COMBINATORIAL_BLAS 1.6
 
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Semirings.h
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1/****************************************************************/
2/* Parallel Combinatorial BLAS Library (for Graph Computations) */
3/* version 1.6 -------------------------------------------------*/
4/* date: 6/15/2017 ---------------------------------------------*/
5/* authors: Ariful Azad, Aydin Buluc --------------------------*/
6/****************************************************************/
7/*
8 Copyright (c) 2010-2017, The Regents of the University of California
9
10 Permission is hereby granted, free of charge, to any person obtaining a copy
11 of this software and associated documentation files (the "Software"), to deal
12 in the Software without restriction, including without limitation the rights
13 to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
14 copies of the Software, and to permit persons to whom the Software is
15 furnished to do so, subject to the following conditions:
16
17 The above copyright notice and this permission notice shall be included in
18 all copies or substantial portions of the Software.
19
20 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
23 AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
24 LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
25 OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
26 THE SOFTWARE.
27 */
28
29
30#ifndef _SEMIRINGS_H_
31#define _SEMIRINGS_H_
32
33#include <utility>
34#include <climits>
35#include <cmath>
36#include "promote.h"
37
38namespace combblas {
39
40template <typename T>
41struct inf_plus{
42 T operator()(const T& a, const T& b) const {
43 T inf = std::numeric_limits<T>::max();
44 if (a == inf || b == inf){
45 return inf;
46 }
47 return a + b;
48 }
49};
50
51// This semiring is used in indexing (SpParMat::operator())
52template <class OUT>
54{
55 static OUT id() { return OUT(); }
56 static bool returnedSAID() { return false; }
57 static OUT add(const OUT & arg1, const OUT & arg2)
58 {
59 std::cout << "Add should not happen (BoolCopy2ndSRing)!" << std::endl;
60 throw std::string("Add should not happen!");
61 std::exit(1);
62 return arg2;
63 }
64 static const OUT& multiply(bool arg1, const OUT & arg2)
65 {
66 return arg2;
67 }
68 static void axpy(bool a, const OUT & x, OUT & y)
69 {
70 y = multiply(a, x);
71 }
72
73 static MPI_Op mpi_op()
74 {
75 static MPI_Op mpiop;
76 static bool exists = false;
77 if (exists)
78 return mpiop;
79 else
80 {
82 exists = true;
83 return mpiop;
84 }
85 }
86
87 static void MPI_func(void * invec, void * inoutvec, int * len, MPI_Datatype *datatype)
88 {
89 if (*len > 0)
90 {
91 std::cout << "MPI Add should not happen (BoolCopy2ndSRing)!" << std::endl;
92 std::exit(1);
93 }
94 }
95};
96
97// This semiring is used in indexing (SpParMat::operator())
98template <class OUT>
100{
101 static OUT id() { return OUT(); }
102 static bool returnedSAID() { return false; }
103 static OUT add(const OUT & arg1, const OUT & arg2)
104 {
105 std::cout << "Add should not happen (BoolCopy1stSRing)!" << std::endl;
106 throw std::string("Add should not happen!");
107 std::exit(1);
108 return arg2;
109 }
110 static const OUT& multiply(const OUT & arg1, bool arg2)
111 {
112 return arg1;
113 }
114 static void axpy(const OUT& a, bool x, OUT & y)
115 {
116 y = multiply(a, x);
117 }
118
119 static MPI_Op mpi_op()
120 {
121 static MPI_Op mpiop;
122 static bool exists = false;
123 if (exists)
124 return mpiop;
125 else
126 {
128 exists = true;
129 return mpiop;
130 }
131 }
132
133 static void MPI_func(void * invec, void * inoutvec, int * len, MPI_Datatype *datatype)
134 {
135 if (*len > 0)
136 {
137 std::cout << "MPI Add should not happen (BoolCopy1stSRing)!" << std::endl;
138 std::exit(1);
139 }
140 }
141};
142
143
144
145template <class T1, class T2, class OUT>
147{
148 static OUT id() { return OUT(); }
149 static bool returnedSAID() { return false; }
150 static MPI_Op mpi_op() { return MPI_MAX; };
151 static OUT add(const OUT & arg1, const OUT & arg2)
152 {
153 return arg2;
154 }
155 static OUT multiply(const T1 & arg1, const T2 & arg2)
156 {
157 // fragile since it wouldn't work with y <- x*A
158 return static_cast<OUT>(arg2);
159 }
160 static void axpy(T1 a, const T2 & x, OUT & y)
161 {
162 //y = add(y, multiply(a, x));
163 y = multiply(a, x);
164 }
165};
166
167template <class T1, class T2>
169{
171 static T_promote id() { return -1; };
172 static bool returnedSAID() { return false; }
173 static MPI_Op mpi_op() { return MPI_MAX; };
174 static T_promote add(const T_promote & arg1, const T_promote & arg2)
175 {
176 return std::max(arg1, arg2);
177 }
178 static T_promote multiply(const T1 & arg1, const T2 & arg2)
179 {
180 // we could have just returned arg2 but it would be
181 // fragile since it wouldn't work with y <- x*A
182 return (static_cast<T_promote>(arg1) *
183 static_cast<T_promote>(arg2) );
184 }
185 static void axpy(T1 a, const T2 & x, T_promote & y)
186 {
187 y = std::max(y, static_cast<T_promote>(a*x));
188 }
189};
190
191
192// This one is used for BFS iteration
193template <class T2>
195{
196 typedef T2 T_promote;
197 static T_promote id(){ return -1; };
198 static bool returnedSAID() { return false; }
199 static MPI_Op mpi_op() { return MPI_MAX; };
200 static T_promote add(const T_promote & arg1, const T_promote & arg2)
201 {
202 return std::max(arg1, arg2);
203 }
204 static T_promote multiply(const bool & arg1, const T2 & arg2)
205 {
206 return arg2;
207 }
208 static void axpy(bool a, const T2 & x, T_promote & y)
209 {
210 y = std::max(y, x);
211 }
212};
213
214template <class T1, class T2>
216{
218 static T_promote id(){ return 0; }
219 static bool returnedSAID() { return false; }
220 static MPI_Op mpi_op() { return MPI_SUM; };
221 static T_promote add(const T_promote & arg1, const T_promote & arg2)
222 {
223 return arg1+arg2;
224 }
225 static T_promote multiply(const T1 & arg1, const T2 & arg2)
226 {
227 return (static_cast<T_promote>(arg1) *
228 static_cast<T_promote>(arg2) );
229 }
230 static void axpy(T1 a, const T2 & x, T_promote & y)
231 {
232 y += a*x;
233 }
234};
235
236
237template <class T1, class T2>
239{
241 static T_promote id() { return std::numeric_limits<T_promote>::max(); };
242 static bool returnedSAID() { return false; }
243 static MPI_Op mpi_op() { return MPI_MIN; };
244 static T_promote add(const T_promote & arg1, const T_promote & arg2)
245 {
246 return std::min(arg1, arg2);
247 }
248 static T_promote multiply(const T1 & arg1, const T2 & arg2)
249 {
251 (static_cast<T_promote>(arg1), static_cast<T_promote>(arg2));
252 }
253 static void axpy(T1 a, const T2 & x, T_promote & y)
254 {
255 y = std::min(y, multiply(a, x));
256 }
257};
258
259}
260
261#endif
static MPI_Op mpi_op()
Definition Semirings.h:119
static const OUT & multiply(const OUT &arg1, bool arg2)
Definition Semirings.h:110
static OUT add(const OUT &arg1, const OUT &arg2)
Definition Semirings.h:103
static void axpy(const OUT &a, bool x, OUT &y)
Definition Semirings.h:114
static bool returnedSAID()
Definition Semirings.h:102
static void MPI_func(void *invec, void *inoutvec, int *len, MPI_Datatype *datatype)
Definition Semirings.h:133
static bool returnedSAID()
Definition Semirings.h:56
static MPI_Op mpi_op()
Definition Semirings.h:73
static const OUT & multiply(bool arg1, const OUT &arg2)
Definition Semirings.h:64
static void MPI_func(void *invec, void *inoutvec, int *len, MPI_Datatype *datatype)
Definition Semirings.h:87
static OUT add(const OUT &arg1, const OUT &arg2)
Definition Semirings.h:57
static void axpy(bool a, const OUT &x, OUT &y)
Definition Semirings.h:68
static T_promote id()
Definition Semirings.h:241
promote_trait< T1, T2 >::T_promote T_promote
Definition Semirings.h:240
static T_promote multiply(const T1 &arg1, const T2 &arg2)
Definition Semirings.h:248
static T_promote add(const T_promote &arg1, const T_promote &arg2)
Definition Semirings.h:244
static bool returnedSAID()
Definition Semirings.h:242
static void axpy(T1 a, const T2 &x, T_promote &y)
Definition Semirings.h:253
static MPI_Op mpi_op()
Definition Semirings.h:243
static T_promote multiply(const T1 &arg1, const T2 &arg2)
Definition Semirings.h:225
static T_promote add(const T_promote &arg1, const T_promote &arg2)
Definition Semirings.h:221
promote_trait< T1, T2 >::T_promote T_promote
Definition Semirings.h:217
static void axpy(T1 a, const T2 &x, T_promote &y)
Definition Semirings.h:230
static T_promote id()
Definition Semirings.h:218
static MPI_Op mpi_op()
Definition Semirings.h:220
static bool returnedSAID()
Definition Semirings.h:219
static void axpy(T1 a, const T2 &x, OUT &y)
Definition Semirings.h:160
static MPI_Op mpi_op()
Definition Semirings.h:150
static bool returnedSAID()
Definition Semirings.h:149
static OUT multiply(const T1 &arg1, const T2 &arg2)
Definition Semirings.h:155
static OUT add(const OUT &arg1, const OUT &arg2)
Definition Semirings.h:151
static T_promote add(const T_promote &arg1, const T_promote &arg2)
Definition Semirings.h:200
static void axpy(bool a, const T2 &x, T_promote &y)
Definition Semirings.h:208
static T_promote multiply(const bool &arg1, const T2 &arg2)
Definition Semirings.h:204
static T_promote multiply(const T1 &arg1, const T2 &arg2)
Definition Semirings.h:178
static T_promote id()
Definition Semirings.h:171
static void axpy(T1 a, const T2 &x, T_promote &y)
Definition Semirings.h:185
static bool returnedSAID()
Definition Semirings.h:172
static MPI_Op mpi_op()
Definition Semirings.h:173
static T_promote add(const T_promote &arg1, const T_promote &arg2)
Definition Semirings.h:174
promote_trait< T1, T2 >::T_promote T_promote
Definition Semirings.h:170
T operator()(const T &a, const T &b) const
Definition Semirings.h:42