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26 #ifndef S_EXPRESSION_H
27 #define S_EXPRESSION_H
31 #define SX_AS_(t,x) ((x) && ((s_expression*) x)->is_##t()) ? ((s_##t*) (x)) \
33 #define SX_AS_LIST(x) SX_AS_(list, x)
34 #define SX_AS_SYMBOL(x) SX_AS_(symbol, x)
35 #define SX_AS_NUMBER(x) SX_AS_(number, x)
36 #define SX_AS_INT(x) SX_AS_(int, x)
38 /* For our purposes, S-Expressions are:
42 * - (expr1 expr2 ... exprN) where exprN is an S-Expression
44 * Unlike LISP/Scheme, we do not support (foo . bar) pairs.
46 class s_expression : public exec_node
50 * Read an S-Expression from the given string.
51 * Advances the supplied pointer to just after the expression read.
53 * Any allocation will be performed with 'ctx' as the talloc owner.
55 static s_expression *read_expression(void *ctx, const char *&src);
58 * Print out an S-Expression. Useful for debugging.
60 virtual void print() = 0;
62 virtual bool is_list() const { return false; }
63 virtual bool is_symbol() const { return false; }
64 virtual bool is_number() const { return false; }
65 virtual bool is_int() const { return false; }
73 class s_number : public s_expression
76 bool is_number() const { return true; }
78 virtual float fvalue() = 0;
84 class s_int : public s_number
87 s_int(int x) : val(x) { }
89 bool is_int() const { return true; }
91 float fvalue() { return float(this->val); }
92 int value() { return this->val; }
100 class s_float : public s_number
103 s_float(float x) : val(x) { }
105 float fvalue() { return this->val; }
113 class s_symbol : public s_expression
116 s_symbol(const char *);
118 bool is_symbol() const { return true; }
120 const char *value() { return this->str; }
128 /* Lists of expressions: (expr1 ... exprN) */
129 class s_list : public s_expression
134 virtual bool is_list() const { return true; }
135 unsigned length() const;
139 exec_list subexpressions;
142 #endif /* S_EXPRESSION_H */