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@@ -43,8 +43,58 @@
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#if defined(_CALL_ELF) && _CALL_ELF == 2
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#define R2_STACK_OFFSET 24
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+
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+/* An address is simply the address of the function. */
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+typedef unsigned long func_desc_t;
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+
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+static func_desc_t func_desc(unsigned long addr)
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+{
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+ return addr;
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+}
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+static unsigned long func_addr(unsigned long addr)
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+{
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+ return addr;
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+}
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+static unsigned long stub_func_addr(func_desc_t func)
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+{
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+ return func;
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+}
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+
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+/* PowerPC64 specific values for the Elf64_Sym st_other field. */
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+#define STO_PPC64_LOCAL_BIT 5
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+#define STO_PPC64_LOCAL_MASK (7 << STO_PPC64_LOCAL_BIT)
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+#define PPC64_LOCAL_ENTRY_OFFSET(other) \
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+ (((1 << (((other) & STO_PPC64_LOCAL_MASK) >> STO_PPC64_LOCAL_BIT)) >> 2) << 2)
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+
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+static unsigned int local_entry_offset(const Elf64_Sym *sym)
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+{
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+ /* sym->st_other indicates offset to local entry point
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+ * (otherwise it will assume r12 is the address of the start
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+ * of function and try to derive r2 from it). */
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+ return PPC64_LOCAL_ENTRY_OFFSET(sym->st_other);
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+}
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#else
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#define R2_STACK_OFFSET 40
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+
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+/* An address is address of the OPD entry, which contains address of fn. */
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+typedef struct ppc64_opd_entry func_desc_t;
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+
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+static func_desc_t func_desc(unsigned long addr)
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+{
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+ return *(struct ppc64_opd_entry *)addr;
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+}
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+static unsigned long func_addr(unsigned long addr)
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+{
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+ return func_desc(addr).funcaddr;
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+}
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+static unsigned long stub_func_addr(func_desc_t func)
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+{
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+ return func.funcaddr;
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+}
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+static unsigned int local_entry_offset(const Elf64_Sym *sym)
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+{
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+ return 0;
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+}
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#endif
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/* Like PPC32, we need little trampolines to do > 24-bit jumps (into
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@@ -56,7 +106,7 @@ struct ppc64_stub_entry
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u32 jump[7];
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u32 unused;
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/* Data for the above code */
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- struct ppc64_opd_entry opd;
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+ func_desc_t funcdata;
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};
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/*
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@@ -225,7 +275,7 @@ static Elf64_Sym *find_dot_toc(Elf64_Shdr *sechdrs,
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for (i = 1; i < numsyms; i++) {
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if (syms[i].st_shndx == SHN_UNDEF
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- && strcmp(strtab + syms[i].st_name, ".TOC.") == 0)
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+ && strcmp(strtab + syms[i].st_name, "TOC.") == 0)
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return &syms[i];
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}
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return NULL;
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@@ -295,7 +345,7 @@ static inline unsigned long my_r2(Elf64_Shdr *sechdrs, struct module *me)
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/* Patch stub to reference function and correct r2 value. */
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static inline int create_stub(Elf64_Shdr *sechdrs,
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struct ppc64_stub_entry *entry,
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- struct ppc64_opd_entry *opd,
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+ unsigned long addr,
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struct module *me)
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{
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long reladdr;
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@@ -313,33 +363,31 @@ static inline int create_stub(Elf64_Shdr *sechdrs,
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entry->jump[0] |= PPC_HA(reladdr);
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entry->jump[1] |= PPC_LO(reladdr);
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- entry->opd.funcaddr = opd->funcaddr;
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- entry->opd.r2 = opd->r2;
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+ entry->funcdata = func_desc(addr);
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return 1;
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}
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-/* Create stub to jump to function described in this OPD: we need the
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+/* Create stub to jump to function described in this OPD/ptr: we need the
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stub to set up the TOC ptr (r2) for the function. */
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static unsigned long stub_for_addr(Elf64_Shdr *sechdrs,
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- unsigned long opdaddr,
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+ unsigned long addr,
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struct module *me)
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{
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struct ppc64_stub_entry *stubs;
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- struct ppc64_opd_entry *opd = (void *)opdaddr;
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unsigned int i, num_stubs;
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num_stubs = sechdrs[me->arch.stubs_section].sh_size / sizeof(*stubs);
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/* Find this stub, or if that fails, the next avail. entry */
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stubs = (void *)sechdrs[me->arch.stubs_section].sh_addr;
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- for (i = 0; stubs[i].opd.funcaddr; i++) {
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+ for (i = 0; stub_func_addr(stubs[i].funcdata); i++) {
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BUG_ON(i >= num_stubs);
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- if (stubs[i].opd.funcaddr == opd->funcaddr)
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+ if (stub_func_addr(stubs[i].funcdata) == func_addr(addr))
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return (unsigned long)&stubs[i];
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}
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- if (!create_stub(sechdrs, &stubs[i], opd, me))
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+ if (!create_stub(sechdrs, &stubs[i], addr, me))
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return 0;
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return (unsigned long)&stubs[i];
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@@ -480,7 +528,8 @@ int apply_relocate_add(Elf64_Shdr *sechdrs,
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return -ENOENT;
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if (!restore_r2((u32 *)location + 1, me))
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return -ENOEXEC;
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- }
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+ } else
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+ value += local_entry_offset(sym);
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/* Convert value to relative */
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value -= (unsigned long)location;
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