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Avoid being exponential, do not allow ! =
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c8518ae136
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@ -8,10 +8,7 @@
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FIXME (nonurgent): define keyword
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FIXME (for BGP): whole system of paths, path ~ string, path.prepend(), path.originate
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FIXME: create community lists
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FIXME: '! =' should not be permitted. Ze `!=' by nemelo byt totez jako `! =' Nadefinujes si pres %token novy token a do cf-lex.l pridas nove pravidlo, ktere jej rozpoznava. Napriklad != return NEQ;
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FIXME: IP addresses in ipv6
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FIXME: how can functions return value?
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*/
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CF_HDR
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@ -42,6 +39,8 @@ CF_KEYWORDS(FUNCTION, PRINT, PRINTN, CONST, UNSET, RETURN,
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%nonassoc THEN
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%nonassoc ELSE
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%token GEQ LEQ NEQ
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%type <x> term block cmds cmd function_body constant print_one print_list var_list var_listn dynamic_attr function_call
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%type <f> filter filter_body where_filter
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%type <i> type break_command pair
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@ -56,7 +55,7 @@ filter_def:
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FILTER SYM { cf_push_scope( $2 ); } filter_body {
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cf_define_symbol($2, SYM_FILTER, $4);
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$4->name = $2->name;
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printf( "We have new filter defined (%s)\n", $2->name );
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DBG( "We have new filter defined (%s)\n", $2->name );
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cf_pop_scope();
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}
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;
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@ -81,7 +80,7 @@ type:
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one_decl:
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type SYM {
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cf_define_symbol($2, SYM_VARIABLE | $1, NULL);
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printf( "New variable %s type %x\n", $2->name, $1 );
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DBG( "New variable %s type %x\n", $2->name, $1 );
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$2->aux = 0;
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{
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struct f_val * val;
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@ -109,7 +108,6 @@ declsn: one_decl { $$ = $1; }
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}
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;
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filter_body:
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function_body {
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struct filter *f = cfg_alloc(sizeof(struct filter));
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@ -152,7 +150,7 @@ where_filter:
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;
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function_params:
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'(' declsn ')' { printf( "Have function parameters\n" ); $$=$2; }
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'(' declsn ')' { DBG( "Have function parameters\n" ); $$=$2; }
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| '(' ')' { $$=NULL; }
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;
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@ -164,14 +162,14 @@ function_body:
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CF_ADDTO(conf, function_def)
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function_def:
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FUNCTION SYM { printf( "Begining of function %s\n", $2->name ); cf_push_scope($2); } function_params function_body {
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FUNCTION SYM { DBG( "Begining of function %s\n", $2->name ); cf_push_scope($2); } function_params function_body {
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extern struct f_inst *startup_func;
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cf_define_symbol($2, SYM_FUNCTION, $5);
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if (!strcasecmp($2->name, "startup"))
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startup_func = $5;
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$2->aux = (int) $4;
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$2->aux2 = $5;
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printf("Hmm, we've got one function here - %s\n", $2->name);
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DBG("Hmm, we've got one function here - %s\n", $2->name);
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cf_pop_scope();
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}
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;
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@ -263,7 +261,7 @@ constant:
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| pair { $$ = f_new_inst(); $$->code = 'c'; $$->aux = T_PAIR; $$->a2.i = $1; }
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| ipa { NEW_F_VAL; $$ = f_new_inst(); $$->code = 'C'; $$->a1.p = val; *val = $1; }
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| prefix_s {NEW_F_VAL; $$ = f_new_inst(); $$->code = 'C'; $$->a1.p = val; *val = $1; }
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| '[' set_items ']' { printf( "We've got a set here..." ); $$ = f_new_inst(); $$->code = 'c'; $$->aux = T_SET; $$->a2.p = build_tree($2); printf( "ook\n" ); }
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| '[' set_items ']' { DBG( "We've got a set here..." ); $$ = f_new_inst(); $$->code = 'c'; $$->aux = T_SET; $$->a2.p = build_tree($2); DBG( "ook\n" ); }
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| ENUM { $$ = f_new_inst(); $$->code = 'c'; $$->aux = $1 >> 16; $$->a2.i = $1 & 0xffff; }
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;
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@ -283,7 +281,7 @@ function_call:
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struct f_inst *inst = $3;
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if ($1->class != SYM_FUNCTION)
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cf_error("You can not call something which is not function. Really.");
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printf("You are calling function %s\n", $1->name);
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DBG("You are calling function %s\n", $1->name);
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$$ = f_new_inst();
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$$->code = P('c','a');
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$$->a1.p = inst;
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@ -292,7 +290,7 @@ function_call:
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while (sym || inst) {
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if (!sym || !inst)
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cf_error("wrong number of arguments for function %s.", $1->name);
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printf( "You should pass parameter called %s\n", sym->name);
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DBG( "You should pass parameter called %s\n", sym->name);
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inst->a1.p = sym;
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sym = (void *) sym->aux;
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inst = inst->next;
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@ -300,17 +298,18 @@ function_call:
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}
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;
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/* NEQ, LEQ and GEQ are responsible for 42 shift/reduce conflicts */
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term:
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'(' term ')' { $$ = $2; }
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| term '+' term { $$ = f_new_inst(); $$->code = '+'; $$->a1.p = $1; $$->a2.p = $3; }
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| term '+' term { $$ = f_new_inst(); $$->code = '+'; $$->a1.p = $1; $$->a2.p = $3; }
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| term '=' term { $$ = f_new_inst(); $$->code = P('=','='); $$->a1.p = $1; $$->a2.p = $3; }
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| term '!' '=' term { $$ = f_new_inst(); $$->code = P('!','='); $$->a1.p = $1; $$->a2.p = $4; }
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| term '<' term { $$ = f_new_inst(); $$->code = '<'; $$->a1.p = $1; $$->a2.p = $3; }
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| term '<' '=' term { $$ = f_new_inst(); $$->code = P('<','='); $$->a1.p = $1; $$->a2.p = $4; }
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| term '>' term { $$ = f_new_inst(); $$->code = '<'; $$->a1.p = $3; $$->a2.p = $1; }
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| term '>' '=' term { $$ = f_new_inst(); $$->code = P('<','='); $$->a1.p = $4; $$->a2.p = $1; }
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| term '~' term { $$ = f_new_inst(); $$->code = '~'; $$->a1.p = $1; $$->a2.p = $3; }
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| term NEQ term { $$ = f_new_inst(); $$->code = P('!','='); $$->a1.p = $1; $$->a2.p = $3; }
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| term '<' term { $$ = f_new_inst(); $$->code = '<'; $$->a1.p = $1; $$->a2.p = $3; }
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| term LEQ term { $$ = f_new_inst(); $$->code = P('<','='); $$->a1.p = $1; $$->a2.p = $3; }
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| term '>' term { $$ = f_new_inst(); $$->code = '<'; $$->a1.p = $3; $$->a2.p = $1; }
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| term GEQ term { $$ = f_new_inst(); $$->code = P('<','='); $$->a1.p = $3; $$->a2.p = $1; }
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| term '~' term { $$ = f_new_inst(); $$->code = '~'; $$->a1.p = $1; $$->a2.p = $3; }
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| DEFINED '(' term ')' { $$ = f_new_inst(); $$->code = P('d','e'); $$->a1.p = $3; }
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| constant { $$ = $1; }
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@ -404,7 +403,7 @@ cmd:
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}
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| SYM '=' term ';' {
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$$ = f_new_inst();
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printf( "Ook, we'll set value\n" );
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DBG( "Ook, we'll set value\n" );
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if (($1->class & ~T_MASK) != SYM_VARIABLE)
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cf_error( "You may only set variables, and this is %x.\n", $1->class );
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$$->code = 's';
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@ -413,7 +412,7 @@ cmd:
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}
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| RETURN term ';' {
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$$ = f_new_inst();
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printf( "Ook, we'll return the value\n" );
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DBG( "Ook, we'll return the value\n" );
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$$->code = 'r';
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$$->a1.p = $2;
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}
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@ -446,14 +446,16 @@ interpret(struct f_inst *what)
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int
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i_same(struct f_inst *f1, struct f_inst *f2)
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{
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if (!f1)
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return 1;
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if ((!!f1) != (!!f2))
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return 0;
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if (!f1)
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return 1;
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if (f1->aux != f2->aux)
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return 0;
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if (f1->code != f2->code)
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return 0;
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if (f1 == f2) /* It looks strange, but it is possible with call rewriting trickery */
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return 1;
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switch(f1->code) {
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case ',': /* fall through */
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@ -495,8 +497,12 @@ i_same(struct f_inst *f1, struct f_inst *f2)
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case 'r': ONEARG; break;
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case P('c','p'): ONEARG; break;
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case P('c','a'): /* CALL, FIXME: exponential in some cases */
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ONEARG; if (!i_same(f1->a2.p, f2->a2.p)) return 0; break;
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case P('c','a'): /* Call rewriting trickery to avoid exponential behaviour */
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ONEARG;
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if (!i_same(f1->a2.p, f2->a2.p))
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return 0;
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f2->a2.p = f1->a2.p;
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break;
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case P('S','W'): ONEARG; if (!same_tree(f1->a2.p, f2->a2.p)) return 0; break;
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case P('i','M'): TWOARGS; break;
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default:
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@ -44,7 +44,7 @@ ip p;
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if 1234 = i then printn "."; else { print "*** FAIL: if 1 else"; }
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if 1 <= 1 then printn "."; else { print "*** FAIL: test 3"; }
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if 1234 < 1234 then { print "*** FAIL: test 4"; quitbird; } else print "ok";
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print " data types; must be true: " 1.2.3.4 = 1.2.3.4 "," 1 ~ [1,2,3] "," 5 ~ [1..20] "," 2 ~ [ 1, 2, 3 ] "," 5 ~ [ 4 .. 7 ] "," 1.2.3.4 ~ [ 1.2.3.3..1.2.3.5 ] "," 1.2.3.4 ~ 1.0.0.0/8 "," 1.0.0.0/8 ~ 1.0.0.0/8 "," 1.0.0.0/8 ~ [ 1.0.0.0/8+ ] "," 1.2.0.0/16 ~ [ 1.0.0.0/8{ 15 , 16 } ] "," defined(1) "," defined(1.2.3.4);
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print " data types; must be true: " 1.2.3.4 = 1.2.3.4 "," 1 ~ [1,2,3] "," 5 ~ [1..20] "," 2 ~ [ 1, 2, 3 ] "," 5 ~ [ 4 .. 7 ] "," 1.2.3.4 ~ [ 1.2.3.3..1.2.3.5 ] "," 1.2.3.4 ~ 1.0.0.0/8 "," 1.0.0.0/8 ~ 1.0.0.0/8 "," 1.0.0.0/8 ~ [ 1.0.0.0/8+ ] "," 1.2.0.0/16 ~ [ 1.0.0.0/8{ 15 , 16 } ] "," defined(1) "," defined(1.2.3.4) "," 1 != 2 "," 1 <= 2;
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print " data types: must be false: " 1 ~ [ 2, 3, 4 ] "," 5 ~ [ 2, 3, 4, 7..11 ] "," 1.2.3.4 ~ [ 1.2.3.3, 1.2.3.5 ] "," (1,2) > (2,2) "," (1,1) > (1,1) "," 1.0.0.0/8 ~ [ 1.0.0.0/8- ] "," 1.2.0.0/17 ~ [ 1.0.0.0/8{ 15 , 16 } ];
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px = 1.2.0.0/18;
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