/* SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause */ /* * Copyright (c) 2014 Raspberry Pi (Trading) Ltd. All rights reserved. * Copyright (c) 2010-2012 Broadcom. All rights reserved. */ #ifndef VCHIQ_ARM_H #define VCHIQ_ARM_H #include #include #include #include #include "vchiq_core.h" #include "vchiq_debugfs.h" enum vc_suspend_status { VC_SUSPEND_FORCE_CANCELED = -3, /* Force suspend canceled, too busy */ VC_SUSPEND_REJECTED = -2, /* Videocore rejected suspend request */ VC_SUSPEND_FAILED = -1, /* Videocore suspend failed */ VC_SUSPEND_IDLE = 0, /* VC active, no suspend actions */ VC_SUSPEND_REQUESTED, /* User has requested suspend */ VC_SUSPEND_IN_PROGRESS, /* Slot handler has recvd suspend request */ VC_SUSPEND_SUSPENDED /* Videocore suspend succeeded */ }; enum vc_resume_status { VC_RESUME_FAILED = -1, /* Videocore resume failed */ VC_RESUME_IDLE = 0, /* VC suspended, no resume actions */ VC_RESUME_REQUESTED, /* User has requested resume */ VC_RESUME_IN_PROGRESS, /* Slot handler has received resume request */ VC_RESUME_RESUMED /* Videocore resumed successfully (active) */ }; enum USE_TYPE_E { USE_TYPE_SERVICE, USE_TYPE_SERVICE_NO_RESUME, USE_TYPE_VCHIQ }; struct vchiq_arm_state { /* Keepalive-related data */ struct task_struct *ka_thread; struct completion ka_evt; atomic_t ka_use_count; atomic_t ka_use_ack_count; atomic_t ka_release_count; struct completion vc_suspend_complete; struct completion vc_resume_complete; rwlock_t susp_res_lock; enum vc_suspend_status vc_suspend_state; enum vc_resume_status vc_resume_state; unsigned int wake_address; struct vchiq_state *state; struct timer_list suspend_timer; int suspend_timer_timeout; int suspend_timer_running; /* Global use count for videocore. ** This is equal to the sum of the use counts for all services. When ** this hits zero the videocore suspend procedure will be initiated. */ int videocore_use_count; /* Use count to track requests from videocore peer. ** This use count is not associated with a service, so needs to be ** tracked separately with the state. */ int peer_use_count; /* Flag to indicate whether resume is blocked. This happens when the ** ARM is suspending */ struct completion resume_blocker; int resume_blocked; struct completion blocked_blocker; int blocked_count; int autosuspend_override; /* Flag to indicate that the first vchiq connect has made it through. ** This means that both sides should be fully ready, and we should ** be able to suspend after this point. */ int first_connect; unsigned long long suspend_start_time; unsigned long long sleep_start_time; unsigned long long resume_start_time; unsigned long long last_wake_time; }; struct vchiq_drvdata { const unsigned int cache_line_size; struct rpi_firmware *fw; }; extern int vchiq_arm_log_level; extern int vchiq_susp_log_level; int vchiq_platform_init(struct platform_device *pdev, struct vchiq_state *state); extern struct vchiq_state * vchiq_get_state(void); extern VCHIQ_STATUS_T vchiq_arm_vcsuspend(struct vchiq_state *state); extern VCHIQ_STATUS_T vchiq_arm_vcresume(struct vchiq_state *state); extern VCHIQ_STATUS_T vchiq_arm_init_state(struct vchiq_state *state, struct vchiq_arm_state *arm_state); extern int vchiq_check_resume(struct vchiq_state *state); extern void vchiq_check_suspend(struct vchiq_state *state); VCHIQ_STATUS_T vchiq_use_service(VCHIQ_SERVICE_HANDLE_T handle); extern VCHIQ_STATUS_T vchiq_release_service(VCHIQ_SERVICE_HANDLE_T handle); extern VCHIQ_STATUS_T vchiq_check_service(struct vchiq_service *service); extern VCHIQ_STATUS_T vchiq_platform_suspend(struct vchiq_state *state); extern int vchiq_platform_videocore_wanted(struct vchiq_state *state); extern int vchiq_platform_use_suspend_timer(void); extern void vchiq_dump_platform_use_state(struct vchiq_state *state); extern void vchiq_dump_service_use_state(struct vchiq_state *state); extern struct vchiq_arm_state* vchiq_platform_get_arm_state(struct vchiq_state *state); extern int vchiq_videocore_wanted(struct vchiq_state *state); extern VCHIQ_STATUS_T vchiq_use_internal(struct vchiq_state *state, struct vchiq_service *service, enum USE_TYPE_E use_type); extern VCHIQ_STATUS_T vchiq_release_internal(struct vchiq_state *state, struct vchiq_service *service); extern struct vchiq_debugfs_node * vchiq_instance_get_debugfs_node(VCHIQ_INSTANCE_T instance); extern int vchiq_instance_get_use_count(VCHIQ_INSTANCE_T instance); extern int vchiq_instance_get_pid(VCHIQ_INSTANCE_T instance); extern int vchiq_instance_get_trace(VCHIQ_INSTANCE_T instance); extern void vchiq_instance_set_trace(VCHIQ_INSTANCE_T instance, int trace); extern void set_suspend_state(struct vchiq_arm_state *arm_state, enum vc_suspend_status new_state); extern void set_resume_state(struct vchiq_arm_state *arm_state, enum vc_resume_status new_state); extern void start_suspend_timer(struct vchiq_arm_state *arm_state); #endif /* VCHIQ_ARM_H */