binutils-gdb/gdb/testsuite/gdb.dwarf2/imported-unit.exp
Bruno Larsen cdd4206647 gdb/testsuite: fix "continue outside of loop" TCL errors
Many test cases had a few lines in the beginning that look like:

if { condition } {
  continue
}

Where conditions varied, but were mostly in the form of ![runto_main] or
[skip_*_tests], making it quite clear that this code block was supposed
to finish the test if it entered the code block. This generates TCL
errors, as most of these tests are not inside loops.  All cases on which
this was an obvious mistake are changed in this patch.
2022-05-16 10:07:43 -03:00

185 lines
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# Copyright 2019-2022 Free Software Foundation, Inc.
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 3 of the License, or
# (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program. If not, see <http://www.gnu.org/licenses/>.
# Import a CU into an "artificial" CU. For each DW_TAG DIE in the
# artificial CU, use DW_AT_abstract_origin to refer to a DIE in the
# imported CU. This DWARF file organization is frequently found in
# programs compiled with -flto (and -g) using GCC.
#
# This test reproduces the bug described in BZ 25065 without relying
# on specific compiler versions or use of optimization switches, in
# this case -flto.
if [skip_cplus_tests] {
return
}
load_lib dwarf.exp
# This test can only be run on targets which support DWARF-2 and use gas.
if {![dwarf2_support]} {
return 0
};
standard_testfile .c .S
# ${testfile} is now "implref-struct". srcfile2 is "implref-struct.S".
set executable ${testfile}
set asm_file [standard_output_file ${srcfile2}]
# We need to know the size of integer and address types in order
# to write some of the debugging info we'd like to generate.
if [prepare_for_testing "failed to prepare" ${testfile} ${srcfile} {debug c++}] {
return -1
}
# Create the DWARF.
Dwarf::assemble $asm_file {
declare_labels cu_label main_label doit_label int_label
declare_labels Foo_label Foo_pointer_type doit_self_label
declare_labels foo_label Foo_destructor_obj_pointer_label
declare_labels Foo_constructor_obj_pointer_label
set int_size [get_sizeof "int" 4]
set addr_size [get_sizeof "void *" 8]
cu {} {
compile_unit {
{language @DW_LANG_C_plus_plus}
{name "<artificial>"}
} {
imported_unit {
{import %$cu_label}
}
subprogram {
{abstract_origin %$main_label}
{MACRO_AT_range {main}}
} {
subprogram {
{abstract_origin %$doit_label}
{MACRO_AT_range {doit}}
} {
formal_parameter {
{abstract_origin %$doit_self_label}
}
}
DW_TAG_variable {
{abstract_origin %$foo_label}
{location 4 data1}
}
}
}
}
cu {} {
cu_label: compile_unit {
{language @DW_LANG_C_plus_plus}
{name "imported_unit.c"}
} {
int_label: base_type {
{byte_size $int_size sdata}
{encoding @DW_ATE_signed}
{name int}
}
main_label: subprogram {
{name main}
{type :$int_label}
{external 1 flag}
} {
Foo_label: class_type {
{name Foo}
{byte_size 1 sdata}
} {
doit_label: subprogram {
{name doit}
{type :$int_label}
{accessibility 1 DW_FORM_data1}
} {
doit_self_label: formal_parameter {
{name this}
{artificial 1 DW_FORM_flag_present}
{type :$Foo_pointer_type}
}
}
Foo_pointer_type: pointer_type {
{byte_size $addr_size sdata}
{type :$Foo_label}
}
}
foo_label: DW_TAG_variable {
{name foo}
{type :$Foo_label}
}
}
}
}
}
if { [prepare_for_testing "failed to prepare" ${testfile} \
[list $srcfile $asm_file] {nodebug}] } {
return -1
}
gdb_test_no_output "set language c++"
set psymtabs_p [psymtabs_p]
# Verify that the partial symtab for CU "<artificial>" does
# not contain the static partial symbol int, which is defined in the
# CU "imported_unit.c". Test-case for PR25646.
set test "no static partial symbols in importing unit"
if { $psymtabs_p } {
gdb_test "main print psymbols" \
[multi_line \
" Depends on 0 other partial symtabs\." \
" Global partial symbols:" \
" `main', function, $hex" \
"" \
".*"] \
$test
} else {
unsupported $test
}
# Verify that there's only one partial symtab for imported_unit.c. Test-case
# for PR25700.
set test "no duplicate psymtab for imported_unit.c"
if { $psymtabs_p } {
set line "Partial symtab for source file imported_unit.c"
gdb_test_multiple "maint print psymbols" $test {
-re -wrap "$line.*$line.*" {
fail $gdb_test_name
}
-re -wrap "$line.*" {
pass $gdb_test_name
}
}
} else {
unsupported $test
}
gdb_test "l imported_unit.c:1" \
"1\timported_unit.c: No such file or directory\."
gdb_test "info source" "\r\nCurrent source file is imported_unit.c\r\n.*" \
"info source for imported_unit.c"
# Sanity check
gdb_test "ptype main" "= int \\(void\\)"
# Each of these tests caused a segfault prior to fixing BZ 25065.
gdb_test "ptype main::Foo" "= class Foo \{\\s+public:\\s+int doit\\(void\\);\\s+\}"
gdb_test "ptype main::foo" "= class Foo \{\\s+public:\\s+int doit\\(void\\);\\s+\}"