| author | |
| committer | |
| log | 0c6aa44bc3c0670f3533c503ad9921c2439d8e35 |
| tree | 7146183792e8241eed109c763a25558c8be08f65 |
| parent | eac7fd4da5992299a1f2fb59c5aa237c0c6c6761 |
11 files changed, 33 insertions(+), 31 deletions(-)
lib/compiler_rt/ceil.zig+4-4| ... | ... | @@ -48,14 +48,14 @@ pub fn ceilf(x: f32) callconv(.C) f32 { |
| 48 | 48 | if (u & m == 0) { |
| 49 | 49 | return x; |
| 50 | 50 | } |
| 51 | mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 51 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 52 | 52 | if (u >> 31 == 0) { |
| 53 | 53 | u += m; |
| 54 | 54 | } |
| 55 | 55 | u &= ~m; |
| 56 | 56 | return @bitCast(u); |
| 57 | 57 | } else { |
| 58 | mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 58 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 59 | 59 | if (u >> 31 != 0) { |
| 60 | 60 | return -0.0; |
| 61 | 61 | } else { |
| ... | ... | @@ -82,7 +82,7 @@ pub fn ceil(x: f64) callconv(.C) f64 { |
| 82 | 82 | } |
| 83 | 83 | |
| 84 | 84 | if (e <= 0x3FF - 1) { |
| 85 | mem.doNotOptimizeAway(y); | |
| 85 | if (common.want_float_exceptions) mem.doNotOptimizeAway(y); | |
| 86 | 86 | if (u >> 63 != 0) { |
| 87 | 87 | return -0.0; |
| 88 | 88 | } else { |
| ... | ... | @@ -116,7 +116,7 @@ pub fn ceilq(x: f128) callconv(.C) f128 { |
| 116 | 116 | } |
| 117 | 117 | |
| 118 | 118 | if (e <= 0x3FFF - 1) { |
| 119 | mem.doNotOptimizeAway(y); | |
| 119 | if (common.want_float_exceptions) mem.doNotOptimizeAway(y); | |
| 120 | 120 | if (u >> 127 != 0) { |
| 121 | 121 | return -0.0; |
| 122 | 122 | } else { |
lib/compiler_rt/common.zig+2| ... | ... | @@ -24,6 +24,8 @@ pub const want_aeabi = switch (builtin.abi) { |
| 24 | 24 | }; |
| 25 | 25 | pub const want_ppc_abi = builtin.cpu.arch.isPPC() or builtin.cpu.arch.isPPC64(); |
| 26 | 26 | |
| 27 | pub const want_float_exceptions = !builtin.cpu.arch.isWasm(); | |
| 28 | ||
| 27 | 29 | // Libcalls that involve u128 on Windows x86-64 are expected by LLVM to use the |
| 28 | 30 | // calling convention of @Vector(2, u64), rather than what's standard. |
| 29 | 31 | pub const want_windows_v2u64_abi = builtin.os.tag == .windows and builtin.cpu.arch == .x86_64 and @import("builtin").object_format != .c; |
lib/compiler_rt/cos.zig+2-2| ... | ... | @@ -41,7 +41,7 @@ pub fn cosf(x: f32) callconv(.C) f32 { |
| 41 | 41 | if (ix <= 0x3f490fda) { // |x| ~<= pi/4 |
| 42 | 42 | if (ix < 0x39800000) { // |x| < 2**-12 |
| 43 | 43 | // raise inexact if x != 0 |
| 44 | mem.doNotOptimizeAway(x + 0x1p120); | |
| 44 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120); | |
| 45 | 45 | return 1.0; |
| 46 | 46 | } |
| 47 | 47 | return trig.__cosdf(x); |
| ... | ... | @@ -92,7 +92,7 @@ pub fn cos(x: f64) callconv(.C) f64 { |
| 92 | 92 | if (ix <= 0x3fe921fb) { |
| 93 | 93 | if (ix < 0x3e46a09e) { // |x| < 2**-27 * sqrt(2) |
| 94 | 94 | // raise inexact if x!=0 |
| 95 | mem.doNotOptimizeAway(x + 0x1p120); | |
| 95 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120); | |
| 96 | 96 | return 1.0; |
| 97 | 97 | } |
| 98 | 98 | return trig.__cos(x, 0); |
lib/compiler_rt/exp.zig+4-4| ... | ... | @@ -59,7 +59,7 @@ pub fn expf(x_: f32) callconv(.C) f32 { |
| 59 | 59 | return x * 0x1.0p127; |
| 60 | 60 | } |
| 61 | 61 | if (sign != 0) { |
| 62 | mem.doNotOptimizeAway(-0x1.0p-149 / x); // overflow | |
| 62 | if (common.want_float_exceptions) mem.doNotOptimizeAway(-0x1.0p-149 / x); // overflow | |
| 63 | 63 | // x <= -103.972084 |
| 64 | 64 | if (hx >= 0x42CFF1B5) { |
| 65 | 65 | return 0; |
| ... | ... | @@ -91,7 +91,7 @@ pub fn expf(x_: f32) callconv(.C) f32 { |
| 91 | 91 | hi = x; |
| 92 | 92 | lo = 0; |
| 93 | 93 | } else { |
| 94 | mem.doNotOptimizeAway(0x1.0p127 + x); // inexact | |
| 94 | if (common.want_float_exceptions) mem.doNotOptimizeAway(0x1.0p127 + x); // inexact | |
| 95 | 95 | return 1 + x; |
| 96 | 96 | } |
| 97 | 97 | |
| ... | ... | @@ -142,7 +142,7 @@ pub fn exp(x_: f64) callconv(.C) f64 { |
| 142 | 142 | } |
| 143 | 143 | if (x < -708.39641853226410622) { |
| 144 | 144 | // underflow if x != -inf |
| 145 | // mem.doNotOptimizeAway(@as(f32, -0x1.0p-149 / x)); | |
| 145 | // if (common.want_float_exceptions) mem.doNotOptimizeAway(@as(f32, -0x1.0p-149 / x)); | |
| 146 | 146 | if (x < -745.13321910194110842) { |
| 147 | 147 | return 0; |
| 148 | 148 | } |
| ... | ... | @@ -175,7 +175,7 @@ pub fn exp(x_: f64) callconv(.C) f64 { |
| 175 | 175 | lo = 0; |
| 176 | 176 | } else { |
| 177 | 177 | // inexact if x != 0 |
| 178 | // mem.doNotOptimizeAway(0x1.0p1023 + x); | |
| 178 | // if (common.want_float_exceptions) mem.doNotOptimizeAway(0x1.0p1023 + x); | |
| 179 | 179 | return 1 + x; |
| 180 | 180 | } |
| 181 | 181 |
lib/compiler_rt/exp2.zig+2-2| ... | ... | @@ -55,7 +55,7 @@ pub fn exp2f(x: f32) callconv(.C) f32 { |
| 55 | 55 | // x < -126 |
| 56 | 56 | if (u >= 0x80000000) { |
| 57 | 57 | if (u >= 0xC3160000 or u & 0x000FFFF != 0) { |
| 58 | mem.doNotOptimizeAway(-0x1.0p-149 / x); | |
| 58 | if (common.want_float_exceptions) mem.doNotOptimizeAway(-0x1.0p-149 / x); | |
| 59 | 59 | } |
| 60 | 60 | // x <= -150 |
| 61 | 61 | if (u >= 0x3160000) { |
| ... | ... | @@ -120,7 +120,7 @@ pub fn exp2(x: f64) callconv(.C) f64 { |
| 120 | 120 | if (ux >> 63 != 0) { |
| 121 | 121 | // underflow |
| 122 | 122 | if (x <= -1075 or x - 0x1.0p52 + 0x1.0p52 != x) { |
| 123 | mem.doNotOptimizeAway(@as(f32, @floatCast(-0x1.0p-149 / x))); | |
| 123 | if (common.want_float_exceptions) mem.doNotOptimizeAway(@as(f32, @floatCast(-0x1.0p-149 / x))); | |
| 124 | 124 | } |
| 125 | 125 | if (x <= -1075) { |
| 126 | 126 | return 0; |
lib/compiler_rt/floor.zig+6-6| ... | ... | @@ -45,13 +45,13 @@ pub fn __floorh(x: f16) callconv(.C) f16 { |
| 45 | 45 | if (u & m == 0) { |
| 46 | 46 | return x; |
| 47 | 47 | } |
| 48 | mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 48 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 49 | 49 | if (u >> 15 != 0) { |
| 50 | 50 | u += m; |
| 51 | 51 | } |
| 52 | 52 | return @bitCast(u & ~m); |
| 53 | 53 | } else { |
| 54 | mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 54 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 55 | 55 | if (u >> 15 == 0) { |
| 56 | 56 | return 0.0; |
| 57 | 57 | } else { |
| ... | ... | @@ -79,13 +79,13 @@ pub fn floorf(x: f32) callconv(.C) f32 { |
| 79 | 79 | if (u & m == 0) { |
| 80 | 80 | return x; |
| 81 | 81 | } |
| 82 | mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 82 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 83 | 83 | if (u >> 31 != 0) { |
| 84 | 84 | u += m; |
| 85 | 85 | } |
| 86 | 86 | return @bitCast(u & ~m); |
| 87 | 87 | } else { |
| 88 | mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 88 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1.0p120); | |
| 89 | 89 | if (u >> 31 == 0) { |
| 90 | 90 | return 0.0; |
| 91 | 91 | } else { |
| ... | ... | @@ -112,7 +112,7 @@ pub fn floor(x: f64) callconv(.C) f64 { |
| 112 | 112 | } |
| 113 | 113 | |
| 114 | 114 | if (e <= 0x3FF - 1) { |
| 115 | mem.doNotOptimizeAway(y); | |
| 115 | if (common.want_float_exceptions) mem.doNotOptimizeAway(y); | |
| 116 | 116 | if (u >> 63 != 0) { |
| 117 | 117 | return -1.0; |
| 118 | 118 | } else { |
| ... | ... | @@ -146,7 +146,7 @@ pub fn floorq(x: f128) callconv(.C) f128 { |
| 146 | 146 | } |
| 147 | 147 | |
| 148 | 148 | if (e <= 0x3FFF - 1) { |
| 149 | mem.doNotOptimizeAway(y); | |
| 149 | if (common.want_float_exceptions) mem.doNotOptimizeAway(y); | |
| 150 | 150 | if (u >> 127 != 0) { |
| 151 | 151 | return -1.0; |
| 152 | 152 | } else { |
lib/compiler_rt/round.zig+3-3| ... | ... | @@ -46,7 +46,7 @@ pub fn roundf(x_: f32) callconv(.C) f32 { |
| 46 | 46 | x = -x; |
| 47 | 47 | } |
| 48 | 48 | if (e < 0x7F - 1) { |
| 49 | mem.doNotOptimizeAway(x + f32_toint); | |
| 49 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + f32_toint); | |
| 50 | 50 | return 0 * @as(f32, @bitCast(u)); |
| 51 | 51 | } |
| 52 | 52 | |
| ... | ... | @@ -81,7 +81,7 @@ pub fn round(x_: f64) callconv(.C) f64 { |
| 81 | 81 | x = -x; |
| 82 | 82 | } |
| 83 | 83 | if (e < 0x3ff - 1) { |
| 84 | mem.doNotOptimizeAway(x + f64_toint); | |
| 84 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + f64_toint); | |
| 85 | 85 | return 0 * @as(f64, @bitCast(u)); |
| 86 | 86 | } |
| 87 | 87 | |
| ... | ... | @@ -121,7 +121,7 @@ pub fn roundq(x_: f128) callconv(.C) f128 { |
| 121 | 121 | x = -x; |
| 122 | 122 | } |
| 123 | 123 | if (e < 0x3FFF - 1) { |
| 124 | mem.doNotOptimizeAway(x + f128_toint); | |
| 124 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + f128_toint); | |
| 125 | 125 | return 0 * @as(f128, @bitCast(u)); |
| 126 | 126 | } |
| 127 | 127 |
lib/compiler_rt/sin.zig+2-2| ... | ... | @@ -49,7 +49,7 @@ pub fn sinf(x: f32) callconv(.C) f32 { |
| 49 | 49 | if (ix <= 0x3f490fda) { // |x| ~<= pi/4 |
| 50 | 50 | if (ix < 0x39800000) { // |x| < 2**-12 |
| 51 | 51 | // raise inexact if x!=0 and underflow if subnormal |
| 52 | mem.doNotOptimizeAway(if (ix < 0x00800000) x / 0x1p120 else x + 0x1p120); | |
| 52 | if (common.want_float_exceptions) mem.doNotOptimizeAway(if (ix < 0x00800000) x / 0x1p120 else x + 0x1p120); | |
| 53 | 53 | return x; |
| 54 | 54 | } |
| 55 | 55 | return trig.__sindf(x); |
| ... | ... | @@ -98,7 +98,7 @@ pub fn sin(x: f64) callconv(.C) f64 { |
| 98 | 98 | if (ix <= 0x3fe921fb) { |
| 99 | 99 | if (ix < 0x3e500000) { // |x| < 2**-26 |
| 100 | 100 | // raise inexact if x != 0 and underflow if subnormal |
| 101 | mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 101 | if (common.want_float_exceptions) mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 102 | 102 | return x; |
| 103 | 103 | } |
| 104 | 104 | return trig.__sin(x, 0.0, 0); |
lib/compiler_rt/sincos.zig+3-3| ... | ... | @@ -46,7 +46,7 @@ pub fn sincosf(x: f32, r_sin: *f32, r_cos: *f32) callconv(.C) void { |
| 46 | 46 | // |x| < 2**-12 |
| 47 | 47 | if (ix < 0x39800000) { |
| 48 | 48 | // raise inexact if x!=0 and underflow if subnormal |
| 49 | mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 49 | if (common.want_float_exceptions) mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 50 | 50 | r_sin.* = x; |
| 51 | 51 | r_cos.* = 1.0; |
| 52 | 52 | return; |
| ... | ... | @@ -134,7 +134,7 @@ pub fn sincos(x: f64, r_sin: *f64, r_cos: *f64) callconv(.C) void { |
| 134 | 134 | // if |x| < 2**-27 * sqrt(2) |
| 135 | 135 | if (ix < 0x3e46a09e) { |
| 136 | 136 | // raise inexact if x != 0 and underflow if subnormal |
| 137 | mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 137 | if (common.want_float_exceptions) mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 138 | 138 | r_sin.* = x; |
| 139 | 139 | r_cos.* = 1.0; |
| 140 | 140 | return; |
| ... | ... | @@ -232,7 +232,7 @@ inline fn sincos_generic(comptime F: type, x: F, r_sin: *F, r_cos: *F) void { |
| 232 | 232 | if (se < 0x3fff - math.floatFractionalBits(F) - 1) { |
| 233 | 233 | // raise underflow if subnormal |
| 234 | 234 | if (se == 0) { |
| 235 | mem.doNotOptimizeAway(x * 0x1p-120); | |
| 235 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x * 0x1p-120); | |
| 236 | 236 | } |
| 237 | 237 | r_sin.* = x; |
| 238 | 238 | // raise inexact if x!=0 |
lib/compiler_rt/tan.zig+2-2| ... | ... | @@ -51,7 +51,7 @@ pub fn tanf(x: f32) callconv(.C) f32 { |
| 51 | 51 | if (ix <= 0x3f490fda) { // |x| ~<= pi/4 |
| 52 | 52 | if (ix < 0x39800000) { // |x| < 2**-12 |
| 53 | 53 | // raise inexact if x!=0 and underflow if subnormal |
| 54 | mem.doNotOptimizeAway(if (ix < 0x00800000) x / 0x1p120 else x + 0x1p120); | |
| 54 | if (common.want_float_exceptions) mem.doNotOptimizeAway(if (ix < 0x00800000) x / 0x1p120 else x + 0x1p120); | |
| 55 | 55 | return x; |
| 56 | 56 | } |
| 57 | 57 | return kernel.__tandf(x, false); |
| ... | ... | @@ -89,7 +89,7 @@ pub fn tan(x: f64) callconv(.C) f64 { |
| 89 | 89 | if (ix <= 0x3fe921fb) { |
| 90 | 90 | if (ix < 0x3e400000) { // |x| < 2**-27 |
| 91 | 91 | // raise inexact if x!=0 and underflow if subnormal |
| 92 | mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 92 | if (common.want_float_exceptions) mem.doNotOptimizeAway(if (ix < 0x00100000) x / 0x1p120 else x + 0x1p120); | |
| 93 | 93 | return x; |
| 94 | 94 | } |
| 95 | 95 | return kernel.__tan(x, 0.0, false); |
lib/compiler_rt/trunc.zig+3-3| ... | ... | @@ -47,7 +47,7 @@ pub fn truncf(x: f32) callconv(.C) f32 { |
| 47 | 47 | if (u & m == 0) { |
| 48 | 48 | return x; |
| 49 | 49 | } else { |
| 50 | mem.doNotOptimizeAway(x + 0x1p120); | |
| 50 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120); | |
| 51 | 51 | return @bitCast(u & ~m); |
| 52 | 52 | } |
| 53 | 53 | } |
| ... | ... | @@ -68,7 +68,7 @@ pub fn trunc(x: f64) callconv(.C) f64 { |
| 68 | 68 | if (u & m == 0) { |
| 69 | 69 | return x; |
| 70 | 70 | } else { |
| 71 | mem.doNotOptimizeAway(x + 0x1p120); | |
| 71 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120); | |
| 72 | 72 | return @bitCast(u & ~m); |
| 73 | 73 | } |
| 74 | 74 | } |
| ... | ... | @@ -94,7 +94,7 @@ pub fn truncq(x: f128) callconv(.C) f128 { |
| 94 | 94 | if (u & m == 0) { |
| 95 | 95 | return x; |
| 96 | 96 | } else { |
| 97 | mem.doNotOptimizeAway(x + 0x1p120); | |
| 97 | if (common.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120); | |
| 98 | 98 | return @bitCast(u & ~m); |
| 99 | 99 | } |
| 100 | 100 | } |