xref: /aosp_15_r20/external/pytorch/c10/util/Float8_e5m2.h (revision da0073e96a02ea20f0ac840b70461e3646d07c45)
1*da0073e9SAndroid Build Coastguard Worker #pragma once
2*da0073e9SAndroid Build Coastguard Worker 
3*da0073e9SAndroid Build Coastguard Worker /// Defines the Float8_e5m2 type (8-bit floating-point) including conversions
4*da0073e9SAndroid Build Coastguard Worker /// to standard C types and basic arithmetic operations. Note that arithmetic
5*da0073e9SAndroid Build Coastguard Worker /// operations are implemented by converting to floating point and
6*da0073e9SAndroid Build Coastguard Worker /// performing the operation in float32.
7*da0073e9SAndroid Build Coastguard Worker /// Binary configuration:
8*da0073e9SAndroid Build Coastguard Worker /// s eeeee mm
9*da0073e9SAndroid Build Coastguard Worker /// 1 sign bit
10*da0073e9SAndroid Build Coastguard Worker /// 5 exponent bits
11*da0073e9SAndroid Build Coastguard Worker /// 2 mantissa bits
12*da0073e9SAndroid Build Coastguard Worker /// bias = 15
13*da0073e9SAndroid Build Coastguard Worker ///
14*da0073e9SAndroid Build Coastguard Worker /// Implementation based on the paper https://arxiv.org/pdf/2209.05433.pdf
15*da0073e9SAndroid Build Coastguard Worker /// and inspired by Half implementation from pytorch/c10/util/Half.h
16*da0073e9SAndroid Build Coastguard Worker 
17*da0073e9SAndroid Build Coastguard Worker #include <c10/util/Half.h>
18*da0073e9SAndroid Build Coastguard Worker 
19*da0073e9SAndroid Build Coastguard Worker namespace c10 {
20*da0073e9SAndroid Build Coastguard Worker 
21*da0073e9SAndroid Build Coastguard Worker namespace detail {
22*da0073e9SAndroid Build Coastguard Worker 
23*da0073e9SAndroid Build Coastguard Worker /*
24*da0073e9SAndroid Build Coastguard Worker  * Convert a 8-bit floating-point number in fp8 E5M2 format, in bit
25*da0073e9SAndroid Build Coastguard Worker  * representation, to a 32-bit floating-point number in IEEE single-precision
26*da0073e9SAndroid Build Coastguard Worker  * format, in bit representation.
27*da0073e9SAndroid Build Coastguard Worker  *
28*da0073e9SAndroid Build Coastguard Worker  * @note The implementation doesn't use any floating-point operations.
29*da0073e9SAndroid Build Coastguard Worker  */
fp8e5m2_to_fp32_value(uint8_t input)30*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE float fp8e5m2_to_fp32_value(uint8_t input) {
31*da0073e9SAndroid Build Coastguard Worker   /*
32*da0073e9SAndroid Build Coastguard Worker    * Extend the fp8 E5M2 number to 32 bits and shift to the
33*da0073e9SAndroid Build Coastguard Worker    * upper part of the 32-bit word:
34*da0073e9SAndroid Build Coastguard Worker    *      +---+----+---+-----------------------------+
35*da0073e9SAndroid Build Coastguard Worker    *      | S |EEEEE|MM|0000 0000 0000 0000 0000 0000|
36*da0073e9SAndroid Build Coastguard Worker    *      +---+----+---+-----------------------------+
37*da0073e9SAndroid Build Coastguard Worker    * Bits  31 26-30 24-25          0-23
38*da0073e9SAndroid Build Coastguard Worker    *
39*da0073e9SAndroid Build Coastguard Worker    * S - sign bit, E - bits of the biased exponent, M - bits of the mantissa, 0
40*da0073e9SAndroid Build Coastguard Worker    * - zero bits.
41*da0073e9SAndroid Build Coastguard Worker    */
42*da0073e9SAndroid Build Coastguard Worker   uint16_t half_representation = input;
43*da0073e9SAndroid Build Coastguard Worker   half_representation <<= 8;
44*da0073e9SAndroid Build Coastguard Worker   return fp16_ieee_to_fp32_value(half_representation);
45*da0073e9SAndroid Build Coastguard Worker }
46*da0073e9SAndroid Build Coastguard Worker 
47*da0073e9SAndroid Build Coastguard Worker /*
48*da0073e9SAndroid Build Coastguard Worker  * Convert a 32-bit floating-point number in IEEE single-precision format to a
49*da0073e9SAndroid Build Coastguard Worker  * 8-bit floating-point number in fp8 E5M2 format, in bit representation.
50*da0073e9SAndroid Build Coastguard Worker  */
fp8e5m2_from_fp32_value(float f)51*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE uint8_t fp8e5m2_from_fp32_value(float f) {
52*da0073e9SAndroid Build Coastguard Worker   /*
53*da0073e9SAndroid Build Coastguard Worker    * Binary representation of fp32 infinity
54*da0073e9SAndroid Build Coastguard Worker    * 0 11111111 00000000000000000000000
55*da0073e9SAndroid Build Coastguard Worker    */
56*da0073e9SAndroid Build Coastguard Worker   constexpr uint32_t fp32_inf = UINT32_C(255) << 23;
57*da0073e9SAndroid Build Coastguard Worker 
58*da0073e9SAndroid Build Coastguard Worker   /*
59*da0073e9SAndroid Build Coastguard Worker    * Binary representation of 65536.0f, which is the first value
60*da0073e9SAndroid Build Coastguard Worker    * not representable in fp8e5m2 range:
61*da0073e9SAndroid Build Coastguard Worker    * 0 11111 00 - fp8e5m2
62*da0073e9SAndroid Build Coastguard Worker    * 0 10001111 00000000000000000000000 - fp32
63*da0073e9SAndroid Build Coastguard Worker    */
64*da0073e9SAndroid Build Coastguard Worker   constexpr uint32_t fp8_max = UINT32_C(143) << 23;
65*da0073e9SAndroid Build Coastguard Worker 
66*da0073e9SAndroid Build Coastguard Worker   /*
67*da0073e9SAndroid Build Coastguard Worker    * A mask for converting fp32 numbers lower than fp8e5m2 normal range
68*da0073e9SAndroid Build Coastguard Worker    * into denorm representation
69*da0073e9SAndroid Build Coastguard Worker    * magic number: ((127 - 15) + (23 - 2) + 1)
70*da0073e9SAndroid Build Coastguard Worker    */
71*da0073e9SAndroid Build Coastguard Worker   constexpr uint32_t denorm_mask = UINT32_C(134) << 23;
72*da0073e9SAndroid Build Coastguard Worker 
73*da0073e9SAndroid Build Coastguard Worker   uint32_t f_bits = fp32_to_bits(f);
74*da0073e9SAndroid Build Coastguard Worker   uint8_t result = 0u;
75*da0073e9SAndroid Build Coastguard Worker 
76*da0073e9SAndroid Build Coastguard Worker   /*
77*da0073e9SAndroid Build Coastguard Worker    * Extract the sign of the input number into the high bit of the 32-bit word:
78*da0073e9SAndroid Build Coastguard Worker    *
79*da0073e9SAndroid Build Coastguard Worker    *      +---+----------------------------------+
80*da0073e9SAndroid Build Coastguard Worker    *      | S |0000000 00000000 00000000 00000000|
81*da0073e9SAndroid Build Coastguard Worker    *      +---+----------------------------------+
82*da0073e9SAndroid Build Coastguard Worker    * Bits  31                 0-31
83*da0073e9SAndroid Build Coastguard Worker    */
84*da0073e9SAndroid Build Coastguard Worker   const uint32_t sign = f_bits & UINT32_C(0x80000000);
85*da0073e9SAndroid Build Coastguard Worker 
86*da0073e9SAndroid Build Coastguard Worker   /*
87*da0073e9SAndroid Build Coastguard Worker    * Set sign bit to 0
88*da0073e9SAndroid Build Coastguard Worker    */
89*da0073e9SAndroid Build Coastguard Worker   f_bits ^= sign;
90*da0073e9SAndroid Build Coastguard Worker 
91*da0073e9SAndroid Build Coastguard Worker   if (f_bits >= fp8_max) {
92*da0073e9SAndroid Build Coastguard Worker     // NaN - all exponent and mantissa bits set to 1
93*da0073e9SAndroid Build Coastguard Worker     result = f_bits > fp32_inf ? UINT8_C(0x7F) : UINT8_C(0x7C);
94*da0073e9SAndroid Build Coastguard Worker   } else {
95*da0073e9SAndroid Build Coastguard Worker     if (f_bits < (UINT32_C(113) << 23)) {
96*da0073e9SAndroid Build Coastguard Worker       // Input number is smaller than 2^(-14), which is the smallest
97*da0073e9SAndroid Build Coastguard Worker       // fp8e5m2 normal number
98*da0073e9SAndroid Build Coastguard Worker       f_bits =
99*da0073e9SAndroid Build Coastguard Worker           fp32_to_bits(fp32_from_bits(f_bits) + fp32_from_bits(denorm_mask));
100*da0073e9SAndroid Build Coastguard Worker       result = static_cast<uint8_t>(f_bits - denorm_mask);
101*da0073e9SAndroid Build Coastguard Worker     } else {
102*da0073e9SAndroid Build Coastguard Worker       // resulting mantissa is odd
103*da0073e9SAndroid Build Coastguard Worker       uint32_t mant_odd = (f_bits >> 21) & 1;
104*da0073e9SAndroid Build Coastguard Worker 
105*da0073e9SAndroid Build Coastguard Worker       // update exponent, rounding bias part 1
106*da0073e9SAndroid Build Coastguard Worker       f_bits += ((uint32_t)(15 - 127) << 23) + 0xFFFFF;
107*da0073e9SAndroid Build Coastguard Worker 
108*da0073e9SAndroid Build Coastguard Worker       // rounding bias part 2
109*da0073e9SAndroid Build Coastguard Worker       f_bits += mant_odd;
110*da0073e9SAndroid Build Coastguard Worker 
111*da0073e9SAndroid Build Coastguard Worker       // take the bits!
112*da0073e9SAndroid Build Coastguard Worker       result = static_cast<uint8_t>(f_bits >> 21);
113*da0073e9SAndroid Build Coastguard Worker     }
114*da0073e9SAndroid Build Coastguard Worker   }
115*da0073e9SAndroid Build Coastguard Worker 
116*da0073e9SAndroid Build Coastguard Worker   result |= static_cast<uint8_t>(sign >> 24);
117*da0073e9SAndroid Build Coastguard Worker   return result;
118*da0073e9SAndroid Build Coastguard Worker }
119*da0073e9SAndroid Build Coastguard Worker 
120*da0073e9SAndroid Build Coastguard Worker } // namespace detail
121*da0073e9SAndroid Build Coastguard Worker 
122*da0073e9SAndroid Build Coastguard Worker struct alignas(1) Float8_e5m2 {
123*da0073e9SAndroid Build Coastguard Worker   uint8_t x;
124*da0073e9SAndroid Build Coastguard Worker 
125*da0073e9SAndroid Build Coastguard Worker   struct from_bits_t {};
from_bitsFloat8_e5m2126*da0073e9SAndroid Build Coastguard Worker   C10_HOST_DEVICE static constexpr from_bits_t from_bits() {
127*da0073e9SAndroid Build Coastguard Worker     return from_bits_t();
128*da0073e9SAndroid Build Coastguard Worker   }
129*da0073e9SAndroid Build Coastguard Worker 
130*da0073e9SAndroid Build Coastguard Worker   Float8_e5m2() = default;
131*da0073e9SAndroid Build Coastguard Worker 
Float8_e5m2Float8_e5m2132*da0073e9SAndroid Build Coastguard Worker   constexpr C10_HOST_DEVICE Float8_e5m2(uint8_t bits, from_bits_t) : x(bits) {}
133*da0073e9SAndroid Build Coastguard Worker   inline C10_HOST_DEVICE Float8_e5m2(float value);
134*da0073e9SAndroid Build Coastguard Worker   inline C10_HOST_DEVICE operator float() const;
135*da0073e9SAndroid Build Coastguard Worker   inline C10_HOST_DEVICE bool isnan() const;
136*da0073e9SAndroid Build Coastguard Worker   inline C10_HOST_DEVICE bool isinf() const;
137*da0073e9SAndroid Build Coastguard Worker };
138*da0073e9SAndroid Build Coastguard Worker 
139*da0073e9SAndroid Build Coastguard Worker C10_API inline std::ostream& operator<<(
140*da0073e9SAndroid Build Coastguard Worker     std::ostream& out,
141*da0073e9SAndroid Build Coastguard Worker     const Float8_e5m2& value) {
142*da0073e9SAndroid Build Coastguard Worker   out << (float)value;
143*da0073e9SAndroid Build Coastguard Worker   return out;
144*da0073e9SAndroid Build Coastguard Worker }
145*da0073e9SAndroid Build Coastguard Worker 
146*da0073e9SAndroid Build Coastguard Worker } // namespace c10
147*da0073e9SAndroid Build Coastguard Worker 
148*da0073e9SAndroid Build Coastguard Worker #include <c10/util/Float8_e5m2-inl.h> // IWYU pragma: keep
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