source: tags/asap-4.4.0+atnf1~deb9u1/src/Locator.tcc@ 3149

Last change on this file since 3149 was 3020, checked in by Takeshi Nakazato, 10 years ago

New Development: No

JIRA Issue: Yes CAS-7193

Ready for Test: Yes

Interface Changes: Yes/No

What Interface Changed: Please list interface changes

Test Programs: List test programs

Put in Release Notes: Yes/No

Module(s): Module Names change impacts.

Description: Describe your changes here...

Fix for segmentation fault when invalid Tsys table is applied.


File size: 1.8 KB
Line 
1//
2// C++ Implementation: Locator
3//
4// Description:
5//
6//
7// Author: Takeshi Nakazato <takeshi.nakazato@nao.ac.jp>, (C) 2012
8//
9// Copyright: See COPYING file that comes with this distribution
10//
11//
12#include <assert.h>
13#include <iostream>
14#include <stdexcept>
15
16#include "Locator.h"
17
18namespace asap {
19template <class T> Locator<T>::Locator()
20 : x_(0),
21 n_(0),
22 ascending_(true),
23 copy_(false)
24{
25}
26
27template <class T> Locator<T>::Locator(T *v, unsigned int n, bool copystorage)
28 : x_(0),
29 n_(0),
30 ascending_(true),
31 copy_(false)
32{
33 set(v, n, copystorage);
34}
35
36template <class T> Locator<T>::~Locator()
37{
38 if (copy_ && x_)
39 delete[] x_;
40}
41
42template <class T> void Locator<T>::set(T *v, unsigned int n, bool copystorage)
43{
44 if (copy_) {
45 if (!copystorage || n > n_) {
46 delete[] x_;
47 x_ = 0;
48 }
49 }
50 copy_ = copystorage;
51 n_ = n;
52 if (copy_) {
53 if (!x_)
54 x_ = new double[n_];
55 for (unsigned int i = 0; i < n_; i++)
56 x_[i] = v[i];
57 }
58 else {
59 x_ = v;
60 }
61 assert(n_ > 0);
62 if (n_ == 0) {
63 throw std::runtime_error("Input array length is 0.");
64 }
65 ascending_ = (x_[0] <= x_[n_-1]);
66}
67
68template <class T> unsigned int Locator<T>::bisection(T x, unsigned int left, unsigned int right)
69{
70 unsigned int jl = left;
71 unsigned int ju = right;
72
73 if (ascending_) {
74 // ascending order
75 if (x <= x_[0])
76 return 0;
77 else if (x > x_[n_-1])
78 return n_;
79
80 unsigned int jm;
81 while (ju - jl > 1) {
82 jm = (ju + jl) / 2;
83 if (x > x_[jm])
84 jl = jm;
85 else
86 ju = jm;
87 }
88 }
89 else {
90 // descending order
91 if (x >= x_[0])
92 return 0;
93 else if (x < x_[n_-1])
94 return n_;
95
96 unsigned int jm;
97 while (ju - jl > 1) {
98 jm = (ju + jl) / 2;
99 if (x < x_[jm])
100 jl = jm;
101 else
102 ju = jm;
103 }
104 }
105
106 return ju;
107}
108
109}
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