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edac: core fix redundant sysfs controls to parameters
/sys/devices/system/edac/mc has a few files which are duplicated in /sys/module/edac_core/parameters. Now that all the functionality is duplicated between these two locations, we remove the former kobject attributes and update the documentation. Signed-off-by: Arthur Jones <ajones@riverbed.com> Signed-off-by: Doug Thompson <dougthompson@xmission.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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@ -222,74 +222,9 @@ both csrow2 and csrow3 are populated, this indicates a dual ranked
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set of DIMMs for channels 0 and 1.
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Within each of the 'mc','mcX' and 'csrowX' directories are several
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Within each of the 'mcX' and 'csrowX' directories are several
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EDAC control and attribute files.
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============================================================================
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DIRECTORY 'mc'
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In directory 'mc' are EDAC system overall control and attribute files:
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Panic on UE control file:
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'edac_mc_panic_on_ue'
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An uncorrectable error will cause a machine panic. This is usually
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desirable. It is a bad idea to continue when an uncorrectable error
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occurs - it is indeterminate what was uncorrected and the operating
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system context might be so mangled that continuing will lead to further
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corruption. If the kernel has MCE configured, then EDAC will never
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notice the UE.
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LOAD TIME: module/kernel parameter: panic_on_ue=[0|1]
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RUN TIME: echo "1" >/sys/devices/system/edac/mc/edac_mc_panic_on_ue
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Log UE control file:
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'edac_mc_log_ue'
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Generate kernel messages describing uncorrectable errors. These errors
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are reported through the system message log system. UE statistics
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will be accumulated even when UE logging is disabled.
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LOAD TIME: module/kernel parameter: log_ue=[0|1]
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RUN TIME: echo "1" >/sys/devices/system/edac/mc/edac_mc_log_ue
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Log CE control file:
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'edac_mc_log_ce'
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Generate kernel messages describing correctable errors. These
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errors are reported through the system message log system.
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CE statistics will be accumulated even when CE logging is disabled.
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LOAD TIME: module/kernel parameter: log_ce=[0|1]
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RUN TIME: echo "1" >/sys/devices/system/edac/mc/edac_mc_log_ce
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Polling period control file:
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'edac_mc_poll_msec'
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The time period, in milliseconds, for polling for error information.
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Too small a value wastes resources. Too large a value might delay
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necessary handling of errors and might loose valuable information for
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locating the error. 1000 milliseconds (once each second) is the current
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default. Systems which require all the bandwidth they can get, may
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increase this.
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LOAD TIME: module/kernel parameter: poll_msec=[0|1]
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RUN TIME: echo "1000" >/sys/devices/system/edac/mc/edac_mc_poll_msec
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============================================================================
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'mcX' DIRECTORIES
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@ -537,7 +472,6 @@ Channel 1 DIMM Label control file:
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motherboard specific and determination of this information
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must occur in userland at this time.
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============================================================================
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SYSTEM LOGGING
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@ -570,7 +504,6 @@ error type, a notice of "no info" and then an optional,
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driver-specific error message.
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============================================================================
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PCI Bus Parity Detection
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@ -604,6 +537,74 @@ Enable/Disable PCI Parity checking control file:
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echo "0" >/sys/devices/system/edac/pci/check_pci_parity
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Parity Count:
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'pci_parity_count'
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This attribute file will display the number of parity errors that
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have been detected.
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============================================================================
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MODULE PARAMETERS
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Panic on UE control file:
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'edac_mc_panic_on_ue'
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An uncorrectable error will cause a machine panic. This is usually
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desirable. It is a bad idea to continue when an uncorrectable error
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occurs - it is indeterminate what was uncorrected and the operating
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system context might be so mangled that continuing will lead to further
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corruption. If the kernel has MCE configured, then EDAC will never
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notice the UE.
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LOAD TIME: module/kernel parameter: edac_mc_panic_on_ue=[0|1]
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RUN TIME: echo "1" > /sys/module/edac_core/parameters/edac_mc_panic_on_ue
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Log UE control file:
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'edac_mc_log_ue'
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Generate kernel messages describing uncorrectable errors. These errors
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are reported through the system message log system. UE statistics
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will be accumulated even when UE logging is disabled.
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LOAD TIME: module/kernel parameter: edac_mc_log_ue=[0|1]
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RUN TIME: echo "1" > /sys/module/edac_core/parameters/edac_mc_log_ue
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Log CE control file:
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'edac_mc_log_ce'
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Generate kernel messages describing correctable errors. These
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errors are reported through the system message log system.
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CE statistics will be accumulated even when CE logging is disabled.
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LOAD TIME: module/kernel parameter: edac_mc_log_ce=[0|1]
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RUN TIME: echo "1" > /sys/module/edac_core/parameters/edac_mc_log_ce
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Polling period control file:
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'edac_mc_poll_msec'
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The time period, in milliseconds, for polling for error information.
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Too small a value wastes resources. Too large a value might delay
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necessary handling of errors and might loose valuable information for
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locating the error. 1000 milliseconds (once each second) is the current
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default. Systems which require all the bandwidth they can get, may
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increase this.
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LOAD TIME: module/kernel parameter: edac_mc_poll_msec=[0|1]
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RUN TIME: echo "1000" > /sys/module/edac_core/parameters/edac_mc_poll_msec
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Panic on PCI PARITY Error:
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@ -614,21 +615,13 @@ Panic on PCI PARITY Error:
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error has been detected.
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module/kernel parameter: panic_on_pci_parity=[0|1]
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module/kernel parameter: edac_panic_on_pci_pe=[0|1]
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Enable:
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echo "1" >/sys/devices/system/edac/pci/panic_on_pci_parity
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echo "1" > /sys/module/edac_core/parameters/edac_panic_on_pci_pe
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Disable:
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echo "0" >/sys/devices/system/edac/pci/panic_on_pci_parity
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Parity Count:
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'pci_parity_count'
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This attribute file will display the number of parity errors that
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have been detected.
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echo "0" > /sys/module/edac_core/parameters/edac_panic_on_pci_pe
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@ -123,16 +123,6 @@ static const char *edac_caps[] = {
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/*
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* /sys/devices/system/edac/mc;
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* data structures and methods
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*/
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static ssize_t memctrl_int_show(void *ptr, char *buffer)
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{
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int *value = (int *)ptr;
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return sprintf(buffer, "%u\n", *value);
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}
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static ssize_t memctrl_int_store(void *ptr, const char *buffer, size_t count)
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{
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int *value = (int *)ptr;
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@ -143,23 +133,6 @@ static ssize_t memctrl_int_store(void *ptr, const char *buffer, size_t count)
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return count;
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}
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/*
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* mc poll_msec time value
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*/
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static ssize_t poll_msec_int_store(void *ptr, const char *buffer, size_t count)
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{
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int *value = (int *)ptr;
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if (isdigit(*buffer)) {
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*value = simple_strtoul(buffer, NULL, 0);
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/* notify edac_mc engine to reset the poll period */
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edac_mc_reset_delay_period(*value);
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}
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return count;
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}
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/* EDAC sysfs CSROW data structures and methods
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*/
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@ -669,98 +642,10 @@ static struct kobj_type ktype_mci = {
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.default_attrs = (struct attribute **)mci_attr,
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};
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/* show/store, tables, etc for the MC kset */
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struct memctrl_dev_attribute {
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struct attribute attr;
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void *value;
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ssize_t(*show) (void *, char *);
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ssize_t(*store) (void *, const char *, size_t);
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};
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/* Set of show/store abstract level functions for memory control object */
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static ssize_t memctrl_dev_show(struct kobject *kobj,
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struct attribute *attr, char *buffer)
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{
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struct memctrl_dev_attribute *memctrl_dev;
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memctrl_dev = (struct memctrl_dev_attribute *)attr;
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if (memctrl_dev->show)
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return memctrl_dev->show(memctrl_dev->value, buffer);
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return -EIO;
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}
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static ssize_t memctrl_dev_store(struct kobject *kobj, struct attribute *attr,
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const char *buffer, size_t count)
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{
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struct memctrl_dev_attribute *memctrl_dev;
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memctrl_dev = (struct memctrl_dev_attribute *)attr;
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if (memctrl_dev->store)
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return memctrl_dev->store(memctrl_dev->value, buffer, count);
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return -EIO;
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}
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static struct sysfs_ops memctrlfs_ops = {
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.show = memctrl_dev_show,
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.store = memctrl_dev_store
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};
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#define MEMCTRL_ATTR(_name, _mode, _show, _store) \
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static struct memctrl_dev_attribute attr_##_name = { \
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.attr = {.name = __stringify(_name), .mode = _mode }, \
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.value = &_name, \
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.show = _show, \
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.store = _store, \
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};
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#define MEMCTRL_STRING_ATTR(_name, _data, _mode, _show, _store) \
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static struct memctrl_dev_attribute attr_##_name = { \
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.attr = {.name = __stringify(_name), .mode = _mode }, \
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.value = _data, \
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.show = _show, \
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.store = _store, \
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};
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/* csrow<id> control files */
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MEMCTRL_ATTR(edac_mc_panic_on_ue,
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S_IRUGO | S_IWUSR, memctrl_int_show, memctrl_int_store);
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MEMCTRL_ATTR(edac_mc_log_ue,
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S_IRUGO | S_IWUSR, memctrl_int_show, memctrl_int_store);
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MEMCTRL_ATTR(edac_mc_log_ce,
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S_IRUGO | S_IWUSR, memctrl_int_show, memctrl_int_store);
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MEMCTRL_ATTR(edac_mc_poll_msec,
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S_IRUGO | S_IWUSR, memctrl_int_show, poll_msec_int_store);
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/* Base Attributes of the memory ECC object */
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static struct memctrl_dev_attribute *memctrl_attr[] = {
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&attr_edac_mc_panic_on_ue,
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&attr_edac_mc_log_ue,
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&attr_edac_mc_log_ce,
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&attr_edac_mc_poll_msec,
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NULL,
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};
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/* the ktype for the mc_kset internal kobj */
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static struct kobj_type ktype_mc_set_attribs = {
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.sysfs_ops = &memctrlfs_ops,
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.default_attrs = (struct attribute **)memctrl_attr,
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};
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/* EDAC memory controller sysfs kset:
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* /sys/devices/system/edac/mc
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*/
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static struct kset mc_kset = {
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.kobj = {.ktype = &ktype_mc_set_attribs },
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};
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static struct kset mc_kset;
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/*
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* edac_mc_register_sysfs_main_kobj
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