Merge branch 'sched-urgent-for-linus' of git://git.kernel.org/pub/scm/linux/kernel...
[firefly-linux-kernel-4.4.55.git] / arch / x86 / vdso / vdso2c.h
index c6eefaf389b95e6a18bef6a58943afb4c6d597bf..11b65d4f94140d3523484c714a3735e6d2f718ed 100644 (file)
  * are built for 32-bit userspace.
  */
 
-static void GOFUNC(void *addr, size_t len, FILE *outfile, const char *name)
+/*
+ * We're writing a section table for a few reasons:
+ *
+ * The Go runtime had a couple of bugs: it would read the section
+ * table to try to figure out how many dynamic symbols there were (it
+ * shouldn't have looked at the section table at all) and, if there
+ * were no SHT_SYNDYM section table entry, it would use an
+ * uninitialized value for the number of symbols.  An empty DYNSYM
+ * table would work, but I see no reason not to write a valid one (and
+ * keep full performance for old Go programs).  This hack is only
+ * needed on x86_64.
+ *
+ * The bug was introduced on 2012-08-31 by:
+ * https://code.google.com/p/go/source/detail?r=56ea40aac72b
+ * and was fixed on 2014-06-13 by:
+ * https://code.google.com/p/go/source/detail?r=fc1cd5e12595
+ *
+ * Binutils has issues debugging the vDSO: it reads the section table to
+ * find SHT_NOTE; it won't look at PT_NOTE for the in-memory vDSO, which
+ * would break build-id if we removed the section table.  Binutils
+ * also requires that shstrndx != 0.  See:
+ * https://sourceware.org/bugzilla/show_bug.cgi?id=17064
+ *
+ * elfutils might not look for PT_NOTE if there is a section table at
+ * all.  I don't know whether this matters for any practical purpose.
+ *
+ * For simplicity, rather than hacking up a partial section table, we
+ * just write a mostly complete one.  We omit non-dynamic symbols,
+ * though, since they're rather large.
+ *
+ * Once binutils gets fixed, we might be able to drop this for all but
+ * the 64-bit vdso, since build-id only works in kernel RPMs, and
+ * systems that update to new enough kernel RPMs will likely update
+ * binutils in sync.  build-id has never worked for home-built kernel
+ * RPMs without manual symlinking, and I suspect that no one ever does
+ * that.
+ */
+struct BITSFUNC(fake_sections)
+{
+       ELF(Shdr) *table;
+       unsigned long table_offset;
+       int count, max_count;
+
+       int in_shstrndx;
+       unsigned long shstr_offset;
+       const char *shstrtab;
+       size_t shstrtab_len;
+
+       int out_shstrndx;
+};
+
+static unsigned int BITSFUNC(find_shname)(struct BITSFUNC(fake_sections) *out,
+                                         const char *name)
+{
+       const char *outname = out->shstrtab;
+       while (outname - out->shstrtab < out->shstrtab_len) {
+               if (!strcmp(name, outname))
+                       return (outname - out->shstrtab) + out->shstr_offset;
+               outname += strlen(outname) + 1;
+       }
+
+       if (*name)
+               printf("Warning: could not find output name \"%s\"\n", name);
+       return out->shstr_offset + out->shstrtab_len - 1;  /* Use a null. */
+}
+
+static void BITSFUNC(init_sections)(struct BITSFUNC(fake_sections) *out)
+{
+       if (!out->in_shstrndx)
+               fail("didn't find the fake shstrndx\n");
+
+       memset(out->table, 0, out->max_count * sizeof(ELF(Shdr)));
+
+       if (out->max_count < 1)
+               fail("we need at least two fake output sections\n");
+
+       PUT_LE(&out->table[0].sh_type, SHT_NULL);
+       PUT_LE(&out->table[0].sh_name, BITSFUNC(find_shname)(out, ""));
+
+       out->count = 1;
+}
+
+static void BITSFUNC(copy_section)(struct BITSFUNC(fake_sections) *out,
+                                  int in_idx, const ELF(Shdr) *in,
+                                  const char *name)
+{
+       uint64_t flags = GET_LE(&in->sh_flags);
+
+       bool copy = flags & SHF_ALLOC &&
+               (GET_LE(&in->sh_size) ||
+                (GET_LE(&in->sh_type) != SHT_RELA &&
+                 GET_LE(&in->sh_type) != SHT_REL)) &&
+               strcmp(name, ".altinstructions") &&
+               strcmp(name, ".altinstr_replacement");
+
+       if (!copy)
+               return;
+
+       if (out->count >= out->max_count)
+               fail("too many copied sections (max = %d)\n", out->max_count);
+
+       if (in_idx == out->in_shstrndx)
+               out->out_shstrndx = out->count;
+
+       out->table[out->count] = *in;
+       PUT_LE(&out->table[out->count].sh_name,
+              BITSFUNC(find_shname)(out, name));
+
+       /* elfutils requires that a strtab have the correct type. */
+       if (!strcmp(name, ".fake_shstrtab"))
+               PUT_LE(&out->table[out->count].sh_type, SHT_STRTAB);
+
+       out->count++;
+}
+
+static void BITSFUNC(go)(void *addr, size_t len,
+                        FILE *outfile, const char *name)
 {
        int found_load = 0;
        unsigned long load_size = -1;  /* Work around bogus warning */
        unsigned long data_size;
-       Elf_Ehdr *hdr = (Elf_Ehdr *)addr;
+       ELF(Ehdr) *hdr = (ELF(Ehdr) *)addr;
        int i;
        unsigned long j;
-       Elf_Shdr *symtab_hdr = NULL, *strtab_hdr, *secstrings_hdr,
+       ELF(Shdr) *symtab_hdr = NULL, *strtab_hdr, *secstrings_hdr,
                *alt_sec = NULL;
-       Elf_Dyn *dyn = 0, *dyn_end = 0;
+       ELF(Dyn) *dyn = 0, *dyn_end = 0;
        const char *secstrings;
        uint64_t syms[NSYMS] = {};
 
-       uint64_t fake_sections_value = 0, fake_sections_size = 0;
+       struct BITSFUNC(fake_sections) fake_sections = {};
 
-       Elf_Phdr *pt = (Elf_Phdr *)(addr + GET_LE(&hdr->e_phoff));
+       ELF(Phdr) *pt = (ELF(Phdr) *)(addr + GET_LE(&hdr->e_phoff));
 
        /* Walk the segment table. */
        for (i = 0; i < GET_LE(&hdr->e_phnum); i++) {
@@ -51,7 +167,7 @@ static void GOFUNC(void *addr, size_t len, FILE *outfile, const char *name)
        for (i = 0; dyn + i < dyn_end &&
                     GET_LE(&dyn[i].d_tag) != DT_NULL; i++) {
                typeof(dyn[i].d_tag) tag = GET_LE(&dyn[i].d_tag);
-               if (tag == DT_REL || tag == DT_RELSZ ||
+               if (tag == DT_REL || tag == DT_RELSZ || tag == DT_RELA ||
                    tag == DT_RELENT || tag == DT_TEXTREL)
                        fail("vdso image contains dynamic relocations\n");
        }
@@ -61,7 +177,7 @@ static void GOFUNC(void *addr, size_t len, FILE *outfile, const char *name)
                GET_LE(&hdr->e_shentsize)*GET_LE(&hdr->e_shstrndx);
        secstrings = addr + GET_LE(&secstrings_hdr->sh_offset);
        for (i = 0; i < GET_LE(&hdr->e_shnum); i++) {
-               Elf_Shdr *sh = addr + GET_LE(&hdr->e_shoff) +
+               ELF(Shdr) *sh = addr + GET_LE(&hdr->e_shoff) +
                        GET_LE(&hdr->e_shentsize) * i;
                if (GET_LE(&sh->sh_type) == SHT_SYMTAB)
                        symtab_hdr = sh;
@@ -82,29 +198,63 @@ static void GOFUNC(void *addr, size_t len, FILE *outfile, const char *name)
             i < GET_LE(&symtab_hdr->sh_size) / GET_LE(&symtab_hdr->sh_entsize);
             i++) {
                int k;
-               Elf_Sym *sym = addr + GET_LE(&symtab_hdr->sh_offset) +
+               ELF(Sym) *sym = addr + GET_LE(&symtab_hdr->sh_offset) +
                        GET_LE(&symtab_hdr->sh_entsize) * i;
                const char *name = addr + GET_LE(&strtab_hdr->sh_offset) +
                        GET_LE(&sym->st_name);
 
                for (k = 0; k < NSYMS; k++) {
-                       if (!strcmp(name, required_syms[k])) {
+                       if (!strcmp(name, required_syms[k].name)) {
                                if (syms[k]) {
                                        fail("duplicate symbol %s\n",
-                                            required_syms[k]);
+                                            required_syms[k].name);
                                }
                                syms[k] = GET_LE(&sym->st_value);
                        }
                }
 
-               if (!strcmp(name, "vdso_fake_sections")) {
-                       if (fake_sections_value)
-                               fail("duplicate vdso_fake_sections\n");
-                       fake_sections_value = GET_LE(&sym->st_value);
-                       fake_sections_size = GET_LE(&sym->st_size);
+               if (!strcmp(name, "fake_shstrtab")) {
+                       ELF(Shdr) *sh;
+
+                       fake_sections.in_shstrndx = GET_LE(&sym->st_shndx);
+                       fake_sections.shstrtab = addr + GET_LE(&sym->st_value);
+                       fake_sections.shstrtab_len = GET_LE(&sym->st_size);
+                       sh = addr + GET_LE(&hdr->e_shoff) +
+                               GET_LE(&hdr->e_shentsize) *
+                               fake_sections.in_shstrndx;
+                       fake_sections.shstr_offset = GET_LE(&sym->st_value) -
+                               GET_LE(&sh->sh_addr);
                }
        }
 
+       /* Build the output section table. */
+       if (!syms[sym_VDSO_FAKE_SECTION_TABLE_START] ||
+           !syms[sym_VDSO_FAKE_SECTION_TABLE_END])
+               fail("couldn't find fake section table\n");
+       if ((syms[sym_VDSO_FAKE_SECTION_TABLE_END] -
+            syms[sym_VDSO_FAKE_SECTION_TABLE_START]) % sizeof(ELF(Shdr)))
+               fail("fake section table size isn't a multiple of sizeof(Shdr)\n");
+       fake_sections.table = addr + syms[sym_VDSO_FAKE_SECTION_TABLE_START];
+       fake_sections.table_offset = syms[sym_VDSO_FAKE_SECTION_TABLE_START];
+       fake_sections.max_count = (syms[sym_VDSO_FAKE_SECTION_TABLE_END] -
+                                  syms[sym_VDSO_FAKE_SECTION_TABLE_START]) /
+               sizeof(ELF(Shdr));
+
+       BITSFUNC(init_sections)(&fake_sections);
+       for (i = 0; i < GET_LE(&hdr->e_shnum); i++) {
+               ELF(Shdr) *sh = addr + GET_LE(&hdr->e_shoff) +
+                       GET_LE(&hdr->e_shentsize) * i;
+               BITSFUNC(copy_section)(&fake_sections, i, sh,
+                                      secstrings + GET_LE(&sh->sh_name));
+       }
+       if (!fake_sections.out_shstrndx)
+               fail("didn't generate shstrndx?!?\n");
+
+       PUT_LE(&hdr->e_shoff, fake_sections.table_offset);
+       PUT_LE(&hdr->e_shentsize, sizeof(ELF(Shdr)));
+       PUT_LE(&hdr->e_shnum, fake_sections.count);
+       PUT_LE(&hdr->e_shstrndx, fake_sections.out_shstrndx);
+
        /* Validate mapping addresses. */
        for (i = 0; i < sizeof(special_pages) / sizeof(special_pages[0]); i++) {
                if (!syms[i])
@@ -112,25 +262,17 @@ static void GOFUNC(void *addr, size_t len, FILE *outfile, const char *name)
 
                if (syms[i] % 4096)
                        fail("%s must be a multiple of 4096\n",
-                            required_syms[i]);
+                            required_syms[i].name);
                if (syms[i] < data_size)
                        fail("%s must be after the text mapping\n",
-                            required_syms[i]);
+                            required_syms[i].name);
                if (syms[sym_end_mapping] < syms[i] + 4096)
-                       fail("%s overruns end_mapping\n", required_syms[i]);
+                       fail("%s overruns end_mapping\n",
+                            required_syms[i].name);
        }
        if (syms[sym_end_mapping] % 4096)
                fail("end_mapping must be a multiple of 4096\n");
 
-       /* Remove sections or use fakes */
-       if (fake_sections_size % sizeof(Elf_Shdr))
-               fail("vdso_fake_sections size is not a multiple of %ld\n",
-                    (long)sizeof(Elf_Shdr));
-       PUT_LE(&hdr->e_shoff, fake_sections_value);
-       PUT_LE(&hdr->e_shentsize, fake_sections_value ? sizeof(Elf_Shdr) : 0);
-       PUT_LE(&hdr->e_shnum, fake_sections_size / sizeof(Elf_Shdr));
-       PUT_LE(&hdr->e_shstrndx, SHN_UNDEF);
-
        if (!name) {
                fwrite(addr, load_size, 1, outfile);
                return;
@@ -168,9 +310,9 @@ static void GOFUNC(void *addr, size_t len, FILE *outfile, const char *name)
                        (unsigned long)GET_LE(&alt_sec->sh_size));
        }
        for (i = 0; i < NSYMS; i++) {
-               if (syms[i])
+               if (required_syms[i].export && syms[i])
                        fprintf(outfile, "\t.sym_%s = 0x%" PRIx64 ",\n",
-                               required_syms[i], syms[i]);
+                               required_syms[i].name, syms[i]);
        }
        fprintf(outfile, "};\n");
 }