xref: /openbmc/linux/drivers/hwspinlock/qcom_hwspinlock.c (revision cdab30b44518513003607ecfc8a22de3dbbb78ed)
18ba01caeSSuman Anna // SPDX-License-Identifier: GPL-2.0
219a0f612SBjorn Andersson /*
319a0f612SBjorn Andersson  * Copyright (c) 2013, The Linux Foundation. All rights reserved.
419a0f612SBjorn Andersson  * Copyright (c) 2015, Sony Mobile Communications AB
519a0f612SBjorn Andersson  */
619a0f612SBjorn Andersson 
719a0f612SBjorn Andersson #include <linux/hwspinlock.h>
819a0f612SBjorn Andersson #include <linux/io.h>
919a0f612SBjorn Andersson #include <linux/kernel.h>
1019a0f612SBjorn Andersson #include <linux/mfd/syscon.h>
1119a0f612SBjorn Andersson #include <linux/module.h>
1219a0f612SBjorn Andersson #include <linux/of.h>
1319a0f612SBjorn Andersson #include <linux/of_device.h>
1419a0f612SBjorn Andersson #include <linux/platform_device.h>
1519a0f612SBjorn Andersson #include <linux/regmap.h>
1619a0f612SBjorn Andersson 
1719a0f612SBjorn Andersson #include "hwspinlock_internal.h"
1819a0f612SBjorn Andersson 
1919a0f612SBjorn Andersson #define QCOM_MUTEX_APPS_PROC_ID	1
2019a0f612SBjorn Andersson #define QCOM_MUTEX_NUM_LOCKS	32
2119a0f612SBjorn Andersson 
22*cdab30b4SChristian Marangi struct qcom_hwspinlock_of_data {
23*cdab30b4SChristian Marangi 	u32 offset;
24*cdab30b4SChristian Marangi 	u32 stride;
25*cdab30b4SChristian Marangi };
26*cdab30b4SChristian Marangi 
2719a0f612SBjorn Andersson static int qcom_hwspinlock_trylock(struct hwspinlock *lock)
2819a0f612SBjorn Andersson {
2919a0f612SBjorn Andersson 	struct regmap_field *field = lock->priv;
3019a0f612SBjorn Andersson 	u32 lock_owner;
3119a0f612SBjorn Andersson 	int ret;
3219a0f612SBjorn Andersson 
3319a0f612SBjorn Andersson 	ret = regmap_field_write(field, QCOM_MUTEX_APPS_PROC_ID);
3419a0f612SBjorn Andersson 	if (ret)
3519a0f612SBjorn Andersson 		return ret;
3619a0f612SBjorn Andersson 
3719a0f612SBjorn Andersson 	ret = regmap_field_read(field, &lock_owner);
3819a0f612SBjorn Andersson 	if (ret)
3919a0f612SBjorn Andersson 		return ret;
4019a0f612SBjorn Andersson 
4119a0f612SBjorn Andersson 	return lock_owner == QCOM_MUTEX_APPS_PROC_ID;
4219a0f612SBjorn Andersson }
4319a0f612SBjorn Andersson 
4419a0f612SBjorn Andersson static void qcom_hwspinlock_unlock(struct hwspinlock *lock)
4519a0f612SBjorn Andersson {
4619a0f612SBjorn Andersson 	struct regmap_field *field = lock->priv;
4719a0f612SBjorn Andersson 	u32 lock_owner;
4819a0f612SBjorn Andersson 	int ret;
4919a0f612SBjorn Andersson 
5019a0f612SBjorn Andersson 	ret = regmap_field_read(field, &lock_owner);
5119a0f612SBjorn Andersson 	if (ret) {
5219a0f612SBjorn Andersson 		pr_err("%s: unable to query spinlock owner\n", __func__);
5319a0f612SBjorn Andersson 		return;
5419a0f612SBjorn Andersson 	}
5519a0f612SBjorn Andersson 
5619a0f612SBjorn Andersson 	if (lock_owner != QCOM_MUTEX_APPS_PROC_ID) {
5719a0f612SBjorn Andersson 		pr_err("%s: spinlock not owned by us (actual owner is %d)\n",
5819a0f612SBjorn Andersson 				__func__, lock_owner);
5919a0f612SBjorn Andersson 	}
6019a0f612SBjorn Andersson 
6119a0f612SBjorn Andersson 	ret = regmap_field_write(field, 0);
6219a0f612SBjorn Andersson 	if (ret)
6319a0f612SBjorn Andersson 		pr_err("%s: failed to unlock spinlock\n", __func__);
6419a0f612SBjorn Andersson }
6519a0f612SBjorn Andersson 
6619a0f612SBjorn Andersson static const struct hwspinlock_ops qcom_hwspinlock_ops = {
6719a0f612SBjorn Andersson 	.trylock	= qcom_hwspinlock_trylock,
6819a0f612SBjorn Andersson 	.unlock		= qcom_hwspinlock_unlock,
6919a0f612SBjorn Andersson };
7019a0f612SBjorn Andersson 
71*cdab30b4SChristian Marangi static const struct qcom_hwspinlock_of_data of_sfpb_mutex = {
72*cdab30b4SChristian Marangi 	.offset = 0x4,
73*cdab30b4SChristian Marangi 	.stride = 0x4,
74*cdab30b4SChristian Marangi };
75*cdab30b4SChristian Marangi 
76*cdab30b4SChristian Marangi /* All modern platform has offset 0 and stride of 4k */
77*cdab30b4SChristian Marangi static const struct qcom_hwspinlock_of_data of_tcsr_mutex = {
78*cdab30b4SChristian Marangi 	.offset = 0,
79*cdab30b4SChristian Marangi 	.stride = 0x1000,
80*cdab30b4SChristian Marangi };
81*cdab30b4SChristian Marangi 
8219a0f612SBjorn Andersson static const struct of_device_id qcom_hwspinlock_of_match[] = {
83*cdab30b4SChristian Marangi 	{ .compatible = "qcom,sfpb-mutex", .data = &of_sfpb_mutex },
84*cdab30b4SChristian Marangi 	{ .compatible = "qcom,tcsr-mutex", .data = &of_tcsr_mutex },
8519a0f612SBjorn Andersson 	{ }
8619a0f612SBjorn Andersson };
8719a0f612SBjorn Andersson MODULE_DEVICE_TABLE(of, qcom_hwspinlock_of_match);
8819a0f612SBjorn Andersson 
897a1e6fb1SBjorn Andersson static struct regmap *qcom_hwspinlock_probe_syscon(struct platform_device *pdev,
907a1e6fb1SBjorn Andersson 						   u32 *base, u32 *stride)
917a1e6fb1SBjorn Andersson {
927a1e6fb1SBjorn Andersson 	struct device_node *syscon;
937a1e6fb1SBjorn Andersson 	struct regmap *regmap;
947a1e6fb1SBjorn Andersson 	int ret;
957a1e6fb1SBjorn Andersson 
967a1e6fb1SBjorn Andersson 	syscon = of_parse_phandle(pdev->dev.of_node, "syscon", 0);
977a1e6fb1SBjorn Andersson 	if (!syscon)
987a1e6fb1SBjorn Andersson 		return ERR_PTR(-ENODEV);
997a1e6fb1SBjorn Andersson 
1007a1e6fb1SBjorn Andersson 	regmap = syscon_node_to_regmap(syscon);
1017a1e6fb1SBjorn Andersson 	of_node_put(syscon);
1027a1e6fb1SBjorn Andersson 	if (IS_ERR(regmap))
1037a1e6fb1SBjorn Andersson 		return regmap;
1047a1e6fb1SBjorn Andersson 
1057a1e6fb1SBjorn Andersson 	ret = of_property_read_u32_index(pdev->dev.of_node, "syscon", 1, base);
1067a1e6fb1SBjorn Andersson 	if (ret < 0) {
1077a1e6fb1SBjorn Andersson 		dev_err(&pdev->dev, "no offset in syscon\n");
1087a1e6fb1SBjorn Andersson 		return ERR_PTR(-EINVAL);
1097a1e6fb1SBjorn Andersson 	}
1107a1e6fb1SBjorn Andersson 
1117a1e6fb1SBjorn Andersson 	ret = of_property_read_u32_index(pdev->dev.of_node, "syscon", 2, stride);
1127a1e6fb1SBjorn Andersson 	if (ret < 0) {
1137a1e6fb1SBjorn Andersson 		dev_err(&pdev->dev, "no stride syscon\n");
1147a1e6fb1SBjorn Andersson 		return ERR_PTR(-EINVAL);
1157a1e6fb1SBjorn Andersson 	}
1167a1e6fb1SBjorn Andersson 
1177a1e6fb1SBjorn Andersson 	return regmap;
1187a1e6fb1SBjorn Andersson }
1197a1e6fb1SBjorn Andersson 
1207a1e6fb1SBjorn Andersson static const struct regmap_config tcsr_mutex_config = {
1217a1e6fb1SBjorn Andersson 	.reg_bits		= 32,
1227a1e6fb1SBjorn Andersson 	.reg_stride		= 4,
1237a1e6fb1SBjorn Andersson 	.val_bits		= 32,
1247a1e6fb1SBjorn Andersson 	.max_register		= 0x40000,
1257a1e6fb1SBjorn Andersson 	.fast_io		= true,
1267a1e6fb1SBjorn Andersson };
1277a1e6fb1SBjorn Andersson 
1287a1e6fb1SBjorn Andersson static struct regmap *qcom_hwspinlock_probe_mmio(struct platform_device *pdev,
1297a1e6fb1SBjorn Andersson 						 u32 *offset, u32 *stride)
1307a1e6fb1SBjorn Andersson {
131*cdab30b4SChristian Marangi 	const struct qcom_hwspinlock_of_data *data;
1327a1e6fb1SBjorn Andersson 	struct device *dev = &pdev->dev;
1337a1e6fb1SBjorn Andersson 	void __iomem *base;
1347a1e6fb1SBjorn Andersson 
135*cdab30b4SChristian Marangi 	data = of_device_get_match_data(dev);
136*cdab30b4SChristian Marangi 
137*cdab30b4SChristian Marangi 	*offset = data->offset;
138*cdab30b4SChristian Marangi 	*stride = data->stride;
1397a1e6fb1SBjorn Andersson 
1407a1e6fb1SBjorn Andersson 	base = devm_platform_ioremap_resource(pdev, 0);
1417a1e6fb1SBjorn Andersson 	if (IS_ERR(base))
1427a1e6fb1SBjorn Andersson 		return ERR_CAST(base);
1437a1e6fb1SBjorn Andersson 
1447a1e6fb1SBjorn Andersson 	return devm_regmap_init_mmio(dev, base, &tcsr_mutex_config);
1457a1e6fb1SBjorn Andersson }
1467a1e6fb1SBjorn Andersson 
14719a0f612SBjorn Andersson static int qcom_hwspinlock_probe(struct platform_device *pdev)
14819a0f612SBjorn Andersson {
14919a0f612SBjorn Andersson 	struct hwspinlock_device *bank;
15019a0f612SBjorn Andersson 	struct reg_field field;
15119a0f612SBjorn Andersson 	struct regmap *regmap;
15219a0f612SBjorn Andersson 	size_t array_size;
15319a0f612SBjorn Andersson 	u32 stride;
15419a0f612SBjorn Andersson 	u32 base;
15519a0f612SBjorn Andersson 	int i;
15619a0f612SBjorn Andersson 
1577a1e6fb1SBjorn Andersson 	regmap = qcom_hwspinlock_probe_syscon(pdev, &base, &stride);
1587a1e6fb1SBjorn Andersson 	if (IS_ERR(regmap) && PTR_ERR(regmap) == -ENODEV)
1597a1e6fb1SBjorn Andersson 		regmap = qcom_hwspinlock_probe_mmio(pdev, &base, &stride);
16019a0f612SBjorn Andersson 
16119a0f612SBjorn Andersson 	if (IS_ERR(regmap))
16219a0f612SBjorn Andersson 		return PTR_ERR(regmap);
16319a0f612SBjorn Andersson 
16419a0f612SBjorn Andersson 	array_size = QCOM_MUTEX_NUM_LOCKS * sizeof(struct hwspinlock);
16519a0f612SBjorn Andersson 	bank = devm_kzalloc(&pdev->dev, sizeof(*bank) + array_size, GFP_KERNEL);
16619a0f612SBjorn Andersson 	if (!bank)
16719a0f612SBjorn Andersson 		return -ENOMEM;
16819a0f612SBjorn Andersson 
16919a0f612SBjorn Andersson 	platform_set_drvdata(pdev, bank);
17019a0f612SBjorn Andersson 
17119a0f612SBjorn Andersson 	for (i = 0; i < QCOM_MUTEX_NUM_LOCKS; i++) {
17219a0f612SBjorn Andersson 		field.reg = base + i * stride;
17319a0f612SBjorn Andersson 		field.lsb = 0;
174bd5717a4SBjorn Andersson 		field.msb = 31;
17519a0f612SBjorn Andersson 
17619a0f612SBjorn Andersson 		bank->lock[i].priv = devm_regmap_field_alloc(&pdev->dev,
17719a0f612SBjorn Andersson 							     regmap, field);
17819a0f612SBjorn Andersson 	}
17919a0f612SBjorn Andersson 
180ed0611a6SBaolin Wang 	return devm_hwspin_lock_register(&pdev->dev, bank, &qcom_hwspinlock_ops,
18119a0f612SBjorn Andersson 					 0, QCOM_MUTEX_NUM_LOCKS);
18219a0f612SBjorn Andersson }
18319a0f612SBjorn Andersson 
18419a0f612SBjorn Andersson static struct platform_driver qcom_hwspinlock_driver = {
18519a0f612SBjorn Andersson 	.probe		= qcom_hwspinlock_probe,
18619a0f612SBjorn Andersson 	.driver		= {
18719a0f612SBjorn Andersson 		.name	= "qcom_hwspinlock",
18819a0f612SBjorn Andersson 		.of_match_table = qcom_hwspinlock_of_match,
18919a0f612SBjorn Andersson 	},
19019a0f612SBjorn Andersson };
19119a0f612SBjorn Andersson 
19219a0f612SBjorn Andersson static int __init qcom_hwspinlock_init(void)
19319a0f612SBjorn Andersson {
19419a0f612SBjorn Andersson 	return platform_driver_register(&qcom_hwspinlock_driver);
19519a0f612SBjorn Andersson }
19619a0f612SBjorn Andersson /* board init code might need to reserve hwspinlocks for predefined purposes */
19719a0f612SBjorn Andersson postcore_initcall(qcom_hwspinlock_init);
19819a0f612SBjorn Andersson 
19919a0f612SBjorn Andersson static void __exit qcom_hwspinlock_exit(void)
20019a0f612SBjorn Andersson {
20119a0f612SBjorn Andersson 	platform_driver_unregister(&qcom_hwspinlock_driver);
20219a0f612SBjorn Andersson }
20319a0f612SBjorn Andersson module_exit(qcom_hwspinlock_exit);
20419a0f612SBjorn Andersson 
20519a0f612SBjorn Andersson MODULE_LICENSE("GPL v2");
20619a0f612SBjorn Andersson MODULE_DESCRIPTION("Hardware spinlock driver for Qualcomm SoCs");
207