RISC-V: Add section of GOT.PLT for kernel module
Separate the function symbol address from .plt to .got.plt section. The original plt entry has trampoline code with symbol address, there is a 32-bit padding bwtween jar instruction and symbol address. Extract the symbol address to .got.plt to reduce the module size. Signed-off-by: Zong Li <zong@andestech.com> Signed-off-by: Palmer Dabbelt <palmer@sifive.com>
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@ -21,6 +21,7 @@ struct mod_section {
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struct mod_arch_specific {
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struct mod_section got;
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struct mod_section plt;
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struct mod_section got_plt;
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};
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struct got_entry {
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@ -48,13 +49,10 @@ struct plt_entry {
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/*
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* Trampoline code to real target address. The return address
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* should be the original (pc+4) before entring plt entry.
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* For 8 byte alignment of symbol_addr,
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* don't pack structure to remove the padding.
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*/
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u32 insn_auipc; /* auipc t0, 0x0 */
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u32 insn_ld; /* ld t1, 0x10(t0) */
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u32 insn_jr; /* jr t1 */
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u64 symbol_addr; /* the real jump target address */
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};
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#define OPC_AUIPC 0x0017
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@ -62,9 +60,8 @@ struct plt_entry {
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#define OPC_JALR 0x0067
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#define REG_T0 0x5
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#define REG_T1 0x6
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#define IMM_OFFSET 0x10
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static inline struct plt_entry emit_plt_entry(u64 val)
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static inline struct plt_entry emit_plt_entry(u64 val, u64 plt, u64 got_plt)
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{
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/*
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* U-Type encoding:
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@ -78,24 +75,37 @@ static inline struct plt_entry emit_plt_entry(u64 val)
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* +------------+------------+--------+----------+----------+
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*
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*/
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u64 offset = got_plt - plt;
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u32 hi20 = (offset + 0x800) & 0xfffff000;
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u32 lo12 = (offset - hi20);
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return (struct plt_entry) {
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OPC_AUIPC | (REG_T0 << 7),
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OPC_LD | (IMM_OFFSET << 20) | (REG_T0 << 15) | (REG_T1 << 7),
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OPC_JALR | (REG_T1 << 15),
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val
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OPC_AUIPC | (REG_T0 << 7) | hi20,
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OPC_LD | (lo12 << 20) | (REG_T0 << 15) | (REG_T1 << 7),
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OPC_JALR | (REG_T1 << 15)
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};
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}
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static inline struct plt_entry *get_plt_entry(u64 val,
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const struct mod_section *sec)
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static inline int get_got_plt_idx(u64 val, const struct mod_section *sec)
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{
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struct plt_entry *plt = (struct plt_entry *)sec->shdr->sh_addr;
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struct got_entry *got_plt = (struct got_entry *)sec->shdr->sh_addr;
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int i;
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for (i = 0; i < sec->num_entries; i++) {
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if (plt[i].symbol_addr == val)
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return &plt[i];
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if (got_plt[i].symbol_addr == val)
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return i;
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}
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return NULL;
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return -1;
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}
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static inline struct plt_entry *get_plt_entry(u64 val,
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const struct mod_section *sec_plt,
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const struct mod_section *sec_got_plt)
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{
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struct plt_entry *plt = (struct plt_entry *)sec_plt->shdr->sh_addr;
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int got_plt_idx = get_got_plt_idx(val, sec_got_plt);
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if (got_plt_idx >= 0)
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return plt + got_plt_idx;
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else
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return NULL;
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}
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#endif /* CONFIG_MODULE_SECTIONS */
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@ -30,18 +30,23 @@ u64 module_emit_got_entry(struct module *mod, u64 val)
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u64 module_emit_plt_entry(struct module *mod, u64 val)
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{
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struct mod_section *got_plt_sec = &mod->arch.got_plt;
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struct got_entry *got_plt;
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struct mod_section *plt_sec = &mod->arch.plt;
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struct plt_entry *plt = get_plt_entry(val, plt_sec);
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struct plt_entry *plt = get_plt_entry(val, plt_sec, got_plt_sec);
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int i = plt_sec->num_entries;
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if (plt)
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return (u64)plt;
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/* There is no duplicate entry, create a new one */
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got_plt = (struct got_entry *)got_plt_sec->shdr->sh_addr;
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got_plt[i] = emit_got_entry(val);
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plt = (struct plt_entry *)plt_sec->shdr->sh_addr;
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plt[i] = emit_plt_entry(val);
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plt[i] = emit_plt_entry(val, (u64)&plt[i], (u64)&got_plt[i]);
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plt_sec->num_entries++;
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got_plt_sec->num_entries++;
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BUG_ON(plt_sec->num_entries > plt_sec->max_entries);
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return (u64)&plt[i];
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@ -94,6 +99,8 @@ int module_frob_arch_sections(Elf_Ehdr *ehdr, Elf_Shdr *sechdrs,
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mod->arch.plt.shdr = sechdrs + i;
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else if (!strcmp(secstrings + sechdrs[i].sh_name, ".got"))
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mod->arch.got.shdr = sechdrs + i;
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else if (!strcmp(secstrings + sechdrs[i].sh_name, ".got.plt"))
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mod->arch.got_plt.shdr = sechdrs + i;
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}
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if (!mod->arch.plt.shdr) {
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@ -104,6 +111,10 @@ int module_frob_arch_sections(Elf_Ehdr *ehdr, Elf_Shdr *sechdrs,
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pr_err("%s: module GOT section(s) missing\n", mod->name);
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return -ENOEXEC;
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}
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if (!mod->arch.got_plt.shdr) {
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pr_err("%s: module GOT.PLT section(s) missing\n", mod->name);
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return -ENOEXEC;
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}
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/* Calculate the maxinum number of entries */
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for (i = 0; i < ehdr->e_shnum; i++) {
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@ -135,5 +146,11 @@ int module_frob_arch_sections(Elf_Ehdr *ehdr, Elf_Shdr *sechdrs,
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mod->arch.got.num_entries = 0;
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mod->arch.got.max_entries = num_gots;
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mod->arch.got_plt.shdr->sh_type = SHT_NOBITS;
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mod->arch.got_plt.shdr->sh_flags = SHF_ALLOC;
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mod->arch.got_plt.shdr->sh_addralign = L1_CACHE_BYTES;
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mod->arch.got_plt.shdr->sh_size = (num_plts + 1) * sizeof(struct got_entry);
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mod->arch.got_plt.num_entries = 0;
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mod->arch.got_plt.max_entries = num_plts;
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return 0;
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}
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@ -4,4 +4,5 @@
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SECTIONS {
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.plt (NOLOAD) : { BYTE(0) }
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.got (NOLOAD) : { BYTE(0) }
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.got.plt (NOLOAD) : { BYTE(0) }
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}
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