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/cvs/rxvt-unicode/src/rxvtutil.h
Revision: 1.58
Committed: Thu Jun 28 15:19:15 2012 UTC (11 years, 10 months ago) by root
Content type: text/plain
Branch: MAIN
CVS Tags: rxvt-unicode-rel-9_20, rxvt-unicode-rel-9_19, rxvt-unicode-rel-9_18, rxvt-unicode-rel-9_17, rxvt-unicode-rel-9_16
Changes since 1.57: +2 -0 lines
Log Message:
add emman.h/c and use it for scrollback

File Contents

# User Rev Content
1 root 1.1 #ifndef RXVT_UTIL_H
2     #define RXVT_UTIL_H
3    
4 root 1.55 #include <new>
5 sf-exg 1.47 #include <stdlib.h>
6     #include <string.h>
7 sf-exg 1.45 #include "ecb.h"
8 sf-exg 1.49 #include "estl.h"
9 root 1.4
10 root 1.58 #include "emman.h"
11    
12 root 1.24 // increases code size unless -fno-enforce-eh-specs
13     #if __GNUC__
14     # define NOTHROW
15     # define THROW(x)
16     #else
17     # define NOTHROW throw()
18     # define THROW(x) throw x
19     #endif
20    
21 root 1.16 // various utility functions
22 sf-exg 1.51 template<typename T, typename U> static inline void min_it (T &a, U b) { a = a < (T)b ? a : (T)b; }
23     template<typename T, typename U> static inline void max_it (T &a, U b) { a = a > (T)b ? a : (T)b; }
24 root 1.13
25     template<typename T, typename U, typename V> static inline T clamp (T v, U a, V b) { return v < (T)a ? a : v >(T)b ? b : v; }
26     template<typename T, typename U, typename V> static inline void clamp_it (T &v, U a, V b) { v = v < (T)a ? a : v >(T)b ? b : v; }
27    
28 sf-exg 1.51 template<typename T> static inline T squared_diff (T a, T b) { return (a - b) * (a - b); }
29 root 1.25
30 root 1.21 // linear interpolation
31     template<typename T, typename U, typename P>
32 root 1.55 static inline T
33     lerp (T a, U b, P p)
34 root 1.21 {
35 root 1.26 return (long(a) * long(100 - p) + long(b) * long(p) + 50) / 100;
36 root 1.21 }
37    
38 ayin 1.32 // return a very temporary (and never deallocated) buffer. keep small.
39     void *rxvt_temp_buf (int len);
40    
41     template<typename T>
42     static inline T *
43     rxvt_temp_buf (int len)
44     {
45     return (T *)rxvt_temp_buf (len * sizeof (T));
46     }
47    
48 root 1.11 // in range including end
49     #define IN_RANGE_INC(val,beg,end) \
50 root 1.9 ((unsigned int)(val) - (unsigned int)(beg) <= (unsigned int)(end) - (unsigned int)(beg))
51 root 1.1
52 root 1.11 // in range excluding end
53     #define IN_RANGE_EXC(val,beg,end) \
54     ((unsigned int)(val) - (unsigned int)(beg) < (unsigned int)(end) - (unsigned int)(beg))
55    
56 ayin 1.36 // for m >= -n, ensure remainder lies between 0..n-1
57     #define MOD(m,n) (((m) + (n)) % (n))
58    
59 root 1.16 // makes dynamically allocated objects zero-initialised
60 root 1.38 struct zero_initialized
61     {
62 root 1.4 void *operator new (size_t s);
63     void operator delete (void *p, size_t s);
64     };
65    
66 ayin 1.32 struct stringvec : simplevec<char *>
67     {
68     ~stringvec ()
69     {
70     for (char **c = begin (); c != end (); c++)
71     free (*c);
72     }
73     };
74    
75 root 1.34 #if 0
76 root 1.1 template<typename T>
77 root 1.38 struct rxvt_vec : simplevec<void *>
78     {
79 root 1.1 typedef T *iterator;
80    
81     void push_back (T d) { simplevec<void *>::push_back ((void *)d); }
82     T pop_back () { return (T*)simplevec<void *>::pop_back (); }
83     void erase (int i) { erase (begin () + i); }
84     void erase (iterator i) { simplevec<void *>::erase ((void **)i); }
85     iterator begin () const { return (iterator)simplevec<void *>::begin (); }
86     iterator end () const { return (iterator)simplevec<void *>::end (); }
87     T &operator [] (int i) { return * (T *) (& ((* (simplevec<void *> *)this)[i])); }
88     const T &operator [] (int i) const { return * (const T *) (& ((* (const simplevec<void *> *)this)[i])); }
89     };
90 root 1.34 #endif
91 root 1.1
92 root 1.55 inline void *
93     operator new (size_t size)
94     {
95     // TODO: use rxvt_malloc
96     return malloc (size);
97     }
98    
99     inline void
100     operator delete (void *p)
101     {
102     free (p);
103     }
104    
105 root 1.1 template<typename T>
106 root 1.38 struct auto_ptr
107     {
108 root 1.1 T *p;
109    
110 root 1.55 auto_ptr () : p (0) { }
111    
112     explicit
113 root 1.1 auto_ptr (T *a) : p (a) { }
114    
115 root 1.56 auto_ptr (auto_ptr &a)
116 root 1.1 {
117     p = a.p;
118     a.p = 0;
119     }
120    
121     template<typename A>
122     auto_ptr (auto_ptr<A> &a)
123     {
124     p = a.p;
125     a.p = 0;
126     }
127    
128     ~auto_ptr ()
129     {
130 root 1.55 delete p;
131 root 1.1 }
132    
133 sf-exg 1.54 void reset (T *a)
134 root 1.1 {
135 root 1.55 delete p;
136 root 1.1 p = a;
137     }
138    
139 sf-exg 1.54 // void because it makes sense in our context
140 root 1.55 void operator =(auto_ptr &a)
141 root 1.1 {
142 sf-exg 1.57 reset (a.release ());
143 root 1.1 }
144    
145     template<typename A>
146 root 1.55 void operator =(auto_ptr<A> &a)
147 root 1.1 {
148 sf-exg 1.57 reset (a.release ());
149 root 1.1 }
150    
151 root 1.55 T *operator ->() const { return p; }
152     T &operator *() const { return *p; }
153 root 1.1
154 root 1.55 operator T *() { return p; }
155     T *get () const { return p; }
156 root 1.1
157 root 1.55 T *release()
158 root 1.1 {
159     T *r = p;
160     p = 0;
161     return r;
162     }
163     };
164    
165     typedef auto_ptr<char> auto_str;
166 root 1.20
167 root 1.1 #endif
168