source: libcfa/prelude/builtins.c@ 044ae62

ADT
Last change on this file since 044ae62 was 8a97248, checked in by Peter A. Buhr <pabuhr@…>, 3 years ago

switch from old trait syntax to new trait syntax using forall clause

  • Property mode set to 100644
File size: 6.6 KB
Line 
1//
2// Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// builtins.c --
8//
9// Author : Peter A. Buhr
10// Created On : Fri Jul 21 16:21:03 2017
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Thu Feb 2 11:33:56 2023
13// Update Count : 135
14//
15
16#define __cforall_builtins__
17
18// type that wraps a pointer and a destructor-like function - used in generating implicit destructor calls for struct members in user-defined functions
19// Note: needs to occur early, because it is used to generate destructor calls during code generation
20forall(T &)
21struct __Destructor {
22 T * object;
23 void (*dtor)(T *);
24};
25
26// defined destructor in the case that non-generated code wants to use __Destructor
27forall(T &)
28static inline void ^?{}(__Destructor(T) & x) {
29 if (x.object && x.dtor) {
30 x.dtor(x.object);
31 }
32}
33
34// easy interface into __Destructor's destructor for easy codegen purposes
35extern "C" {
36 forall(T &)
37 static inline void __destroy_Destructor(__Destructor(T) * dtor) {
38 ^(*dtor){};
39 }
40}
41
42// exception implementation
43
44typedef unsigned long long __cfaabi_abi_exception_type_t;
45
46#include <limits.h> // CHAR_BIT
47#include "../src/virtual.h"
48#include "../src/exception.h"
49
50void exit( int status, const char fmt[], ... ) __attribute__ (( format(printf, 2, 3), __nothrow__, __leaf__, __noreturn__ ));
51void abort( const char fmt[], ... ) __attribute__ (( format(printf, 1, 2), __nothrow__, __leaf__, __noreturn__ ));
52
53forall(T &)
54static inline T & identity(T & i) {
55 return i;
56}
57
58// generator support
59struct generator$ {
60 inline int;
61};
62
63static inline void ?{}(generator$ & this) { ((int&)this) = 0; }
64static inline void ^?{}(generator$ &) {}
65
66forall( T & )
67trait is_generator {
68 void main(T & this);
69 generator$ * get_generator(T & this);
70};
71
72forall(T & | is_generator(T))
73static inline T & resume(T & gen) {
74 main(gen);
75 return gen;
76}
77
78// implicit increment, decrement if += defined, and implicit not if != defined
79
80// C11 reference manual Section 6.5.16 (page101): "An assignment expression has the value of the left operand after the
81// assignment, but is not an lvalue." Hence, return a value not a reference.
82static inline {
83 forall( T | { T ?+=?( T &, one_t ); } )
84 T ++?( T & x ) { return x += 1; }
85
86 forall( T | { T ?+=?( T &, one_t ); } )
87 T ?++( T & x ) { T tmp = x; x += 1; return tmp; }
88
89 forall( T | { T ?-=?( T &, one_t ); } )
90 T --?( T & x ) { return x -= 1; }
91
92 forall( T | { T ?-=?( T &, one_t ); } )
93 T ?--( T & x ) { T tmp = x; x -= 1; return tmp; }
94
95 forall( T | { int ?!=?( T, zero_t ); } )
96 int !?( T & x ) { return !( x != 0 ); }
97} // distribution
98
99// universal typed pointer constant
100static inline forall( DT & ) DT * intptr( uintptr_t addr ) { return (DT *)addr; }
101static inline forall( ftype FT ) FT * intptr( uintptr_t addr ) { return (FT *)addr; }
102
103#if defined(__SIZEOF_INT128__)
104// constructor for 128-bit numbers (all constants are unsigned as +/- are operators)
105static inline void ?{}( unsigned int128 & this, unsigned long int h, unsigned long int l ) {
106 this = (unsigned int128)h << 64 | (unsigned int128)l;
107} // ?{}
108#endif // __SIZEOF_INT128__
109
110// for-control index constraints
111// forall( T | { void ?{}( T &, zero_t ); void ?{}( T &, one_t ); T ?+=?( T &, T ); T ?-=?( T &, T ); int ?<?( T, T ); } )
112// static inline T __for_control_index_constraints__( T t ) { return t; }
113
114// exponentiation operator implementation
115
116extern "C" {
117 float powf( float x, float y );
118 double pow( double x, double y );
119 long double powl( long double x, long double y );
120 float _Complex cpowf( float _Complex x, _Complex float z );
121 double _Complex cpow( double _Complex x, _Complex double z );
122 long double _Complex cpowl( long double _Complex x, _Complex long double z );
123} // extern "C"
124
125static inline {
126 float ?\?( float x, float y ) { return powf( x, y ); }
127 double ?\?( double x, double y ) { return pow( x, y ); }
128 long double ?\?( long double x, long double y ) { return powl( x, y ); }
129 float _Complex ?\?( float _Complex x, _Complex float y ) { return cpowf(x, y ); }
130 double _Complex ?\?( double _Complex x, _Complex double y ) { return cpow( x, y ); }
131 long double _Complex ?\?( long double _Complex x, _Complex long double y ) { return cpowl( x, y ); }
132} // distribution
133
134#define __CFA_BASE_COMP_1__() if ( x == 1 ) return 1
135#define __CFA_BASE_COMP_2__() if ( x == 2 ) return x << (y - 1)
136#define __CFA_EXP_OVERFLOW__() if ( y >= sizeof(y) * CHAR_BIT ) return 0
137
138#define __CFA_EXP__() \
139 if ( y == 0 ) return 1; /* convention */ \
140 __CFA_BASE_COMP_1__(); /* base case */ \
141 __CFA_BASE_COMP_2__(); /* special case, positive shifting for integral types */ \
142 __CFA_EXP_OVERFLOW__(); /* immediate overflow, negative exponent > 2^size-1 */ \
143 typeof(x) op = 1; /* accumulate odd product */ \
144 for ( ; y > 1; y >>= 1 ) { /* squaring exponentiation, O(log2 y) */ \
145 if ( (y & 1) == 1 ) op = op * x; /* odd ? */ \
146 x = x * x; \
147 } \
148 return x * op
149
150static inline {
151 long int ?\?( int x, unsigned int y ) { __CFA_EXP__(); }
152 long int ?\?( long int x, unsigned long int y ) { __CFA_EXP__(); }
153 long long int ?\?( long long int x, unsigned long long int y ) { __CFA_EXP__(); }
154 // unsigned computation may be faster and larger
155 unsigned long int ?\?( unsigned int x, unsigned int y ) { __CFA_EXP__(); }
156 unsigned long int ?\?( unsigned long int x, unsigned long int y ) { __CFA_EXP__(); }
157 unsigned long long int ?\?( unsigned long long int x, unsigned long long int y ) { __CFA_EXP__(); }
158} // distribution
159
160#undef __CFA_BASE_COMP_1__
161#undef __CFA_BASE_COMP_2__
162#undef __CFA_EXP_OVERFLOW__
163#define __CFA_BASE_COMP_1__()
164#define __CFA_BASE_COMP_2__()
165#define __CFA_EXP_OVERFLOW__()
166
167static inline forall( OT | { void ?{}( OT & this, one_t ); OT ?*?( OT, OT ); } ) {
168 OT ?\?( OT x, unsigned int y ) { __CFA_EXP__(); }
169 OT ?\?( OT x, unsigned long int y ) { __CFA_EXP__(); }
170 OT ?\?( OT x, unsigned long long int y ) { __CFA_EXP__(); }
171} // distribution
172
173#undef __CFA_BASE_COMP_1__
174#undef __CFA_BASE_COMP_2__
175#undef __CFA_EXP_OVERFLOW__
176
177static inline {
178 long int ?\=?( int & x, unsigned int y ) { x = x \ y; return x; }
179 long int ?\=?( long int & x, unsigned long int y ) { x = x \ y; return x; }
180 long long int ?\=?( long long int & x, unsigned long long int y ) { x = x \ y; return x; }
181 unsigned long int ?\=?( unsigned int & x, unsigned int y ) { x = x \ y; return x; }
182 unsigned long int ?\=?( unsigned long int & x, unsigned long int y ) { x = x \ y; return x; }
183 unsigned long long int ?\=?( unsigned long long int & x, unsigned long long int y ) { x = x \ y; return x; }
184} // distribution
185
186// Local Variables: //
187// mode: c //
188// tab-width: 4 //
189// End: //
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