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regulator: Allow boot_on regulators to be disabled by clients
Rather than incrementing the reference count for boot_on regulators (which prevents them being disabled later on) simply force the regulator to be enabled when applying the constraints. Previously boot_on was essentially equivalent to always_on. Signed-off-by: Mark Brown <broonie@opensource.wolfsonmicro.com> Signed-off-by: Liam Girdwood <lrg@slimlogic.co.uk>
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@ -776,10 +776,6 @@ static int set_machine_constraints(struct regulator_dev *rdev,
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}
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}
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/* are we enabled at boot time by firmware / bootloader */
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if (rdev->constraints->boot_on)
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rdev->use_count = 1;
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/* do we need to setup our suspend state */
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if (constraints->initial_state) {
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ret = suspend_prepare(rdev, constraints->initial_state);
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@ -808,11 +804,10 @@ static int set_machine_constraints(struct regulator_dev *rdev,
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}
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}
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/* if always_on is set then turn the regulator on if it's not
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* already on. */
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if (constraints->always_on && ops->enable &&
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((ops->is_enabled && !ops->is_enabled(rdev)) ||
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(!ops->is_enabled && !constraints->boot_on))) {
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/* If the constraints say the regulator should be on at this point
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* and we have control then make sure it is enabled.
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*/
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if ((constraints->always_on || constraints->boot_on) && ops->enable) {
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ret = ops->enable(rdev);
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if (ret < 0) {
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printk(KERN_ERR "%s: failed to enable %s\n",
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@ -73,7 +73,9 @@ struct regulator_state {
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*
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* @always_on: Set if the regulator should never be disabled.
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* @boot_on: Set if the regulator is enabled when the system is initially
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* started.
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* started. If the regulator is not enabled by the hardware or
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* bootloader then it will be enabled when the constraints are
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* applied.
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* @apply_uV: Apply the voltage constraint when initialising.
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*
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* @input_uV: Input voltage for regulator when supplied by another regulator.
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