pow_body (x:: Float64 , n:: Integer )
12521282 y = 1.0
12531283 xnlo = ynlo = 0.0
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