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https://github.com/edk2-porting/linux-next.git
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2997aa4063
Adding an ETB10 specific AUX area operations to be used by the perf framework when events are initialised. Part of this operation involves modeling the mmap'ed area based on the specific ways a sink buffer gathers information. Signed-off-by: Mathieu Poirier <mathieu.poirier@linaro.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
293 lines
9.7 KiB
C
293 lines
9.7 KiB
C
/* Copyright (c) 2012, The Linux Foundation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 and
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* only version 2 as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#ifndef _LINUX_CORESIGHT_H
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#define _LINUX_CORESIGHT_H
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#include <linux/device.h>
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#include <linux/perf_event.h>
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#include <linux/sched.h>
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/* Peripheral id registers (0xFD0-0xFEC) */
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#define CORESIGHT_PERIPHIDR4 0xfd0
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#define CORESIGHT_PERIPHIDR5 0xfd4
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#define CORESIGHT_PERIPHIDR6 0xfd8
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#define CORESIGHT_PERIPHIDR7 0xfdC
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#define CORESIGHT_PERIPHIDR0 0xfe0
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#define CORESIGHT_PERIPHIDR1 0xfe4
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#define CORESIGHT_PERIPHIDR2 0xfe8
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#define CORESIGHT_PERIPHIDR3 0xfeC
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/* Component id registers (0xFF0-0xFFC) */
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#define CORESIGHT_COMPIDR0 0xff0
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#define CORESIGHT_COMPIDR1 0xff4
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#define CORESIGHT_COMPIDR2 0xff8
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#define CORESIGHT_COMPIDR3 0xffC
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#define ETM_ARCH_V3_3 0x23
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#define ETM_ARCH_V3_5 0x25
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#define PFT_ARCH_V1_0 0x30
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#define PFT_ARCH_V1_1 0x31
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#define CORESIGHT_UNLOCK 0xc5acce55
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extern struct bus_type coresight_bustype;
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enum coresight_dev_type {
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CORESIGHT_DEV_TYPE_NONE,
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CORESIGHT_DEV_TYPE_SINK,
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CORESIGHT_DEV_TYPE_LINK,
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CORESIGHT_DEV_TYPE_LINKSINK,
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CORESIGHT_DEV_TYPE_SOURCE,
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};
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enum coresight_dev_subtype_sink {
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CORESIGHT_DEV_SUBTYPE_SINK_NONE,
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CORESIGHT_DEV_SUBTYPE_SINK_PORT,
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CORESIGHT_DEV_SUBTYPE_SINK_BUFFER,
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};
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enum coresight_dev_subtype_link {
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CORESIGHT_DEV_SUBTYPE_LINK_NONE,
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CORESIGHT_DEV_SUBTYPE_LINK_MERG,
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CORESIGHT_DEV_SUBTYPE_LINK_SPLIT,
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CORESIGHT_DEV_SUBTYPE_LINK_FIFO,
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};
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enum coresight_dev_subtype_source {
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CORESIGHT_DEV_SUBTYPE_SOURCE_NONE,
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CORESIGHT_DEV_SUBTYPE_SOURCE_PROC,
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CORESIGHT_DEV_SUBTYPE_SOURCE_BUS,
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CORESIGHT_DEV_SUBTYPE_SOURCE_SOFTWARE,
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};
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/**
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* struct coresight_dev_subtype - further characterisation of a type
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* @sink_subtype: type of sink this component is, as defined
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by @coresight_dev_subtype_sink.
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* @link_subtype: type of link this component is, as defined
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by @coresight_dev_subtype_link.
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* @source_subtype: type of source this component is, as defined
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by @coresight_dev_subtype_source.
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*/
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struct coresight_dev_subtype {
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enum coresight_dev_subtype_sink sink_subtype;
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enum coresight_dev_subtype_link link_subtype;
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enum coresight_dev_subtype_source source_subtype;
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};
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/**
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* struct coresight_platform_data - data harvested from the DT specification
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* @cpu: the CPU a source belongs to. Only applicable for ETM/PTMs.
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* @name: name of the component as shown under sysfs.
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* @nr_inport: number of input ports for this component.
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* @outports: list of remote endpoint port number.
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* @child_names:name of all child components connected to this device.
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* @child_ports:child component port number the current component is
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connected to.
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* @nr_outport: number of output ports for this component.
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* @clk: The clock this component is associated to.
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*/
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struct coresight_platform_data {
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int cpu;
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const char *name;
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int nr_inport;
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int *outports;
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const char **child_names;
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int *child_ports;
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int nr_outport;
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struct clk *clk;
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};
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/**
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* struct coresight_desc - description of a component required from drivers
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* @type: as defined by @coresight_dev_type.
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* @subtype: as defined by @coresight_dev_subtype.
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* @ops: generic operations for this component, as defined
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by @coresight_ops.
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* @pdata: platform data collected from DT.
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* @dev: The device entity associated to this component.
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* @groups: operations specific to this component. These will end up
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in the component's sysfs sub-directory.
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*/
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struct coresight_desc {
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enum coresight_dev_type type;
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struct coresight_dev_subtype subtype;
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const struct coresight_ops *ops;
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struct coresight_platform_data *pdata;
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struct device *dev;
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const struct attribute_group **groups;
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};
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/**
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* struct coresight_connection - representation of a single connection
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* @outport: a connection's output port number.
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* @chid_name: remote component's name.
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* @child_port: remote component's port number @output is connected to.
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* @child_dev: a @coresight_device representation of the component
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connected to @outport.
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*/
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struct coresight_connection {
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int outport;
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const char *child_name;
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int child_port;
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struct coresight_device *child_dev;
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};
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/**
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* struct coresight_device - representation of a device as used by the framework
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* @conns: array of coresight_connections associated to this component.
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* @nr_inport: number of input port associated to this component.
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* @nr_outport: number of output port associated to this component.
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* @type: as defined by @coresight_dev_type.
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* @subtype: as defined by @coresight_dev_subtype.
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* @ops: generic operations for this component, as defined
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by @coresight_ops.
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* @dev: The device entity associated to this component.
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* @refcnt: keep track of what is in use.
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* @orphan: true if the component has connections that haven't been linked.
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* @enable: 'true' if component is currently part of an active path.
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* @activated: 'true' only if a _sink_ has been activated. A sink can be
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activated but not yet enabled. Enabling for a _sink_
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happens when a source has been selected for that it.
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*/
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struct coresight_device {
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struct coresight_connection *conns;
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int nr_inport;
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int nr_outport;
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enum coresight_dev_type type;
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struct coresight_dev_subtype subtype;
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const struct coresight_ops *ops;
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struct device dev;
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atomic_t *refcnt;
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bool orphan;
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bool enable; /* true only if configured as part of a path */
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bool activated; /* true only if a sink is part of a path */
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};
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#define to_coresight_device(d) container_of(d, struct coresight_device, dev)
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#define source_ops(csdev) csdev->ops->source_ops
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#define sink_ops(csdev) csdev->ops->sink_ops
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#define link_ops(csdev) csdev->ops->link_ops
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/**
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* struct coresight_ops_sink - basic operations for a sink
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* Operations available for sinks
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* @enable: enables the sink.
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* @disable: disables the sink.
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* @alloc_buffer: initialises perf's ring buffer for trace collection.
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* @free_buffer: release memory allocated in @get_config.
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* @set_buffer: initialises buffer mechanic before a trace session.
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* @reset_buffer: finalises buffer mechanic after a trace session.
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* @update_buffer: update buffer pointers after a trace session.
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*/
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struct coresight_ops_sink {
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int (*enable)(struct coresight_device *csdev, u32 mode);
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void (*disable)(struct coresight_device *csdev);
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void *(*alloc_buffer)(struct coresight_device *csdev, int cpu,
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void **pages, int nr_pages, bool overwrite);
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void (*free_buffer)(void *config);
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int (*set_buffer)(struct coresight_device *csdev,
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struct perf_output_handle *handle,
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void *sink_config);
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unsigned long (*reset_buffer)(struct coresight_device *csdev,
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struct perf_output_handle *handle,
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void *sink_config, bool *lost);
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void (*update_buffer)(struct coresight_device *csdev,
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struct perf_output_handle *handle,
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void *sink_config);
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};
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/**
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* struct coresight_ops_link - basic operations for a link
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* Operations available for links.
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* @enable: enables flow between iport and oport.
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* @disable: disables flow between iport and oport.
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*/
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struct coresight_ops_link {
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int (*enable)(struct coresight_device *csdev, int iport, int oport);
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void (*disable)(struct coresight_device *csdev, int iport, int oport);
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};
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/**
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* struct coresight_ops_source - basic operations for a source
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* Operations available for sources.
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* @cpu_id: returns the value of the CPU number this component
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* is associated to.
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* @trace_id: returns the value of the component's trace ID as known
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* to the HW.
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* @enable: enables tracing for a source.
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* @disable: disables tracing for a source.
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*/
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struct coresight_ops_source {
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int (*cpu_id)(struct coresight_device *csdev);
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int (*trace_id)(struct coresight_device *csdev);
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int (*enable)(struct coresight_device *csdev,
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struct perf_event_attr *attr, u32 mode);
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void (*disable)(struct coresight_device *csdev);
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};
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struct coresight_ops {
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const struct coresight_ops_sink *sink_ops;
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const struct coresight_ops_link *link_ops;
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const struct coresight_ops_source *source_ops;
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};
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#ifdef CONFIG_CORESIGHT
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extern struct coresight_device *
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coresight_register(struct coresight_desc *desc);
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extern void coresight_unregister(struct coresight_device *csdev);
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extern int coresight_enable(struct coresight_device *csdev);
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extern void coresight_disable(struct coresight_device *csdev);
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extern int coresight_timeout(void __iomem *addr, u32 offset,
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int position, int value);
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#else
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static inline struct coresight_device *
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coresight_register(struct coresight_desc *desc) { return NULL; }
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static inline void coresight_unregister(struct coresight_device *csdev) {}
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static inline int
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coresight_enable(struct coresight_device *csdev) { return -ENOSYS; }
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static inline void coresight_disable(struct coresight_device *csdev) {}
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static inline int coresight_timeout(void __iomem *addr, u32 offset,
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int position, int value) { return 1; }
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#endif
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#ifdef CONFIG_OF
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extern struct coresight_platform_data *of_get_coresight_platform_data(
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struct device *dev, struct device_node *node);
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#else
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static inline struct coresight_platform_data *of_get_coresight_platform_data(
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struct device *dev, struct device_node *node) { return NULL; }
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#endif
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#ifdef CONFIG_PID_NS
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static inline unsigned long
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coresight_vpid_to_pid(unsigned long vpid)
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{
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struct task_struct *task = NULL;
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unsigned long pid = 0;
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rcu_read_lock();
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task = find_task_by_vpid(vpid);
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if (task)
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pid = task_pid_nr(task);
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rcu_read_unlock();
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return pid;
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}
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#else
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static inline unsigned long
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coresight_vpid_to_pid(unsigned long vpid) { return vpid; }
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#endif
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#endif
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