mtk-scpsys.c 28 KB

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