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use the "symbol" helper function in all exports move all declarations from common.zig to compiler_rt.zig flatten the tree structure somewhat (move contents of tiny files into parent files) No functional changes.
151 lines
3.9 KiB
Zig
151 lines
3.9 KiB
Zig
//! Ported from musl, which is MIT licensed.
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//! https://git.musl-libc.org/cgit/musl/tree/COPYRIGHT
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//!
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//! https://git.musl-libc.org/cgit/musl/tree/src/math/truncf.c
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//! https://git.musl-libc.org/cgit/musl/tree/src/math/trunc.c
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const std = @import("std");
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const math = std.math;
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const mem = std.mem;
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const expect = std.testing.expect;
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const compiler_rt = @import("../compiler_rt.zig");
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const symbol = compiler_rt.symbol;
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comptime {
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symbol(&__trunch, "__trunch");
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symbol(&truncf, "truncf");
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symbol(&trunc, "trunc");
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symbol(&__truncx, "__truncx");
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if (compiler_rt.want_ppc_abi) {
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symbol(&truncq, "truncf128");
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}
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symbol(&truncq, "truncq");
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symbol(&truncl, "truncl");
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}
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pub fn __trunch(x: f16) callconv(.c) f16 {
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// TODO: more efficient implementation
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return @floatCast(truncf(x));
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}
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pub fn truncf(x: f32) callconv(.c) f32 {
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const u: u32 = @bitCast(x);
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var e = @as(i32, @intCast(((u >> 23) & 0xFF))) - 0x7F + 9;
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var m: u32 = undefined;
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if (e >= 23 + 9) {
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return x;
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}
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if (e < 9) {
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e = 1;
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}
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m = @as(u32, math.maxInt(u32)) >> @intCast(e);
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if (u & m == 0) {
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return x;
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} else {
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if (compiler_rt.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120);
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return @bitCast(u & ~m);
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}
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}
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pub fn trunc(x: f64) callconv(.c) f64 {
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const u: u64 = @bitCast(x);
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var e = @as(i32, @intCast(((u >> 52) & 0x7FF))) - 0x3FF + 12;
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var m: u64 = undefined;
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if (e >= 52 + 12) {
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return x;
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}
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if (e < 12) {
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e = 1;
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}
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m = @as(u64, math.maxInt(u64)) >> @intCast(e);
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if (u & m == 0) {
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return x;
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} else {
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if (compiler_rt.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120);
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return @bitCast(u & ~m);
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}
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}
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pub fn __truncx(x: f80) callconv(.c) f80 {
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// TODO: more efficient implementation
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return @floatCast(truncq(x));
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}
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pub fn truncq(x: f128) callconv(.c) f128 {
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const u: u128 = @bitCast(x);
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var e = @as(i32, @intCast(((u >> 112) & 0x7FFF))) - 0x3FFF + 16;
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var m: u128 = undefined;
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if (e >= 112 + 16) {
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return x;
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}
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if (e < 16) {
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e = 1;
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}
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m = @as(u128, math.maxInt(u128)) >> @intCast(e);
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if (u & m == 0) {
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return x;
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} else {
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if (compiler_rt.want_float_exceptions) mem.doNotOptimizeAway(x + 0x1p120);
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return @bitCast(u & ~m);
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}
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}
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pub fn truncl(x: c_longdouble) callconv(.c) c_longdouble {
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switch (@typeInfo(c_longdouble).float.bits) {
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16 => return __trunch(x),
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32 => return truncf(x),
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64 => return trunc(x),
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80 => return __truncx(x),
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128 => return truncq(x),
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else => @compileError("unreachable"),
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}
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}
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test "trunc32" {
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try expect(truncf(1.3) == 1.0);
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try expect(truncf(-1.3) == -1.0);
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try expect(truncf(0.2) == 0.0);
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}
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test "trunc64" {
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try expect(trunc(1.3) == 1.0);
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try expect(trunc(-1.3) == -1.0);
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try expect(trunc(0.2) == 0.0);
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}
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test "trunc128" {
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try expect(truncq(1.3) == 1.0);
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try expect(truncq(-1.3) == -1.0);
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try expect(truncq(0.2) == 0.0);
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}
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test "trunc32.special" {
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try expect(truncf(0.0) == 0.0); // 0x3F800000
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try expect(truncf(-0.0) == -0.0);
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try expect(math.isPositiveInf(truncf(math.inf(f32))));
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try expect(math.isNegativeInf(truncf(-math.inf(f32))));
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try expect(math.isNan(truncf(math.nan(f32))));
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}
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test "trunc64.special" {
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try expect(trunc(0.0) == 0.0);
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try expect(trunc(-0.0) == -0.0);
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try expect(math.isPositiveInf(trunc(math.inf(f64))));
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try expect(math.isNegativeInf(trunc(-math.inf(f64))));
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try expect(math.isNan(trunc(math.nan(f64))));
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}
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test "trunc128.special" {
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try expect(truncq(0.0) == 0.0);
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try expect(truncq(-0.0) == -0.0);
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try expect(math.isPositiveInf(truncq(math.inf(f128))));
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try expect(math.isNegativeInf(truncq(-math.inf(f128))));
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try expect(math.isNan(truncq(math.nan(f128))));
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}
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