/** @file
Parser: compiler support helper functions decls.
Copyright (c) 2001 ArtLebedev Group (http://www.artlebedev.com)
Author: Alexander Petrosyan <paf@design.ru> (http://design.ru/paf)
$Id: compile_tools.h,v 1.45 2001/07/25 12:18:23 parser Exp $
*/
#ifndef COMPILE_TOOLS
#define COMPILE_TOOLS
#include "pa_config_includes.h"
#include "pa_opcode.h"
#include "pa_types.h"
#include "pa_vstring.h"
#include "pa_request.h"
enum lexical_state {
LS_USER,
LS_COMMENT,
LS_DEF_NAME,
LS_DEF_PARAMS,
LS_DEF_LOCALS,
LS_DEF_COMMENT,
LS_DEF_SPECIAL_BODY,
LS_EXPRESSION_STRING_QUOTED,
LS_EXPRESSION_STRING_APOSTROFED,
LS_EXPRESSION_VAR_NAME,
LS_VAR_NAME_SIMPLE,
LS_VAR_NAME_CURLY,
LS_VAR_NAME_NO_COLON,
LS_VAR_ROUND,
LS_VAR_SQUARE,
LS_VAR_CURLY,
LS_METHOD_NAME,
LS_METHOD_SQUARE,
LS_METHOD_CURLY,
LS_METHOD_ROUND,
LS_METHOD_AFTER
};
/// compiler status
struct parse_control {
//@{
/// @name input
Pool *pool;
Request *request;
VStateless_class *cclass;
#ifndef NO_CSTRING_ORIGIN
const char *source;
const char *file;
#endif
int line, col;
//@}
//@{
/// @name state; initially
bool trim_bof;
int pending_state; ///< i=0
String *string; ///< =new(pool) String(pool)
#define MAX_LEXICAL_STATES 100
enum lexical_state ls; ///< =LS_USER;
int sp; ///< =0
enum lexical_state stack[MAX_LEXICAL_STATES];
int brackets_nestages[MAX_LEXICAL_STATES]; ///< brackets nestage on each state
//@}
/// output: filled input 'methods' and 'error' if any
char error[MAX_STRING];
};
/// New array // return empty array
inline Array/*<Operation>*/ *N(Pool& pool) {
return new(pool) Array/*<Operation>*/(pool);
}
/// Assembler instruction // append ordinary instruction to ops
inline void O(Array/*<Operation>*/ *result, enum OPCODE code) {
Operation op; op.code=code;
*result+=op.cast;
}
/// Argument Eval_expression // append eval_expression to ops
inline void AE(Array/*<Operation>*/ *result, char *eval_expression) {
*result+=eval_expression;
}
/// aPpend 'code_array' to 'result'
inline void P(Array/*<Operation>*/ *result, Array *code_array) {
result->append_array(*code_array);
}
/// aPpend part of 'code_array', starting from offset, to 'result'
inline void P(Array/*<Operation>*/ *result, Array *code_array, int offset) {
result->append_array(*code_array, offset);
}
/// aPpend 'vstring' to 'result'
void PV(Array/*<Operation>*/ *result, VString *vstring);
/// Parameter 'simple Code_Array'
void PCA(Array/*<Operation>*/ *result, Array/*<Operation>*/ *code_array);
/// Parameter 'Expression code_Array'
void PEA(Array/*<Operation>*/ *result, Array/*<Operation>*/ *code_array);
/// Construct 'simple Code_Array'
void CCA(Array/*<Operation>*/ *result, Array/*<Operation>*/ *code_array);
/**
Value Literal // returns array with
- first: OP_VALUE instruction
- second op: string itself
*/
Array *VL(Value *value);
/// Literal Array to(2) Value @return Value from literal Array OP+Value
Value *LA2V(Array *literal_string_array, int offset=0);
/// Literal Array to(2) String @return String value from literal Array OP+String array
inline const String *LA2S(Array *literal_string_array, int offset=0) {
if(Value *value=LA2V(literal_string_array, offset))
return value->get_string();
return 0;
}
void change_string_literal_to_double_literal(Array *literal_string_array);
void change_string_literal_to_write_string_literal(Array *literal_string_array);
void push_LS(parse_control& pc, lexical_state new_state);
void pop_LS(parse_control& pc);
#endif
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