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Filter: Print instructions take only one value (simplification)
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@ -374,7 +374,7 @@ CF_KEYWORDS(FUNCTION, PRINT, PRINTN, UNSET, RETURN,
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%nonassoc ELSE
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%type <xp> cmds_int cmd_prep
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%type <x> term term_bs cmd cmd_var cmds cmds_scoped constant constructor print_list var var_list function_call symbol_value bgp_path_expr bgp_path bgp_path_tail term_dot_method method_name_cont
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%type <x> term term_bs cmd cmd_var cmds cmds_scoped constant constructor var var_list function_call symbol_value bgp_path_expr bgp_path bgp_path_tail term_dot_method method_name_cont
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%type <fda> dynamic_attr
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%type <fsa> static_attr
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%type <f> filter where_filter
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@ -963,16 +963,6 @@ break_command:
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| ERROR { $$ = F_ERROR; }
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;
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print_list: /* EMPTY */ { $$ = NULL; }
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| term { $$ = $1; }
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| term ',' print_list {
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ASSERT($1);
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ASSERT($1->next == NULL);
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$1->next = $3;
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$$ = $1;
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}
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;
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var:
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type symbol '=' term ';' {
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struct symbol *sym = cf_define_symbol(new_config, $2, SYM_VARIABLE | $1, offset, f_new_var(sym_->scope));
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@ -1049,23 +1039,14 @@ cmd:
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| UNSET '(' dynamic_attr ')' ';' {
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$$ = f_new_inst(FI_EA_UNSET, $3);
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}
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| break_command print_list ';' {
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struct f_inst *breaker = f_new_inst(FI_DIE, $1);
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if ($2) {
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struct f_inst *printer = f_new_inst(FI_PRINT, $2);
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struct f_inst *flusher = f_new_inst(FI_FLUSH);
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printer->next = flusher;
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flusher->next = breaker;
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$$ = printer;
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} else
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$$ = breaker;
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| break_command var_list ';' {
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$$ = f_print($2, !!$2, $1);
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}
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| PRINT print_list ';' {
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$$ = f_new_inst(FI_PRINT, $2);
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$$->next = f_new_inst(FI_FLUSH);
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| PRINT var_list ';' {
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$$ = f_print($2, 1, F_NOP);
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}
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| PRINTN print_list ';' {
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$$ = f_new_inst(FI_PRINT, $2);
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| PRINTN var_list ';' {
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$$ = f_print($2, 0, F_NOP);
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}
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| function_call ';' { $$ = f_new_inst(FI_DROP_RESULT, $1); }
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| CASE term '{' switch_body '}' {
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@ -625,13 +625,12 @@
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LINE(3,0);
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}
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INST(FI_PRINT, 0, 0) {
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INST(FI_PRINT, 1, 0) {
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NEVER_CONSTANT;
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VARARG;
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ARG_ANY(1);
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if (whati->varcount && !(fs->flags & FF_SILENT))
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for (uint i=0; i<whati->varcount; i++)
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val_format(&(vv(i)), &fs->buf);
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if (!(fs->flags & FF_SILENT))
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val_format(&v1, &fs->buf);
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}
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INST(FI_FLUSH, 0, 0) {
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@ -97,6 +97,7 @@ void f_add_lines(const struct f_line_item *what, struct filter_iterator *fit);
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struct filter *f_new_where(struct f_inst *);
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struct f_inst *f_for_cycle(struct symbol *var, struct f_inst *term, struct f_inst *block);
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struct f_inst *f_print(struct f_inst *vars, int flush, enum filter_return fret);
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static inline struct f_dynamic_attr f_new_dynamic_attr(u8 type, enum f_type f_type, uint code) /* Type as core knows it, type as filters know it, and code of dynamic attribute */
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{ return (struct f_dynamic_attr) { .type = type, .f_type = f_type, .ea_code = code }; } /* f_type currently unused; will be handy for static type checking */
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@ -75,6 +75,31 @@ f_for_cycle(struct symbol *var, struct f_inst *term, struct f_inst *block)
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return ms->method->new_inst(term, loop_start);
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}
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struct f_inst *
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f_print(struct f_inst *vars, int flush, enum filter_return fret)
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{
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#define AX(...) do { struct f_inst *_tmp = f_new_inst(__VA_ARGS__); _tmp->next = output; output = _tmp; } while (0)
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struct f_inst *output = NULL;
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if (fret != F_NOP)
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AX(FI_DIE, fret);
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if (flush)
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AX(FI_FLUSH);
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while (vars)
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{
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struct f_inst *tmp = vars;
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vars = vars->next;
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tmp->next = NULL;
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AX(FI_PRINT, tmp);
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}
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return output;
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#undef AX
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}
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#define CA_KEY(n) n->name, n->fda.type
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#define CA_NEXT(n) n->next
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#define CA_EQ(na,ta,nb,tb) (!strcmp(na,nb) && (ta == tb))
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