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$assert CHANNEL_TILE % 8 == 0 |
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$assert CHANNEL_TILE >= 8 |
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$assert PIXEL_TILE == 1 |
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$ABC = "456789ABCDEFGHIJKLMNOPQRSTUVWXYZ" |
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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/ibilinear.h> |
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void xnn_f16_ibilinear_ukernel__neonfp16arith_c${CHANNEL_TILE}${"" if PIXEL_TILE == 1 else "x%d" % PIXEL_TILE}( |
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size_t output_pixels, |
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size_t channels, |
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const void** restrict input, |
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size_t input_offset, |
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const void* restrict weights, |
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void* restrict output, |
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size_t output_increment) XNN_OOB_READS |
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{ |
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assert(output_pixels != 0); |
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assert(channels != 0); |
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assert(channels % sizeof(uint16_t) == 0); |
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uint16_t* o = (uint16_t*) output; |
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do { |
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const uint16_t* i0 = (const uint16_t*) ((uintptr_t) input[0] + input_offset); |
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const uint16_t* i1 = (const uint16_t*) ((uintptr_t) input[1] + input_offset); |
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const uint16_t* i2 = (const uint16_t*) ((uintptr_t) input[2] + input_offset); |
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const uint16_t* i3 = (const uint16_t*) ((uintptr_t) input[3] + input_offset); |
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input += 4; |
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const float16x8_t valphah = vreinterpretq_f16_u16(vld1q_dup_u16(weights)); weights = (const uint16_t*) weights + 1; |
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const float16x8_t valphav = vreinterpretq_f16_u16(vld1q_dup_u16(weights)); weights = (const uint16_t*) weights + 1; |
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size_t c = channels; |
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$if CHANNEL_TILE > 8: |
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for (; c >= ${CHANNEL_TILE} * sizeof(uint16_t); c -= ${CHANNEL_TILE} * sizeof(uint16_t)) { |
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$for C in range(0, CHANNEL_TILE, 8): |
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const float16x8_t vtl${ABC[C:C+8]} = vreinterpretq_f16_u16(vld1q_u16(i0)); i0 += 8; |
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const float16x8_t vtr${ABC[C:C+8]} = vreinterpretq_f16_u16(vld1q_u16(i1)); i1 += 8; |
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const float16x8_t vbl${ABC[C:C+8]} = vreinterpretq_f16_u16(vld1q_u16(i2)); i2 += 8; |
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const float16x8_t vbr${ABC[C:C+8]} = vreinterpretq_f16_u16(vld1q_u16(i3)); i3 += 8; |
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$for C in range(0, CHANNEL_TILE, 8): |
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const float16x8_t vtd${ABC[C:C+8]} = vsubq_f16(vtr${ABC[C:C+8]}, vtl${ABC[C:C+8]}); |
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const float16x8_t vbd${ABC[C:C+8]} = vsubq_f16(vbr${ABC[C:C+8]}, vbl${ABC[C:C+8]}); |
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$for C in range(0, CHANNEL_TILE, 8): |
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const float16x8_t vt${ABC[C:C+8]} = vfmaq_f16(vtl${ABC[C:C+8]}, vtd${ABC[C:C+8]}, valphah); |
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const float16x8_t vb${ABC[C:C+8]} = vfmaq_f16(vbl${ABC[C:C+8]}, vbd${ABC[C:C+8]}, valphah); |
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$for C in range(0, CHANNEL_TILE, 8): |
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const float16x8_t vd${ABC[C:C+8]} = vsubq_f16(vb${ABC[C:C+8]}, vt${ABC[C:C+8]}); |
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$for C in range(0, CHANNEL_TILE, 8): |
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const float16x8_t vo${ABC[C:C+8]} = vfmaq_f16(vt${ABC[C:C+8]}, vd${ABC[C:C+8]}, valphav); |
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$for C in range(0, CHANNEL_TILE, 8): |
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vst1q_u16(o, vreinterpretq_u16_f16(vo${ABC[C:C+8]})); o += 8; |
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} |
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for (; c >= 8 * sizeof(uint16_t); c -= 8 * sizeof(uint16_t)) { |
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const float16x8_t vtl = vreinterpretq_f16_u16(vld1q_u16(i0)); i0 += 8; |
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const float16x8_t vtr = vreinterpretq_f16_u16(vld1q_u16(i1)); i1 += 8; |
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const float16x8_t vbl = vreinterpretq_f16_u16(vld1q_u16(i2)); i2 += 8; |
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const float16x8_t vbr = vreinterpretq_f16_u16(vld1q_u16(i3)); i3 += 8; |
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const float16x8_t vtd = vsubq_f16(vtr, vtl); |
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const float16x8_t vbd = vsubq_f16(vbr, vbl); |
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const float16x8_t vt = vfmaq_f16(vtl, vtd, valphah); |
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const float16x8_t vb = vfmaq_f16(vbl, vbd, valphah); |
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const float16x8_t vd = vsubq_f16(vb, vt); |
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const float16x8_t vo = vfmaq_f16(vt, vd, valphav); |
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vst1q_u16(o, vreinterpretq_u16_f16(vo)); o += 8; |
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} |
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if XNN_UNLIKELY(c != 0) { |
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const float16x8_t vtl = vreinterpretq_f16_u16(vld1q_u16(i0)); |
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const float16x8_t vtr = vreinterpretq_f16_u16(vld1q_u16(i1)); |
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const float16x8_t vbl = vreinterpretq_f16_u16(vld1q_u16(i2)); |
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const float16x8_t vbr = vreinterpretq_f16_u16(vld1q_u16(i3)); |
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const float16x8_t vtd = vsubq_f16(vtr, vtl); |
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const float16x8_t vbd = vsubq_f16(vbr, vbl); |
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const float16x8_t vt = vfmaq_f16(vtl, vtd, valphah); |
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const float16x8_t vb = vfmaq_f16(vbl, vbd, valphah); |
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const float16x8_t vd = vsubq_f16(vb, vt); |
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float16x8_t vo = vfmaq_f16(vt, vd, valphav); |
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float16x4_t vo_lo = vget_low_f16(vo); |
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if (c & (4 * sizeof(uint16_t))) { |
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vst1_u16(o, vreinterpret_u16_f16(vo_lo)); o += 4; |
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vo_lo = vget_high_f16(vo); |
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} |
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if (c & (2 * sizeof(uint16_t))) { |
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vst1_lane_u32((void*) o, vreinterpret_u32_f16(vo_lo), 0); o += 2; |
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vo_lo = vext_f16(vo_lo, vo_lo, 2); |
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} |
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if (c & (1 * sizeof(uint16_t))) { |
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vst1_lane_u16(o, vreinterpret_u16_f16(vo_lo), 0); o += 1; |
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} |
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} |
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o = (uint16_t*) ((uintptr_t) o + output_increment); |
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} while (--output_pixels != 0); |
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} |
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