From: Artem Bityutskiy artem.bityuts...@nokia.com
This patch fixes the following problem indicated by kmemleak:
kmemleak: unreferenced object 0xdf93c280 (size 64):
kmemleak: backtrace:
kmemleak: [c00df6d4] create_object+0x104/0x200
kmemleak: [c00d7638] kmem_cache_alloc+0xe4/0xf4
kmemleak: [c000fc38] omap_devinit_smartreflex+0x44/0x244
kmemleak: [c003a33c] do_one_initcall+0x5c/0x1b8
kmemleak: [c00083fc] kernel_init+0x94/0x110
kmemleak: [c003ba04] kernel_thread_exit+0x0/0x8
The reason is that 'omap_devinit_smartreflex()' allocates 'sr_data',
then passes it to 'omap_device_build()', which 'kmemdup()'s it and
uses the copy. But 'omap_devinit_smartreflex()' never frees 'sr_data'.
This patch make 'sr_data' to be a stack variable, which eliminates
the memory leak and simplifies the code a bit.
Signed-off-by: Artem Bityutskiy artem.bityuts...@nokia.com
---
arch/arm/mach-omap2/sr_device.c | 27 +--
1 files changed, 9 insertions(+), 18 deletions(-)
diff --git a/arch/arm/mach-omap2/sr_device.c b/arch/arm/mach-omap2/sr_device.c
index 24630ef..d1bb495 100644
--- a/arch/arm/mach-omap2/sr_device.c
+++ b/arch/arm/mach-omap2/sr_device.c
@@ -129,7 +129,7 @@ static int __init omap_devinit_smartreflex(void)
char *name = smartreflex;
do {
- struct omap_smartreflex_data *sr_data;
+ struct omap_smartreflex_data sr_data;
struct omap_smartreflex_dev_data *sr_dev_data;
struct omap_device *od;
struct omap_hwmod *oh;
@@ -140,15 +140,7 @@ static int __init omap_devinit_smartreflex(void)
if (!oh)
break;
- sr_data = kzalloc(sizeof(struct omap_smartreflex_data),
- GFP_KERNEL);
sr_dev_data = (struct omap_smartreflex_dev_data *)oh-dev_attr;
- if (!sr_data) {
- pr_warning(%s: could not find hwmod data for %d\n,
- __func__, i + 1);
- kfree(sr_data);
- return -ENOMEM;
- }
/*
* OMAP3430 ES3.1 chips by default come with Efuse burnt
@@ -159,26 +151,25 @@ static int __init omap_devinit_smartreflex(void)
*/
if (cpu_is_omap343x()) {
if (omap_rev() == OMAP3430_REV_ES3_1)
- sr_data-enable_on_init = true;
+ sr_data.enable_on_init = true;
else
- sr_data-enable_on_init = false;
+ sr_data.enable_on_init = false;
} else {
- sr_data-enable_on_init = false;
+ sr_data.enable_on_init = false;
}
- sr_data-device_enable = omap_device_enable;
- sr_data-device_shutdown = omap_device_shutdown;
- sr_data-device_idle = omap_device_idle;
+ sr_data.device_enable = omap_device_enable;
+ sr_data.device_shutdown = omap_device_shutdown;
+ sr_data.device_idle = omap_device_idle;
omap_get_voltage_table(i, sr_dev_data-volt_data,
sr_dev_data-volts_supported);
- sr_set_nvalues(sr_dev_data, sr_data);
+ sr_set_nvalues(sr_dev_data, sr_data);
- od = omap_device_build(name, i, oh, sr_data, sizeof(*sr_data),
+ od = omap_device_build(name, i, oh, sr_data, sizeof(sr_data),
omap_sr_latency,
ARRAY_SIZE(omap_sr_latency), 0);
if (IS_ERR(od)) {
pr_warning(%s: Could not build omap_device %s:%s\n,
__func__, name, oh-name);
- kfree(sr_data);
}
i++;
} while (1);
--
1.7.1.1
--
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