1*64dbc4ddSArnd Bergmann // SPDX-License-Identifier: GPL-2.0-only
2*64dbc4ddSArnd Bergmann /*
3*64dbc4ddSArnd Bergmann * linux/arch/arm/plat-pxa/mfp.c
4*64dbc4ddSArnd Bergmann *
5*64dbc4ddSArnd Bergmann * Multi-Function Pin Support
6*64dbc4ddSArnd Bergmann *
7*64dbc4ddSArnd Bergmann * Copyright (C) 2007 Marvell Internation Ltd.
8*64dbc4ddSArnd Bergmann *
9*64dbc4ddSArnd Bergmann * 2007-08-21: eric miao <eric.miao@marvell.com>
10*64dbc4ddSArnd Bergmann * initial version
11*64dbc4ddSArnd Bergmann */
12*64dbc4ddSArnd Bergmann
13*64dbc4ddSArnd Bergmann #include <linux/module.h>
14*64dbc4ddSArnd Bergmann #include <linux/kernel.h>
15*64dbc4ddSArnd Bergmann #include <linux/init.h>
16*64dbc4ddSArnd Bergmann #include <linux/io.h>
17*64dbc4ddSArnd Bergmann
18*64dbc4ddSArnd Bergmann #include <linux/soc/pxa/mfp.h>
19*64dbc4ddSArnd Bergmann
20*64dbc4ddSArnd Bergmann #define MFPR_SIZE (PAGE_SIZE)
21*64dbc4ddSArnd Bergmann
22*64dbc4ddSArnd Bergmann /* MFPR register bit definitions */
23*64dbc4ddSArnd Bergmann #define MFPR_PULL_SEL (0x1 << 15)
24*64dbc4ddSArnd Bergmann #define MFPR_PULLUP_EN (0x1 << 14)
25*64dbc4ddSArnd Bergmann #define MFPR_PULLDOWN_EN (0x1 << 13)
26*64dbc4ddSArnd Bergmann #define MFPR_SLEEP_SEL (0x1 << 9)
27*64dbc4ddSArnd Bergmann #define MFPR_SLEEP_OE_N (0x1 << 7)
28*64dbc4ddSArnd Bergmann #define MFPR_EDGE_CLEAR (0x1 << 6)
29*64dbc4ddSArnd Bergmann #define MFPR_EDGE_FALL_EN (0x1 << 5)
30*64dbc4ddSArnd Bergmann #define MFPR_EDGE_RISE_EN (0x1 << 4)
31*64dbc4ddSArnd Bergmann
32*64dbc4ddSArnd Bergmann #define MFPR_SLEEP_DATA(x) ((x) << 8)
33*64dbc4ddSArnd Bergmann #define MFPR_DRIVE(x) (((x) & 0x7) << 10)
34*64dbc4ddSArnd Bergmann #define MFPR_AF_SEL(x) (((x) & 0x7) << 0)
35*64dbc4ddSArnd Bergmann
36*64dbc4ddSArnd Bergmann #define MFPR_EDGE_NONE (0)
37*64dbc4ddSArnd Bergmann #define MFPR_EDGE_RISE (MFPR_EDGE_RISE_EN)
38*64dbc4ddSArnd Bergmann #define MFPR_EDGE_FALL (MFPR_EDGE_FALL_EN)
39*64dbc4ddSArnd Bergmann #define MFPR_EDGE_BOTH (MFPR_EDGE_RISE | MFPR_EDGE_FALL)
40*64dbc4ddSArnd Bergmann
41*64dbc4ddSArnd Bergmann /*
42*64dbc4ddSArnd Bergmann * Table that determines the low power modes outputs, with actual settings
43*64dbc4ddSArnd Bergmann * used in parentheses for don't-care values. Except for the float output,
44*64dbc4ddSArnd Bergmann * the configured driven and pulled levels match, so if there is a need for
45*64dbc4ddSArnd Bergmann * non-LPM pulled output, the same configuration could probably be used.
46*64dbc4ddSArnd Bergmann *
47*64dbc4ddSArnd Bergmann * Output value sleep_oe_n sleep_data pullup_en pulldown_en pull_sel
48*64dbc4ddSArnd Bergmann * (bit 7) (bit 8) (bit 14) (bit 13) (bit 15)
49*64dbc4ddSArnd Bergmann *
50*64dbc4ddSArnd Bergmann * Input 0 X(0) X(0) X(0) 0
51*64dbc4ddSArnd Bergmann * Drive 0 0 0 0 X(1) 0
52*64dbc4ddSArnd Bergmann * Drive 1 0 1 X(1) 0 0
53*64dbc4ddSArnd Bergmann * Pull hi (1) 1 X(1) 1 0 0
54*64dbc4ddSArnd Bergmann * Pull lo (0) 1 X(0) 0 1 0
55*64dbc4ddSArnd Bergmann * Z (float) 1 X(0) 0 0 0
56*64dbc4ddSArnd Bergmann */
57*64dbc4ddSArnd Bergmann #define MFPR_LPM_INPUT (0)
58*64dbc4ddSArnd Bergmann #define MFPR_LPM_DRIVE_LOW (MFPR_SLEEP_DATA(0) | MFPR_PULLDOWN_EN)
59*64dbc4ddSArnd Bergmann #define MFPR_LPM_DRIVE_HIGH (MFPR_SLEEP_DATA(1) | MFPR_PULLUP_EN)
60*64dbc4ddSArnd Bergmann #define MFPR_LPM_PULL_LOW (MFPR_LPM_DRIVE_LOW | MFPR_SLEEP_OE_N)
61*64dbc4ddSArnd Bergmann #define MFPR_LPM_PULL_HIGH (MFPR_LPM_DRIVE_HIGH | MFPR_SLEEP_OE_N)
62*64dbc4ddSArnd Bergmann #define MFPR_LPM_FLOAT (MFPR_SLEEP_OE_N)
63*64dbc4ddSArnd Bergmann #define MFPR_LPM_MASK (0xe080)
64*64dbc4ddSArnd Bergmann
65*64dbc4ddSArnd Bergmann /*
66*64dbc4ddSArnd Bergmann * The pullup and pulldown state of the MFP pin at run mode is by default
67*64dbc4ddSArnd Bergmann * determined by the selected alternate function. In case that some buggy
68*64dbc4ddSArnd Bergmann * devices need to override this default behavior, the definitions below
69*64dbc4ddSArnd Bergmann * indicates the setting of corresponding MFPR bits
70*64dbc4ddSArnd Bergmann *
71*64dbc4ddSArnd Bergmann * Definition pull_sel pullup_en pulldown_en
72*64dbc4ddSArnd Bergmann * MFPR_PULL_NONE 0 0 0
73*64dbc4ddSArnd Bergmann * MFPR_PULL_LOW 1 0 1
74*64dbc4ddSArnd Bergmann * MFPR_PULL_HIGH 1 1 0
75*64dbc4ddSArnd Bergmann * MFPR_PULL_BOTH 1 1 1
76*64dbc4ddSArnd Bergmann * MFPR_PULL_FLOAT 1 0 0
77*64dbc4ddSArnd Bergmann */
78*64dbc4ddSArnd Bergmann #define MFPR_PULL_NONE (0)
79*64dbc4ddSArnd Bergmann #define MFPR_PULL_LOW (MFPR_PULL_SEL | MFPR_PULLDOWN_EN)
80*64dbc4ddSArnd Bergmann #define MFPR_PULL_BOTH (MFPR_PULL_LOW | MFPR_PULLUP_EN)
81*64dbc4ddSArnd Bergmann #define MFPR_PULL_HIGH (MFPR_PULL_SEL | MFPR_PULLUP_EN)
82*64dbc4ddSArnd Bergmann #define MFPR_PULL_FLOAT (MFPR_PULL_SEL)
83*64dbc4ddSArnd Bergmann
84*64dbc4ddSArnd Bergmann /* mfp_spin_lock is used to ensure that MFP register configuration
85*64dbc4ddSArnd Bergmann * (most likely a read-modify-write operation) is atomic, and that
86*64dbc4ddSArnd Bergmann * mfp_table[] is consistent
87*64dbc4ddSArnd Bergmann */
88*64dbc4ddSArnd Bergmann static DEFINE_SPINLOCK(mfp_spin_lock);
89*64dbc4ddSArnd Bergmann
90*64dbc4ddSArnd Bergmann static void __iomem *mfpr_mmio_base;
91*64dbc4ddSArnd Bergmann
92*64dbc4ddSArnd Bergmann struct mfp_pin {
93*64dbc4ddSArnd Bergmann unsigned long config; /* -1 for not configured */
94*64dbc4ddSArnd Bergmann unsigned long mfpr_off; /* MFPRxx Register offset */
95*64dbc4ddSArnd Bergmann unsigned long mfpr_run; /* Run-Mode Register Value */
96*64dbc4ddSArnd Bergmann unsigned long mfpr_lpm; /* Low Power Mode Register Value */
97*64dbc4ddSArnd Bergmann };
98*64dbc4ddSArnd Bergmann
99*64dbc4ddSArnd Bergmann static struct mfp_pin mfp_table[MFP_PIN_MAX];
100*64dbc4ddSArnd Bergmann
101*64dbc4ddSArnd Bergmann /* mapping of MFP_LPM_* definitions to MFPR_LPM_* register bits */
102*64dbc4ddSArnd Bergmann static const unsigned long mfpr_lpm[] = {
103*64dbc4ddSArnd Bergmann MFPR_LPM_INPUT,
104*64dbc4ddSArnd Bergmann MFPR_LPM_DRIVE_LOW,
105*64dbc4ddSArnd Bergmann MFPR_LPM_DRIVE_HIGH,
106*64dbc4ddSArnd Bergmann MFPR_LPM_PULL_LOW,
107*64dbc4ddSArnd Bergmann MFPR_LPM_PULL_HIGH,
108*64dbc4ddSArnd Bergmann MFPR_LPM_FLOAT,
109*64dbc4ddSArnd Bergmann MFPR_LPM_INPUT,
110*64dbc4ddSArnd Bergmann };
111*64dbc4ddSArnd Bergmann
112*64dbc4ddSArnd Bergmann /* mapping of MFP_PULL_* definitions to MFPR_PULL_* register bits */
113*64dbc4ddSArnd Bergmann static const unsigned long mfpr_pull[] = {
114*64dbc4ddSArnd Bergmann MFPR_PULL_NONE,
115*64dbc4ddSArnd Bergmann MFPR_PULL_LOW,
116*64dbc4ddSArnd Bergmann MFPR_PULL_HIGH,
117*64dbc4ddSArnd Bergmann MFPR_PULL_BOTH,
118*64dbc4ddSArnd Bergmann MFPR_PULL_FLOAT,
119*64dbc4ddSArnd Bergmann };
120*64dbc4ddSArnd Bergmann
121*64dbc4ddSArnd Bergmann /* mapping of MFP_LPM_EDGE_* definitions to MFPR_EDGE_* register bits */
122*64dbc4ddSArnd Bergmann static const unsigned long mfpr_edge[] = {
123*64dbc4ddSArnd Bergmann MFPR_EDGE_NONE,
124*64dbc4ddSArnd Bergmann MFPR_EDGE_RISE,
125*64dbc4ddSArnd Bergmann MFPR_EDGE_FALL,
126*64dbc4ddSArnd Bergmann MFPR_EDGE_BOTH,
127*64dbc4ddSArnd Bergmann };
128*64dbc4ddSArnd Bergmann
129*64dbc4ddSArnd Bergmann #define mfpr_readl(off) \
130*64dbc4ddSArnd Bergmann __raw_readl(mfpr_mmio_base + (off))
131*64dbc4ddSArnd Bergmann
132*64dbc4ddSArnd Bergmann #define mfpr_writel(off, val) \
133*64dbc4ddSArnd Bergmann __raw_writel(val, mfpr_mmio_base + (off))
134*64dbc4ddSArnd Bergmann
135*64dbc4ddSArnd Bergmann #define mfp_configured(p) ((p)->config != -1)
136*64dbc4ddSArnd Bergmann
137*64dbc4ddSArnd Bergmann /*
138*64dbc4ddSArnd Bergmann * perform a read-back of any valid MFPR register to make sure the
139*64dbc4ddSArnd Bergmann * previous writings are finished
140*64dbc4ddSArnd Bergmann */
141*64dbc4ddSArnd Bergmann static unsigned long mfpr_off_readback;
142*64dbc4ddSArnd Bergmann #define mfpr_sync() (void)__raw_readl(mfpr_mmio_base + mfpr_off_readback)
143*64dbc4ddSArnd Bergmann
__mfp_config_run(struct mfp_pin * p)144*64dbc4ddSArnd Bergmann static inline void __mfp_config_run(struct mfp_pin *p)
145*64dbc4ddSArnd Bergmann {
146*64dbc4ddSArnd Bergmann if (mfp_configured(p))
147*64dbc4ddSArnd Bergmann mfpr_writel(p->mfpr_off, p->mfpr_run);
148*64dbc4ddSArnd Bergmann }
149*64dbc4ddSArnd Bergmann
__mfp_config_lpm(struct mfp_pin * p)150*64dbc4ddSArnd Bergmann static inline void __mfp_config_lpm(struct mfp_pin *p)
151*64dbc4ddSArnd Bergmann {
152*64dbc4ddSArnd Bergmann if (mfp_configured(p)) {
153*64dbc4ddSArnd Bergmann unsigned long mfpr_clr = (p->mfpr_run & ~MFPR_EDGE_BOTH) | MFPR_EDGE_CLEAR;
154*64dbc4ddSArnd Bergmann if (mfpr_clr != p->mfpr_run)
155*64dbc4ddSArnd Bergmann mfpr_writel(p->mfpr_off, mfpr_clr);
156*64dbc4ddSArnd Bergmann if (p->mfpr_lpm != mfpr_clr)
157*64dbc4ddSArnd Bergmann mfpr_writel(p->mfpr_off, p->mfpr_lpm);
158*64dbc4ddSArnd Bergmann }
159*64dbc4ddSArnd Bergmann }
160*64dbc4ddSArnd Bergmann
mfp_config(unsigned long * mfp_cfgs,int num)161*64dbc4ddSArnd Bergmann void mfp_config(unsigned long *mfp_cfgs, int num)
162*64dbc4ddSArnd Bergmann {
163*64dbc4ddSArnd Bergmann unsigned long flags;
164*64dbc4ddSArnd Bergmann int i;
165*64dbc4ddSArnd Bergmann
166*64dbc4ddSArnd Bergmann spin_lock_irqsave(&mfp_spin_lock, flags);
167*64dbc4ddSArnd Bergmann
168*64dbc4ddSArnd Bergmann for (i = 0; i < num; i++, mfp_cfgs++) {
169*64dbc4ddSArnd Bergmann unsigned long tmp, c = *mfp_cfgs;
170*64dbc4ddSArnd Bergmann struct mfp_pin *p;
171*64dbc4ddSArnd Bergmann int pin, af, drv, lpm, edge, pull;
172*64dbc4ddSArnd Bergmann
173*64dbc4ddSArnd Bergmann pin = MFP_PIN(c);
174*64dbc4ddSArnd Bergmann BUG_ON(pin >= MFP_PIN_MAX);
175*64dbc4ddSArnd Bergmann p = &mfp_table[pin];
176*64dbc4ddSArnd Bergmann
177*64dbc4ddSArnd Bergmann af = MFP_AF(c);
178*64dbc4ddSArnd Bergmann drv = MFP_DS(c);
179*64dbc4ddSArnd Bergmann lpm = MFP_LPM_STATE(c);
180*64dbc4ddSArnd Bergmann edge = MFP_LPM_EDGE(c);
181*64dbc4ddSArnd Bergmann pull = MFP_PULL(c);
182*64dbc4ddSArnd Bergmann
183*64dbc4ddSArnd Bergmann /* run-mode pull settings will conflict with MFPR bits of
184*64dbc4ddSArnd Bergmann * low power mode state, calculate mfpr_run and mfpr_lpm
185*64dbc4ddSArnd Bergmann * individually if pull != MFP_PULL_NONE
186*64dbc4ddSArnd Bergmann */
187*64dbc4ddSArnd Bergmann tmp = MFPR_AF_SEL(af) | MFPR_DRIVE(drv);
188*64dbc4ddSArnd Bergmann
189*64dbc4ddSArnd Bergmann if (likely(pull == MFP_PULL_NONE)) {
190*64dbc4ddSArnd Bergmann p->mfpr_run = tmp | mfpr_lpm[lpm] | mfpr_edge[edge];
191*64dbc4ddSArnd Bergmann p->mfpr_lpm = p->mfpr_run;
192*64dbc4ddSArnd Bergmann } else {
193*64dbc4ddSArnd Bergmann p->mfpr_lpm = tmp | mfpr_lpm[lpm] | mfpr_edge[edge];
194*64dbc4ddSArnd Bergmann p->mfpr_run = tmp | mfpr_pull[pull];
195*64dbc4ddSArnd Bergmann }
196*64dbc4ddSArnd Bergmann
197*64dbc4ddSArnd Bergmann p->config = c; __mfp_config_run(p);
198*64dbc4ddSArnd Bergmann }
199*64dbc4ddSArnd Bergmann
200*64dbc4ddSArnd Bergmann mfpr_sync();
201*64dbc4ddSArnd Bergmann spin_unlock_irqrestore(&mfp_spin_lock, flags);
202*64dbc4ddSArnd Bergmann }
203*64dbc4ddSArnd Bergmann
mfp_read(int mfp)204*64dbc4ddSArnd Bergmann unsigned long mfp_read(int mfp)
205*64dbc4ddSArnd Bergmann {
206*64dbc4ddSArnd Bergmann unsigned long val, flags;
207*64dbc4ddSArnd Bergmann
208*64dbc4ddSArnd Bergmann BUG_ON(mfp < 0 || mfp >= MFP_PIN_MAX);
209*64dbc4ddSArnd Bergmann
210*64dbc4ddSArnd Bergmann spin_lock_irqsave(&mfp_spin_lock, flags);
211*64dbc4ddSArnd Bergmann val = mfpr_readl(mfp_table[mfp].mfpr_off);
212*64dbc4ddSArnd Bergmann spin_unlock_irqrestore(&mfp_spin_lock, flags);
213*64dbc4ddSArnd Bergmann
214*64dbc4ddSArnd Bergmann return val;
215*64dbc4ddSArnd Bergmann }
216*64dbc4ddSArnd Bergmann
mfp_write(int mfp,unsigned long val)217*64dbc4ddSArnd Bergmann void mfp_write(int mfp, unsigned long val)
218*64dbc4ddSArnd Bergmann {
219*64dbc4ddSArnd Bergmann unsigned long flags;
220*64dbc4ddSArnd Bergmann
221*64dbc4ddSArnd Bergmann BUG_ON(mfp < 0 || mfp >= MFP_PIN_MAX);
222*64dbc4ddSArnd Bergmann
223*64dbc4ddSArnd Bergmann spin_lock_irqsave(&mfp_spin_lock, flags);
224*64dbc4ddSArnd Bergmann mfpr_writel(mfp_table[mfp].mfpr_off, val);
225*64dbc4ddSArnd Bergmann mfpr_sync();
226*64dbc4ddSArnd Bergmann spin_unlock_irqrestore(&mfp_spin_lock, flags);
227*64dbc4ddSArnd Bergmann }
228*64dbc4ddSArnd Bergmann
mfp_init_base(void __iomem * mfpr_base)229*64dbc4ddSArnd Bergmann void __init mfp_init_base(void __iomem *mfpr_base)
230*64dbc4ddSArnd Bergmann {
231*64dbc4ddSArnd Bergmann int i;
232*64dbc4ddSArnd Bergmann
233*64dbc4ddSArnd Bergmann /* initialize the table with default - unconfigured */
234*64dbc4ddSArnd Bergmann for (i = 0; i < ARRAY_SIZE(mfp_table); i++)
235*64dbc4ddSArnd Bergmann mfp_table[i].config = -1;
236*64dbc4ddSArnd Bergmann
237*64dbc4ddSArnd Bergmann mfpr_mmio_base = mfpr_base;
238*64dbc4ddSArnd Bergmann }
239*64dbc4ddSArnd Bergmann
mfp_init_addr(struct mfp_addr_map * map)240*64dbc4ddSArnd Bergmann void __init mfp_init_addr(struct mfp_addr_map *map)
241*64dbc4ddSArnd Bergmann {
242*64dbc4ddSArnd Bergmann struct mfp_addr_map *p;
243*64dbc4ddSArnd Bergmann unsigned long offset, flags;
244*64dbc4ddSArnd Bergmann int i;
245*64dbc4ddSArnd Bergmann
246*64dbc4ddSArnd Bergmann spin_lock_irqsave(&mfp_spin_lock, flags);
247*64dbc4ddSArnd Bergmann
248*64dbc4ddSArnd Bergmann /* mfp offset for readback */
249*64dbc4ddSArnd Bergmann mfpr_off_readback = map[0].offset;
250*64dbc4ddSArnd Bergmann
251*64dbc4ddSArnd Bergmann for (p = map; p->start != MFP_PIN_INVALID; p++) {
252*64dbc4ddSArnd Bergmann offset = p->offset;
253*64dbc4ddSArnd Bergmann i = p->start;
254*64dbc4ddSArnd Bergmann
255*64dbc4ddSArnd Bergmann do {
256*64dbc4ddSArnd Bergmann mfp_table[i].mfpr_off = offset;
257*64dbc4ddSArnd Bergmann mfp_table[i].mfpr_run = 0;
258*64dbc4ddSArnd Bergmann mfp_table[i].mfpr_lpm = 0;
259*64dbc4ddSArnd Bergmann offset += 4; i++;
260*64dbc4ddSArnd Bergmann } while ((i <= p->end) && (p->end != -1));
261*64dbc4ddSArnd Bergmann }
262*64dbc4ddSArnd Bergmann
263*64dbc4ddSArnd Bergmann spin_unlock_irqrestore(&mfp_spin_lock, flags);
264*64dbc4ddSArnd Bergmann }
265*64dbc4ddSArnd Bergmann
mfp_config_lpm(void)266*64dbc4ddSArnd Bergmann void mfp_config_lpm(void)
267*64dbc4ddSArnd Bergmann {
268*64dbc4ddSArnd Bergmann struct mfp_pin *p = &mfp_table[0];
269*64dbc4ddSArnd Bergmann int pin;
270*64dbc4ddSArnd Bergmann
271*64dbc4ddSArnd Bergmann for (pin = 0; pin < ARRAY_SIZE(mfp_table); pin++, p++)
272*64dbc4ddSArnd Bergmann __mfp_config_lpm(p);
273*64dbc4ddSArnd Bergmann }
274*64dbc4ddSArnd Bergmann
mfp_config_run(void)275*64dbc4ddSArnd Bergmann void mfp_config_run(void)
276*64dbc4ddSArnd Bergmann {
277*64dbc4ddSArnd Bergmann struct mfp_pin *p = &mfp_table[0];
278*64dbc4ddSArnd Bergmann int pin;
279*64dbc4ddSArnd Bergmann
280*64dbc4ddSArnd Bergmann for (pin = 0; pin < ARRAY_SIZE(mfp_table); pin++, p++)
281*64dbc4ddSArnd Bergmann __mfp_config_run(p);
282*64dbc4ddSArnd Bergmann }
283