94 lines
3.2 KiB
Diff
94 lines
3.2 KiB
Diff
From git@z Thu Jan 1 00:00:00 1970
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Subject: [PATCH RFC 4/5] mfd: axp20x: Support tri-phase setup
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From: Andre Przywara <andre.przywara@arm.com>
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Date: Fri, 19 Sep 2025 01:00:19 +0100
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Message-Id: <20250919000020.16969-5-andre.przywara@arm.com>
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MIME-Version: 1.0
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Content-Type: text/plain; charset="utf-8"
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Content-Transfer-Encoding: 7bit
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Of the PMICs that support multi-phased regulators, all but one just
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support a dual-phase setup, with exactly two regulators tied together.
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This allows for a simple data model, since just two is somewhat of a
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special case.
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However there is the AXP806, which supports a triple-phase setup, that is
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also used on at least one board: the Cubieboard 4, where DCDC-A+B+C
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together supply the Cortex-A15 CPU cluster.
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Since this is just one case, and a fairly old one now, let's not boil
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the ocean by coming up with a complex data structure that allows
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describing arbitrary combinations, but instead handle this as a special
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case. This is supported by the fact, that the AXP806 only supports two
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specific setups: DCDC-A+B or DCDC-A+B+C, but nothing else.
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Add a function that checks for the regulators on this PMIC, and handle
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the two cases, plus the one without any poly-phasing.
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Signed-off-by: Andre Przywara <andre.przywara@arm.com>
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Acked-by: Mark Brown <broonie@kernel.org>
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---
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drivers/regulator/axp20x-regulator.c | 45 ++++++++++++++++++++++++++++
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1 file changed, 45 insertions(+)
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--- a/drivers/regulator/axp20x-regulator.c
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+++ b/drivers/regulator/axp20x-regulator.c
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@@ -1569,6 +1569,39 @@ static int axp20x_find_polyphased_reg(co
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return -ENODEV;
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}
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+static int axp20x_handle_triphase(struct axp20x_dev *axp20x,
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+ int reg1, int reg2, int reg3)
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+{
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+ if (axp20x->variant == AXP806_ID && reg1 == AXP806_DCDCA) {
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+ /* no other regulator listed: single phase setup */
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+ if (reg2 == -ENOENT && reg3 == -ENOENT) {
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+ regmap_update_bits(axp20x->regmap,
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+ AXP806_DCDC_MODE_CTRL2,
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+ AXP806_DCDCABC_POLYPHASE_MASK, 0);
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+ return 0;
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+ }
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+ /* only regulator listed is DCDC-B: dual phase setup */
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+ if (reg2 == AXP806_DCDCB && reg3 == -ENOENT) {
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+ regmap_update_bits(axp20x->regmap,
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+ AXP806_DCDC_MODE_CTRL2,
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+ AXP806_DCDCABC_POLYPHASE_MASK,
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+ AXP806_DCDCAB_POLYPHASE_DUAL);
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+ return 0;
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+ }
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+ /* both DCDC-B+C regulators listed: tri phase setup */
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+ if ((reg2 == AXP806_DCDCB && reg3 == AXP806_DCDCC) ||
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+ (reg2 == AXP806_DCDCC && reg3 == AXP806_DCDCB)) {
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+ regmap_update_bits(axp20x->regmap,
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+ AXP806_DCDC_MODE_CTRL2,
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+ AXP806_DCDCABC_POLYPHASE_MASK,
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+ AXP806_DCDCABC_POLYPHASE_TRI);
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+ return 0;
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+ }
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+ }
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+
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+ return 0;
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+}
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+
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static int axp20x_parse_polyphase(struct axp20x_dev *axp20x, int primary_reg_id,
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const struct regulator_desc *regs,
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int nregulators, const struct device_node *np)
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@@ -1610,6 +1643,18 @@ static int axp20x_parse_polyphase(struct
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}
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}
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+ /* Special handling for the AXP806 DCDC-A/B/C tri-phase regulator. */
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+ if (axp20x->variant == AXP806_ID && primary_reg_id == AXP806_DCDCA) {
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+ int reg3_id;
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+
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+ reg3_id = axp20x_find_polyphased_reg(regs, nregulators, np, 1);
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+ if (reg3_id < 0 && reg3_id != -ENOENT)
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+ return reg_id;
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+
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+ return axp20x_handle_triphase(axp20x, primary_reg_id,
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+ reg_id, reg3_id);
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+ }
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+
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return 0;
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}
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