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17e3fcc3a5
Importantly, fixes incorrectly annotated types in `__aeabi_?2h`.
195 lines
5.9 KiB
Zig
195 lines
5.9 KiB
Zig
// Ported from musl, which is licensed under the MIT license:
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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/__rem_pio2.c
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const std = @import("std");
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const rem_pio2_large = @import("rem_pio2_large.zig").rem_pio2_large;
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const math = std.math;
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const toint = 1.5 / math.floatEps(f64);
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// pi/4
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const pio4 = 0x1.921fb54442d18p-1;
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// invpio2: 53 bits of 2/pi
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const invpio2 = 6.36619772367581382433e-01; // 0x3FE45F30, 0x6DC9C883
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// pio2_1: first 33 bit of pi/2
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const pio2_1 = 1.57079632673412561417e+00; // 0x3FF921FB, 0x54400000
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// pio2_1t: pi/2 - pio2_1
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const pio2_1t = 6.07710050650619224932e-11; // 0x3DD0B461, 0x1A626331
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// pio2_2: second 33 bit of pi/2
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const pio2_2 = 6.07710050630396597660e-11; // 0x3DD0B461, 0x1A600000
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// pio2_2t: pi/2 - (pio2_1+pio2_2)
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const pio2_2t = 2.02226624879595063154e-21; // 0x3BA3198A, 0x2E037073
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// pio2_3: third 33 bit of pi/2
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const pio2_3 = 2.02226624871116645580e-21; // 0x3BA3198A, 0x2E000000
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// pio2_3t: pi/2 - (pio2_1+pio2_2+pio2_3)
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const pio2_3t = 8.47842766036889956997e-32; // 0x397B839A, 0x252049C1
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fn medium(ix: u32, x: f64, y: *[2]f64) i32 {
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var w: f64 = undefined;
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var t: f64 = undefined;
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var r: f64 = undefined;
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var @"fn": f64 = undefined;
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var n: i32 = undefined;
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var ex: i32 = undefined;
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var ey: i32 = undefined;
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var ui: u64 = undefined;
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// rint(x/(pi/2))
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@"fn" = x * invpio2 + toint - toint;
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n = @intFromFloat(@"fn");
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r = x - @"fn" * pio2_1;
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w = @"fn" * pio2_1t; // 1st round, good to 85 bits
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// Matters with directed rounding.
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if (r - w < -pio4) {
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n -= 1;
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@"fn" -= 1;
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r = x - @"fn" * pio2_1;
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w = @"fn" * pio2_1t;
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} else if (r - w > pio4) {
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n += 1;
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@"fn" += 1;
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r = x - @"fn" * pio2_1;
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w = @"fn" * pio2_1t;
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}
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y[0] = r - w;
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ui = @bitCast(y[0]);
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ey = @intCast((ui >> 52) & 0x7ff);
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ex = @intCast(ix >> 20);
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if (ex - ey > 16) { // 2nd round, good to 118 bits
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t = r;
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w = @"fn" * pio2_2;
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r = t - w;
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w = @"fn" * pio2_2t - ((t - r) - w);
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y[0] = r - w;
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ui = @bitCast(y[0]);
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ey = @intCast((ui >> 52) & 0x7ff);
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if (ex - ey > 49) { // 3rd round, good to 151 bits, covers all cases
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t = r;
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w = @"fn" * pio2_3;
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r = t - w;
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w = @"fn" * pio2_3t - ((t - r) - w);
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y[0] = r - w;
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}
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}
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y[1] = (r - y[0]) - w;
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return n;
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}
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// Returns the remainder of x rem pi/2 in y[0]+y[1]
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//
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// use rem_pio2_large() for large x
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//
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// caller must handle the case when reduction is not needed: |x| ~<= pi/4 */
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pub fn rem_pio2(x: f64, y: *[2]f64) i32 {
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var z: f64 = undefined;
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var tx: [3]f64 = undefined;
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var ty: [2]f64 = undefined;
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var n: i32 = undefined;
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var ix: u32 = undefined;
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var sign: bool = undefined;
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var i: i32 = undefined;
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var ui: u64 = undefined;
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ui = @bitCast(x);
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sign = ui >> 63 != 0;
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ix = @truncate((ui >> 32) & 0x7fffffff);
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if (ix <= 0x400f6a7a) { // |x| ~<= 5pi/4
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if ((ix & 0xfffff) == 0x921fb) { // |x| ~= pi/2 or 2pi/2
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return medium(ix, x, y);
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}
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if (ix <= 0x4002d97c) { // |x| ~<= 3pi/4
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if (!sign) {
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z = x - pio2_1; // one round good to 85 bits
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y[0] = z - pio2_1t;
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y[1] = (z - y[0]) - pio2_1t;
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return 1;
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} else {
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z = x + pio2_1;
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y[0] = z + pio2_1t;
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y[1] = (z - y[0]) + pio2_1t;
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return -1;
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}
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} else {
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if (!sign) {
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z = x - 2 * pio2_1;
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y[0] = z - 2 * pio2_1t;
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y[1] = (z - y[0]) - 2 * pio2_1t;
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return 2;
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} else {
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z = x + 2 * pio2_1;
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y[0] = z + 2 * pio2_1t;
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y[1] = (z - y[0]) + 2 * pio2_1t;
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return -2;
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}
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}
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}
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if (ix <= 0x401c463b) { // |x| ~<= 9pi/4
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if (ix <= 0x4015fdbc) { // |x| ~<= 7pi/4
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if (ix == 0x4012d97c) { // |x| ~= 3pi/2
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return medium(ix, x, y);
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}
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if (!sign) {
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z = x - 3 * pio2_1;
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y[0] = z - 3 * pio2_1t;
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y[1] = (z - y[0]) - 3 * pio2_1t;
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return 3;
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} else {
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z = x + 3 * pio2_1;
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y[0] = z + 3 * pio2_1t;
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y[1] = (z - y[0]) + 3 * pio2_1t;
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return -3;
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}
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} else {
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if (ix == 0x401921fb) { // |x| ~= 4pi/2 */
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return medium(ix, x, y);
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}
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if (!sign) {
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z = x - 4 * pio2_1;
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y[0] = z - 4 * pio2_1t;
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y[1] = (z - y[0]) - 4 * pio2_1t;
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return 4;
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} else {
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z = x + 4 * pio2_1;
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y[0] = z + 4 * pio2_1t;
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y[1] = (z - y[0]) + 4 * pio2_1t;
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return -4;
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}
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}
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}
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if (ix < 0x413921fb) { // |x| ~< 2^20*(pi/2), medium size
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return medium(ix, x, y);
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}
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// all other (large) arguments
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if (ix >= 0x7ff00000) { // x is inf or NaN
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y[0] = x - x;
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y[1] = y[0];
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return 0;
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}
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// set z = scalbn(|x|,-ilogb(x)+23)
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ui = @bitCast(x);
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ui &= std.math.maxInt(u64) >> 12;
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ui |= @as(u64, 0x3ff + 23) << 52;
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z = @bitCast(ui);
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i = 0;
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while (i < 2) : (i += 1) {
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tx[@intCast(i)] = @floatFromInt(@as(i32, @intFromFloat(z)));
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z = (z - tx[@intCast(i)]) * 0x1p24;
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}
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tx[@intCast(i)] = z;
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// skip zero terms, first term is non-zero
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while (tx[@intCast(i)] == 0.0) {
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i -= 1;
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}
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n = rem_pio2_large(tx[0..], ty[0..], @as(i32, @intCast((ix >> 20))) - (0x3ff + 23), i + 1, 1);
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if (sign) {
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y[0] = -ty[0];
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y[1] = -ty[1];
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return -n;
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}
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y[0] = ty[0];
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y[1] = ty[1];
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return n;
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}
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