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c8067ba0c0
* Squashed 'deps/math-neon/' content from commit 0050735 git-subtree-dir: deps/math-neon git-subtree-split: 0050735ae8f18281c1e6fbe2dc80546e402b7fc5 * Squashed 'deps/vitaGL/' content from commit 694b387 git-subtree-dir: deps/vitaGL git-subtree-split: 694b387a6eacf7e179f07ff621e5772ae4253315 * (Vita) Add baked math-neon and vitaGL
164 lines
4.5 KiB
C
164 lines
4.5 KiB
C
/*
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The MIT License (MIT)
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Copyright (c) 2015 Lachlan Tychsen-Smith (lachlan.ts@gmail.com)
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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*/
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#include "math.h"
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#include "math_neon.h"
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const float __sincosf_rng[2] = {
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2.0 / M_PI,
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M_PI / 2.0
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};
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const float __sincosf_lut[8] = {
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-0.00018365f, //p7
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-0.00018365f, //p7
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+0.00830636f, //p5
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+0.00830636f, //p5
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-0.16664831f, //p3
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-0.16664831f, //p3
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+0.99999661f, //p1
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+0.99999661f, //p1
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};
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void sincosf_c( float x, float r[2])
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{
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union {
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float f;
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int i;
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} ax, bx;
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float y;
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float a, b, c, d, xx, yy;
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int m, n, o, p;
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y = x + __sincosf_rng[1];
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ax.f = fabsf(x);
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bx.f = fabsf(y);
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//Range Reduction:
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m = (int) (ax.f * __sincosf_rng[0]);
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o = (int) (bx.f * __sincosf_rng[0]);
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ax.f = ax.f - (((float)m) * __sincosf_rng[1]);
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bx.f = bx.f - (((float)o) * __sincosf_rng[1]);
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//Test Quadrant
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n = m & 1;
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p = o & 1;
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ax.f = ax.f - n * __sincosf_rng[1];
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bx.f = bx.f - p * __sincosf_rng[1];
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m = m >> 1;
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o = o >> 1;
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n = n ^ m;
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p = p ^ o;
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m = (x < 0.0);
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o = (y < 0.0);
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n = n ^ m;
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p = p ^ o;
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n = n << 31;
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p = p << 31;
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ax.i = ax.i ^ n;
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bx.i = bx.i ^ p;
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//Taylor Polynomial
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xx = ax.f * ax.f;
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yy = bx.f * bx.f;
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r[0] = __sincosf_lut[0];
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r[1] = __sincosf_lut[1];
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r[0] = r[0] * xx + __sincosf_lut[2];
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r[1] = r[1] * yy + __sincosf_lut[3];
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r[0] = r[0] * xx + __sincosf_lut[4];
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r[1] = r[1] * yy + __sincosf_lut[5];
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r[0] = r[0] * xx + __sincosf_lut[6];
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r[1] = r[1] * yy + __sincosf_lut[7];
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r[0] = r[0] * ax.f;
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r[1] = r[1] * bx.f;
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}
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void sincosf_neon_hfp(float x, float r[2])
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{
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//HACK: Assumes for softfp that r1 = x, and for hardfp that s0 = x.
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#ifdef __MATH_NEON
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asm volatile (
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//{x, y} = {x, x + pi/2}
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"vdup.f32 d1, d0[0] \n\t" //d1 = {x, x}
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"vld1.32 d3, [%1] \n\t" //d3 = {invrange, range}
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"vadd.f32 d0, d1, d3 \n\t" //d0 = d1 + d3
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"vmov.f32 s0, s2 \n\t" //d0[0] = d1[0]
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"vabs.f32 d1, d0 \n\t" //d1 = {abs(x), abs(y)}
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//Range Reduction:
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"vmul.f32 d2, d1, d3[0] \n\t" //d2 = d1 * d3[0]
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"vcvt.u32.f32 d2, d2 \n\t" //d2 = (int) d2
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"vcvt.f32.u32 d4, d2 \n\t" //d4 = (float) d2
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"vmls.f32 d1, d4, d3[1] \n\t" //d1 = d1 - d4 * d3[1]
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//Checking Quadrant:
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//ax = ax - (k&1) * M_PI_2
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"vmov.i32 d4, #1 \n\t" //d4 = 1
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"vand.i32 d4, d4, d2 \n\t" //d4 = d4 & d2
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"vcvt.f32.u32 d5, d4 \n\t" //d5 = (float) d4
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"vmls.f32 d1, d5, d3[1] \n\t" //d1 = d1 - d5 * d3[1]
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//ax = ax ^ ((k & 1) ^ (k >> 1) ^ (x < 0) << 31)
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"vshr.u32 d3, d2, #1 \n\t" //d3 = d2 >> 1
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"veor.i32 d4, d4, d3 \n\t" //d4 = d4 ^ d3
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"vclt.f32 d3, d0, #0 \n\t" //d3 = (d0 < 0.0)
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"veor.i32 d4, d4, d3 \n\t" //d4 = d4 ^ d3
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"vshl.i32 d4, d4, #31 \n\t" //d4 = d4 << 31
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"veor.i32 d0, d1, d4 \n\t" //d0 = d1 ^ d4
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//polynomial:
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"vldm %2!, {d2, d3} \n\t" //d2 = {p7, p7}, d3 = {p5, p5}, r3 += 4;
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"vmul.f32 d1, d0, d0 \n\t" //d1 = d0 * d0 = {x^2, y^2}
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"vldm %2!, {d4} \n\t" //d4 = {p3, p3}, r3 += 2;
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"vmla.f32 d3, d2, d1 \n\t" //d3 = d3 + d2 * d1;
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"vldm %2!, {d5} \n\t" //d5 = {p1, p1}, r3 += 2;
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"vmla.f32 d4, d3, d1 \n\t" //d4 = d4 + d3 * d1;
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"vmla.f32 d5, d4, d1 \n\t" //d5 = d5 + d4 * d1;
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"vmul.f32 d5, d5, d0 \n\t" //d5 = d5 * d0;
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"vstm.f32 %0, {d5} \n\t" //r[0] = d5[0], r[1]=d5[1];
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: "+r"(r)
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: "r"(__sincosf_rng), "r"(__sincosf_lut)
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: "d0", "d1", "d2", "d3", "d4", "d5"
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);
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#else
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sincosf_c(x, r);
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#endif
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}
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void sincosf_neon_sfp(float x, float r[2])
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{
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#ifdef __MATH_NEON
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asm volatile ("vdup.f32 d0, r0 \n\t");
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sincosf_neon_hfp(x, r);
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asm volatile ("vmov.f32 r0, s0 \n\t");
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#else
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sincosf_c(x, r);
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#endif
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};
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