1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (c) 2015 Pengutronix, Sascha Hauer <kernel@pengutronix.de>
4  */
5 #include <linux/clk.h>
6 #include <linux/init.h>
7 #include <linux/io.h>
8 #include <linux/iopoll.h>
9 #include <linux/mfd/syscon.h>
10 #include <linux/of_device.h>
11 #include <linux/platform_device.h>
12 #include <linux/pm_domain.h>
13 #include <linux/regulator/consumer.h>
14 #include <linux/soc/mediatek/infracfg.h>
15 
16 #include <dt-bindings/power/mt2701-power.h>
17 #include <dt-bindings/power/mt2712-power.h>
18 #include <dt-bindings/power/mt6797-power.h>
19 #include <dt-bindings/power/mt7622-power.h>
20 #include <dt-bindings/power/mt7623a-power.h>
21 #include <dt-bindings/power/mt8173-power.h>
22 
23 #define MTK_POLL_DELAY_US   10
24 #define MTK_POLL_TIMEOUT    USEC_PER_SEC
25 
26 #define MTK_SCPD_ACTIVE_WAKEUP		BIT(0)
27 #define MTK_SCPD_FWAIT_SRAM		BIT(1)
28 #define MTK_SCPD_CAPS(_scpd, _x)	((_scpd)->data->caps & (_x))
29 
30 #define SPM_VDE_PWR_CON			0x0210
31 #define SPM_MFG_PWR_CON			0x0214
32 #define SPM_VEN_PWR_CON			0x0230
33 #define SPM_ISP_PWR_CON			0x0238
34 #define SPM_DIS_PWR_CON			0x023c
35 #define SPM_CONN_PWR_CON		0x0280
36 #define SPM_VEN2_PWR_CON		0x0298
37 #define SPM_AUDIO_PWR_CON		0x029c	/* MT8173, MT2712 */
38 #define SPM_BDP_PWR_CON			0x029c	/* MT2701 */
39 #define SPM_ETH_PWR_CON			0x02a0
40 #define SPM_HIF_PWR_CON			0x02a4
41 #define SPM_IFR_MSC_PWR_CON		0x02a8
42 #define SPM_MFG_2D_PWR_CON		0x02c0
43 #define SPM_MFG_ASYNC_PWR_CON		0x02c4
44 #define SPM_USB_PWR_CON			0x02cc
45 #define SPM_USB2_PWR_CON		0x02d4	/* MT2712 */
46 #define SPM_ETHSYS_PWR_CON		0x02e0	/* MT7622 */
47 #define SPM_HIF0_PWR_CON		0x02e4	/* MT7622 */
48 #define SPM_HIF1_PWR_CON		0x02e8	/* MT7622 */
49 #define SPM_WB_PWR_CON			0x02ec	/* MT7622 */
50 
51 #define SPM_PWR_STATUS			0x060c
52 #define SPM_PWR_STATUS_2ND		0x0610
53 
54 #define PWR_RST_B_BIT			BIT(0)
55 #define PWR_ISO_BIT			BIT(1)
56 #define PWR_ON_BIT			BIT(2)
57 #define PWR_ON_2ND_BIT			BIT(3)
58 #define PWR_CLK_DIS_BIT			BIT(4)
59 
60 #define PWR_STATUS_CONN			BIT(1)
61 #define PWR_STATUS_DISP			BIT(3)
62 #define PWR_STATUS_MFG			BIT(4)
63 #define PWR_STATUS_ISP			BIT(5)
64 #define PWR_STATUS_VDEC			BIT(7)
65 #define PWR_STATUS_BDP			BIT(14)
66 #define PWR_STATUS_ETH			BIT(15)
67 #define PWR_STATUS_HIF			BIT(16)
68 #define PWR_STATUS_IFR_MSC		BIT(17)
69 #define PWR_STATUS_USB2			BIT(19)	/* MT2712 */
70 #define PWR_STATUS_VENC_LT		BIT(20)
71 #define PWR_STATUS_VENC			BIT(21)
72 #define PWR_STATUS_MFG_2D		BIT(22)	/* MT8173 */
73 #define PWR_STATUS_MFG_ASYNC		BIT(23)	/* MT8173 */
74 #define PWR_STATUS_AUDIO		BIT(24)	/* MT8173, MT2712 */
75 #define PWR_STATUS_USB			BIT(25)	/* MT8173, MT2712 */
76 #define PWR_STATUS_ETHSYS		BIT(24)	/* MT7622 */
77 #define PWR_STATUS_HIF0			BIT(25)	/* MT7622 */
78 #define PWR_STATUS_HIF1			BIT(26)	/* MT7622 */
79 #define PWR_STATUS_WB			BIT(27)	/* MT7622 */
80 
81 enum clk_id {
82 	CLK_NONE,
83 	CLK_MM,
84 	CLK_MFG,
85 	CLK_VENC,
86 	CLK_VENC_LT,
87 	CLK_ETHIF,
88 	CLK_VDEC,
89 	CLK_HIFSEL,
90 	CLK_JPGDEC,
91 	CLK_AUDIO,
92 	CLK_MAX,
93 };
94 
95 static const char * const clk_names[] = {
96 	NULL,
97 	"mm",
98 	"mfg",
99 	"venc",
100 	"venc_lt",
101 	"ethif",
102 	"vdec",
103 	"hif_sel",
104 	"jpgdec",
105 	"audio",
106 	NULL,
107 };
108 
109 #define MAX_CLKS	3
110 
111 /**
112  * struct scp_domain_data - scp domain data for power on/off flow
113  * @name: The domain name.
114  * @sta_mask: The mask for power on/off status bit.
115  * @ctl_offs: The offset for main power control register.
116  * @sram_pdn_bits: The mask for sram power control bits.
117  * @sram_pdn_ack_bits: The mask for sram power control acked bits.
118  * @bus_prot_mask: The mask for single step bus protection.
119  * @clk_id: The basic clocks required by this power domain.
120  * @caps: The flag for active wake-up action.
121  */
122 struct scp_domain_data {
123 	const char *name;
124 	u32 sta_mask;
125 	int ctl_offs;
126 	u32 sram_pdn_bits;
127 	u32 sram_pdn_ack_bits;
128 	u32 bus_prot_mask;
129 	enum clk_id clk_id[MAX_CLKS];
130 	u8 caps;
131 };
132 
133 struct scp;
134 
135 struct scp_domain {
136 	struct generic_pm_domain genpd;
137 	struct scp *scp;
138 	struct clk *clk[MAX_CLKS];
139 	const struct scp_domain_data *data;
140 	struct regulator *supply;
141 };
142 
143 struct scp_ctrl_reg {
144 	int pwr_sta_offs;
145 	int pwr_sta2nd_offs;
146 };
147 
148 struct scp {
149 	struct scp_domain *domains;
150 	struct genpd_onecell_data pd_data;
151 	struct device *dev;
152 	void __iomem *base;
153 	struct regmap *infracfg;
154 	struct scp_ctrl_reg ctrl_reg;
155 	bool bus_prot_reg_update;
156 };
157 
158 struct scp_subdomain {
159 	int origin;
160 	int subdomain;
161 };
162 
163 struct scp_soc_data {
164 	const struct scp_domain_data *domains;
165 	int num_domains;
166 	const struct scp_subdomain *subdomains;
167 	int num_subdomains;
168 	const struct scp_ctrl_reg regs;
169 	bool bus_prot_reg_update;
170 };
171 
scpsys_domain_is_on(struct scp_domain * scpd)172 static int scpsys_domain_is_on(struct scp_domain *scpd)
173 {
174 	struct scp *scp = scpd->scp;
175 
176 	u32 status = readl(scp->base + scp->ctrl_reg.pwr_sta_offs) &
177 						scpd->data->sta_mask;
178 	u32 status2 = readl(scp->base + scp->ctrl_reg.pwr_sta2nd_offs) &
179 						scpd->data->sta_mask;
180 
181 	/*
182 	 * A domain is on when both status bits are set. If only one is set
183 	 * return an error. This happens while powering up a domain
184 	 */
185 
186 	if (status && status2)
187 		return true;
188 	if (!status && !status2)
189 		return false;
190 
191 	return -EINVAL;
192 }
193 
scpsys_regulator_enable(struct scp_domain * scpd)194 static int scpsys_regulator_enable(struct scp_domain *scpd)
195 {
196 	if (!scpd->supply)
197 		return 0;
198 
199 	return regulator_enable(scpd->supply);
200 }
201 
scpsys_regulator_disable(struct scp_domain * scpd)202 static int scpsys_regulator_disable(struct scp_domain *scpd)
203 {
204 	if (!scpd->supply)
205 		return 0;
206 
207 	return regulator_disable(scpd->supply);
208 }
209 
scpsys_clk_disable(struct clk * clk[],int max_num)210 static void scpsys_clk_disable(struct clk *clk[], int max_num)
211 {
212 	int i;
213 
214 	for (i = max_num - 1; i >= 0; i--)
215 		clk_disable_unprepare(clk[i]);
216 }
217 
scpsys_clk_enable(struct clk * clk[],int max_num)218 static int scpsys_clk_enable(struct clk *clk[], int max_num)
219 {
220 	int i, ret = 0;
221 
222 	for (i = 0; i < max_num && clk[i]; i++) {
223 		ret = clk_prepare_enable(clk[i]);
224 		if (ret) {
225 			scpsys_clk_disable(clk, i);
226 			break;
227 		}
228 	}
229 
230 	return ret;
231 }
232 
scpsys_sram_enable(struct scp_domain * scpd,void __iomem * ctl_addr)233 static int scpsys_sram_enable(struct scp_domain *scpd, void __iomem *ctl_addr)
234 {
235 	u32 val;
236 	u32 pdn_ack = scpd->data->sram_pdn_ack_bits;
237 	int tmp;
238 
239 	val = readl(ctl_addr);
240 	val &= ~scpd->data->sram_pdn_bits;
241 	writel(val, ctl_addr);
242 
243 	/* Either wait until SRAM_PDN_ACK all 0 or have a force wait */
244 	if (MTK_SCPD_CAPS(scpd, MTK_SCPD_FWAIT_SRAM)) {
245 		/*
246 		 * Currently, MTK_SCPD_FWAIT_SRAM is necessary only for
247 		 * MT7622_POWER_DOMAIN_WB and thus just a trivial setup
248 		 * is applied here.
249 		 */
250 		usleep_range(12000, 12100);
251 	} else {
252 		/* Either wait until SRAM_PDN_ACK all 1 or 0 */
253 		int ret = readl_poll_timeout(ctl_addr, tmp,
254 				(tmp & pdn_ack) == 0,
255 				MTK_POLL_DELAY_US, MTK_POLL_TIMEOUT);
256 		if (ret < 0)
257 			return ret;
258 	}
259 
260 	return 0;
261 }
262 
scpsys_sram_disable(struct scp_domain * scpd,void __iomem * ctl_addr)263 static int scpsys_sram_disable(struct scp_domain *scpd, void __iomem *ctl_addr)
264 {
265 	u32 val;
266 	u32 pdn_ack = scpd->data->sram_pdn_ack_bits;
267 	int tmp;
268 
269 	val = readl(ctl_addr);
270 	val |= scpd->data->sram_pdn_bits;
271 	writel(val, ctl_addr);
272 
273 	/* Either wait until SRAM_PDN_ACK all 1 or 0 */
274 	return readl_poll_timeout(ctl_addr, tmp,
275 			(tmp & pdn_ack) == pdn_ack,
276 			MTK_POLL_DELAY_US, MTK_POLL_TIMEOUT);
277 }
278 
scpsys_bus_protect_enable(struct scp_domain * scpd)279 static int scpsys_bus_protect_enable(struct scp_domain *scpd)
280 {
281 	struct scp *scp = scpd->scp;
282 
283 	if (!scpd->data->bus_prot_mask)
284 		return 0;
285 
286 	return mtk_infracfg_set_bus_protection(scp->infracfg,
287 			scpd->data->bus_prot_mask,
288 			scp->bus_prot_reg_update);
289 }
290 
scpsys_bus_protect_disable(struct scp_domain * scpd)291 static int scpsys_bus_protect_disable(struct scp_domain *scpd)
292 {
293 	struct scp *scp = scpd->scp;
294 
295 	if (!scpd->data->bus_prot_mask)
296 		return 0;
297 
298 	return mtk_infracfg_clear_bus_protection(scp->infracfg,
299 			scpd->data->bus_prot_mask,
300 			scp->bus_prot_reg_update);
301 }
302 
scpsys_power_on(struct generic_pm_domain * genpd)303 static int scpsys_power_on(struct generic_pm_domain *genpd)
304 {
305 	struct scp_domain *scpd = container_of(genpd, struct scp_domain, genpd);
306 	struct scp *scp = scpd->scp;
307 	void __iomem *ctl_addr = scp->base + scpd->data->ctl_offs;
308 	u32 val;
309 	int ret, tmp;
310 
311 	ret = scpsys_regulator_enable(scpd);
312 	if (ret < 0)
313 		return ret;
314 
315 	ret = scpsys_clk_enable(scpd->clk, MAX_CLKS);
316 	if (ret)
317 		goto err_clk;
318 
319 	/* subsys power on */
320 	val = readl(ctl_addr);
321 	val |= PWR_ON_BIT;
322 	writel(val, ctl_addr);
323 	val |= PWR_ON_2ND_BIT;
324 	writel(val, ctl_addr);
325 
326 	/* wait until PWR_ACK = 1 */
327 	ret = readx_poll_timeout(scpsys_domain_is_on, scpd, tmp, tmp > 0,
328 				 MTK_POLL_DELAY_US, MTK_POLL_TIMEOUT);
329 	if (ret < 0)
330 		goto err_pwr_ack;
331 
332 	val &= ~PWR_CLK_DIS_BIT;
333 	writel(val, ctl_addr);
334 
335 	val &= ~PWR_ISO_BIT;
336 	writel(val, ctl_addr);
337 
338 	val |= PWR_RST_B_BIT;
339 	writel(val, ctl_addr);
340 
341 	ret = scpsys_sram_enable(scpd, ctl_addr);
342 	if (ret < 0)
343 		goto err_pwr_ack;
344 
345 	ret = scpsys_bus_protect_disable(scpd);
346 	if (ret < 0)
347 		goto err_pwr_ack;
348 
349 	return 0;
350 
351 err_pwr_ack:
352 	scpsys_clk_disable(scpd->clk, MAX_CLKS);
353 err_clk:
354 	scpsys_regulator_disable(scpd);
355 
356 	dev_err(scp->dev, "Failed to power on domain %s\n", genpd->name);
357 
358 	return ret;
359 }
360 
scpsys_power_off(struct generic_pm_domain * genpd)361 static int scpsys_power_off(struct generic_pm_domain *genpd)
362 {
363 	struct scp_domain *scpd = container_of(genpd, struct scp_domain, genpd);
364 	struct scp *scp = scpd->scp;
365 	void __iomem *ctl_addr = scp->base + scpd->data->ctl_offs;
366 	u32 val;
367 	int ret, tmp;
368 
369 	ret = scpsys_bus_protect_enable(scpd);
370 	if (ret < 0)
371 		goto out;
372 
373 	ret = scpsys_sram_disable(scpd, ctl_addr);
374 	if (ret < 0)
375 		goto out;
376 
377 	/* subsys power off */
378 	val = readl(ctl_addr);
379 	val |= PWR_ISO_BIT;
380 	writel(val, ctl_addr);
381 
382 	val &= ~PWR_RST_B_BIT;
383 	writel(val, ctl_addr);
384 
385 	val |= PWR_CLK_DIS_BIT;
386 	writel(val, ctl_addr);
387 
388 	val &= ~PWR_ON_BIT;
389 	writel(val, ctl_addr);
390 
391 	val &= ~PWR_ON_2ND_BIT;
392 	writel(val, ctl_addr);
393 
394 	/* wait until PWR_ACK = 0 */
395 	ret = readx_poll_timeout(scpsys_domain_is_on, scpd, tmp, tmp == 0,
396 				 MTK_POLL_DELAY_US, MTK_POLL_TIMEOUT);
397 	if (ret < 0)
398 		goto out;
399 
400 	scpsys_clk_disable(scpd->clk, MAX_CLKS);
401 
402 	ret = scpsys_regulator_disable(scpd);
403 	if (ret < 0)
404 		goto out;
405 
406 	return 0;
407 
408 out:
409 	dev_err(scp->dev, "Failed to power off domain %s\n", genpd->name);
410 
411 	return ret;
412 }
413 
init_clks(struct platform_device * pdev,struct clk ** clk)414 static void init_clks(struct platform_device *pdev, struct clk **clk)
415 {
416 	int i;
417 
418 	for (i = CLK_NONE + 1; i < CLK_MAX; i++)
419 		clk[i] = devm_clk_get(&pdev->dev, clk_names[i]);
420 }
421 
init_scp(struct platform_device * pdev,const struct scp_domain_data * scp_domain_data,int num,const struct scp_ctrl_reg * scp_ctrl_reg,bool bus_prot_reg_update)422 static struct scp *init_scp(struct platform_device *pdev,
423 			const struct scp_domain_data *scp_domain_data, int num,
424 			const struct scp_ctrl_reg *scp_ctrl_reg,
425 			bool bus_prot_reg_update)
426 {
427 	struct genpd_onecell_data *pd_data;
428 	struct resource *res;
429 	int i, j;
430 	struct scp *scp;
431 	struct clk *clk[CLK_MAX];
432 
433 	scp = devm_kzalloc(&pdev->dev, sizeof(*scp), GFP_KERNEL);
434 	if (!scp)
435 		return ERR_PTR(-ENOMEM);
436 
437 	scp->ctrl_reg.pwr_sta_offs = scp_ctrl_reg->pwr_sta_offs;
438 	scp->ctrl_reg.pwr_sta2nd_offs = scp_ctrl_reg->pwr_sta2nd_offs;
439 
440 	scp->bus_prot_reg_update = bus_prot_reg_update;
441 
442 	scp->dev = &pdev->dev;
443 
444 	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
445 	scp->base = devm_ioremap_resource(&pdev->dev, res);
446 	if (IS_ERR(scp->base))
447 		return ERR_CAST(scp->base);
448 
449 	scp->domains = devm_kcalloc(&pdev->dev,
450 				num, sizeof(*scp->domains), GFP_KERNEL);
451 	if (!scp->domains)
452 		return ERR_PTR(-ENOMEM);
453 
454 	pd_data = &scp->pd_data;
455 
456 	pd_data->domains = devm_kcalloc(&pdev->dev,
457 			num, sizeof(*pd_data->domains), GFP_KERNEL);
458 	if (!pd_data->domains)
459 		return ERR_PTR(-ENOMEM);
460 
461 	scp->infracfg = syscon_regmap_lookup_by_phandle(pdev->dev.of_node,
462 			"infracfg");
463 	if (IS_ERR(scp->infracfg)) {
464 		dev_err(&pdev->dev, "Cannot find infracfg controller: %ld\n",
465 				PTR_ERR(scp->infracfg));
466 		return ERR_CAST(scp->infracfg);
467 	}
468 
469 	for (i = 0; i < num; i++) {
470 		struct scp_domain *scpd = &scp->domains[i];
471 		const struct scp_domain_data *data = &scp_domain_data[i];
472 
473 		scpd->supply = devm_regulator_get_optional(&pdev->dev, data->name);
474 		if (IS_ERR(scpd->supply)) {
475 			if (PTR_ERR(scpd->supply) == -ENODEV)
476 				scpd->supply = NULL;
477 			else
478 				return ERR_CAST(scpd->supply);
479 		}
480 	}
481 
482 	pd_data->num_domains = num;
483 
484 	init_clks(pdev, clk);
485 
486 	for (i = 0; i < num; i++) {
487 		struct scp_domain *scpd = &scp->domains[i];
488 		struct generic_pm_domain *genpd = &scpd->genpd;
489 		const struct scp_domain_data *data = &scp_domain_data[i];
490 
491 		pd_data->domains[i] = genpd;
492 		scpd->scp = scp;
493 
494 		scpd->data = data;
495 
496 		for (j = 0; j < MAX_CLKS && data->clk_id[j]; j++) {
497 			struct clk *c = clk[data->clk_id[j]];
498 
499 			if (IS_ERR(c)) {
500 				dev_err(&pdev->dev, "%s: clk unavailable\n",
501 					data->name);
502 				return ERR_CAST(c);
503 			}
504 
505 			scpd->clk[j] = c;
506 		}
507 
508 		genpd->name = data->name;
509 		genpd->power_off = scpsys_power_off;
510 		genpd->power_on = scpsys_power_on;
511 		if (MTK_SCPD_CAPS(scpd, MTK_SCPD_ACTIVE_WAKEUP))
512 			genpd->flags |= GENPD_FLAG_ACTIVE_WAKEUP;
513 	}
514 
515 	return scp;
516 }
517 
mtk_register_power_domains(struct platform_device * pdev,struct scp * scp,int num)518 static void mtk_register_power_domains(struct platform_device *pdev,
519 				struct scp *scp, int num)
520 {
521 	struct genpd_onecell_data *pd_data;
522 	int i, ret;
523 
524 	for (i = 0; i < num; i++) {
525 		struct scp_domain *scpd = &scp->domains[i];
526 		struct generic_pm_domain *genpd = &scpd->genpd;
527 
528 		/*
529 		 * Initially turn on all domains to make the domains usable
530 		 * with !CONFIG_PM and to get the hardware in sync with the
531 		 * software.  The unused domains will be switched off during
532 		 * late_init time.
533 		 */
534 		genpd->power_on(genpd);
535 
536 		pm_genpd_init(genpd, NULL, false);
537 	}
538 
539 	/*
540 	 * We are not allowed to fail here since there is no way to unregister
541 	 * a power domain. Once registered above we have to keep the domains
542 	 * valid.
543 	 */
544 
545 	pd_data = &scp->pd_data;
546 
547 	ret = of_genpd_add_provider_onecell(pdev->dev.of_node, pd_data);
548 	if (ret)
549 		dev_err(&pdev->dev, "Failed to add OF provider: %d\n", ret);
550 }
551 
552 /*
553  * MT2701 power domain support
554  */
555 
556 static const struct scp_domain_data scp_domain_data_mt2701[] = {
557 	[MT2701_POWER_DOMAIN_CONN] = {
558 		.name = "conn",
559 		.sta_mask = PWR_STATUS_CONN,
560 		.ctl_offs = SPM_CONN_PWR_CON,
561 		.bus_prot_mask = MT2701_TOP_AXI_PROT_EN_CONN_M |
562 				 MT2701_TOP_AXI_PROT_EN_CONN_S,
563 		.clk_id = {CLK_NONE},
564 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
565 	},
566 	[MT2701_POWER_DOMAIN_DISP] = {
567 		.name = "disp",
568 		.sta_mask = PWR_STATUS_DISP,
569 		.ctl_offs = SPM_DIS_PWR_CON,
570 		.sram_pdn_bits = GENMASK(11, 8),
571 		.clk_id = {CLK_MM},
572 		.bus_prot_mask = MT2701_TOP_AXI_PROT_EN_MM_M0,
573 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
574 	},
575 	[MT2701_POWER_DOMAIN_MFG] = {
576 		.name = "mfg",
577 		.sta_mask = PWR_STATUS_MFG,
578 		.ctl_offs = SPM_MFG_PWR_CON,
579 		.sram_pdn_bits = GENMASK(11, 8),
580 		.sram_pdn_ack_bits = GENMASK(12, 12),
581 		.clk_id = {CLK_MFG},
582 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
583 	},
584 	[MT2701_POWER_DOMAIN_VDEC] = {
585 		.name = "vdec",
586 		.sta_mask = PWR_STATUS_VDEC,
587 		.ctl_offs = SPM_VDE_PWR_CON,
588 		.sram_pdn_bits = GENMASK(11, 8),
589 		.sram_pdn_ack_bits = GENMASK(12, 12),
590 		.clk_id = {CLK_MM},
591 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
592 	},
593 	[MT2701_POWER_DOMAIN_ISP] = {
594 		.name = "isp",
595 		.sta_mask = PWR_STATUS_ISP,
596 		.ctl_offs = SPM_ISP_PWR_CON,
597 		.sram_pdn_bits = GENMASK(11, 8),
598 		.sram_pdn_ack_bits = GENMASK(13, 12),
599 		.clk_id = {CLK_MM},
600 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
601 	},
602 	[MT2701_POWER_DOMAIN_BDP] = {
603 		.name = "bdp",
604 		.sta_mask = PWR_STATUS_BDP,
605 		.ctl_offs = SPM_BDP_PWR_CON,
606 		.sram_pdn_bits = GENMASK(11, 8),
607 		.clk_id = {CLK_NONE},
608 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
609 	},
610 	[MT2701_POWER_DOMAIN_ETH] = {
611 		.name = "eth",
612 		.sta_mask = PWR_STATUS_ETH,
613 		.ctl_offs = SPM_ETH_PWR_CON,
614 		.sram_pdn_bits = GENMASK(11, 8),
615 		.sram_pdn_ack_bits = GENMASK(15, 12),
616 		.clk_id = {CLK_ETHIF},
617 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
618 	},
619 	[MT2701_POWER_DOMAIN_HIF] = {
620 		.name = "hif",
621 		.sta_mask = PWR_STATUS_HIF,
622 		.ctl_offs = SPM_HIF_PWR_CON,
623 		.sram_pdn_bits = GENMASK(11, 8),
624 		.sram_pdn_ack_bits = GENMASK(15, 12),
625 		.clk_id = {CLK_ETHIF},
626 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
627 	},
628 	[MT2701_POWER_DOMAIN_IFR_MSC] = {
629 		.name = "ifr_msc",
630 		.sta_mask = PWR_STATUS_IFR_MSC,
631 		.ctl_offs = SPM_IFR_MSC_PWR_CON,
632 		.clk_id = {CLK_NONE},
633 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
634 	},
635 };
636 
637 /*
638  * MT2712 power domain support
639  */
640 static const struct scp_domain_data scp_domain_data_mt2712[] = {
641 	[MT2712_POWER_DOMAIN_MM] = {
642 		.name = "mm",
643 		.sta_mask = PWR_STATUS_DISP,
644 		.ctl_offs = SPM_DIS_PWR_CON,
645 		.sram_pdn_bits = GENMASK(8, 8),
646 		.sram_pdn_ack_bits = GENMASK(12, 12),
647 		.clk_id = {CLK_MM},
648 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
649 	},
650 	[MT2712_POWER_DOMAIN_VDEC] = {
651 		.name = "vdec",
652 		.sta_mask = PWR_STATUS_VDEC,
653 		.ctl_offs = SPM_VDE_PWR_CON,
654 		.sram_pdn_bits = GENMASK(8, 8),
655 		.sram_pdn_ack_bits = GENMASK(12, 12),
656 		.clk_id = {CLK_MM, CLK_VDEC},
657 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
658 	},
659 	[MT2712_POWER_DOMAIN_VENC] = {
660 		.name = "venc",
661 		.sta_mask = PWR_STATUS_VENC,
662 		.ctl_offs = SPM_VEN_PWR_CON,
663 		.sram_pdn_bits = GENMASK(11, 8),
664 		.sram_pdn_ack_bits = GENMASK(15, 12),
665 		.clk_id = {CLK_MM, CLK_VENC, CLK_JPGDEC},
666 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
667 	},
668 	[MT2712_POWER_DOMAIN_ISP] = {
669 		.name = "isp",
670 		.sta_mask = PWR_STATUS_ISP,
671 		.ctl_offs = SPM_ISP_PWR_CON,
672 		.sram_pdn_bits = GENMASK(11, 8),
673 		.sram_pdn_ack_bits = GENMASK(13, 12),
674 		.clk_id = {CLK_MM},
675 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
676 	},
677 	[MT2712_POWER_DOMAIN_AUDIO] = {
678 		.name = "audio",
679 		.sta_mask = PWR_STATUS_AUDIO,
680 		.ctl_offs = SPM_AUDIO_PWR_CON,
681 		.sram_pdn_bits = GENMASK(11, 8),
682 		.sram_pdn_ack_bits = GENMASK(15, 12),
683 		.clk_id = {CLK_AUDIO},
684 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
685 	},
686 	[MT2712_POWER_DOMAIN_USB] = {
687 		.name = "usb",
688 		.sta_mask = PWR_STATUS_USB,
689 		.ctl_offs = SPM_USB_PWR_CON,
690 		.sram_pdn_bits = GENMASK(10, 8),
691 		.sram_pdn_ack_bits = GENMASK(14, 12),
692 		.clk_id = {CLK_NONE},
693 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
694 	},
695 	[MT2712_POWER_DOMAIN_USB2] = {
696 		.name = "usb2",
697 		.sta_mask = PWR_STATUS_USB2,
698 		.ctl_offs = SPM_USB2_PWR_CON,
699 		.sram_pdn_bits = GENMASK(10, 8),
700 		.sram_pdn_ack_bits = GENMASK(14, 12),
701 		.clk_id = {CLK_NONE},
702 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
703 	},
704 	[MT2712_POWER_DOMAIN_MFG] = {
705 		.name = "mfg",
706 		.sta_mask = PWR_STATUS_MFG,
707 		.ctl_offs = SPM_MFG_PWR_CON,
708 		.sram_pdn_bits = GENMASK(8, 8),
709 		.sram_pdn_ack_bits = GENMASK(16, 16),
710 		.clk_id = {CLK_MFG},
711 		.bus_prot_mask = BIT(14) | BIT(21) | BIT(23),
712 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
713 	},
714 	[MT2712_POWER_DOMAIN_MFG_SC1] = {
715 		.name = "mfg_sc1",
716 		.sta_mask = BIT(22),
717 		.ctl_offs = 0x02c0,
718 		.sram_pdn_bits = GENMASK(8, 8),
719 		.sram_pdn_ack_bits = GENMASK(16, 16),
720 		.clk_id = {CLK_NONE},
721 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
722 	},
723 	[MT2712_POWER_DOMAIN_MFG_SC2] = {
724 		.name = "mfg_sc2",
725 		.sta_mask = BIT(23),
726 		.ctl_offs = 0x02c4,
727 		.sram_pdn_bits = GENMASK(8, 8),
728 		.sram_pdn_ack_bits = GENMASK(16, 16),
729 		.clk_id = {CLK_NONE},
730 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
731 	},
732 	[MT2712_POWER_DOMAIN_MFG_SC3] = {
733 		.name = "mfg_sc3",
734 		.sta_mask = BIT(30),
735 		.ctl_offs = 0x01f8,
736 		.sram_pdn_bits = GENMASK(8, 8),
737 		.sram_pdn_ack_bits = GENMASK(16, 16),
738 		.clk_id = {CLK_NONE},
739 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
740 	},
741 };
742 
743 static const struct scp_subdomain scp_subdomain_mt2712[] = {
744 	{MT2712_POWER_DOMAIN_MM, MT2712_POWER_DOMAIN_VDEC},
745 	{MT2712_POWER_DOMAIN_MM, MT2712_POWER_DOMAIN_VENC},
746 	{MT2712_POWER_DOMAIN_MM, MT2712_POWER_DOMAIN_ISP},
747 	{MT2712_POWER_DOMAIN_MFG, MT2712_POWER_DOMAIN_MFG_SC1},
748 	{MT2712_POWER_DOMAIN_MFG_SC1, MT2712_POWER_DOMAIN_MFG_SC2},
749 	{MT2712_POWER_DOMAIN_MFG_SC2, MT2712_POWER_DOMAIN_MFG_SC3},
750 };
751 
752 /*
753  * MT6797 power domain support
754  */
755 
756 static const struct scp_domain_data scp_domain_data_mt6797[] = {
757 	[MT6797_POWER_DOMAIN_VDEC] = {
758 		.name = "vdec",
759 		.sta_mask = BIT(7),
760 		.ctl_offs = 0x300,
761 		.sram_pdn_bits = GENMASK(8, 8),
762 		.sram_pdn_ack_bits = GENMASK(12, 12),
763 		.clk_id = {CLK_VDEC},
764 	},
765 	[MT6797_POWER_DOMAIN_VENC] = {
766 		.name = "venc",
767 		.sta_mask = BIT(21),
768 		.ctl_offs = 0x304,
769 		.sram_pdn_bits = GENMASK(11, 8),
770 		.sram_pdn_ack_bits = GENMASK(15, 12),
771 		.clk_id = {CLK_NONE},
772 	},
773 	[MT6797_POWER_DOMAIN_ISP] = {
774 		.name = "isp",
775 		.sta_mask = BIT(5),
776 		.ctl_offs = 0x308,
777 		.sram_pdn_bits = GENMASK(9, 8),
778 		.sram_pdn_ack_bits = GENMASK(13, 12),
779 		.clk_id = {CLK_NONE},
780 	},
781 	[MT6797_POWER_DOMAIN_MM] = {
782 		.name = "mm",
783 		.sta_mask = BIT(3),
784 		.ctl_offs = 0x30C,
785 		.sram_pdn_bits = GENMASK(8, 8),
786 		.sram_pdn_ack_bits = GENMASK(12, 12),
787 		.clk_id = {CLK_MM},
788 		.bus_prot_mask = (BIT(1) | BIT(2)),
789 	},
790 	[MT6797_POWER_DOMAIN_AUDIO] = {
791 		.name = "audio",
792 		.sta_mask = BIT(24),
793 		.ctl_offs = 0x314,
794 		.sram_pdn_bits = GENMASK(11, 8),
795 		.sram_pdn_ack_bits = GENMASK(15, 12),
796 		.clk_id = {CLK_NONE},
797 	},
798 	[MT6797_POWER_DOMAIN_MFG_ASYNC] = {
799 		.name = "mfg_async",
800 		.sta_mask = BIT(13),
801 		.ctl_offs = 0x334,
802 		.sram_pdn_bits = 0,
803 		.sram_pdn_ack_bits = 0,
804 		.clk_id = {CLK_MFG},
805 	},
806 	[MT6797_POWER_DOMAIN_MJC] = {
807 		.name = "mjc",
808 		.sta_mask = BIT(20),
809 		.ctl_offs = 0x310,
810 		.sram_pdn_bits = GENMASK(8, 8),
811 		.sram_pdn_ack_bits = GENMASK(12, 12),
812 		.clk_id = {CLK_NONE},
813 	},
814 };
815 
816 #define SPM_PWR_STATUS_MT6797		0x0180
817 #define SPM_PWR_STATUS_2ND_MT6797	0x0184
818 
819 static const struct scp_subdomain scp_subdomain_mt6797[] = {
820 	{MT6797_POWER_DOMAIN_MM, MT6797_POWER_DOMAIN_VDEC},
821 	{MT6797_POWER_DOMAIN_MM, MT6797_POWER_DOMAIN_ISP},
822 	{MT6797_POWER_DOMAIN_MM, MT6797_POWER_DOMAIN_VENC},
823 	{MT6797_POWER_DOMAIN_MM, MT6797_POWER_DOMAIN_MJC},
824 };
825 
826 /*
827  * MT7622 power domain support
828  */
829 
830 static const struct scp_domain_data scp_domain_data_mt7622[] = {
831 	[MT7622_POWER_DOMAIN_ETHSYS] = {
832 		.name = "ethsys",
833 		.sta_mask = PWR_STATUS_ETHSYS,
834 		.ctl_offs = SPM_ETHSYS_PWR_CON,
835 		.sram_pdn_bits = GENMASK(11, 8),
836 		.sram_pdn_ack_bits = GENMASK(15, 12),
837 		.clk_id = {CLK_NONE},
838 		.bus_prot_mask = MT7622_TOP_AXI_PROT_EN_ETHSYS,
839 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
840 	},
841 	[MT7622_POWER_DOMAIN_HIF0] = {
842 		.name = "hif0",
843 		.sta_mask = PWR_STATUS_HIF0,
844 		.ctl_offs = SPM_HIF0_PWR_CON,
845 		.sram_pdn_bits = GENMASK(11, 8),
846 		.sram_pdn_ack_bits = GENMASK(15, 12),
847 		.clk_id = {CLK_HIFSEL},
848 		.bus_prot_mask = MT7622_TOP_AXI_PROT_EN_HIF0,
849 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
850 	},
851 	[MT7622_POWER_DOMAIN_HIF1] = {
852 		.name = "hif1",
853 		.sta_mask = PWR_STATUS_HIF1,
854 		.ctl_offs = SPM_HIF1_PWR_CON,
855 		.sram_pdn_bits = GENMASK(11, 8),
856 		.sram_pdn_ack_bits = GENMASK(15, 12),
857 		.clk_id = {CLK_HIFSEL},
858 		.bus_prot_mask = MT7622_TOP_AXI_PROT_EN_HIF1,
859 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
860 	},
861 	[MT7622_POWER_DOMAIN_WB] = {
862 		.name = "wb",
863 		.sta_mask = PWR_STATUS_WB,
864 		.ctl_offs = SPM_WB_PWR_CON,
865 		.sram_pdn_bits = 0,
866 		.sram_pdn_ack_bits = 0,
867 		.clk_id = {CLK_NONE},
868 		.bus_prot_mask = MT7622_TOP_AXI_PROT_EN_WB,
869 		.caps = MTK_SCPD_ACTIVE_WAKEUP | MTK_SCPD_FWAIT_SRAM,
870 	},
871 };
872 
873 /*
874  * MT7623A power domain support
875  */
876 
877 static const struct scp_domain_data scp_domain_data_mt7623a[] = {
878 	[MT7623A_POWER_DOMAIN_CONN] = {
879 		.name = "conn",
880 		.sta_mask = PWR_STATUS_CONN,
881 		.ctl_offs = SPM_CONN_PWR_CON,
882 		.bus_prot_mask = MT2701_TOP_AXI_PROT_EN_CONN_M |
883 				 MT2701_TOP_AXI_PROT_EN_CONN_S,
884 		.clk_id = {CLK_NONE},
885 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
886 	},
887 	[MT7623A_POWER_DOMAIN_ETH] = {
888 		.name = "eth",
889 		.sta_mask = PWR_STATUS_ETH,
890 		.ctl_offs = SPM_ETH_PWR_CON,
891 		.sram_pdn_bits = GENMASK(11, 8),
892 		.sram_pdn_ack_bits = GENMASK(15, 12),
893 		.clk_id = {CLK_ETHIF},
894 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
895 	},
896 	[MT7623A_POWER_DOMAIN_HIF] = {
897 		.name = "hif",
898 		.sta_mask = PWR_STATUS_HIF,
899 		.ctl_offs = SPM_HIF_PWR_CON,
900 		.sram_pdn_bits = GENMASK(11, 8),
901 		.sram_pdn_ack_bits = GENMASK(15, 12),
902 		.clk_id = {CLK_ETHIF},
903 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
904 	},
905 	[MT7623A_POWER_DOMAIN_IFR_MSC] = {
906 		.name = "ifr_msc",
907 		.sta_mask = PWR_STATUS_IFR_MSC,
908 		.ctl_offs = SPM_IFR_MSC_PWR_CON,
909 		.clk_id = {CLK_NONE},
910 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
911 	},
912 };
913 
914 /*
915  * MT8173 power domain support
916  */
917 
918 static const struct scp_domain_data scp_domain_data_mt8173[] = {
919 	[MT8173_POWER_DOMAIN_VDEC] = {
920 		.name = "vdec",
921 		.sta_mask = PWR_STATUS_VDEC,
922 		.ctl_offs = SPM_VDE_PWR_CON,
923 		.sram_pdn_bits = GENMASK(11, 8),
924 		.sram_pdn_ack_bits = GENMASK(12, 12),
925 		.clk_id = {CLK_MM},
926 	},
927 	[MT8173_POWER_DOMAIN_VENC] = {
928 		.name = "venc",
929 		.sta_mask = PWR_STATUS_VENC,
930 		.ctl_offs = SPM_VEN_PWR_CON,
931 		.sram_pdn_bits = GENMASK(11, 8),
932 		.sram_pdn_ack_bits = GENMASK(15, 12),
933 		.clk_id = {CLK_MM, CLK_VENC},
934 	},
935 	[MT8173_POWER_DOMAIN_ISP] = {
936 		.name = "isp",
937 		.sta_mask = PWR_STATUS_ISP,
938 		.ctl_offs = SPM_ISP_PWR_CON,
939 		.sram_pdn_bits = GENMASK(11, 8),
940 		.sram_pdn_ack_bits = GENMASK(13, 12),
941 		.clk_id = {CLK_MM},
942 	},
943 	[MT8173_POWER_DOMAIN_MM] = {
944 		.name = "mm",
945 		.sta_mask = PWR_STATUS_DISP,
946 		.ctl_offs = SPM_DIS_PWR_CON,
947 		.sram_pdn_bits = GENMASK(11, 8),
948 		.sram_pdn_ack_bits = GENMASK(12, 12),
949 		.clk_id = {CLK_MM},
950 		.bus_prot_mask = MT8173_TOP_AXI_PROT_EN_MM_M0 |
951 			MT8173_TOP_AXI_PROT_EN_MM_M1,
952 	},
953 	[MT8173_POWER_DOMAIN_VENC_LT] = {
954 		.name = "venc_lt",
955 		.sta_mask = PWR_STATUS_VENC_LT,
956 		.ctl_offs = SPM_VEN2_PWR_CON,
957 		.sram_pdn_bits = GENMASK(11, 8),
958 		.sram_pdn_ack_bits = GENMASK(15, 12),
959 		.clk_id = {CLK_MM, CLK_VENC_LT},
960 	},
961 	[MT8173_POWER_DOMAIN_AUDIO] = {
962 		.name = "audio",
963 		.sta_mask = PWR_STATUS_AUDIO,
964 		.ctl_offs = SPM_AUDIO_PWR_CON,
965 		.sram_pdn_bits = GENMASK(11, 8),
966 		.sram_pdn_ack_bits = GENMASK(15, 12),
967 		.clk_id = {CLK_NONE},
968 	},
969 	[MT8173_POWER_DOMAIN_USB] = {
970 		.name = "usb",
971 		.sta_mask = PWR_STATUS_USB,
972 		.ctl_offs = SPM_USB_PWR_CON,
973 		.sram_pdn_bits = GENMASK(11, 8),
974 		.sram_pdn_ack_bits = GENMASK(15, 12),
975 		.clk_id = {CLK_NONE},
976 		.caps = MTK_SCPD_ACTIVE_WAKEUP,
977 	},
978 	[MT8173_POWER_DOMAIN_MFG_ASYNC] = {
979 		.name = "mfg_async",
980 		.sta_mask = PWR_STATUS_MFG_ASYNC,
981 		.ctl_offs = SPM_MFG_ASYNC_PWR_CON,
982 		.sram_pdn_bits = GENMASK(11, 8),
983 		.sram_pdn_ack_bits = 0,
984 		.clk_id = {CLK_MFG},
985 	},
986 	[MT8173_POWER_DOMAIN_MFG_2D] = {
987 		.name = "mfg_2d",
988 		.sta_mask = PWR_STATUS_MFG_2D,
989 		.ctl_offs = SPM_MFG_2D_PWR_CON,
990 		.sram_pdn_bits = GENMASK(11, 8),
991 		.sram_pdn_ack_bits = GENMASK(13, 12),
992 		.clk_id = {CLK_NONE},
993 	},
994 	[MT8173_POWER_DOMAIN_MFG] = {
995 		.name = "mfg",
996 		.sta_mask = PWR_STATUS_MFG,
997 		.ctl_offs = SPM_MFG_PWR_CON,
998 		.sram_pdn_bits = GENMASK(13, 8),
999 		.sram_pdn_ack_bits = GENMASK(21, 16),
1000 		.clk_id = {CLK_NONE},
1001 		.bus_prot_mask = MT8173_TOP_AXI_PROT_EN_MFG_S |
1002 			MT8173_TOP_AXI_PROT_EN_MFG_M0 |
1003 			MT8173_TOP_AXI_PROT_EN_MFG_M1 |
1004 			MT8173_TOP_AXI_PROT_EN_MFG_SNOOP_OUT,
1005 	},
1006 };
1007 
1008 static const struct scp_subdomain scp_subdomain_mt8173[] = {
1009 	{MT8173_POWER_DOMAIN_MFG_ASYNC, MT8173_POWER_DOMAIN_MFG_2D},
1010 	{MT8173_POWER_DOMAIN_MFG_2D, MT8173_POWER_DOMAIN_MFG},
1011 };
1012 
1013 static const struct scp_soc_data mt2701_data = {
1014 	.domains = scp_domain_data_mt2701,
1015 	.num_domains = ARRAY_SIZE(scp_domain_data_mt2701),
1016 	.regs = {
1017 		.pwr_sta_offs = SPM_PWR_STATUS,
1018 		.pwr_sta2nd_offs = SPM_PWR_STATUS_2ND
1019 	},
1020 	.bus_prot_reg_update = true,
1021 };
1022 
1023 static const struct scp_soc_data mt2712_data = {
1024 	.domains = scp_domain_data_mt2712,
1025 	.num_domains = ARRAY_SIZE(scp_domain_data_mt2712),
1026 	.subdomains = scp_subdomain_mt2712,
1027 	.num_subdomains = ARRAY_SIZE(scp_subdomain_mt2712),
1028 	.regs = {
1029 		.pwr_sta_offs = SPM_PWR_STATUS,
1030 		.pwr_sta2nd_offs = SPM_PWR_STATUS_2ND
1031 	},
1032 	.bus_prot_reg_update = false,
1033 };
1034 
1035 static const struct scp_soc_data mt6797_data = {
1036 	.domains = scp_domain_data_mt6797,
1037 	.num_domains = ARRAY_SIZE(scp_domain_data_mt6797),
1038 	.subdomains = scp_subdomain_mt6797,
1039 	.num_subdomains = ARRAY_SIZE(scp_subdomain_mt6797),
1040 	.regs = {
1041 		.pwr_sta_offs = SPM_PWR_STATUS_MT6797,
1042 		.pwr_sta2nd_offs = SPM_PWR_STATUS_2ND_MT6797
1043 	},
1044 	.bus_prot_reg_update = true,
1045 };
1046 
1047 static const struct scp_soc_data mt7622_data = {
1048 	.domains = scp_domain_data_mt7622,
1049 	.num_domains = ARRAY_SIZE(scp_domain_data_mt7622),
1050 	.regs = {
1051 		.pwr_sta_offs = SPM_PWR_STATUS,
1052 		.pwr_sta2nd_offs = SPM_PWR_STATUS_2ND
1053 	},
1054 	.bus_prot_reg_update = true,
1055 };
1056 
1057 static const struct scp_soc_data mt7623a_data = {
1058 	.domains = scp_domain_data_mt7623a,
1059 	.num_domains = ARRAY_SIZE(scp_domain_data_mt7623a),
1060 	.regs = {
1061 		.pwr_sta_offs = SPM_PWR_STATUS,
1062 		.pwr_sta2nd_offs = SPM_PWR_STATUS_2ND
1063 	},
1064 	.bus_prot_reg_update = true,
1065 };
1066 
1067 static const struct scp_soc_data mt8173_data = {
1068 	.domains = scp_domain_data_mt8173,
1069 	.num_domains = ARRAY_SIZE(scp_domain_data_mt8173),
1070 	.subdomains = scp_subdomain_mt8173,
1071 	.num_subdomains = ARRAY_SIZE(scp_subdomain_mt8173),
1072 	.regs = {
1073 		.pwr_sta_offs = SPM_PWR_STATUS,
1074 		.pwr_sta2nd_offs = SPM_PWR_STATUS_2ND
1075 	},
1076 	.bus_prot_reg_update = true,
1077 };
1078 
1079 /*
1080  * scpsys driver init
1081  */
1082 
1083 static const struct of_device_id of_scpsys_match_tbl[] = {
1084 	{
1085 		.compatible = "mediatek,mt2701-scpsys",
1086 		.data = &mt2701_data,
1087 	}, {
1088 		.compatible = "mediatek,mt2712-scpsys",
1089 		.data = &mt2712_data,
1090 	}, {
1091 		.compatible = "mediatek,mt6797-scpsys",
1092 		.data = &mt6797_data,
1093 	}, {
1094 		.compatible = "mediatek,mt7622-scpsys",
1095 		.data = &mt7622_data,
1096 	}, {
1097 		.compatible = "mediatek,mt7623a-scpsys",
1098 		.data = &mt7623a_data,
1099 	}, {
1100 		.compatible = "mediatek,mt8173-scpsys",
1101 		.data = &mt8173_data,
1102 	}, {
1103 		/* sentinel */
1104 	}
1105 };
1106 
scpsys_probe(struct platform_device * pdev)1107 static int scpsys_probe(struct platform_device *pdev)
1108 {
1109 	const struct scp_subdomain *sd;
1110 	const struct scp_soc_data *soc;
1111 	struct scp *scp;
1112 	struct genpd_onecell_data *pd_data;
1113 	int i, ret;
1114 
1115 	soc = of_device_get_match_data(&pdev->dev);
1116 
1117 	scp = init_scp(pdev, soc->domains, soc->num_domains, &soc->regs,
1118 			soc->bus_prot_reg_update);
1119 	if (IS_ERR(scp))
1120 		return PTR_ERR(scp);
1121 
1122 	mtk_register_power_domains(pdev, scp, soc->num_domains);
1123 
1124 	pd_data = &scp->pd_data;
1125 
1126 	for (i = 0, sd = soc->subdomains; i < soc->num_subdomains; i++, sd++) {
1127 		ret = pm_genpd_add_subdomain(pd_data->domains[sd->origin],
1128 					     pd_data->domains[sd->subdomain]);
1129 		if (ret && IS_ENABLED(CONFIG_PM))
1130 			dev_err(&pdev->dev, "Failed to add subdomain: %d\n",
1131 				ret);
1132 	}
1133 
1134 	return 0;
1135 }
1136 
1137 static struct platform_driver scpsys_drv = {
1138 	.probe = scpsys_probe,
1139 	.driver = {
1140 		.name = "mtk-scpsys",
1141 		.suppress_bind_attrs = true,
1142 		.owner = THIS_MODULE,
1143 		.of_match_table = of_match_ptr(of_scpsys_match_tbl),
1144 	},
1145 };
1146 builtin_platform_driver(scpsys_drv);
1147