source: Sophya/trunk/Poubelle/DPC:FitsIOServer/Blitz/blitz/array/indirect.h

Last change on this file was 658, checked in by ansari, 26 years ago

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[658]1#ifndef BZ_ARRAY_INDIRECT_H
2#define BZ_ARRAY_INDIRECT_H
3
4#include <blitz/array/asexpr.h>
5#include <blitz/array/cartesian.h>
6
7BZ_NAMESPACE(blitz)
8
9template<class T_array, class T_index>
10class IndirectArray {
11
12public:
13 IndirectArray(T_array& array, T_index& index)
14 : array_(array), index_(index)
15 { }
16
17 template<class T_expr>
18 void operator=(T_expr expr);
19
20protected:
21 T_array& array_;
22 T_index& index_;
23};
24
25// Forward declarations
26template<class T_array, class T_arrayiter, class T_subdomain, class T_expr>
27inline void applyOverSubdomain(const T_array& array, T_arrayiter& arrayIter,
28 T_subdomain subdomain, T_expr expr);
29template<class T_array, class T_arrayiter, int N_rank, class T_expr>
30inline void applyOverSubdomain(const T_array& array, T_arrayiter& arrayIter,
31 RectDomain<N_rank> subdomain,
32 T_expr expr);
33
34template<class T_array, class T_index> template<class T_rhs>
35void IndirectArray<T_array, T_index>::operator=(T_rhs rhs)
36{
37 typedef _bz_typename asExpr<T_rhs>::T_expr T_expr;
38 T_expr expr(rhs);
39
40 _bz_typename T_array::T_iterator arrayIter(array_);
41
42 _bz_typename T_index::iterator iter = index_.begin(),
43 end = index_.end();
44
45 for (; iter != end; ++iter)
46 {
47 _bz_typename T_index::value_type subdomain = *iter;
48 applyOverSubdomain(array_, arrayIter, subdomain, expr);
49 }
50}
51
52template<class T_array, class T_arrayiter, class T_subdomain, class T_expr>
53inline void applyOverSubdomain(const T_array& array, T_arrayiter& arrayIter,
54 T_subdomain subdomain, T_expr expr)
55{
56 BZPRECHECK(array.isInRange(subdomain),
57 "In indirection using an STL container of TinyVector<int,"
58 << array.rank() << ">, one of the" << endl << "positions is out of"
59 " range: " << endl << subdomain << endl
60 << "Array lower bounds: " << array.lbound() << endl
61 << "Array upper bounds: " << array.ubound() << endl)
62
63 arrayIter.moveTo(subdomain);
64 expr.moveTo(subdomain);
65
66 *const_cast<_bz_typename T_arrayiter::T_numtype*>(arrayIter.data()) = *expr;
67}
68
69// Specialization for RectDomain<N>
70template<class T_array, class T_arrayiter, int N_rank, class T_expr>
71inline void applyOverSubdomain(const T_array& array, T_arrayiter& arrayIter,
72 RectDomain<N_rank> subdomain,
73 T_expr expr)
74{
75 typedef _bz_typename T_array::T_numtype T_numtype;
76
77 // Assume that the RectDomain<N_rank> is a 1-D strip.
78 // Find the dimension in which the strip is oriented. This
79 // variable is static so that we cache the value; likely to be
80 // the same for all strips within a container.
81
82 static int stripDim = 0;
83
84 if (subdomain.lbound(stripDim) == subdomain.ubound(stripDim))
85 {
86 // Cached value was wrong, find the correct value of stripDim
87 for (stripDim=0; stripDim < N_rank; ++stripDim)
88 if (subdomain.lbound(stripDim) != subdomain.ubound(stripDim))
89 break;
90
91 // Handle case where the strip is just a single point
92 if (stripDim == N_rank)
93 stripDim = 0;
94 }
95
96#ifdef BZ_DEBUG
97 // Check that this is in fact a 1D strip
98 for (int i=0; i < N_rank; ++i)
99 if ((i != stripDim) && (subdomain.lbound(i) != subdomain.ubound(i)))
100 BZPRECHECK(0, "In indirection using an STL container of RectDomain<"
101 << N_rank << ">, one of" << endl << "the RectDomain objects was not"
102 " a one-dimensional strip:" << endl << "RectDomain<" << N_rank
103 << ">::lbound() = " << subdomain.lbound() << endl
104 << "RectDomain<" << N_rank << ">::ubound() = " << subdomain.ubound())
105#endif
106
107 // Check that the start and end position are in range
108 BZPRECHECK(array.isInRange(subdomain.lbound()),
109 "In indirection using an STL container of RectDomain<"
110 << N_rank << ">, one of" << endl << "the RectDomain objects has a"
111 " lbound which is out of range:" << endl
112 << subdomain.lbound() << endl
113 << "Array lower bounds: " << array.lbound() << endl
114 << "Array upper bounds: " << array.ubound() << endl)
115
116 BZPRECHECK(array.isInRange(subdomain.ubound()),
117 "In indirection using an STL container of RectDomain<"
118 << N_rank << ">, one of" << endl << "the RectDomain objects has a"
119 " ubound which is out of range:" << endl
120 << subdomain.lbound() << endl
121 << "Array lower bounds: " << array.lbound() << endl
122 << "Array upper bounds: " << array.ubound() << endl)
123
124 // Position at the beginning of the strip
125 arrayIter.moveTo(subdomain.lbound());
126 expr.moveTo(subdomain.lbound());
127
128 // Loop through the strip
129
130#ifdef BZ_USE_FAST_READ_ARRAY_EXPR
131
132 _bz_bool useUnitStride = arrayIter.isUnitStride(stripDim)
133 && expr.isUnitStride(stripDim);
134
135 int lbound = subdomain.lbound(stripDim);
136 int ubound = subdomain.ubound(stripDim);
137
138 if (useUnitStride)
139 {
140 T_numtype* _bz_restrict data = const_cast<T_numtype*>(arrayIter.data());
141
142 int length = ubound - lbound + 1;
143 for (int i=0; i < length; ++i)
144 data[i] = expr.fastRead(i);
145 }
146 else {
147#endif
148
149 arrayIter.loadStride(stripDim);
150 expr.loadStride(stripDim);
151
152 for (int i=lbound; i <= ubound; ++i)
153 {
154 *const_cast<_bz_typename T_arrayiter::T_numtype*>(arrayIter.data())
155 = *expr;
156 expr.advance();
157 arrayIter.advance();
158 }
159
160#ifdef BZ_USE_FAST_READ_ARRAY_EXPR
161 }
162#endif
163}
164
165// Global functions for cartesian product of index sets
166template<class T_container>
167CartesianProduct<TinyVector<int,2>,T_container,2>
168indexSet(const T_container& container0, const T_container& container1)
169{
170 return CartesianProduct<TinyVector<int,2>,T_container,2>(
171 const_cast<T_container&>(container0),
172 const_cast<T_container&>(container1));
173}
174
175template<class T_container>
176CartesianProduct<TinyVector<int,3>,T_container,3>
177indexSet(const T_container& container0, const T_container& container1,
178 const T_container& container2)
179{
180 return CartesianProduct<TinyVector<int,3>,T_container,3>(
181 const_cast<T_container&>(container0),
182 const_cast<T_container&>(container1),
183 const_cast<T_container&>(container2));
184}
185
186// Mixture of singletons and containers, e.g. A[indexSet(I,3,K)]
187
188// cp_findContainerType<T1,T2,T3,...,Tn>::T_container
189// The set of parameters T1, T2, T3, ... Tn is a mixture of
190// int and T_container. This traits class finds the container
191// type, and sets T_container.
192//
193// e.g. cp_findContainerType<int,int,list<int>,int>::T_container is list<int>
194// cp_findContainerType<int,deque<int>,deque<int>>::T_container
195// is deque<int>
196
197template<class T1, class T2, class T3=int, class T4=int>
198struct cp_findContainerType {
199 typedef T1 T_container;
200};
201
202template<class T2, class T3, class T4>
203struct cp_findContainerType<int,T2,T3,T4> {
204 typedef _bz_typename cp_findContainerType<T2,T3,T4>::T_container T_container;
205};
206
207
208// The cp_traits class handles promotion of singleton integers to
209// containers. It takes two template parameters:
210// T = argument type
211// T2 = container type
212// If T is an integer, then a container of type T2 is created and the
213// integer is inserted. This container is returned.
214// Otherwise, T is assumed to be the same type as T2, and the original
215// container is returned.
216
217template<class T, class T2>
218struct cp_traits {
219 typedef T T_container;
220
221 static const T_container& make(const T& x)
222 { return x; }
223};
224
225template<class T2>
226struct cp_traits<int,T2> {
227 typedef T2 T_container;
228
229 static T2 make(int x)
230 {
231 T2 singleton;
232 singleton.push_back(x);
233 return singleton;
234 }
235};
236
237// These versions of indexSet() allow mixtures of integer
238// and container arguments. At least one integer must be
239// specified.
240
241template<class T1, class T2>
242CartesianProduct<TinyVector<int,2>, _bz_typename
243 cp_findContainerType<T1,T2>::T_container,2>
244indexSet(const T1& c1, const T2& c2)
245{
246 typedef _bz_typename cp_findContainerType<T1,T2>::T_container
247 T_container;
248
249 return CartesianProduct<TinyVector<int,2>, T_container, 2>(
250 cp_traits<T1,T_container>::make(c1),
251 cp_traits<T2,T_container>::make(c2));
252}
253
254template<class T1, class T2, class T3>
255CartesianProduct<TinyVector<int,3>, _bz_typename
256 cp_findContainerType<T1,T2,T3>::T_container, 3>
257indexSet(const T1& c1, const T2& c2, const T3& c3)
258{
259 typedef _bz_typename cp_findContainerType<T1,T2,T3>::T_container
260 T_container;
261
262 return CartesianProduct<TinyVector<int,3>, T_container, 3>(
263 cp_traits<T1,T_container>::make(c1),
264 cp_traits<T2,T_container>::make(c2),
265 cp_traits<T3,T_container>::make(c3));
266}
267
268BZ_NAMESPACE_END
269
270#endif // BZ_ARRAY_INDIRECT_H
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