13enum class TernaryOpType {
19get_ternary_op_type(
const array& a,
const array& b,
const array& c) {
21 if (a.data_size() == 1 && b.data_size() == 1 && c.data_size() == 1) {
22 topt = TernaryOpType::ScalarScalarScalar;
24 topt = TernaryOpType::General;
29void set_ternary_op_output_data(
35 bool donate_with_move =
false) {
37 case TernaryOpType::ScalarScalarScalar:
41 case TernaryOpType::General:
47template <
typename T1,
typename T2,
typename T3,
typename U,
typename Op>
54 const T1* a_ptr = a.data<T1>();
55 const T2* b_ptr = b.data<T2>();
56 const T3* c_ptr = c.data<T3>();
58 U* dst = out.data<U>();
62 for (
size_t i = 0; i < out.size(); ++i) {
63 dst[i] =
op(a_ptr[a_idx], b_ptr[b_idx], c_ptr[c_idx]);
64 a_idx += a.strides()[0];
65 b_idx += b.strides()[0];
66 c_idx += c.strides()[0];
70template <
typename T1,
typename T2,
typename T3,
typename U,
typename Op>
77 const T1* a_ptr = a.data<T1>();
78 const T2* b_ptr = b.data<T2>();
79 const T3* c_ptr = c.data<T3>();
81 U* dst = out.data<U>();
86 for (
size_t i = 0; i < a.shape()[0]; ++i) {
87 for (
size_t j = 0; j < a.shape()[1]; ++j) {
88 dst[out_idx++] =
op(a_ptr[a_idx], b_ptr[b_idx], c_ptr[c_idx]);
89 a_idx += a.strides()[1];
90 b_idx += b.strides()[1];
91 c_idx += c.strides()[1];
93 a_idx += a.strides()[0] - a.strides()[1] * a.shape()[1];
94 b_idx += b.strides()[0] - b.strides()[1] * b.shape()[1];
95 c_idx += c.strides()[0] - c.strides()[1] * c.shape()[1];
99template <
typename T1,
typename T2,
typename T3,
typename U,
typename Op>
100void ternary_op_dims3(
106 const T1* a_ptr = a.data<T1>();
107 const T2* b_ptr = b.data<T2>();
108 const T3* c_ptr = c.data<T3>();
109 U* dst = out.data<U>();
114 for (
size_t i = 0; i < a.shape()[0]; ++i) {
115 for (
size_t j = 0; j < a.shape()[1]; ++j) {
116 for (
size_t k = 0; k < a.shape()[2]; ++k) {
117 dst[out_idx++] =
op(a_ptr[a_idx], b_ptr[b_idx], c_ptr[c_idx]);
118 a_idx += a.strides()[2];
119 b_idx += b.strides()[2];
120 c_idx += c.strides()[2];
122 a_idx += a.strides()[1] - a.strides()[2] * a.shape()[2];
123 b_idx += b.strides()[1] - b.strides()[2] * b.shape()[2];
124 c_idx += c.strides()[1] - c.strides()[2] * c.shape()[2];
126 a_idx += a.strides()[0] - a.strides()[1] * a.shape()[1];
127 b_idx += b.strides()[0] - b.strides()[1] * b.shape()[1];
128 c_idx += c.strides()[0] - c.strides()[1] * c.shape()[1];
132template <
typename T1,
typename T2,
typename T3,
typename U,
typename Op>
133void ternary_op_dims4(
139 const T1* a_ptr = a.data<T1>();
140 const T2* b_ptr = b.data<T2>();
141 const T3* c_ptr = c.data<T3>();
143 U* dst = out.data<U>();
148 for (
size_t i = 0; i < a.shape()[0]; ++i) {
149 for (
size_t j = 0; j < a.shape()[1]; ++j) {
150 for (
size_t k = 0; k < a.shape()[2]; ++k) {
151 for (
size_t ii = 0; ii < a.shape()[3]; ++ii) {
152 dst[out_idx++] =
op(a_ptr[a_idx], b_ptr[b_idx], c_ptr[c_idx]);
153 a_idx += a.strides()[3];
154 b_idx += b.strides()[3];
155 c_idx += c.strides()[3];
157 a_idx += a.strides()[2] - a.strides()[3] * a.shape()[3];
158 b_idx += b.strides()[2] - b.strides()[3] * b.shape()[3];
159 c_idx += c.strides()[2] - c.strides()[3] * c.shape()[3];
161 a_idx += a.strides()[1] - a.strides()[2] * a.shape()[2];
162 b_idx += b.strides()[1] - b.strides()[2] * b.shape()[2];
163 c_idx += c.strides()[1] - c.strides()[2] * c.shape()[2];
165 a_idx += a.strides()[0] - a.strides()[1] * a.shape()[1];
166 b_idx += b.strides()[0] - b.strides()[1] * b.shape()[1];
167 c_idx += c.strides()[0] - c.strides()[1] * c.shape()[1];
171template <
typename T1,
typename T2,
typename T3,
typename U,
typename Op>
172void ternary_op_dispatch_dims(
178 switch (out.ndim()) {
180 ternary_op_dims1<T1, T2, T3, U, Op>(a, b, c, out,
op);
183 ternary_op_dims2<T1, T2, T3, U, Op>(a, b, c, out,
op);
186 ternary_op_dims3<T1, T2, T3, U, Op>(a, b, c, out,
op);
189 ternary_op_dims4<T1, T2, T3, U, Op>(a, b, c, out,
op);
193 const T1* a_ptr = a.data<T1>();
194 const T2* b_ptr = b.data<T2>();
195 const T3* c_ptr = c.data<T3>();
196 U* dst = out.data<U>();
197 for (
size_t i = 0; i < out.size(); i++) {
198 int a_idx =
elem_to_loc(i, a.shape(), a.strides());
199 int b_idx =
elem_to_loc(i, b.shape(), b.strides());
200 int c_idx =
elem_to_loc(i, c.shape(), c.strides());
201 dst[i] =
op(a_ptr[a_idx], b_ptr[b_idx], c_ptr[c_idx]);
205template <
typename T1,
typename T2,
typename T3,
typename U,
typename Op>
212 TernaryOpType topt = get_ternary_op_type(a, b, c);
213 set_ternary_op_output_data(a, b, c, out, topt);
216 if (topt == TernaryOpType::ScalarScalarScalar) {
217 *(out.data<U>()) =
op(*a.data<T1>(), *b.data<T2>(), *c.data<T3>());
221 ternary_op_dispatch_dims<T1, T2, T3, U>(a, b, c, out,
op);
Op op
Definition binary.h:141
Buffer malloc_or_wait(size_t size)
stride_t elem_to_loc(int elem, const std::vector< int > &shape, const std::vector< stride_t > &strides)
Definition utils.h:12