%define CONVERT_BOOL_IN(lvar,t,invar) convert_to_boolean_ex(invar); lvar = (t) Z_LVAL_PP(invar); %enddef %define CONVERT_INT_IN(lvar,t,invar) convert_to_long_ex(invar); lvar = (t) Z_LVAL_PP(invar); %enddef %define CONVERT_LONG_LONG_IN(lvar,t,invar) switch ((*(invar))->type) { case IS_DOUBLE: lvar = (t) (*(invar))->value.dval; break; case IS_STRING: { char * endptr; errno = 0; lvar = (t) strtoll((*(invar))->value.str.val, &endptr, 10); if (*endptr && !errno) break; /* FALL THRU */ } default: convert_to_long_ex(invar); lvar = (t) (*(invar))->value.lval; } %enddef %define CONVERT_UNSIGNED_LONG_LONG_IN(lvar,t,invar) switch ((*(invar))->type) { case IS_DOUBLE: lvar = (t) (*(invar))->value.dval; break; case IS_STRING: { char * endptr; errno = 0; lvar = (t) strtoull((*(invar))->value.str.val, &endptr, 10); if (*endptr && !errno) break; /* FALL THRU */ } default: convert_to_long_ex(invar); lvar = (t) (*(invar))->value.lval; } %enddef %define CONVERT_INT_OUT(lvar,invar) lvar = (t) Z_LVAL_PP(invar); %enddef %define CONVERT_FLOAT_IN(lvar,t,invar) convert_to_double_ex(invar); lvar = (t) Z_DVAL_PP(invar); %enddef %define CONVERT_CHAR_IN(lvar,t,invar) convert_to_string_ex(invar); lvar = (t) *Z_STRVAL_PP(invar); %enddef %define CONVERT_STRING_IN(lvar,t,invar) if ((*invar)->type==IS_NULL) { lvar = (t) 0; } else { convert_to_string_ex(invar); lvar = (t) Z_STRVAL_PP(invar); } %enddef %define %pass_by_val( TYPE, CONVERT_IN ) %typemap(in) TYPE %{ CONVERT_IN($1,$1_ltype,$input); %} %typemap(in) const TYPE & ($*1_ltype temp) %{ CONVERT_IN(temp,$*1_ltype,$input); $1 = &temp; %} %typemap(directorout) TYPE %{ CONVERT_IN($result,$1_ltype,&$input); %} %typemap(directorout) const TYPE & ($*1_ltype temp) %{ CONVERT_IN(temp,$*1_ltype,&$input); $result = &temp; %} %enddef %fragment("t_output_helper","header") %{ static void t_output_helper(zval **target, zval *o TSRMLS_DC) { zval *tmp; if ( (*target)->type == IS_ARRAY ) { /* it's already an array, just append */ add_next_index_zval( *target, o ); return; } if ( (*target)->type == IS_NULL ) { REPLACE_ZVAL_VALUE(target,o,1); FREE_ZVAL(o); return; } ALLOC_INIT_ZVAL(tmp); *tmp = **target; zval_copy_ctor(tmp); array_init(*target); add_next_index_zval( *target, tmp); add_next_index_zval( *target, o); } %}