cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
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bcm-keypad.c (11658B)


      1/*
      2 * Copyright (C) 2014 Broadcom Corporation
      3 *
      4 * This program is free software; you can redistribute it and/or
      5 * modify it under the terms of the GNU General Public License as
      6 * published by the Free Software Foundation version 2.
      7 *
      8 * This program is distributed "as is" WITHOUT ANY WARRANTY of any
      9 * kind, whether express or implied; without even the implied warranty
     10 * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     11 * GNU General Public License for more details.
     12 */
     13
     14#include <linux/bitops.h>
     15#include <linux/clk.h>
     16#include <linux/gfp.h>
     17#include <linux/io.h>
     18#include <linux/input.h>
     19#include <linux/input/matrix_keypad.h>
     20#include <linux/interrupt.h>
     21#include <linux/module.h>
     22#include <linux/of.h>
     23#include <linux/platform_device.h>
     24#include <linux/stddef.h>
     25#include <linux/types.h>
     26
     27#define DEFAULT_CLK_HZ			31250
     28#define MAX_ROWS			8
     29#define MAX_COLS			8
     30
     31/* Register/field definitions */
     32#define KPCR_OFFSET			0x00000080
     33#define KPCR_MODE			0x00000002
     34#define KPCR_MODE_SHIFT			1
     35#define KPCR_MODE_MASK			1
     36#define KPCR_ENABLE			0x00000001
     37#define KPCR_STATUSFILTERENABLE		0x00008000
     38#define KPCR_STATUSFILTERTYPE_SHIFT	12
     39#define KPCR_COLFILTERENABLE		0x00000800
     40#define KPCR_COLFILTERTYPE_SHIFT	8
     41#define KPCR_ROWWIDTH_SHIFT		20
     42#define KPCR_COLUMNWIDTH_SHIFT		16
     43
     44#define KPIOR_OFFSET			0x00000084
     45#define KPIOR_ROWOCONTRL_SHIFT		24
     46#define KPIOR_ROWOCONTRL_MASK		0xFF000000
     47#define KPIOR_COLUMNOCONTRL_SHIFT	16
     48#define KPIOR_COLUMNOCONTRL_MASK	0x00FF0000
     49#define KPIOR_COLUMN_IO_DATA_SHIFT	0
     50
     51#define KPEMR0_OFFSET			0x00000090
     52#define KPEMR1_OFFSET			0x00000094
     53#define KPEMR2_OFFSET			0x00000098
     54#define KPEMR3_OFFSET			0x0000009C
     55#define KPEMR_EDGETYPE_BOTH		3
     56
     57#define KPSSR0_OFFSET			0x000000A0
     58#define KPSSR1_OFFSET			0x000000A4
     59#define KPSSRN_OFFSET(reg_n)		(KPSSR0_OFFSET + 4 * (reg_n))
     60#define KPIMR0_OFFSET			0x000000B0
     61#define KPIMR1_OFFSET			0x000000B4
     62#define KPICR0_OFFSET			0x000000B8
     63#define KPICR1_OFFSET			0x000000BC
     64#define KPICRN_OFFSET(reg_n)		(KPICR0_OFFSET + 4 * (reg_n))
     65#define KPISR0_OFFSET			0x000000C0
     66#define KPISR1_OFFSET			0x000000C4
     67
     68#define KPCR_STATUSFILTERTYPE_MAX	7
     69#define KPCR_COLFILTERTYPE_MAX		7
     70
     71/* Macros to determine the row/column from a bit that is set in SSR0/1. */
     72#define BIT_TO_ROW_SSRN(bit_nr, reg_n)	(((bit_nr) >> 3) + 4 * (reg_n))
     73#define BIT_TO_COL(bit_nr)		((bit_nr) % 8)
     74
     75/* Structure representing various run-time entities */
     76struct bcm_kp {
     77	void __iomem *base;
     78	int irq;
     79	struct clk *clk;
     80	struct input_dev *input_dev;
     81	unsigned long last_state[2];
     82	unsigned int n_rows;
     83	unsigned int n_cols;
     84	u32 kpcr;
     85	u32 kpior;
     86	u32 kpemr;
     87	u32 imr0_val;
     88	u32 imr1_val;
     89};
     90
     91/*
     92 * Returns the keycode from the input device keymap given the row and
     93 * column.
     94 */
     95static int bcm_kp_get_keycode(struct bcm_kp *kp, int row, int col)
     96{
     97	unsigned int row_shift = get_count_order(kp->n_cols);
     98	unsigned short *keymap = kp->input_dev->keycode;
     99
    100	return keymap[MATRIX_SCAN_CODE(row, col, row_shift)];
    101}
    102
    103static void bcm_kp_report_keys(struct bcm_kp *kp, int reg_num, int pull_mode)
    104{
    105	unsigned long state, change;
    106	int bit_nr;
    107	int key_press;
    108	int row, col;
    109	unsigned int keycode;
    110
    111	/* Clear interrupts */
    112	writel(0xFFFFFFFF, kp->base + KPICRN_OFFSET(reg_num));
    113
    114	state = readl(kp->base + KPSSRN_OFFSET(reg_num));
    115	change = kp->last_state[reg_num] ^ state;
    116	kp->last_state[reg_num] = state;
    117
    118	for_each_set_bit(bit_nr, &change, BITS_PER_LONG) {
    119		key_press = state & BIT(bit_nr);
    120		/* The meaning of SSR register depends on pull mode. */
    121		key_press = pull_mode ? !key_press : key_press;
    122		row = BIT_TO_ROW_SSRN(bit_nr, reg_num);
    123		col = BIT_TO_COL(bit_nr);
    124		keycode = bcm_kp_get_keycode(kp, row, col);
    125		input_report_key(kp->input_dev, keycode, key_press);
    126	}
    127}
    128
    129static irqreturn_t bcm_kp_isr_thread(int irq, void *dev_id)
    130{
    131	struct bcm_kp *kp = dev_id;
    132	int pull_mode = (kp->kpcr >> KPCR_MODE_SHIFT) & KPCR_MODE_MASK;
    133	int reg_num;
    134
    135	for (reg_num = 0; reg_num <= 1; reg_num++)
    136		bcm_kp_report_keys(kp, reg_num, pull_mode);
    137
    138	input_sync(kp->input_dev);
    139
    140	return IRQ_HANDLED;
    141}
    142
    143static int bcm_kp_start(struct bcm_kp *kp)
    144{
    145	int error;
    146
    147	if (kp->clk) {
    148		error = clk_prepare_enable(kp->clk);
    149		if (error)
    150			return error;
    151	}
    152
    153	writel(kp->kpior, kp->base + KPIOR_OFFSET);
    154
    155	writel(kp->imr0_val, kp->base + KPIMR0_OFFSET);
    156	writel(kp->imr1_val, kp->base + KPIMR1_OFFSET);
    157
    158	writel(kp->kpemr, kp->base + KPEMR0_OFFSET);
    159	writel(kp->kpemr, kp->base + KPEMR1_OFFSET);
    160	writel(kp->kpemr, kp->base + KPEMR2_OFFSET);
    161	writel(kp->kpemr, kp->base + KPEMR3_OFFSET);
    162
    163	writel(0xFFFFFFFF, kp->base + KPICR0_OFFSET);
    164	writel(0xFFFFFFFF, kp->base + KPICR1_OFFSET);
    165
    166	kp->last_state[0] = readl(kp->base + KPSSR0_OFFSET);
    167	kp->last_state[0] = readl(kp->base + KPSSR1_OFFSET);
    168
    169	writel(kp->kpcr | KPCR_ENABLE, kp->base + KPCR_OFFSET);
    170
    171	return 0;
    172}
    173
    174static void bcm_kp_stop(const struct bcm_kp *kp)
    175{
    176	u32 val;
    177
    178	val = readl(kp->base + KPCR_OFFSET);
    179	val &= ~KPCR_ENABLE;
    180	writel(0, kp->base + KPCR_OFFSET);
    181	writel(0, kp->base + KPIMR0_OFFSET);
    182	writel(0, kp->base + KPIMR1_OFFSET);
    183	writel(0xFFFFFFFF, kp->base + KPICR0_OFFSET);
    184	writel(0xFFFFFFFF, kp->base + KPICR1_OFFSET);
    185
    186	clk_disable_unprepare(kp->clk);
    187}
    188
    189static int bcm_kp_open(struct input_dev *dev)
    190{
    191	struct bcm_kp *kp = input_get_drvdata(dev);
    192
    193	return bcm_kp_start(kp);
    194}
    195
    196static void bcm_kp_close(struct input_dev *dev)
    197{
    198	struct bcm_kp *kp = input_get_drvdata(dev);
    199
    200	bcm_kp_stop(kp);
    201}
    202
    203static int bcm_kp_matrix_key_parse_dt(struct bcm_kp *kp)
    204{
    205	struct device *dev = kp->input_dev->dev.parent;
    206	struct device_node *np = dev->of_node;
    207	int error;
    208	unsigned int dt_val;
    209	unsigned int i;
    210	unsigned int num_rows, col_mask, rows_set;
    211
    212	/* Initialize the KPCR Keypad Configuration Register */
    213	kp->kpcr = KPCR_STATUSFILTERENABLE | KPCR_COLFILTERENABLE;
    214
    215	error = matrix_keypad_parse_properties(dev, &kp->n_rows, &kp->n_cols);
    216	if (error) {
    217		dev_err(dev, "failed to parse kp params\n");
    218		return error;
    219	}
    220
    221	/* Set row width for the ASIC block. */
    222	kp->kpcr |= (kp->n_rows - 1) << KPCR_ROWWIDTH_SHIFT;
    223
    224	/* Set column width for the ASIC block. */
    225	kp->kpcr |= (kp->n_cols - 1) << KPCR_COLUMNWIDTH_SHIFT;
    226
    227	/* Configure the IMR registers */
    228
    229	/*
    230	 * IMR registers contain interrupt enable bits for 8x8 matrix
    231	 * IMR0 register format: <row3> <row2> <row1> <row0>
    232	 * IMR1 register format: <row7> <row6> <row5> <row4>
    233	 */
    234	col_mask = (1 << (kp->n_cols)) - 1;
    235	num_rows = kp->n_rows;
    236
    237	/* Set column bits in rows 0 to 3 in IMR0 */
    238	kp->imr0_val = col_mask;
    239
    240	rows_set = 1;
    241	while (--num_rows && rows_set++ < 4)
    242		kp->imr0_val |= kp->imr0_val << MAX_COLS;
    243
    244	/* Set column bits in rows 4 to 7 in IMR1 */
    245	kp->imr1_val = 0;
    246	if (num_rows) {
    247		kp->imr1_val = col_mask;
    248		while (--num_rows)
    249			kp->imr1_val |= kp->imr1_val << MAX_COLS;
    250	}
    251
    252	/* Initialize the KPEMR Keypress Edge Mode Registers */
    253	/* Trigger on both edges */
    254	kp->kpemr = 0;
    255	for (i = 0; i <= 30; i += 2)
    256		kp->kpemr |= (KPEMR_EDGETYPE_BOTH << i);
    257
    258	/*
    259	 * Obtain the Status filter debounce value and verify against the
    260	 * possible values specified in the DT binding.
    261	 */
    262	of_property_read_u32(np, "status-debounce-filter-period", &dt_val);
    263
    264	if (dt_val > KPCR_STATUSFILTERTYPE_MAX) {
    265		dev_err(dev, "Invalid Status filter debounce value %d\n",
    266			dt_val);
    267		return -EINVAL;
    268	}
    269
    270	kp->kpcr |= dt_val << KPCR_STATUSFILTERTYPE_SHIFT;
    271
    272	/*
    273	 * Obtain the Column filter debounce value and verify against the
    274	 * possible values specified in the DT binding.
    275	 */
    276	of_property_read_u32(np, "col-debounce-filter-period", &dt_val);
    277
    278	if (dt_val > KPCR_COLFILTERTYPE_MAX) {
    279		dev_err(dev, "Invalid Column filter debounce value %d\n",
    280			dt_val);
    281		return -EINVAL;
    282	}
    283
    284	kp->kpcr |= dt_val << KPCR_COLFILTERTYPE_SHIFT;
    285
    286	/*
    287	 * Determine between the row and column,
    288	 * which should be configured as output.
    289	 */
    290	if (of_property_read_bool(np, "row-output-enabled")) {
    291		/*
    292		* Set RowOContrl or ColumnOContrl in KPIOR
    293		* to the number of pins to drive as outputs
    294		*/
    295		kp->kpior = ((1 << kp->n_rows) - 1) <<
    296				KPIOR_ROWOCONTRL_SHIFT;
    297	} else {
    298		kp->kpior = ((1 << kp->n_cols) - 1) <<
    299				KPIOR_COLUMNOCONTRL_SHIFT;
    300	}
    301
    302	/*
    303	 * Determine if the scan pull up needs to be enabled
    304	 */
    305	if (of_property_read_bool(np, "pull-up-enabled"))
    306		kp->kpcr |= KPCR_MODE;
    307
    308	dev_dbg(dev, "n_rows=%d n_col=%d kpcr=%x kpior=%x kpemr=%x\n",
    309		kp->n_rows, kp->n_cols,
    310		kp->kpcr, kp->kpior, kp->kpemr);
    311
    312	return 0;
    313}
    314
    315
    316static int bcm_kp_probe(struct platform_device *pdev)
    317{
    318	struct bcm_kp *kp;
    319	struct input_dev *input_dev;
    320	struct resource *res;
    321	int error;
    322
    323	kp = devm_kzalloc(&pdev->dev, sizeof(*kp), GFP_KERNEL);
    324	if (!kp)
    325		return -ENOMEM;
    326
    327	input_dev = devm_input_allocate_device(&pdev->dev);
    328	if (!input_dev) {
    329		dev_err(&pdev->dev, "failed to allocate the input device\n");
    330		return -ENOMEM;
    331	}
    332
    333	__set_bit(EV_KEY, input_dev->evbit);
    334
    335	/* Enable auto repeat feature of Linux input subsystem */
    336	if (of_property_read_bool(pdev->dev.of_node, "autorepeat"))
    337		__set_bit(EV_REP, input_dev->evbit);
    338
    339	input_dev->name = pdev->name;
    340	input_dev->phys = "keypad/input0";
    341	input_dev->dev.parent = &pdev->dev;
    342	input_dev->open = bcm_kp_open;
    343	input_dev->close = bcm_kp_close;
    344
    345	input_dev->id.bustype = BUS_HOST;
    346	input_dev->id.vendor = 0x0001;
    347	input_dev->id.product = 0x0001;
    348	input_dev->id.version = 0x0100;
    349
    350	input_set_drvdata(input_dev, kp);
    351
    352	kp->input_dev = input_dev;
    353
    354	error = bcm_kp_matrix_key_parse_dt(kp);
    355	if (error)
    356		return error;
    357
    358	error = matrix_keypad_build_keymap(NULL, NULL,
    359					   kp->n_rows, kp->n_cols,
    360					   NULL, input_dev);
    361	if (error) {
    362		dev_err(&pdev->dev, "failed to build keymap\n");
    363		return error;
    364	}
    365
    366	/* Get the KEYPAD base address */
    367	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
    368	if (!res) {
    369		dev_err(&pdev->dev, "Missing keypad base address resource\n");
    370		return -ENODEV;
    371	}
    372
    373	kp->base = devm_ioremap_resource(&pdev->dev, res);
    374	if (IS_ERR(kp->base))
    375		return PTR_ERR(kp->base);
    376
    377	/* Enable clock */
    378	kp->clk = devm_clk_get(&pdev->dev, "peri_clk");
    379	if (IS_ERR(kp->clk)) {
    380		error = PTR_ERR(kp->clk);
    381		if (error != -ENOENT) {
    382			if (error != -EPROBE_DEFER)
    383				dev_err(&pdev->dev, "Failed to get clock\n");
    384			return error;
    385		}
    386		dev_dbg(&pdev->dev,
    387			"No clock specified. Assuming it's enabled\n");
    388		kp->clk = NULL;
    389	} else {
    390		unsigned int desired_rate;
    391		long actual_rate;
    392
    393		error = of_property_read_u32(pdev->dev.of_node,
    394					     "clock-frequency", &desired_rate);
    395		if (error < 0)
    396			desired_rate = DEFAULT_CLK_HZ;
    397
    398		actual_rate = clk_round_rate(kp->clk, desired_rate);
    399		if (actual_rate <= 0)
    400			return -EINVAL;
    401
    402		error = clk_set_rate(kp->clk, actual_rate);
    403		if (error)
    404			return error;
    405
    406		error = clk_prepare_enable(kp->clk);
    407		if (error)
    408			return error;
    409	}
    410
    411	/* Put the kp into a known sane state */
    412	bcm_kp_stop(kp);
    413
    414	kp->irq = platform_get_irq(pdev, 0);
    415	if (kp->irq < 0)
    416		return -EINVAL;
    417
    418	error = devm_request_threaded_irq(&pdev->dev, kp->irq,
    419					  NULL, bcm_kp_isr_thread,
    420					  IRQF_ONESHOT, pdev->name, kp);
    421	if (error) {
    422		dev_err(&pdev->dev, "failed to request IRQ\n");
    423		return error;
    424	}
    425
    426	error = input_register_device(input_dev);
    427	if (error) {
    428		dev_err(&pdev->dev, "failed to register input device\n");
    429		return error;
    430	}
    431
    432	return 0;
    433}
    434
    435static const struct of_device_id bcm_kp_of_match[] = {
    436	{ .compatible = "brcm,bcm-keypad" },
    437	{ },
    438};
    439MODULE_DEVICE_TABLE(of, bcm_kp_of_match);
    440
    441static struct platform_driver bcm_kp_device_driver = {
    442	.probe		= bcm_kp_probe,
    443	.driver		= {
    444		.name	= "bcm-keypad",
    445		.of_match_table = of_match_ptr(bcm_kp_of_match),
    446	}
    447};
    448
    449module_platform_driver(bcm_kp_device_driver);
    450
    451MODULE_AUTHOR("Broadcom Corporation");
    452MODULE_DESCRIPTION("BCM Keypad Driver");
    453MODULE_LICENSE("GPL v2");