ACPI: PMIC: Fix intel_pmic_regs_handler() read accesses

[ Upstream commit 009a789443 ]

The handling of PMIC register reads through writing 0 to address 4
of the OpRegion is wrong. Instead of returning the read value
through the value64, which is a no-op for function == ACPI_WRITE calls,
store the value and then on a subsequent function == ACPI_READ with
address == 3 (the address for the value field of the OpRegion)
return the stored value.

This has been tested on a Xiaomi Mi Pad 2 and makes the ACPI battery dev
there mostly functional (unfortunately there are still other issues).

Here are the SET() / GET() functions of the PMIC ACPI device,
which use this OpRegion, which clearly show the new behavior to
be correct:

OperationRegion (REGS, 0x8F, Zero, 0x50)
Field (REGS, ByteAcc, NoLock, Preserve)
{
    CLNT,   8,
    SA,     8,
    OFF,    8,
    VAL,    8,
    RWM,    8
}

Method (GET, 3, Serialized)
{
    If ((AVBE == One))
    {
        CLNT = Arg0
        SA = Arg1
        OFF = Arg2
        RWM = Zero
        If ((AVBG == One))
        {
            GPRW = Zero
        }
    }

    Return (VAL) /* \_SB_.PCI0.I2C7.PMI5.VAL_ */
}

Method (SET, 4, Serialized)
{
    If ((AVBE == One))
    {
        CLNT = Arg0
        SA = Arg1
        OFF = Arg2
        VAL = Arg3
        RWM = One
        If ((AVBG == One))
        {
            GPRW = One
        }
    }
}

Fixes: 0afa877a56 ("ACPI / PMIC: intel: add REGS operation region support")
Signed-off-by: Hans de Goede <hdegoede@redhat.com>
Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com>
Signed-off-by: Sasha Levin <sashal@kernel.org>
This commit is contained in:
Hans de Goede 2021-10-31 16:31:35 +01:00 коммит произвёл Greg Kroah-Hartman
Родитель fdcdc4c5ae
Коммит 19c65258dd
1 изменённых файлов: 28 добавлений и 23 удалений

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@ -211,31 +211,36 @@ static acpi_status intel_pmic_regs_handler(u32 function,
void *handler_context, void *region_context)
{
struct intel_pmic_opregion *opregion = region_context;
int result = 0;
int result = -EINVAL;
switch (address) {
case 0:
return AE_OK;
case 1:
opregion->ctx.addr |= (*value64 & 0xff) << 8;
return AE_OK;
case 2:
opregion->ctx.addr |= *value64 & 0xff;
return AE_OK;
case 3:
opregion->ctx.val = *value64 & 0xff;
return AE_OK;
case 4:
if (*value64) {
result = regmap_write(opregion->regmap, opregion->ctx.addr,
opregion->ctx.val);
} else {
result = regmap_read(opregion->regmap, opregion->ctx.addr,
&opregion->ctx.val);
if (result == 0)
*value64 = opregion->ctx.val;
if (function == ACPI_WRITE) {
switch (address) {
case 0:
return AE_OK;
case 1:
opregion->ctx.addr |= (*value64 & 0xff) << 8;
return AE_OK;
case 2:
opregion->ctx.addr |= *value64 & 0xff;
return AE_OK;
case 3:
opregion->ctx.val = *value64 & 0xff;
return AE_OK;
case 4:
if (*value64) {
result = regmap_write(opregion->regmap, opregion->ctx.addr,
opregion->ctx.val);
} else {
result = regmap_read(opregion->regmap, opregion->ctx.addr,
&opregion->ctx.val);
}
opregion->ctx.addr = 0;
}
memset(&opregion->ctx, 0x00, sizeof(opregion->ctx));
}
if (function == ACPI_READ && address == 3) {
*value64 = opregion->ctx.val;
return AE_OK;
}
if (result < 0) {