xref: /openbmc/linux/drivers/mailbox/pcc.c (revision 4d75f5c664195b970e1cd2fd25b65b5eff257a0a)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  *	Copyright (C) 2014 Linaro Ltd.
4  *	Author:	Ashwin Chaugule <ashwin.chaugule@linaro.org>
5  *
6  *  PCC (Platform Communication Channel) is defined in the ACPI 5.0+
7  *  specification. It is a mailbox like mechanism to allow clients
8  *  such as CPPC (Collaborative Processor Performance Control), RAS
9  *  (Reliability, Availability and Serviceability) and MPST (Memory
10  *  Node Power State Table) to talk to the platform (e.g. BMC) through
11  *  shared memory regions as defined in the PCC table entries. The PCC
12  *  specification supports a Doorbell mechanism for the PCC clients
13  *  to notify the platform about new data. This Doorbell information
14  *  is also specified in each PCC table entry.
15  *
16  *  Typical high level flow of operation is:
17  *
18  *  PCC Reads:
19  *  * Client tries to acquire a channel lock.
20  *  * After it is acquired it writes READ cmd in communication region cmd
21  *		address.
22  *  * Client issues mbox_send_message() which rings the PCC doorbell
23  *		for its PCC channel.
24  *  * If command completes, then client has control over channel and
25  *		it can proceed with its reads.
26  *  * Client releases lock.
27  *
28  *  PCC Writes:
29  *  * Client tries to acquire channel lock.
30  *  * Client writes to its communication region after it acquires a
31  *		channel lock.
32  *  * Client writes WRITE cmd in communication region cmd address.
33  *  * Client issues mbox_send_message() which rings the PCC doorbell
34  *		for its PCC channel.
35  *  * If command completes, then writes have succeeded and it can release
36  *		the channel lock.
37  *
38  *  There is a Nominal latency defined for each channel which indicates
39  *  how long to wait until a command completes. If command is not complete
40  *  the client needs to retry or assume failure.
41  *
42  *	For more details about PCC, please see the ACPI specification from
43  *  http://www.uefi.org/ACPIv5.1 Section 14.
44  *
45  *  This file implements PCC as a Mailbox controller and allows for PCC
46  *  clients to be implemented as its Mailbox Client Channels.
47  */
48 
49 #include <linux/acpi.h>
50 #include <linux/delay.h>
51 #include <linux/io.h>
52 #include <linux/init.h>
53 #include <linux/interrupt.h>
54 #include <linux/list.h>
55 #include <linux/log2.h>
56 #include <linux/platform_device.h>
57 #include <linux/mailbox_controller.h>
58 #include <linux/mailbox_client.h>
59 #include <linux/io-64-nonatomic-lo-hi.h>
60 #include <acpi/pcc.h>
61 
62 #include "mailbox.h"
63 
64 #define MBOX_IRQ_NAME		"pcc-mbox"
65 
66 /**
67  * struct pcc_chan_reg - PCC register bundle
68  *
69  * @vaddr: cached virtual address for this register
70  * @gas: pointer to the generic address structure for this register
71  * @preserve_mask: bitmask to preserve when writing to this register
72  * @set_mask: bitmask to set when writing to this register
73  * @status_mask: bitmask to determine and/or update the status for this register
74  */
75 struct pcc_chan_reg {
76 	void __iomem *vaddr;
77 	struct acpi_generic_address *gas;
78 	u64 preserve_mask;
79 	u64 set_mask;
80 	u64 status_mask;
81 };
82 
83 /**
84  * struct pcc_chan_info - PCC channel specific information
85  *
86  * @chan: PCC channel information with Shared Memory Region info
87  * @db: PCC register bundle for the doorbell register
88  * @plat_irq_ack: PCC register bundle for the platform interrupt acknowledge
89  *	register
90  * @cmd_complete: PCC register bundle for the command complete check register
91  * @cmd_update: PCC register bundle for the command complete update register
92  * @error: PCC register bundle for the error status register
93  * @plat_irq: platform interrupt
94  * @type: PCC subspace type
95  * @plat_irq_flags: platform interrupt flags
96  * @chan_in_use: this flag is used just to check if the interrupt needs
97  *		handling when it is shared. Since only one transfer can occur
98  *		at a time and mailbox takes care of locking, this flag can be
99  *		accessed without a lock. Note: the type only support the
100  *		communication from OSPM to Platform, like type3, use it, and
101  *		other types completely ignore it.
102  */
103 struct pcc_chan_info {
104 	struct pcc_mbox_chan chan;
105 	struct pcc_chan_reg db;
106 	struct pcc_chan_reg plat_irq_ack;
107 	struct pcc_chan_reg cmd_complete;
108 	struct pcc_chan_reg cmd_update;
109 	struct pcc_chan_reg error;
110 	int plat_irq;
111 	u8 type;
112 	unsigned int plat_irq_flags;
113 	bool chan_in_use;
114 };
115 
116 #define to_pcc_chan_info(c) container_of(c, struct pcc_chan_info, chan)
117 static struct pcc_chan_info *chan_info;
118 static int pcc_chan_count;
119 
120 static int pcc_send_data(struct mbox_chan *chan, void *data);
121 
122 /*
123  * PCC can be used with perf critical drivers such as CPPC
124  * So it makes sense to locally cache the virtual address and
125  * use it to read/write to PCC registers such as doorbell register
126  *
127  * The below read_register and write_registers are used to read and
128  * write from perf critical registers such as PCC doorbell register
129  */
read_register(void __iomem * vaddr,u64 * val,unsigned int bit_width)130 static void read_register(void __iomem *vaddr, u64 *val, unsigned int bit_width)
131 {
132 	switch (bit_width) {
133 	case 8:
134 		*val = readb(vaddr);
135 		break;
136 	case 16:
137 		*val = readw(vaddr);
138 		break;
139 	case 32:
140 		*val = readl(vaddr);
141 		break;
142 	case 64:
143 		*val = readq(vaddr);
144 		break;
145 	}
146 }
147 
write_register(void __iomem * vaddr,u64 val,unsigned int bit_width)148 static void write_register(void __iomem *vaddr, u64 val, unsigned int bit_width)
149 {
150 	switch (bit_width) {
151 	case 8:
152 		writeb(val, vaddr);
153 		break;
154 	case 16:
155 		writew(val, vaddr);
156 		break;
157 	case 32:
158 		writel(val, vaddr);
159 		break;
160 	case 64:
161 		writeq(val, vaddr);
162 		break;
163 	}
164 }
165 
pcc_chan_reg_read(struct pcc_chan_reg * reg,u64 * val)166 static int pcc_chan_reg_read(struct pcc_chan_reg *reg, u64 *val)
167 {
168 	int ret = 0;
169 
170 	if (!reg->gas) {
171 		*val = 0;
172 		return 0;
173 	}
174 
175 	if (reg->vaddr)
176 		read_register(reg->vaddr, val, reg->gas->bit_width);
177 	else
178 		ret = acpi_read(val, reg->gas);
179 
180 	return ret;
181 }
182 
pcc_chan_reg_write(struct pcc_chan_reg * reg,u64 val)183 static int pcc_chan_reg_write(struct pcc_chan_reg *reg, u64 val)
184 {
185 	int ret = 0;
186 
187 	if (!reg->gas)
188 		return 0;
189 
190 	if (reg->vaddr)
191 		write_register(reg->vaddr, val, reg->gas->bit_width);
192 	else
193 		ret = acpi_write(val, reg->gas);
194 
195 	return ret;
196 }
197 
pcc_chan_reg_read_modify_write(struct pcc_chan_reg * reg)198 static int pcc_chan_reg_read_modify_write(struct pcc_chan_reg *reg)
199 {
200 	int ret = 0;
201 	u64 val;
202 
203 	ret = pcc_chan_reg_read(reg, &val);
204 	if (ret)
205 		return ret;
206 
207 	val &= reg->preserve_mask;
208 	val |= reg->set_mask;
209 
210 	return pcc_chan_reg_write(reg, val);
211 }
212 
213 /**
214  * pcc_map_interrupt - Map a PCC subspace GSI to a linux IRQ number
215  * @interrupt: GSI number.
216  * @flags: interrupt flags
217  *
218  * Returns: a valid linux IRQ number on success
219  *		0 or -EINVAL on failure
220  */
pcc_map_interrupt(u32 interrupt,u32 flags)221 static int pcc_map_interrupt(u32 interrupt, u32 flags)
222 {
223 	int trigger, polarity;
224 
225 	if (!interrupt)
226 		return 0;
227 
228 	trigger = (flags & ACPI_PCCT_INTERRUPT_MODE) ? ACPI_EDGE_SENSITIVE
229 			: ACPI_LEVEL_SENSITIVE;
230 
231 	polarity = (flags & ACPI_PCCT_INTERRUPT_POLARITY) ? ACPI_ACTIVE_LOW
232 			: ACPI_ACTIVE_HIGH;
233 
234 	return acpi_register_gsi(NULL, interrupt, trigger, polarity);
235 }
236 
pcc_chan_plat_irq_can_be_shared(struct pcc_chan_info * pchan)237 static bool pcc_chan_plat_irq_can_be_shared(struct pcc_chan_info *pchan)
238 {
239 	return (pchan->plat_irq_flags & ACPI_PCCT_INTERRUPT_MODE) ==
240 		ACPI_LEVEL_SENSITIVE;
241 }
242 
pcc_mbox_cmd_complete_check(struct pcc_chan_info * pchan)243 static bool pcc_mbox_cmd_complete_check(struct pcc_chan_info *pchan)
244 {
245 	u64 val;
246 	int ret;
247 
248 	ret = pcc_chan_reg_read(&pchan->cmd_complete, &val);
249 	if (ret)
250 		return false;
251 
252 	if (!pchan->cmd_complete.gas)
253 		return true;
254 
255 	/*
256 	 * Judge if the channel respond the interrupt based on the value of
257 	 * command complete.
258 	 */
259 	val &= pchan->cmd_complete.status_mask;
260 
261 	/*
262 	 * If this is PCC slave subspace channel, and the command complete
263 	 * bit 0 indicates that Platform is sending a notification and OSPM
264 	 * needs to respond this interrupt to process this command.
265 	 */
266 	if (pchan->type == ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE)
267 		return !val;
268 
269 	return !!val;
270 }
271 
check_and_ack(struct pcc_chan_info * pchan,struct mbox_chan * chan)272 static void check_and_ack(struct pcc_chan_info *pchan, struct mbox_chan *chan)
273 {
274 	struct acpi_pcct_ext_pcc_shared_memory pcc_hdr;
275 
276 	if (pchan->type != ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE)
277 		return;
278 	/* If the memory region has not been mapped, we cannot
279 	 * determine if we need to send the message, but we still
280 	 * need to set the cmd_update flag before returning.
281 	 */
282 	if (pchan->chan.shmem == NULL) {
283 		pcc_chan_reg_read_modify_write(&pchan->cmd_update);
284 		return;
285 	}
286 	memcpy_fromio(&pcc_hdr, pchan->chan.shmem,
287 		      sizeof(struct acpi_pcct_ext_pcc_shared_memory));
288 	/*
289 	 * The PCC slave subspace channel needs to set the command complete bit
290 	 * after processing message. If the PCC_ACK_FLAG is set, it should also
291 	 * ring the doorbell.
292 	 *
293 	 * The PCC master subspace channel clears chan_in_use to free channel.
294 	 */
295 	if (le32_to_cpup(&pcc_hdr.flags) & PCC_ACK_FLAG_MASK)
296 		pcc_send_data(chan, NULL);
297 	else
298 		pcc_chan_reg_read_modify_write(&pchan->cmd_update);
299 }
300 
301 /**
302  * pcc_mbox_irq - PCC mailbox interrupt handler
303  * @irq:	interrupt number
304  * @p: data/cookie passed from the caller to identify the channel
305  *
306  * Returns: IRQ_HANDLED if interrupt is handled or IRQ_NONE if not
307  */
pcc_mbox_irq(int irq,void * p)308 static irqreturn_t pcc_mbox_irq(int irq, void *p)
309 {
310 	struct pcc_chan_info *pchan;
311 	struct mbox_chan *chan = p;
312 	u64 val;
313 	int ret;
314 
315 	pchan = chan->con_priv;
316 
317 	if (pcc_chan_reg_read_modify_write(&pchan->plat_irq_ack))
318 		return IRQ_NONE;
319 
320 	if (pchan->type == ACPI_PCCT_TYPE_EXT_PCC_MASTER_SUBSPACE &&
321 	    !pchan->chan_in_use)
322 		return IRQ_NONE;
323 
324 	if (!pcc_mbox_cmd_complete_check(pchan))
325 		return IRQ_NONE;
326 
327 	ret = pcc_chan_reg_read(&pchan->error, &val);
328 	if (ret)
329 		return IRQ_NONE;
330 	val &= pchan->error.status_mask;
331 	if (val) {
332 		val &= ~pchan->error.status_mask;
333 		pcc_chan_reg_write(&pchan->error, val);
334 		return IRQ_NONE;
335 	}
336 
337 	/*
338 	 * Clear this flag after updating interrupt ack register and just
339 	 * before mbox_chan_received_data() which might call pcc_send_data()
340 	 * where the flag is set again to start new transfer. This is
341 	 * required to avoid any possible race in updatation of this flag.
342 	 */
343 	pchan->chan_in_use = false;
344 	mbox_chan_received_data(chan, NULL);
345 
346 	check_and_ack(pchan, chan);
347 
348 	return IRQ_HANDLED;
349 }
350 
351 /**
352  * pcc_mbox_request_channel - PCC clients call this function to
353  *		request a pointer to their PCC subspace, from which they
354  *		can get the details of communicating with the remote.
355  * @cl: Pointer to Mailbox client, so we know where to bind the
356  *		Channel.
357  * @subspace_id: The PCC Subspace index as parsed in the PCC client
358  *		ACPI package. This is used to lookup the array of PCC
359  *		subspaces as parsed by the PCC Mailbox controller.
360  *
361  * Return: Pointer to the PCC Mailbox Channel if successful or ERR_PTR.
362  */
363 struct pcc_mbox_chan *
pcc_mbox_request_channel(struct mbox_client * cl,int subspace_id)364 pcc_mbox_request_channel(struct mbox_client *cl, int subspace_id)
365 {
366 	struct pcc_chan_info *pchan;
367 	struct mbox_chan *chan;
368 	int rc;
369 
370 	if (subspace_id < 0 || subspace_id >= pcc_chan_count)
371 		return ERR_PTR(-ENOENT);
372 
373 	pchan = chan_info + subspace_id;
374 	chan = pchan->chan.mchan;
375 	if (IS_ERR(chan) || chan->cl) {
376 		pr_err("Channel not found for idx: %d\n", subspace_id);
377 		return ERR_PTR(-EBUSY);
378 	}
379 
380 	rc = mbox_bind_client(chan, cl);
381 	if (rc)
382 		return ERR_PTR(rc);
383 
384 	return &pchan->chan;
385 }
386 EXPORT_SYMBOL_GPL(pcc_mbox_request_channel);
387 
388 /**
389  * pcc_mbox_free_channel - Clients call this to free their Channel.
390  *
391  * @pchan: Pointer to the PCC mailbox channel as returned by
392  *	   pcc_mbox_request_channel()
393  */
pcc_mbox_free_channel(struct pcc_mbox_chan * pchan)394 void pcc_mbox_free_channel(struct pcc_mbox_chan *pchan)
395 {
396 	struct mbox_chan *chan = pchan->mchan;
397 	struct pcc_chan_info *pchan_info;
398 	struct pcc_mbox_chan *pcc_mbox_chan;
399 
400 	if (!chan || !chan->cl)
401 		return;
402 	pchan_info = chan->con_priv;
403 	pcc_mbox_chan = &pchan_info->chan;
404 	if (pcc_mbox_chan->shmem) {
405 		iounmap(pcc_mbox_chan->shmem);
406 		pcc_mbox_chan->shmem = NULL;
407 	}
408 
409 	mbox_free_channel(chan);
410 }
411 EXPORT_SYMBOL_GPL(pcc_mbox_free_channel);
412 
pcc_mbox_ioremap(struct mbox_chan * chan)413 int pcc_mbox_ioremap(struct mbox_chan *chan)
414 {
415 	struct pcc_chan_info *pchan_info;
416 	struct pcc_mbox_chan *pcc_mbox_chan;
417 
418 	if (!chan || !chan->cl)
419 		return -1;
420 	pchan_info = chan->con_priv;
421 	pcc_mbox_chan = &pchan_info->chan;
422 
423 	pcc_mbox_chan->shmem = acpi_os_ioremap(pcc_mbox_chan->shmem_base_addr,
424 					       pcc_mbox_chan->shmem_size);
425 	if (!pcc_mbox_chan->shmem)
426 		return -ENXIO;
427 
428 	return 0;
429 }
430 EXPORT_SYMBOL_GPL(pcc_mbox_ioremap);
431 
432 /**
433  * pcc_send_data - Called from Mailbox Controller code. Used
434  *		here only to ring the channel doorbell. The PCC client
435  *		specific read/write is done in the client driver in
436  *		order to maintain atomicity over PCC channel once
437  *		OS has control over it. See above for flow of operations.
438  * @chan: Pointer to Mailbox channel over which to send data.
439  * @data: Client specific data written over channel. Used here
440  *		only for debug after PCC transaction completes.
441  *
442  * Return: Err if something failed else 0 for success.
443  */
pcc_send_data(struct mbox_chan * chan,void * data)444 static int pcc_send_data(struct mbox_chan *chan, void *data)
445 {
446 	int ret;
447 	struct pcc_chan_info *pchan = chan->con_priv;
448 
449 	ret = pcc_chan_reg_read_modify_write(&pchan->cmd_update);
450 	if (ret)
451 		return ret;
452 
453 	ret = pcc_chan_reg_read_modify_write(&pchan->db);
454 	if (!ret && pchan->plat_irq > 0)
455 		pchan->chan_in_use = true;
456 
457 	return ret;
458 }
459 
460 /**
461  * pcc_startup - Called from Mailbox Controller code. Used here
462  *		to request the interrupt.
463  * @chan: Pointer to Mailbox channel to startup.
464  *
465  * Return: Err if something failed else 0 for success.
466  */
pcc_startup(struct mbox_chan * chan)467 static int pcc_startup(struct mbox_chan *chan)
468 {
469 	struct pcc_chan_info *pchan = chan->con_priv;
470 	unsigned long irqflags;
471 	int rc;
472 
473 	if (pchan->plat_irq > 0) {
474 		irqflags = pcc_chan_plat_irq_can_be_shared(pchan) ?
475 						IRQF_SHARED | IRQF_ONESHOT : 0;
476 		rc = devm_request_irq(chan->mbox->dev, pchan->plat_irq, pcc_mbox_irq,
477 				      irqflags, MBOX_IRQ_NAME, chan);
478 		if (unlikely(rc)) {
479 			dev_err(chan->mbox->dev, "failed to register PCC interrupt %d\n",
480 				pchan->plat_irq);
481 			return rc;
482 		}
483 	}
484 
485 	return 0;
486 }
487 
488 /**
489  * pcc_shutdown - Called from Mailbox Controller code. Used here
490  *		to free the interrupt.
491  * @chan: Pointer to Mailbox channel to shutdown.
492  */
pcc_shutdown(struct mbox_chan * chan)493 static void pcc_shutdown(struct mbox_chan *chan)
494 {
495 	struct pcc_chan_info *pchan = chan->con_priv;
496 
497 	if (pchan->plat_irq > 0)
498 		devm_free_irq(chan->mbox->dev, pchan->plat_irq, chan);
499 }
500 
501 static const struct mbox_chan_ops pcc_chan_ops = {
502 	.send_data = pcc_send_data,
503 	.startup = pcc_startup,
504 	.shutdown = pcc_shutdown,
505 };
506 
507 /**
508  * parse_pcc_subspace - Count PCC subspaces defined
509  * @header: Pointer to the ACPI subtable header under the PCCT.
510  * @end: End of subtable entry.
511  *
512  * Return: If we find a PCC subspace entry of a valid type, return 0.
513  *	Otherwise, return -EINVAL.
514  *
515  * This gets called for each entry in the PCC table.
516  */
parse_pcc_subspace(union acpi_subtable_headers * header,const unsigned long end)517 static int parse_pcc_subspace(union acpi_subtable_headers *header,
518 		const unsigned long end)
519 {
520 	struct acpi_pcct_subspace *ss = (struct acpi_pcct_subspace *) header;
521 
522 	if (ss->header.type < ACPI_PCCT_TYPE_RESERVED)
523 		return 0;
524 
525 	return -EINVAL;
526 }
527 
528 static int
pcc_chan_reg_init(struct pcc_chan_reg * reg,struct acpi_generic_address * gas,u64 preserve_mask,u64 set_mask,u64 status_mask,char * name)529 pcc_chan_reg_init(struct pcc_chan_reg *reg, struct acpi_generic_address *gas,
530 		  u64 preserve_mask, u64 set_mask, u64 status_mask, char *name)
531 {
532 	if (gas->space_id == ACPI_ADR_SPACE_SYSTEM_MEMORY) {
533 		if (!(gas->bit_width >= 8 && gas->bit_width <= 64 &&
534 		      is_power_of_2(gas->bit_width))) {
535 			pr_err("Error: Cannot access register of %u bit width",
536 			       gas->bit_width);
537 			return -EFAULT;
538 		}
539 
540 		reg->vaddr = acpi_os_ioremap(gas->address, gas->bit_width / 8);
541 		if (!reg->vaddr) {
542 			pr_err("Failed to ioremap PCC %s register\n", name);
543 			return -ENOMEM;
544 		}
545 	}
546 	reg->gas = gas;
547 	reg->preserve_mask = preserve_mask;
548 	reg->set_mask = set_mask;
549 	reg->status_mask = status_mask;
550 	return 0;
551 }
552 
553 /**
554  * pcc_parse_subspace_irq - Parse the PCC IRQ and PCC ACK register
555  *
556  * @pchan: Pointer to the PCC channel info structure.
557  * @pcct_entry: Pointer to the ACPI subtable header.
558  *
559  * Return: 0 for Success, else errno.
560  *
561  * There should be one entry per PCC channel. This gets called for each
562  * entry in the PCC table. This uses PCCY Type1 structure for all applicable
563  * types(Type 1-4) to fetch irq
564  */
pcc_parse_subspace_irq(struct pcc_chan_info * pchan,struct acpi_subtable_header * pcct_entry)565 static int pcc_parse_subspace_irq(struct pcc_chan_info *pchan,
566 				  struct acpi_subtable_header *pcct_entry)
567 {
568 	int ret = 0;
569 	struct acpi_pcct_hw_reduced *pcct_ss;
570 
571 	if (pcct_entry->type < ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE ||
572 	    pcct_entry->type > ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE)
573 		return 0;
574 
575 	pcct_ss = (struct acpi_pcct_hw_reduced *)pcct_entry;
576 	pchan->plat_irq = pcc_map_interrupt(pcct_ss->platform_interrupt,
577 					    (u32)pcct_ss->flags);
578 	if (pchan->plat_irq <= 0) {
579 		pr_err("PCC GSI %d not registered\n",
580 		       pcct_ss->platform_interrupt);
581 		return -EINVAL;
582 	}
583 	pchan->plat_irq_flags = pcct_ss->flags;
584 
585 	if (pcct_ss->header.type == ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE_TYPE2) {
586 		struct acpi_pcct_hw_reduced_type2 *pcct2_ss = (void *)pcct_ss;
587 
588 		ret = pcc_chan_reg_init(&pchan->plat_irq_ack,
589 					&pcct2_ss->platform_ack_register,
590 					pcct2_ss->ack_preserve_mask,
591 					pcct2_ss->ack_write_mask, 0,
592 					"PLAT IRQ ACK");
593 
594 	} else if (pcct_ss->header.type == ACPI_PCCT_TYPE_EXT_PCC_MASTER_SUBSPACE ||
595 		   pcct_ss->header.type == ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE) {
596 		struct acpi_pcct_ext_pcc_master *pcct_ext = (void *)pcct_ss;
597 
598 		ret = pcc_chan_reg_init(&pchan->plat_irq_ack,
599 					&pcct_ext->platform_ack_register,
600 					pcct_ext->ack_preserve_mask,
601 					pcct_ext->ack_set_mask, 0,
602 					"PLAT IRQ ACK");
603 	}
604 
605 	if (pcc_chan_plat_irq_can_be_shared(pchan) &&
606 	    !pchan->plat_irq_ack.gas) {
607 		pr_err("PCC subspace has level IRQ with no ACK register\n");
608 		return -EINVAL;
609 	}
610 
611 	return ret;
612 }
613 
614 /**
615  * pcc_parse_subspace_db_reg - Parse the PCC doorbell register
616  *
617  * @pchan: Pointer to the PCC channel info structure.
618  * @pcct_entry: Pointer to the ACPI subtable header.
619  *
620  * Return: 0 for Success, else errno.
621  */
pcc_parse_subspace_db_reg(struct pcc_chan_info * pchan,struct acpi_subtable_header * pcct_entry)622 static int pcc_parse_subspace_db_reg(struct pcc_chan_info *pchan,
623 				     struct acpi_subtable_header *pcct_entry)
624 {
625 	int ret = 0;
626 
627 	if (pcct_entry->type <= ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE_TYPE2) {
628 		struct acpi_pcct_subspace *pcct_ss;
629 
630 		pcct_ss = (struct acpi_pcct_subspace *)pcct_entry;
631 
632 		ret = pcc_chan_reg_init(&pchan->db,
633 					&pcct_ss->doorbell_register,
634 					pcct_ss->preserve_mask,
635 					pcct_ss->write_mask, 0,	"Doorbell");
636 
637 	} else {
638 		struct acpi_pcct_ext_pcc_master *pcct_ext;
639 
640 		pcct_ext = (struct acpi_pcct_ext_pcc_master *)pcct_entry;
641 
642 		ret = pcc_chan_reg_init(&pchan->db,
643 					&pcct_ext->doorbell_register,
644 					pcct_ext->preserve_mask,
645 					pcct_ext->write_mask, 0, "Doorbell");
646 		if (ret)
647 			return ret;
648 
649 		ret = pcc_chan_reg_init(&pchan->cmd_complete,
650 					&pcct_ext->cmd_complete_register,
651 					0, 0, pcct_ext->cmd_complete_mask,
652 					"Command Complete Check");
653 		if (ret)
654 			return ret;
655 
656 		ret = pcc_chan_reg_init(&pchan->cmd_update,
657 					&pcct_ext->cmd_update_register,
658 					pcct_ext->cmd_update_preserve_mask,
659 					pcct_ext->cmd_update_set_mask, 0,
660 					"Command Complete Update");
661 		if (ret)
662 			return ret;
663 
664 		ret = pcc_chan_reg_init(&pchan->error,
665 					&pcct_ext->error_status_register,
666 					0, 0, pcct_ext->error_status_mask,
667 					"Error Status");
668 	}
669 	return ret;
670 }
671 
672 /**
673  * pcc_parse_subspace_shmem - Parse the PCC Shared Memory Region information
674  *
675  * @pchan: Pointer to the PCC channel info structure.
676  * @pcct_entry: Pointer to the ACPI subtable header.
677  *
678  */
pcc_parse_subspace_shmem(struct pcc_chan_info * pchan,struct acpi_subtable_header * pcct_entry)679 static void pcc_parse_subspace_shmem(struct pcc_chan_info *pchan,
680 				     struct acpi_subtable_header *pcct_entry)
681 {
682 	if (pcct_entry->type <= ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE_TYPE2) {
683 		struct acpi_pcct_subspace *pcct_ss =
684 			(struct acpi_pcct_subspace *)pcct_entry;
685 
686 		pchan->chan.shmem_base_addr = pcct_ss->base_address;
687 		pchan->chan.shmem_size = pcct_ss->length;
688 		pchan->chan.latency = pcct_ss->latency;
689 		pchan->chan.max_access_rate = pcct_ss->max_access_rate;
690 		pchan->chan.min_turnaround_time = pcct_ss->min_turnaround_time;
691 	} else {
692 		struct acpi_pcct_ext_pcc_master *pcct_ext =
693 			(struct acpi_pcct_ext_pcc_master *)pcct_entry;
694 
695 		pchan->chan.shmem_base_addr = pcct_ext->base_address;
696 		pchan->chan.shmem_size = pcct_ext->length;
697 		pchan->chan.latency = pcct_ext->latency;
698 		pchan->chan.max_access_rate = pcct_ext->max_access_rate;
699 		pchan->chan.min_turnaround_time = pcct_ext->min_turnaround_time;
700 	}
701 }
702 
703 /**
704  * acpi_pcc_probe - Parse the ACPI tree for the PCCT.
705  *
706  * Return: 0 for Success, else errno.
707  */
acpi_pcc_probe(void)708 static int __init acpi_pcc_probe(void)
709 {
710 	int count, i, rc = 0;
711 	acpi_status status;
712 	struct acpi_table_header *pcct_tbl;
713 	struct acpi_subtable_proc proc[ACPI_PCCT_TYPE_RESERVED];
714 
715 	status = acpi_get_table(ACPI_SIG_PCCT, 0, &pcct_tbl);
716 	if (ACPI_FAILURE(status) || !pcct_tbl)
717 		return -ENODEV;
718 
719 	/* Set up the subtable handlers */
720 	for (i = ACPI_PCCT_TYPE_GENERIC_SUBSPACE;
721 	     i < ACPI_PCCT_TYPE_RESERVED; i++) {
722 		proc[i].id = i;
723 		proc[i].count = 0;
724 		proc[i].handler = parse_pcc_subspace;
725 	}
726 
727 	count = acpi_table_parse_entries_array(ACPI_SIG_PCCT,
728 			sizeof(struct acpi_table_pcct), proc,
729 			ACPI_PCCT_TYPE_RESERVED, MAX_PCC_SUBSPACES);
730 	if (count <= 0 || count > MAX_PCC_SUBSPACES) {
731 		if (count < 0)
732 			pr_warn("Error parsing PCC subspaces from PCCT\n");
733 		else
734 			pr_warn("Invalid PCCT: %d PCC subspaces\n", count);
735 
736 		rc = -EINVAL;
737 	} else {
738 		pcc_chan_count = count;
739 	}
740 
741 	acpi_put_table(pcct_tbl);
742 
743 	return rc;
744 }
745 
746 /**
747  * pcc_mbox_probe - Called when we find a match for the
748  *	PCCT platform device. This is purely used to represent
749  *	the PCCT as a virtual device for registering with the
750  *	generic Mailbox framework.
751  *
752  * @pdev: Pointer to platform device returned when a match
753  *	is found.
754  *
755  *	Return: 0 for Success, else errno.
756  */
pcc_mbox_probe(struct platform_device * pdev)757 static int pcc_mbox_probe(struct platform_device *pdev)
758 {
759 	struct device *dev = &pdev->dev;
760 	struct mbox_controller *pcc_mbox_ctrl;
761 	struct mbox_chan *pcc_mbox_channels;
762 	struct acpi_table_header *pcct_tbl;
763 	struct acpi_subtable_header *pcct_entry;
764 	struct acpi_table_pcct *acpi_pcct_tbl;
765 	acpi_status status = AE_OK;
766 	int i, rc, count = pcc_chan_count;
767 
768 	/* Search for PCCT */
769 	status = acpi_get_table(ACPI_SIG_PCCT, 0, &pcct_tbl);
770 
771 	if (ACPI_FAILURE(status) || !pcct_tbl)
772 		return -ENODEV;
773 
774 	pcc_mbox_channels = devm_kcalloc(dev, count, sizeof(*pcc_mbox_channels),
775 					 GFP_KERNEL);
776 	if (!pcc_mbox_channels) {
777 		rc = -ENOMEM;
778 		goto err;
779 	}
780 
781 	chan_info = devm_kcalloc(dev, count, sizeof(*chan_info), GFP_KERNEL);
782 	if (!chan_info) {
783 		rc = -ENOMEM;
784 		goto err;
785 	}
786 
787 	pcc_mbox_ctrl = devm_kzalloc(dev, sizeof(*pcc_mbox_ctrl), GFP_KERNEL);
788 	if (!pcc_mbox_ctrl) {
789 		rc = -ENOMEM;
790 		goto err;
791 	}
792 
793 	/* Point to the first PCC subspace entry */
794 	pcct_entry = (struct acpi_subtable_header *) (
795 		(unsigned long) pcct_tbl + sizeof(struct acpi_table_pcct));
796 
797 	acpi_pcct_tbl = (struct acpi_table_pcct *) pcct_tbl;
798 	if (acpi_pcct_tbl->flags & ACPI_PCCT_DOORBELL)
799 		pcc_mbox_ctrl->txdone_irq = true;
800 
801 	for (i = 0; i < count; i++) {
802 		struct pcc_chan_info *pchan = chan_info + i;
803 
804 		pcc_mbox_channels[i].con_priv = pchan;
805 		pchan->chan.mchan = &pcc_mbox_channels[i];
806 
807 		if (pcct_entry->type == ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE &&
808 		    !pcc_mbox_ctrl->txdone_irq) {
809 			pr_err("Platform Interrupt flag must be set to 1");
810 			rc = -EINVAL;
811 			goto err;
812 		}
813 
814 		if (pcc_mbox_ctrl->txdone_irq) {
815 			rc = pcc_parse_subspace_irq(pchan, pcct_entry);
816 			if (rc < 0)
817 				goto err;
818 		}
819 		rc = pcc_parse_subspace_db_reg(pchan, pcct_entry);
820 		if (rc < 0)
821 			goto err;
822 
823 		pcc_parse_subspace_shmem(pchan, pcct_entry);
824 
825 		pchan->type = pcct_entry->type;
826 		pcct_entry = (struct acpi_subtable_header *)
827 			((unsigned long) pcct_entry + pcct_entry->length);
828 	}
829 
830 	pcc_mbox_ctrl->num_chans = count;
831 
832 	pr_info("Detected %d PCC Subspaces\n", pcc_mbox_ctrl->num_chans);
833 
834 	pcc_mbox_ctrl->chans = pcc_mbox_channels;
835 	pcc_mbox_ctrl->ops = &pcc_chan_ops;
836 	pcc_mbox_ctrl->dev = dev;
837 
838 	pr_info("Registering PCC driver as Mailbox controller\n");
839 	rc = mbox_controller_register(pcc_mbox_ctrl);
840 	if (rc)
841 		pr_err("Err registering PCC as Mailbox controller: %d\n", rc);
842 	else
843 		return 0;
844 err:
845 	acpi_put_table(pcct_tbl);
846 	return rc;
847 }
848 
849 static struct platform_driver pcc_mbox_driver = {
850 	.probe = pcc_mbox_probe,
851 	.driver = {
852 		.name = "PCCT",
853 	},
854 };
855 
pcc_init(void)856 static int __init pcc_init(void)
857 {
858 	int ret;
859 	struct platform_device *pcc_pdev;
860 
861 	if (acpi_disabled)
862 		return -ENODEV;
863 
864 	/* Check if PCC support is available. */
865 	ret = acpi_pcc_probe();
866 
867 	if (ret) {
868 		pr_debug("ACPI PCC probe failed.\n");
869 		return -ENODEV;
870 	}
871 
872 	pcc_pdev = platform_create_bundle(&pcc_mbox_driver,
873 			pcc_mbox_probe, NULL, 0, NULL, 0);
874 
875 	if (IS_ERR(pcc_pdev)) {
876 		pr_debug("Err creating PCC platform bundle\n");
877 		pcc_chan_count = 0;
878 		return PTR_ERR(pcc_pdev);
879 	}
880 
881 	return 0;
882 }
883 
884 /*
885  * Make PCC init postcore so that users of this mailbox
886  * such as the ACPI Processor driver have it available
887  * at their init.
888  */
889 postcore_initcall(pcc_init);
890