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rocm-systems/include/rocm_smi/rocm_smi.h
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Chris Freehill 53b7ae1113 ROCm 1.9.0 update
2018-09-16 00:13:29 -05:00

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/*
* =============================================================================
* ROC Runtime Conformance Release License
* =============================================================================
* The University of Illinois/NCSA
* Open Source License (NCSA)
*
* Copyright (c) 2017, Advanced Micro Devices, Inc.
* All rights reserved.
*
* Developed by:
*
* AMD Research and AMD ROC Software Development
*
* Advanced Micro Devices, Inc.
*
* www.amd.com
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to
* deal with the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* - Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimers.
* - Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimers in
* the documentation and/or other materials provided with the distribution.
* - Neither the names of <Name of Development Group, Name of Institution>,
* nor the names of its contributors may be used to endorse or promote
* products derived from this Software without specific prior written
* permission.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* THE CONTRIBUTORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
* OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS WITH THE SOFTWARE.
*
*/
#ifndef ROCM_SMI_LIB_INCLUDE_ROCM_SMI_ROCM_SMI_H_
#define ROCM_SMI_LIB_INCLUDE_ROCM_SMI_ROCM_SMI_H_
#ifdef __cplusplus
extern "C" {
#endif // __cplusplus
/** \file rocm_smi.h
* Main header file for the ROCm SMI library.
* All required function, structure, enum, etc. definitions should be defined
* in this file.
*/
//! Guaranteed maximum possible number of supported frequencies
#define RSMI_MAX_NUM_FREQUENCIES 32
//! Maximum possible value for fan speed. Should be used as the denominator when
//! determining fan speed percentage.
#define RSMI_MAX_FAN_SPEED 255
/**
* @brief Error codes retured by rocm_smi_lib functions
*/
typedef enum {
RSMI_STATUS_SUCCESS = 0x0, //!< Operation was successful
RSMI_STATUS_INVALID_ARGS, //!< Passed in arguments are not valid
RSMI_STATUS_NOT_SUPPORTED, //!< The requested information or
//!< action is not available for the
//!< given input
RSMI_STATUS_FILE_ERROR, //!< Problem accessing a file. This
//!< may because the operation is not
//!< supported by the Linux kernel
//!< version running on the executing
//!< machine
RSMI_STATUS_PERMISSION, //!< Permission denied/EACCESS file
//!< error
RSMI_STATUS_OUT_OF_RESOURCES, //!< Unable to acquire memory or other
//!< resource
RSMI_STATUS_INTERNAL_EXCEPTION, //!< An internal exception was caught
RSMI_STATUS_INPUT_OUT_OF_BOUNDS, //!< The provided input is out of
//!< allowable or safe range
RSMI_STATUS_UNKNOWN_ERROR = 0xFFFFFFFF, //!< An unknown error occurred
} rsmi_status_t;
/**
* @brief PowerPlay performance levels
*/
typedef enum {
RSMI_DEV_PERF_LEVEL_AUTO = 0, //!< Performance level is "auto"
RSMI_DEV_PERF_LEVEL_FIRST = RSMI_DEV_PERF_LEVEL_AUTO,
RSMI_DEV_PERF_LEVEL_LOW, //!< Keep PowerPlay levels "low",
//!< regardless of workload
RSMI_DEV_PERF_LEVEL_HIGH, //!< Keep PowerPlay levels "high",
//!< regardless of workload
RSMI_DEV_PERF_LEVEL_MANUAL, //!< Only use values defined by manually
//!< setting the RSMI_CLK_TYPE_SYS speed
RSMI_DEV_PERF_LEVEL_LAST = RSMI_DEV_PERF_LEVEL_MANUAL,
RSMI_DEV_PERF_LEVEL_UNKNOWN = 0x100 //!< Unknown performance level
} rsmi_dev_perf_level;
/**
* @brief Available clock types.
*/
typedef enum {
RSMI_CLK_TYPE_SYS = 0x0, //!< System clock
RSMI_CLK_TYPE_FIRST = RSMI_CLK_TYPE_SYS,
RSMI_CLK_TYPE_MEM, //!< Memory clock
RSMI_CLK_TYPE_LAST = RSMI_CLK_TYPE_MEM
} rsmi_clk_type;
/**
* @brief Temperature Metrics. This enum is used to identify various
* temperature metrics. Corresponding values will be in millidegress
* Celcius.
*/
typedef enum {
RSMI_TEMP_CURRENT = 0x0, //!< Temperature current value.
RSMI_TEMP_FIRST = RSMI_TEMP_CURRENT,
RSMI_TEMP_MAX, //!< Temperature max value.
RSMI_TEMP_MIN, //!< Temperature min value.
RSMI_TEMP_MAX_HYST, //!< Temperature hysteresis value for max limit.
RSMI_TEMP_MIN_HYST, //!< Temperature hysteresis value for min limit.
RSMI_TEMP_CRITICAL, //!< Temperature critical max value, typically
//!< greater than corresponding temp_max values.
RSMI_TEMP_CRITICAL_HYST, //!< Temperature hysteresis value for critical
//!< limit.
RSMI_TEMP_EMERGENCY, //!< Temperature emergency max value, for chips
//!< supporting more than two upper temperature
//!< limits. Must be equal or greater than
//!< corresponding temp_crit values.
RSMI_TEMP_EMERGENCY_HYST, //!< Temperature hysteresis value for emergency
//!< limit.
RSMI_TEMP_CRIT_MIN, //!< Temperature critical min value, typically
//!< lower than corresponding temperature
//!< minimum values.
RSMI_TEMP_CRIT_MIN_HYST, //!< Temperature hysteresis value for critical
//!< minimum limit.
RSMI_TEMP_OFFSET, //!< Temperature offset which is added to the
//! temperature reading by the chip.
RSMI_TEMP_LOWEST, //!< Historical minimum temperature.
RSMI_TEMP_HIGHEST, //!< Historical maximum temperature.
RSMI_TEMP_LAST = RSMI_TEMP_HIGHEST
} rsmi_temperature_metric;
/**
* @brief Pre-set Profile Selections. These bitmasks can be AND'd with the
* rsmi_power_profile_status::available_profiles returned from
* rsmi_dev_power_profile_presets_get() to determine which power profiles
* are supported by the system.
*/
typedef enum {
RSMI_PWR_PROF_PRST_CUSTOM_MASK = 0x1, //!< Custom Power Profile
RSMI_PWR_PROF_PRST_VIDEO_MASK = 0x2, //!< Video Power Profile
RSMI_PWR_PROF_PRST_POWER_SAVING_MASK = 0x4, //!< Power Saving Profile
RSMI_PWR_PROF_PRST_COMPUTE_MASK = 0x8, //!< Compute Saving Profile
RSMI_PWR_PROF_PRST_VR_MASK = 0x10, //!< VR Power Profile
//!< 3D Full Screen Power Profile
RSMI_PWR_PROF_PRST_3D_FULL_SCR_MASK = 0x20,
RSMI_PWR_PROF_PRST_LAST = RSMI_PWR_PROF_PRST_3D_FULL_SCR_MASK,
//!< Invalid power profile
RSMI_PWR_PROF_PRST_INVALID = 0xFFFFFFFFFFFFFFFF
} rsmi_power_profile_preset_masks;
/**
* @brief Bitfield used in various RSMI calls
*/
typedef uint64_t rsmi_bit_field;
/**
* @brief Number of possible power profiles that a system could support
*/
#define RSMI_MAX_NUM_POWER_PROFILES sizeof(rsmi_bit_field)
/**
* @brief This structure contains information about which power profiles are
* supported by the system for a given device, and which power profile is
* currently active.
*/
typedef struct {
//!< Which profiles are supported by this system
rsmi_bit_field available_profiles;
//!< Which power profile is currently active
rsmi_power_profile_preset_masks current;
//!< How many power profiles are available
uint32_t num_profiles;
} rsmi_power_profile_status;
/**
* @brief This structure holds information about clock frequencies.
*/
typedef struct {
/**
* The number of supported frequencies
*/
uint32_t num_supported;
/**
* The current frequency index
*/
uint32_t current;
/**
* List of frequencies.
* Only the first num_supported frequencies are valid.
*/
uint64_t frequency[RSMI_MAX_NUM_FREQUENCIES];
} rsmi_frequencies;
/**
* @brief Initialize Rocm SMI.
*
* @details When called, this initializes internal data structures,
* including those corresponding to sources of information that SMI provides.
*
* @param[in] init_flags Bit flags that tell SMI how to initialze. Not
* currently used.
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*/
rsmi_status_t rsmi_init(uint64_t init_flags);
/**
* @brief Shutdown Rocm SMI.
*
* @details Do any necessary clean up.
*/
rsmi_status_t rsmi_shut_down(void);
/**
* @brief Get the number of devices that have monitor information.
*
* @details The number of devices which have monitors is returned. Monitors
* are referenced by the index which can be between 0 and @p num_devices - 1.
*
* @param[inout] num_devices Caller provided pointer to uint32_t. Upon
* successful call, the value num_devices will contain the number of monitor
* devices.
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*/
rsmi_status_t rsmi_num_monitor_devices(uint32_t *num_devices);
/**
* @brief Get the device id associated with the device with provided device
* index.
*
* @details Given a device index @p dv_ind and a pointer to a uint32_t @p id,
* this function will write the device id value to the uint64_t pointed to by
* @p id
*
* @param[in] dv_ind a device index
*
* @param[inout] id a pointer to uint64_t to which the device id will be
* written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_id_get(uint32_t dv_ind, uint64_t *id);
/**
* @brief Get the performance level of the device with provided
* device index.
*
* @details Given a device index @p dv_ind and a pointer to a uint32_t @p
* perf, this function will write the rsmi_dev_perf_level to the uint32_t
* pointed to by @p perf
*
* @param[in] dv_ind a device index
*
* @param[inout] perf a pointer to rsmi_dev_perf_level to which the
* performance level will be written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_perf_level_get(uint32_t dv_ind,
rsmi_dev_perf_level *perf);
/**
* @brief Set the PowerPlay performance level associated with the device with
* provided device index with the provided value.
*
* @details Given a device index @p dv_ind and an rsmi_dev_perf_lvl @p
* perf_level, this function will set the PowerPlay performance level for the
* device to the value @p perf_lvl.
*
* @param[in] dv_ind a device index
*
* @param[in] perf_lvl the value to which the performance level should be set
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_perf_level_set(int32_t dv_ind, rsmi_dev_perf_level perf_lvl);
/**
* @brief Get the overdrive percent associated with the device with provided
* device index.
*
* @details Given a device index @p dv_ind and a pointer to a uint32_t @p od,
* this function will write the overdrive percentage to the uint32_t pointed
* to by @p od
*
* @param[in] dv_ind a device index
*
* @param[inout] od a pointer to uint32_t to which the overdrive percentage
* will be written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_overdrive_level_get(uint32_t dv_ind, uint32_t *od);
/**
* @brief Set the overdrive percent associated with the device with provided
* device index with the provided value. See details for WARNING.
*
* @details Given a device index @p dv_ind and an overdrive level @p od,
* this function will set the overdrive level for the device to the value
* @p od. The overdrive level is an integer value between 0 and 20, inclusive,
* which represents the overdrive percentage; e.g., a value of 5 specifies
* an overclocking of 5%.
*
* The overdrive level is specific to the gpu system clock.
*
* The overdrive level is the percentage above the maximum Performance Level
* to which overclocking will be limited. The overclocking percentage does
* not apply to clock speeds other than the maximum. This percentage is
* limited to 20%.
*
* ******WARNING******
* Operating your AMD GPU outside of official AMD specifications or outside of
* factory settings, including but not limited to the conducting of
* overclocking (including use of this overclocking software, even if such
* software has been directly or indirectly provided by AMD or otherwise
* affiliated in any way with AMD), may cause damage to your AMD GPU, system
* components and/or result in system failure, as well as cause other problems.
* DAMAGES CAUSED BY USE OF YOUR AMD GPU OUTSIDE OF OFFICIAL AMD SPECIFICATIONS
* OR OUTSIDE OF FACTORY SETTINGS ARE NOT COVERED UNDER ANY AMD PRODUCT
* WARRANTY AND MAY NOT BE COVERED BY YOUR BOARD OR SYSTEM MANUFACTURER'S
* WARRANTY. Please use this utility with caution.
*
* @param[in] dv_ind a device index
*
* @param[in] od the value to which the overdrive level should be set
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_overdrive_level_set(int32_t dv_ind, uint32_t od);
/**
* @brief Get the list of possible system clock speeds of device for a
* specified clock type.
*
* @details Given a device index @p dv_ind, a clock type @p clk_type, and a
* pointer to a to an rsmi_frequencies structure @p f, this function will
* fill in @p f with the possible clock speeds, and indication of the current
* clock speed selection.
*
* @param[in] dv_ind a device index
*
* @param[in] clk_type the type of clock for which the frequency is desired
*
* @param[inout] f a pointer to a caller provided rsmi_frequencies structure
* to which the frequency information will be written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_gpu_clk_freq_get(uint32_t dv_ind,
rsmi_clk_type clk_type, rsmi_frequencies *f);
/**
* @brief Control the set of allowed frequencies that can be used for the
* specified clock.
*
* @details Given a device index @p dv_ind, a clock type @p clk_type, and a
* 32 bit bitmask @p freq_bitmask, this function will limit the set of
* allowable frequencies. If a bit in @p freq_bitmask has a value of 1, then
* the frequency (as ordered in an rsmi_frequencies returned by
* rsmi_dev_get_gpu_clk_freq()) corresponding to that bit index will be
* allowed.
*
* This function will change the performance level to
* ::RSMI_DEV_PERF_LEVEL_MANUAL in order to modify the set of allowable
* frequencies. Caller will need to set to ::RSMI_DEV_PERF_LEVEL_AUTO in order
* to get back to default state.
*
* All bits with indices greater than or equal to
* rsmi_frequencies::num_supported will be ignored.
*
* @param[in] dv_ind a device index
*
* @param[in] clk_type the type of clock for which the set of frequencies
* will be modified
*
* @param[in] freq_bitmask A bitmask indicating the indices of the
* frequencies that are to be enabled (1) and disabled (0). Only the lowest
* rsmi_frequencies.num_supported bits of this mask are relevant.
*/
rsmi_status_t rsmi_dev_gpu_clk_freq_set(uint32_t dv_ind,
rsmi_clk_type clk_type, uint64_t freq_bitmask);
/**
* @brief Get the name of a gpu device.
*
* @details Given a device index @p dv_ind, a pointer to a caller provided
* char buffer @p name, and a length of this buffer @p len, this function
* will write the name of the device (up to @p len characters) buffer @p name.
*
* @param[in] dv_ind a device index
*
* @param[inout] name a pointer to a caller provided char buffer to which the
* speed will be written
*
* @param[in] len the length of the caller provided buffer @p name.
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_name_get(uint32_t dv_ind, char *name, size_t len);
/**
* @brief Get the temperature metric value for the specifed metric, from the
* specified temperature sensor on the specified device.
*
* @details Given a device index @p dv_ind, a 0-based sensor index
*
* @param sensor_ind, a metric @p metric and a pointer to an int64_t
* @p temperature, this function will write the temperature value for that
* metric in millidegrees Celcius to the int64_t pointed to by @p temperature.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[in] metric enum indicated which temperature value should be
* retrieved
*
* @param[inout] temperature a pointer to int64_t to which the temperature
* will be written, in millidegrees Celcius.
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_temp_metric_get(uint32_t dv_ind, uint32_t sensor_ind,
rsmi_temperature_metric metric, int64_t *temperature);
/**
* @brief Reset the fan to automatic driver control
*
* @details This function returns control of the fan to the system
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*/
rsmi_status_t rsmi_dev_fan_reset(uint32_t dv_ind, uint32_t sensor_ind);
/**
* @brief Get the fan speed in RPMs of the device with the specified device
* index and 0-based sensor index.
*
* @details Given a device index @p dv_ind and a pointer to a uint32_t
* @p speed, this function will write the current fan speed in RPMs to the
* uint32_t pointed to by @p speed
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] speed a pointer to uint32_t to which the speed will be
* written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_fan_rpms_get(uint32_t dv_ind, uint32_t sensor_ind,
int64_t *speed);
/**
* @brief Set the fan speed for the specfied device with the provided speed,
* in RPMs.
*
* @details Given a device index @p dv_ind and a integer value indicating
* speed @p speed, this function will attempt to set the fan speed to @p speed.
* An error will be returned if the specified speed is outside the allowable
* range for the device. The maximum value is RSMI_MAX_FAN_SPEED and the
* minimum is 0.
*
* @param[in] dv_ind a device index
*
* @details Given a device index @p dv_ind and a pointer to a uint32_t
* @p speed, this function will write the current fan speed (a value
* between 0 and 255) to the uint32_t pointed to by @p speed
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] speed a pointer to uint32_t to which the speed will be
* written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_fan_speed_get(uint32_t dv_ind,
uint32_t sensor_ind, int64_t *speed);
/**
* @brief Get the max. fan speed of the device with provided device index.
*
* @details Given a device index @p dv_ind and a pointer to a uint32_t
* @p max_speed, this function will write the maxirsmi_dev_power_profile_semum fan speed possible to
* the uint32_t pointed to by @p max_speed
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] max_speed a pointer to uint32_t to which the maximum speed
* will be written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t rsmi_dev_fan_speed_max_get(uint32_t dv_ind,
uint32_t sensor_ind, uint64_t *max_speed);
/**
* @brief Set the fan speed for the specfied device with the provided speed,
* in RPMs.
*
* @details Given a device index @p dv_ind and a integer value indicating
* speed @p speed, this function will attempt to set the fan speed to @p speed.
* An error will be returned if the specified speed is outside the allowable
* range for the device. The maximum value is 255 and the minimum is 0.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[in] speed the speed to which the function will attempt to set the fan
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*/
rsmi_status_t rsmi_dev_fan_speed_set(uint32_t dv_ind, uint32_t sensor_ind,
uint64_t speed);
/**
* @brief Get the average power consumption of the device with provided
* device index.
*
* @details Given a device index @p dv_ind and a pointer to a uint64_t
* @p power, this function will write the current average power consumption to
* the uint64_t in milliwatts pointed to by @p power. This function requires
* root privilege.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] power a pointer to uint64_t to which the average power
* consumption will be written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_ave_get(uint32_t dv_ind, uint32_t sensor_ind, uint64_t *power);
/**
* @brief Get the cap on power which, when reached, causes the system to take
* action to reduce power.
*
* @details When power use rises above the value @p power, the system will
* take action to reduce power use. The power level returned through
* @p power will be in microWatts.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] cap a pointer to a uint64_t that indicates the power cap,
* in microwatts
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_cap_get(uint32_t dv_ind, uint32_t sensor_ind, uint64_t *cap);
/**
* @brief Get the range of valid values for the power cap
*
* @details This function will return the maximum possible valid power cap
* @p max and the minimum possible valid power cap @p min
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] max a pointer to a uint64_t that indicates the maximum
* possible power cap, in microwatts
*
* @param[inout] min a pointer to a uint64_t that indicates the minimum
* possible power cap, in microwatts
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_cap_range_get(uint32_t dv_ind, uint32_t sensor_ind,
uint64_t *max, uint64_t *min);
/**
* @brief Set the power cap value
*
* @details This function will set the power cap to the provided value @p cap.
* @p cap must be between the minimum and maximum power cap values set by the
* system, which can be obtained from ::rsmi_dev_power_cap_range_get.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] cap a uint64_t that indicates the desired power cap, in
* microwatts
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_cap_set(uint32_t dv_ind, uint32_t sensor_ind, uint64_t cap);
/**
* @brief Get the maximum power consumption of the device with provided
* device index.
*
* @details Given a device index @p dv_ind and a pointer to a uint64_t
* @p power, this function will write the current maxium power consumption to
* the uint64_t in milliwatts pointed to by @p power. This function requires
* root privilege.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] power a pointer to uint64_t to which the maximum power
* consumption will be written
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_max_get(uint32_t dv_ind, uint32_t sensor_ind, uint64_t *power);
/**
* @brief Get the list of available preset power profiles and an indication of
* which profile is currently active.
*
* @details Given a device index @p dv_ind and a pointer to a
* rsmi_power_profile_status @p status, this function will set the bits of
* the rsmi_power_profile_status.available_profiles bit field of @p status to
* 1 if the profile corresponding to the respective
* rsmi_power_profile_preset_masks profiles are enabled. For example, if both
* the VIDEO and VR power profiles are available selections, then
* RSMI_PWR_PROF_PRST_VIDEO_MASK AND'ed with
* rsmi_power_profile_status.available_profiles will be non-zero as will
* RSMI_PWR_PROF_PRST_VR_MASK AND'ed with
* rsmi_power_profile_status.available_profiles. Additionally,
* rsmi_power_profile_status.current will be set to the
* rsmi_power_profile_preset_masks of the profile that is currently active.
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[inout] status a pointer to rsmi_power_profile_status that will be
* populated by a call to this function
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_profile_presets_get(uint32_t dv_ind, uint32_t sensor_ind,
rsmi_power_profile_status *status);
/**
* @brief Set the power profile
*
* @details Given a device index @p dv_ind, a sensor index sensor_ind, and a
* @p profile, this function will attempt to set the current profile to the
* provided profile. The provided profile must be one of the currently
* supported profiles, as indicated by a call to
* ::rsmi_dev_power_profile_presets_get()
*
* @param[in] dv_ind a device index
*
* @param[in] sensor_ind a 0-based sensor index. Normally, this will be 0.
* If a device has more than one sensor, it could be greater than 0.
*
* @param[in] profile a rsmi_power_profile_preset_masks that hold the mask
* of the desired new power profile
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call.
*
*/
rsmi_status_t
rsmi_dev_power_profile_set(uint32_t dv_ind, uint32_t sensor_ind,
rsmi_power_profile_preset_masks profile);
/**
* @brief Get a description of a provided RSMI error status
*
* @details Set the provided pointer to a const char *, @p status_string, to
* a string containing a description of the provided error code @p status.
*
* @param[in] status The error status for which a description is desired
*
* @param[inout] status_string A pointer to a const char * which will be made
* to point to a description of the provided error code
*
* @retval RSMI_STATUS_SUCCESS is returned upon successful call
*
*/
rsmi_status_t
rsmi_status_string(rsmi_status_t status, const char **status_string);
#ifdef __cplusplus
}
#endif // __cplusplus
#endif // ROCM_SMI_LIB_INCLUDE_ROCM_SMI_ROCM_SMI_H_