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I've tried to build stage3 with -Wleading-whitespace=blanks -Wtrailing-whitespace=blank -Wno-error=leading-whitespace=blanks -Wno-error=trailing-whitespace=blank added to STRICT_WARN and that expectably resulted in about 2744 unique trailing whitespace warnings and 124837 leading whitespace warnings when excluding *.md files (which obviously is in big part a generator issue). Others from that are generator related, I think those need to be solved later. The following patch just fixes up the easy case (trailing whitespace), which could be easily automated: for i in `find . -name \*.h -o -name \*.cc -o -name \*.c | xargs grep -l '[ ]$' | grep -v testsuite/`; do sed -i -e 's/[ ]*$//' $i; done I've excluded files which I knew are obviously generated or go FE. Is there anything else we'd want to avoid the changes? Due to patch size, I've split it between gcc/ part and rest (include/, libiberty/, libgcc/, libcpp/, libstdc++-v3/; this part). 2024-10-24 Jakub Jelinek <jakub@redhat.com> include/ * dyn-string.h: Remove trailing whitespace. * libiberty.h: Likewise. * xregex.h: Likewise. * splay-tree.h: Likewise. * partition.h: Likewise. * plugin-api.h: Likewise. * demangle.h: Likewise. * vtv-change-permission.h: Likewise. * fibheap.h: Likewise. * hsa_ext_image.h: Likewise. * hashtab.h: Likewise. * libcollector.h: Likewise. * sort.h: Likewise. * symcat.h: Likewise. * hsa_ext_amd.h: Likewise. libcpp/ * directives.cc: Remove trailing whitespace. * mkdeps.cc: Likewise. * line-map.cc: Likewise. * internal.h: Likewise. * files.cc: Likewise. * init.cc: Likewise. * makeucnid.cc: Likewise. * system.h: Likewise. * include/line-map.h: Likewise. * include/symtab.h: Likewise. * include/cpplib.h: Likewise. * expr.cc: Likewise. * charset.cc: Likewise. * macro.cc: Likewise. * errors.cc: Likewise. * lex.cc: Likewise. * traditional.cc: Likewise. libgcc/ * crtstuff.c: Remove trailing whitespace. * libgcov.h: Likewise. * config/alpha/crtfastmath.c: Likewise. * config/alpha/vms-gcc_shell_handler.c: Likewise. * config/alpha/vms-unwind.h: Likewise. * config/pa/linux-atomic.c: Likewise. * config/pa/linux-unwind.h: Likewise. * config/pa/quadlib.c: Likewise. * config/pa/fptr.c: Likewise. * config/s390/32/_fixsfdi.c: Likewise. * config/s390/32/_fixunssfdi.c: Likewise. * config/s390/32/_fixunsdfdi.c: Likewise. * config/c6x/pr-support.c: Likewise. * config/lm32/_udivsi3.c: Likewise. * config/lm32/libgcc_lm32.h: Likewise. * config/lm32/_udivmodsi4.c: Likewise. * config/lm32/_mulsi3.c: Likewise. * config/lm32/_modsi3.c: Likewise. * config/lm32/_umodsi3.c: Likewise. * config/lm32/_divsi3.c: Likewise. * config/darwin-crt3.c: Likewise. * config/msp430/mpy.c: Likewise. * config/ia64/tf-signs.c: Likewise. * config/ia64/fde-vms.c: Likewise. * config/ia64/unwind-ia64.c: Likewise. * config/ia64/vms-unwind.h: Likewise. * config/ia64/sfp-exceptions.c: Likewise. * config/ia64/quadlib.c: Likewise. * config/ia64/unwind-ia64.h: Likewise. * config/rl78/vregs.h: Likewise. * config/arm/bpabi.c: Likewise. * config/arm/unwind-arm.c: Likewise. * config/arm/pr-support.c: Likewise. * config/arm/linux-atomic.c: Likewise. * config/arm/bpabi-lib.h: Likewise. * config/frv/frvend.c: Likewise. * config/frv/cmovw.c: Likewise. * config/frv/frvbegin.c: Likewise. * config/frv/cmovd.c: Likewise. * config/frv/cmovh.c: Likewise. * config/aarch64/cpuinfo.c: Likewise. * config/i386/crtfastmath.c: Likewise. * config/i386/cygming-crtend.c: Likewise. * config/i386/32/tf-signs.c: Likewise. * config/i386/crtprec.c: Likewise. * config/i386/sfp-exceptions.c: Likewise. * config/i386/w32-unwind.h: Likewise. * config/m32r/initfini.c: Likewise. * config/sparc/crtfastmath.c: Likewise. * config/gcn/amdgcn_veclib.h: Likewise. * config/nios2/linux-atomic.c: Likewise. * config/nios2/linux-unwind.h: Likewise. * config/nios2/lib2-mul.c: Likewise. * config/nios2/lib2-nios2.h: Likewise. * config/xtensa/unwind-dw2-xtensa.c: Likewise. * config/rs6000/darwin-fallback.c: Likewise. * config/rs6000/ibm-ldouble.c: Likewise. * config/rs6000/sfp-machine.h: Likewise. * config/rs6000/darwin-asm.h: Likewise. * config/rs6000/darwin-crt2.c: Likewise. * config/rs6000/aix-unwind.h: Likewise. * config/rs6000/sfp-exceptions.c: Likewise. * config/gthr-vxworks.c: Likewise. * config/riscv/atomic.c: Likewise. * config/visium/memcpy.c: Likewise. * config/darwin-crt-tm.c: Likewise. * config/stormy16/lib2funcs.c: Likewise. * config/arc/ieee-754/divtab-arc-sf.c: Likewise. * config/arc/ieee-754/divtab-arc-df.c: Likewise. * config/arc/initfini.c: Likewise. * config/sol2/gmon.c: Likewise. * config/microblaze/divsi3_table.c: Likewise. * config/m68k/fpgnulib.c: Likewise. * libgcov-driver.c: Likewise. * unwind-dw2.c: Likewise. * fp-bit.c: Likewise. * dfp-bit.h: Likewise. * dfp-bit.c: Likewise. * libgcov-driver-system.c: Likewise. libgcc/config/libbid/ * _le_td.c: Remove trailing whitespace. * bid128_compare.c: Likewise. * bid_div_macros.h: Likewise. * bid64_to_bid128.c: Likewise. * bid64_to_uint32.c: Likewise. * bid128_to_uint64.c: Likewise. * bid64_div.c: Likewise. * bid128_round_integral.c: Likewise. * bid_binarydecimal.c: Likewise. * bid128_string.c: Likewise. * bid_flag_operations.c: Likewise. * bid128_to_int64.c: Likewise. * _mul_sd.c: Likewise. * bid64_mul.c: Likewise. * bid128_noncomp.c: Likewise. * _gt_dd.c: Likewise. * bid64_add.c: Likewise. * bid64_string.c: Likewise. * bid_from_int.c: Likewise. * bid128.c: Likewise. * _ge_dd.c: Likewise. * _ne_sd.c: Likewise. * _dd_to_td.c: Likewise. * _unord_sd.c: Likewise. * bid64_to_uint64.c: Likewise. * _gt_sd.c: Likewise. * _sd_to_td.c: Likewise. * _addsub_td.c: Likewise. * _ne_td.c: Likewise. * bid_dpd.c: Likewise. * bid128_add.c: Likewise. * bid128_next.c: Likewise. * _lt_sd.c: Likewise. * bid64_next.c: Likewise. * bid128_mul.c: Likewise. * _lt_dd.c: Likewise. * _ge_td.c: Likewise. * _unord_dd.c: Likewise. * bid64_sqrt.c: Likewise. * bid_sqrt_macros.h: Likewise. * bid64_fma.c: Likewise. * _sd_to_dd.c: Likewise. * bid_conf.h: Likewise. * bid64_noncomp.c: Likewise. * bid_gcc_intrinsics.h: Likewise. * _gt_td.c: Likewise. * _ge_sd.c: Likewise. * bid128_minmax.c: Likewise. * bid128_quantize.c: Likewise. * bid32_to_bid64.c: Likewise. * bid_round.c: Likewise. * _td_to_sd.c: Likewise. * bid_inline_add.h: Likewise. * bid128_fma.c: Likewise. * _eq_td.c: Likewise. * bid32_to_bid128.c: Likewise. * bid64_rem.c: Likewise. * bid128_2_str_tables.c: Likewise. * _mul_dd.c: Likewise. * _dd_to_sd.c: Likewise. * bid128_div.c: Likewise. * _lt_td.c: Likewise. * bid64_compare.c: Likewise. * bid64_to_int32.c: Likewise. * _unord_td.c: Likewise. * bid128_rem.c: Likewise. * bid_internal.h: Likewise. * bid64_to_int64.c: Likewise. * _eq_dd.c: Likewise. * _td_to_dd.c: Likewise. * bid128_to_int32.c: Likewise. * bid128_to_uint32.c: Likewise. * _ne_dd.c: Likewise. * bid64_quantize.c: Likewise. * _le_dd.c: Likewise. * bid64_round_integral.c: Likewise. * _le_sd.c: Likewise. * bid64_minmax.c: Likewise. libgcc/config/avr/libf7/ * f7-renames.h: Remove trailing whitespace. libstdc++-v3/ * include/debug/debug.h: Remove trailing whitespace. * include/parallel/base.h: Likewise. * include/parallel/types.h: Likewise. * include/parallel/settings.h: Likewise. * include/parallel/multiseq_selection.h: Likewise. * include/parallel/partition.h: Likewise. * include/parallel/random_number.h: Likewise. * include/parallel/find_selectors.h: Likewise. * include/parallel/partial_sum.h: Likewise. * include/parallel/list_partition.h: Likewise. * include/parallel/search.h: Likewise. * include/parallel/algorithmfwd.h: Likewise. * include/parallel/random_shuffle.h: Likewise. * include/parallel/multiway_mergesort.h: Likewise. * include/parallel/sort.h: Likewise. * include/parallel/algobase.h: Likewise. * include/parallel/numericfwd.h: Likewise. * include/parallel/multiway_merge.h: Likewise. * include/parallel/losertree.h: Likewise. * include/bits/basic_ios.h: Likewise. * include/bits/stringfwd.h: Likewise. * include/bits/ostream_insert.h: Likewise. * include/bits/stl_heap.h: Likewise. * include/bits/unordered_map.h: Likewise. * include/bits/hashtable_policy.h: Likewise. * include/bits/stl_iterator_base_funcs.h: Likewise. * include/bits/valarray_before.h: Likewise. * include/bits/regex.h: Likewise. * include/bits/postypes.h: Likewise. * include/bits/stl_iterator.h: Likewise. * include/bits/localefwd.h: Likewise. * include/bits/stl_algo.h: Likewise. * include/bits/ios_base.h: Likewise. * include/bits/stl_function.h: Likewise. * include/bits/basic_string.h: Likewise. * include/bits/hashtable.h: Likewise. * include/bits/valarray_after.h: Likewise. * include/bits/char_traits.h: Likewise. * include/bits/gslice.h: Likewise. * include/bits/locale_facets_nonio.h: Likewise. * include/bits/mask_array.h: Likewise. * include/bits/specfun.h: Likewise. * include/bits/random.h: Likewise. * include/bits/slice_array.h: Likewise. * include/bits/valarray_array.h: Likewise. * include/tr1/float.h: Likewise. * include/tr1/functional_hash.h: Likewise. * include/tr1/math.h: Likewise. * include/tr1/hashtable_policy.h: Likewise. * include/tr1/stdio.h: Likewise. * include/tr1/complex.h: Likewise. * include/tr1/stdbool.h: Likewise. * include/tr1/stdarg.h: Likewise. * include/tr1/inttypes.h: Likewise. * include/tr1/fenv.h: Likewise. * include/tr1/stdlib.h: Likewise. * include/tr1/wchar.h: Likewise. * include/tr1/tgmath.h: Likewise. * include/tr1/limits.h: Likewise. * include/tr1/wctype.h: Likewise. * include/tr1/stdint.h: Likewise. * include/tr1/ctype.h: Likewise. * include/tr1/random.h: Likewise. * include/tr1/shared_ptr.h: Likewise. * include/ext/mt_allocator.h: Likewise. * include/ext/sso_string_base.h: Likewise. * include/ext/debug_allocator.h: Likewise. * include/ext/vstring_fwd.h: Likewise. * include/ext/pointer.h: Likewise. * include/ext/pod_char_traits.h: Likewise. * include/ext/malloc_allocator.h: Likewise. * include/ext/vstring.h: Likewise. * include/ext/bitmap_allocator.h: Likewise. * include/ext/pool_allocator.h: Likewise. * include/ext/type_traits.h: Likewise. * include/ext/ropeimpl.h: Likewise. * include/ext/codecvt_specializations.h: Likewise. * include/ext/throw_allocator.h: Likewise. * include/ext/extptr_allocator.h: Likewise. * include/ext/atomicity.h: Likewise. * include/ext/concurrence.h: Likewise. * include/c_compatibility/wchar.h: Likewise. * include/c_compatibility/stdint.h: Likewise. * include/backward/hash_fun.h: Likewise. * include/backward/binders.h: Likewise. * include/backward/hashtable.h: Likewise. * include/backward/auto_ptr.h: Likewise. * libsupc++/eh_arm.cc: Likewise. * libsupc++/unwind-cxx.h: Likewise. * libsupc++/si_class_type_info.cc: Likewise. * libsupc++/vec.cc: Likewise. * libsupc++/class_type_info.cc: Likewise. * libsupc++/vmi_class_type_info.cc: Likewise. * libsupc++/guard_error.cc: Likewise. * libsupc++/bad_typeid.cc: Likewise. * libsupc++/eh_personality.cc: Likewise. * libsupc++/atexit_arm.cc: Likewise. * libsupc++/pmem_type_info.cc: Likewise. * libsupc++/vterminate.cc: Likewise. * libsupc++/eh_terminate.cc: Likewise. * libsupc++/bad_cast.cc: Likewise. * libsupc++/exception_ptr.h: Likewise. * libsupc++/eh_throw.cc: Likewise. * libsupc++/bad_alloc.cc: Likewise. * libsupc++/nested_exception.cc: Likewise. * libsupc++/pointer_type_info.cc: Likewise. * libsupc++/pbase_type_info.cc: Likewise. * libsupc++/bad_array_new.cc: Likewise. * libsupc++/pure.cc: Likewise. * libsupc++/eh_exception.cc: Likewise. * libsupc++/bad_array_length.cc: Likewise. * libsupc++/cxxabi.h: Likewise. * libsupc++/guard.cc: Likewise. * libsupc++/eh_catch.cc: Likewise. * libsupc++/cxxabi_forced.h: Likewise. * libsupc++/tinfo.h: Likewise.
820 lines
24 KiB
C++
820 lines
24 KiB
C++
// -*- C++ -*- The GNU C++ exception personality routine.
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// Copyright (C) 2001-2024 Free Software Foundation, Inc.
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//
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// This file is part of GCC.
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//
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// GCC is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 3, or (at your option)
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// any later version.
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//
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// GCC is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// Under Section 7 of GPL version 3, you are granted additional
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// permissions described in the GCC Runtime Library Exception, version
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// 3.1, as published by the Free Software Foundation.
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// You should have received a copy of the GNU General Public License and
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// a copy of the GCC Runtime Library Exception along with this program;
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// see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
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// <http://www.gnu.org/licenses/>.
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#include <bits/c++config.h>
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#include <cstdlib>
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#include <bits/exception_defines.h>
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#include <cxxabi.h>
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#include "unwind-cxx.h"
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using namespace __cxxabiv1;
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#include "unwind-pe.h"
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struct lsda_header_info
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{
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_Unwind_Ptr Start;
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_Unwind_Ptr LPStart;
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_Unwind_Ptr ttype_base;
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const unsigned char *TType;
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const unsigned char *action_table;
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unsigned char ttype_encoding;
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unsigned char call_site_encoding;
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};
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static const unsigned char *
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parse_lsda_header (_Unwind_Context *context, const unsigned char *p,
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lsda_header_info *info)
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{
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_uleb128_t tmp;
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unsigned char lpstart_encoding;
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info->Start = (context ? _Unwind_GetRegionStart (context) : 0);
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// Find @LPStart, the base to which landing pad offsets are relative.
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lpstart_encoding = *p++;
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if (lpstart_encoding != DW_EH_PE_omit)
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p = read_encoded_value (context, lpstart_encoding, p, &info->LPStart);
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else
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info->LPStart = info->Start;
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// Find @TType, the base of the handler and exception spec type data.
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info->ttype_encoding = *p++;
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if (info->ttype_encoding != DW_EH_PE_omit)
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{
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#if _GLIBCXX_OVERRIDE_TTYPE_ENCODING
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/* Older ARM EABI toolchains set this value incorrectly, so use a
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hardcoded OS-specific format. */
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info->ttype_encoding = _GLIBCXX_OVERRIDE_TTYPE_ENCODING;
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#endif
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p = read_uleb128 (p, &tmp);
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info->TType = p + tmp;
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}
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else
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info->TType = 0;
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// The encoding and length of the call-site table; the action table
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// immediately follows.
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info->call_site_encoding = *p++;
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p = read_uleb128 (p, &tmp);
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info->action_table = p + tmp;
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return p;
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}
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// Return an element from a type table.
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static const std::type_info *
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get_ttype_entry (lsda_header_info *info, _uleb128_t i)
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{
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_Unwind_Ptr ptr;
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i *= size_of_encoded_value (info->ttype_encoding);
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read_encoded_value_with_base (
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#if __FDPIC__
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/* Force these flags to make sure to
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take the GOT into account. */
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(DW_EH_PE_pcrel | DW_EH_PE_indirect),
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#else
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info->ttype_encoding,
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#endif
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info->ttype_base,
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info->TType - i, &ptr);
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return reinterpret_cast<const std::type_info *>(ptr);
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}
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#ifdef __ARM_EABI_UNWINDER__
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// The ABI provides a routine for matching exception object types.
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typedef _Unwind_Control_Block _throw_typet;
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#define get_adjusted_ptr(catch_type, throw_type, thrown_ptr_p) \
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(__cxa_type_match (throw_type, catch_type, false, thrown_ptr_p) \
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!= ctm_failed)
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// Return true if THROW_TYPE matches one if the filter types.
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static bool
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check_exception_spec(lsda_header_info* info, _throw_typet* throw_type,
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void* thrown_ptr, _sleb128_t filter_value)
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{
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const _uleb128_t* e = ((const _uleb128_t*) info->TType)
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- filter_value - 1;
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while (1)
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{
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const std::type_info* catch_type;
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_uleb128_t tmp;
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tmp = *e;
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// Zero signals the end of the list. If we've not found
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// a match by now, then we've failed the specification.
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if (tmp == 0)
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return false;
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tmp = _Unwind_decode_typeinfo_ptr(info->ttype_base, (_Unwind_Word) e);
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// Match a ttype entry.
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catch_type = reinterpret_cast<const std::type_info*>(tmp);
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// ??? There is currently no way to ask the RTTI code about the
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// relationship between two types without reference to a specific
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// object. There should be; then we wouldn't need to mess with
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// thrown_ptr here.
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if (get_adjusted_ptr(catch_type, throw_type, &thrown_ptr))
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return true;
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// Advance to the next entry.
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e++;
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}
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}
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// Save stage1 handler information in the exception object
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static inline void
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save_caught_exception(struct _Unwind_Exception* ue_header,
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struct _Unwind_Context* context,
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void* thrown_ptr,
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int handler_switch_value,
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const unsigned char* language_specific_data,
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_Unwind_Ptr landing_pad,
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const unsigned char* action_record
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__attribute__((__unused__)))
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{
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ue_header->barrier_cache.sp = _Unwind_GetGR(context, UNWIND_STACK_REG);
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ue_header->barrier_cache.bitpattern[0] = (_uw) thrown_ptr;
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ue_header->barrier_cache.bitpattern[1]
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= (_uw) handler_switch_value;
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ue_header->barrier_cache.bitpattern[2]
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= (_uw) language_specific_data;
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ue_header->barrier_cache.bitpattern[3] = (_uw) landing_pad;
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}
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// Restore the catch handler data saved during phase1.
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static inline void
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restore_caught_exception(struct _Unwind_Exception* ue_header,
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int& handler_switch_value,
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const unsigned char*& language_specific_data,
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_Unwind_Ptr& landing_pad)
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{
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handler_switch_value = (int) ue_header->barrier_cache.bitpattern[1];
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language_specific_data =
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(const unsigned char*) ue_header->barrier_cache.bitpattern[2];
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landing_pad = (_Unwind_Ptr) ue_header->barrier_cache.bitpattern[3];
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}
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#define CONTINUE_UNWINDING \
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do \
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{ \
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if (__gnu_unwind_frame(ue_header, context) != _URC_OK) \
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return _URC_FAILURE; \
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return _URC_CONTINUE_UNWIND; \
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} \
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while (0)
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// Return true if the filter spec is empty, ie throw().
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static bool
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empty_exception_spec (lsda_header_info *info, _Unwind_Sword filter_value)
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{
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const _Unwind_Word* e = ((const _Unwind_Word*) info->TType)
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- filter_value - 1;
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return *e == 0;
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}
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#else
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typedef const std::type_info _throw_typet;
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// Given the thrown type THROW_TYPE, pointer to a variable containing a
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// pointer to the exception object THROWN_PTR_P and a type CATCH_TYPE to
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// compare against, return whether or not there is a match and if so,
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// update *THROWN_PTR_P.
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static bool
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get_adjusted_ptr (const std::type_info *catch_type,
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const std::type_info *throw_type,
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void **thrown_ptr_p)
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{
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void *thrown_ptr = *thrown_ptr_p;
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// Pointer types need to adjust the actual pointer, not
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// the pointer to pointer that is the exception object.
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// This also has the effect of passing pointer types
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// "by value" through the __cxa_begin_catch return value.
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if (throw_type->__is_pointer_p ())
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thrown_ptr = *(void **) thrown_ptr;
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if (catch_type->__do_catch (throw_type, &thrown_ptr, 1))
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{
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*thrown_ptr_p = thrown_ptr;
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return true;
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}
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return false;
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}
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// Return true if THROW_TYPE matches one if the filter types.
|
||
|
||
static bool
|
||
check_exception_spec(lsda_header_info* info, _throw_typet* throw_type,
|
||
void* thrown_ptr, _sleb128_t filter_value)
|
||
{
|
||
const unsigned char *e = info->TType - filter_value - 1;
|
||
|
||
while (1)
|
||
{
|
||
const std::type_info *catch_type;
|
||
_uleb128_t tmp;
|
||
|
||
e = read_uleb128 (e, &tmp);
|
||
|
||
// Zero signals the end of the list. If we've not found
|
||
// a match by now, then we've failed the specification.
|
||
if (tmp == 0)
|
||
return false;
|
||
|
||
// Match a ttype entry.
|
||
catch_type = get_ttype_entry (info, tmp);
|
||
|
||
// ??? There is currently no way to ask the RTTI code about the
|
||
// relationship between two types without reference to a specific
|
||
// object. There should be; then we wouldn't need to mess with
|
||
// thrown_ptr here.
|
||
if (get_adjusted_ptr (catch_type, throw_type, &thrown_ptr))
|
||
return true;
|
||
}
|
||
}
|
||
|
||
|
||
// Save stage1 handler information in the exception object
|
||
|
||
static inline void
|
||
save_caught_exception(struct _Unwind_Exception* ue_header,
|
||
struct _Unwind_Context* context
|
||
__attribute__((__unused__)),
|
||
void* thrown_ptr,
|
||
int handler_switch_value,
|
||
const unsigned char* language_specific_data,
|
||
_Unwind_Ptr landing_pad __attribute__((__unused__)),
|
||
const unsigned char* action_record)
|
||
{
|
||
__cxa_exception* xh = __get_exception_header_from_ue(ue_header);
|
||
|
||
xh->handlerSwitchValue = handler_switch_value;
|
||
xh->actionRecord = action_record;
|
||
xh->languageSpecificData = language_specific_data;
|
||
xh->adjustedPtr = thrown_ptr;
|
||
|
||
// ??? Completely unknown what this field is supposed to be for.
|
||
// ??? Need to cache TType encoding base for call_unexpected.
|
||
xh->catchTemp = landing_pad;
|
||
}
|
||
|
||
|
||
// Restore the catch handler information saved during phase1.
|
||
|
||
static inline void
|
||
restore_caught_exception(struct _Unwind_Exception* ue_header,
|
||
int& handler_switch_value,
|
||
const unsigned char*& language_specific_data,
|
||
_Unwind_Ptr& landing_pad)
|
||
{
|
||
__cxa_exception* xh = __get_exception_header_from_ue(ue_header);
|
||
handler_switch_value = xh->handlerSwitchValue;
|
||
language_specific_data = xh->languageSpecificData;
|
||
landing_pad = (_Unwind_Ptr) xh->catchTemp;
|
||
}
|
||
|
||
#define CONTINUE_UNWINDING return _URC_CONTINUE_UNWIND
|
||
|
||
// Return true if the filter spec is empty, ie throw().
|
||
|
||
static bool
|
||
empty_exception_spec (lsda_header_info *info, _Unwind_Sword filter_value)
|
||
{
|
||
const unsigned char *e = info->TType - filter_value - 1;
|
||
_uleb128_t tmp;
|
||
|
||
e = read_uleb128 (e, &tmp);
|
||
return tmp == 0;
|
||
}
|
||
|
||
#endif // !__ARM_EABI_UNWINDER__
|
||
|
||
namespace __cxxabiv1
|
||
{
|
||
|
||
// Using a different personality function name causes link failures
|
||
// when trying to mix code using different exception handling models.
|
||
#ifdef __USING_SJLJ_EXCEPTIONS__
|
||
#define PERSONALITY_FUNCTION __gxx_personality_sj0
|
||
#define __builtin_eh_return_data_regno(x) x
|
||
#elif defined(__SEH__)
|
||
#define PERSONALITY_FUNCTION __gxx_personality_imp
|
||
#else
|
||
#define PERSONALITY_FUNCTION __gxx_personality_v0
|
||
#endif
|
||
|
||
#if defined (__SEH__) && !defined (__USING_SJLJ_EXCEPTIONS__)
|
||
static
|
||
#else
|
||
extern "C"
|
||
#endif
|
||
_Unwind_Reason_Code
|
||
#ifdef __ARM_EABI_UNWINDER__
|
||
__attribute__((target ("general-regs-only")))
|
||
PERSONALITY_FUNCTION (_Unwind_State state,
|
||
struct _Unwind_Exception* ue_header,
|
||
struct _Unwind_Context* context)
|
||
#else
|
||
PERSONALITY_FUNCTION (int version,
|
||
_Unwind_Action actions,
|
||
_Unwind_Exception_Class exception_class,
|
||
struct _Unwind_Exception *ue_header,
|
||
struct _Unwind_Context *context)
|
||
#endif
|
||
{
|
||
enum found_handler_type
|
||
{
|
||
found_nothing,
|
||
found_terminate,
|
||
found_cleanup,
|
||
found_handler
|
||
} found_type;
|
||
|
||
lsda_header_info info;
|
||
const unsigned char *language_specific_data;
|
||
const unsigned char *action_record;
|
||
const unsigned char *p;
|
||
_Unwind_Ptr landing_pad, ip;
|
||
int handler_switch_value;
|
||
void* thrown_ptr = 0;
|
||
bool foreign_exception;
|
||
int ip_before_insn = 0;
|
||
|
||
#ifdef __ARM_EABI_UNWINDER__
|
||
_Unwind_Action actions;
|
||
|
||
switch (state & _US_ACTION_MASK)
|
||
{
|
||
case _US_VIRTUAL_UNWIND_FRAME:
|
||
// If the unwind state pattern is
|
||
// _US_VIRTUAL_UNWIND_FRAME | _US_FORCE_UNWIND
|
||
// then we don't need to search for any handler as it is not a real
|
||
// exception. Just unwind the stack.
|
||
if (state & _US_FORCE_UNWIND)
|
||
CONTINUE_UNWINDING;
|
||
actions = _UA_SEARCH_PHASE;
|
||
break;
|
||
|
||
case _US_UNWIND_FRAME_STARTING:
|
||
actions = _UA_CLEANUP_PHASE;
|
||
if (!(state & _US_FORCE_UNWIND)
|
||
&& ue_header->barrier_cache.sp == _Unwind_GetGR(context,
|
||
UNWIND_STACK_REG))
|
||
actions |= _UA_HANDLER_FRAME;
|
||
break;
|
||
|
||
case _US_UNWIND_FRAME_RESUME:
|
||
CONTINUE_UNWINDING;
|
||
break;
|
||
|
||
default:
|
||
std::abort();
|
||
}
|
||
actions |= state & _US_FORCE_UNWIND;
|
||
|
||
// We don't know which runtime we're working with, so can't check this.
|
||
// However the ABI routines hide this from us, and we don't actually need
|
||
// to know.
|
||
foreign_exception = false;
|
||
|
||
// The dwarf unwinder assumes the context structure holds things like the
|
||
// function and LSDA pointers. The ARM implementation caches these in
|
||
// the exception header (UCB). To avoid rewriting everything we make a
|
||
// virtual scratch register point at the UCB.
|
||
ip = (_Unwind_Ptr) ue_header;
|
||
_Unwind_SetGR(context, UNWIND_POINTER_REG, ip);
|
||
#else
|
||
__cxa_exception* xh = __get_exception_header_from_ue(ue_header);
|
||
|
||
// Interface version check.
|
||
if (version != 1)
|
||
return _URC_FATAL_PHASE1_ERROR;
|
||
foreign_exception = !__is_gxx_exception_class(exception_class);
|
||
#endif
|
||
|
||
// Shortcut for phase 2 found handler for domestic exception.
|
||
if (actions == (_UA_CLEANUP_PHASE | _UA_HANDLER_FRAME)
|
||
&& !foreign_exception)
|
||
{
|
||
restore_caught_exception(ue_header, handler_switch_value,
|
||
language_specific_data, landing_pad);
|
||
found_type = (landing_pad == 0 ? found_terminate : found_handler);
|
||
goto install_context;
|
||
}
|
||
|
||
language_specific_data = (const unsigned char *)
|
||
_Unwind_GetLanguageSpecificData (context);
|
||
|
||
// If no LSDA, then there are no handlers or cleanups.
|
||
if (! language_specific_data)
|
||
CONTINUE_UNWINDING;
|
||
|
||
// Parse the LSDA header.
|
||
p = parse_lsda_header (context, language_specific_data, &info);
|
||
info.ttype_base = base_of_encoded_value (info.ttype_encoding, context);
|
||
#ifdef _GLIBCXX_HAVE_GETIPINFO
|
||
ip = _Unwind_GetIPInfo (context, &ip_before_insn);
|
||
#else
|
||
ip = _Unwind_GetIP (context);
|
||
#endif
|
||
if (! ip_before_insn)
|
||
--ip;
|
||
landing_pad = 0;
|
||
action_record = 0;
|
||
handler_switch_value = 0;
|
||
|
||
#ifdef __USING_SJLJ_EXCEPTIONS__
|
||
// The given "IP" is an index into the call-site table, with two
|
||
// exceptions -- -1 means no-action, and 0 means terminate. But
|
||
// since we're using uleb128 values, we've not got random access
|
||
// to the array.
|
||
if ((int) ip < 0)
|
||
return _URC_CONTINUE_UNWIND;
|
||
else if (ip == 0)
|
||
{
|
||
// Fall through to set found_terminate.
|
||
}
|
||
else
|
||
{
|
||
_uleb128_t cs_lp, cs_action;
|
||
do
|
||
{
|
||
p = read_uleb128 (p, &cs_lp);
|
||
p = read_uleb128 (p, &cs_action);
|
||
}
|
||
while (--ip);
|
||
|
||
// Can never have null landing pad for sjlj -- that would have
|
||
// been indicated by a -1 call site index.
|
||
landing_pad = cs_lp + 1;
|
||
if (cs_action)
|
||
action_record = info.action_table + cs_action - 1;
|
||
goto found_something;
|
||
}
|
||
#else
|
||
// Search the call-site table for the action associated with this IP.
|
||
while (p < info.action_table)
|
||
{
|
||
_Unwind_Ptr cs_start, cs_len, cs_lp;
|
||
_uleb128_t cs_action;
|
||
|
||
// Note that all call-site encodings are "absolute" displacements.
|
||
p = read_encoded_value (0, info.call_site_encoding, p, &cs_start);
|
||
p = read_encoded_value (0, info.call_site_encoding, p, &cs_len);
|
||
p = read_encoded_value (0, info.call_site_encoding, p, &cs_lp);
|
||
p = read_uleb128 (p, &cs_action);
|
||
|
||
// The table is sorted, so if we've passed the ip, stop.
|
||
if (ip < info.Start + cs_start)
|
||
p = info.action_table;
|
||
else if (ip < info.Start + cs_start + cs_len)
|
||
{
|
||
if (cs_lp)
|
||
landing_pad = info.LPStart + cs_lp;
|
||
if (cs_action)
|
||
action_record = info.action_table + cs_action - 1;
|
||
goto found_something;
|
||
}
|
||
}
|
||
#endif // __USING_SJLJ_EXCEPTIONS__
|
||
|
||
// If ip is not present in the table, call terminate. This is for
|
||
// a destructor inside a cleanup, or a library routine the compiler
|
||
// was not expecting to throw.
|
||
found_type = found_terminate;
|
||
goto do_something;
|
||
|
||
found_something:
|
||
if (landing_pad == 0)
|
||
{
|
||
// If ip is present, and has a null landing pad, there are
|
||
// no cleanups or handlers to be run.
|
||
found_type = found_nothing;
|
||
}
|
||
else if (action_record == 0)
|
||
{
|
||
// If ip is present, has a non-null landing pad, and a null
|
||
// action table offset, then there are only cleanups present.
|
||
// Cleanups use a zero switch value, as set above.
|
||
found_type = found_cleanup;
|
||
}
|
||
else
|
||
{
|
||
// Otherwise we have a catch handler or exception specification.
|
||
|
||
_sleb128_t ar_filter, ar_disp;
|
||
const std::type_info* catch_type;
|
||
_throw_typet* throw_type;
|
||
bool saw_cleanup = false;
|
||
bool saw_handler = false;
|
||
|
||
#ifdef __ARM_EABI_UNWINDER__
|
||
// ??? How does this work - more importantly, how does it interact with
|
||
// dependent exceptions?
|
||
throw_type = ue_header;
|
||
if (actions & _UA_FORCE_UNWIND)
|
||
{
|
||
__GXX_INIT_FORCED_UNWIND_CLASS(ue_header->exception_class);
|
||
}
|
||
else if (!foreign_exception)
|
||
thrown_ptr = __get_object_from_ue (ue_header);
|
||
#else
|
||
#if __cpp_rtti
|
||
// During forced unwinding, match a magic exception type.
|
||
if (actions & _UA_FORCE_UNWIND)
|
||
{
|
||
throw_type = &typeid(abi::__forced_unwind);
|
||
}
|
||
// With a foreign exception class, there's no exception type.
|
||
// ??? What to do about GNU Java and GNU Ada exceptions?
|
||
else if (foreign_exception)
|
||
{
|
||
throw_type = &typeid(abi::__foreign_exception);
|
||
}
|
||
else
|
||
#endif
|
||
{
|
||
thrown_ptr = __get_object_from_ue (ue_header);
|
||
throw_type = __get_exception_header_from_obj
|
||
(thrown_ptr)->exceptionType;
|
||
}
|
||
#endif
|
||
|
||
while (1)
|
||
{
|
||
p = action_record;
|
||
p = read_sleb128 (p, &ar_filter);
|
||
read_sleb128 (p, &ar_disp);
|
||
|
||
if (ar_filter == 0)
|
||
{
|
||
// Zero filter values are cleanups.
|
||
saw_cleanup = true;
|
||
}
|
||
else if (actions == _UA_CLEANUP_PHASE)
|
||
// We checked the handlers in the search phase; if one of them
|
||
// matched, actions would also have _UA_HANDLER_FRAME set.
|
||
;
|
||
else if (ar_filter > 0)
|
||
{
|
||
// Positive filter values are handlers.
|
||
catch_type = get_ttype_entry (&info, ar_filter);
|
||
|
||
// Null catch type is a catch-all handler; we can catch foreign
|
||
// exceptions with this. Otherwise we must match types.
|
||
if (! catch_type
|
||
|| (throw_type
|
||
&& get_adjusted_ptr (catch_type, throw_type,
|
||
&thrown_ptr)))
|
||
{
|
||
saw_handler = true;
|
||
break;
|
||
}
|
||
}
|
||
else
|
||
{
|
||
// Negative filter values are exception specifications.
|
||
// ??? How do foreign exceptions fit in? As far as I can
|
||
// see we can't match because there's no __cxa_exception
|
||
// object to stuff bits in for __cxa_call_unexpected to use.
|
||
// Allow them iff the exception spec is non-empty. I.e.
|
||
// a throw() specification results in __unexpected.
|
||
if ((throw_type
|
||
&& !(actions & _UA_FORCE_UNWIND)
|
||
&& !foreign_exception)
|
||
? ! check_exception_spec (&info, throw_type, thrown_ptr,
|
||
ar_filter)
|
||
: empty_exception_spec (&info, ar_filter))
|
||
{
|
||
saw_handler = true;
|
||
break;
|
||
}
|
||
}
|
||
|
||
if (ar_disp == 0)
|
||
break;
|
||
action_record = p + ar_disp;
|
||
}
|
||
|
||
if (saw_handler)
|
||
{
|
||
handler_switch_value = ar_filter;
|
||
found_type = found_handler;
|
||
}
|
||
else
|
||
found_type = (saw_cleanup ? found_cleanup : found_nothing);
|
||
}
|
||
|
||
do_something:
|
||
if (found_type == found_nothing)
|
||
CONTINUE_UNWINDING;
|
||
|
||
if (actions & _UA_SEARCH_PHASE)
|
||
{
|
||
if (found_type == found_cleanup)
|
||
CONTINUE_UNWINDING;
|
||
|
||
// For domestic exceptions, we cache data from phase 1 for phase 2.
|
||
if (!foreign_exception)
|
||
{
|
||
save_caught_exception(ue_header, context, thrown_ptr,
|
||
handler_switch_value, language_specific_data,
|
||
landing_pad, action_record);
|
||
}
|
||
return _URC_HANDLER_FOUND;
|
||
}
|
||
|
||
install_context:
|
||
|
||
// We can't use any of the cxa routines with foreign exceptions,
|
||
// because they all expect ue_header to be a struct __cxa_exception.
|
||
// So in that case, call terminate or unexpected directly.
|
||
if ((actions & _UA_FORCE_UNWIND)
|
||
|| foreign_exception)
|
||
{
|
||
if (found_type == found_terminate)
|
||
std::terminate ();
|
||
else if (handler_switch_value < 0)
|
||
{
|
||
#pragma GCC diagnostic push
|
||
#pragma GCC diagnostic ignored "-Wdeprecated-declarations"
|
||
__try
|
||
{ std::unexpected (); }
|
||
__catch(...)
|
||
{ std::terminate (); }
|
||
#pragma GCC diagnostic pop
|
||
}
|
||
}
|
||
else
|
||
{
|
||
if (found_type == found_terminate)
|
||
__cxa_call_terminate(ue_header);
|
||
|
||
// Cache the TType base value for __cxa_call_unexpected, as we won't
|
||
// have an _Unwind_Context then.
|
||
if (handler_switch_value < 0)
|
||
{
|
||
parse_lsda_header (context, language_specific_data, &info);
|
||
info.ttype_base = base_of_encoded_value (info.ttype_encoding,
|
||
context);
|
||
|
||
#ifdef __ARM_EABI_UNWINDER__
|
||
const _Unwind_Word* e;
|
||
_Unwind_Word n;
|
||
|
||
e = ((const _Unwind_Word*) info.TType) - handler_switch_value - 1;
|
||
// Count the number of rtti objects.
|
||
n = 0;
|
||
while (e[n] != 0)
|
||
n++;
|
||
|
||
// Count.
|
||
ue_header->barrier_cache.bitpattern[1] = n;
|
||
// Base
|
||
ue_header->barrier_cache.bitpattern[2] = info.ttype_base;
|
||
// Stride.
|
||
ue_header->barrier_cache.bitpattern[3] = 4;
|
||
// List head.
|
||
ue_header->barrier_cache.bitpattern[4] = (_Unwind_Word) e;
|
||
#else
|
||
xh->catchTemp = base_of_encoded_value (info.ttype_encoding, context);
|
||
#endif
|
||
}
|
||
}
|
||
|
||
/* For targets with pointers smaller than the word size, we must extend the
|
||
pointer, and this extension is target dependent. */
|
||
_Unwind_SetGR (context, __builtin_eh_return_data_regno (0),
|
||
__builtin_extend_pointer (ue_header));
|
||
_Unwind_SetGR (context, __builtin_eh_return_data_regno (1),
|
||
handler_switch_value);
|
||
_Unwind_SetIP (context, landing_pad);
|
||
#ifdef __ARM_EABI_UNWINDER__
|
||
if (found_type == found_cleanup)
|
||
__cxa_begin_cleanup(ue_header);
|
||
#endif
|
||
return _URC_INSTALL_CONTEXT;
|
||
}
|
||
|
||
/* The ARM EABI implementation of __cxa_call_unexpected is in a
|
||
different file so that the personality routine (PR) can be used
|
||
standalone. The generic routine shared datastructures with the PR
|
||
so it is most convenient to implement it here. */
|
||
#ifndef __ARM_EABI_UNWINDER__
|
||
extern "C" void
|
||
__cxa_call_unexpected (void *exc_obj_in)
|
||
{
|
||
_Unwind_Exception *exc_obj
|
||
= reinterpret_cast <_Unwind_Exception *>(exc_obj_in);
|
||
|
||
__cxa_begin_catch (exc_obj);
|
||
|
||
// This function is a handler for our exception argument. If we exit
|
||
// by throwing a different exception, we'll need the original cleaned up.
|
||
struct end_catch_protect
|
||
{
|
||
end_catch_protect() { }
|
||
~end_catch_protect() { __cxa_end_catch(); }
|
||
} end_catch_protect_obj;
|
||
|
||
lsda_header_info info;
|
||
__cxa_exception *xh = __get_exception_header_from_ue (exc_obj);
|
||
const unsigned char *xh_lsda;
|
||
_Unwind_Sword xh_switch_value;
|
||
std::terminate_handler xh_terminate_handler;
|
||
|
||
// If the unexpectedHandler rethrows the exception (e.g. to categorize it),
|
||
// it will clobber data about the current handler. So copy the data out now.
|
||
xh_lsda = xh->languageSpecificData;
|
||
xh_switch_value = xh->handlerSwitchValue;
|
||
xh_terminate_handler = xh->terminateHandler;
|
||
info.ttype_base = (_Unwind_Ptr) xh->catchTemp;
|
||
|
||
__try
|
||
{ __unexpected (xh->unexpectedHandler); }
|
||
__catch(...)
|
||
{
|
||
// Get the exception thrown from unexpected.
|
||
|
||
__cxa_eh_globals *globals = __cxa_get_globals_fast ();
|
||
__cxa_exception *new_xh = globals->caughtExceptions;
|
||
void *new_ptr = __get_object_from_ambiguous_exception (new_xh);
|
||
|
||
// We don't quite have enough stuff cached; re-parse the LSDA.
|
||
parse_lsda_header (0, xh_lsda, &info);
|
||
|
||
// If this new exception meets the exception spec, allow it.
|
||
if (check_exception_spec (&info, __get_exception_header_from_obj
|
||
(new_ptr)->exceptionType,
|
||
new_ptr, xh_switch_value))
|
||
{ __throw_exception_again; }
|
||
|
||
// If the exception spec allows std::bad_exception, throw that.
|
||
// We don't have a thrown object to compare against, but since
|
||
// bad_exception doesn't have virtual bases, that's OK; just pass 0.
|
||
#if __cpp_exceptions && __cpp_rtti
|
||
const std::type_info &bad_exc = typeid (std::bad_exception);
|
||
if (check_exception_spec (&info, &bad_exc, 0, xh_switch_value))
|
||
throw std::bad_exception();
|
||
#endif
|
||
|
||
// Otherwise, die.
|
||
__terminate (xh_terminate_handler);
|
||
}
|
||
}
|
||
#endif
|
||
|
||
#if defined (__SEH__) && !defined (__USING_SJLJ_EXCEPTIONS__)
|
||
extern "C"
|
||
EXCEPTION_DISPOSITION
|
||
__gxx_personality_seh0 (PEXCEPTION_RECORD ms_exc, void *this_frame,
|
||
PCONTEXT ms_orig_context, PDISPATCHER_CONTEXT ms_disp)
|
||
{
|
||
return _GCC_specific_handler (ms_exc, this_frame, ms_orig_context,
|
||
ms_disp, __gxx_personality_imp);
|
||
}
|
||
#endif /* SEH */
|
||
|
||
} // namespace __cxxabiv1
|