xref: /linux/drivers/soc/tegra/fuse/fuse-tegra.c (revision 83468fe259bf827f350b118f25bce99dc0bdf597)
1783c8f4cSPeter De Schrijver /*
2783c8f4cSPeter De Schrijver  * Copyright (c) 2013-2014, NVIDIA CORPORATION.  All rights reserved.
3783c8f4cSPeter De Schrijver  *
4783c8f4cSPeter De Schrijver  * This program is free software; you can redistribute it and/or modify it
5783c8f4cSPeter De Schrijver  * under the terms and conditions of the GNU General Public License,
6783c8f4cSPeter De Schrijver  * version 2, as published by the Free Software Foundation.
7783c8f4cSPeter De Schrijver  *
8783c8f4cSPeter De Schrijver  * This program is distributed in the hope it will be useful, but WITHOUT
9783c8f4cSPeter De Schrijver  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10783c8f4cSPeter De Schrijver  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
11783c8f4cSPeter De Schrijver  * more details.
12783c8f4cSPeter De Schrijver  *
13783c8f4cSPeter De Schrijver  * You should have received a copy of the GNU General Public License
14783c8f4cSPeter De Schrijver  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
15783c8f4cSPeter De Schrijver  *
16783c8f4cSPeter De Schrijver  */
17783c8f4cSPeter De Schrijver 
187e939de1SThierry Reding #include <linux/clk.h>
19783c8f4cSPeter De Schrijver #include <linux/device.h>
20783c8f4cSPeter De Schrijver #include <linux/kobject.h>
211859217bSPaul Gortmaker #include <linux/init.h>
2227a0342aSThierry Reding #include <linux/io.h>
23783c8f4cSPeter De Schrijver #include <linux/of.h>
24783c8f4cSPeter De Schrijver #include <linux/of_address.h>
2527a0342aSThierry Reding #include <linux/platform_device.h>
2627a0342aSThierry Reding #include <linux/slab.h>
2727a0342aSThierry Reding #include <linux/sys_soc.h>
28783c8f4cSPeter De Schrijver 
2924fa5af8SThierry Reding #include <soc/tegra/common.h>
30783c8f4cSPeter De Schrijver #include <soc/tegra/fuse.h>
31783c8f4cSPeter De Schrijver 
32783c8f4cSPeter De Schrijver #include "fuse.h"
33783c8f4cSPeter De Schrijver 
34783c8f4cSPeter De Schrijver struct tegra_sku_info tegra_sku_info;
35f9fc3661SVince Hsu EXPORT_SYMBOL(tegra_sku_info);
36783c8f4cSPeter De Schrijver 
37783c8f4cSPeter De Schrijver static const char *tegra_revision_name[TEGRA_REVISION_MAX] = {
38783c8f4cSPeter De Schrijver 	[TEGRA_REVISION_UNKNOWN] = "unknown",
39783c8f4cSPeter De Schrijver 	[TEGRA_REVISION_A01]     = "A01",
40783c8f4cSPeter De Schrijver 	[TEGRA_REVISION_A02]     = "A02",
41783c8f4cSPeter De Schrijver 	[TEGRA_REVISION_A03]     = "A03",
42783c8f4cSPeter De Schrijver 	[TEGRA_REVISION_A03p]    = "A03 prime",
43783c8f4cSPeter De Schrijver 	[TEGRA_REVISION_A04]     = "A04",
44783c8f4cSPeter De Schrijver };
45783c8f4cSPeter De Schrijver 
467e939de1SThierry Reding static u8 fuse_readb(struct tegra_fuse *fuse, unsigned int offset)
47783c8f4cSPeter De Schrijver {
48783c8f4cSPeter De Schrijver 	u32 val;
49783c8f4cSPeter De Schrijver 
507e939de1SThierry Reding 	val = fuse->read(fuse, round_down(offset, 4));
51783c8f4cSPeter De Schrijver 	val >>= (offset % 4) * 8;
52783c8f4cSPeter De Schrijver 	val &= 0xff;
53783c8f4cSPeter De Schrijver 
54783c8f4cSPeter De Schrijver 	return val;
55783c8f4cSPeter De Schrijver }
56783c8f4cSPeter De Schrijver 
57783c8f4cSPeter De Schrijver static ssize_t fuse_read(struct file *fd, struct kobject *kobj,
58783c8f4cSPeter De Schrijver 			 struct bin_attribute *attr, char *buf,
59783c8f4cSPeter De Schrijver 			 loff_t pos, size_t size)
60783c8f4cSPeter De Schrijver {
617e939de1SThierry Reding 	struct device *dev = kobj_to_dev(kobj);
627e939de1SThierry Reding 	struct tegra_fuse *fuse = dev_get_drvdata(dev);
63783c8f4cSPeter De Schrijver 	int i;
64783c8f4cSPeter De Schrijver 
657e939de1SThierry Reding 	if (pos < 0 || pos >= attr->size)
66783c8f4cSPeter De Schrijver 		return 0;
67783c8f4cSPeter De Schrijver 
687e939de1SThierry Reding 	if (size > attr->size - pos)
697e939de1SThierry Reding 		size = attr->size - pos;
70783c8f4cSPeter De Schrijver 
71783c8f4cSPeter De Schrijver 	for (i = 0; i < size; i++)
727e939de1SThierry Reding 		buf[i] = fuse_readb(fuse, pos + i);
73783c8f4cSPeter De Schrijver 
74783c8f4cSPeter De Schrijver 	return i;
75783c8f4cSPeter De Schrijver }
76783c8f4cSPeter De Schrijver 
77783c8f4cSPeter De Schrijver static struct bin_attribute fuse_bin_attr = {
78783c8f4cSPeter De Schrijver 	.attr = { .name = "fuse", .mode = S_IRUGO, },
79783c8f4cSPeter De Schrijver 	.read = fuse_read,
80783c8f4cSPeter De Schrijver };
81783c8f4cSPeter De Schrijver 
827e939de1SThierry Reding static int tegra_fuse_create_sysfs(struct device *dev, unsigned int size,
837e939de1SThierry Reding 				   const struct tegra_fuse_info *info)
847e939de1SThierry Reding {
857e939de1SThierry Reding 	fuse_bin_attr.size = size;
867e939de1SThierry Reding 
877e939de1SThierry Reding 	return device_create_bin_file(dev, &fuse_bin_attr);
887e939de1SThierry Reding }
897e939de1SThierry Reding 
90783c8f4cSPeter De Schrijver static const struct of_device_id car_match[] __initconst = {
91783c8f4cSPeter De Schrijver 	{ .compatible = "nvidia,tegra20-car", },
92783c8f4cSPeter De Schrijver 	{ .compatible = "nvidia,tegra30-car", },
93783c8f4cSPeter De Schrijver 	{ .compatible = "nvidia,tegra114-car", },
94783c8f4cSPeter De Schrijver 	{ .compatible = "nvidia,tegra124-car", },
959b07eb05SThierry Reding 	{ .compatible = "nvidia,tegra132-car", },
960dc5a0d8SThierry Reding 	{ .compatible = "nvidia,tegra210-car", },
97783c8f4cSPeter De Schrijver 	{},
98783c8f4cSPeter De Schrijver };
99783c8f4cSPeter De Schrijver 
1007e939de1SThierry Reding static struct tegra_fuse *fuse = &(struct tegra_fuse) {
1017e939de1SThierry Reding 	.base = NULL,
1027e939de1SThierry Reding 	.soc = NULL,
1037e939de1SThierry Reding };
1047e939de1SThierry Reding 
1057e939de1SThierry Reding static const struct of_device_id tegra_fuse_match[] = {
106*83468fe2STimo Alho #ifdef CONFIG_ARCH_TEGRA_186_SOC
107*83468fe2STimo Alho 	{ .compatible = "nvidia,tegra186-efuse", .data = &tegra186_fuse_soc },
108*83468fe2STimo Alho #endif
1090dc5a0d8SThierry Reding #ifdef CONFIG_ARCH_TEGRA_210_SOC
1100dc5a0d8SThierry Reding 	{ .compatible = "nvidia,tegra210-efuse", .data = &tegra210_fuse_soc },
1110dc5a0d8SThierry Reding #endif
1127e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_132_SOC
1137e939de1SThierry Reding 	{ .compatible = "nvidia,tegra132-efuse", .data = &tegra124_fuse_soc },
1147e939de1SThierry Reding #endif
1157e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_124_SOC
1167e939de1SThierry Reding 	{ .compatible = "nvidia,tegra124-efuse", .data = &tegra124_fuse_soc },
1177e939de1SThierry Reding #endif
1187e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_114_SOC
1197e939de1SThierry Reding 	{ .compatible = "nvidia,tegra114-efuse", .data = &tegra114_fuse_soc },
1207e939de1SThierry Reding #endif
1217e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_3x_SOC
1227e939de1SThierry Reding 	{ .compatible = "nvidia,tegra30-efuse", .data = &tegra30_fuse_soc },
1237e939de1SThierry Reding #endif
1247e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_2x_SOC
1257e939de1SThierry Reding 	{ .compatible = "nvidia,tegra20-efuse", .data = &tegra20_fuse_soc },
1267e939de1SThierry Reding #endif
1277e939de1SThierry Reding 	{ /* sentinel */ }
1287e939de1SThierry Reding };
1297e939de1SThierry Reding 
1307e939de1SThierry Reding static int tegra_fuse_probe(struct platform_device *pdev)
1317e939de1SThierry Reding {
1327e939de1SThierry Reding 	void __iomem *base = fuse->base;
1337e939de1SThierry Reding 	struct resource *res;
1347e939de1SThierry Reding 	int err;
1357e939de1SThierry Reding 
1367e939de1SThierry Reding 	/* take over the memory region from the early initialization */
1377e939de1SThierry Reding 	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1387e939de1SThierry Reding 	fuse->base = devm_ioremap_resource(&pdev->dev, res);
1397e939de1SThierry Reding 	if (IS_ERR(fuse->base))
1407e939de1SThierry Reding 		return PTR_ERR(fuse->base);
1417e939de1SThierry Reding 
1427e939de1SThierry Reding 	fuse->clk = devm_clk_get(&pdev->dev, "fuse");
1437e939de1SThierry Reding 	if (IS_ERR(fuse->clk)) {
1447e939de1SThierry Reding 		dev_err(&pdev->dev, "failed to get FUSE clock: %ld",
1457e939de1SThierry Reding 			PTR_ERR(fuse->clk));
1467e939de1SThierry Reding 		return PTR_ERR(fuse->clk);
1477e939de1SThierry Reding 	}
1487e939de1SThierry Reding 
1497e939de1SThierry Reding 	platform_set_drvdata(pdev, fuse);
1507e939de1SThierry Reding 	fuse->dev = &pdev->dev;
1517e939de1SThierry Reding 
1527e939de1SThierry Reding 	if (fuse->soc->probe) {
1537e939de1SThierry Reding 		err = fuse->soc->probe(fuse);
1547e939de1SThierry Reding 		if (err < 0)
1557e939de1SThierry Reding 			return err;
1567e939de1SThierry Reding 	}
1577e939de1SThierry Reding 
1587e939de1SThierry Reding 	if (tegra_fuse_create_sysfs(&pdev->dev, fuse->soc->info->size,
1597e939de1SThierry Reding 				    fuse->soc->info))
1607e939de1SThierry Reding 		return -ENODEV;
1617e939de1SThierry Reding 
1627e939de1SThierry Reding 	/* release the early I/O memory mapping */
1637e939de1SThierry Reding 	iounmap(base);
1647e939de1SThierry Reding 
1657e939de1SThierry Reding 	return 0;
1667e939de1SThierry Reding }
1677e939de1SThierry Reding 
1687e939de1SThierry Reding static struct platform_driver tegra_fuse_driver = {
1697e939de1SThierry Reding 	.driver = {
1707e939de1SThierry Reding 		.name = "tegra-fuse",
1717e939de1SThierry Reding 		.of_match_table = tegra_fuse_match,
1727e939de1SThierry Reding 		.suppress_bind_attrs = true,
1737e939de1SThierry Reding 	},
1747e939de1SThierry Reding 	.probe = tegra_fuse_probe,
1757e939de1SThierry Reding };
1761859217bSPaul Gortmaker builtin_platform_driver(tegra_fuse_driver);
1777e939de1SThierry Reding 
1787e939de1SThierry Reding bool __init tegra_fuse_read_spare(unsigned int spare)
1797e939de1SThierry Reding {
1807e939de1SThierry Reding 	unsigned int offset = fuse->soc->info->spare + spare * 4;
1817e939de1SThierry Reding 
1827e939de1SThierry Reding 	return fuse->read_early(fuse, offset) & 1;
1837e939de1SThierry Reding }
1847e939de1SThierry Reding 
1857e939de1SThierry Reding u32 __init tegra_fuse_read_early(unsigned int offset)
1867e939de1SThierry Reding {
1877e939de1SThierry Reding 	return fuse->read_early(fuse, offset);
1887e939de1SThierry Reding }
1897e939de1SThierry Reding 
1907e939de1SThierry Reding int tegra_fuse_readl(unsigned long offset, u32 *value)
1917e939de1SThierry Reding {
1927e939de1SThierry Reding 	if (!fuse->read)
1937e939de1SThierry Reding 		return -EPROBE_DEFER;
1947e939de1SThierry Reding 
1957e939de1SThierry Reding 	*value = fuse->read(fuse, offset);
1967e939de1SThierry Reding 
1977e939de1SThierry Reding 	return 0;
1987e939de1SThierry Reding }
1997e939de1SThierry Reding EXPORT_SYMBOL(tegra_fuse_readl);
2007e939de1SThierry Reding 
201783c8f4cSPeter De Schrijver static void tegra_enable_fuse_clk(void __iomem *base)
202783c8f4cSPeter De Schrijver {
203783c8f4cSPeter De Schrijver 	u32 reg;
204783c8f4cSPeter De Schrijver 
205783c8f4cSPeter De Schrijver 	reg = readl_relaxed(base + 0x48);
206783c8f4cSPeter De Schrijver 	reg |= 1 << 28;
207783c8f4cSPeter De Schrijver 	writel(reg, base + 0x48);
208783c8f4cSPeter De Schrijver 
209783c8f4cSPeter De Schrijver 	/*
210783c8f4cSPeter De Schrijver 	 * Enable FUSE clock. This needs to be hardcoded because the clock
211783c8f4cSPeter De Schrijver 	 * subsystem is not active during early boot.
212783c8f4cSPeter De Schrijver 	 */
213783c8f4cSPeter De Schrijver 	reg = readl(base + 0x14);
214783c8f4cSPeter De Schrijver 	reg |= 1 << 7;
215783c8f4cSPeter De Schrijver 	writel(reg, base + 0x14);
216783c8f4cSPeter De Schrijver }
217783c8f4cSPeter De Schrijver 
21827a0342aSThierry Reding struct device * __init tegra_soc_device_register(void)
21927a0342aSThierry Reding {
22027a0342aSThierry Reding 	struct soc_device_attribute *attr;
22127a0342aSThierry Reding 	struct soc_device *dev;
22227a0342aSThierry Reding 
22327a0342aSThierry Reding 	attr = kzalloc(sizeof(*attr), GFP_KERNEL);
22427a0342aSThierry Reding 	if (!attr)
22527a0342aSThierry Reding 		return NULL;
22627a0342aSThierry Reding 
22727a0342aSThierry Reding 	attr->family = kasprintf(GFP_KERNEL, "Tegra");
22827a0342aSThierry Reding 	attr->revision = kasprintf(GFP_KERNEL, "%d", tegra_sku_info.revision);
22927a0342aSThierry Reding 	attr->soc_id = kasprintf(GFP_KERNEL, "%u", tegra_get_chip_id());
23027a0342aSThierry Reding 
23127a0342aSThierry Reding 	dev = soc_device_register(attr);
23227a0342aSThierry Reding 	if (IS_ERR(dev)) {
23327a0342aSThierry Reding 		kfree(attr->soc_id);
23427a0342aSThierry Reding 		kfree(attr->revision);
23527a0342aSThierry Reding 		kfree(attr->family);
23627a0342aSThierry Reding 		kfree(attr);
23727a0342aSThierry Reding 		return ERR_CAST(dev);
23827a0342aSThierry Reding 	}
23927a0342aSThierry Reding 
24027a0342aSThierry Reding 	return soc_device_to_device(dev);
24127a0342aSThierry Reding }
24227a0342aSThierry Reding 
24324fa5af8SThierry Reding static int __init tegra_init_fuse(void)
244783c8f4cSPeter De Schrijver {
2457e939de1SThierry Reding 	const struct of_device_id *match;
246783c8f4cSPeter De Schrijver 	struct device_node *np;
2477e939de1SThierry Reding 	struct resource regs;
24824fa5af8SThierry Reding 
249783c8f4cSPeter De Schrijver 	tegra_init_apbmisc();
250783c8f4cSPeter De Schrijver 
2517e939de1SThierry Reding 	np = of_find_matching_node_and_match(NULL, tegra_fuse_match, &match);
2527e939de1SThierry Reding 	if (!np) {
2537e939de1SThierry Reding 		/*
2547e939de1SThierry Reding 		 * Fall back to legacy initialization for 32-bit ARM only. All
2557e939de1SThierry Reding 		 * 64-bit ARM device tree files for Tegra are required to have
2567e939de1SThierry Reding 		 * a FUSE node.
2577e939de1SThierry Reding 		 *
2587e939de1SThierry Reding 		 * This is for backwards-compatibility with old device trees
2597e939de1SThierry Reding 		 * that didn't contain a FUSE node.
2607e939de1SThierry Reding 		 */
2617e939de1SThierry Reding 		if (IS_ENABLED(CONFIG_ARM) && soc_is_tegra()) {
2627e939de1SThierry Reding 			u8 chip = tegra_get_chip_id();
2637e939de1SThierry Reding 
2647e939de1SThierry Reding 			regs.start = 0x7000f800;
2657e939de1SThierry Reding 			regs.end = 0x7000fbff;
2667e939de1SThierry Reding 			regs.flags = IORESOURCE_MEM;
2677e939de1SThierry Reding 
2687e939de1SThierry Reding 			switch (chip) {
2697e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_2x_SOC
2707e939de1SThierry Reding 			case TEGRA20:
2717e939de1SThierry Reding 				fuse->soc = &tegra20_fuse_soc;
2727e939de1SThierry Reding 				break;
2737e939de1SThierry Reding #endif
2747e939de1SThierry Reding 
2757e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_3x_SOC
2767e939de1SThierry Reding 			case TEGRA30:
2777e939de1SThierry Reding 				fuse->soc = &tegra30_fuse_soc;
2787e939de1SThierry Reding 				break;
2797e939de1SThierry Reding #endif
2807e939de1SThierry Reding 
2817e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_114_SOC
2827e939de1SThierry Reding 			case TEGRA114:
2837e939de1SThierry Reding 				fuse->soc = &tegra114_fuse_soc;
2847e939de1SThierry Reding 				break;
2857e939de1SThierry Reding #endif
2867e939de1SThierry Reding 
2877e939de1SThierry Reding #ifdef CONFIG_ARCH_TEGRA_124_SOC
2887e939de1SThierry Reding 			case TEGRA124:
2897e939de1SThierry Reding 				fuse->soc = &tegra124_fuse_soc;
2907e939de1SThierry Reding 				break;
2917e939de1SThierry Reding #endif
2927e939de1SThierry Reding 
2937e939de1SThierry Reding 			default:
2947e939de1SThierry Reding 				pr_warn("Unsupported SoC: %02x\n", chip);
2957e939de1SThierry Reding 				break;
2967e939de1SThierry Reding 			}
297783c8f4cSPeter De Schrijver 		} else {
2987e939de1SThierry Reding 			/*
2997e939de1SThierry Reding 			 * At this point we're not running on Tegra, so play
3007e939de1SThierry Reding 			 * nice with multi-platform kernels.
3017e939de1SThierry Reding 			 */
3027e939de1SThierry Reding 			return 0;
3037e939de1SThierry Reding 		}
3047e939de1SThierry Reding 	} else {
3057e939de1SThierry Reding 		/*
3067e939de1SThierry Reding 		 * Extract information from the device tree if we've found a
3077e939de1SThierry Reding 		 * matching node.
3087e939de1SThierry Reding 		 */
3097e939de1SThierry Reding 		if (of_address_to_resource(np, 0, &regs) < 0) {
3107e939de1SThierry Reding 			pr_err("failed to get FUSE register\n");
31124fa5af8SThierry Reding 			return -ENXIO;
312783c8f4cSPeter De Schrijver 		}
313783c8f4cSPeter De Schrijver 
3147e939de1SThierry Reding 		fuse->soc = match->data;
3157e939de1SThierry Reding 	}
3167e939de1SThierry Reding 
3177e939de1SThierry Reding 	np = of_find_matching_node(NULL, car_match);
3187e939de1SThierry Reding 	if (np) {
3197e939de1SThierry Reding 		void __iomem *base = of_iomap(np, 0);
3207e939de1SThierry Reding 		if (base) {
3217e939de1SThierry Reding 			tegra_enable_fuse_clk(base);
3227e939de1SThierry Reding 			iounmap(base);
3237e939de1SThierry Reding 		} else {
3247e939de1SThierry Reding 			pr_err("failed to map clock registers\n");
3257e939de1SThierry Reding 			return -ENXIO;
3267e939de1SThierry Reding 		}
3277e939de1SThierry Reding 	}
3287e939de1SThierry Reding 
3297e939de1SThierry Reding 	fuse->base = ioremap_nocache(regs.start, resource_size(&regs));
3307e939de1SThierry Reding 	if (!fuse->base) {
3317e939de1SThierry Reding 		pr_err("failed to map FUSE registers\n");
3327e939de1SThierry Reding 		return -ENXIO;
3337e939de1SThierry Reding 	}
3347e939de1SThierry Reding 
3357e939de1SThierry Reding 	fuse->soc->init(fuse);
336783c8f4cSPeter De Schrijver 
33703b3f4c8SThierry Reding 	pr_info("Tegra Revision: %s SKU: %d CPU Process: %d SoC Process: %d\n",
338783c8f4cSPeter De Schrijver 		tegra_revision_name[tegra_sku_info.revision],
339783c8f4cSPeter De Schrijver 		tegra_sku_info.sku_id, tegra_sku_info.cpu_process_id,
34003b3f4c8SThierry Reding 		tegra_sku_info.soc_process_id);
34103b3f4c8SThierry Reding 	pr_debug("Tegra CPU Speedo ID %d, SoC Speedo ID %d\n",
342783c8f4cSPeter De Schrijver 		 tegra_sku_info.cpu_speedo_id, tegra_sku_info.soc_speedo_id);
34324fa5af8SThierry Reding 
34427a0342aSThierry Reding 
34524fa5af8SThierry Reding 	return 0;
346783c8f4cSPeter De Schrijver }
34724fa5af8SThierry Reding early_initcall(tegra_init_fuse);
34827a0342aSThierry Reding 
34927a0342aSThierry Reding #ifdef CONFIG_ARM64
35027a0342aSThierry Reding static int __init tegra_init_soc(void)
35127a0342aSThierry Reding {
352226cff48SThierry Reding 	struct device_node *np;
35327a0342aSThierry Reding 	struct device *soc;
35427a0342aSThierry Reding 
355226cff48SThierry Reding 	/* make sure we're running on Tegra */
356226cff48SThierry Reding 	np = of_find_matching_node(NULL, tegra_fuse_match);
357226cff48SThierry Reding 	if (!np)
358226cff48SThierry Reding 		return 0;
359226cff48SThierry Reding 
360226cff48SThierry Reding 	of_node_put(np);
361226cff48SThierry Reding 
36227a0342aSThierry Reding 	soc = tegra_soc_device_register();
36327a0342aSThierry Reding 	if (IS_ERR(soc)) {
36427a0342aSThierry Reding 		pr_err("failed to register SoC device: %ld\n", PTR_ERR(soc));
36527a0342aSThierry Reding 		return PTR_ERR(soc);
36627a0342aSThierry Reding 	}
36727a0342aSThierry Reding 
36827a0342aSThierry Reding 	return 0;
36927a0342aSThierry Reding }
3709261b43eSThierry Reding device_initcall(tegra_init_soc);
37127a0342aSThierry Reding #endif
372