#ifndef _ASM_S390_TOPOLOGY_H #define _ASM_S390_TOPOLOGY_H #include #include struct sysinfo_15_1_x; struct cpu; #ifdef CONFIG_SCHED_TOPOLOGY struct cpu_topology_s390 { unsigned short thread_id; unsigned short core_id; unsigned short socket_id; unsigned short book_id; unsigned short node_id; cpumask_t thread_mask; cpumask_t core_mask; cpumask_t book_mask; }; DECLARE_PER_CPU(struct cpu_topology_s390, cpu_topology); #define topology_physical_package_id(cpu) (per_cpu(cpu_topology, cpu).socket_id) #define topology_thread_id(cpu) (per_cpu(cpu_topology, cpu).thread_id) #define topology_sibling_cpumask(cpu) \ (&per_cpu(cpu_topology, cpu).thread_mask) #define topology_core_id(cpu) (per_cpu(cpu_topology, cpu).core_id) #define topology_core_cpumask(cpu) (&per_cpu(cpu_topology, cpu).core_mask) #define topology_book_id(cpu) (per_cpu(cpu_topology, cpu).book_id) #define topology_book_cpumask(cpu) (&per_cpu(cpu_topology, cpu).book_mask) #define mc_capable() 1 int topology_cpu_init(struct cpu *); int topology_set_cpu_management(int fc); void topology_schedule_update(void); void store_topology(struct sysinfo_15_1_x *info); void topology_expect_change(void); const struct cpumask *cpu_coregroup_mask(int cpu); #else /* CONFIG_SCHED_TOPOLOGY */ static inline void topology_schedule_update(void) { } static inline int topology_cpu_init(struct cpu *cpu) { return 0; } static inline void topology_expect_change(void) { } #endif /* CONFIG_SCHED_TOPOLOGY */ #define POLARIZATION_UNKNOWN (-1) #define POLARIZATION_HRZ (0) #define POLARIZATION_VL (1) #define POLARIZATION_VM (2) #define POLARIZATION_VH (3) #define SD_BOOK_INIT SD_CPU_INIT #ifdef CONFIG_NUMA #define cpu_to_node cpu_to_node static inline int cpu_to_node(int cpu) { return per_cpu(cpu_topology, cpu).node_id; } /* Returns a pointer to the cpumask of CPUs on node 'node'. */ #define cpumask_of_node cpumask_of_node static inline const struct cpumask *cpumask_of_node(int node) { return &node_to_cpumask_map[node]; } /* * Returns the number of the node containing node 'node'. This * architecture is flat, so it is a pretty simple function! */ #define parent_node(node) (node) #define pcibus_to_node(bus) __pcibus_to_node(bus) #define node_distance(a, b) __node_distance(a, b) #else /* !CONFIG_NUMA */ #define numa_node_id numa_node_id static inline int numa_node_id(void) { return 0; } #endif /* CONFIG_NUMA */ #include #endif /* _ASM_S390_TOPOLOGY_H */