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$assert (P, H) in [(3, 2)] |
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$assert not PS or (P, H) == (4, 3) |
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$assert DIV in ["DIV", "RECPEADJ", "NR1RECPS", "NR1FMA"] |
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$assert BATCH_TILE % 8 == 0 |
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$assert BATCH_TILE >= 8 |
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$SIMD_TILE = BATCH_TILE |
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$ABC = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ" |
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#include <assert.h> |
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#include <arm_neon.h> |
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#include <xnnpack/common.h> |
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#include <xnnpack/microparams.h> |
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$POLY_SUFFIX = "p%dh%d%s" % (P, H, "ps" if PS else "ts") |
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$DIV_SUFFIX = DIV.lower() |
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$ISA = "aarch64_neonfp16arith" if DIV == "DIV" else "neonfp16arith" |
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void xnn_f16_vtanh_ukernel__${ISA}_expm1minus_rr1_${POLY_SUFFIX}_${DIV_SUFFIX}_x${BATCH_TILE}( |
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size_t n, |
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const void* input, |
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void* output, |
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const union xnn_f16_tanh_params params[restrict XNN_MIN_ELEMENTS(1)]) XNN_OOB_READS |
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{ |
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assert(n != 0); |
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assert(n % sizeof(uint16_t) == 0); |
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assert(input != NULL); |
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assert(output != NULL); |
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const float16x8_t vsat_cutoff = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0x4482))); |
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const float16x8_t vmagic_bias = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0x620F))); |
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const float16x8_t vminus_log2e = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0xBDC5))); |
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const float16x8_t vln2 = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0x398C))); |
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const float16x8_t vc3 = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0xBD5B))); |
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const float16x8_t vc2 = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0x4008))); |
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const float16x8_t vtwo = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0x4000))); |
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const float16x8_t vminus_one = vreinterpretq_f16_u16(vmovq_n_u16(UINT16_C(0xBC00))); |
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const uint16x8_t vsign_mask = vmovq_n_u16(UINT16_C(0x8000)); |
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const uint16_t* i = (const uint16_t*) input; |
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uint16_t* o = (uint16_t*) output; |
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$for SIMD_TILE_LEVEL in (SIMD_TILE, 1) if SIMD_TILE > 1 else (1,): |
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$if SIMD_TILE_LEVEL == 1: |
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$ABC = ["" for a in ABC] |
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for (; n >= ${SIMD_TILE_LEVEL} * sizeof(float16x8_t); n -= ${SIMD_TILE_LEVEL} * sizeof(float16x8_t)) { |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vx${ABC[N]} = vreinterpretq_f16_u16(vld1q_u16(i)); i += 8; |
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$for N in range(SIMD_TILE_LEVEL): |
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float16x8_t vz${ABC[N]} = vabsq_f16(vx${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vz${ABC[N]} = vminq_f16(vz${ABC[N]}, vsat_cutoff); |
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$for N in range(SIMD_TILE_LEVEL): |
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float16x8_t vn${ABC[N]} = vfmaq_f16(vmagic_bias, vz${ABC[N]}, vminus_log2e); |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vs${ABC[N]} = vreinterpretq_f16_s16(vshlq_n_s16(vreinterpretq_s16_f16(vn${ABC[N]}), 10)); |
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vn${ABC[N]} = vsubq_f16(vn${ABC[N]}, vmagic_bias); |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vt${ABC[N]} = vfmaq_f16(vz${ABC[N]}, vn${ABC[N]}, vln2); |
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$for N in range(SIMD_TILE_LEVEL): |
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float16x8_t vp${ABC[N]} = vfmaq_f16(vc${P-1}, vc${P}, vt${ABC[N]}); |
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$for i in reversed(range(2, P - 1)): |
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$for N in range(SIMD_TILE_LEVEL): |
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vp${ABC[N]} = vfmaq_f16(vc${i}, vp${ABC[N]}, vt${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vp${ABC[N]} = vfmsq_f16(vtwo, vp${ABC[N]}, vt${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vts${ABC[N]} = vmulq_f16(vt${ABC[N]}, vs${ABC[N]}); |
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const float16x8_t vsmo${ABC[N]} = vaddq_f16(vs${ABC[N]}, vminus_one); |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vemo${ABC[N]} = vfmsq_f16(vsmo${ABC[N]}, vp${ABC[N]}, vts${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vepo${ABC[N]} = vaddq_f16(vemo${ABC[N]}, vtwo); |
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$if DIV == "DIV": |
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$for N in range(SIMD_TILE_LEVEL): |
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float16x8_t vy${ABC[N]} = vdivq_f16(vemo${ABC[N]}, vepo${ABC[N]}); |
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$else: |
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$for N in range(SIMD_TILE_LEVEL): |
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float16x8_t vrepo${ABC[N]} = vrecpeq_f16(vepo${ABC[N]}); |
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$if DIV.startswith("NR1RECPS"): |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t verepo${ABC[N]} = vrecpsq_f16(vrepo${ABC[N]}, vepo${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vrepo${ABC[N]} = vmulq_f16(vrepo${ABC[N]}, verepo${ABC[N]}); |
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$elif DIV.startswith("NR1FMA"): |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t verepo${ABC[N]} = vfmaq_f16(vminus_one, vrepo${ABC[N]}, vepo${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vrepo${ABC[N]} = vfmsq_f16(vrepo${ABC[N]}, vrepo${ABC[N]}, verepo${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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float16x8_t vy${ABC[N]} = vmulq_f16(vemo${ABC[N]}, vrepo${ABC[N]}); |
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$if DIV.endswith("ADJ"): |
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$for N in range(SIMD_TILE_LEVEL): |
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const float16x8_t vey${ABC[N]} = vfmsq_f16(vemo${ABC[N]}, vy${ABC[N]}, vepo${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vy${ABC[N]} = vfmaq_f16(vy${ABC[N]}, vey${ABC[N]}, vrepo${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vy${ABC[N]} = vbslq_f16(vsign_mask, vx${ABC[N]}, vy${ABC[N]}); |
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$for N in range(SIMD_TILE_LEVEL): |
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vst1q_u16(o, vreinterpretq_u16_f16(vy${ABC[N]})); o += 8; |
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} |
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if (n != 0) { |
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const float16x8_t vx = vreinterpretq_f16_u16(vld1q_u16(i)); i += 8; |
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float16x8_t vz = vabsq_f16(vx); |
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vz = vminq_f16(vz, vsat_cutoff); |
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float16x8_t vn = vfmaq_f16(vmagic_bias, vz, vminus_log2e); |
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const float16x8_t vs = vreinterpretq_f16_s16(vshlq_n_s16(vreinterpretq_s16_f16(vn), 10)); |
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vn = vsubq_f16(vn, vmagic_bias); |
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const float16x8_t vt = vfmaq_f16(vz, vn, vln2); |
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float16x8_t vp = vfmaq_f16(vc${P-1}, vc${P}, vt); |
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$for i in reversed(range(2, P - 1)): |
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vp = vfmaq_f16(vc${i}, vp, vt); |
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vp = vfmsq_f16(vtwo, vp, vt); |
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const float16x8_t vts = vmulq_f16(vt, vs); |
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const float16x8_t vsmo = vaddq_f16(vs, vminus_one); |
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const float16x8_t vemo = vfmsq_f16(vsmo, vp, vts); |
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const float16x8_t vepo = vaddq_f16(vemo, vtwo); |
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$if DIV == "DIV": |
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float16x8_t vy = vdivq_f16(vemo, vepo); |
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$else: |
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float16x8_t vrepo = vrecpeq_f16(vepo); |
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$if DIV.startswith("NR1RECPS"): |
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const float16x8_t verepo = vrecpsq_f16(vrepo, vepo); |
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vrepo = vmulq_f16(vrepo, verepo); |
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$elif DIV.startswith("NR1FMA"): |
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const float16x8_t verepo = vfmaq_f16(vminus_one, vrepo, vepo); |
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vrepo = vfmsq_f16(vrepo, vrepo, verepo); |
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float16x8_t vy = vmulq_f16(vemo, vrepo); |
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$if DIV.endswith("ADJ"): |
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const float16x8_t vey = vfmsq_f16(vemo, vy, vepo); |
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vy = vfmaq_f16(vy, vey, vrepo); |
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vy = vbslq_f16(vsign_mask, vx, vy); |
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float16x4_t vy_lo = vget_low_f16(vy); |
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if (n & 4 * sizeof(uint16_t)) { |
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vst1_u16(o, vreinterpret_u16_f16(vy_lo)); o += 4; |
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vy_lo = vget_high_f16(vy); |
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} |
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if (n & 2 * sizeof(uint16_t)) { |
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vst1_lane_u32((void*) o, vreinterpret_u32_f16(vy_lo), 0); o+= 2; |
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vy_lo = vext_f16(vy_lo, vy_lo, 2); |
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} |
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if (n & 1 * sizeof(uint16_t)) { |
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vst1_lane_u16(o, vreinterpret_u16_f16(vy_lo), 0); |
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} |
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} |
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} |
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