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Merge branches 'pm-opp', 'pm-devfreq', 'pm-avs' and 'pm-tools'

* pm-opp:
  OPP: Introduce "required-opp" property
  OPP: Allow OPP table to be used for power-domains

* pm-devfreq:
  PM / devfreq: Fix potential NULL pointer dereference in governor_store
  PM / devfreq: Propagate error from devfreq_add_device()

* pm-avs:
  PM / AVS: rockchip-io: account for const type of of_device_id.data

* pm-tools:
  tools/power/x86/intel_pstate_tracer: Free the trace buffer memory
  cpupower: Remove FSF address
hifive-unleashed-5.1
Rafael J. Wysocki 2018-01-18 02:56:04 +01:00
6 changed files with 108 additions and 18 deletions

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@ -45,6 +45,11 @@ Devices supporting OPPs must set their "operating-points-v2" property with
phandle to a OPP table in their DT node. The OPP core will use this phandle to
find the operating points for the device.
This can contain more than one phandle for power domain providers that provide
multiple power domains. That is, one phandle for each power domain. If only one
phandle is available, then the same OPP table will be used for all power domains
provided by the power domain provider.
If required, this can be extended for SoC vendor specific bindings. Such bindings
should be documented as Documentation/devicetree/bindings/power/<vendor>-opp.txt
and should have a compatible description like: "operating-points-v2-<vendor>".
@ -154,6 +159,14 @@ Optional properties:
- status: Marks the node enabled/disabled.
- required-opp: This contains phandle to an OPP node in another device's OPP
table. It may contain an array of phandles, where each phandle points to an
OPP of a different device. It should not contain multiple phandles to the OPP
nodes in the same OPP table. This specifies the minimum required OPP of the
device(s), whose OPP's phandle is present in this property, for the
functioning of the current device at the current OPP (where this property is
present).
Example 1: Single cluster Dual-core ARM cortex A9, switch DVFS states together.
/ {

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@ -40,6 +40,12 @@ Optional properties:
domain's idle states. In the absence of this property, the domain would be
considered as capable of being powered-on or powered-off.
- operating-points-v2 : Phandles to the OPP tables of power domains provided by
a power domain provider. If the provider provides a single power domain only
or all the power domains provided by the provider have identical OPP tables,
then this shall contain a single phandle. Refer to ../opp/opp.txt for more
information.
Example:
power: power-controller@12340000 {
@ -120,4 +126,63 @@ The node above defines a typical PM domain consumer device, which is located
inside a PM domain with index 0 of a power controller represented by a node
with the label "power".
Optional properties:
- required-opp: This contains phandle to an OPP node in another device's OPP
table. It may contain an array of phandles, where each phandle points to an
OPP of a different device. It should not contain multiple phandles to the OPP
nodes in the same OPP table. This specifies the minimum required OPP of the
device(s), whose OPP's phandle is present in this property, for the
functioning of the current device at the current OPP (where this property is
present).
Example:
- OPP table for domain provider that provides two domains.
domain0_opp_table: opp-table0 {
compatible = "operating-points-v2";
domain0_opp_0: opp-1000000000 {
opp-hz = /bits/ 64 <1000000000>;
opp-microvolt = <975000 970000 985000>;
};
domain0_opp_1: opp-1100000000 {
opp-hz = /bits/ 64 <1100000000>;
opp-microvolt = <1000000 980000 1010000>;
};
};
domain1_opp_table: opp-table1 {
compatible = "operating-points-v2";
domain1_opp_0: opp-1200000000 {
opp-hz = /bits/ 64 <1200000000>;
opp-microvolt = <975000 970000 985000>;
};
domain1_opp_1: opp-1300000000 {
opp-hz = /bits/ 64 <1300000000>;
opp-microvolt = <1000000 980000 1010000>;
};
};
power: power-controller@12340000 {
compatible = "foo,power-controller";
reg = <0x12340000 0x1000>;
#power-domain-cells = <1>;
operating-points-v2 = <&domain0_opp_table>, <&domain1_opp_table>;
};
leaky-device0@12350000 {
compatible = "foo,i-leak-current";
reg = <0x12350000 0x1000>;
power-domains = <&power 0>;
required-opp = <&domain0_opp_0>;
};
leaky-device1@12350000 {
compatible = "foo,i-leak-current";
reg = <0x12350000 0x1000>;
power-domains = <&power 1>;
required-opp = <&domain1_opp_1>;
};
[1]. Documentation/devicetree/bindings/power/domain-idle-state.txt

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@ -737,7 +737,7 @@ struct devfreq *devm_devfreq_add_device(struct device *dev,
devfreq = devfreq_add_device(dev, profile, governor_name, data);
if (IS_ERR(devfreq)) {
devres_free(ptr);
return ERR_PTR(-ENOMEM);
return devfreq;
}
*ptr = devfreq;
@ -996,7 +996,8 @@ static ssize_t governor_store(struct device *dev, struct device_attribute *attr,
if (df->governor == governor) {
ret = 0;
goto out;
} else if (df->governor->immutable || governor->immutable) {
} else if ((df->governor && df->governor->immutable) ||
governor->immutable) {
ret = -EINVAL;
goto out;
}

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@ -76,7 +76,7 @@ struct rockchip_iodomain_supply {
struct rockchip_iodomain {
struct device *dev;
struct regmap *grf;
struct rockchip_iodomain_soc_data *soc_data;
const struct rockchip_iodomain_soc_data *soc_data;
struct rockchip_iodomain_supply supplies[MAX_SUPPLIES];
};
@ -382,43 +382,43 @@ static const struct rockchip_iodomain_soc_data soc_data_rv1108_pmu = {
static const struct of_device_id rockchip_iodomain_match[] = {
{
.compatible = "rockchip,rk3188-io-voltage-domain",
.data = (void *)&soc_data_rk3188
.data = &soc_data_rk3188
},
{
.compatible = "rockchip,rk3228-io-voltage-domain",
.data = (void *)&soc_data_rk3228
.data = &soc_data_rk3228
},
{
.compatible = "rockchip,rk3288-io-voltage-domain",
.data = (void *)&soc_data_rk3288
.data = &soc_data_rk3288
},
{
.compatible = "rockchip,rk3328-io-voltage-domain",
.data = (void *)&soc_data_rk3328
.data = &soc_data_rk3328
},
{
.compatible = "rockchip,rk3368-io-voltage-domain",
.data = (void *)&soc_data_rk3368
.data = &soc_data_rk3368
},
{
.compatible = "rockchip,rk3368-pmu-io-voltage-domain",
.data = (void *)&soc_data_rk3368_pmu
.data = &soc_data_rk3368_pmu
},
{
.compatible = "rockchip,rk3399-io-voltage-domain",
.data = (void *)&soc_data_rk3399
.data = &soc_data_rk3399
},
{
.compatible = "rockchip,rk3399-pmu-io-voltage-domain",
.data = (void *)&soc_data_rk3399_pmu
.data = &soc_data_rk3399_pmu
},
{
.compatible = "rockchip,rv1108-io-voltage-domain",
.data = (void *)&soc_data_rv1108
.data = &soc_data_rv1108
},
{
.compatible = "rockchip,rv1108-pmu-io-voltage-domain",
.data = (void *)&soc_data_rv1108_pmu
.data = &soc_data_rv1108_pmu
},
{ /* sentinel */ },
};
@ -443,7 +443,7 @@ static int rockchip_iodomain_probe(struct platform_device *pdev)
platform_set_drvdata(pdev, iod);
match = of_match_node(rockchip_iodomain_match, np);
iod->soc_data = (struct rockchip_iodomain_soc_data *)match->data;
iod->soc_data = match->data;
parent = pdev->dev.parent;
if (parent && parent->of_node) {

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@ -11,10 +11,6 @@
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#ifndef __CPUPOWER_CPUFREQ_H__

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@ -411,6 +411,16 @@ def set_trace_buffer_size():
print('IO error setting trace buffer size ')
quit()
def free_trace_buffer():
""" Free the trace buffer memory """
try:
open('/sys/kernel/debug/tracing/buffer_size_kb'
, 'w').write("1")
except:
print('IO error setting trace buffer size ')
quit()
def read_trace_data(filename):
""" Read and parse trace data """
@ -583,4 +593,9 @@ for root, dirs, files in os.walk('.'):
for f in files:
fix_ownership(f)
clear_trace_file()
# Free the memory
if interval:
free_trace_buffer()
os.chdir('../../')