OMAP3+: voltage domain: move PMIC struct from vdd_info into struct voltagedomain
Move structure containing PMIC configurable settings into struct voltagedomain. In the process, rename from omap_volt_pmic_info to omap_voltdm_pmic (_info suffix is not helpful.) No functional changes. Signed-off-by: Kevin Hilman <khilman@ti.com>
This commit is contained in:
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24d3194a2c
Коммит
ce8ebe0dfb
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@ -143,7 +143,7 @@ static u8 twl6030_uv_to_vsel(unsigned long uv)
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return DIV_ROUND_UP(uv - 600000, 12500) + 1;
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}
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static struct omap_volt_pmic_info omap3_mpu_volt_info = {
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static struct omap_voltdm_pmic omap3_mpu_pmic = {
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.slew_rate = 4000,
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.step_size = 12500,
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.on_volt = 1200000,
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@ -163,7 +163,7 @@ static struct omap_volt_pmic_info omap3_mpu_volt_info = {
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.uv_to_vsel = twl4030_uv_to_vsel,
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};
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static struct omap_volt_pmic_info omap3_core_volt_info = {
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static struct omap_voltdm_pmic omap3_core_pmic = {
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.slew_rate = 4000,
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.step_size = 12500,
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.on_volt = 1200000,
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@ -183,7 +183,7 @@ static struct omap_volt_pmic_info omap3_core_volt_info = {
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.uv_to_vsel = twl4030_uv_to_vsel,
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};
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static struct omap_volt_pmic_info omap4_mpu_volt_info = {
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static struct omap_voltdm_pmic omap4_mpu_pmic = {
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.slew_rate = 4000,
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.step_size = 12500,
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.on_volt = 1350000,
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@ -203,7 +203,7 @@ static struct omap_volt_pmic_info omap4_mpu_volt_info = {
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.uv_to_vsel = twl6030_uv_to_vsel,
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};
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static struct omap_volt_pmic_info omap4_iva_volt_info = {
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static struct omap_voltdm_pmic omap4_iva_pmic = {
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.slew_rate = 4000,
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.step_size = 12500,
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.on_volt = 1100000,
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@ -223,7 +223,7 @@ static struct omap_volt_pmic_info omap4_iva_volt_info = {
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.uv_to_vsel = twl6030_uv_to_vsel,
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};
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static struct omap_volt_pmic_info omap4_core_volt_info = {
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static struct omap_voltdm_pmic omap4_core_pmic = {
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.slew_rate = 4000,
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.step_size = 12500,
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.on_volt = 1100000,
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@ -251,13 +251,13 @@ int __init omap4_twl_init(void)
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return -ENODEV;
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voltdm = voltdm_lookup("mpu");
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omap_voltage_register_pmic(voltdm, &omap4_mpu_volt_info);
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omap_voltage_register_pmic(voltdm, &omap4_mpu_pmic);
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voltdm = voltdm_lookup("iva");
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omap_voltage_register_pmic(voltdm, &omap4_iva_volt_info);
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omap_voltage_register_pmic(voltdm, &omap4_iva_pmic);
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voltdm = voltdm_lookup("core");
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omap_voltage_register_pmic(voltdm, &omap4_core_volt_info);
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omap_voltage_register_pmic(voltdm, &omap4_core_pmic);
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return 0;
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}
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@ -270,10 +270,10 @@ int __init omap3_twl_init(void)
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return -ENODEV;
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if (cpu_is_omap3630()) {
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omap3_mpu_volt_info.vp_vddmin = OMAP3630_VP1_VLIMITTO_VDDMIN;
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omap3_mpu_volt_info.vp_vddmax = OMAP3630_VP1_VLIMITTO_VDDMAX;
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omap3_core_volt_info.vp_vddmin = OMAP3630_VP2_VLIMITTO_VDDMIN;
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omap3_core_volt_info.vp_vddmax = OMAP3630_VP2_VLIMITTO_VDDMAX;
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omap3_mpu_pmic.vp_vddmin = OMAP3630_VP1_VLIMITTO_VDDMIN;
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omap3_mpu_pmic.vp_vddmax = OMAP3630_VP1_VLIMITTO_VDDMAX;
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omap3_core_pmic.vp_vddmin = OMAP3630_VP2_VLIMITTO_VDDMIN;
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omap3_core_pmic.vp_vddmax = OMAP3630_VP2_VLIMITTO_VDDMAX;
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}
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/*
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@ -289,10 +289,10 @@ int __init omap3_twl_init(void)
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omap3_twl_set_sr_bit(true);
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voltdm = voltdm_lookup("mpu_iva");
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omap_voltage_register_pmic(voltdm, &omap3_mpu_volt_info);
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omap_voltage_register_pmic(voltdm, &omap3_mpu_pmic);
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voltdm = voltdm_lookup("core");
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omap_voltage_register_pmic(voltdm, &omap3_core_volt_info);
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omap_voltage_register_pmic(voltdm, &omap3_core_pmic);
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return 0;
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}
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@ -79,13 +79,13 @@ int omap_vc_pre_scale(struct voltagedomain *voltdm,
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vp_common = vdd->vp_data->vp_common;
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/* Check if sufficient pmic info is available for this vdd */
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if (!vdd->pmic_info) {
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if (!voltdm->pmic) {
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pr_err("%s: Insufficient pmic info to scale the vdd_%s\n",
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__func__, voltdm->name);
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return -EINVAL;
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}
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if (!vdd->pmic_info->uv_to_vsel) {
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if (!voltdm->pmic->uv_to_vsel) {
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pr_err("%s: PMIC function to convert voltage in uV to"
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"vsel not registered. Hence unable to scale voltage"
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"for vdd_%s\n", __func__, voltdm->name);
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@ -103,7 +103,7 @@ int omap_vc_pre_scale(struct voltagedomain *voltdm,
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if (IS_ERR(volt_data))
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volt_data = NULL;
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*target_vsel = vdd->pmic_info->uv_to_vsel(target_volt);
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*target_vsel = voltdm->pmic->uv_to_vsel(target_volt);
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*current_vsel = voltdm->read(vdd->vp_data->voltage);
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/* Setting the ON voltage to the new target voltage */
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@ -134,8 +134,8 @@ void omap_vc_post_scale(struct voltagedomain *voltdm,
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smps_steps = abs(target_vsel - current_vsel);
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/* SMPS slew rate / step size. 2us added as buffer. */
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smps_delay = ((smps_steps * vdd->pmic_info->step_size) /
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vdd->pmic_info->slew_rate) + 2;
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smps_delay = ((smps_steps * voltdm->pmic->step_size) /
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voltdm->pmic->slew_rate) + 2;
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udelay(smps_delay);
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vdd->curr_volt = target_volt;
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@ -240,11 +240,10 @@ static void __init omap4_vc_init_channel(struct voltagedomain *voltdm)
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void __init omap_vc_init_channel(struct voltagedomain *voltdm)
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{
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struct omap_vc_channel *vc = voltdm->vc;
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struct omap_vdd_info *vdd = voltdm->vdd;
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u8 on_vsel, onlp_vsel, ret_vsel, off_vsel;
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u32 val;
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if (!vdd->pmic_info || !vdd->pmic_info->uv_to_vsel) {
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if (!voltdm->pmic || !voltdm->pmic->uv_to_vsel) {
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pr_err("%s: PMIC info requried to configure vc for"
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"vdd_%s not populated.Hence cannot initialize vc\n",
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__func__, voltdm->name);
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@ -260,10 +259,10 @@ void __init omap_vc_init_channel(struct voltagedomain *voltdm)
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vc->cfg_channel = 0;
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/* get PMIC/board specific settings */
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vc->i2c_slave_addr = vdd->pmic_info->i2c_slave_addr;
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vc->volt_reg_addr = vdd->pmic_info->volt_reg_addr;
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vc->cmd_reg_addr = vdd->pmic_info->cmd_reg_addr;
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vc->setup_time = vdd->pmic_info->volt_setup_time;
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vc->i2c_slave_addr = voltdm->pmic->i2c_slave_addr;
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vc->volt_reg_addr = voltdm->pmic->volt_reg_addr;
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vc->cmd_reg_addr = voltdm->pmic->cmd_reg_addr;
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vc->setup_time = voltdm->pmic->volt_setup_time;
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/* Configure the i2c slave address for this VC */
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voltdm->rmw(vc->smps_sa_mask,
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@ -287,10 +286,10 @@ void __init omap_vc_init_channel(struct voltagedomain *voltdm)
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}
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/* Set up the on, inactive, retention and off voltage */
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on_vsel = vdd->pmic_info->uv_to_vsel(vdd->pmic_info->on_volt);
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onlp_vsel = vdd->pmic_info->uv_to_vsel(vdd->pmic_info->onlp_volt);
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ret_vsel = vdd->pmic_info->uv_to_vsel(vdd->pmic_info->ret_volt);
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off_vsel = vdd->pmic_info->uv_to_vsel(vdd->pmic_info->off_volt);
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on_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->on_volt);
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onlp_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->onlp_volt);
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ret_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->ret_volt);
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off_vsel = voltdm->pmic->uv_to_vsel(voltdm->pmic->off_volt);
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val = ((on_vsel << vc->common->cmd_on_shift) |
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(onlp_vsel << vc->common->cmd_onlp_shift) |
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(ret_vsel << vc->common->cmd_ret_shift) |
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@ -36,6 +36,7 @@ struct voltagedomain;
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* @cmd_onlp_shift: ONLP field shift in PRM_VC_CMD_VAL_* register
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* @cmd_ret_shift: RET field shift in PRM_VC_CMD_VAL_* register
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* @cmd_off_shift: OFF field shift in PRM_VC_CMD_VAL_* register
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* @cfg_channel_reg: VC channel configuration register
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*
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* XXX One of cmd_on_mask and cmd_on_shift are not needed
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* XXX VALID should probably be a shift, not a mask
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@ -66,11 +67,14 @@ struct omap_vc_common {
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* @volt_reg_addr: voltage configuration register address
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* @cmd_reg_addr: command configuration register address
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* @setup_time: setup time (in sys_clk cycles) of regulator for this channel
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* @cfg_channel: current value of VC channel configuration register
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*
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* @common: pointer to VC common data for this platform
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* @smps_sa_mask: i2c slave address bitmask in the PRM_VC_SMPS_SA register
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* @smps_volra_mask: VOLRA* bitmask in the PRM_VC_VOL_RA register
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* @smps_cmdra_mask: CMDRA* bitmask in the PRM_VC_CMD_RA register
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* @cmdval_reg: register for on/ret/off voltage level values for this channel
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* @cfg_channel_sa_shift: bit shift for slave address cfg_channel register
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* @flags: VC channel-specific flags (optional)
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*/
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struct omap_vc_channel {
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@ -84,20 +84,20 @@ static int __init _config_common_vdd_data(struct voltagedomain *voltdm)
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vdd->vp_enabled = false;
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vdd->vp_rt_data.vpconfig_erroroffset =
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(vdd->pmic_info->vp_erroroffset <<
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(voltdm->pmic->vp_erroroffset <<
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vdd->vp_data->vp_common->vpconfig_erroroffset_shift);
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timeout_val = (sys_clk_speed * vdd->pmic_info->vp_timeout_us) / 1000;
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timeout_val = (sys_clk_speed * voltdm->pmic->vp_timeout_us) / 1000;
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vdd->vp_rt_data.vlimitto_timeout = timeout_val;
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vdd->vp_rt_data.vlimitto_vddmin = vdd->pmic_info->vp_vddmin;
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vdd->vp_rt_data.vlimitto_vddmax = vdd->pmic_info->vp_vddmax;
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vdd->vp_rt_data.vlimitto_vddmin = voltdm->pmic->vp_vddmin;
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vdd->vp_rt_data.vlimitto_vddmax = voltdm->pmic->vp_vddmax;
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waittime = ((vdd->pmic_info->step_size / vdd->pmic_info->slew_rate) *
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waittime = ((voltdm->pmic->step_size / voltdm->pmic->slew_rate) *
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sys_clk_speed) / 1000;
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vdd->vp_rt_data.vstepmin_smpswaittimemin = waittime;
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vdd->vp_rt_data.vstepmax_smpswaittimemax = waittime;
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vdd->vp_rt_data.vstepmin_stepmin = vdd->pmic_info->vp_vstepmin;
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vdd->vp_rt_data.vstepmax_stepmax = vdd->pmic_info->vp_vstepmax;
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vdd->vp_rt_data.vstepmin_stepmin = voltdm->pmic->vp_vstepmin;
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vdd->vp_rt_data.vstepmax_stepmax = voltdm->pmic->vp_vstepmax;
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return 0;
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}
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@ -149,10 +149,9 @@ static void __init vdd_debugfs_init(struct voltagedomain *voltdm)
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static int __init omap_vdd_data_configure(struct voltagedomain *voltdm)
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{
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struct omap_vdd_info *vdd = voltdm->vdd;
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int ret = -EINVAL;
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if (!vdd->pmic_info) {
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if (!voltdm->pmic) {
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pr_err("%s: PMIC info requried to configure vdd_%s not"
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"populated.Hence cannot initialize vdd_%s\n",
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__func__, voltdm->name, voltdm->name);
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@ -324,24 +323,20 @@ struct omap_volt_data *omap_voltage_get_voltdata(struct voltagedomain *voltdm,
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* omap_voltage_register_pmic() - API to register PMIC specific data
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* @voltdm: pointer to the VDD for which the PMIC specific data is
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* to be registered
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* @pmic_info: the structure containing pmic info
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* @pmic: the structure containing pmic info
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*
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* This API is to be called by the SOC/PMIC file to specify the
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* pmic specific info as present in omap_volt_pmic_info structure.
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* pmic specific info as present in omap_voltdm_pmic structure.
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*/
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int omap_voltage_register_pmic(struct voltagedomain *voltdm,
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struct omap_volt_pmic_info *pmic_info)
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struct omap_voltdm_pmic *pmic)
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{
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struct omap_vdd_info *vdd;
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if (!voltdm || IS_ERR(voltdm)) {
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pr_warning("%s: VDD specified does not exist!\n", __func__);
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return -EINVAL;
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}
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vdd = voltdm->vdd;
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vdd->pmic_info = pmic_info;
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voltdm->pmic = pmic;
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return 0;
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}
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@ -67,6 +67,7 @@ struct voltagedomain {
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struct list_head pwrdm_list;
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struct omap_vc_channel *vc;
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const struct omap_vfsm_instance *vfsm;
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struct omap_voltdm_pmic *pmic;
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/* VC/VP register access functions: SoC specific */
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u32 (*read) (u8 offset);
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@ -96,7 +97,7 @@ struct omap_volt_data {
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};
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/**
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* struct omap_volt_pmic_info - PMIC specific data required by voltage driver.
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* struct omap_voltdm_pmic - PMIC specific data required by voltage driver.
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* @slew_rate: PMIC slew rate (in uv/us)
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* @step_size: PMIC voltage step size (in uv)
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* @i2c_slave_addr: I2C slave address of PMIC
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@ -105,7 +106,7 @@ struct omap_volt_data {
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* @vsel_to_uv: PMIC API to convert vsel value to actual voltage in uV.
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* @uv_to_vsel: PMIC API to convert voltage in uV to vsel value.
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*/
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struct omap_volt_pmic_info {
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struct omap_voltdm_pmic {
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int slew_rate;
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int step_size;
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u32 on_volt;
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@ -131,8 +132,6 @@ struct omap_volt_pmic_info {
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*
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* @volt_data : voltage table having the distinct voltages supported
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* by the domain and other associated per voltage data.
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* @pmic_info : pmic specific parameters which should be populted by
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* the pmic drivers.
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* @vp_data : the register values, shifts, masks for various
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* vp registers
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* @vp_rt_data : VP data derived at runtime, not predefined
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@ -143,7 +142,6 @@ struct omap_volt_pmic_info {
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*/
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struct omap_vdd_info {
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struct omap_volt_data *volt_data;
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struct omap_volt_pmic_info *pmic_info;
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struct omap_vp_instance_data *vp_data;
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struct omap_vp_runtime_data vp_rt_data;
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struct dentry *debug_dir;
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@ -165,13 +163,13 @@ unsigned long omap_voltage_get_nom_volt(struct voltagedomain *voltdm);
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struct dentry *omap_voltage_get_dbgdir(struct voltagedomain *voltdm);
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#ifdef CONFIG_PM
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int omap_voltage_register_pmic(struct voltagedomain *voltdm,
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struct omap_volt_pmic_info *pmic_info);
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struct omap_voltdm_pmic *pmic);
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void omap_change_voltscale_method(struct voltagedomain *voltdm,
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int voltscale_method);
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int omap_voltage_late_init(void);
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#else
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static inline int omap_voltage_register_pmic(struct voltagedomain *voltdm,
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struct omap_volt_pmic_info *pmic_info)
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struct omap_voltdm_pmic *pmic)
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{
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return -EINVAL;
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}
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@ -18,7 +18,6 @@ static void vp_latch_vsel(struct voltagedomain *voltdm)
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u32 vpconfig;
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unsigned long uvdc;
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char vsel;
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struct omap_vdd_info *vdd = voltdm->vdd;
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uvdc = omap_voltage_get_nom_volt(voltdm);
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if (!uvdc) {
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@ -27,13 +26,13 @@ static void vp_latch_vsel(struct voltagedomain *voltdm)
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return;
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}
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if (!vdd->pmic_info || !vdd->pmic_info->uv_to_vsel) {
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if (!voltdm->pmic || !voltdm->pmic->uv_to_vsel) {
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pr_warning("%s: PMIC function to convert voltage in uV to"
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" vsel not registered\n", __func__);
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return;
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}
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vsel = vdd->pmic_info->uv_to_vsel(uvdc);
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vsel = voltdm->pmic->uv_to_vsel(uvdc);
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vpconfig = voltdm->read(vp->vpconfig);
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||||
vpconfig &= ~(vp->vp_common->vpconfig_initvoltage_mask |
|
||||
|
@ -206,13 +205,13 @@ unsigned long omap_vp_get_curr_volt(struct voltagedomain *voltdm)
|
|||
|
||||
curr_vsel = voltdm->read(vp->voltage);
|
||||
|
||||
if (!vdd->pmic_info || !vdd->pmic_info->vsel_to_uv) {
|
||||
if (!voltdm->pmic || !voltdm->pmic->vsel_to_uv) {
|
||||
pr_warning("%s: PMIC function to convert vsel to voltage"
|
||||
"in uV not registerd\n", __func__);
|
||||
return 0;
|
||||
}
|
||||
|
||||
return vdd->pmic_info->vsel_to_uv(curr_vsel);
|
||||
return voltdm->pmic->vsel_to_uv(curr_vsel);
|
||||
}
|
||||
|
||||
/**
|
||||
|
@ -323,13 +322,13 @@ static int vp_volt_debug_get(void *data, u64 *val)
|
|||
|
||||
vsel = voltdm->read(vp->voltage);
|
||||
|
||||
if (!vdd->pmic_info->vsel_to_uv) {
|
||||
if (!voltdm->pmic->vsel_to_uv) {
|
||||
pr_warning("PMIC function to convert vsel to voltage"
|
||||
"in uV not registerd\n");
|
||||
return -EINVAL;
|
||||
}
|
||||
|
||||
*val = vdd->pmic_info->vsel_to_uv(vsel);
|
||||
*val = voltdm->pmic->vsel_to_uv(vsel);
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
|
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