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Kevin Hilmanccd5ca72011-03-21 14:08:55 -07001/*
2 * OMAP Voltage Controller (VC) interface
3 *
4 * Copyright (C) 2011 Texas Instruments, Inc.
5 *
6 * This file is licensed under the terms of the GNU General Public
7 * License version 2. This program is licensed "as is" without any
8 * warranty of any kind, whether express or implied.
9 */
10#include <linux/kernel.h>
11#include <linux/delay.h>
12#include <linux/init.h>
13
14#include <plat/cpu.h>
15
16#include "voltage.h"
17#include "vc.h"
18#include "prm-regbits-34xx.h"
19#include "prm-regbits-44xx.h"
20#include "prm44xx.h"
21
Kevin Hilman8abc0b52011-06-02 17:28:13 -070022/**
23 * struct omap_vc_channel_cfg - describe the cfg_channel bitfield
24 * @sa: bit for slave address
25 * @rav: bit for voltage configuration register
26 * @rac: bit for command configuration register
27 * @racen: enable bit for RAC
28 * @cmd: bit for command value set selection
29 *
30 * Channel configuration bits, common for OMAP3+
Kevin Hilman24d31942011-03-29 15:57:16 -070031 * OMAP3 register: PRM_VC_CH_CONF
32 * OMAP4 register: PRM_VC_CFG_CHANNEL
Kevin Hilman8abc0b52011-06-02 17:28:13 -070033 * OMAP5 register: PRM_VC_SMPS_<voltdm>_CONFIG
Kevin Hilman24d31942011-03-29 15:57:16 -070034 */
Kevin Hilman8abc0b52011-06-02 17:28:13 -070035struct omap_vc_channel_cfg {
36 u8 sa;
37 u8 rav;
38 u8 rac;
39 u8 racen;
40 u8 cmd;
41};
42
43static struct omap_vc_channel_cfg vc_default_channel_cfg = {
44 .sa = BIT(0),
45 .rav = BIT(1),
46 .rac = BIT(2),
47 .racen = BIT(3),
48 .cmd = BIT(4),
49};
50
51/*
52 * On OMAP3+, all VC channels have the above default bitfield
53 * configuration, except the OMAP4 MPU channel. This appears
54 * to be a freak accident as every other VC channel has the
55 * default configuration, thus creating a mutant channel config.
56 */
57static struct omap_vc_channel_cfg vc_mutant_channel_cfg = {
58 .sa = BIT(0),
59 .rav = BIT(2),
60 .rac = BIT(3),
61 .racen = BIT(4),
62 .cmd = BIT(1),
63};
64
65static struct omap_vc_channel_cfg *vc_cfg_bits;
66#define CFG_CHANNEL_MASK 0x1f
Kevin Hilman24d31942011-03-29 15:57:16 -070067
68/**
69 * omap_vc_config_channel - configure VC channel to PMIC mappings
70 * @voltdm: pointer to voltagdomain defining the desired VC channel
71 *
72 * Configures the VC channel to PMIC mappings for the following
73 * PMIC settings
74 * - i2c slave address (SA)
75 * - voltage configuration address (RAV)
76 * - command configuration address (RAC) and enable bit (RACEN)
77 * - command values for ON, ONLP, RET and OFF (CMD)
78 *
79 * This function currently only allows flexible configuration of the
80 * non-default channel. Starting with OMAP4, there are more than 2
81 * channels, with one defined as the default (on OMAP4, it's MPU.)
82 * Only the non-default channel can be configured.
83 */
84static int omap_vc_config_channel(struct voltagedomain *voltdm)
85{
86 struct omap_vc_channel *vc = voltdm->vc;
87
88 /*
89 * For default channel, the only configurable bit is RACEN.
90 * All others must stay at zero (see function comment above.)
91 */
92 if (vc->flags & OMAP_VC_CHANNEL_DEFAULT)
Kevin Hilman8abc0b52011-06-02 17:28:13 -070093 vc->cfg_channel &= vc_cfg_bits->racen;
Kevin Hilman24d31942011-03-29 15:57:16 -070094
95 voltdm->rmw(CFG_CHANNEL_MASK << vc->cfg_channel_sa_shift,
96 vc->cfg_channel << vc->cfg_channel_sa_shift,
97 vc->common->cfg_channel_reg);
98
99 return 0;
100}
101
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700102/* Voltage scale and accessory APIs */
103int omap_vc_pre_scale(struct voltagedomain *voltdm,
104 unsigned long target_volt,
105 u8 *target_vsel, u8 *current_vsel)
106{
Kevin Hilmand84adcf2011-03-22 16:14:57 -0700107 struct omap_vc_channel *vc = voltdm->vc;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700108 struct omap_vdd_info *vdd = voltdm->vdd;
109 struct omap_volt_data *volt_data;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700110 const struct omap_vp_common_data *vp_common;
111 u32 vc_cmdval, vp_errgain_val;
112
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700113 vp_common = vdd->vp_data->vp_common;
114
115 /* Check if sufficient pmic info is available for this vdd */
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700116 if (!voltdm->pmic) {
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700117 pr_err("%s: Insufficient pmic info to scale the vdd_%s\n",
118 __func__, voltdm->name);
119 return -EINVAL;
120 }
121
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700122 if (!voltdm->pmic->uv_to_vsel) {
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700123 pr_err("%s: PMIC function to convert voltage in uV to"
124 "vsel not registered. Hence unable to scale voltage"
125 "for vdd_%s\n", __func__, voltdm->name);
126 return -ENODATA;
127 }
128
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700129 if (!voltdm->read || !voltdm->write) {
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700130 pr_err("%s: No read/write API for accessing vdd_%s regs\n",
131 __func__, voltdm->name);
132 return -EINVAL;
133 }
134
135 /* Get volt_data corresponding to target_volt */
136 volt_data = omap_voltage_get_voltdata(voltdm, target_volt);
137 if (IS_ERR(volt_data))
138 volt_data = NULL;
139
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700140 *target_vsel = voltdm->pmic->uv_to_vsel(target_volt);
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700141 *current_vsel = voltdm->read(vdd->vp_data->voltage);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700142
143 /* Setting the ON voltage to the new target voltage */
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700144 vc_cmdval = voltdm->read(vc->cmdval_reg);
Kevin Hilmand84adcf2011-03-22 16:14:57 -0700145 vc_cmdval &= ~vc->common->cmd_on_mask;
146 vc_cmdval |= (*target_vsel << vc->common->cmd_on_shift);
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700147 voltdm->write(vc_cmdval, vc->cmdval_reg);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700148
149 /* Setting vp errorgain based on the voltage */
150 if (volt_data) {
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700151 vp_errgain_val = voltdm->read(vdd->vp_data->vpconfig);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700152 vdd->vp_rt_data.vpconfig_errorgain = volt_data->vp_errgain;
153 vp_errgain_val &= ~vp_common->vpconfig_errorgain_mask;
154 vp_errgain_val |= vdd->vp_rt_data.vpconfig_errorgain <<
155 vp_common->vpconfig_errorgain_shift;
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700156 voltdm->write(vp_errgain_val, vdd->vp_data->vpconfig);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700157 }
158
159 return 0;
160}
161
162void omap_vc_post_scale(struct voltagedomain *voltdm,
163 unsigned long target_volt,
164 u8 target_vsel, u8 current_vsel)
165{
166 struct omap_vdd_info *vdd = voltdm->vdd;
167 u32 smps_steps = 0, smps_delay = 0;
168
169 smps_steps = abs(target_vsel - current_vsel);
170 /* SMPS slew rate / step size. 2us added as buffer. */
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700171 smps_delay = ((smps_steps * voltdm->pmic->step_size) /
172 voltdm->pmic->slew_rate) + 2;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700173 udelay(smps_delay);
174
175 vdd->curr_volt = target_volt;
176}
177
Kevin Hilmand84adcf2011-03-22 16:14:57 -0700178/* vc_bypass_scale - VC bypass method of voltage scaling */
179int omap_vc_bypass_scale(struct voltagedomain *voltdm,
180 unsigned long target_volt)
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700181{
Kevin Hilmand84adcf2011-03-22 16:14:57 -0700182 struct omap_vc_channel *vc = voltdm->vc;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700183 u32 loop_cnt = 0, retries_cnt = 0;
184 u32 vc_valid, vc_bypass_val_reg, vc_bypass_value;
185 u8 target_vsel, current_vsel;
186 int ret;
187
188 ret = omap_vc_pre_scale(voltdm, target_volt, &target_vsel, &current_vsel);
189 if (ret)
190 return ret;
191
Kevin Hilmand84adcf2011-03-22 16:14:57 -0700192 vc_valid = vc->common->valid;
193 vc_bypass_val_reg = vc->common->bypass_val_reg;
194 vc_bypass_value = (target_vsel << vc->common->data_shift) |
Kevin Hilman78614e02011-03-29 14:24:47 -0700195 (vc->volt_reg_addr << vc->common->regaddr_shift) |
196 (vc->i2c_slave_addr << vc->common->slaveaddr_shift);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700197
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700198 voltdm->write(vc_bypass_value, vc_bypass_val_reg);
199 voltdm->write(vc_bypass_value | vc_valid, vc_bypass_val_reg);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700200
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700201 vc_bypass_value = voltdm->read(vc_bypass_val_reg);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700202 /*
203 * Loop till the bypass command is acknowledged from the SMPS.
204 * NOTE: This is legacy code. The loop count and retry count needs
205 * to be revisited.
206 */
207 while (!(vc_bypass_value & vc_valid)) {
208 loop_cnt++;
209
210 if (retries_cnt > 10) {
211 pr_warning("%s: Retry count exceeded\n", __func__);
212 return -ETIMEDOUT;
213 }
214
215 if (loop_cnt > 50) {
216 retries_cnt++;
217 loop_cnt = 0;
218 udelay(10);
219 }
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700220 vc_bypass_value = voltdm->read(vc_bypass_val_reg);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700221 }
222
223 omap_vc_post_scale(voltdm, target_volt, target_vsel, current_vsel);
224 return 0;
225}
226
227static void __init omap3_vfsm_init(struct voltagedomain *voltdm)
228{
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700229 /*
230 * Voltage Manager FSM parameters init
231 * XXX This data should be passed in from the board file
232 */
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700233 voltdm->write(OMAP3_CLKSETUP, OMAP3_PRM_CLKSETUP_OFFSET);
234 voltdm->write(OMAP3_VOLTOFFSET, OMAP3_PRM_VOLTOFFSET_OFFSET);
235 voltdm->write(OMAP3_VOLTSETUP2, OMAP3_PRM_VOLTSETUP2_OFFSET);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700236}
237
238static void __init omap3_vc_init_channel(struct voltagedomain *voltdm)
239{
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700240 static bool is_initialized;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700241
242 if (is_initialized)
243 return;
244
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700245 omap3_vfsm_init(voltdm);
246
247 is_initialized = true;
248}
249
250
251/* OMAP4 specific voltage init functions */
252static void __init omap4_vc_init_channel(struct voltagedomain *voltdm)
253{
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700254 static bool is_initialized;
255 u32 vc_val;
256
257 if (is_initialized)
258 return;
259
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700260 /* XXX These are magic numbers and do not belong! */
261 vc_val = (0x60 << OMAP4430_SCLL_SHIFT | 0x26 << OMAP4430_SCLH_SHIFT);
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700262 voltdm->write(vc_val, OMAP4_PRM_VC_CFG_I2C_CLK_OFFSET);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700263
264 is_initialized = true;
265}
266
Kevin Hilmanf5395482011-03-30 16:36:30 -0700267/**
268 * omap_vc_i2c_init - initialize I2C interface to PMIC
269 * @voltdm: voltage domain containing VC data
270 *
271 * Use PMIC supplied seetings for I2C high-speed mode and
272 * master code (if set) and program the VC I2C configuration
273 * register.
274 *
275 * The VC I2C configuration is common to all VC channels,
276 * so this function only configures I2C for the first VC
277 * channel registers. All other VC channels will use the
278 * same configuration.
279 */
280static void __init omap_vc_i2c_init(struct voltagedomain *voltdm)
281{
282 struct omap_vc_channel *vc = voltdm->vc;
283 static bool initialized;
284 static bool i2c_high_speed;
285 u8 mcode;
286
287 if (initialized) {
288 if (voltdm->pmic->i2c_high_speed != i2c_high_speed)
289 pr_warn("%s: I2C config for all channels must match.",
290 __func__);
291 return;
292 }
293
294 i2c_high_speed = voltdm->pmic->i2c_high_speed;
295 if (i2c_high_speed)
296 voltdm->rmw(vc->common->i2c_cfg_hsen_mask,
297 vc->common->i2c_cfg_hsen_mask,
298 vc->common->i2c_cfg_reg);
299
300 mcode = voltdm->pmic->i2c_mcode;
301 if (mcode)
302 voltdm->rmw(vc->common->i2c_mcode_mask,
303 mcode << __ffs(vc->common->i2c_mcode_mask),
304 vc->common->i2c_cfg_reg);
305
306 initialized = true;
307}
308
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700309void __init omap_vc_init_channel(struct voltagedomain *voltdm)
310{
Kevin Hilmand84adcf2011-03-22 16:14:57 -0700311 struct omap_vc_channel *vc = voltdm->vc;
Kevin Hilman08d1c9a2011-03-29 15:14:38 -0700312 u8 on_vsel, onlp_vsel, ret_vsel, off_vsel;
313 u32 val;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700314
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700315 if (!voltdm->pmic || !voltdm->pmic->uv_to_vsel) {
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700316 pr_err("%s: PMIC info requried to configure vc for"
317 "vdd_%s not populated.Hence cannot initialize vc\n",
318 __func__, voltdm->name);
319 return;
320 }
321
Kevin Hilman4bcc4752011-03-28 10:40:15 -0700322 if (!voltdm->read || !voltdm->write) {
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700323 pr_err("%s: No read/write API for accessing vdd_%s regs\n",
324 __func__, voltdm->name);
325 return;
326 }
327
Kevin Hilman24d31942011-03-29 15:57:16 -0700328 vc->cfg_channel = 0;
Kevin Hilman8abc0b52011-06-02 17:28:13 -0700329 if (vc->flags & OMAP_VC_CHANNEL_CFG_MUTANT)
330 vc_cfg_bits = &vc_mutant_channel_cfg;
331 else
332 vc_cfg_bits = &vc_default_channel_cfg;
Kevin Hilman24d31942011-03-29 15:57:16 -0700333
Kevin Hilmanba112a42011-03-29 14:02:36 -0700334 /* get PMIC/board specific settings */
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700335 vc->i2c_slave_addr = voltdm->pmic->i2c_slave_addr;
336 vc->volt_reg_addr = voltdm->pmic->volt_reg_addr;
337 vc->cmd_reg_addr = voltdm->pmic->cmd_reg_addr;
338 vc->setup_time = voltdm->pmic->volt_setup_time;
Kevin Hilmanba112a42011-03-29 14:02:36 -0700339
340 /* Configure the i2c slave address for this VC */
341 voltdm->rmw(vc->smps_sa_mask,
342 vc->i2c_slave_addr << __ffs(vc->smps_sa_mask),
343 vc->common->smps_sa_reg);
Kevin Hilman8abc0b52011-06-02 17:28:13 -0700344 vc->cfg_channel |= vc_cfg_bits->sa;
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700345
Kevin Hilmane4e021c2011-06-09 11:01:55 -0700346 /*
347 * Configure the PMIC register addresses.
348 */
349 voltdm->rmw(vc->smps_volra_mask,
350 vc->volt_reg_addr << __ffs(vc->smps_volra_mask),
351 vc->common->smps_volra_reg);
Kevin Hilman8abc0b52011-06-02 17:28:13 -0700352 vc->cfg_channel |= vc_cfg_bits->rav;
Kevin Hilman24d31942011-03-29 15:57:16 -0700353
354 if (vc->cmd_reg_addr) {
Kevin Hilmane4e021c2011-06-09 11:01:55 -0700355 voltdm->rmw(vc->smps_cmdra_mask,
356 vc->cmd_reg_addr << __ffs(vc->smps_cmdra_mask),
357 vc->common->smps_cmdra_reg);
Kevin Hilman8abc0b52011-06-02 17:28:13 -0700358 vc->cfg_channel |= vc_cfg_bits->rac | vc_cfg_bits->racen;
Kevin Hilman24d31942011-03-29 15:57:16 -0700359 }
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700360
Kevin Hilman08d1c9a2011-03-29 15:14:38 -0700361 /* Set up the on, inactive, retention and off voltage */
Kevin Hilmance8ebe02011-03-30 11:01:10 -0700362 on_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->on_volt);
363 onlp_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->onlp_volt);
364 ret_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->ret_volt);
365 off_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->off_volt);
Kevin Hilman08d1c9a2011-03-29 15:14:38 -0700366 val = ((on_vsel << vc->common->cmd_on_shift) |
367 (onlp_vsel << vc->common->cmd_onlp_shift) |
368 (ret_vsel << vc->common->cmd_ret_shift) |
369 (off_vsel << vc->common->cmd_off_shift));
370 voltdm->write(val, vc->cmdval_reg);
Kevin Hilman8abc0b52011-06-02 17:28:13 -0700371 vc->cfg_channel |= vc_cfg_bits->cmd;
Kevin Hilman24d31942011-03-29 15:57:16 -0700372
373 /* Channel configuration */
374 omap_vc_config_channel(voltdm);
Kevin Hilman08d1c9a2011-03-29 15:14:38 -0700375
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700376 /* Configure the setup times */
Kevin Hilman5892bb12011-03-29 14:36:04 -0700377 voltdm->rmw(voltdm->vfsm->voltsetup_mask,
378 vc->setup_time << __ffs(voltdm->vfsm->voltsetup_mask),
379 voltdm->vfsm->voltsetup_reg);
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700380
Kevin Hilmanf5395482011-03-30 16:36:30 -0700381 omap_vc_i2c_init(voltdm);
382
Kevin Hilmanccd5ca72011-03-21 14:08:55 -0700383 if (cpu_is_omap34xx())
384 omap3_vc_init_channel(voltdm);
385 else if (cpu_is_omap44xx())
386 omap4_vc_init_channel(voltdm);
387}
388