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-rw-r--r--drivers/firmware/arm_ffa/bus.c4
-rw-r--r--drivers/firmware/arm_ffa/driver.c144
-rw-r--r--drivers/firmware/efi/efi-pstore.c4
-rw-r--r--drivers/firmware/efi/efi.c28
-rw-r--r--drivers/firmware/efi/libstub/Makefile2
-rw-r--r--drivers/firmware/efi/libstub/efi-stub-helper.c4
-rw-r--r--drivers/firmware/efi/libstub/efistub.h7
-rw-r--r--drivers/firmware/efi/libstub/loongarch-stub.c80
-rw-r--r--drivers/firmware/efi/libstub/loongarch.c21
-rw-r--r--drivers/firmware/efi/libstub/mem.c82
-rw-r--r--drivers/firmware/efi/libstub/relocate.c166
-rw-r--r--drivers/firmware/efi/sysfb_efi.c9
-rw-r--r--drivers/firmware/psci/psci.c10
13 files changed, 327 insertions, 234 deletions
diff --git a/drivers/firmware/arm_ffa/bus.c b/drivers/firmware/arm_ffa/bus.c
index 9576862d89c4..601c3418e0d9 100644
--- a/drivers/firmware/arm_ffa/bus.c
+++ b/drivers/firmware/arm_ffa/bus.c
@@ -26,6 +26,8 @@ static int ffa_device_match(struct device *dev, const struct device_driver *drv)
id_table = to_ffa_driver(drv)->id_table;
ffa_dev = to_ffa_dev(dev);
+ if (!id_table)
+ return 0;
while (!uuid_is_null(&id_table->uuid)) {
/*
@@ -123,7 +125,7 @@ int ffa_driver_register(struct ffa_driver *driver, struct module *owner,
{
int ret;
- if (!driver->probe)
+ if (!driver->probe || !driver->id_table)
return -EINVAL;
driver->driver.bus = &ffa_bus_type;
diff --git a/drivers/firmware/arm_ffa/driver.c b/drivers/firmware/arm_ffa/driver.c
index eb2782848283..b9f17fda7243 100644
--- a/drivers/firmware/arm_ffa/driver.c
+++ b/drivers/firmware/arm_ffa/driver.c
@@ -87,6 +87,7 @@ static inline int ffa_to_linux_errno(int errno)
struct ffa_pcpu_irq {
struct ffa_drv_info *info;
+ struct work_struct notif_pcpu_work;
};
struct ffa_drv_info {
@@ -100,13 +101,13 @@ struct ffa_drv_info {
bool mem_ops_native;
bool msg_direct_req2_supp;
bool bitmap_created;
+ bool bus_notifier_registered;
bool notif_enabled;
unsigned int sched_recv_irq;
unsigned int notif_pend_irq;
unsigned int cpuhp_state;
struct ffa_pcpu_irq __percpu *irq_pcpu;
struct workqueue_struct *notif_pcpu_wq;
- struct work_struct notif_pcpu_work;
struct work_struct sched_recv_irq_work;
struct xarray partition_info;
DECLARE_HASHTABLE(notifier_hash, ilog2(FFA_MAX_NOTIFICATIONS));
@@ -322,6 +323,12 @@ __ffa_partition_info_get(u32 uuid0, u32 uuid1, u32 uuid2, u32 uuid3,
#define PART_INFO_ID_MASK GENMASK(15, 0)
#define PART_INFO_EXEC_CXT_MASK GENMASK(31, 16)
#define PART_INFO_PROPS_MASK GENMASK(63, 32)
+#define FFA_PART_INFO_GET_REGS_FIRST_REG 3
+#define FFA_PART_INFO_GET_REGS_REGS_PER_DESC 3
+#define FFA_PART_INFO_GET_REGS_MAX_DESC \
+ (((sizeof(ffa_value_t) / sizeof_field(ffa_value_t, a0)) - \
+ FFA_PART_INFO_GET_REGS_FIRST_REG) / \
+ FFA_PART_INFO_GET_REGS_REGS_PER_DESC)
#define PART_INFO_ID(x) ((u16)(FIELD_GET(PART_INFO_ID_MASK, (x))))
#define PART_INFO_EXEC_CXT(x) ((u16)(FIELD_GET(PART_INFO_EXEC_CXT_MASK, (x))))
#define PART_INFO_PROPERTIES(x) ((u32)(FIELD_GET(PART_INFO_PROPS_MASK, (x))))
@@ -329,15 +336,13 @@ static int
__ffa_partition_info_get_regs(u32 uuid0, u32 uuid1, u32 uuid2, u32 uuid3,
struct ffa_partition_info *buffer, int num_parts)
{
- u16 buf_sz, start_idx, cur_idx, count = 0, prev_idx = 0, tag = 0;
+ u16 buf_sz, start_idx = 0, cur_idx, count = 0, tag = 0;
struct ffa_partition_info *buf = buffer;
ffa_value_t partition_info;
do {
__le64 *regs;
- int idx;
-
- start_idx = prev_idx ? prev_idx + 1 : 0;
+ int idx, nr_desc, buf_idx;
invoke_ffa_fn((ffa_value_t){
.a0 = FFA_PARTITION_INFO_GET_REGS,
@@ -353,15 +358,28 @@ __ffa_partition_info_get_regs(u32 uuid0, u32 uuid1, u32 uuid2, u32 uuid3,
count = PARTITION_COUNT(partition_info.a2);
if (!buffer || !num_parts) /* count only */
return count;
+ if (count > num_parts)
+ return -EINVAL;
cur_idx = CURRENT_INDEX(partition_info.a2);
+ if (cur_idx < start_idx || cur_idx >= count)
+ return -EINVAL;
+
+ nr_desc = cur_idx - start_idx + 1;
+ if (nr_desc > FFA_PART_INFO_GET_REGS_MAX_DESC)
+ return -EINVAL;
+
+ buf_idx = buf - buffer;
+ if (buf_idx + nr_desc > num_parts)
+ return -EINVAL;
+
tag = UUID_INFO_TAG(partition_info.a2);
buf_sz = PARTITION_INFO_SZ(partition_info.a2);
if (buf_sz > sizeof(*buffer))
buf_sz = sizeof(*buffer);
regs = (void *)&partition_info.a3;
- for (idx = 0; idx < cur_idx - start_idx + 1; idx++, buf++) {
+ for (idx = 0; idx < nr_desc; idx++, buf++) {
union {
uuid_t uuid;
u64 regs[2];
@@ -379,7 +397,7 @@ __ffa_partition_info_get_regs(u32 uuid0, u32 uuid1, u32 uuid2, u32 uuid3,
uuid_copy(&buf->uuid, &uuid_regs.uuid);
regs += 3;
}
- prev_idx = cur_idx;
+ start_idx = cur_idx + 1;
} while (cur_idx < (count - 1));
@@ -1189,7 +1207,7 @@ static int
ffa_sched_recv_cb_update(struct ffa_device *dev, ffa_sched_recv_cb callback,
void *cb_data, bool is_registration)
{
- struct ffa_dev_part_info *partition = NULL, *tmp;
+ struct ffa_dev_part_info *partition = NULL;
struct list_head *phead;
bool cb_valid;
@@ -1202,11 +1220,11 @@ ffa_sched_recv_cb_update(struct ffa_device *dev, ffa_sched_recv_cb callback,
return -EINVAL;
}
- list_for_each_entry_safe(partition, tmp, phead, node)
+ list_for_each_entry(partition, phead, node)
if (partition->dev == dev)
break;
- if (!partition) {
+ if (&partition->node == phead) {
pr_err("%s: No such partition ID 0x%x\n", __func__, dev->vm_id);
return -EINVAL;
}
@@ -1445,20 +1463,25 @@ static int ffa_notify_send(struct ffa_device *dev, int notify_id,
static void handle_notif_callbacks(u64 bitmap, enum notify_type type)
{
+ ffa_notifier_cb cb;
+ void *cb_data;
int notify_id;
- struct notifier_cb_info *cb_info = NULL;
for (notify_id = 0; notify_id <= FFA_MAX_NOTIFICATIONS && bitmap;
notify_id++, bitmap >>= 1) {
if (!(bitmap & 1))
continue;
- read_lock(&drv_info->notify_lock);
- cb_info = notifier_hnode_get_by_type(notify_id, type);
- read_unlock(&drv_info->notify_lock);
+ scoped_guard(read_lock, &drv_info->notify_lock) {
+ struct notifier_cb_info *cb_info;
- if (cb_info && cb_info->cb)
- cb_info->cb(notify_id, cb_info->cb_data);
+ cb_info = notifier_hnode_get_by_type(notify_id, type);
+ cb = cb_info ? cb_info->cb : NULL;
+ cb_data = cb_info ? cb_info->cb_data : NULL;
+ }
+
+ if (cb)
+ cb(notify_id, cb_data);
}
}
@@ -1466,39 +1489,56 @@ static void handle_fwk_notif_callbacks(u32 bitmap)
{
void *buf;
uuid_t uuid;
+ void *fwk_cb_data;
int notify_id = 0, target;
+ ffa_fwk_notifier_cb fwk_cb;
struct ffa_indirect_msg_hdr *msg;
- struct notifier_cb_info *cb_info = NULL;
+ size_t min_offset = offsetof(struct ffa_indirect_msg_hdr, uuid);
/* Only one framework notification defined and supported for now */
if (!(bitmap & FRAMEWORK_NOTIFY_RX_BUFFER_FULL))
return;
- mutex_lock(&drv_info->rx_lock);
+ scoped_guard(mutex, &drv_info->rx_lock) {
+ u32 offset, size;
- msg = drv_info->rx_buffer;
- buf = kmemdup((void *)msg + msg->offset, msg->size, GFP_KERNEL);
- if (!buf) {
- mutex_unlock(&drv_info->rx_lock);
- return;
- }
+ msg = drv_info->rx_buffer;
+ offset = msg->offset;
+ size = msg->size;
- target = SENDER_ID(msg->send_recv_id);
- if (msg->offset >= sizeof(*msg))
- uuid_copy(&uuid, &msg->uuid);
- else
- uuid_copy(&uuid, &uuid_null);
+ if (!size || (offset != min_offset && offset < sizeof(*msg)) ||
+ offset > drv_info->rxtx_bufsz ||
+ size > drv_info->rxtx_bufsz - offset) {
+ pr_err("invalid framework notification message\n");
+ ffa_rx_release();
+ return;
+ }
- mutex_unlock(&drv_info->rx_lock);
+ buf = kmemdup((void *)msg + offset, size, GFP_KERNEL);
+ if (!buf) {
+ ffa_rx_release();
+ return;
+ }
+
+ target = SENDER_ID(msg->send_recv_id);
+ if (offset >= sizeof(*msg))
+ uuid_copy(&uuid, &msg->uuid);
+ else
+ uuid_copy(&uuid, &uuid_null);
+ ffa_rx_release();
+ }
- ffa_rx_release();
+ scoped_guard(read_lock, &drv_info->notify_lock) {
+ struct notifier_cb_info *cb_info;
- read_lock(&drv_info->notify_lock);
- cb_info = notifier_hnode_get_by_vmid_uuid(notify_id, target, &uuid);
- read_unlock(&drv_info->notify_lock);
+ cb_info = notifier_hnode_get_by_vmid_uuid(notify_id, target,
+ &uuid);
+ fwk_cb = cb_info ? cb_info->fwk_cb : NULL;
+ fwk_cb_data = cb_info ? cb_info->cb_data : NULL;
+ }
- if (cb_info && cb_info->fwk_cb)
- cb_info->fwk_cb(notify_id, cb_info->cb_data, buf);
+ if (fwk_cb)
+ fwk_cb(notify_id, fwk_cb_data, buf);
kfree(buf);
}
@@ -1539,10 +1579,11 @@ ffa_self_notif_handle(u16 vcpu, bool is_per_vcpu, void *cb_data)
static void notif_pcpu_irq_work_fn(struct work_struct *work)
{
- struct ffa_drv_info *info = container_of(work, struct ffa_drv_info,
+ struct ffa_pcpu_irq *pcpu = container_of(work, struct ffa_pcpu_irq,
notif_pcpu_work);
+ struct ffa_drv_info *info = pcpu->info;
- ffa_self_notif_handle(smp_processor_id(), true, info);
+ notif_get_and_handle(info);
}
static const struct ffa_info_ops ffa_drv_info_ops = {
@@ -1629,6 +1670,15 @@ static struct notifier_block ffa_bus_nb = {
.notifier_call = ffa_bus_notifier,
};
+static void ffa_bus_notifier_unregister(void)
+{
+ if (!drv_info->bus_notifier_registered)
+ return;
+
+ bus_unregister_notifier(&ffa_bus_type, &ffa_bus_nb);
+ drv_info->bus_notifier_registered = false;
+}
+
static int ffa_xa_add_partition_info(struct ffa_device *dev)
{
struct ffa_dev_part_info *info;
@@ -1712,6 +1762,8 @@ static void ffa_partitions_cleanup(void)
struct list_head *phead;
unsigned long idx;
+ ffa_bus_notifier_unregister();
+
/* Clean up/free all registered devices */
ffa_devices_unregister();
@@ -1739,11 +1791,14 @@ static int ffa_setup_partitions(void)
ret = bus_register_notifier(&ffa_bus_type, &ffa_bus_nb);
if (ret)
pr_err("Failed to register FF-A bus notifiers\n");
+ else
+ drv_info->bus_notifier_registered = true;
}
count = ffa_partition_probe(&uuid_null, &pbuf);
if (count <= 0) {
pr_info("%s: No partitions found, error %d\n", __func__, count);
+ ffa_bus_notifier_unregister();
return -EINVAL;
}
@@ -1811,7 +1866,7 @@ static irqreturn_t notif_pend_irq_handler(int irq, void *irq_data)
struct ffa_drv_info *info = pcpu->info;
queue_work_on(smp_processor_id(), info->notif_pcpu_wq,
- &info->notif_pcpu_work);
+ &pcpu->notif_pcpu_work);
return IRQ_HANDLED;
}
@@ -1928,8 +1983,11 @@ static int ffa_init_pcpu_irq(void)
if (!irq_pcpu)
return -ENOMEM;
- for_each_present_cpu(cpu)
+ for_each_present_cpu(cpu) {
per_cpu_ptr(irq_pcpu, cpu)->info = drv_info;
+ INIT_WORK(&per_cpu_ptr(irq_pcpu, cpu)->notif_pcpu_work,
+ notif_pcpu_irq_work_fn);
+ }
drv_info->irq_pcpu = irq_pcpu;
@@ -1958,7 +2016,6 @@ static int ffa_init_pcpu_irq(void)
}
INIT_WORK(&drv_info->sched_recv_irq_work, ffa_sched_recv_irq_work_fn);
- INIT_WORK(&drv_info->notif_pcpu_work, notif_pcpu_irq_work_fn);
drv_info->notif_pcpu_wq = create_workqueue("ffa_pcpu_irq_notification");
if (!drv_info->notif_pcpu_wq)
return -EINVAL;
@@ -2063,11 +2120,12 @@ static int __init ffa_init(void)
rxtx_bufsz = SZ_4K;
}
+ rxtx_bufsz = PAGE_ALIGN(rxtx_bufsz);
drv_info->rxtx_bufsz = rxtx_bufsz;
drv_info->rx_buffer = alloc_pages_exact(rxtx_bufsz, GFP_KERNEL);
if (!drv_info->rx_buffer) {
ret = -ENOMEM;
- goto free_pages;
+ goto free_drv_info;
}
drv_info->tx_buffer = alloc_pages_exact(rxtx_bufsz, GFP_KERNEL);
@@ -2078,7 +2136,7 @@ static int __init ffa_init(void)
ret = ffa_rxtx_map(virt_to_phys(drv_info->tx_buffer),
virt_to_phys(drv_info->rx_buffer),
- PAGE_ALIGN(rxtx_bufsz) / FFA_PAGE_SIZE);
+ rxtx_bufsz / FFA_PAGE_SIZE);
if (ret) {
pr_err("failed to register FFA RxTx buffers\n");
goto free_pages;
diff --git a/drivers/firmware/efi/efi-pstore.c b/drivers/firmware/efi/efi-pstore.c
index a253b6144945..a5db3534f0a6 100644
--- a/drivers/firmware/efi/efi-pstore.c
+++ b/drivers/firmware/efi/efi-pstore.c
@@ -60,8 +60,10 @@ static int efi_pstore_open(struct pstore_info *psi)
return err;
psi->data = kzalloc(record_size, GFP_KERNEL);
- if (!psi->data)
+ if (!psi->data) {
+ efivar_unlock();
return -ENOMEM;
+ }
return 0;
}
diff --git a/drivers/firmware/efi/efi.c b/drivers/firmware/efi/efi.c
index d04be38f1750..318d1cc9a066 100644
--- a/drivers/firmware/efi/efi.c
+++ b/drivers/firmware/efi/efi.c
@@ -402,21 +402,11 @@ static void __init efi_debugfs_init(void)
static inline void efi_debugfs_init(void) {}
#endif
-/*
- * We register the efi subsystem with the firmware subsystem and the
- * efivars subsystem with the efi subsystem, if the system was booted with
- * EFI.
- */
-static int __init efisubsys_init(void)
+static int __init efipostcore_init(void)
{
- int error;
-
if (!efi_enabled(EFI_RUNTIME_SERVICES))
efi.runtime_supported_mask = 0;
- if (!efi_enabled(EFI_BOOT))
- return 0;
-
if (efi.runtime_supported_mask) {
/*
* Since we process only one efi_runtime_service() at a time, an
@@ -428,9 +418,23 @@ static int __init efisubsys_init(void)
pr_err("Creating efi_rts_wq failed, EFI runtime services disabled.\n");
clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
efi.runtime_supported_mask = 0;
- return 0;
}
}
+ return 0;
+}
+postcore_initcall(efipostcore_init);
+
+/*
+ * We register the efi subsystem with the firmware subsystem and the
+ * efivars subsystem with the efi subsystem, if the system was booted with
+ * EFI.
+ */
+static int __init efisubsys_init(void)
+{
+ int error;
+
+ if (!efi_enabled(EFI_BOOT))
+ return 0;
if (efi_rt_services_supported(EFI_RT_SUPPORTED_TIME_SERVICES))
platform_device_register_simple("rtc-efi", 0, NULL, 0);
diff --git a/drivers/firmware/efi/libstub/Makefile b/drivers/firmware/efi/libstub/Makefile
index 983a438e35f3..cfedb3025c26 100644
--- a/drivers/firmware/efi/libstub/Makefile
+++ b/drivers/firmware/efi/libstub/Makefile
@@ -66,7 +66,7 @@ KBUILD_AFLAGS := $(KBUILD_CFLAGS) -D__ASSEMBLY__
lib-y := efi-stub-helper.o gop.o secureboot.o tpm.o \
file.o mem.o random.o randomalloc.o pci.o \
skip_spaces.o lib-cmdline.o lib-ctype.o \
- alignedmem.o relocate.o printk.o vsprintf.o
+ alignedmem.o printk.o vsprintf.o
# include the stub's libfdt dependencies from lib/ when needed
libfdt-deps := fdt_rw.c fdt_ro.c fdt_wip.c fdt.c \
diff --git a/drivers/firmware/efi/libstub/efi-stub-helper.c b/drivers/firmware/efi/libstub/efi-stub-helper.c
index 7aa2f9ad2935..f27f2e1f0019 100644
--- a/drivers/firmware/efi/libstub/efi-stub-helper.c
+++ b/drivers/firmware/efi/libstub/efi-stub-helper.c
@@ -79,6 +79,10 @@ efi_status_t efi_parse_options(char const *cmdline)
efi_noinitrd = true;
} else if (IS_ENABLED(CONFIG_X86_64) && !strcmp(param, "no5lvl")) {
efi_no5lvl = true;
+ } else if (IS_ENABLED(CONFIG_LOONGARCH) &&
+ IS_ENABLED(CONFIG_HIBERNATION) &&
+ !strcmp(param, "resume") && val) {
+ efi_nokaslr = true; /* LoongArch can't KASLR for hibernation */
} else if (IS_ENABLED(CONFIG_ARCH_HAS_MEM_ENCRYPT) &&
!strcmp(param, "mem_encrypt") && val) {
if (parse_option_str(val, "on"))
diff --git a/drivers/firmware/efi/libstub/efistub.h b/drivers/firmware/efi/libstub/efistub.h
index 979a21818cc1..fd91fc15ec81 100644
--- a/drivers/firmware/efi/libstub/efistub.h
+++ b/drivers/firmware/efi/libstub/efistub.h
@@ -1104,13 +1104,6 @@ efi_status_t efi_allocate_pages_aligned(unsigned long size, unsigned long *addr,
efi_status_t efi_low_alloc_above(unsigned long size, unsigned long align,
unsigned long *addr, unsigned long min);
-efi_status_t efi_relocate_kernel(unsigned long *image_addr,
- unsigned long image_size,
- unsigned long alloc_size,
- unsigned long preferred_addr,
- unsigned long alignment,
- unsigned long min_addr);
-
efi_status_t efi_parse_options(char const *cmdline);
void efi_parse_option_graphics(char *option);
diff --git a/drivers/firmware/efi/libstub/loongarch-stub.c b/drivers/firmware/efi/libstub/loongarch-stub.c
index 736b6aae323d..c87ac7025107 100644
--- a/drivers/firmware/efi/libstub/loongarch-stub.c
+++ b/drivers/firmware/efi/libstub/loongarch-stub.c
@@ -14,6 +14,86 @@ extern int kernel_asize;
extern int kernel_fsize;
extern int kernel_entry;
+/**
+ * efi_relocate_kernel() - copy memory area
+ * @image_addr: pointer to address of memory area to copy
+ * @image_size: size of memory area to copy
+ * @alloc_size: minimum size of memory to allocate, must be greater or
+ * equal to image_size
+ * @preferred_addr: preferred target address
+ * @alignment: minimum alignment of the allocated memory area. It
+ * should be a power of two.
+ * @min_addr: minimum target address
+ *
+ * Copy a memory area to a newly allocated memory area aligned according
+ * to @alignment but at least EFI_ALLOC_ALIGN. If the preferred address
+ * is not available, the allocated address will not be below @min_addr.
+ * On exit, @image_addr is updated to the target copy address that was used.
+ *
+ * This function is used to copy the Linux kernel verbatim. It does not apply
+ * any relocation changes.
+ *
+ * Return: status code
+ */
+static
+efi_status_t efi_relocate_kernel(unsigned long *image_addr,
+ unsigned long image_size,
+ unsigned long alloc_size,
+ unsigned long preferred_addr,
+ unsigned long alignment,
+ unsigned long min_addr)
+{
+ unsigned long cur_image_addr;
+ unsigned long new_addr = 0;
+ efi_status_t status;
+ unsigned long nr_pages;
+ efi_physical_addr_t efi_addr = preferred_addr;
+
+ if (!image_addr || !image_size || !alloc_size)
+ return EFI_INVALID_PARAMETER;
+ if (alloc_size < image_size)
+ return EFI_INVALID_PARAMETER;
+
+ cur_image_addr = *image_addr;
+
+ /*
+ * The EFI firmware loader could have placed the kernel image
+ * anywhere in memory, but the kernel has restrictions on the
+ * max physical address it can run at. Some architectures
+ * also have a preferred address, so first try to relocate
+ * to the preferred address. If that fails, allocate as low
+ * as possible while respecting the required alignment.
+ */
+ nr_pages = round_up(alloc_size, EFI_ALLOC_ALIGN) / EFI_PAGE_SIZE;
+ status = efi_bs_call(allocate_pages, EFI_ALLOCATE_ADDRESS,
+ EFI_LOADER_DATA, nr_pages, &efi_addr);
+ new_addr = efi_addr;
+ /*
+ * If preferred address allocation failed allocate as low as
+ * possible.
+ */
+ if (status != EFI_SUCCESS) {
+ status = efi_low_alloc_above(alloc_size, alignment, &new_addr,
+ min_addr);
+ }
+ if (status != EFI_SUCCESS) {
+ efi_err("Failed to allocate usable memory for kernel.\n");
+ return status;
+ }
+
+ /*
+ * We know source/dest won't overlap since both memory ranges
+ * have been allocated by UEFI, so we can safely use memcpy.
+ */
+ memcpy((void *)new_addr, (void *)cur_image_addr, image_size);
+ efi_cache_sync_image(new_addr, image_size);
+
+ /* Return the new address of the relocated image. */
+ *image_addr = new_addr;
+
+ return status;
+}
+
efi_status_t handle_kernel_image(unsigned long *image_addr,
unsigned long *image_size,
unsigned long *reserve_addr,
diff --git a/drivers/firmware/efi/libstub/loongarch.c b/drivers/firmware/efi/libstub/loongarch.c
index 9825f5218137..2b0c87dc9908 100644
--- a/drivers/firmware/efi/libstub/loongarch.c
+++ b/drivers/firmware/efi/libstub/loongarch.c
@@ -18,6 +18,27 @@ efi_status_t check_platform_features(void)
return EFI_SUCCESS;
}
+void efi_cache_sync_image(unsigned long image_base, unsigned long alloc_size)
+{
+ asm volatile ("ibar 0" ::: "memory");
+}
+
+unsigned long efi_get_kimg_kaslr_address(void)
+{
+ unsigned int random_offset = 0;
+
+#ifdef CONFIG_RANDOMIZE_BASE
+ if (!efi_nokaslr) {
+ efi_get_random_bytes(sizeof(random_offset), (u8 *)&random_offset);
+ random_offset ^= (random_get_entropy() << 16);
+ random_offset &= (CONFIG_RANDOMIZE_BASE_MAX_OFFSET - 1);
+ random_offset = ALIGN(random_offset + SZ_64K, SZ_64K);
+ }
+#endif
+
+ return PHYSADDR(VMLINUX_LOAD_ADDRESS) + random_offset;
+}
+
struct exit_boot_struct {
efi_memory_desc_t *runtime_map;
int runtime_entry_count;
diff --git a/drivers/firmware/efi/libstub/mem.c b/drivers/firmware/efi/libstub/mem.c
index 9c82259eea81..59f3f83de50c 100644
--- a/drivers/firmware/efi/libstub/mem.c
+++ b/drivers/firmware/efi/libstub/mem.c
@@ -124,3 +124,85 @@ void efi_free(unsigned long size, unsigned long addr)
nr_pages = round_up(size, EFI_ALLOC_ALIGN) / EFI_PAGE_SIZE;
efi_bs_call(free_pages, addr, nr_pages);
}
+
+/**
+ * efi_low_alloc_above() - allocate pages at or above given address
+ * @size: size of the memory area to allocate
+ * @align: minimum alignment of the allocated memory area. It should
+ * a power of two.
+ * @addr: on exit the address of the allocated memory
+ * @min: minimum address to used for the memory allocation
+ *
+ * Allocate at the lowest possible address that is not below @min as
+ * EFI_LOADER_DATA. The allocated pages are aligned according to @align but at
+ * least EFI_ALLOC_ALIGN. The first allocated page will not below the address
+ * given by @min.
+ *
+ * Return: status code
+ */
+efi_status_t efi_low_alloc_above(unsigned long size, unsigned long align,
+ unsigned long *addr, unsigned long min)
+{
+ struct efi_boot_memmap *map __free(efi_pool) = NULL;
+ efi_status_t status;
+ unsigned long nr_pages;
+ int i;
+
+ status = efi_get_memory_map(&map, false);
+ if (status != EFI_SUCCESS)
+ return status;
+
+ /*
+ * Enforce minimum alignment that EFI or Linux requires when
+ * requesting a specific address. We are doing page-based (or
+ * larger) allocations, and both the address and size must meet
+ * alignment constraints.
+ */
+ if (align < EFI_ALLOC_ALIGN)
+ align = EFI_ALLOC_ALIGN;
+
+ size = round_up(size, EFI_ALLOC_ALIGN);
+ nr_pages = size / EFI_PAGE_SIZE;
+ for (i = 0; i < map->map_size / map->desc_size; i++) {
+ efi_memory_desc_t *desc;
+ unsigned long m = (unsigned long)map->map;
+ u64 start, end;
+
+ desc = efi_memdesc_ptr(m, map->desc_size, i);
+
+ if (desc->type != EFI_CONVENTIONAL_MEMORY)
+ continue;
+
+ if (desc->attribute & EFI_MEMORY_HOT_PLUGGABLE)
+ continue;
+
+ if (efi_soft_reserve_enabled() &&
+ (desc->attribute & EFI_MEMORY_SP))
+ continue;
+
+ if (desc->num_pages < nr_pages)
+ continue;
+
+ start = desc->phys_addr;
+ end = start + desc->num_pages * EFI_PAGE_SIZE;
+
+ if (start < min)
+ start = min;
+
+ start = round_up(start, align);
+ if ((start + size) > end)
+ continue;
+
+ status = efi_bs_call(allocate_pages, EFI_ALLOCATE_ADDRESS,
+ EFI_LOADER_DATA, nr_pages, &start);
+ if (status == EFI_SUCCESS) {
+ *addr = start;
+ break;
+ }
+ }
+
+ if (i == map->map_size / map->desc_size)
+ return EFI_NOT_FOUND;
+
+ return EFI_SUCCESS;
+}
diff --git a/drivers/firmware/efi/libstub/relocate.c b/drivers/firmware/efi/libstub/relocate.c
deleted file mode 100644
index d4264bfb6dc1..000000000000
--- a/drivers/firmware/efi/libstub/relocate.c
+++ /dev/null
@@ -1,166 +0,0 @@
-// SPDX-License-Identifier: GPL-2.0
-
-#include <linux/efi.h>
-#include <asm/efi.h>
-
-#include "efistub.h"
-
-/**
- * efi_low_alloc_above() - allocate pages at or above given address
- * @size: size of the memory area to allocate
- * @align: minimum alignment of the allocated memory area. It should
- * a power of two.
- * @addr: on exit the address of the allocated memory
- * @min: minimum address to used for the memory allocation
- *
- * Allocate at the lowest possible address that is not below @min as
- * EFI_LOADER_DATA. The allocated pages are aligned according to @align but at
- * least EFI_ALLOC_ALIGN. The first allocated page will not below the address
- * given by @min.
- *
- * Return: status code
- */
-efi_status_t efi_low_alloc_above(unsigned long size, unsigned long align,
- unsigned long *addr, unsigned long min)
-{
- struct efi_boot_memmap *map __free(efi_pool) = NULL;
- efi_status_t status;
- unsigned long nr_pages;
- int i;
-
- status = efi_get_memory_map(&map, false);
- if (status != EFI_SUCCESS)
- return status;
-
- /*
- * Enforce minimum alignment that EFI or Linux requires when
- * requesting a specific address. We are doing page-based (or
- * larger) allocations, and both the address and size must meet
- * alignment constraints.
- */
- if (align < EFI_ALLOC_ALIGN)
- align = EFI_ALLOC_ALIGN;
-
- size = round_up(size, EFI_ALLOC_ALIGN);
- nr_pages = size / EFI_PAGE_SIZE;
- for (i = 0; i < map->map_size / map->desc_size; i++) {
- efi_memory_desc_t *desc;
- unsigned long m = (unsigned long)map->map;
- u64 start, end;
-
- desc = efi_memdesc_ptr(m, map->desc_size, i);
-
- if (desc->type != EFI_CONVENTIONAL_MEMORY)
- continue;
-
- if (desc->attribute & EFI_MEMORY_HOT_PLUGGABLE)
- continue;
-
- if (efi_soft_reserve_enabled() &&
- (desc->attribute & EFI_MEMORY_SP))
- continue;
-
- if (desc->num_pages < nr_pages)
- continue;
-
- start = desc->phys_addr;
- end = start + desc->num_pages * EFI_PAGE_SIZE;
-
- if (start < min)
- start = min;
-
- start = round_up(start, align);
- if ((start + size) > end)
- continue;
-
- status = efi_bs_call(allocate_pages, EFI_ALLOCATE_ADDRESS,
- EFI_LOADER_DATA, nr_pages, &start);
- if (status == EFI_SUCCESS) {
- *addr = start;
- break;
- }
- }
-
- if (i == map->map_size / map->desc_size)
- return EFI_NOT_FOUND;
-
- return EFI_SUCCESS;
-}
-
-/**
- * efi_relocate_kernel() - copy memory area
- * @image_addr: pointer to address of memory area to copy
- * @image_size: size of memory area to copy
- * @alloc_size: minimum size of memory to allocate, must be greater or
- * equal to image_size
- * @preferred_addr: preferred target address
- * @alignment: minimum alignment of the allocated memory area. It
- * should be a power of two.
- * @min_addr: minimum target address
- *
- * Copy a memory area to a newly allocated memory area aligned according
- * to @alignment but at least EFI_ALLOC_ALIGN. If the preferred address
- * is not available, the allocated address will not be below @min_addr.
- * On exit, @image_addr is updated to the target copy address that was used.
- *
- * This function is used to copy the Linux kernel verbatim. It does not apply
- * any relocation changes.
- *
- * Return: status code
- */
-efi_status_t efi_relocate_kernel(unsigned long *image_addr,
- unsigned long image_size,
- unsigned long alloc_size,
- unsigned long preferred_addr,
- unsigned long alignment,
- unsigned long min_addr)
-{
- unsigned long cur_image_addr;
- unsigned long new_addr = 0;
- efi_status_t status;
- unsigned long nr_pages;
- efi_physical_addr_t efi_addr = preferred_addr;
-
- if (!image_addr || !image_size || !alloc_size)
- return EFI_INVALID_PARAMETER;
- if (alloc_size < image_size)
- return EFI_INVALID_PARAMETER;
-
- cur_image_addr = *image_addr;
-
- /*
- * The EFI firmware loader could have placed the kernel image
- * anywhere in memory, but the kernel has restrictions on the
- * max physical address it can run at. Some architectures
- * also have a preferred address, so first try to relocate
- * to the preferred address. If that fails, allocate as low
- * as possible while respecting the required alignment.
- */
- nr_pages = round_up(alloc_size, EFI_ALLOC_ALIGN) / EFI_PAGE_SIZE;
- status = efi_bs_call(allocate_pages, EFI_ALLOCATE_ADDRESS,
- EFI_LOADER_DATA, nr_pages, &efi_addr);
- new_addr = efi_addr;
- /*
- * If preferred address allocation failed allocate as low as
- * possible.
- */
- if (status != EFI_SUCCESS) {
- status = efi_low_alloc_above(alloc_size, alignment, &new_addr,
- min_addr);
- }
- if (status != EFI_SUCCESS) {
- efi_err("Failed to allocate usable memory for kernel.\n");
- return status;
- }
-
- /*
- * We know source/dest won't overlap since both memory ranges
- * have been allocated by UEFI, so we can safely use memcpy.
- */
- memcpy((void *)new_addr, (void *)cur_image_addr, image_size);
-
- /* Return the new address of the relocated image. */
- *image_addr = new_addr;
-
- return status;
-}
diff --git a/drivers/firmware/efi/sysfb_efi.c b/drivers/firmware/efi/sysfb_efi.c
index 4c3986ddcd54..685283bb7327 100644
--- a/drivers/firmware/efi/sysfb_efi.c
+++ b/drivers/firmware/efi/sysfb_efi.c
@@ -311,11 +311,14 @@ static const struct dmi_system_id efifb_dmi_swap_width_height[] __initconst = {
.callback = efifb_swap_width_height,
},
{
- /* Lenovo IdeaPad Duet 3 10IGL5 with 1200x1920 portrait screen */
+ /*
+ * Lenovo IdeaPad Duet 3 10IGL5 and 10IGL5-LTE with
+ * 1200x1920 portrait screen
+ */
.matches = {
DMI_EXACT_MATCH(DMI_SYS_VENDOR, "LENOVO"),
- DMI_EXACT_MATCH(DMI_PRODUCT_VERSION,
- "IdeaPad Duet 3 10IGL5"),
+ /* Non exact match to also match the LTE version */
+ DMI_MATCH(DMI_PRODUCT_VERSION, "IdeaPad Duet 3 10IGL5"),
},
.callback = efifb_swap_width_height,
},
diff --git a/drivers/firmware/psci/psci.c b/drivers/firmware/psci/psci.c
index 38ca190d4a22..e73bae6cb23a 100644
--- a/drivers/firmware/psci/psci.c
+++ b/drivers/firmware/psci/psci.c
@@ -539,12 +539,22 @@ static int psci_system_suspend(unsigned long unused)
static int psci_system_suspend_enter(suspend_state_t state)
{
+ pm_set_resume_via_firmware();
+
return cpu_suspend(0, psci_system_suspend);
}
+static int psci_system_suspend_begin(suspend_state_t state)
+{
+ pm_set_suspend_via_firmware();
+
+ return 0;
+}
+
static const struct platform_suspend_ops psci_suspend_ops = {
.valid = suspend_valid_only_mem,
.enter = psci_system_suspend_enter,
+ .begin = psci_system_suspend_begin,
};
static void __init psci_init_system_reset2(void)