1 /* Rust language support routines for GDB, the GNU debugger.
3 Copyright (C) 2016-2020 Free Software Foundation, Inc.
5 This file is part of GDB.
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
27 #include "cp-support.h"
33 #include "rust-lang.h"
34 #include "typeprint.h"
40 #include "cli/cli-style.h"
42 /* See rust-lang.h. */
45 rust_last_path_segment (const char *path
)
47 const char *result
= strrchr (path
, ':');
54 /* See rust-lang.h. */
57 rust_crate_for_block (const struct block
*block
)
59 const char *scope
= block_scope (block
);
62 return std::string ();
64 return std::string (scope
, cp_find_first_component (scope
));
67 /* Return true if TYPE, which must be a struct type, represents a Rust
71 rust_enum_p (struct type
*type
)
73 /* is_dynamic_type will return true if any field has a dynamic
74 attribute -- but we only want to check the top level. */
75 return TYPE_HAS_VARIANT_PARTS (type
);
78 /* Return true if TYPE, which must be an already-resolved enum type,
82 rust_empty_enum_p (const struct type
*type
)
84 return type
->num_fields () == 0;
87 /* Given an already-resolved enum type and contents, find which
91 rust_enum_variant (struct type
*type
)
93 /* The active variant is simply the first non-artificial field. */
94 for (int i
= 0; i
< type
->num_fields (); ++i
)
95 if (!TYPE_FIELD_ARTIFICIAL (type
, i
))
98 /* Perhaps we could get here by trying to print an Ada variant
99 record in Rust mode. Unlikely, but an error is safer than an
101 error (_("Could not find active enum variant"));
104 /* See rust-lang.h. */
107 rust_tuple_type_p (struct type
*type
)
109 /* The current implementation is a bit of a hack, but there's
110 nothing else in the debuginfo to distinguish a tuple from a
112 return (type
->code () == TYPE_CODE_STRUCT
113 && type
->name () != NULL
114 && type
->name ()[0] == '(');
117 /* Return true if all non-static fields of a structlike type are in a
118 sequence like __0, __1, __2. */
121 rust_underscore_fields (struct type
*type
)
127 if (type
->code () != TYPE_CODE_STRUCT
)
129 for (i
= 0; i
< type
->num_fields (); ++i
)
131 if (!field_is_static (&type
->field (i
)))
135 xsnprintf (buf
, sizeof (buf
), "__%d", field_number
);
136 if (strcmp (buf
, TYPE_FIELD_NAME (type
, i
)) != 0)
144 /* See rust-lang.h. */
147 rust_tuple_struct_type_p (struct type
*type
)
149 /* This is just an approximation until DWARF can represent Rust more
150 precisely. We exclude zero-length structs because they may not
151 be tuple structs, and there's no way to tell. */
152 return type
->num_fields () > 0 && rust_underscore_fields (type
);
155 /* Return true if TYPE is a slice type, otherwise false. */
158 rust_slice_type_p (struct type
*type
)
160 return (type
->code () == TYPE_CODE_STRUCT
161 && type
->name () != NULL
162 && (strncmp (type
->name (), "&[", 2) == 0
163 || strcmp (type
->name (), "&str") == 0));
166 /* Return true if TYPE is a range type, otherwise false. */
169 rust_range_type_p (struct type
*type
)
173 if (type
->code () != TYPE_CODE_STRUCT
174 || type
->num_fields () > 2
175 || type
->name () == NULL
176 || strstr (type
->name (), "::Range") == NULL
)
179 if (type
->num_fields () == 0)
183 if (strcmp (TYPE_FIELD_NAME (type
, 0), "start") == 0)
185 if (type
->num_fields () == 1)
189 else if (type
->num_fields () == 2)
191 /* First field had to be "start". */
195 return strcmp (TYPE_FIELD_NAME (type
, i
), "end") == 0;
198 /* Return true if TYPE is an inclusive range type, otherwise false.
199 This is only valid for types which are already known to be range
203 rust_inclusive_range_type_p (struct type
*type
)
205 return (strstr (type
->name (), "::RangeInclusive") != NULL
206 || strstr (type
->name (), "::RangeToInclusive") != NULL
);
209 /* Return true if TYPE seems to be the type "u8", otherwise false. */
212 rust_u8_type_p (struct type
*type
)
214 return (type
->code () == TYPE_CODE_INT
215 && TYPE_UNSIGNED (type
)
216 && TYPE_LENGTH (type
) == 1);
219 /* Return true if TYPE is a Rust character type. */
222 rust_chartype_p (struct type
*type
)
224 return (type
->code () == TYPE_CODE_CHAR
225 && TYPE_LENGTH (type
) == 4
226 && TYPE_UNSIGNED (type
));
229 /* If VALUE represents a trait object pointer, return the underlying
230 pointer with the correct (i.e., runtime) type. Otherwise, return
233 static struct value
*
234 rust_get_trait_object_pointer (struct value
*value
)
236 struct type
*type
= check_typedef (value_type (value
));
238 if (type
->code () != TYPE_CODE_STRUCT
|| type
->num_fields () != 2)
241 /* Try to be a bit resilient if the ABI changes. */
242 int vtable_field
= 0;
243 for (int i
= 0; i
< 2; ++i
)
245 if (strcmp (TYPE_FIELD_NAME (type
, i
), "vtable") == 0)
247 else if (strcmp (TYPE_FIELD_NAME (type
, i
), "pointer") != 0)
251 CORE_ADDR vtable
= value_as_address (value_field (value
, vtable_field
));
252 struct symbol
*symbol
= find_symbol_at_address (vtable
);
253 if (symbol
== NULL
|| symbol
->subclass
!= SYMBOL_RUST_VTABLE
)
256 struct rust_vtable_symbol
*vtable_sym
257 = static_cast<struct rust_vtable_symbol
*> (symbol
);
258 struct type
*pointer_type
= lookup_pointer_type (vtable_sym
->concrete_type
);
259 return value_cast (pointer_type
, value_field (value
, 1 - vtable_field
));
264 /* language_defn::printstr implementation for Rust. */
267 rust_printstr (struct ui_file
*stream
, struct type
*type
,
268 const gdb_byte
*string
, unsigned int length
,
269 const char *user_encoding
, int force_ellipses
,
270 const struct value_print_options
*options
)
272 /* Rust always uses UTF-8, but let the caller override this if need
274 const char *encoding
= user_encoding
;
275 if (user_encoding
== NULL
|| !*user_encoding
)
277 /* In Rust strings, characters are "u8". */
278 if (rust_u8_type_p (type
))
282 /* This is probably some C string, so let's let C deal with
284 c_printstr (stream
, type
, string
, length
, user_encoding
,
285 force_ellipses
, options
);
290 /* This is not ideal as it doesn't use our character printer. */
291 generic_printstr (stream
, type
, string
, length
, encoding
, force_ellipses
,
297 static void rust_value_print_inner (struct value
*val
, struct ui_file
*stream
,
299 const struct value_print_options
*options
);
301 /* Helper function to print a string slice. */
304 rust_val_print_str (struct ui_file
*stream
, struct value
*val
,
305 const struct value_print_options
*options
)
307 struct value
*base
= value_struct_elt (&val
, NULL
, "data_ptr", NULL
,
309 struct value
*len
= value_struct_elt (&val
, NULL
, "length", NULL
, "slice");
311 val_print_string (TYPE_TARGET_TYPE (value_type (base
)), "UTF-8",
312 value_as_address (base
), value_as_long (len
), stream
,
316 /* rust_val_print helper for structs and untagged unions. */
319 val_print_struct (struct value
*val
, struct ui_file
*stream
, int recurse
,
320 const struct value_print_options
*options
)
324 struct type
*type
= check_typedef (value_type (val
));
326 if (rust_slice_type_p (type
) && strcmp (type
->name (), "&str") == 0)
328 /* If what we are printing here is actually a string within a
329 structure then VAL will be the original parent value, while TYPE
330 will be the type of the structure representing the string we want
332 However, RUST_VAL_PRINT_STR looks up the fields of the string
333 inside VAL, assuming that VAL is the string.
334 So, recreate VAL as a value representing just the string. */
335 val
= value_at_lazy (type
, value_address (val
));
336 rust_val_print_str (stream
, val
, options
);
340 bool is_tuple
= rust_tuple_type_p (type
);
341 bool is_tuple_struct
= !is_tuple
&& rust_tuple_struct_type_p (type
);
342 struct value_print_options opts
;
346 if (type
->name () != NULL
)
347 fprintf_filtered (stream
, "%s", type
->name ());
349 if (type
->num_fields () == 0)
352 if (type
->name () != NULL
)
353 fputs_filtered (" ", stream
);
356 if (is_tuple
|| is_tuple_struct
)
357 fputs_filtered ("(", stream
);
359 fputs_filtered ("{", stream
);
365 for (i
= 0; i
< type
->num_fields (); ++i
)
367 if (field_is_static (&type
->field (i
)))
371 fputs_filtered (",", stream
);
373 if (options
->prettyformat
)
375 fputs_filtered ("\n", stream
);
376 print_spaces_filtered (2 + 2 * recurse
, stream
);
378 else if (!first_field
)
379 fputs_filtered (" ", stream
);
383 if (!is_tuple
&& !is_tuple_struct
)
385 fputs_styled (TYPE_FIELD_NAME (type
, i
),
386 variable_name_style
.style (), stream
);
387 fputs_filtered (": ", stream
);
390 rust_value_print_inner (value_field (val
, i
), stream
, recurse
+ 1,
394 if (options
->prettyformat
)
396 fputs_filtered ("\n", stream
);
397 print_spaces_filtered (2 * recurse
, stream
);
400 if (is_tuple
|| is_tuple_struct
)
401 fputs_filtered (")", stream
);
403 fputs_filtered ("}", stream
);
406 /* rust_val_print helper for discriminated unions (Rust enums). */
409 rust_print_enum (struct value
*val
, struct ui_file
*stream
, int recurse
,
410 const struct value_print_options
*options
)
412 struct value_print_options opts
= *options
;
413 struct type
*type
= check_typedef (value_type (val
));
417 gdb_assert (rust_enum_p (type
));
418 gdb::array_view
<const gdb_byte
> view (value_contents_for_printing (val
),
419 TYPE_LENGTH (value_type (val
)));
420 type
= resolve_dynamic_type (type
, view
, value_address (val
));
422 if (rust_empty_enum_p (type
))
424 /* Print the enum type name here to be more clear. */
425 fprintf_filtered (stream
, _("%s {%p[<No data fields>%p]}"),
427 metadata_style
.style ().ptr (), nullptr);
431 int variant_fieldno
= rust_enum_variant (type
);
432 val
= value_field (val
, variant_fieldno
);
433 struct type
*variant_type
= type
->field (variant_fieldno
).type ();
435 int nfields
= variant_type
->num_fields ();
437 bool is_tuple
= rust_tuple_struct_type_p (variant_type
);
439 fprintf_filtered (stream
, "%s", variant_type
->name ());
442 /* In case of a nullary variant like 'None', just output
447 /* In case of a non-nullary variant, we output 'Foo(x,y,z)'. */
449 fprintf_filtered (stream
, "(");
452 /* struct variant. */
453 fprintf_filtered (stream
, "{");
456 bool first_field
= true;
457 for (int j
= 0; j
< variant_type
->num_fields (); j
++)
460 fputs_filtered (", ", stream
);
464 fprintf_filtered (stream
, "%ps: ",
465 styled_string (variable_name_style
.style (),
466 TYPE_FIELD_NAME (variant_type
, j
)));
468 rust_value_print_inner (value_field (val
, j
), stream
, recurse
+ 1,
473 fputs_filtered (")", stream
);
475 fputs_filtered ("}", stream
);
478 static const struct generic_val_print_decorations rust_decorations
=
480 /* Complex isn't used in Rust, but we provide C-ish values just in
492 /* la_value_print_inner implementation for Rust. */
494 rust_value_print_inner (struct value
*val
, struct ui_file
*stream
,
496 const struct value_print_options
*options
)
498 struct value_print_options opts
= *options
;
501 if (opts
.prettyformat
== Val_prettyformat_default
)
502 opts
.prettyformat
= (opts
.prettyformat_structs
503 ? Val_prettyformat
: Val_no_prettyformat
);
505 struct type
*type
= check_typedef (value_type (val
));
506 switch (type
->code ())
510 LONGEST low_bound
, high_bound
;
512 if (TYPE_TARGET_TYPE (type
)->code () == TYPE_CODE_ARRAY
513 && rust_u8_type_p (TYPE_TARGET_TYPE (TYPE_TARGET_TYPE (type
)))
514 && get_array_bounds (TYPE_TARGET_TYPE (type
), &low_bound
,
517 /* We have a pointer to a byte string, so just print
519 struct type
*elttype
= check_typedef (TYPE_TARGET_TYPE (type
));
520 CORE_ADDR addr
= value_as_address (val
);
521 struct gdbarch
*arch
= get_type_arch (type
);
523 if (opts
.addressprint
)
525 fputs_filtered (paddress (arch
, addr
), stream
);
526 fputs_filtered (" ", stream
);
529 fputs_filtered ("b", stream
);
530 val_print_string (TYPE_TARGET_TYPE (elttype
), "ASCII", addr
,
531 high_bound
- low_bound
+ 1, stream
,
538 case TYPE_CODE_METHODPTR
:
539 case TYPE_CODE_MEMBERPTR
:
540 c_value_print_inner (val
, stream
, recurse
, &opts
);
544 /* Recognize the unit type. */
545 if (TYPE_UNSIGNED (type
) && TYPE_LENGTH (type
) == 0
546 && type
->name () != NULL
&& strcmp (type
->name (), "()") == 0)
548 fputs_filtered ("()", stream
);
553 case TYPE_CODE_STRING
:
555 LONGEST low_bound
, high_bound
;
557 if (!get_array_bounds (type
, &low_bound
, &high_bound
))
558 error (_("Could not determine the array bounds"));
560 /* If we see a plain TYPE_CODE_STRING, then we're printing a
561 byte string, hence the choice of "ASCII" as the
563 fputs_filtered ("b", stream
);
564 rust_printstr (stream
, TYPE_TARGET_TYPE (type
),
565 value_contents_for_printing (val
),
566 high_bound
- low_bound
+ 1, "ASCII", 0, &opts
);
570 case TYPE_CODE_ARRAY
:
572 LONGEST low_bound
, high_bound
;
574 if (get_array_bounds (type
, &low_bound
, &high_bound
)
575 && high_bound
- low_bound
+ 1 == 0)
576 fputs_filtered ("[]", stream
);
582 case TYPE_CODE_UNION
:
583 /* Untagged unions are printed as if they are structs. Since
584 the field bit positions overlap in the debuginfo, the code
585 for printing a union is same as that for a struct, the only
586 difference is that the input type will have overlapping
588 val_print_struct (val
, stream
, recurse
, &opts
);
591 case TYPE_CODE_STRUCT
:
592 if (rust_enum_p (type
))
593 rust_print_enum (val
, stream
, recurse
, &opts
);
595 val_print_struct (val
, stream
, recurse
, &opts
);
600 /* Nothing special yet. */
601 generic_value_print (val
, stream
, recurse
, &opts
, &rust_decorations
);
608 rust_internal_print_type (struct type
*type
, const char *varstring
,
609 struct ui_file
*stream
, int show
, int level
,
610 const struct type_print_options
*flags
,
611 bool for_rust_enum
, print_offset_data
*podata
);
613 /* Print a struct or union typedef. */
615 rust_print_struct_def (struct type
*type
, const char *varstring
,
616 struct ui_file
*stream
, int show
, int level
,
617 const struct type_print_options
*flags
,
618 bool for_rust_enum
, print_offset_data
*podata
)
620 /* Print a tuple type simply. */
621 if (rust_tuple_type_p (type
))
623 fputs_filtered (type
->name (), stream
);
627 /* If we see a base class, delegate to C. */
628 if (TYPE_N_BASECLASSES (type
) > 0)
629 c_print_type (type
, varstring
, stream
, show
, level
, flags
);
631 if (flags
->print_offsets
)
633 /* Temporarily bump the level so that the output lines up
638 /* Compute properties of TYPE here because, in the enum case, the
639 rest of the code ends up looking only at the variant part. */
640 const char *tagname
= type
->name ();
641 bool is_tuple_struct
= rust_tuple_struct_type_p (type
);
642 bool is_tuple
= rust_tuple_type_p (type
);
643 bool is_enum
= rust_enum_p (type
);
647 /* Already printing an outer enum, so nothing to print here. */
651 /* This code path is also used by unions and enums. */
654 fputs_filtered ("enum ", stream
);
655 dynamic_prop
*prop
= type
->dyn_prop (DYN_PROP_VARIANT_PARTS
);
656 if (prop
!= nullptr && prop
->kind () == PROP_TYPE
)
657 type
= prop
->original_type ();
659 else if (type
->code () == TYPE_CODE_STRUCT
)
660 fputs_filtered ("struct ", stream
);
662 fputs_filtered ("union ", stream
);
665 fputs_filtered (tagname
, stream
);
668 if (type
->num_fields () == 0 && !is_tuple
)
670 if (for_rust_enum
&& !flags
->print_offsets
)
671 fputs_filtered (is_tuple_struct
? "(" : "{", stream
);
673 fputs_filtered (is_tuple_struct
? " (\n" : " {\n", stream
);
675 /* When printing offsets, we rearrange the fields into storage
676 order. This lets us show holes more clearly. We work using
677 field indices here because it simplifies calls to
678 print_offset_data::update below. */
679 std::vector
<int> fields
;
680 for (int i
= 0; i
< type
->num_fields (); ++i
)
682 if (field_is_static (&type
->field (i
)))
684 if (is_enum
&& TYPE_FIELD_ARTIFICIAL (type
, i
))
686 fields
.push_back (i
);
688 if (flags
->print_offsets
)
689 std::sort (fields
.begin (), fields
.end (),
692 return (TYPE_FIELD_BITPOS (type
, a
)
693 < TYPE_FIELD_BITPOS (type
, b
));
700 gdb_assert (!field_is_static (&type
->field (i
)));
701 gdb_assert (! (is_enum
&& TYPE_FIELD_ARTIFICIAL (type
, i
)));
703 if (flags
->print_offsets
)
704 podata
->update (type
, i
, stream
);
706 /* We'd like to print "pub" here as needed, but rustc
707 doesn't emit the debuginfo, and our types don't have
708 cplus_struct_type attached. */
710 /* For a tuple struct we print the type but nothing
712 if (!for_rust_enum
|| flags
->print_offsets
)
713 print_spaces_filtered (level
+ 2, stream
);
715 fputs_styled (TYPE_FIELD_NAME (type
, i
), variable_name_style
.style (),
717 else if (!is_tuple_struct
)
718 fprintf_filtered (stream
, "%ps: ",
719 styled_string (variable_name_style
.style (),
720 TYPE_FIELD_NAME (type
, i
)));
722 rust_internal_print_type (type
->field (i
).type (), NULL
,
723 stream
, (is_enum
? show
: show
- 1),
724 level
+ 2, flags
, is_enum
, podata
);
725 if (!for_rust_enum
|| flags
->print_offsets
)
726 fputs_filtered (",\n", stream
);
727 /* Note that this check of "I" is ok because we only sorted the
728 fields by offset when print_offsets was set, so we won't take
729 this branch in that case. */
730 else if (i
+ 1 < type
->num_fields ())
731 fputs_filtered (", ", stream
);
734 if (flags
->print_offsets
)
736 /* Undo the temporary level increase we did above. */
738 podata
->finish (type
, level
, stream
);
739 print_spaces_filtered (print_offset_data::indentation
, stream
);
741 print_spaces_filtered (2, stream
);
743 if (!for_rust_enum
|| flags
->print_offsets
)
744 print_spaces_filtered (level
, stream
);
745 fputs_filtered (is_tuple_struct
? ")" : "}", stream
);
748 /* la_print_type implementation for Rust. */
751 rust_internal_print_type (struct type
*type
, const char *varstring
,
752 struct ui_file
*stream
, int show
, int level
,
753 const struct type_print_options
*flags
,
754 bool for_rust_enum
, print_offset_data
*podata
)
758 && type
->name () != NULL
)
760 /* Rust calls the unit type "void" in its debuginfo,
761 but we don't want to print it as that. */
762 if (type
->code () == TYPE_CODE_VOID
)
763 fputs_filtered ("()", stream
);
765 fputs_filtered (type
->name (), stream
);
769 type
= check_typedef (type
);
770 switch (type
->code ())
773 /* If we have an enum, we've already printed the type's
774 unqualified name, and there is nothing else to print
777 fputs_filtered ("()", stream
);
781 /* Delegate varargs to the C printer. */
782 if (TYPE_VARARGS (type
))
785 fputs_filtered ("fn ", stream
);
786 if (varstring
!= NULL
)
787 fputs_filtered (varstring
, stream
);
788 fputs_filtered ("(", stream
);
789 for (int i
= 0; i
< type
->num_fields (); ++i
)
793 fputs_filtered (", ", stream
);
794 rust_internal_print_type (type
->field (i
).type (), "", stream
,
795 -1, 0, flags
, false, podata
);
797 fputs_filtered (")", stream
);
798 /* If it returns unit, we can omit the return type. */
799 if (TYPE_TARGET_TYPE (type
)->code () != TYPE_CODE_VOID
)
801 fputs_filtered (" -> ", stream
);
802 rust_internal_print_type (TYPE_TARGET_TYPE (type
), "", stream
,
803 -1, 0, flags
, false, podata
);
807 case TYPE_CODE_ARRAY
:
809 LONGEST low_bound
, high_bound
;
811 fputs_filtered ("[", stream
);
812 rust_internal_print_type (TYPE_TARGET_TYPE (type
), NULL
,
813 stream
, show
- 1, level
, flags
, false,
816 if (type
->bounds ()->high
.kind () == PROP_LOCEXPR
817 || type
->bounds ()->high
.kind () == PROP_LOCLIST
)
818 fprintf_filtered (stream
, "; variable length");
819 else if (get_array_bounds (type
, &low_bound
, &high_bound
))
820 fprintf_filtered (stream
, "; %s",
821 plongest (high_bound
- low_bound
+ 1));
822 fputs_filtered ("]", stream
);
826 case TYPE_CODE_UNION
:
827 case TYPE_CODE_STRUCT
:
828 rust_print_struct_def (type
, varstring
, stream
, show
, level
, flags
,
829 for_rust_enum
, podata
);
836 fputs_filtered ("enum ", stream
);
837 if (type
->name () != NULL
)
839 fputs_filtered (type
->name (), stream
);
840 fputs_filtered (" ", stream
);
841 len
= strlen (type
->name ());
843 fputs_filtered ("{\n", stream
);
845 for (int i
= 0; i
< type
->num_fields (); ++i
)
847 const char *name
= TYPE_FIELD_NAME (type
, i
);
852 && strncmp (name
, type
->name (), len
) == 0
854 && name
[len
+ 1] == ':')
856 fprintfi_filtered (level
+ 2, stream
, "%ps,\n",
857 styled_string (variable_name_style
.style (),
861 fputs_filtered ("}", stream
);
867 if (type
->name () != nullptr)
868 fputs_filtered (type
->name (), stream
);
871 /* We currently can't distinguish between pointers and
873 fputs_filtered ("*mut ", stream
);
874 type_print (TYPE_TARGET_TYPE (type
), "", stream
, 0);
881 c_print_type (type
, varstring
, stream
, show
, level
, flags
);
887 /* Like arch_composite_type, but uses TYPE to decide how to allocate
888 -- either on an obstack or on a gdbarch. */
891 rust_composite_type (struct type
*original
,
893 const char *field1
, struct type
*type1
,
894 const char *field2
, struct type
*type2
)
896 struct type
*result
= alloc_type_copy (original
);
897 int i
, nfields
, bitpos
;
905 result
->set_code (TYPE_CODE_STRUCT
);
906 result
->set_name (name
);
908 result
->set_num_fields (nfields
);
910 ((struct field
*) TYPE_ZALLOC (result
, nfields
* sizeof (struct field
)));
916 struct field
*field
= &result
->field (i
);
918 SET_FIELD_BITPOS (*field
, bitpos
);
919 bitpos
+= TYPE_LENGTH (type1
) * TARGET_CHAR_BIT
;
921 FIELD_NAME (*field
) = field1
;
922 field
->set_type (type1
);
927 struct field
*field
= &result
->field (i
);
928 unsigned align
= type_align (type2
);
934 align
*= TARGET_CHAR_BIT
;
935 delta
= bitpos
% align
;
937 bitpos
+= align
- delta
;
939 SET_FIELD_BITPOS (*field
, bitpos
);
941 FIELD_NAME (*field
) = field2
;
942 field
->set_type (type2
);
948 = (TYPE_FIELD_BITPOS (result
, i
- 1) / TARGET_CHAR_BIT
+
949 TYPE_LENGTH (result
->field (i
- 1).type ()));
953 /* See rust-lang.h. */
956 rust_slice_type (const char *name
, struct type
*elt_type
,
957 struct type
*usize_type
)
961 elt_type
= lookup_pointer_type (elt_type
);
962 type
= rust_composite_type (elt_type
, name
,
963 "data_ptr", elt_type
,
964 "length", usize_type
);
969 enum rust_primitive_types
981 rust_primitive_isize
,
982 rust_primitive_usize
,
987 nr_rust_primitive_types
992 /* A helper for rust_evaluate_subexp that handles OP_FUNCALL. */
994 static struct value
*
995 rust_evaluate_funcall (struct expression
*exp
, int *pos
, enum noside noside
)
998 int num_args
= exp
->elts
[*pos
+ 1].longconst
;
1000 struct value
*function
, *result
, *arg0
;
1001 struct type
*type
, *fn_type
;
1002 const struct block
*block
;
1003 struct block_symbol sym
;
1005 /* For an ordinary function call we can simply defer to the
1006 generic implementation. */
1007 if (exp
->elts
[*pos
+ 3].opcode
!= STRUCTOP_STRUCT
)
1008 return evaluate_subexp_standard (NULL
, exp
, pos
, noside
);
1010 /* Skip over the OP_FUNCALL and the STRUCTOP_STRUCT. */
1012 method
= &exp
->elts
[*pos
+ 1].string
;
1013 *pos
+= 3 + BYTES_TO_EXP_ELEM (exp
->elts
[*pos
].longconst
+ 1);
1015 /* Evaluate the argument to STRUCTOP_STRUCT, then find its
1016 type in order to look up the method. */
1017 arg0
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1019 if (noside
== EVAL_SKIP
)
1021 for (i
= 0; i
< num_args
; ++i
)
1022 evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1026 std::vector
<struct value
*> args (num_args
+ 1);
1029 /* We don't yet implement real Deref semantics. */
1030 while (value_type (args
[0])->code () == TYPE_CODE_PTR
)
1031 args
[0] = value_ind (args
[0]);
1033 type
= value_type (args
[0]);
1034 if ((type
->code () != TYPE_CODE_STRUCT
1035 && type
->code () != TYPE_CODE_UNION
1036 && type
->code () != TYPE_CODE_ENUM
)
1037 || rust_tuple_type_p (type
))
1038 error (_("Method calls only supported on struct or enum types"));
1039 if (type
->name () == NULL
)
1040 error (_("Method call on nameless type"));
1042 std::string name
= std::string (type
->name ()) + "::" + method
;
1044 block
= get_selected_block (0);
1045 sym
= lookup_symbol (name
.c_str (), block
, VAR_DOMAIN
, NULL
);
1046 if (sym
.symbol
== NULL
)
1047 error (_("Could not find function named '%s'"), name
.c_str ());
1049 fn_type
= SYMBOL_TYPE (sym
.symbol
);
1050 if (fn_type
->num_fields () == 0)
1051 error (_("Function '%s' takes no arguments"), name
.c_str ());
1053 if (fn_type
->field (0).type ()->code () == TYPE_CODE_PTR
)
1054 args
[0] = value_addr (args
[0]);
1056 function
= address_of_variable (sym
.symbol
, block
);
1058 for (i
= 0; i
< num_args
; ++i
)
1059 args
[i
+ 1] = evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1061 if (noside
== EVAL_AVOID_SIDE_EFFECTS
)
1062 result
= value_zero (TYPE_TARGET_TYPE (fn_type
), not_lval
);
1064 result
= call_function_by_hand (function
, NULL
, args
);
1068 /* A helper for rust_evaluate_subexp that handles OP_RANGE. */
1070 static struct value
*
1071 rust_range (struct expression
*exp
, int *pos
, enum noside noside
)
1073 enum range_type kind
;
1074 struct value
*low
= NULL
, *high
= NULL
;
1075 struct value
*addrval
, *result
;
1077 struct type
*range_type
;
1078 struct type
*index_type
;
1079 struct type
*temp_type
;
1082 kind
= (enum range_type
) longest_to_int (exp
->elts
[*pos
+ 1].longconst
);
1085 if (kind
== HIGH_BOUND_DEFAULT
|| kind
== NONE_BOUND_DEFAULT
1086 || kind
== NONE_BOUND_DEFAULT_EXCLUSIVE
)
1087 low
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1088 if (kind
== LOW_BOUND_DEFAULT
|| kind
== LOW_BOUND_DEFAULT_EXCLUSIVE
1089 || kind
== NONE_BOUND_DEFAULT
|| kind
== NONE_BOUND_DEFAULT_EXCLUSIVE
)
1090 high
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1091 bool inclusive
= (kind
== NONE_BOUND_DEFAULT
|| kind
== LOW_BOUND_DEFAULT
);
1093 if (noside
== EVAL_SKIP
)
1094 return value_from_longest (builtin_type (exp
->gdbarch
)->builtin_int
, 1);
1101 name
= "std::ops::RangeFull";
1105 index_type
= value_type (high
);
1107 ? "std::ops::RangeToInclusive" : "std::ops::RangeTo");
1114 index_type
= value_type (low
);
1115 name
= "std::ops::RangeFrom";
1119 if (!types_equal (value_type (low
), value_type (high
)))
1120 error (_("Range expression with different types"));
1121 index_type
= value_type (low
);
1122 name
= inclusive
? "std::ops::RangeInclusive" : "std::ops::Range";
1126 /* If we don't have an index type, just allocate this on the
1127 arch. Here any type will do. */
1128 temp_type
= (index_type
== NULL
1129 ? language_bool_type (exp
->language_defn
, exp
->gdbarch
)
1131 /* It would be nicer to cache the range type. */
1132 range_type
= rust_composite_type (temp_type
, name
,
1133 low
== NULL
? NULL
: "start", index_type
,
1134 high
== NULL
? NULL
: "end", index_type
);
1136 if (noside
== EVAL_AVOID_SIDE_EFFECTS
)
1137 return value_zero (range_type
, lval_memory
);
1139 addrval
= value_allocate_space_in_inferior (TYPE_LENGTH (range_type
));
1140 addr
= value_as_long (addrval
);
1141 result
= value_at_lazy (range_type
, addr
);
1145 struct value
*start
= value_struct_elt (&result
, NULL
, "start", NULL
,
1148 value_assign (start
, low
);
1153 struct value
*end
= value_struct_elt (&result
, NULL
, "end", NULL
,
1156 value_assign (end
, high
);
1159 result
= value_at_lazy (range_type
, addr
);
1163 /* A helper function to compute the range and kind given a range
1164 value. TYPE is the type of the range value. RANGE is the range
1165 value. LOW, HIGH, and KIND are out parameters. The LOW and HIGH
1166 parameters might be filled in, or might not be, depending on the
1167 kind of range this is. KIND will always be set to the appropriate
1168 value describing the kind of range, and this can be used to
1169 determine whether LOW or HIGH are valid. */
1172 rust_compute_range (struct type
*type
, struct value
*range
,
1173 LONGEST
*low
, LONGEST
*high
,
1174 enum range_type
*kind
)
1180 *kind
= BOTH_BOUND_DEFAULT
;
1182 if (type
->num_fields () == 0)
1186 if (strcmp (TYPE_FIELD_NAME (type
, 0), "start") == 0)
1188 *kind
= HIGH_BOUND_DEFAULT
;
1189 *low
= value_as_long (value_field (range
, 0));
1192 if (type
->num_fields () > i
1193 && strcmp (TYPE_FIELD_NAME (type
, i
), "end") == 0)
1195 *kind
= (*kind
== BOTH_BOUND_DEFAULT
1196 ? LOW_BOUND_DEFAULT
: NONE_BOUND_DEFAULT
);
1197 *high
= value_as_long (value_field (range
, i
));
1199 if (rust_inclusive_range_type_p (type
))
1204 /* A helper for rust_evaluate_subexp that handles BINOP_SUBSCRIPT. */
1206 static struct value
*
1207 rust_subscript (struct expression
*exp
, int *pos
, enum noside noside
,
1210 struct value
*lhs
, *rhs
, *result
;
1211 struct type
*rhstype
;
1212 LONGEST low
, high_bound
;
1213 /* Initialized to appease the compiler. */
1214 enum range_type kind
= BOTH_BOUND_DEFAULT
;
1219 lhs
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1220 rhs
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1222 if (noside
== EVAL_SKIP
)
1225 rhstype
= check_typedef (value_type (rhs
));
1226 if (rust_range_type_p (rhstype
))
1229 error (_("Can't take slice of array without '&'"));
1230 rust_compute_range (rhstype
, rhs
, &low
, &high
, &kind
);
1234 low
= value_as_long (rhs
);
1236 struct type
*type
= check_typedef (value_type (lhs
));
1237 if (noside
== EVAL_AVOID_SIDE_EFFECTS
)
1239 struct type
*base_type
= nullptr;
1240 if (type
->code () == TYPE_CODE_ARRAY
)
1241 base_type
= TYPE_TARGET_TYPE (type
);
1242 else if (rust_slice_type_p (type
))
1244 for (int i
= 0; i
< type
->num_fields (); ++i
)
1246 if (strcmp (TYPE_FIELD_NAME (type
, i
), "data_ptr") == 0)
1248 base_type
= TYPE_TARGET_TYPE (type
->field (i
).type ());
1252 if (base_type
== nullptr)
1253 error (_("Could not find 'data_ptr' in slice type"));
1255 else if (type
->code () == TYPE_CODE_PTR
)
1256 base_type
= TYPE_TARGET_TYPE (type
);
1258 error (_("Cannot subscript non-array type"));
1260 struct type
*new_type
;
1263 if (rust_slice_type_p (type
))
1268 = language_lookup_primitive_type (exp
->language_defn
,
1271 new_type
= rust_slice_type ("&[*gdb*]", base_type
, usize
);
1275 new_type
= base_type
;
1277 return value_zero (new_type
, VALUE_LVAL (lhs
));
1284 if (type
->code () == TYPE_CODE_ARRAY
)
1287 if (!get_array_bounds (type
, &low_bound
, &high_bound
))
1288 error (_("Can't compute array bounds"));
1290 error (_("Found array with non-zero lower bound"));
1293 else if (rust_slice_type_p (type
))
1297 base
= value_struct_elt (&lhs
, NULL
, "data_ptr", NULL
, "slice");
1298 len
= value_struct_elt (&lhs
, NULL
, "length", NULL
, "slice");
1300 high_bound
= value_as_long (len
);
1302 else if (type
->code () == TYPE_CODE_PTR
)
1306 high_bound
= LONGEST_MAX
;
1309 error (_("Cannot subscript non-array type"));
1312 && (kind
== BOTH_BOUND_DEFAULT
|| kind
== LOW_BOUND_DEFAULT
))
1315 error (_("Index less than zero"));
1316 if (low
> high_bound
)
1317 error (_("Index greater than length"));
1319 result
= value_subscript (base
, low
);
1326 struct type
*usize
, *slice
;
1328 struct value
*addrval
, *tem
;
1330 if (kind
== BOTH_BOUND_DEFAULT
|| kind
== HIGH_BOUND_DEFAULT
)
1333 error (_("High index less than zero"));
1335 error (_("Low index greater than high index"));
1336 if (high
> high_bound
)
1337 error (_("High index greater than length"));
1339 usize
= language_lookup_primitive_type (exp
->language_defn
,
1342 const char *new_name
= ((type
!= nullptr
1343 && rust_slice_type_p (type
))
1344 ? type
->name () : "&[*gdb*]");
1346 slice
= rust_slice_type (new_name
, value_type (result
), usize
);
1348 addrval
= value_allocate_space_in_inferior (TYPE_LENGTH (slice
));
1349 addr
= value_as_long (addrval
);
1350 tem
= value_at_lazy (slice
, addr
);
1352 value_assign (value_field (tem
, 0), value_addr (result
));
1353 value_assign (value_field (tem
, 1),
1354 value_from_longest (usize
, high
- low
));
1356 result
= value_at_lazy (slice
, addr
);
1359 result
= value_addr (result
);
1365 /* evaluate_exp implementation for Rust. */
1367 static struct value
*
1368 rust_evaluate_subexp (struct type
*expect_type
, struct expression
*exp
,
1369 int *pos
, enum noside noside
)
1371 struct value
*result
;
1373 switch (exp
->elts
[*pos
].opcode
)
1377 if (noside
!= EVAL_NORMAL
)
1378 result
= evaluate_subexp_standard (expect_type
, exp
, pos
, noside
);
1382 struct value
*value
= evaluate_subexp (expect_type
, exp
, pos
,
1385 struct value
*trait_ptr
= rust_get_trait_object_pointer (value
);
1386 if (trait_ptr
!= NULL
)
1389 result
= value_ind (value
);
1394 case UNOP_COMPLEMENT
:
1396 struct value
*value
;
1399 value
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1400 if (noside
== EVAL_SKIP
)
1402 /* Preserving the type is enough. */
1405 if (value_type (value
)->code () == TYPE_CODE_BOOL
)
1406 result
= value_from_longest (value_type (value
),
1407 value_logical_not (value
));
1409 result
= value_complement (value
);
1413 case BINOP_SUBSCRIPT
:
1414 result
= rust_subscript (exp
, pos
, noside
, 0);
1418 result
= rust_evaluate_funcall (exp
, pos
, noside
);
1424 struct type
*type
= exp
->elts
[pc
+ 1].type
;
1425 int arglen
= longest_to_int (exp
->elts
[pc
+ 2].longconst
);
1428 struct value
*addrval
= NULL
;
1432 if (noside
== EVAL_NORMAL
)
1434 addrval
= value_allocate_space_in_inferior (TYPE_LENGTH (type
));
1435 addr
= value_as_long (addrval
);
1436 result
= value_at_lazy (type
, addr
);
1439 if (arglen
> 0 && exp
->elts
[*pos
].opcode
== OP_OTHERS
)
1444 init
= rust_evaluate_subexp (NULL
, exp
, pos
, noside
);
1445 if (noside
== EVAL_NORMAL
)
1447 /* This isn't quite right but will do for the time
1448 being, seeing that we can't implement the Copy
1450 value_assign (result
, init
);
1456 gdb_assert (arglen
% 2 == 0);
1457 for (i
= 0; i
< arglen
; i
+= 2)
1460 const char *fieldname
;
1461 struct value
*value
, *field
;
1463 gdb_assert (exp
->elts
[*pos
].opcode
== OP_NAME
);
1465 len
= longest_to_int (exp
->elts
[*pos
].longconst
);
1467 fieldname
= &exp
->elts
[*pos
].string
;
1468 *pos
+= 2 + BYTES_TO_EXP_ELEM (len
+ 1);
1470 value
= rust_evaluate_subexp (NULL
, exp
, pos
, noside
);
1471 if (noside
== EVAL_NORMAL
)
1473 field
= value_struct_elt (&result
, NULL
, fieldname
, NULL
,
1475 value_assign (field
, value
);
1479 if (noside
== EVAL_SKIP
)
1480 return value_from_longest (builtin_type (exp
->gdbarch
)->builtin_int
,
1482 else if (noside
== EVAL_AVOID_SIDE_EFFECTS
)
1483 result
= allocate_value (type
);
1485 result
= value_at_lazy (type
, addr
);
1494 struct value
*ncopies
;
1496 elt
= rust_evaluate_subexp (NULL
, exp
, pos
, noside
);
1497 ncopies
= rust_evaluate_subexp (NULL
, exp
, pos
, noside
);
1498 copies
= value_as_long (ncopies
);
1500 error (_("Array with negative number of elements"));
1502 if (noside
== EVAL_NORMAL
)
1505 std::vector
<struct value
*> eltvec (copies
);
1507 for (i
= 0; i
< copies
; ++i
)
1509 result
= value_array (0, copies
- 1, eltvec
.data ());
1513 struct type
*arraytype
1514 = lookup_array_range_type (value_type (elt
), 0, copies
- 1);
1515 result
= allocate_value (arraytype
);
1520 case STRUCTOP_ANONYMOUS
:
1522 /* Anonymous field access, i.e. foo.1. */
1524 int pc
, field_number
, nfields
;
1528 field_number
= longest_to_int (exp
->elts
[pc
+ 1].longconst
);
1530 lhs
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1532 type
= value_type (lhs
);
1534 if (type
->code () == TYPE_CODE_STRUCT
)
1536 struct type
*outer_type
= NULL
;
1538 if (rust_enum_p (type
))
1540 gdb::array_view
<const gdb_byte
> view (value_contents (lhs
),
1541 TYPE_LENGTH (type
));
1542 type
= resolve_dynamic_type (type
, view
, value_address (lhs
));
1544 if (rust_empty_enum_p (type
))
1545 error (_("Cannot access field %d of empty enum %s"),
1546 field_number
, type
->name ());
1548 int fieldno
= rust_enum_variant (type
);
1549 lhs
= value_primitive_field (lhs
, 0, fieldno
, type
);
1551 type
= value_type (lhs
);
1554 /* Tuples and tuple structs */
1555 nfields
= type
->num_fields ();
1557 if (field_number
>= nfields
|| field_number
< 0)
1559 if (outer_type
!= NULL
)
1560 error(_("Cannot access field %d of variant %s::%s, "
1561 "there are only %d fields"),
1562 field_number
, outer_type
->name (),
1563 rust_last_path_segment (type
->name ()),
1566 error(_("Cannot access field %d of %s, "
1567 "there are only %d fields"),
1568 field_number
, type
->name (), nfields
);
1571 /* Tuples are tuple structs too. */
1572 if (!rust_tuple_struct_type_p (type
))
1574 if (outer_type
!= NULL
)
1575 error(_("Variant %s::%s is not a tuple variant"),
1576 outer_type
->name (),
1577 rust_last_path_segment (type
->name ()));
1579 error(_("Attempting to access anonymous field %d "
1580 "of %s, which is not a tuple, tuple struct, or "
1581 "tuple-like variant"),
1582 field_number
, type
->name ());
1585 result
= value_primitive_field (lhs
, 0, field_number
, type
);
1588 error(_("Anonymous field access is only allowed on tuples, \
1589 tuple structs, and tuple-like enum variants"));
1593 case STRUCTOP_STRUCT
:
1600 tem
= longest_to_int (exp
->elts
[pc
+ 1].longconst
);
1601 (*pos
) += 3 + BYTES_TO_EXP_ELEM (tem
+ 1);
1602 lhs
= evaluate_subexp (NULL_TYPE
, exp
, pos
, noside
);
1604 const char *field_name
= &exp
->elts
[pc
+ 2].string
;
1605 type
= value_type (lhs
);
1606 if (type
->code () == TYPE_CODE_STRUCT
&& rust_enum_p (type
))
1608 gdb::array_view
<const gdb_byte
> view (value_contents (lhs
),
1609 TYPE_LENGTH (type
));
1610 type
= resolve_dynamic_type (type
, view
, value_address (lhs
));
1612 if (rust_empty_enum_p (type
))
1613 error (_("Cannot access field %s of empty enum %s"),
1614 field_name
, type
->name ());
1616 int fieldno
= rust_enum_variant (type
);
1617 lhs
= value_primitive_field (lhs
, 0, fieldno
, type
);
1619 struct type
*outer_type
= type
;
1620 type
= value_type (lhs
);
1621 if (rust_tuple_type_p (type
) || rust_tuple_struct_type_p (type
))
1622 error (_("Attempting to access named field %s of tuple "
1623 "variant %s::%s, which has only anonymous fields"),
1624 field_name
, outer_type
->name (),
1625 rust_last_path_segment (type
->name ()));
1629 result
= value_struct_elt (&lhs
, NULL
, field_name
,
1632 catch (const gdb_exception_error
&except
)
1634 error (_("Could not find field %s of struct variant %s::%s"),
1635 field_name
, outer_type
->name (),
1636 rust_last_path_segment (type
->name ()));
1640 result
= value_struct_elt (&lhs
, NULL
, field_name
, NULL
, "structure");
1641 if (noside
== EVAL_AVOID_SIDE_EFFECTS
)
1642 result
= value_zero (value_type (result
), VALUE_LVAL (result
));
1647 result
= rust_range (exp
, pos
, noside
);
1651 /* We might have &array[range], in which case we need to make a
1653 if (exp
->elts
[*pos
+ 1].opcode
== BINOP_SUBSCRIPT
)
1656 result
= rust_subscript (exp
, pos
, noside
, 1);
1661 result
= evaluate_subexp_standard (expect_type
, exp
, pos
, noside
);
1668 /* operator_length implementation for Rust. */
1671 rust_operator_length (const struct expression
*exp
, int pc
, int *oplenp
,
1677 switch (exp
->elts
[pc
- 1].opcode
)
1680 /* We handle aggregate as a type and argument count. The first
1681 argument might be OP_OTHERS. After that the arguments
1682 alternate: first an OP_NAME, then an expression. */
1684 args
= longest_to_int (exp
->elts
[pc
- 2].longconst
);
1692 case STRUCTOP_ANONYMOUS
:
1703 operator_length_standard (exp
, pc
, oplenp
, argsp
);
1711 /* op_name implementation for Rust. */
1714 rust_op_name (enum exp_opcode opcode
)
1719 return "OP_AGGREGATE";
1723 return op_name_standard (opcode
);
1727 /* dump_subexp_body implementation for Rust. */
1730 rust_dump_subexp_body (struct expression
*exp
, struct ui_file
*stream
,
1733 switch (exp
->elts
[elt
].opcode
)
1737 int length
= longest_to_int (exp
->elts
[elt
+ 2].longconst
);
1740 fprintf_filtered (stream
, "Type @");
1741 gdb_print_host_address (exp
->elts
[elt
+ 1].type
, stream
);
1742 fprintf_filtered (stream
, " (");
1743 type_print (exp
->elts
[elt
+ 1].type
, NULL
, stream
, 0);
1744 fprintf_filtered (stream
, "), length %d", length
);
1747 for (i
= 0; i
< length
; ++i
)
1748 elt
= dump_subexp (exp
, stream
, elt
);
1755 LONGEST len
= exp
->elts
[elt
+ 1].longconst
;
1757 fprintf_filtered (stream
, "%s: %s",
1758 (exp
->elts
[elt
].opcode
== OP_STRING
1759 ? "string" : "name"),
1760 &exp
->elts
[elt
+ 2].string
);
1761 elt
+= 4 + BYTES_TO_EXP_ELEM (len
+ 1);
1766 elt
= dump_subexp (exp
, stream
, elt
+ 1);
1769 case STRUCTOP_ANONYMOUS
:
1773 field_number
= longest_to_int (exp
->elts
[elt
+ 1].longconst
);
1775 fprintf_filtered (stream
, "Field number: %d", field_number
);
1776 elt
= dump_subexp (exp
, stream
, elt
+ 3);
1785 elt
= dump_subexp_body_standard (exp
, stream
, elt
);
1792 /* print_subexp implementation for Rust. */
1795 rust_print_subexp (struct expression
*exp
, int *pos
, struct ui_file
*stream
,
1796 enum precedence prec
)
1798 switch (exp
->elts
[*pos
].opcode
)
1802 int length
= longest_to_int (exp
->elts
[*pos
+ 2].longconst
);
1805 type_print (exp
->elts
[*pos
+ 1].type
, "", stream
, 0);
1806 fputs_filtered (" { ", stream
);
1809 for (i
= 0; i
< length
; ++i
)
1811 rust_print_subexp (exp
, pos
, stream
, prec
);
1812 fputs_filtered (", ", stream
);
1814 fputs_filtered (" }", stream
);
1820 LONGEST len
= exp
->elts
[*pos
+ 1].longconst
;
1822 fputs_filtered (&exp
->elts
[*pos
+ 2].string
, stream
);
1823 *pos
+= 4 + BYTES_TO_EXP_ELEM (len
+ 1);
1829 fputs_filtered ("<<others>> (", stream
);
1831 rust_print_subexp (exp
, pos
, stream
, prec
);
1832 fputs_filtered (")", stream
);
1836 case STRUCTOP_ANONYMOUS
:
1838 int tem
= longest_to_int (exp
->elts
[*pos
+ 1].longconst
);
1841 print_subexp (exp
, pos
, stream
, PREC_SUFFIX
);
1842 fprintf_filtered (stream
, ".%d", tem
);
1848 fprintf_filtered (stream
, "[");
1849 rust_print_subexp (exp
, pos
, stream
, prec
);
1850 fprintf_filtered (stream
, "; ");
1851 rust_print_subexp (exp
, pos
, stream
, prec
);
1852 fprintf_filtered (stream
, "]");
1856 print_subexp_standard (exp
, pos
, stream
, prec
);
1861 /* operator_check implementation for Rust. */
1864 rust_operator_check (struct expression
*exp
, int pos
,
1865 int (*objfile_func
) (struct objfile
*objfile
,
1869 switch (exp
->elts
[pos
].opcode
)
1873 struct type
*type
= exp
->elts
[pos
+ 1].type
;
1874 struct objfile
*objfile
= TYPE_OBJFILE (type
);
1876 if (objfile
!= NULL
&& (*objfile_func
) (objfile
, data
))
1887 return operator_check_standard (exp
, pos
, objfile_func
, data
);
1895 static const struct exp_descriptor exp_descriptor_rust
=
1898 rust_operator_length
,
1899 rust_operator_check
,
1901 rust_dump_subexp_body
,
1902 rust_evaluate_subexp
1905 static const char *rust_extensions
[] =
1910 /* Constant data representing the Rust language. */
1912 extern const struct language_data rust_language_data
=
1922 &exp_descriptor_rust
,
1923 NULL
, /* name_of_this */
1924 false, /* la_store_sym_names_in_linkage_form_p */
1925 c_op_print_tab
, /* expression operators for printing */
1926 1, /* c-style arrays */
1927 0, /* String lower bound */
1928 &default_varobj_ops
,
1929 "{...}" /* la_struct_too_deep_ellipsis */
1932 /* Class representing the Rust language. */
1934 class rust_language
: public language_defn
1938 : language_defn (language_rust
, rust_language_data
)
1941 /* See language.h. */
1942 void language_arch_info (struct gdbarch
*gdbarch
,
1943 struct language_arch_info
*lai
) const override
1945 const struct builtin_type
*builtin
= builtin_type (gdbarch
);
1948 = GDBARCH_OBSTACK_CALLOC (gdbarch
, nr_rust_primitive_types
+ 1,
1951 types
[rust_primitive_bool
] = arch_boolean_type (gdbarch
, 8, 1, "bool");
1952 types
[rust_primitive_char
] = arch_character_type (gdbarch
, 32, 1, "char");
1953 types
[rust_primitive_i8
] = arch_integer_type (gdbarch
, 8, 0, "i8");
1954 types
[rust_primitive_u8
] = arch_integer_type (gdbarch
, 8, 1, "u8");
1955 types
[rust_primitive_i16
] = arch_integer_type (gdbarch
, 16, 0, "i16");
1956 types
[rust_primitive_u16
] = arch_integer_type (gdbarch
, 16, 1, "u16");
1957 types
[rust_primitive_i32
] = arch_integer_type (gdbarch
, 32, 0, "i32");
1958 types
[rust_primitive_u32
] = arch_integer_type (gdbarch
, 32, 1, "u32");
1959 types
[rust_primitive_i64
] = arch_integer_type (gdbarch
, 64, 0, "i64");
1960 types
[rust_primitive_u64
] = arch_integer_type (gdbarch
, 64, 1, "u64");
1962 unsigned int length
= 8 * TYPE_LENGTH (builtin
->builtin_data_ptr
);
1963 types
[rust_primitive_isize
] = arch_integer_type (gdbarch
, length
, 0, "isize");
1964 types
[rust_primitive_usize
] = arch_integer_type (gdbarch
, length
, 1, "usize");
1966 types
[rust_primitive_f32
] = arch_float_type (gdbarch
, 32, "f32",
1967 floatformats_ieee_single
);
1968 types
[rust_primitive_f64
] = arch_float_type (gdbarch
, 64, "f64",
1969 floatformats_ieee_double
);
1971 types
[rust_primitive_unit
] = arch_integer_type (gdbarch
, 0, 1, "()");
1973 struct type
*tem
= make_cv_type (1, 0, types
[rust_primitive_u8
], NULL
);
1974 types
[rust_primitive_str
] = rust_slice_type ("&str", tem
,
1975 types
[rust_primitive_usize
]);
1977 lai
->primitive_type_vector
= types
;
1978 lai
->bool_type_default
= types
[rust_primitive_bool
];
1979 lai
->string_char_type
= types
[rust_primitive_u8
];
1982 /* See language.h. */
1983 bool sniff_from_mangled_name (const char *mangled
,
1984 char **demangled
) const override
1986 *demangled
= gdb_demangle (mangled
, DMGL_PARAMS
| DMGL_ANSI
);
1987 return *demangled
!= NULL
;
1990 /* See language.h. */
1992 char *demangle (const char *mangled
, int options
) const override
1994 return gdb_demangle (mangled
, options
);
1997 /* See language.h. */
1999 void print_type (struct type
*type
, const char *varstring
,
2000 struct ui_file
*stream
, int show
, int level
,
2001 const struct type_print_options
*flags
) const override
2003 print_offset_data podata
;
2004 rust_internal_print_type (type
, varstring
, stream
, show
, level
,
2005 flags
, false, &podata
);
2008 /* See language.h. */
2010 gdb::unique_xmalloc_ptr
<char> watch_location_expression
2011 (struct type
*type
, CORE_ADDR addr
) const override
2013 type
= check_typedef (TYPE_TARGET_TYPE (check_typedef (type
)));
2014 std::string name
= type_to_string (type
);
2015 return gdb::unique_xmalloc_ptr
<char>
2016 (xstrprintf ("*(%s as *mut %s)", core_addr_to_string (addr
),
2020 /* See language.h. */
2022 void value_print_inner
2023 (struct value
*val
, struct ui_file
*stream
, int recurse
,
2024 const struct value_print_options
*options
) const override
2026 return rust_value_print_inner (val
, stream
, recurse
, options
);
2029 /* See language.h. */
2031 struct block_symbol lookup_symbol_nonlocal
2032 (const char *name
, const struct block
*block
,
2033 const domain_enum domain
) const override
2035 struct block_symbol result
= {};
2037 if (symbol_lookup_debug
)
2039 fprintf_unfiltered (gdb_stdlog
,
2040 "rust_lookup_symbol_non_local"
2041 " (%s, %s (scope %s), %s)\n",
2042 name
, host_address_to_string (block
),
2043 block_scope (block
), domain_name (domain
));
2046 /* Look up bare names in the block's scope. */
2047 std::string scopedname
;
2048 if (name
[cp_find_first_component (name
)] == '\0')
2050 const char *scope
= block_scope (block
);
2052 if (scope
[0] != '\0')
2054 scopedname
= std::string (scope
) + "::" + name
;
2055 name
= scopedname
.c_str ();
2063 result
= lookup_symbol_in_static_block (name
, block
, domain
);
2064 if (result
.symbol
== NULL
)
2065 result
= lookup_global_symbol (name
, block
, domain
);
2070 /* See language.h. */
2072 int parser (struct parser_state
*ps
) const override
2074 return rust_parse (ps
);
2077 /* See language.h. */
2079 void emitchar (int ch
, struct type
*chtype
,
2080 struct ui_file
*stream
, int quoter
) const override
2082 if (!rust_chartype_p (chtype
))
2083 generic_emit_char (ch
, chtype
, stream
, quoter
,
2084 target_charset (get_type_arch (chtype
)));
2085 else if (ch
== '\\' || ch
== quoter
)
2086 fprintf_filtered (stream
, "\\%c", ch
);
2087 else if (ch
== '\n')
2088 fputs_filtered ("\\n", stream
);
2089 else if (ch
== '\r')
2090 fputs_filtered ("\\r", stream
);
2091 else if (ch
== '\t')
2092 fputs_filtered ("\\t", stream
);
2093 else if (ch
== '\0')
2094 fputs_filtered ("\\0", stream
);
2095 else if (ch
>= 32 && ch
<= 127 && isprint (ch
))
2096 fputc_filtered (ch
, stream
);
2098 fprintf_filtered (stream
, "\\x%02x", ch
);
2100 fprintf_filtered (stream
, "\\u{%06x}", ch
);
2103 /* See language.h. */
2105 void printchar (int ch
, struct type
*chtype
,
2106 struct ui_file
*stream
) const override
2108 fputs_filtered ("'", stream
);
2109 LA_EMIT_CHAR (ch
, chtype
, stream
, '\'');
2110 fputs_filtered ("'", stream
);
2113 /* See language.h. */
2115 void printstr (struct ui_file
*stream
, struct type
*elttype
,
2116 const gdb_byte
*string
, unsigned int length
,
2117 const char *encoding
, int force_ellipses
,
2118 const struct value_print_options
*options
) const override
2120 rust_printstr (stream
, elttype
, string
, length
, encoding
,
2121 force_ellipses
, options
);
2124 /* See language.h. */
2126 void print_typedef (struct type
*type
, struct symbol
*new_symbol
,
2127 struct ui_file
*stream
) const override
2129 type
= check_typedef (type
);
2130 fprintf_filtered (stream
, "type %s = ", new_symbol
->print_name ());
2131 type_print (type
, "", stream
, 0);
2132 fprintf_filtered (stream
, ";");
2135 /* See language.h. */
2137 bool is_string_type_p (struct type
*type
) const override
2139 LONGEST low_bound
, high_bound
;
2141 type
= check_typedef (type
);
2142 return ((type
->code () == TYPE_CODE_STRING
)
2143 || (type
->code () == TYPE_CODE_PTR
2144 && (TYPE_TARGET_TYPE (type
)->code () == TYPE_CODE_ARRAY
2145 && rust_u8_type_p (TYPE_TARGET_TYPE (TYPE_TARGET_TYPE (type
)))
2146 && get_array_bounds (TYPE_TARGET_TYPE (type
), &low_bound
,
2148 || (type
->code () == TYPE_CODE_STRUCT
2149 && !rust_enum_p (type
)
2150 && rust_slice_type_p (type
)
2151 && strcmp (type
->name (), "&str") == 0));
2155 /* Single instance of the Rust language class. */
2157 static rust_language rust_language_defn
;