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-rw-r--r--arch/riscv/include/asm/alternative-macros.h19
-rw-r--r--arch/riscv/include/asm/cacheflush.h15
-rw-r--r--arch/riscv/include/asm/kgdb.h9
-rw-r--r--arch/riscv/include/asm/syscall.h7
-rw-r--r--arch/riscv/kernel/Makefile4
-rw-r--r--arch/riscv/kernel/kgdb.c6
-rw-r--r--arch/riscv/kernel/module-sections.c13
-rw-r--r--arch/riscv/kernel/module.c11
-rw-r--r--arch/riscv/kernel/probes/uprobes.c10
-rw-r--r--arch/riscv/kernel/setup.c36
-rw-r--r--arch/riscv/kernel/unaligned_access_speed.c35
11 files changed, 102 insertions, 63 deletions
diff --git a/arch/riscv/include/asm/alternative-macros.h b/arch/riscv/include/asm/alternative-macros.h
index 721ec275ce57..231d777d936c 100644
--- a/arch/riscv/include/asm/alternative-macros.h
+++ b/arch/riscv/include/asm/alternative-macros.h
@@ -115,24 +115,19 @@
\old_c
.endm
-#define _ALTERNATIVE_CFG(old_c, ...) \
- ALTERNATIVE_CFG old_c
-
-#define _ALTERNATIVE_CFG_2(old_c, ...) \
- ALTERNATIVE_CFG old_c
+#define __ALTERNATIVE_CFG(old_c, ...) ALTERNATIVE_CFG old_c
+#define __ALTERNATIVE_CFG_2(old_c, ...) ALTERNATIVE_CFG old_c
#else /* !__ASSEMBLY__ */
-#define __ALTERNATIVE_CFG(old_c) \
- old_c "\n"
+#define __ALTERNATIVE_CFG(old_c, ...) old_c "\n"
+#define __ALTERNATIVE_CFG_2(old_c, ...) old_c "\n"
-#define _ALTERNATIVE_CFG(old_c, ...) \
- __ALTERNATIVE_CFG(old_c)
+#endif /* __ASSEMBLY__ */
-#define _ALTERNATIVE_CFG_2(old_c, ...) \
- __ALTERNATIVE_CFG(old_c)
+#define _ALTERNATIVE_CFG(old_c, ...) __ALTERNATIVE_CFG(old_c)
+#define _ALTERNATIVE_CFG_2(old_c, ...) __ALTERNATIVE_CFG_2(old_c)
-#endif /* __ASSEMBLY__ */
#endif /* CONFIG_RISCV_ALTERNATIVE */
/*
diff --git a/arch/riscv/include/asm/cacheflush.h b/arch/riscv/include/asm/cacheflush.h
index 8de73f91bfa3..b59ffeb668d6 100644
--- a/arch/riscv/include/asm/cacheflush.h
+++ b/arch/riscv/include/asm/cacheflush.h
@@ -34,11 +34,6 @@ static inline void flush_dcache_page(struct page *page)
flush_dcache_folio(page_folio(page));
}
-/*
- * RISC-V doesn't have an instruction to flush parts of the instruction cache,
- * so instead we just flush the whole thing.
- */
-#define flush_icache_range(start, end) flush_icache_all()
#define flush_icache_user_page(vma, pg, addr, len) \
do { \
if (vma->vm_flags & VM_EXEC) \
@@ -78,6 +73,16 @@ void flush_icache_mm(struct mm_struct *mm, bool local);
#endif /* CONFIG_SMP */
+/*
+ * RISC-V doesn't have an instruction to flush parts of the instruction cache,
+ * so instead we just flush the whole thing.
+ */
+#define flush_icache_range flush_icache_range
+static inline void flush_icache_range(unsigned long start, unsigned long end)
+{
+ flush_icache_all();
+}
+
extern unsigned int riscv_cbom_block_size;
extern unsigned int riscv_cboz_block_size;
void riscv_init_cbo_blocksizes(void);
diff --git a/arch/riscv/include/asm/kgdb.h b/arch/riscv/include/asm/kgdb.h
index 46677daf708b..cc11c4544cff 100644
--- a/arch/riscv/include/asm/kgdb.h
+++ b/arch/riscv/include/asm/kgdb.h
@@ -19,16 +19,9 @@
#ifndef __ASSEMBLY__
+void arch_kgdb_breakpoint(void);
extern unsigned long kgdb_compiled_break;
-static inline void arch_kgdb_breakpoint(void)
-{
- asm(".global kgdb_compiled_break\n"
- ".option norvc\n"
- "kgdb_compiled_break: ebreak\n"
- ".option rvc\n");
-}
-
#endif /* !__ASSEMBLY__ */
#define DBG_REG_ZERO "zero"
diff --git a/arch/riscv/include/asm/syscall.h b/arch/riscv/include/asm/syscall.h
index 121fff429dce..eceabf59ae48 100644
--- a/arch/riscv/include/asm/syscall.h
+++ b/arch/riscv/include/asm/syscall.h
@@ -62,8 +62,11 @@ static inline void syscall_get_arguments(struct task_struct *task,
unsigned long *args)
{
args[0] = regs->orig_a0;
- args++;
- memcpy(args, &regs->a1, 5 * sizeof(args[0]));
+ args[1] = regs->a1;
+ args[2] = regs->a2;
+ args[3] = regs->a3;
+ args[4] = regs->a4;
+ args[5] = regs->a5;
}
static inline int syscall_get_arch(struct task_struct *task)
diff --git a/arch/riscv/kernel/Makefile b/arch/riscv/kernel/Makefile
index 8d186bfced45..f7480c9c6f8d 100644
--- a/arch/riscv/kernel/Makefile
+++ b/arch/riscv/kernel/Makefile
@@ -9,8 +9,8 @@ CFLAGS_REMOVE_patch.o = $(CC_FLAGS_FTRACE)
CFLAGS_REMOVE_sbi.o = $(CC_FLAGS_FTRACE)
CFLAGS_REMOVE_return_address.o = $(CC_FLAGS_FTRACE)
endif
-CFLAGS_syscall_table.o += $(call cc-option,-Wno-override-init,)
-CFLAGS_compat_syscall_table.o += $(call cc-option,-Wno-override-init,)
+CFLAGS_syscall_table.o += $(call cc-disable-warning, override-init)
+CFLAGS_compat_syscall_table.o += $(call cc-disable-warning, override-init)
ifdef CONFIG_KEXEC_CORE
AFLAGS_kexec_relocate.o := -mcmodel=medany $(call cc-option,-mno-relax)
diff --git a/arch/riscv/kernel/kgdb.c b/arch/riscv/kernel/kgdb.c
index 2e0266ae6bd7..9f3db3503dab 100644
--- a/arch/riscv/kernel/kgdb.c
+++ b/arch/riscv/kernel/kgdb.c
@@ -254,6 +254,12 @@ void kgdb_arch_set_pc(struct pt_regs *regs, unsigned long pc)
regs->epc = pc;
}
+noinline void arch_kgdb_breakpoint(void)
+{
+ asm(".global kgdb_compiled_break\n"
+ "kgdb_compiled_break: ebreak\n");
+}
+
void kgdb_arch_handle_qxfer_pkt(char *remcom_in_buffer,
char *remcom_out_buffer)
{
diff --git a/arch/riscv/kernel/module-sections.c b/arch/riscv/kernel/module-sections.c
index e264e59e596e..91d0b355ceef 100644
--- a/arch/riscv/kernel/module-sections.c
+++ b/arch/riscv/kernel/module-sections.c
@@ -73,16 +73,17 @@ static bool duplicate_rela(const Elf_Rela *rela, int idx)
static void count_max_entries(Elf_Rela *relas, int num,
unsigned int *plts, unsigned int *gots)
{
- unsigned int type, i;
-
- for (i = 0; i < num; i++) {
- type = ELF_RISCV_R_TYPE(relas[i].r_info);
- if (type == R_RISCV_CALL_PLT) {
+ for (int i = 0; i < num; i++) {
+ switch (ELF_R_TYPE(relas[i].r_info)) {
+ case R_RISCV_CALL_PLT:
+ case R_RISCV_PLT32:
if (!duplicate_rela(relas, i))
(*plts)++;
- } else if (type == R_RISCV_GOT_HI20) {
+ break;
+ case R_RISCV_GOT_HI20:
if (!duplicate_rela(relas, i))
(*gots)++;
+ break;
}
}
}
diff --git a/arch/riscv/kernel/module.c b/arch/riscv/kernel/module.c
index 47d0ebeec93c..7f6147c18033 100644
--- a/arch/riscv/kernel/module.c
+++ b/arch/riscv/kernel/module.c
@@ -648,7 +648,7 @@ process_accumulated_relocations(struct module *me,
kfree(bucket_iter);
}
- kfree(*relocation_hashtable);
+ kvfree(*relocation_hashtable);
}
static int add_relocation_to_accumulate(struct module *me, int type,
@@ -752,9 +752,10 @@ initialize_relocation_hashtable(unsigned int num_relocations,
hashtable_size <<= should_double_size;
- *relocation_hashtable = kmalloc_array(hashtable_size,
- sizeof(**relocation_hashtable),
- GFP_KERNEL);
+ /* Number of relocations may be large, so kvmalloc it */
+ *relocation_hashtable = kvmalloc_array(hashtable_size,
+ sizeof(**relocation_hashtable),
+ GFP_KERNEL);
if (!*relocation_hashtable)
return 0;
@@ -859,7 +860,7 @@ int apply_relocate_add(Elf_Shdr *sechdrs, const char *strtab,
}
j++;
- if (j > sechdrs[relsec].sh_size / sizeof(*rel))
+ if (j == num_relocations)
j = 0;
} while (j_idx != j);
diff --git a/arch/riscv/kernel/probes/uprobes.c b/arch/riscv/kernel/probes/uprobes.c
index 4b3dc8beaf77..cc15f7ca6cc1 100644
--- a/arch/riscv/kernel/probes/uprobes.c
+++ b/arch/riscv/kernel/probes/uprobes.c
@@ -167,6 +167,7 @@ void arch_uprobe_copy_ixol(struct page *page, unsigned long vaddr,
/* Initialize the slot */
void *kaddr = kmap_atomic(page);
void *dst = kaddr + (vaddr & ~PAGE_MASK);
+ unsigned long start = (unsigned long)dst;
memcpy(dst, src, len);
@@ -176,13 +177,6 @@ void arch_uprobe_copy_ixol(struct page *page, unsigned long vaddr,
*(uprobe_opcode_t *)dst = __BUG_INSN_32;
}
+ flush_icache_range(start, start + len);
kunmap_atomic(kaddr);
-
- /*
- * We probably need flush_icache_user_page() but it needs vma.
- * This should work on most of architectures by default. If
- * architecture needs to do something different it can define
- * its own version of the function.
- */
- flush_dcache_page(page);
}
diff --git a/arch/riscv/kernel/setup.c b/arch/riscv/kernel/setup.c
index c174544eefc8..f7c9a1caa83e 100644
--- a/arch/riscv/kernel/setup.c
+++ b/arch/riscv/kernel/setup.c
@@ -66,6 +66,9 @@ static struct resource bss_res = { .name = "Kernel bss", };
static struct resource elfcorehdr_res = { .name = "ELF Core hdr", };
#endif
+static int num_standard_resources;
+static struct resource *standard_resources;
+
static int __init add_resource(struct resource *parent,
struct resource *res)
{
@@ -139,7 +142,7 @@ static void __init init_resources(void)
struct resource *res = NULL;
struct resource *mem_res = NULL;
size_t mem_res_sz = 0;
- int num_resources = 0, res_idx = 0;
+ int num_resources = 0, res_idx = 0, non_resv_res = 0;
int ret = 0;
/* + 1 as memblock_alloc() might increase memblock.reserved.cnt */
@@ -193,6 +196,7 @@ static void __init init_resources(void)
/* Add /memory regions to the resource tree */
for_each_mem_region(region) {
res = &mem_res[res_idx--];
+ non_resv_res++;
if (unlikely(memblock_is_nomap(region))) {
res->name = "Reserved";
@@ -210,6 +214,9 @@ static void __init init_resources(void)
goto error;
}
+ num_standard_resources = non_resv_res;
+ standard_resources = &mem_res[res_idx + 1];
+
/* Clean-up any unused pre-allocated resources */
if (res_idx >= 0)
memblock_free(mem_res, (res_idx + 1) * sizeof(*mem_res));
@@ -221,6 +228,33 @@ static void __init init_resources(void)
memblock_free(mem_res, mem_res_sz);
}
+static int __init reserve_memblock_reserved_regions(void)
+{
+ u64 i, j;
+
+ for (i = 0; i < num_standard_resources; i++) {
+ struct resource *mem = &standard_resources[i];
+ phys_addr_t r_start, r_end, mem_size = resource_size(mem);
+
+ if (!memblock_is_region_reserved(mem->start, mem_size))
+ continue;
+
+ for_each_reserved_mem_range(j, &r_start, &r_end) {
+ resource_size_t start, end;
+
+ start = max(PFN_PHYS(PFN_DOWN(r_start)), mem->start);
+ end = min(PFN_PHYS(PFN_UP(r_end)) - 1, mem->end);
+
+ if (start > mem->end || end < mem->start)
+ continue;
+
+ reserve_region_with_split(mem, start, end, "Reserved");
+ }
+ }
+
+ return 0;
+}
+arch_initcall(reserve_memblock_reserved_regions);
static void __init parse_dtb(void)
{
diff --git a/arch/riscv/kernel/unaligned_access_speed.c b/arch/riscv/kernel/unaligned_access_speed.c
index 585d2dcf2dab..b8ba13819d05 100644
--- a/arch/riscv/kernel/unaligned_access_speed.c
+++ b/arch/riscv/kernel/unaligned_access_speed.c
@@ -439,29 +439,36 @@ static int __init check_unaligned_access_all_cpus(void)
{
int cpu;
- if (unaligned_scalar_speed_param == RISCV_HWPROBE_MISALIGNED_SCALAR_UNKNOWN &&
- !check_unaligned_access_emulated_all_cpus()) {
- check_unaligned_access_speed_all_cpus();
- } else {
- pr_info("scalar unaligned access speed set to '%s' by command line\n",
- speed_str[unaligned_scalar_speed_param]);
+ if (unaligned_scalar_speed_param != RISCV_HWPROBE_MISALIGNED_SCALAR_UNKNOWN) {
+ pr_info("scalar unaligned access speed set to '%s' (%lu) by command line\n",
+ speed_str[unaligned_scalar_speed_param], unaligned_scalar_speed_param);
for_each_online_cpu(cpu)
per_cpu(misaligned_access_speed, cpu) = unaligned_scalar_speed_param;
+ } else if (!check_unaligned_access_emulated_all_cpus()) {
+ check_unaligned_access_speed_all_cpus();
+ }
+
+ if (unaligned_vector_speed_param != RISCV_HWPROBE_MISALIGNED_VECTOR_UNKNOWN) {
+ if (!has_vector() &&
+ unaligned_vector_speed_param != RISCV_HWPROBE_MISALIGNED_VECTOR_UNSUPPORTED) {
+ pr_warn("vector support is not available, ignoring unaligned_vector_speed=%s\n",
+ speed_str[unaligned_vector_speed_param]);
+ } else {
+ pr_info("vector unaligned access speed set to '%s' (%lu) by command line\n",
+ speed_str[unaligned_vector_speed_param], unaligned_vector_speed_param);
+ }
}
if (!has_vector())
unaligned_vector_speed_param = RISCV_HWPROBE_MISALIGNED_VECTOR_UNSUPPORTED;
- if (unaligned_vector_speed_param == RISCV_HWPROBE_MISALIGNED_VECTOR_UNKNOWN &&
- !check_vector_unaligned_access_emulated_all_cpus() &&
- IS_ENABLED(CONFIG_RISCV_PROBE_VECTOR_UNALIGNED_ACCESS)) {
- kthread_run(vec_check_unaligned_access_speed_all_cpus,
- NULL, "vec_check_unaligned_access_speed_all_cpus");
- } else {
- pr_info("vector unaligned access speed set to '%s' by command line\n",
- speed_str[unaligned_vector_speed_param]);
+ if (unaligned_vector_speed_param != RISCV_HWPROBE_MISALIGNED_VECTOR_UNKNOWN) {
for_each_online_cpu(cpu)
per_cpu(vector_misaligned_access, cpu) = unaligned_vector_speed_param;
+ } else if (!check_vector_unaligned_access_emulated_all_cpus() &&
+ IS_ENABLED(CONFIG_RISCV_PROBE_VECTOR_UNALIGNED_ACCESS)) {
+ kthread_run(vec_check_unaligned_access_speed_all_cpus,
+ NULL, "vec_check_unaligned_access_speed_all_cpus");
}
/*