authorgravatar for thatlemon@gmail.comLemonBoy <thatlemon@gmail.com> 2020-01-04 11:55:19+01:00
committergravatar for andrew@ziglang.orgAndrew Kelley <andrew@ziglang.org> 2020-01-06 19:08:15-05:00
loge3a63b4e5abd501d58a2fc574b827f3250c14461
tree114c2e109f4ca83e2867af9bcab375430a8d433d
parentd3d77138ecd692a045c478d804d188b3d88c14d5

Add more compiler-rt functions for ARM platform


3 files changed, 144 insertions(+), 0 deletions(-)

lib/std/special/compiler_rt.zig+5
...@@ -75,6 +75,9 @@ comptime {...@@ -75,6 +75,9 @@ comptime {
75 @export("__floatsisf", @import("compiler_rt/floatsiXf.zig").__floatsisf, linkage);75 @export("__floatsisf", @import("compiler_rt/floatsiXf.zig").__floatsisf, linkage);
76 @export("__floatdidf", @import("compiler_rt/floatdidf.zig").__floatdidf, linkage);76 @export("__floatdidf", @import("compiler_rt/floatdidf.zig").__floatdidf, linkage);
77 @export("__floatsitf", @import("compiler_rt/floatsiXf.zig").__floatsitf, linkage);77 @export("__floatsitf", @import("compiler_rt/floatsiXf.zig").__floatsitf, linkage);
78
79 @export("__floatunsisf", @import("compiler_rt/floatunsisf.zig").__floatunsisf, linkage);
80 @export("__floatundisf", @import("compiler_rt/floatundisf.zig").__floatundisf, linkage);
78 @export("__floatunsidf", @import("compiler_rt/floatunsidf.zig").__floatunsidf, linkage);81 @export("__floatunsidf", @import("compiler_rt/floatunsidf.zig").__floatunsidf, linkage);
79 @export("__floatundidf", @import("compiler_rt/floatundidf.zig").__floatundidf, linkage);82 @export("__floatundidf", @import("compiler_rt/floatundidf.zig").__floatundidf, linkage);
8083
...@@ -183,6 +186,8 @@ comptime {...@@ -183,6 +186,8 @@ comptime {
183 @export("__aeabi_l2d", @import("compiler_rt/floatdidf.zig").__floatdidf, linkage);186 @export("__aeabi_l2d", @import("compiler_rt/floatdidf.zig").__floatdidf, linkage);
184 @export("__aeabi_ui2d", @import("compiler_rt/floatunsidf.zig").__floatunsidf, linkage);187 @export("__aeabi_ui2d", @import("compiler_rt/floatunsidf.zig").__floatunsidf, linkage);
185 @export("__aeabi_ul2d", @import("compiler_rt/floatundidf.zig").__floatundidf, linkage);188 @export("__aeabi_ul2d", @import("compiler_rt/floatundidf.zig").__floatundidf, linkage);
189 @export("__aeabi_ui2f", @import("compiler_rt/floatunsisf.zig").__floatunsisf, linkage);
190 @export("__aeabi_ul2f", @import("compiler_rt/floatundisf.zig").__floatundisf, linkage);
186191
187 @export("__aeabi_fneg", @import("compiler_rt/negXf2.zig").__negsf2, linkage);192 @export("__aeabi_fneg", @import("compiler_rt/negXf2.zig").__negsf2, linkage);
188 @export("__aeabi_dneg", @import("compiler_rt/negXf2.zig").__negdf2, linkage);193 @export("__aeabi_dneg", @import("compiler_rt/negXf2.zig").__negdf2, linkage);
lib/std/special/compiler_rt/floatundisf.zig created+86
...@@ -0,0 +1,86 @@
1const builtin = @import("builtin");
2const std = @import("std");
3const maxInt = std.math.maxInt;
4
5const FLT_MANT_DIG = 24;
6
7pub extern fn __floatundisf(arg: u64) f32 {
8 @setRuntimeSafety(builtin.is_test);
9
10 if (arg == 0) return 0;
11
12 var a = arg;
13 const N: usize = @TypeOf(a).bit_count;
14 // Number of significant digits
15 const sd = N - @clz(u64, a);
16 // 8 exponent
17 var e = @intCast(u32, sd) - 1;
18
19 if (sd > FLT_MANT_DIG) {
20 // start: 0000000000000000000001xxxxxxxxxxxxxxxxxxxxxxPQxxxxxxxxxxxxxxxxxx
21 // finish: 000000000000000000000000000000000000001xxxxxxxxxxxxxxxxxxxxxxPQR
22 // 12345678901234567890123456
23 // 1 = msb 1 bit
24 // P = bit FLT_MANT_DIG-1 bits to the right of 1
25 // Q = bit FLT_MANT_DIG bits to the right of 1
26 // R = "or" of all bits to the right of Q
27 switch (sd) {
28 FLT_MANT_DIG + 1 => a <<= 1,
29 FLT_MANT_DIG + 2 => {},
30 else => {
31 const shift_amt = @intCast(u6, ((N + FLT_MANT_DIG + 2) - sd));
32 const all_ones: u64 = maxInt(u64);
33 a = (a >> @intCast(u6, sd - (FLT_MANT_DIG + 2))) |
34 @boolToInt(a & (all_ones >> shift_amt) != 0);
35 },
36 }
37 // Or P into R
38 a |= @boolToInt((a & 4) != 0);
39 // round - this step may add a significant bit
40 a += 1;
41 // dump Q and R
42 a >>= 2;
43 // a is now rounded to FLT_MANT_DIG or FLT_MANT_DIG+1 bits
44 if ((a & (@as(u64, 1) << FLT_MANT_DIG)) != 0) {
45 a >>= 1;
46 e += 1;
47 }
48 // a is now rounded to FLT_MANT_DIG bits
49 } else {
50 a <<= @intCast(u6, FLT_MANT_DIG - sd);
51 // a is now rounded to FLT_MANT_DIG bits
52 }
53
54 const result: u32 = ((e + 127) << 23) | // exponent
55 @truncate(u32, a & 0x007FFFFF); // mantissa
56 return @bitCast(f32, result);
57}
58
59fn test__floatundisf(a: u64, expected: f32) void {
60 std.testing.expectEqual(expected, __floatundisf(a));
61}
62
63test "floatundisf" {
64 test__floatundisf(0, 0.0);
65 test__floatundisf(1, 1.0);
66 test__floatundisf(2, 2.0);
67 test__floatundisf(0x7FFFFF8000000000, 0x1.FFFFFEp+62F);
68 test__floatundisf(0x7FFFFF0000000000, 0x1.FFFFFCp+62F);
69 test__floatundisf(0x8000008000000000, 0x1p+63F);
70 test__floatundisf(0x8000010000000000, 0x1.000002p+63F);
71 test__floatundisf(0x8000000000000000, 0x1p+63F);
72 test__floatundisf(0x8000000000000001, 0x1p+63F);
73 test__floatundisf(0xFFFFFFFFFFFFFFFE, 0x1p+64F);
74 test__floatundisf(0xFFFFFFFFFFFFFFFF, 0x1p+64F);
75 test__floatundisf(0x0007FB72E8000000, 0x1.FEDCBAp+50F);
76 test__floatundisf(0x0007FB72EA000000, 0x1.FEDCBAp+50F);
77 test__floatundisf(0x0007FB72EB000000, 0x1.FEDCBAp+50F);
78 test__floatundisf(0x0007FB72EBFFFFFF, 0x1.FEDCBAp+50F);
79 test__floatundisf(0x0007FB72EC000000, 0x1.FEDCBCp+50F);
80 test__floatundisf(0x0007FB72E8000001, 0x1.FEDCBAp+50F);
81 test__floatundisf(0x0007FB72E6000000, 0x1.FEDCBAp+50F);
82 test__floatundisf(0x0007FB72E7000000, 0x1.FEDCBAp+50F);
83 test__floatundisf(0x0007FB72E7FFFFFF, 0x1.FEDCBAp+50F);
84 test__floatundisf(0x0007FB72E4000001, 0x1.FEDCBAp+50F);
85 test__floatundisf(0x0007FB72E4000000, 0x1.FEDCB8p+50F);
86}
lib/std/special/compiler_rt/floatunsisf.zig created+53
...@@ -0,0 +1,53 @@
1const builtin = @import("builtin");
2const std = @import("std");
3const maxInt = std.math.maxInt;
4
5const significandBits = 23;
6const exponentBias = 127;
7const implicitBit = @as(u32, 1) << significandBits;
8
9pub extern fn __floatunsisf(arg: u32) f32 {
10 @setRuntimeSafety(builtin.is_test);
11
12 if (arg == 0) return 0.0;
13
14 // The exponent is the width of abs(a)
15 const exp = @as(u32, 31) - @clz(u32, arg);
16
17 var mantissa: u32 = undefined;
18 if (exp <= significandBits) {
19 // Shift a into the significand field and clear the implicit bit
20 const shift = @intCast(u5, significandBits - exp);
21 mantissa = @as(u32, arg) << shift ^ implicitBit;
22 } else {
23 const shift = @intCast(u5, exp - significandBits);
24 // Round to the nearest number after truncation
25 mantissa = @as(u32, arg) >> shift ^ implicitBit;
26 // Align to the left and check if the truncated part is halfway over
27 const round = arg << @intCast(u5, 31 - shift);
28 mantissa += @boolToInt(round > 0x80000000);
29 // Tie to even
30 mantissa += mantissa & 1;
31 }
32
33 // Use the addition instead of a or since we may have a carry from the
34 // mantissa to the exponent
35 var result = mantissa;
36 result += (exp + exponentBias) << significandBits;
37
38 return @bitCast(f32, result);
39}
40
41fn test_one_floatunsisf(a: u32, expected: u32) void {
42 const r = __floatunsisf(a);
43 std.testing.expect(@bitCast(u32, r) == expected);
44}
45
46test "floatunsisf" {
47 // Test the produced bit pattern
48 test_one_floatunsisf(0, 0);
49 test_one_floatunsisf(1, 0x3f800000);
50 test_one_floatunsisf(0x7FFFFFFF, 0x4f000000);
51 test_one_floatunsisf(0x80000000, 0x4f000000);
52 test_one_floatunsisf(0xFFFFFFFF, 0x4f800000);
53}