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Filter: Improve typecheck error messages
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c00c20a799
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@ -25,6 +25,49 @@
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#include "filter/f-inst.h"
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#include "filter/data.h"
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static const char * const f_type_str[] = {
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[T_VOID] = "void",
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[T_INT] = "int",
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[T_BOOL] = "bool",
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[T_PAIR] = "pair",
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[T_QUAD] = "quad",
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[T_ENUM_RTS] = "enum rts",
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[T_ENUM_BGP_ORIGIN] = "enum bgp_origin",
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[T_ENUM_SCOPE] = "enum scope",
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[T_ENUM_RTC] = "enum rtc",
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[T_ENUM_RTD] = "enum rtd",
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[T_ENUM_ROA] = "enum roa",
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[T_ENUM_NETTYPE] = "enum nettype",
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[T_ENUM_RA_PREFERENCE] = "enum ra_preference",
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[T_ENUM_AF] = "enum af",
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[T_IP] = "ip",
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[T_NET] = "prefix",
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[T_STRING] = "string",
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[T_PATH_MASK] = "bgpmask",
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[T_PATH] = "bgppath",
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[T_CLIST] = "clist",
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[T_EC] = "ec",
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[T_ECLIST] = "eclist",
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[T_LC] = "lc",
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[T_LCLIST] = "lclist",
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[T_RD] = "rd",
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};
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const char *
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f_type_name(enum f_type t)
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{
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if (t < ARRAY_SIZE(f_type_str))
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return f_type_str[t] ?: "?";
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if ((t == T_SET) || (t == T_PREFIX_SET))
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return "set";
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return "?";
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}
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const struct f_val f_const_empty_path = {
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.type = T_PATH,
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.val.ad = &null_adata,
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@ -167,6 +167,8 @@ void trie_format(const struct f_trie *t, buffer *buf);
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#define F_CMP_ERROR 999
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const char *f_type_name(enum f_type t);
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int val_same(const struct f_val *v1, const struct f_val *v2);
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int val_compare(const struct f_val *v1, const struct f_val *v2);
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void val_format(const struct f_val *v, buffer *buf);
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@ -104,7 +104,7 @@ FID_STRUCT_IN()m4_dnl
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struct f_inst * f$1;
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FID_NEW_ARGS()m4_dnl
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, struct f_inst * f$1
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FID_NEW_BODY
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FID_NEW_BODY()m4_dnl
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whati->f$1 = f$1;
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for (const struct f_inst *child = f$1; child; child = child->next) {
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what->size += child->size;
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@ -164,10 +164,19 @@ m4_define(ARG, `ARG_ANY($1) ARG_TYPE($1,$2)')
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m4_define(ARG_TYPE, `
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FID_NEW_BODY()m4_dnl
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if (f$1->type && (f$1->type != ($2)) && !f_const_promotion(f$1, ($2)))
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cf_error("Argument $1 of instruction %s must be of type $2, got 0x%02x", f_instruction_name(what->fi_code), f$1->type);
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cf_error("Argument $1 of %s must be of type %s, got type %s",
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f_instruction_name(what->fi_code), f_type_name($2), f_type_name(f$1->type));
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FID_INTERPRET_EXEC()m4_dnl
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if (v$1.type != ($2))
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runtime("Argument $1 of instruction %s must be of type $2, got 0x%02x", f_instruction_name(what->fi_code), v$1.type)m4_dnl
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runtime("Argument $1 of %s must be of type %s, got type %s",
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f_instruction_name(what->fi_code), f_type_name($2), f_type_name(v$1.type));
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FID_INTERPRET_BODY()')
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m4_define(ARG_SAME_TYPE, `
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FID_NEW_BODY()m4_dnl
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if (f$1->type && f$2->type && (f$1->type != f$2->type) &&
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!f_const_promotion(f$2, f$1->type) && !f_const_promotion(f$1, f$2->type))
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cf_error("Arguments $1 and $2 of %s must be of the same type", f_instruction_name(what->fi_code));
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FID_INTERPRET_BODY()')
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# Executing another filter line. This replaces the recursion
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@ -217,10 +226,16 @@ m4_define(ERROR,
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`m4_errprint(m4___file__:m4___line__: $*
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)m4_m4exit(1)')
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# This macro specifies result type and makes there are no conflicting definitions
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m4_define(RESULT_TYPE,
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`m4_ifdef([[INST_RESULT_TYPE]],
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[[m4_ifelse(INST_RESULT_TYPE,$1,,[[ERROR([[Multiple type definitons]])]])]],
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[[m4_define(INST_RESULT_TYPE,$1) FID_NEW_BODY() what->type = $1;FID_INTERPRET_BODY()]])')
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[[m4_define(INST_RESULT_TYPE,$1) RESULT_TYPE_($1)]])')
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m4_define(RESULT_TYPE_, `
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FID_NEW_BODY()m4_dnl
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what->type = $1;
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FID_INTERPRET_BODY()')
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# Some common filter instruction members
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m4_define(SYMBOL, `FID_MEMBER(struct symbol *, sym, [[strcmp(f1->sym->name, f2->sym->name) || (f1->sym->class != f2->sym->class)]], "symbol %s", item->sym->name)')
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@ -420,7 +435,7 @@ FID_WR_PUT(5)
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};
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const char *
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f_instruction_name(enum f_instruction_code fi)
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f_instruction_name_(enum f_instruction_code fi)
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{
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if (fi < (sizeof(f_instruction_name_str) / sizeof(f_instruction_name_str[0])))
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return f_instruction_name_str[fi];
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@ -494,7 +509,7 @@ void f_dump_line(const struct f_line *dest, uint indent)
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debug("%sFilter line %p (len=%u)\n", INDENT, dest, dest->len);
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for (uint i=0; i<dest->len; i++) {
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const struct f_line_item *item = &dest->items[i];
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debug("%sInstruction %s at line %u\n", INDENT, f_instruction_name(item->fi_code), item->lineno);
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debug("%sInstruction %s at line %u\n", INDENT, f_instruction_name_(item->fi_code), item->lineno);
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switch (item->fi_code) {
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FID_WR_PUT(7)
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default: bug("Unknown instruction %x in f_dump_line", item->fi_code);
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@ -529,7 +544,7 @@ f_linearize_concat(const struct f_inst * const inst[], uint count)
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for (uint i=0; i<count; i++)
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out->len = linearize(out, inst[i], out->len);
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#if DEBUGGING
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#ifdef LOCAL_DEBUG
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f_dump_line(out, 0);
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#endif
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return out;
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@ -29,7 +29,9 @@ enum f_instruction_flags {
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#define f_new_inst(...) MACRO_CONCAT_AFTER(f_new_inst_, MACRO_FIRST(__VA_ARGS__))(__VA_ARGS__)
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/* Convert the instruction back to the enum name */
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const char *f_instruction_name(enum f_instruction_code fi);
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const char *f_instruction_name_(enum f_instruction_code fi);
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static inline const char *f_instruction_name(enum f_instruction_code fi)
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{ return f_instruction_name_(fi) + 3; }
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/* Filter structures for execution */
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/* Line of instructions to be unconditionally executed one after another */
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@ -174,7 +174,7 @@ interpret(struct filter_state *fs, const struct f_line *line, struct f_val *val)
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#define curline fstk->estk[fstk->ecnt-1]
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#if DEBUGGING
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#ifdef LOCAL_DEBUG
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debug("Interpreting line.");
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f_dump_line(line, 1);
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#endif
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