2 * OMAP3/OMAP4 smartreflex device file
4 * Author: Thara Gopinath <thara@ti.com>
6 * Based originally on code from smartreflex.c
7 * Copyright (C) 2010 Texas Instruments, Inc.
8 * Thara Gopinath <thara@ti.com>
10 * Copyright (C) 2008 Nokia Corporation
13 * Copyright (C) 2007 Texas Instruments, Inc.
14 * Lesly A M <x0080970@ti.com>
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License version 2 as
18 * published by the Free Software Foundation.
20 #include <linux/power/smartreflex.h>
22 #include <linux/err.h>
23 #include <linux/slab.h>
27 #include "omap_device.h"
32 static bool sr_enable_on_init
;
34 /* Read EFUSE values from control registers for OMAP3430 */
35 static void __init
sr_set_nvalues(struct omap_volt_data
*volt_data
,
36 struct omap_sr_data
*sr_data
)
38 struct omap_sr_nvalue_table
*nvalue_table
;
41 sr_data
->nvalue_count
= 0;
42 sr_data
->nvalue_table
= NULL
;
44 while (volt_data
[count
].volt_nominal
)
47 nvalue_table
= kcalloc(count
, sizeof(*nvalue_table
), GFP_KERNEL
);
51 for (i
= 0, j
= 0; i
< count
; i
++) {
55 * In OMAP4 the efuse registers are 24 bit aligned.
56 * A readl_relaxed will fail for non-32 bit aligned address
57 * and hence the 8-bit read and shift.
59 if (cpu_is_omap44xx()) {
60 u16 offset
= volt_data
[i
].sr_efuse_offs
;
62 v
= omap_ctrl_readb(offset
) |
63 omap_ctrl_readb(offset
+ 1) << 8 |
64 omap_ctrl_readb(offset
+ 2) << 16;
66 v
= omap_ctrl_readl(volt_data
[i
].sr_efuse_offs
);
70 * Many OMAP SoCs don't have the eFuse values set.
71 * For example, pretty much all OMAP3xxx before
74 * XXX There needs to be some way for board files or
75 * userspace to add these in.
80 nvalue_table
[j
].nvalue
= v
;
81 nvalue_table
[j
].efuse_offs
= volt_data
[i
].sr_efuse_offs
;
82 nvalue_table
[j
].errminlimit
= volt_data
[i
].sr_errminlimit
;
83 nvalue_table
[j
].volt_nominal
= volt_data
[i
].volt_nominal
;
88 sr_data
->nvalue_table
= nvalue_table
;
89 sr_data
->nvalue_count
= j
;
92 static int __init
sr_dev_init(struct omap_hwmod
*oh
, void *user
)
94 struct omap_sr_data
*sr_data
;
95 struct platform_device
*pdev
;
96 struct omap_volt_data
*volt_data
;
97 struct omap_smartreflex_dev_attr
*sr_dev_attr
;
98 char *name
= "smartreflex";
101 sr_data
= kzalloc(sizeof(*sr_data
), GFP_KERNEL
);
105 sr_dev_attr
= (struct omap_smartreflex_dev_attr
*)oh
->dev_attr
;
106 if (!sr_dev_attr
|| !sr_dev_attr
->sensor_voltdm_name
) {
107 pr_err("%s: No voltage domain specified for %s. Cannot initialize\n",
112 sr_data
->name
= oh
->name
;
113 sr_data
->ip_type
= oh
->class->rev
;
114 sr_data
->senn_mod
= 0x1;
115 sr_data
->senp_mod
= 0x1;
117 if (cpu_is_omap34xx() || cpu_is_omap44xx()) {
118 sr_data
->err_weight
= OMAP3430_SR_ERRWEIGHT
;
119 sr_data
->err_maxlimit
= OMAP3430_SR_ERRMAXLIMIT
;
120 sr_data
->accum_data
= OMAP3430_SR_ACCUMDATA
;
121 if (!(strcmp(sr_data
->name
, "smartreflex_mpu"))) {
122 sr_data
->senn_avgweight
= OMAP3430_SR1_SENNAVGWEIGHT
;
123 sr_data
->senp_avgweight
= OMAP3430_SR1_SENPAVGWEIGHT
;
125 sr_data
->senn_avgweight
= OMAP3430_SR2_SENNAVGWEIGHT
;
126 sr_data
->senp_avgweight
= OMAP3430_SR2_SENPAVGWEIGHT
;
130 sr_data
->voltdm
= voltdm_lookup(sr_dev_attr
->sensor_voltdm_name
);
131 if (!sr_data
->voltdm
) {
132 pr_err("%s: Unable to get voltage domain pointer for VDD %s\n",
133 __func__
, sr_dev_attr
->sensor_voltdm_name
);
137 omap_voltage_get_volttable(sr_data
->voltdm
, &volt_data
);
139 pr_err("%s: No Voltage table registered for VDD%d\n",
144 sr_set_nvalues(volt_data
, sr_data
);
146 sr_data
->enable_on_init
= sr_enable_on_init
;
148 pdev
= omap_device_build(name
, i
, oh
, sr_data
, sizeof(*sr_data
));
150 pr_warn("%s: Could not build omap_device for %s: %s\n",
151 __func__
, name
, oh
->name
);
159 * API to be called from board files to enable smartreflex
160 * autocompensation at init.
162 void __init
omap_enable_smartreflex_on_init(void)
164 sr_enable_on_init
= true;
167 int __init
omap_devinit_smartreflex(void)
169 return omap_hwmod_for_each_by_class("smartreflex", sr_dev_init
, NULL
);