#include <linux/init.h>
#include <linux/threads.h>
-struct device_node;
-
/**
* struct cpu_operations - Callback operations for hotplugging CPUs.
*
* @name: Name of the property as appears in a devicetree cpu node's
- * enable-method property.
- * @cpu_init: Reads any data necessary for a specific enable-method from the
- * devicetree, for a given cpu node and proposed logical id.
+ * enable-method property. On systems booting with ACPI, @name
+ * identifies the struct cpu_operations entry corresponding to
+ * the boot protocol specified in the ACPI MADT table.
+ * @cpu_init: Reads any data necessary for a specific enable-method for a
+ * proposed logical id.
* @cpu_prepare: Early one-time preparation step for a cpu. If there is a
* mechanism for doing so, tests whether it is possible to boot
* the given CPU.
* @cpu_die: Makes a cpu leave the kernel. Must not fail. Called from the
* cpu being killed.
* @cpu_kill: Ensures a cpu has left the kernel. Called from another cpu.
- * @cpu_init_idle: Reads any data necessary to initialize CPU idle states from
- * devicetree, for a given cpu node and proposed logical id.
+ * @cpu_init_idle: Reads any data necessary to initialize CPU idle states for
+ * a proposed logical id.
* @cpu_suspend: Suspends a cpu and saves the required context. May fail owing
* to wrong parameters or error conditions. Called from the
* CPU being suspended. Must be called with IRQs disabled.
*/
struct cpu_operations {
const char *name;
- int (*cpu_init)(struct device_node *, unsigned int);
+ int (*cpu_init)(unsigned int);
int (*cpu_prepare)(unsigned int);
int (*cpu_boot)(unsigned int);
void (*cpu_postboot)(void);
int (*cpu_kill)(unsigned int cpu);
#endif
#ifdef CONFIG_CPU_IDLE
- int (*cpu_init_idle)(struct device_node *, unsigned int);
+ int (*cpu_init_idle)(unsigned int);
int (*cpu_suspend)(unsigned long);
#endif
};
extern const struct cpu_operations *cpu_ops[NR_CPUS];
-int __init cpu_read_ops(struct device_node *dn, int cpu);
-void __init cpu_read_bootcpu_ops(void);
+int __init cpu_read_ops(int cpu);
const struct cpu_operations *cpu_get_ops(const char *name);
+static inline void __init cpu_read_bootcpu_ops(void)
+{
+ cpu_read_ops(0);
+}
+
#endif /* ifndef __ASM_CPU_OPS_H */
if (!cpu_ops[enabled_cpus])
return;
- if (cpu_ops[enabled_cpus]->cpu_init(NULL, enabled_cpus))
+ if (cpu_ops[enabled_cpus]->cpu_init(enabled_cpus))
return;
/* map the logical cpu id to cpu MPIDR */
/*
* Read a cpu's enable method from the device tree and record it in cpu_ops.
*/
-int __init cpu_read_ops(struct device_node *dn, int cpu)
+int __init cpu_read_ops(int cpu)
{
- const char *enable_method = of_get_property(dn, "enable-method", NULL);
+ const char *enable_method;
+ struct device_node *dn = of_get_cpu_node(cpu, NULL);
+
+ if (!dn) {
+ if (!cpu)
+ pr_err("Failed to find device node for boot cpu\n");
+ return -ENODEV;
+ }
+
+ enable_method = of_get_property(dn, "enable-method", NULL);
if (!enable_method) {
/*
* The boot CPU may not have an enable method (e.g. when
return 0;
}
-
-void __init cpu_read_bootcpu_ops(void)
-{
- struct device_node *dn = of_get_cpu_node(0, NULL);
- if (!dn) {
- pr_err("Failed to find device node for boot cpu\n");
- return;
- }
- cpu_read_ops(dn, 0);
-}
int arm_cpuidle_init(unsigned int cpu)
{
int ret = -EOPNOTSUPP;
- struct device_node *cpu_node = of_cpu_device_node_get(cpu);
-
- if (!cpu_node)
- return -ENODEV;
if (cpu_ops[cpu] && cpu_ops[cpu]->cpu_init_idle)
- ret = cpu_ops[cpu]->cpu_init_idle(cpu_node, cpu);
+ ret = cpu_ops[cpu]->cpu_init_idle(cpu);
- of_node_put(cpu_node);
return ret;
}
return err;
}
-static int __maybe_unused cpu_psci_cpu_init_idle(struct device_node *cpu_node,
- unsigned int cpu)
+static int __maybe_unused cpu_psci_cpu_init_idle(unsigned int cpu)
{
int i, ret, count = 0;
struct psci_power_state *psci_states;
- struct device_node *state_node;
+ struct device_node *state_node, *cpu_node;
+
+ cpu_node = of_get_cpu_node(cpu, NULL);
+ if (!cpu_node)
+ return -ENODEV;
/*
* If the PSCI cpu_suspend function hook has not been initialized
#ifdef CONFIG_SMP
-static int __init cpu_psci_cpu_init(struct device_node *dn, unsigned int cpu)
+static int __init cpu_psci_cpu_init(unsigned int cpu)
{
return 0;
}
}
/*
+ * Initialize cpu operations for a logical cpu and
+ * set it in the possible mask on success
+ */
+static int __init smp_cpu_setup(int cpu)
+{
+ if (cpu_read_ops(cpu))
+ return -ENODEV;
+
+ if (cpu_ops[cpu]->cpu_init(cpu))
+ return -ENODEV;
+
+ set_cpu_possible(cpu, true);
+
+ return 0;
+}
+
+/*
* Enumerate the possible CPU set from the device tree and build the
* cpu logical map array containing MPIDR values related to logical
* cpus. Assumes that cpu_logical_map(0) has already been initialized.
if (cpu >= NR_CPUS)
goto next;
- if (cpu_read_ops(dn, cpu) != 0)
- goto next;
-
- if (cpu_ops[cpu]->cpu_init(dn, cpu))
- goto next;
-
pr_debug("cpu logical map 0x%llx\n", hwid);
cpu_logical_map(cpu) = hwid;
next:
}
/*
- * All the cpus that made it to the cpu_logical_map have been
- * validated so set them as possible cpus.
+ * We need to set the cpu_logical_map entries before enabling
+ * the cpus so that cpu processor description entries (DT cpu nodes
+ * and ACPI MADT entries) can be retrieved by matching the cpu hwid
+ * with entries in cpu_logical_map while initializing the cpus.
+ * If the cpu set-up fails, invalidate the cpu_logical_map entry.
*/
- for (i = 0; i < NR_CPUS; i++)
- if (cpu_logical_map(i) != INVALID_HWID)
- set_cpu_possible(i, true);
+ for (i = 1; i < NR_CPUS; i++) {
+ if (cpu_logical_map(i) != INVALID_HWID) {
+ if (smp_cpu_setup(i))
+ cpu_logical_map(i) = INVALID_HWID;
+ }
+ }
}
void __init smp_prepare_cpus(unsigned int max_cpus)
}
-static int smp_spin_table_cpu_init(struct device_node *dn, unsigned int cpu)
+static int smp_spin_table_cpu_init(unsigned int cpu)
{
+ struct device_node *dn;
+
+ dn = of_get_cpu_node(cpu, NULL);
+ if (!dn)
+ return -ENODEV;
+
/*
* Determine the address from which the CPU is polling.
*/