e61abf8398
1997-03-19 01:40 Ulrich Drepper <drepper@cygnus.com> * sysdeps/unix/sysv/sco3.2.4/Dist: New file. * sysdeps/unix/sysv/sysv4/Dist: Add __getpgid.c and __setpgid.c. * sysdeps/unix/bsd/Dist: Add bsdstat.h, setrgid.c, and setruid.c. * sysdeps/unix/sysv/Dist: Add direct.h. * sysdeps/unix/sysv/linux/Dist: Add netinet/tcp.h. * Make-dist ($(tardir).tar): Prefer writing temporary file to $TMPDIR is available. The default is /tmp. * sysdeps/generic/ip.h: Move to... * sysdeps/generic/netinet/ip.h: ...here. * Makefile (tests): Quote $(CC) argument to isomac program. Patch by H.J. Lu <hjl@gnu.ai.mit.edu>. * sysdeps/i386/setjmp.S (__setjmp): Fix fatal bug where 0 argument is placed in wrong place on the stack. Reported by Marc Lehmann <mlehmann@hildesheim.sgh-net.de>. * sysdeps/tst-setjmp.c: Add new test for above problem. * sysdeps/libm-i387/e_pow.S: Compute PIC addres early. * sysdeps/libm-i387/e_powf.S: Likewise. * sysdeps/libm-i387/e_powl.S: Likewise. 1997-03-18 23:18 Ulrich Drepper <drepper@cygnus.com> * time/offtime.c (__offtime): Change type of `yg' to long int. Reported by a sun <asun@zoology.washington.edu>. 1997-03-18 23:08 a sun <asun@zoology.washington.edu> * sysdeps/unix/sysv/linux/net/if_ppp.h (PPP_VERSION): Define to 2.2.0 to prevent version mismatch. 1997-03-17 19:26 Andreas Jaeger <aj@arthur.pfalz.de> * stdio-common/printf_fphex.c (MIN): Only define MIN if not already defined. 1997-03-14 23:34 Geoff Keating <geoffk@ozemail.com.au> * sysdeps/unix/sysv/linux/powerpc/termbits.h: Leave ioctl numbers in ioctls.h. * elf/rtld.c (_dl_start): Call elf_machine_runtime_setup when the loader first relocates itself. * sysdeps/powerpc/elf/start.c (__start1): Fix bug for static objects. * sysdeps/powerpc/dl-machine.h (elf_machine_rela): Fix bugs in jump slot relocation. Prefer relative branches (some PowerPC chips don't predict absolute branches). (elf_machine_runtime_setup): Simplify and correct expressions. (RTLD_START): Fix bug changing _dl_starting_up. * sysdeps/unix/sysv/linux/powerpc/dl-sysdep.c: Added. Deal with strange Linux/PPC padding of initial stack. 1997-03-11 04:14 Geoff Keating <geoffk@ozemail.com.au> * sysdeps/unix/sysv/linux/powerpc/termbits.h: Increase NCCS to 39, for future expansion. * sysdeps/unix/sysv/linux/powerpc/sys/kernel_termios.h: Added. * sysdeps/powerpc/dl-machine.h (elf_machine_rela): Explain why it can't have a switch statement. * sysdeps/powerpc/elf/start.c (__start1): Explain why it can't be static. * sysdeps/powerpc/elf/start.c (_start): Use .previous to avoid confusing gcc's idea of the current section. * sysdeps/powerpc/dl-machine.h (ELF_MACHINE_RUNTIME_TRAMPOLINE, RTLD_START): Likewise. 1997-03-08 09:10 Geoff Keating <geoffk@ozemail.com.au> * sysdeps/powerpc/dl-machine.h (elf_machine_rela, elf_machine_runtime_setup): Flush data & instruction caches when necessary, for 603/604 support. Add better support for large PLTs. (elf_machine_rela): Remove relocations that wouldn't work if anyone ever used them. Use memcpy for copy reloc, it'll be safe. Never target branch relocations at a PLT entry. * sysdeps/powerpc/bsd-setjmp.S: Make jump to PLT entry if we are generating PIC. * sysdeps/powerpc/bsd-_setjmp.S: Likewise. * sysdeps/powerpc/setjmp.S: Likewise. * sysdeps/unix/sysv/linux/powerpc/clone.S: Likewise. * sysdeps/unix/sysv/linux/powerpc/socket.S: Likewise. * sysdeps/unix/sysv/linux/powerpc/syscall.S: Likewise. * sysdeps/unix/sysv/linux/powerpc/sysdep.h: Likewise. * sysdeps/powerpc/elf/start.c: Clean up. * sysdeps/powerpc/__longjmp.S: Return 'value' as result from setjmp call. * sysdeps/unix/sysv/linux/powerpc/statbuf.h: New file. 1997-03-09 12:36 H.J. Lu <hjl@gnu.ai.mit.edu> * Make-dist (srcs): Add $(test-srcs). * MakeTAGS (all-sources): Likewise. * Makerules (depfiles, common-mostlyclean): Likewise. * Rules (tests): Likewise. 1997-03-18 05:28 Roland McGrath <roland@frob.com> * elf/dl-reloc.c (RESOLVE): Don't try to resolve ocal symbols. 1997-03-17 21:39 Philip Blundell <phil@london.uk.eu.org> * nis/nss_nis/nis-service.c (_nss_nis_getservbyname_r): Allow protocol=NULL to match any protocol rather than returning an error. 1997-03-17 19:00 Philip Blundell <phil@london.uk.eu.org> * nss/nss_files/files-service.c (servbyname): Match any protocol if proto==NULL. 1997-03-18 05:17 Ulrich Drepper <drepper@cygnus.com> * sysdeps/unix/sysv/linux/alpha/fcntlbits.h: Don't define O_NORW. * sysdeps/unix/sysv/linux/fcntlbits.h: Likewise. Proposed by Thomas Bushnell, n/BSG. 1997-03-18 07:53 H.J. Lu <hjl@gnu.ai.mit.edu> * sysdeps/generic/setenv.c (setenv): Don't copy name when we reuse the buffer for replacement. 1997-03-16 19:30 H.J. Lu <hjl@gnu.ai.mit.edu> * sysdeps/unix/sysv/linux/syscalls.list: Add sys_fstat, sys_lstat and sys_stat. 1997-03-17 12:43 Thorsten Kukuk <kukuk@vt.uni-paderborn.de> Add NIS+ functions * shlib-versions: Add libnss_nisplus. * nis/Makefile: Add NIS+ source files. * nis/nis_call.c: New file. * nis/nis_clone.c: New file. * nis/nis_error.c: New file. * nis/nis_file.c: New file. * nis/nis_free.c: New file. * nis/nis_intern.c: New file. * nis/nis_intern.h: New file. * nis/nis_local_names.c: New file. * nis/nis_names.c: New file. * nis/nis_print.c: New file. * nis/nis_server.c: New file. * nis/nis_subr.c: New file. * nis/nis_table.c: New file. * nis/nis_xdr.c: New file. * nis/nss-nisplus.h: New file. * nis/nss_nisplus/nisplus-alias.c: New file. * nis/nss_nisplus/nisplus-ethers.c: New file. * nis/nss_nisplus/nisplus-grp.c: New file. * nis/nss_nisplus/nisplus-hosts.c: New file. * nis/nss_nisplus/nisplus-netgrp.c: New file. * nis/nss_nisplus/nisplus-network.c: New file. * nis/nss_nisplus/nisplus-proto.c: New file. * nis/nss_nisplus/nisplus-publickey.c: New file. * nis/nss_nisplus/nisplus-pwd.c: New file. * nis/nss_nisplus/nisplus-rpc.c: New file. * nis/nss_nisplus/nisplus-service.c: New file. * nis/nss_nisplus/nisplus-spwd.c: New file. * nis/rpcsvc/nis.h: New file. * nis/rpcsvc/nis.x: New file. * nis/rpcsvc/nis_object.x: New file. * nis/rpcsvc/nis_tags.h: New file. * nis/rpcsvc/nislib.h: New file. 1997-03-17 12:52 Thomas Bushnell, n/BSG <thomas@gnu.ai.mit.edu> * mach/devstream.c (output/write_some): Don't try and write more than IO_INBAND_MAX in a single call to device_write_inband. * sysdeps/libm-ieee754/w_atan2.c: Don't ignore exception if library * sysdeps/libm-ieee754/w_atan2f.c: Likewise. * sysdeps/libm-ieee754/w_atan2l.c: Likewise. * sysdeps/unix/sysv/linux/sys/mman.h (msync): Add description for * stdlib/atoll.c: Undefine atoll, not atol.
564 lines
18 KiB
C
564 lines
18 KiB
C
/* Machine-dependent ELF dynamic relocation inline functions. PowerPC version.
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Copyright (C) 1995, 1996, 1997 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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The GNU C Library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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The GNU C Library 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 GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with the GNU C Library; see the file COPYING.LIB. If not,
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write to the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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#define ELF_MACHINE_NAME "powerpc"
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#include <assert.h>
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#include <string.h>
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#include <link.h>
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/* stuff for the PLT */
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#define PLT_INITIAL_ENTRY_WORDS 18
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#define PLT_LONGBRANCH_ENTRY_WORDS 10
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#define PLT_DOUBLE_SIZE (1<<13)
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#define PLT_ENTRY_START_WORDS(entry_number) \
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(PLT_INITIAL_ENTRY_WORDS + (entry_number)*2 + \
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((entry_number) > PLT_DOUBLE_SIZE ? \
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((entry_number) - PLT_DOUBLE_SIZE)*2 : \
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0))
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#define PLT_DATA_START_WORDS(num_entries) PLT_ENTRY_START_WORDS(num_entries)
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#define OPCODE_ADDI(rd,ra,simm) \
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(0x38000000 | (rd) << 21 | (ra) << 16 | (simm) & 0xffff)
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#define OPCODE_ADDIS(rd,ra,simm) \
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(0x3c000000 | (rd) << 21 | (ra) << 16 | (simm) & 0xffff)
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#define OPCODE_ADD(rd,ra,rb) \
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(0x7c000214 | (rd) << 21 | (ra) << 16 | (rb) << 11)
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#define OPCODE_B(target) (0x48000000 | (target) & 0x03fffffc)
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#define OPCODE_BA(target) (0x48000002 | (target) & 0x03fffffc)
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#define OPCODE_BCTR() 0x4e800420
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#define OPCODE_LWZ(rd,d,ra) \
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(0x80000000 | (rd) << 21 | (ra) << 16 | (d) & 0xffff)
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#define OPCODE_MTCTR(rd) (0x7C0903A6 | (rd) << 21)
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#define OPCODE_RLWINM(ra,rs,sh,mb,me) \
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(0x54000000 | (rs) << 21 | (ra) << 16 | (sh) << 11 | (mb) << 6 | (me) << 1)
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#define OPCODE_LI(rd,simm) OPCODE_ADDI(rd,0,simm)
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#define OPCODE_SLWI(ra,rs,sh) OPCODE_RLWINM(ra,rs,sh,0,31-sh)
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#define PPC_DCBST(where) asm __volatile__ ("dcbst 0,%0" : : "r"(where))
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+#define PPC_SYNC asm __volatile__ ("sync")
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+#define PPC_ISYNC asm __volatile__ ("sync; isync")
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+#define PPC_ICBI(where) asm __volatile__ ("icbi 0,%0" : : "r"(where))
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/* Use this when you've modified some code, but it won't be in the
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instruction fetch queue (or when it doesn't matter if it is). */
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#define MODIFIED_CODE_NOQUEUE(where) \
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do { PPC_DCBST(where); PPC_SYNC; PPC_ICBI(where); } while (0)
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/* Use this when it might be in the instruction queue. */
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#define MODIFIED_CODE(where) \
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do { PPC_DCBST(where); PPC_SYNC; PPC_ICBI(where); PPC_ISYNC; } while (0)
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/* Return nonzero iff E_MACHINE is compatible with the running host. */
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static inline int
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elf_machine_matches_host (Elf32_Half e_machine)
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{
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return e_machine == EM_PPC;
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}
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/* Return the link-time address of _DYNAMIC, stored as
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the first value in the GOT. */
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static inline Elf32_Addr
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elf_machine_dynamic (void)
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{
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Elf32_Addr *got;
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asm (" bl _GLOBAL_OFFSET_TABLE_-4@local"
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: "=l"(got));
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return *got;
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}
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/* Return the run-time load address of the shared object. */
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static inline Elf32_Addr
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elf_machine_load_address (void)
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{
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unsigned *got;
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unsigned *branchaddr;
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/* This is much harder than you'd expect. Possibly I'm missing something.
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The 'obvious' way:
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Apparently, "bcl 20,31,$+4" is what should be used to load LR
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with the address of the next instruction.
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I think this is so that machines that do bl/blr pairing don't
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get confused.
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asm ("bcl 20,31,0f ;"
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"0: mflr 0 ;"
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"lis %0,0b@ha;"
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"addi %0,%0,0b@l;"
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"subf %0,%0,0"
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: "=b" (addr) : : "r0", "lr");
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doesn't work, because the linker doesn't have to (and in fact doesn't)
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update the @ha and @l references; the loader (which runs after this
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code) will do that.
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Instead, we use the following trick:
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The linker puts the _link-time_ address of _DYNAMIC at the first
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word in the GOT. We could branch to that address, if we wanted,
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by using an @local reloc; the linker works this out, so it's safe
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to use now. We can't, of course, actually branch there, because
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we'd cause an illegal instruction exception; so we need to compute
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the address ourselves. That gives us the following code: */
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/* Get address of the 'b _DYNAMIC@local'... */
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asm ("bl 0f ;"
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"b _DYNAMIC@local;"
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"0:"
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: "=l"(branchaddr));
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/* ... and the address of the GOT. */
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asm (" bl _GLOBAL_OFFSET_TABLE_-4@local"
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: "=l"(got));
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/* So now work out the difference between where the branch actually points,
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and the offset of that location in memory from the start of the file. */
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return (Elf32_Addr)branchaddr - *got +
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(*branchaddr & 0x3fffffc |
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(int)(*branchaddr << 6 & 0x80000000) >> 6);
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}
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#define ELF_MACHINE_BEFORE_RTLD_RELOC(dynamic_info) /* nothing */
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/* Perform the relocation specified by RELOC and SYM (which is fully resolved).
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LOADADDR is the load address of the object; INFO is an array indexed
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by DT_* of the .dynamic section info. */
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#ifdef RESOLVE
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static inline void
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elf_machine_rela (struct link_map *map, const Elf32_Rela *reloc,
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const Elf32_Sym *sym, const struct r_found_version *version)
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{
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Elf32_Addr *const reloc_addr = (Elf32_Addr *)(map->l_addr + reloc->r_offset);
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Elf32_Word loadbase, finaladdr;
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const int rinfo = ELF32_R_TYPE (reloc->r_info);
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if (rinfo == R_PPC_NONE)
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return;
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assert (sym != NULL);
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if (ELF32_ST_TYPE (sym->st_info) == STT_SECTION ||
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rinfo == R_PPC_RELATIVE)
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{
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/* Has already been relocated. */
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loadbase = map->l_addr;
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finaladdr = loadbase + reloc->r_addend;
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}
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else
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{
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int flags;
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/* We never want to use a PLT entry as the destination of a
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reloc, when what is being relocated is a branch. This is
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partly for efficiency, but mostly so we avoid loops. */
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if (rinfo == R_PPC_REL24 ||
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rinfo == R_PPC_ADDR24 ||
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rinfo == R_PPC_JMP_SLOT)
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flags = DL_LOOKUP_NOPLT;
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else if (rinfo == R_PPC_COPY)
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flags = DL_LOOKUP_NOEXEC;
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else
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flags = 0;
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loadbase = (Elf32_Word) (char *) (RESOLVE (&sym, version, flags));
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if (sym == NULL)
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{
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/* Weak symbol that wasn't actually defined anywhere. */
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assert(loadbase == 0);
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finaladdr = reloc->r_addend;
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}
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else
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finaladdr = (loadbase + (Elf32_Word) (char *) sym->st_value +
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reloc->r_addend);
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}
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/* This is an if/else if chain because GCC 2.7.2.[012] turns case
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statements into non-PIC table lookups. When a later version
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comes out that fixes this, this should be changed. */
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if (rinfo == R_PPC_ADDR16_LO)
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{
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*(Elf32_Half*) reloc_addr = finaladdr;
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}
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else if (rinfo == R_PPC_ADDR16_HI)
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{
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*(Elf32_Half*) reloc_addr = finaladdr >> 16;
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}
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else if (rinfo == R_PPC_ADDR16_HA)
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{
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*(Elf32_Half*) reloc_addr = finaladdr + 0x8000 >> 16;
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}
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else if (rinfo == R_PPC_REL24)
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{
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Elf32_Sword delta = finaladdr - (Elf32_Word) (char *) reloc_addr;
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assert (delta << 6 >> 6 == delta);
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*reloc_addr = *reloc_addr & 0xfc000003 | delta & 0x3fffffc;
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}
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else if (rinfo == R_PPC_UADDR32 ||
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rinfo == R_PPC_GLOB_DAT ||
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rinfo == R_PPC_ADDR32 ||
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rinfo == R_PPC_RELATIVE)
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{
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*reloc_addr = finaladdr;
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}
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else if (rinfo == R_PPC_ADDR24)
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{
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assert (finaladdr << 6 >> 6 == finaladdr);
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*reloc_addr = *reloc_addr & 0xfc000003 | finaladdr & 0x3fffffc;
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}
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else if (rinfo == R_PPC_COPY)
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{
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/* Memcpy is safe to use here, because ld.so doesn't have any
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COPY relocs (it's self-contained). */
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memcpy (reloc_addr, (char *) finaladdr, sym->st_size);
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}
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else if (rinfo == R_PPC_REL32)
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{
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*reloc_addr = finaladdr - (Elf32_Word) (char *) reloc_addr;
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}
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else if (rinfo == R_PPC_JMP_SLOT)
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{
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Elf32_Sword delta = finaladdr - (Elf32_Word) (char *) reloc_addr;
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if (delta << 6 >> 6 == delta)
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*reloc_addr = OPCODE_B(delta);
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else if (finaladdr <= 0x01fffffc || finaladdr >= 0xfe000000)
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*reloc_addr = OPCODE_BA(finaladdr);
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else
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{
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Elf32_Word *plt = (Elf32_Word *)((char *)map->l_addr +
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map->l_info[DT_PLTGOT]->d_un.d_val);
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Elf32_Word index = (reloc_addr - plt - PLT_INITIAL_ENTRY_WORDS)/2;
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Elf32_Word offset = index * 2 + PLT_INITIAL_ENTRY_WORDS;
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if (index >= PLT_DOUBLE_SIZE)
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{
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/* Slots greater than or equal to 2^13 have 4 words
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available instead of two. */
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plt[offset ] = OPCODE_LI (11,finaladdr);
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plt[offset+1] = OPCODE_ADDIS (11,11,finaladdr + 0x8000 >> 16);
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plt[offset+2] = OPCODE_MTCTR (11);
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plt[offset+3] = OPCODE_BCTR ();
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}
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else
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{
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Elf32_Word num_plt_entries;
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Elf32_Word rel_offset_words;
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num_plt_entries = (map->l_info[DT_PLTRELSZ]->d_un.d_val
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/ sizeof(Elf32_Rela));
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rel_offset_words = PLT_DATA_START_WORDS (num_plt_entries);
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plt[offset ] = OPCODE_LI (11,index * 4);
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plt[offset+1] = OPCODE_B (-(4 * (offset + 1
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- PLT_LONGBRANCH_ENTRY_WORDS)));
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plt[index + rel_offset_words] = finaladdr;
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}
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}
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MODIFIED_CODE(reloc_addr);
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}
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else
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assert (! "unexpected dynamic reloc type");
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if (rinfo == R_PPC_ADDR16_LO ||
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rinfo == R_PPC_ADDR16_HI ||
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rinfo == R_PPC_ADDR16_HA ||
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rinfo == R_PPC_REL24 ||
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rinfo == R_PPC_ADDR24)
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MODIFIED_CODE_NOQUEUE (reloc_addr);
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}
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#define ELF_MACHINE_NO_REL 1
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#endif
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/* Nonzero iff TYPE describes relocation of a PLT entry, so
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PLT entries should not be allowed to define the value. */
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#define elf_machine_pltrel_p(type) ((type) == R_PPC_JMP_SLOT)
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/* Set up the loaded object described by L so its unrelocated PLT
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entries will jump to the on-demand fixup code in dl-runtime.c. */
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static inline void
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elf_machine_runtime_setup (struct link_map *map, int lazy)
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{
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if (map->l_info[DT_JMPREL])
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{
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|
int i;
|
|
/* Fill in the PLT. Its initial contents are directed to a
|
|
function earlier in the PLT which arranges for the dynamic
|
|
linker to be called back. */
|
|
Elf32_Word *plt = (Elf32_Word *) ((char *) map->l_addr
|
|
+ map->l_info[DT_PLTGOT]->d_un.d_val);
|
|
Elf32_Word num_plt_entries = (map->l_info[DT_PLTRELSZ]->d_un.d_val
|
|
/ sizeof (Elf32_Rela));
|
|
Elf32_Word rel_offset_words = PLT_DATA_START_WORDS (num_plt_entries);
|
|
extern void _dl_runtime_resolve (void);
|
|
Elf32_Word size_modified;
|
|
|
|
if (lazy)
|
|
for (i = 0; i < num_plt_entries; i++)
|
|
{
|
|
Elf32_Word offset = PLT_ENTRY_START_WORDS(i);
|
|
|
|
if (i >= PLT_DOUBLE_SIZE)
|
|
{
|
|
plt[offset ] = OPCODE_LI (11, i * 4);
|
|
plt[offset+1] = OPCODE_ADDIS (11, 11, i * 4 + 0x8000 >> 16);
|
|
plt[offset+2] = OPCODE_B (-(4 * (offset + 2)));
|
|
}
|
|
else
|
|
{
|
|
plt[offset ] = OPCODE_LI (11, i * 4);
|
|
plt[offset+1] = OPCODE_B(-(4 * (offset + 1)));
|
|
}
|
|
|
|
/* Multiply index of entry, by 0xC. */
|
|
plt[0] = OPCODE_SLWI (12, 11, 1);
|
|
plt[1] = OPCODE_ADD (11, 12, 11);
|
|
if ((Elf32_Word) (char *) _dl_runtime_resolve <= 0x01fffffc
|
|
|| (Elf32_Word) (char *) _dl_runtime_resolve >= 0xfe000000)
|
|
{
|
|
plt[2] = OPCODE_LI (12, (Elf32_Word) (char *) map);
|
|
plt[3] = OPCODE_ADDIS (12, 12,
|
|
(Elf32_Word) (char *) map + 0x8000 >> 16);
|
|
plt[4] = OPCODE_BA ((Elf32_Word) (char *) _dl_runtime_resolve);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
plt[2] = OPCODE_LI (12, (Elf32_Word) (char *) _dl_runtime_resolve);
|
|
plt[3] = OPCODE_ADDIS(12, 12, 0x8000 +
|
|
((Elf32_Word) (char *) _dl_runtime_resolve
|
|
>> 16));
|
|
plt[4] = OPCODE_MTCTR (12);
|
|
plt[5] = OPCODE_LI (12, (Elf32_Word) (char *) map);
|
|
plt[6] = OPCODE_ADDIS (12, 12, ((Elf32_Word) (char *) map
|
|
+ 0x8000 >> 16));
|
|
plt[7] = OPCODE_BCTR ();
|
|
}
|
|
plt[PLT_LONGBRANCH_ENTRY_WORDS] =
|
|
OPCODE_ADDIS (11, 11, (Elf32_Word) (char*) (plt + rel_offset_words)
|
|
+ 0x8000 >> 16);
|
|
plt[PLT_LONGBRANCH_ENTRY_WORDS+1] =
|
|
OPCODE_LWZ(11,(Elf32_Word)(char*)(plt+rel_offset_words),11);
|
|
plt[PLT_LONGBRANCH_ENTRY_WORDS+2] = OPCODE_MTCTR (11);
|
|
plt[PLT_LONGBRANCH_ENTRY_WORDS+3] = OPCODE_BCTR ();
|
|
|
|
size_modified = lazy ? rel_offset_words : PLT_INITIAL_ENTRY_WORDS;
|
|
/* Now we need to keep the caches in sync. */
|
|
for (i = 0; i < size_modified; i+=8)
|
|
PPC_DCBST (plt + i);
|
|
PPC_SYNC;
|
|
for (i = 0; i < size_modified; i+=8)
|
|
PPC_ICBI (plt + i);
|
|
PPC_ISYNC;
|
|
}
|
|
}
|
|
|
|
static inline void
|
|
elf_machine_lazy_rel (struct link_map *map, const Elf32_Rela *reloc)
|
|
{
|
|
assert (ELF32_R_TYPE (reloc->r_info) == R_PPC_JMP_SLOT);
|
|
/* elf_machine_runtime_setup handles this. */
|
|
}
|
|
|
|
/* The PLT uses Elf32_Rela relocs. */
|
|
#define elf_machine_relplt elf_machine_rela
|
|
|
|
/* This code is used in dl-runtime.c to call the `fixup' function
|
|
and then redirect to the address it returns. It is called
|
|
from code built in the PLT by elf_machine_runtime_setup. */
|
|
#define ELF_MACHINE_RUNTIME_TRAMPOLINE asm ("\
|
|
.section \".text\"
|
|
.align 2
|
|
.globl _dl_runtime_resolve
|
|
.type _dl_runtime_resolve,@function
|
|
_dl_runtime_resolve:
|
|
# We need to save the registers used to pass parameters.
|
|
# We build a stack frame to put them in.
|
|
stwu 1,-48(1)
|
|
mflr 0
|
|
stw 3,16(1)
|
|
stw 4,20(1)
|
|
stw 0,52(1)
|
|
stw 5,24(1)
|
|
# We also need to save some of the condition register fields.
|
|
mfcr 0
|
|
stw 6,28(1)
|
|
stw 7,32(1)
|
|
stw 8,36(1)
|
|
stw 9,40(1)
|
|
stw 10,44(1)
|
|
stw 0,12(1)
|
|
# The code that calls this has put parameters for `fixup' in r12 and r11.
|
|
mr 3,12
|
|
mr 4,11
|
|
bl fixup
|
|
# 'fixup' returns the address we want to branch to.
|
|
mtctr 3
|
|
# Put the registers back...
|
|
lwz 0,52(1)
|
|
lwz 10,44(1)
|
|
lwz 9,40(1)
|
|
mtlr 0
|
|
lwz 0,12(1)
|
|
lwz 8,36(1)
|
|
lwz 7,32(1)
|
|
lwz 6,28(1)
|
|
mtcrf 0xFF,0
|
|
lwz 5,24(1)
|
|
lwz 4,20(1)
|
|
lwz 3,16(1)
|
|
# ...unwind the stack frame, and jump to the PLT entry we updated.
|
|
addi 1,1,48
|
|
bctr
|
|
0:
|
|
.size _dl_runtime_resolve,0b-_dl_runtime_resolve
|
|
# undo '.section text'.
|
|
.previous
|
|
");
|
|
|
|
/* Initial entry point code for the dynamic linker.
|
|
The C function `_dl_start' is the real entry point;
|
|
its return value is the user program's entry point. */
|
|
#define RTLD_START \
|
|
asm ("\
|
|
.text
|
|
.align 2
|
|
.globl _start
|
|
.type _start,@function
|
|
_start:
|
|
# We start with the following on the stack, from top:
|
|
# argc (4 bytes)
|
|
# arguments for program (terminated by NULL)
|
|
# environment variables (terminated by NULL)
|
|
# arguments for the program loader
|
|
# FIXME: perhaps this should do the same trick as elf/start.c?
|
|
|
|
# Call _dl_start with one parameter pointing at argc
|
|
mr 3,1
|
|
# (we have to frob the stack pointer a bit to allow room for
|
|
# _dl_start to save the link register)
|
|
li 4,0
|
|
addi 1,1,-16
|
|
stw 4,0(1)
|
|
bl _dl_start@local
|
|
|
|
# Now, we do our main work of calling initialisation procedures.
|
|
# The ELF ABI doesn't say anything about parameters for these,
|
|
# so we just pass argc, argv, and the environment.
|
|
# Changing these is strongly discouraged (not least because argc is
|
|
# passed by value!).
|
|
|
|
# put our GOT pointer in r31
|
|
bl _GLOBAL_OFFSET_TABLE_-4@local
|
|
mflr 31
|
|
# the address of _start in r30
|
|
mr 30,3
|
|
# &_dl_argc in 29, &_dl_argv in 27, and _dl_default_scope in 28
|
|
lwz 28,_dl_default_scope@got(31)
|
|
lwz 29,_dl_argc@got(31)
|
|
lwz 27,_dl_argv@got(31)
|
|
0:
|
|
# call initfunc = _dl_init_next(_dl_default_scope[2])
|
|
lwz 3,8(28)
|
|
bl _dl_init_next@plt
|
|
# if initfunc is NULL, we exit the loop
|
|
mr. 0,3
|
|
beq 1f
|
|
# call initfunc(_dl_argc, _dl_argv, _dl_argv+_dl_argc+1)
|
|
mtlr 0
|
|
lwz 3,0(29)
|
|
lwz 4,0(27)
|
|
slwi 5,3,2
|
|
add 5,4,5
|
|
addi 5,5,4
|
|
blrl
|
|
# and loop.
|
|
b 0b
|
|
1:
|
|
# Now, to conform to the ELF ABI, we have to:
|
|
# pass argv (actually _dl_argv) in r4
|
|
lwz 4,0(27)
|
|
# pass argc (actually _dl_argc) in r3
|
|
lwz 3,0(29)
|
|
# pass envp (actually _dl_argv+_dl_argc+1) in r5
|
|
slwi 5,3,2
|
|
add 5,4,5
|
|
addi 5,5,4
|
|
# pass the auxilary vector in r6. This is passed just after _envp.
|
|
addi 6,5,-4
|
|
2: lwzu 0,4(6)
|
|
cmpwi 1,0,0
|
|
bne 2b
|
|
addi 6,6,4
|
|
# pass a termination function pointer (in this case _dl_fini) in r7
|
|
lwz 7,_dl_fini@got(31)
|
|
# now, call the start function in r30...
|
|
mtctr 30
|
|
# pass the stack pointer in r1 (so far so good), pointing to a NULL value
|
|
# (this lets our startup code distinguish between a program linked statically,
|
|
# which linux will call with argc on top of the stack which will hopefully
|
|
# never be zero, and a dynamically linked program which will always have
|
|
# a NULL on the top of the stack).
|
|
# Take the opportunity to clear LR, so anyone who accidentally returns
|
|
# from _start gets SEGV.
|
|
li 0,0
|
|
stw 0,0(1)
|
|
mtlr 0
|
|
# and also clear _dl_starting_up
|
|
lwz 26,_dl_starting_up@got(31)
|
|
stw 0,0(26)
|
|
# go do it!
|
|
bctr
|
|
0:
|
|
.size _start,0b-_start
|
|
# undo '.section text'.
|
|
.previous
|
|
");
|
|
|
|
#define ELF_PREFERRED_ADDRESS_DATA \
|
|
static ElfW(Addr) _dl_preferred_address = 0;
|
|
|
|
#define ELF_PREFERRED_ADDRESS(loader, maplength, mapstartpref) \
|
|
( { \
|
|
ElfW(Addr) prefd; \
|
|
if (mapstartpref != 0 && _dl_preferred_address == 0) \
|
|
_dl_preferred_address = mapstartpref; \
|
|
if (mapstartpref != 0) \
|
|
prefd = mapstartpref; \
|
|
else if (_dl_preferred_address < maplength + 0x50000) \
|
|
prefd = 0; \
|
|
else \
|
|
prefd = _dl_preferred_address = \
|
|
((_dl_preferred_address - maplength - 0x10000) \
|
|
& ~(_dl_pagesize - 1)); \
|
|
prefd; \
|
|
} )
|
|
|
|
#define ELF_FIXED_ADDRESS(loader, mapstart) \
|
|
( { \
|
|
if (mapstart != 0 && _dl_preferred_address < mapstart) \
|
|
_dl_preferred_address = mapstart; \
|
|
} )
|
|
|
|
#define ELF_FIXUP_RETURNS_ADDRESS 1
|