mirror of
https://github.com/upx/upx.git
synced 2024-11-23 12:49:56 +00:00
PT_MIPS_ABIFLAGS, PT_MIPS_REGINFO
Also re-org of PT_HOTE and other non-PT_LOAD Elf32_Phdrs modified: p_lx_elf.cpp modified: p_lx_elf.h
This commit is contained in:
parent
3286f7c5ba
commit
99afc50ebf
155
src/p_lx_elf.cpp
155
src/p_lx_elf.cpp
@ -973,6 +973,14 @@ PackLinuxElf32::~PackLinuxElf32()
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{
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}
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void PackLinuxElf32::add_phdrx(Elf32_Phdr const *phdr)
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{
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if (END_PHDRX <= n_phdrx) {
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throwCantPack("too many Phdr %u", (unsigned)(phdr - phdri));
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}
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phdrx[n_phdrx++] = phdr;
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}
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PackLinuxElf64::PackLinuxElf64(InputFile *f)
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: super(f), phdri(nullptr), shdri(nullptr),
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gnu_stack(nullptr), n_phdrx(0), sz_phdrx(0),
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@ -995,6 +1003,14 @@ PackLinuxElf64::~PackLinuxElf64()
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{
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}
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void PackLinuxElf64::add_phdrx(Elf64_Phdr const *phdr)
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{
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if (END_PHDRX <= n_phdrx) {
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throwCantPack("too many Phdr %u", (unsigned)(phdr - phdri));
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}
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phdrx[n_phdrx++] = phdr;
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}
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// FIXME: should be templated with PackLinuxElf32help1
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void
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PackLinuxElf64::PackLinuxElf64help1(InputFile *f)
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@ -2496,31 +2512,20 @@ PackLinuxElf32::canPackOSABI(Elf32_Ehdr const *ehdr)
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hatch_off = ~3u & (3+ get_te32(&phdr->p_memsz));
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}
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if (PT_GNU_STACK32 == p_type) {
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if (END_PHDRX <= n_phdrx) {
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throwCantPack("too many Phdr %u", (unsigned)(phdr - phdri));
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}
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phdrx[n_phdrx++] = phdr;
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add_phdrx(phdr);
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}
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if (EM_MIPS == e_machine
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&& (Elf32_Phdr::PT_MIPS_ABIFLAGS == p_type
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|| Elf32_Phdr::PT_MIPS_REGINFO == p_type)
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) {
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if (END_PHDRX <= n_phdrx) {
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throwCantPack("too many Phdr %u", (unsigned)(phdr - phdri));
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}
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phdrx[n_phdrx++] = phdr;
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add_phdrx(phdr);
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unsigned mask = -1+ get_te32(&phdr->p_align);
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sz_phdrx = ~mask & (mask + sz_phdrx);
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sz_phdrx += get_te32(&phdr->p_memsz);
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}
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if (PT_NOTE32 == p_type) {
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unsigned const x = get_te32(&phdr->p_memsz);
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if ( sizeof(elfout.notes) < x // beware overflow of note_size
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|| (sizeof(elfout.notes) < (note_size += x)) ) {
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throwCantPack("PT_NOTEs too big; try '--force-execve'");
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return false;
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}
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add_phdrx(phdr);
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if (osabi_note && Elf32_Ehdr::ELFOSABI_NONE==osabi0) { // Still seems to be generic.
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struct {
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struct Elf32_Nhdr nhdr;
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@ -2969,21 +2974,6 @@ bad:
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throwCantPack(buf);
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goto abandon;
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}
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if (!opt->o_unix.android_shlib
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&& !saved_opt_android_shlib
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) {
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phdr = phdri;
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for (unsigned j= 0; j < e_phnum; ++phdr, ++j) {
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unsigned const vaddr = get_te32(&phdr->p_vaddr);
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if (PT_NOTE32 == get_te32(&phdr->p_type)
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&& xct_va < vaddr) {
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char buf[40]; snprintf(buf, sizeof(buf),
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"PT_NOTE %#x above stub", vaddr);
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throwCantPack(buf);
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goto abandon;
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}
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}
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}
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xct_off = elf_get_offset_from_address(xct_va);
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if (opt->debug.debug_level) {
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fprintf(stderr, "shlib canPack: xct_va=%#lx xct_off=%#lx\n",
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@ -3395,21 +3385,6 @@ tribool PackLinuxElf64::canPack()
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throwCantPack(buf);
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goto abandon;
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}
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if (!opt->o_unix.android_shlib
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&& !saved_opt_android_shlib
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) {
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phdr = phdri;
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for (unsigned j= 0; j < e_phnum; ++phdr, ++j) {
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upx_uint64_t const vaddr = get_te64(&phdr->p_vaddr);
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if (PT_NOTE64 == get_te32(&phdr->p_type)
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&& xct_va < vaddr) {
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char buf[40]; snprintf(buf, sizeof(buf),
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"PT_NOTE %#lx above stub", (unsigned long)vaddr);
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throwCantPack(buf);
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goto abandon;
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}
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}
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}
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xct_off = elf_get_offset_from_address(xct_va);
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if (opt->debug.debug_level) {
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fprintf(stderr, "shlib canPack: xct_va=%#lx xct_off=%#lx\n",
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@ -3483,6 +3458,12 @@ PackLinuxElf64::getbrk(const Elf64_Phdr *phdr, int nph) const
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return brka;
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}
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static unsigned
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is_pow2(unsigned x)
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{
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return !((-1 + x) & x);
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}
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void
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PackLinuxElf32::generateElfHdr(
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OutputFile *fo,
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@ -3496,7 +3477,7 @@ PackLinuxElf32::generateElfHdr(
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h3->phdr[C_BASE] = ((cprElfHdr3 const *)proto)->phdr[1]; // .data; .p_align
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h3->phdr[C_TEXT] = ((cprElfHdr3 const *)proto)->phdr[0]; // .text
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if (3 <= get_te16(&h3->ehdr.e_phnum)) {
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phdrx[n_phdrx++] = &((cprElfHdr3 const *)proto)->phdr[2]; // probably PT_GNU_STACK
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add_phdrx(&((cprElfHdr3 const *)proto)->phdr[2]); // PT_GNU_STACK ?
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}
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h3->ehdr.e_type = ehdri.e_type; // ET_EXEC vs ET_DYN (gcc -pie -fPIC)
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@ -3569,23 +3550,24 @@ PackLinuxElf32::generateElfHdr(
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Elf32_Phdr phtmp = *phdrx[j];
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phtmp.p_vaddr = phtmp.p_paddr = 0;
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unsigned const off_i = get_te32(&phtmp.p_offset);
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unsigned const memsz = get_te32(&phtmp.p_memsz);
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unsigned const align = get_te32(&phtmp.p_align);
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unsigned const filesz = get_te32(&phtmp.p_filesz);
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unsigned pad = 0;
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if (memsz) { // align
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unsigned alm1 = -1 + umin(8u, get_te32(&phtmp.p_align));
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if (filesz && align && is_pow2(align)) {
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unsigned alm1 = -1 + umin(8u, align);
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pad = alm1 & -off_o;
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off_o += pad;
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set_te32(&phtmp.p_vaddr, off_o + uva0); phtmp.p_paddr = phtmp.p_vaddr;
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}
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if (0==phase) {
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set_te32(&phtmp.p_offset, (memsz ? off_o : 0));
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set_te32(&phtmp.p_offset, (filesz ? off_o : 0));
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fo->write(&phtmp, sizeof(phtmp)); // Phdr
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}
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if (1==phase) {
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if (pad) fo->write(&zero_pad, pad);
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if (memsz) fo->write(&file_image[off_i], memsz); // body
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if (filesz) fo->write(&file_image[off_i], filesz); // body
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}
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off_o += memsz;
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off_o += filesz;
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}
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}
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off_o = fpad4(fo, off_o);
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@ -3607,8 +3589,8 @@ PackNetBSDElf32x86::generateElfHdr(
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unsigned const brka
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)
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{
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super::generateElfHdr(fo, proto, brka);
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cprElfHdr2 *const h2 = (cprElfHdr2 *)(void *)&elfout;
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super::generateElfHdr(fo, proto, brka);
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sz_elf_hdrs = sizeof(*h2) - sizeof(linfo);
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unsigned note_offset = sz_elf_hdrs;
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@ -4017,26 +3999,9 @@ void PackLinuxElf32::pack1(OutputFile * /*fo*/, Filter &ft)
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ph.method = ph_force_method(method_best);
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}
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note_size = 0;
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Elf32_Phdr *phdr = phdri;
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for (unsigned j=0; j < e_phnum; ++phdr, ++j) {
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if (PT_NOTE32 == get_te32(&phdr->p_type)) {
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note_size += up4(get_te32(&phdr->p_filesz));
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}
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}
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if (note_size) {
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note_body.alloc(note_size);
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note_size = 0;
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}
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phdr = phdri;
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for (unsigned j=0; j < e_phnum; ++phdr, ++j) {
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unsigned const type = get_te32(&phdr->p_type);
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unsigned const len = get_te32(&phdr->p_filesz);
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if (PT_NOTE32 == type && len && note_body.getSize()) {
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fi->seek(get_te32(&phdr->p_offset), SEEK_SET);
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fi->readx(¬e_body[note_size], len);
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note_size += up4(len);
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}
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if (PT_LOAD32 == type) {
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unsigned x = get_te32(&phdr->p_align) >> lg2_page;
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while (x>>=1) {
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@ -4275,18 +4240,7 @@ void PackLinuxElf64::asl_pack2_Shdrs(OutputFile *fo, unsigned pre_xct_top)
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for (unsigned j = 0; j < e_phnum; ++j, ++phdr) {
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upx_uint64_t offset = get_te64(&phdr->p_offset);
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if (xct_off <= offset) { // above the extra page
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if (PT_NOTE64 == get_te32(&phdr->p_type)) {
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upx_uint64_t memsz = get_te64(&phdr->p_memsz);
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if (sizeof(buf_notes) < (memsz + len_notes)) {
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throwCantPack("PT_NOTES too big");
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}
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set_te64(&phdr->p_vaddr,
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len_notes + (e_shnum * sizeof(Elf64_Shdr)) + xct_off);
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phdr->p_offset = phdr->p_paddr = phdr->p_vaddr;
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memcpy(&buf_notes[len_notes], &file_image[offset], memsz);
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len_notes += memsz;
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}
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else {
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{
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//set_te64(&phdr->p_offset, asl_delta + offset); // physical
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upx_uint64_t addr = get_te64(&phdr->p_paddr);
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set_te64(&phdr->p_paddr, asl_delta + addr);
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@ -4518,18 +4472,7 @@ void PackLinuxElf32::asl_pack2_Shdrs(OutputFile *fo, unsigned pre_xct_top)
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for (unsigned j = 0; j < e_phnum; ++j, ++phdr) {
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upx_uint32_t offset = get_te32(&phdr->p_offset);
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if (xct_off <= offset) { // above the extra page
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if (PT_NOTE32 == get_te32(&phdr->p_type)) {
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upx_uint32_t memsz = get_te32(&phdr->p_memsz);
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if (sizeof(buf_notes) < (memsz + len_notes)) {
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throwCantPack("PT_NOTES too big");
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}
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set_te32(&phdr->p_vaddr,
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len_notes + (e_shnum * sizeof(Elf32_Shdr)) + xct_off);
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phdr->p_offset = phdr->p_paddr = phdr->p_vaddr;
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memcpy(&buf_notes[len_notes], &file_image[offset], memsz);
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len_notes += memsz;
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}
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else {
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{
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//set_te32(&phdr->p_offset, asl_delta + offset); // physical
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upx_uint32_t v_addr = get_te32(&phdr->p_vaddr);
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set_te32(&phdr->p_vaddr, asl_delta + v_addr);
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@ -4906,26 +4849,9 @@ void PackLinuxElf64::pack1(OutputFile * /*fo*/, Filter &ft)
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ph.method = ph_force_method(method_best);
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}
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note_size = 0;
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Elf64_Phdr *phdr = phdri;
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for (unsigned j=0; j < e_phnum; ++phdr, ++j) {
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if (PT_NOTE64 == get_te32(&phdr->p_type)) {
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note_size += up4(get_te64(&phdr->p_filesz));
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}
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}
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if (note_size) {
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note_body.alloc(note_size);
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note_size = 0;
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}
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phdr = phdri;
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for (unsigned j=0; j < e_phnum; ++phdr, ++j) {
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unsigned const type = get_te32(&phdr->p_type);
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if (PT_NOTE64 == type) {
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unsigned const len = get_te64(&phdr->p_filesz);
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fi->seek(get_te64(&phdr->p_offset), SEEK_SET);
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fi->readx(¬e_body[note_size], len);
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note_size += up4(len);
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}
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if (PT_LOAD64 == type) {
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unsigned x = get_te64(&phdr->p_align) >> lg2_page;
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while (x>>=1) {
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@ -6222,15 +6148,6 @@ void PackLinuxElf64::pack4(OutputFile *fo, Filter &ft)
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set_te64(&eho->phdr[C_TEXT].p_filesz, sz_pack2 + lsize);
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eho->phdr[C_TEXT].p_memsz = eho->phdr[C_TEXT].p_filesz;
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Elf64_Phdr *phdr = &eho->phdr[C_NOTE];
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if (PT_NOTE64 == get_te32(&phdr->p_type)) {
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upx_uint64_t const reloc = get_te64(&eho->phdr[C_TEXT].p_vaddr);
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set_te64( &phdr->p_vaddr,
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reloc + get_te64(&phdr->p_vaddr));
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set_te64( &phdr->p_paddr,
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reloc + get_te64(&phdr->p_paddr));
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// FIXME fo->rewrite(&elfnote, sizeof(elfnote));
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}
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fo->rewrite(eho, sz_elf_hdrs);
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fo->rewrite(&linfo, sizeof(linfo));
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}
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@ -215,6 +215,7 @@ protected:
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virtual upx_uint64_t elf_unsigned_dynamic(unsigned) const override;
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unsigned find_dt_ndx(unsigned rva);
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virtual int adjABS(Elf32_Sym *sym, unsigned delta);
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void add_phdrx(Elf32_Phdr const *);
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char const *get_str_name(unsigned st_name, unsigned symnum) const;
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char const *get_dynsym_name(unsigned symnum, unsigned relnum) const;
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@ -224,7 +225,7 @@ protected:
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Elf32_Shdr *shdri; // from input file
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Elf32_Shdr *shdro; // for output file
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Elf32_Phdr const *gnu_stack; // propagate NX
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static unsigned const END_PHDRX = 4;
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static unsigned const END_PHDRX = 5;
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Elf32_Phdr const *phdrx[END_PHDRX]; // "extra" arch-specific Phdr
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unsigned n_phdrx; // number actually used
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unsigned sz_phdrx; // total size of bodies
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@ -380,6 +381,7 @@ protected:
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virtual upx_uint64_t elf_unsigned_dynamic(unsigned) const override;
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unsigned find_dt_ndx(u64_t rva);
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virtual int adjABS(Elf64_Sym *sym, unsigned long delta);
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void add_phdrx(Elf64_Phdr const *);
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char const *get_str_name(unsigned st_name, unsigned symnum) const;
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char const *get_dynsym_name(unsigned symnum, unsigned relnum) const;
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@ -389,7 +391,7 @@ protected:
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Elf64_Shdr *shdri; // from input file
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Elf64_Shdr *shdro; // for output file
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Elf64_Phdr const *gnu_stack; // propagate NX
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static unsigned const END_PHDRX = 4;
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static unsigned const END_PHDRX = 5;
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Elf64_Phdr const *phdrx[END_PHDRX]; // "extra" arch-specific Phdr
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unsigned n_phdrx; // number actually used
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unsigned sz_phdrx; // total size of bodies
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