1 // SPDX-License-Identifier: GPL-2.0-only
4 * Copyright 2020 Intel Corporation
8 * Each PRM service is an executable that is run in a restricted environment
9 * that is invoked by writing to the PlatformRtMechanism OperationRegion from
12 * init_prmt initializes the Platform Runtime Mechanism (PRM) services by
13 * processing data in the PRMT as well as registering an ACPI OperationRegion
14 * handler for the PlatformRtMechanism subtype.
17 #include <linux/kernel.h>
18 #include <linux/efi.h>
19 #include <linux/acpi.h>
20 #include <linux/prmt.h>
24 struct prm_mmio_addr_range {
30 struct prm_mmio_info {
32 struct prm_mmio_addr_range addr_ranges[];
42 struct prm_context_buffer {
43 char signature[ACPI_NAMESEG_SIZE];
47 u64 static_data_buffer;
48 struct prm_mmio_info *mmio_ranges;
52 static LIST_HEAD(prm_module_list);
54 struct prm_handler_info {
56 efi_status_t (__efiapi *handler_addr)(u64, void *);
57 u64 static_data_buffer_addr;
58 u64 acpi_param_buffer_addr;
60 struct list_head handler_list;
63 struct prm_module_info {
68 struct prm_mmio_info *mmio_info;
71 struct list_head module_list;
72 struct prm_handler_info handlers[] __counted_by(handler_count);
75 static u64 efi_pa_va_lookup(efi_guid_t *guid, u64 pa)
77 efi_memory_desc_t *md;
78 u64 pa_offset = pa & ~PAGE_MASK;
79 u64 page = pa & PAGE_MASK;
81 for_each_efi_memory_desc(md) {
82 if ((md->attribute & EFI_MEMORY_RUNTIME) &&
83 (md->phys_addr < pa && pa < md->phys_addr + PAGE_SIZE * md->num_pages)) {
84 return pa_offset + md->virt_addr + page - md->phys_addr;
88 pr_warn("Failed to find VA for GUID: %pUL, PA: 0x%llx", guid, pa);
93 #define get_first_handler(a) ((struct acpi_prmt_handler_info *) ((char *) (a) + a->handler_info_offset))
94 #define get_next_handler(a) ((struct acpi_prmt_handler_info *) (sizeof(struct acpi_prmt_handler_info) + (char *) a))
97 acpi_parse_prmt(union acpi_subtable_headers *header, const unsigned long end)
99 struct acpi_prmt_module_info *module_info;
100 struct acpi_prmt_handler_info *handler_info;
101 struct prm_handler_info *th;
102 struct prm_module_info *tm;
105 u32 module_info_size = 0;
106 u64 mmio_range_size = 0;
109 module_info = (struct acpi_prmt_module_info *) header;
110 module_info_size = struct_size(tm, handlers, module_info->handler_info_count);
111 tm = kmalloc(module_info_size, GFP_KERNEL);
113 goto parse_prmt_out1;
115 guid_copy(&tm->guid, (guid_t *) module_info->module_guid);
116 tm->major_rev = module_info->major_rev;
117 tm->minor_rev = module_info->minor_rev;
118 tm->handler_count = module_info->handler_info_count;
119 tm->updatable = true;
121 if (module_info->mmio_list_pointer) {
123 * Each module is associated with a list of addr
124 * ranges that it can use during the service
126 mmio_count = (u64 *) memremap(module_info->mmio_list_pointer, 8, MEMREMAP_WB);
128 goto parse_prmt_out2;
130 mmio_range_size = struct_size(tm->mmio_info, addr_ranges, *mmio_count);
131 tm->mmio_info = kmalloc(mmio_range_size, GFP_KERNEL);
133 goto parse_prmt_out3;
135 temp_mmio = memremap(module_info->mmio_list_pointer, mmio_range_size, MEMREMAP_WB);
137 goto parse_prmt_out4;
138 memmove(tm->mmio_info, temp_mmio, mmio_range_size);
140 tm->mmio_info = kmalloc(sizeof(*tm->mmio_info), GFP_KERNEL);
142 goto parse_prmt_out2;
144 tm->mmio_info->mmio_count = 0;
147 INIT_LIST_HEAD(&tm->module_list);
148 list_add(&tm->module_list, &prm_module_list);
150 handler_info = get_first_handler(module_info);
152 th = &tm->handlers[cur_handler];
154 guid_copy(&th->guid, (guid_t *)handler_info->handler_guid);
156 (void *)efi_pa_va_lookup(&th->guid, handler_info->handler_address);
158 th->static_data_buffer_addr =
159 efi_pa_va_lookup(&th->guid, handler_info->static_data_buffer_address);
161 th->acpi_param_buffer_addr =
162 efi_pa_va_lookup(&th->guid, handler_info->acpi_param_buffer_address);
164 } while (++cur_handler < tm->handler_count && (handler_info = get_next_handler(handler_info)));
169 kfree(tm->mmio_info);
171 memunmap(mmio_count);
179 #define GET_HANDLER 1
181 static void *find_guid_info(const guid_t *guid, u8 mode)
183 struct prm_handler_info *cur_handler;
184 struct prm_module_info *cur_module;
187 list_for_each_entry(cur_module, &prm_module_list, module_list) {
188 for (i = 0; i < cur_module->handler_count; ++i) {
189 cur_handler = &cur_module->handlers[i];
190 if (guid_equal(guid, &cur_handler->guid)) {
191 if (mode == GET_MODULE)
192 return (void *)cur_module;
194 return (void *)cur_handler;
202 static struct prm_module_info *find_prm_module(const guid_t *guid)
204 return (struct prm_module_info *)find_guid_info(guid, GET_MODULE);
207 static struct prm_handler_info *find_prm_handler(const guid_t *guid)
209 return (struct prm_handler_info *) find_guid_info(guid, GET_HANDLER);
212 /* In-coming PRM commands */
214 #define PRM_CMD_RUN_SERVICE 0
215 #define PRM_CMD_START_TRANSACTION 1
216 #define PRM_CMD_END_TRANSACTION 2
218 /* statuses that can be passed back to ASL */
220 #define PRM_HANDLER_SUCCESS 0
221 #define PRM_HANDLER_ERROR 1
222 #define INVALID_PRM_COMMAND 2
223 #define PRM_HANDLER_GUID_NOT_FOUND 3
224 #define UPDATE_LOCK_ALREADY_HELD 4
225 #define UPDATE_UNLOCK_WITHOUT_LOCK 5
227 int acpi_call_prm_handler(guid_t handler_guid, void *param_buffer)
229 struct prm_handler_info *handler = find_prm_handler(&handler_guid);
230 struct prm_module_info *module = find_prm_module(&handler_guid);
231 struct prm_context_buffer context;
234 if (!module || !handler)
237 memset(&context, 0, sizeof(context));
238 ACPI_COPY_NAMESEG(context.signature, "PRMC");
239 context.identifier = handler->guid;
240 context.static_data_buffer = handler->static_data_buffer_addr;
241 context.mmio_ranges = module->mmio_info;
243 status = efi_call_acpi_prm_handler(handler->handler_addr,
247 return efi_status_to_err(status);
249 EXPORT_SYMBOL_GPL(acpi_call_prm_handler);
252 * This is the PlatformRtMechanism opregion space handler.
253 * @function: indicates the read/write. In fact as the PlatformRtMechanism
254 * message is driven by command, only write is meaningful.
258 * @value : it is an in/out parameter. It points to the PRM message buffer.
259 * @handler_context: not used
261 static acpi_status acpi_platformrt_space_handler(u32 function,
262 acpi_physical_address addr,
263 u32 bits, acpi_integer *value,
264 void *handler_context,
265 void *region_context)
267 struct prm_buffer *buffer = ACPI_CAST_PTR(struct prm_buffer, value);
268 struct prm_handler_info *handler;
269 struct prm_module_info *module;
271 struct prm_context_buffer context;
273 if (!efi_enabled(EFI_RUNTIME_SERVICES)) {
274 pr_err_ratelimited("PRM: EFI runtime services no longer available\n");
275 return AE_NO_HANDLER;
279 * The returned acpi_status will always be AE_OK. Error values will be
280 * saved in the first byte of the PRM message buffer to be used by ASL.
282 switch (buffer->prm_cmd) {
283 case PRM_CMD_RUN_SERVICE:
285 handler = find_prm_handler(&buffer->handler_guid);
286 module = find_prm_module(&buffer->handler_guid);
287 if (!handler || !module)
290 if (!handler->handler_addr) {
291 buffer->prm_status = PRM_HANDLER_ERROR;
295 ACPI_COPY_NAMESEG(context.signature, "PRMC");
296 context.revision = 0x0;
297 context.reserved = 0x0;
298 context.identifier = handler->guid;
299 context.static_data_buffer = handler->static_data_buffer_addr;
300 context.mmio_ranges = module->mmio_info;
302 status = efi_call_acpi_prm_handler(handler->handler_addr,
303 handler->acpi_param_buffer_addr,
305 if (status == EFI_SUCCESS) {
306 buffer->prm_status = PRM_HANDLER_SUCCESS;
308 buffer->prm_status = PRM_HANDLER_ERROR;
309 buffer->efi_status = status;
313 case PRM_CMD_START_TRANSACTION:
315 module = find_prm_module(&buffer->handler_guid);
319 if (module->updatable)
320 module->updatable = false;
322 buffer->prm_status = UPDATE_LOCK_ALREADY_HELD;
325 case PRM_CMD_END_TRANSACTION:
327 module = find_prm_module(&buffer->handler_guid);
331 if (module->updatable)
332 buffer->prm_status = UPDATE_UNLOCK_WITHOUT_LOCK;
334 module->updatable = true;
339 buffer->prm_status = INVALID_PRM_COMMAND;
346 buffer->prm_status = PRM_HANDLER_GUID_NOT_FOUND;
350 void __init init_prmt(void)
352 struct acpi_table_header *tbl;
356 status = acpi_get_table(ACPI_SIG_PRMT, 0, &tbl);
357 if (ACPI_FAILURE(status))
360 mc = acpi_table_parse_entries(ACPI_SIG_PRMT, sizeof(struct acpi_table_prmt) +
361 sizeof (struct acpi_table_prmt_header),
362 0, acpi_parse_prmt, 0);
365 * Return immediately if PRMT table is not present or no PRM module found.
370 pr_info("PRM: found %u modules\n", mc);
372 if (!efi_enabled(EFI_RUNTIME_SERVICES)) {
373 pr_err("PRM: EFI runtime services unavailable\n");
377 status = acpi_install_address_space_handler(ACPI_ROOT_OBJECT,
378 ACPI_ADR_SPACE_PLATFORM_RT,
379 &acpi_platformrt_space_handler,
381 if (ACPI_FAILURE(status))
382 pr_alert("PRM: OperationRegion handler could not be installed\n");