1*da0073e9SAndroid Build Coastguard Worker #pragma once
2*da0073e9SAndroid Build Coastguard Worker
3*da0073e9SAndroid Build Coastguard Worker /// Defines the Float8_e4m3fn 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 eeee mmm
9*da0073e9SAndroid Build Coastguard Worker /// 1 sign bit
10*da0073e9SAndroid Build Coastguard Worker /// 4 exponent bits
11*da0073e9SAndroid Build Coastguard Worker /// 3 mantissa bits
12*da0073e9SAndroid Build Coastguard Worker /// bias = 7
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/macros/Macros.h>
18*da0073e9SAndroid Build Coastguard Worker #include <c10/util/floating_point_utils.h>
19*da0073e9SAndroid Build Coastguard Worker
20*da0073e9SAndroid Build Coastguard Worker #if defined(__cplusplus)
21*da0073e9SAndroid Build Coastguard Worker #include <cmath>
22*da0073e9SAndroid Build Coastguard Worker #include <cstdint>
23*da0073e9SAndroid Build Coastguard Worker #elif !defined(__OPENCL_VERSION__)
24*da0073e9SAndroid Build Coastguard Worker #include <math.h>
25*da0073e9SAndroid Build Coastguard Worker #include <stdint.h>
26*da0073e9SAndroid Build Coastguard Worker #endif
27*da0073e9SAndroid Build Coastguard Worker
28*da0073e9SAndroid Build Coastguard Worker #ifdef _MSC_VER
29*da0073e9SAndroid Build Coastguard Worker #include <intrin.h>
30*da0073e9SAndroid Build Coastguard Worker #endif
31*da0073e9SAndroid Build Coastguard Worker
32*da0073e9SAndroid Build Coastguard Worker #include <climits>
33*da0073e9SAndroid Build Coastguard Worker #include <iostream>
34*da0073e9SAndroid Build Coastguard Worker
35*da0073e9SAndroid Build Coastguard Worker namespace c10 {
36*da0073e9SAndroid Build Coastguard Worker
37*da0073e9SAndroid Build Coastguard Worker namespace detail {
38*da0073e9SAndroid Build Coastguard Worker
39*da0073e9SAndroid Build Coastguard Worker /*
40*da0073e9SAndroid Build Coastguard Worker * Convert a 8-bit floating-point number in fp8 E4M3FN format, in bit
41*da0073e9SAndroid Build Coastguard Worker * representation, to a 32-bit floating-point number in IEEE single-precision
42*da0073e9SAndroid Build Coastguard Worker * format, in bit representation.
43*da0073e9SAndroid Build Coastguard Worker *
44*da0073e9SAndroid Build Coastguard Worker * @note The implementation doesn't use any floating-point operations.
45*da0073e9SAndroid Build Coastguard Worker */
fp8e4m3fn_to_fp32_value(uint8_t input)46*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE float fp8e4m3fn_to_fp32_value(uint8_t input) {
47*da0073e9SAndroid Build Coastguard Worker /*
48*da0073e9SAndroid Build Coastguard Worker * Extend the fp8 E4M3FN number to 32 bits and shift to the
49*da0073e9SAndroid Build Coastguard Worker * upper part of the 32-bit word:
50*da0073e9SAndroid Build Coastguard Worker * +---+----+---+-----------------------------+
51*da0073e9SAndroid Build Coastguard Worker * | S |EEEE|MMM|0000 0000 0000 0000 0000 0000|
52*da0073e9SAndroid Build Coastguard Worker * +---+----+---+-----------------------------+
53*da0073e9SAndroid Build Coastguard Worker * Bits 31 27-30 24-26 0-23
54*da0073e9SAndroid Build Coastguard Worker *
55*da0073e9SAndroid Build Coastguard Worker * S - sign bit, E - bits of the biased exponent, M - bits of the mantissa, 0
56*da0073e9SAndroid Build Coastguard Worker * - zero bits.
57*da0073e9SAndroid Build Coastguard Worker */
58*da0073e9SAndroid Build Coastguard Worker const uint32_t w = (uint32_t)input << 24;
59*da0073e9SAndroid Build Coastguard Worker /*
60*da0073e9SAndroid Build Coastguard Worker * Extract the sign of the input number into the high bit of the 32-bit word:
61*da0073e9SAndroid Build Coastguard Worker *
62*da0073e9SAndroid Build Coastguard Worker * +---+----------------------------------+
63*da0073e9SAndroid Build Coastguard Worker * | S |0000000 00000000 00000000 00000000|
64*da0073e9SAndroid Build Coastguard Worker * +---+----------------------------------+
65*da0073e9SAndroid Build Coastguard Worker * Bits 31 0-31
66*da0073e9SAndroid Build Coastguard Worker */
67*da0073e9SAndroid Build Coastguard Worker const uint32_t sign = w & UINT32_C(0x80000000);
68*da0073e9SAndroid Build Coastguard Worker /*
69*da0073e9SAndroid Build Coastguard Worker * Extract mantissa and biased exponent of the input number into the bits 0-30
70*da0073e9SAndroid Build Coastguard Worker * of the 32-bit word:
71*da0073e9SAndroid Build Coastguard Worker *
72*da0073e9SAndroid Build Coastguard Worker * +---+----+---+-----------------------------+
73*da0073e9SAndroid Build Coastguard Worker * | S |EEEE|MMM|0000 0000 0000 0000 0000 0000|
74*da0073e9SAndroid Build Coastguard Worker * +---+----+---+-----------------------------+
75*da0073e9SAndroid Build Coastguard Worker * Bits 31 27-30 24-26 0-23
76*da0073e9SAndroid Build Coastguard Worker */
77*da0073e9SAndroid Build Coastguard Worker const uint32_t nonsign = w & UINT32_C(0x7FFFFFFF);
78*da0073e9SAndroid Build Coastguard Worker /*
79*da0073e9SAndroid Build Coastguard Worker * Renorm shift is the number of bits to shift mantissa left to make the
80*da0073e9SAndroid Build Coastguard Worker * half-precision number normalized. If the initial number is normalized, some
81*da0073e9SAndroid Build Coastguard Worker * of its high 5 bits (sign == 0 and 4-bit exponent) equals one. In this case
82*da0073e9SAndroid Build Coastguard Worker * renorm_shift == 0. If the number is denormalize, renorm_shift > 0. Note
83*da0073e9SAndroid Build Coastguard Worker * that if we shift denormalized nonsign by renorm_shift, the unit bit of
84*da0073e9SAndroid Build Coastguard Worker * mantissa will shift into exponent, turning the biased exponent into 1, and
85*da0073e9SAndroid Build Coastguard Worker * making mantissa normalized (i.e. without leading 1).
86*da0073e9SAndroid Build Coastguard Worker */
87*da0073e9SAndroid Build Coastguard Worker #if defined(__CUDA_ARCH__) || defined(__HIP_DEVICE_COMPILE__)
88*da0073e9SAndroid Build Coastguard Worker uint32_t renorm_shift = __clz(nonsign);
89*da0073e9SAndroid Build Coastguard Worker #elif defined(__SYCL_DEVICE_ONLY__)
90*da0073e9SAndroid Build Coastguard Worker // Note: zero is not a supported input into `__builtin_clz`
91*da0073e9SAndroid Build Coastguard Worker uint32_t renorm_shift =
92*da0073e9SAndroid Build Coastguard Worker nonsign != 0 ? __builtin_clz(nonsign) : sizeof(uint32_t) * CHAR_BIT;
93*da0073e9SAndroid Build Coastguard Worker #elif defined(_MSC_VER)
94*da0073e9SAndroid Build Coastguard Worker unsigned long nonsign_bsr;
95*da0073e9SAndroid Build Coastguard Worker _BitScanReverse(&nonsign_bsr, (unsigned long)nonsign);
96*da0073e9SAndroid Build Coastguard Worker uint32_t renorm_shift = (uint32_t)nonsign_bsr ^ 31;
97*da0073e9SAndroid Build Coastguard Worker #else
98*da0073e9SAndroid Build Coastguard Worker // Note: zero is not a supported input into `__builtin_clz`
99*da0073e9SAndroid Build Coastguard Worker uint32_t renorm_shift =
100*da0073e9SAndroid Build Coastguard Worker nonsign != 0 ? __builtin_clz(nonsign) : sizeof(uint32_t) * CHAR_BIT;
101*da0073e9SAndroid Build Coastguard Worker #endif
102*da0073e9SAndroid Build Coastguard Worker renorm_shift = renorm_shift > 4 ? renorm_shift - 4 : 0;
103*da0073e9SAndroid Build Coastguard Worker /*
104*da0073e9SAndroid Build Coastguard Worker * Iff fp8e4m3fn number has all exponent and mantissa bits set to 1,
105*da0073e9SAndroid Build Coastguard Worker * the addition overflows it into bit 31, and the subsequent shift turns the
106*da0073e9SAndroid Build Coastguard Worker * high 9 bits into 1. Thus inf_nan_mask == 0x7F800000 if the fp8e4m3fn number
107*da0073e9SAndroid Build Coastguard Worker * is Nan, 0x00000000 otherwise
108*da0073e9SAndroid Build Coastguard Worker */
109*da0073e9SAndroid Build Coastguard Worker const int32_t inf_nan_mask =
110*da0073e9SAndroid Build Coastguard Worker ((int32_t)(nonsign + 0x01000000) >> 8) & INT32_C(0x7F800000);
111*da0073e9SAndroid Build Coastguard Worker /*
112*da0073e9SAndroid Build Coastguard Worker * Iff nonsign is 0, it overflows into 0xFFFFFFFF, turning bit 31
113*da0073e9SAndroid Build Coastguard Worker * into 1. Otherwise, bit 31 remains 0. The signed shift right by 31
114*da0073e9SAndroid Build Coastguard Worker * broadcasts bit 31 into all bits of the zero_mask. Thus zero_mask ==
115*da0073e9SAndroid Build Coastguard Worker * 0xFFFFFFFF if the half-precision number was zero (+0.0h or -0.0h)
116*da0073e9SAndroid Build Coastguard Worker * 0x00000000 otherwise
117*da0073e9SAndroid Build Coastguard Worker */
118*da0073e9SAndroid Build Coastguard Worker const int32_t zero_mask = (int32_t)(nonsign - 1) >> 31;
119*da0073e9SAndroid Build Coastguard Worker /*
120*da0073e9SAndroid Build Coastguard Worker * 1. Shift nonsign left by renorm_shift to normalize it (if the input
121*da0073e9SAndroid Build Coastguard Worker * was denormal)
122*da0073e9SAndroid Build Coastguard Worker * 2. Shift nonsign right by 4 so the exponent (4 bits originally)
123*da0073e9SAndroid Build Coastguard Worker * becomes an 8-bit field and 3-bit mantissa shifts into the 3 high
124*da0073e9SAndroid Build Coastguard Worker * bits of the 23-bit mantissa of IEEE single-precision number.
125*da0073e9SAndroid Build Coastguard Worker * 3. Add 0x78 to the exponent (starting at bit 23) to compensate the
126*da0073e9SAndroid Build Coastguard Worker * different in exponent bias (0x7F for single-precision number less 0x07
127*da0073e9SAndroid Build Coastguard Worker * for fp8e4m3fn number).
128*da0073e9SAndroid Build Coastguard Worker * 4. Subtract renorm_shift from the exponent (starting at bit 23) to
129*da0073e9SAndroid Build Coastguard Worker * account for renormalization. As renorm_shift is less than 0x78, this
130*da0073e9SAndroid Build Coastguard Worker * can be combined with step 3.
131*da0073e9SAndroid Build Coastguard Worker * 5. Binary OR with inf_nan_mask to turn the exponent into 0xFF if the
132*da0073e9SAndroid Build Coastguard Worker * input was NaN or infinity.
133*da0073e9SAndroid Build Coastguard Worker * 6. Binary ANDNOT with zero_mask to turn the mantissa and exponent
134*da0073e9SAndroid Build Coastguard Worker * into zero if the input was zero.
135*da0073e9SAndroid Build Coastguard Worker * 7. Combine with the sign of the input number.
136*da0073e9SAndroid Build Coastguard Worker */
137*da0073e9SAndroid Build Coastguard Worker uint32_t result = sign |
138*da0073e9SAndroid Build Coastguard Worker ((((nonsign << renorm_shift >> 4) + ((0x78 - renorm_shift) << 23)) |
139*da0073e9SAndroid Build Coastguard Worker inf_nan_mask) &
140*da0073e9SAndroid Build Coastguard Worker ~zero_mask);
141*da0073e9SAndroid Build Coastguard Worker return fp32_from_bits(result);
142*da0073e9SAndroid Build Coastguard Worker }
143*da0073e9SAndroid Build Coastguard Worker
144*da0073e9SAndroid Build Coastguard Worker /*
145*da0073e9SAndroid Build Coastguard Worker * Convert a 32-bit floating-point number in IEEE single-precision format to a
146*da0073e9SAndroid Build Coastguard Worker * 8-bit floating-point number in fp8 E4M3FN format, in bit representation.
147*da0073e9SAndroid Build Coastguard Worker */
fp8e4m3fn_from_fp32_value(float f)148*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE uint8_t fp8e4m3fn_from_fp32_value(float f) {
149*da0073e9SAndroid Build Coastguard Worker /*
150*da0073e9SAndroid Build Coastguard Worker * Binary representation of 480.0f, which is the first value
151*da0073e9SAndroid Build Coastguard Worker * not representable in fp8e4m3fn range:
152*da0073e9SAndroid Build Coastguard Worker * 0 1111 111 - fp8e4m3fn
153*da0073e9SAndroid Build Coastguard Worker * 0 10000111 11100000000000000000000 - fp32
154*da0073e9SAndroid Build Coastguard Worker */
155*da0073e9SAndroid Build Coastguard Worker constexpr uint32_t fp8_max = UINT32_C(1087) << 20;
156*da0073e9SAndroid Build Coastguard Worker
157*da0073e9SAndroid Build Coastguard Worker /*
158*da0073e9SAndroid Build Coastguard Worker * A mask for converting fp32 numbers lower than fp8e4m3fn normal range
159*da0073e9SAndroid Build Coastguard Worker * into denorm representation
160*da0073e9SAndroid Build Coastguard Worker * magic number: ((127 - 7) + (23 - 3) + 1)
161*da0073e9SAndroid Build Coastguard Worker */
162*da0073e9SAndroid Build Coastguard Worker constexpr uint32_t denorm_mask = UINT32_C(141) << 23;
163*da0073e9SAndroid Build Coastguard Worker
164*da0073e9SAndroid Build Coastguard Worker uint32_t f_bits = fp32_to_bits(f);
165*da0073e9SAndroid Build Coastguard Worker
166*da0073e9SAndroid Build Coastguard Worker uint8_t result = 0u;
167*da0073e9SAndroid Build Coastguard Worker
168*da0073e9SAndroid Build Coastguard Worker /*
169*da0073e9SAndroid Build Coastguard Worker * Extract the sign of the input number into the high bit of the 32-bit word:
170*da0073e9SAndroid Build Coastguard Worker *
171*da0073e9SAndroid Build Coastguard Worker * +---+----------------------------------+
172*da0073e9SAndroid Build Coastguard Worker * | S |0000000 00000000 00000000 00000000|
173*da0073e9SAndroid Build Coastguard Worker * +---+----------------------------------+
174*da0073e9SAndroid Build Coastguard Worker * Bits 31 0-31
175*da0073e9SAndroid Build Coastguard Worker */
176*da0073e9SAndroid Build Coastguard Worker const uint32_t sign = f_bits & UINT32_C(0x80000000);
177*da0073e9SAndroid Build Coastguard Worker
178*da0073e9SAndroid Build Coastguard Worker /*
179*da0073e9SAndroid Build Coastguard Worker * Set sign bit to 0
180*da0073e9SAndroid Build Coastguard Worker */
181*da0073e9SAndroid Build Coastguard Worker f_bits ^= sign;
182*da0073e9SAndroid Build Coastguard Worker
183*da0073e9SAndroid Build Coastguard Worker if (f_bits >= fp8_max) {
184*da0073e9SAndroid Build Coastguard Worker // NaN - all exponent and mantissa bits set to 1
185*da0073e9SAndroid Build Coastguard Worker result = 0x7f;
186*da0073e9SAndroid Build Coastguard Worker } else {
187*da0073e9SAndroid Build Coastguard Worker if (f_bits < (UINT32_C(121) << 23)) {
188*da0073e9SAndroid Build Coastguard Worker // Input number is smaller than 2^(-6), which is the smallest
189*da0073e9SAndroid Build Coastguard Worker // fp8e4m3fn normal number
190*da0073e9SAndroid Build Coastguard Worker f_bits =
191*da0073e9SAndroid Build Coastguard Worker fp32_to_bits(fp32_from_bits(f_bits) + fp32_from_bits(denorm_mask));
192*da0073e9SAndroid Build Coastguard Worker result = static_cast<uint8_t>(f_bits - denorm_mask);
193*da0073e9SAndroid Build Coastguard Worker } else {
194*da0073e9SAndroid Build Coastguard Worker // resulting mantissa is odd
195*da0073e9SAndroid Build Coastguard Worker uint8_t mant_odd = (f_bits >> 20) & 1;
196*da0073e9SAndroid Build Coastguard Worker
197*da0073e9SAndroid Build Coastguard Worker // update exponent, rounding bias part 1
198*da0073e9SAndroid Build Coastguard Worker f_bits += ((uint32_t)(7 - 127) << 23) + 0x7FFFF;
199*da0073e9SAndroid Build Coastguard Worker
200*da0073e9SAndroid Build Coastguard Worker // rounding bias part 2
201*da0073e9SAndroid Build Coastguard Worker f_bits += mant_odd;
202*da0073e9SAndroid Build Coastguard Worker
203*da0073e9SAndroid Build Coastguard Worker // take the bits!
204*da0073e9SAndroid Build Coastguard Worker result = static_cast<uint8_t>(f_bits >> 20);
205*da0073e9SAndroid Build Coastguard Worker }
206*da0073e9SAndroid Build Coastguard Worker }
207*da0073e9SAndroid Build Coastguard Worker
208*da0073e9SAndroid Build Coastguard Worker result |= static_cast<uint8_t>(sign >> 24);
209*da0073e9SAndroid Build Coastguard Worker return result;
210*da0073e9SAndroid Build Coastguard Worker }
211*da0073e9SAndroid Build Coastguard Worker
212*da0073e9SAndroid Build Coastguard Worker } // namespace detail
213*da0073e9SAndroid Build Coastguard Worker
214*da0073e9SAndroid Build Coastguard Worker struct alignas(1) Float8_e4m3fn {
215*da0073e9SAndroid Build Coastguard Worker uint8_t x;
216*da0073e9SAndroid Build Coastguard Worker
217*da0073e9SAndroid Build Coastguard Worker struct from_bits_t {};
from_bitsFloat8_e4m3fn218*da0073e9SAndroid Build Coastguard Worker C10_HOST_DEVICE static constexpr from_bits_t from_bits() {
219*da0073e9SAndroid Build Coastguard Worker return from_bits_t();
220*da0073e9SAndroid Build Coastguard Worker }
221*da0073e9SAndroid Build Coastguard Worker
222*da0073e9SAndroid Build Coastguard Worker Float8_e4m3fn() = default;
223*da0073e9SAndroid Build Coastguard Worker
Float8_e4m3fnFloat8_e4m3fn224*da0073e9SAndroid Build Coastguard Worker constexpr C10_HOST_DEVICE Float8_e4m3fn(uint8_t bits, from_bits_t)
225*da0073e9SAndroid Build Coastguard Worker : x(bits) {}
226*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE Float8_e4m3fn(float value);
227*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE operator float() const;
228*da0073e9SAndroid Build Coastguard Worker inline C10_HOST_DEVICE bool isnan() const;
229*da0073e9SAndroid Build Coastguard Worker };
230*da0073e9SAndroid Build Coastguard Worker
231*da0073e9SAndroid Build Coastguard Worker C10_API inline std::ostream& operator<<(
232*da0073e9SAndroid Build Coastguard Worker std::ostream& out,
233*da0073e9SAndroid Build Coastguard Worker const Float8_e4m3fn& value) {
234*da0073e9SAndroid Build Coastguard Worker out << (float)value;
235*da0073e9SAndroid Build Coastguard Worker return out;
236*da0073e9SAndroid Build Coastguard Worker }
237*da0073e9SAndroid Build Coastguard Worker
238*da0073e9SAndroid Build Coastguard Worker } // namespace c10
239*da0073e9SAndroid Build Coastguard Worker
240*da0073e9SAndroid Build Coastguard Worker #include <c10/util/Float8_e4m3fn-inl.h> // IWYU pragma: keep
241