ACPI: APEI: EINJ: Fix kernel test sparse warnings

This patch fixes the kernel test robot warning reported here:
Link: https://lore.kernel.org/all/202410241620.oApALow5-lkp@intel.com/

Use pointers annotated with the __iomem marker for all iomem map calls,
and creates a local copy of the mapped IO memory for future access in
the code. memcpy_fromio() and memcpy_toio() are used to read/write data
from/to mapped IO memory.

Reviewed-by: Ira Weiny <ira.weiny@intel.com>
Reviewed-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
Reviewed-by: Tony Luck <tony.luck@intel.com>
Signed-off-by: Zaid Alali <zaidal@os.amperecomputing.com>
Link: https://patch.msgid.link/20250617193026.637510-2-zaidal@os.amperecomputing.com
Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com>
This commit is contained in:
Zaid Alali 2025-06-17 12:30:20 -07:00 committed by Rafael J. Wysocki
parent e04c78d86a
commit 1a35c88302

View file

@ -151,7 +151,7 @@ static DEFINE_MUTEX(einj_mutex);
*/
bool einj_initialized __ro_after_init;
static void *einj_param;
static void __iomem *einj_param;
static void einj_exec_ctx_init(struct apei_exec_context *ctx)
{
@ -216,24 +216,26 @@ static void check_vendor_extension(u64 paddr,
struct set_error_type_with_address *v5param)
{
int offset = v5param->vendor_extension;
struct vendor_error_type_extension *v;
struct vendor_error_type_extension v;
struct vendor_error_type_extension __iomem *p;
u32 sbdf;
if (!offset)
return;
v = acpi_os_map_iomem(paddr + offset, sizeof(*v));
if (!v)
p = acpi_os_map_iomem(paddr + offset, sizeof(*p));
if (!p)
return;
get_oem_vendor_struct(paddr, offset, v);
sbdf = v->pcie_sbdf;
memcpy_fromio(&v, p, sizeof(v));
get_oem_vendor_struct(paddr, offset, &v);
sbdf = v.pcie_sbdf;
sprintf(vendor_dev, "%x:%x:%x.%x vendor_id=%x device_id=%x rev_id=%x\n",
sbdf >> 24, (sbdf >> 16) & 0xff,
(sbdf >> 11) & 0x1f, (sbdf >> 8) & 0x7,
v->vendor_id, v->device_id, v->rev_id);
acpi_os_unmap_iomem(v, sizeof(*v));
v.vendor_id, v.device_id, v.rev_id);
acpi_os_unmap_iomem(p, sizeof(v));
}
static void *einj_get_parameter_address(void)
static void __iomem *einj_get_parameter_address(void)
{
int i;
u64 pa_v4 = 0, pa_v5 = 0;
@ -254,26 +256,30 @@ static void *einj_get_parameter_address(void)
entry++;
}
if (pa_v5) {
struct set_error_type_with_address *v5param;
struct set_error_type_with_address v5param;
struct set_error_type_with_address __iomem *p;
v5param = acpi_os_map_iomem(pa_v5, sizeof(*v5param));
if (v5param) {
p = acpi_os_map_iomem(pa_v5, sizeof(*p));
if (p) {
memcpy_fromio(&v5param, p, sizeof(v5param));
acpi5 = 1;
check_vendor_extension(pa_v5, v5param);
return v5param;
check_vendor_extension(pa_v5, &v5param);
return p;
}
}
if (param_extension && pa_v4) {
struct einj_parameter *v4param;
struct einj_parameter v4param;
struct einj_parameter __iomem *p;
v4param = acpi_os_map_iomem(pa_v4, sizeof(*v4param));
if (!v4param)
p = acpi_os_map_iomem(pa_v4, sizeof(*p));
if (!p)
return NULL;
if (v4param->reserved1 || v4param->reserved2) {
acpi_os_unmap_iomem(v4param, sizeof(*v4param));
memcpy_fromio(&v4param, p, sizeof(v4param));
if (v4param.reserved1 || v4param.reserved2) {
acpi_os_unmap_iomem(p, sizeof(v4param));
return NULL;
}
return v4param;
return p;
}
return NULL;
@ -319,7 +325,7 @@ static struct acpi_generic_address *einj_get_trigger_parameter_region(
static int __einj_error_trigger(u64 trigger_paddr, u32 type,
u64 param1, u64 param2)
{
struct acpi_einj_trigger *trigger_tab = NULL;
struct acpi_einj_trigger trigger_tab;
struct apei_exec_context trigger_ctx;
struct apei_resources trigger_resources;
struct acpi_whea_header *trigger_entry;
@ -327,54 +333,57 @@ static int __einj_error_trigger(u64 trigger_paddr, u32 type,
u32 table_size;
int rc = -EIO;
struct acpi_generic_address *trigger_param_region = NULL;
struct acpi_einj_trigger __iomem *p;
r = request_mem_region(trigger_paddr, sizeof(*trigger_tab),
r = request_mem_region(trigger_paddr, sizeof(trigger_tab),
"APEI EINJ Trigger Table");
if (!r) {
pr_err("Can not request [mem %#010llx-%#010llx] for Trigger table\n",
(unsigned long long)trigger_paddr,
(unsigned long long)trigger_paddr +
sizeof(*trigger_tab) - 1);
sizeof(trigger_tab) - 1);
goto out;
}
trigger_tab = ioremap_cache(trigger_paddr, sizeof(*trigger_tab));
if (!trigger_tab) {
p = ioremap_cache(trigger_paddr, sizeof(*p));
if (!p) {
pr_err("Failed to map trigger table!\n");
goto out_rel_header;
}
rc = einj_check_trigger_header(trigger_tab);
memcpy_fromio(&trigger_tab, p, sizeof(trigger_tab));
rc = einj_check_trigger_header(&trigger_tab);
if (rc) {
pr_warn(FW_BUG "Invalid trigger error action table.\n");
goto out_rel_header;
}
/* No action structures in the TRIGGER_ERROR table, nothing to do */
if (!trigger_tab->entry_count)
if (!trigger_tab.entry_count)
goto out_rel_header;
rc = -EIO;
table_size = trigger_tab->table_size;
r = request_mem_region(trigger_paddr + sizeof(*trigger_tab),
table_size - sizeof(*trigger_tab),
table_size = trigger_tab.table_size;
r = request_mem_region(trigger_paddr + sizeof(trigger_tab),
table_size - sizeof(trigger_tab),
"APEI EINJ Trigger Table");
if (!r) {
pr_err("Can not request [mem %#010llx-%#010llx] for Trigger Table Entry\n",
(unsigned long long)trigger_paddr + sizeof(*trigger_tab),
(unsigned long long)trigger_paddr + sizeof(trigger_tab),
(unsigned long long)trigger_paddr + table_size - 1);
goto out_rel_header;
}
iounmap(trigger_tab);
trigger_tab = ioremap_cache(trigger_paddr, table_size);
if (!trigger_tab) {
iounmap(p);
p = ioremap_cache(trigger_paddr, table_size);
if (!p) {
pr_err("Failed to map trigger table!\n");
goto out_rel_entry;
}
memcpy_fromio(&trigger_tab, p, sizeof(trigger_tab));
trigger_entry = (struct acpi_whea_header *)
((char *)trigger_tab + sizeof(struct acpi_einj_trigger));
((char *)&trigger_tab + sizeof(struct acpi_einj_trigger));
apei_resources_init(&trigger_resources);
apei_exec_ctx_init(&trigger_ctx, einj_ins_type,
ARRAY_SIZE(einj_ins_type),
trigger_entry, trigger_tab->entry_count);
trigger_entry, trigger_tab.entry_count);
rc = apei_exec_collect_resources(&trigger_ctx, &trigger_resources);
if (rc)
goto out_fini;
@ -392,7 +401,7 @@ static int __einj_error_trigger(u64 trigger_paddr, u32 type,
apei_resources_init(&addr_resources);
trigger_param_region = einj_get_trigger_parameter_region(
trigger_tab, param1, param2);
&trigger_tab, param1, param2);
if (trigger_param_region) {
rc = apei_resources_add(&addr_resources,
trigger_param_region->address,
@ -421,13 +430,13 @@ out_release:
out_fini:
apei_resources_fini(&trigger_resources);
out_rel_entry:
release_mem_region(trigger_paddr + sizeof(*trigger_tab),
table_size - sizeof(*trigger_tab));
release_mem_region(trigger_paddr + sizeof(trigger_tab),
table_size - sizeof(trigger_tab));
out_rel_header:
release_mem_region(trigger_paddr, sizeof(*trigger_tab));
release_mem_region(trigger_paddr, sizeof(trigger_tab));
out:
if (trigger_tab)
iounmap(trigger_tab);
if (p)
iounmap(p);
return rc;
}
@ -446,8 +455,10 @@ static int __einj_error_inject(u32 type, u32 flags, u64 param1, u64 param2,
return rc;
apei_exec_ctx_set_input(&ctx, type);
if (acpi5) {
struct set_error_type_with_address *v5param = einj_param;
struct set_error_type_with_address *v5param, v5_struct;
v5param = &v5_struct;
memcpy_fromio(v5param, einj_param, sizeof(*v5param));
v5param->type = type;
if (type & ACPI5_VENDOR_BIT) {
switch (vendor_flags) {
@ -492,15 +503,18 @@ static int __einj_error_inject(u32 type, u32 flags, u64 param1, u64 param2,
break;
}
}
memcpy_toio(einj_param, v5param, sizeof(*v5param));
} else {
rc = apei_exec_run(&ctx, ACPI_EINJ_SET_ERROR_TYPE);
if (rc)
return rc;
if (einj_param) {
struct einj_parameter *v4param = einj_param;
struct einj_parameter v4param;
v4param->param1 = param1;
v4param->param2 = param2;
memcpy_fromio(&v4param, einj_param, sizeof(v4param));
v4param.param1 = param1;
v4param.param2 = param2;
memcpy_toio(einj_param, &v4param, sizeof(v4param));
}
}
rc = apei_exec_run(&ctx, ACPI_EINJ_EXECUTE_OPERATION);