#include <linux/pci.h>
#include <linux/acpi.h>
#include <linux/slab.h>
#include <linux/power_supply.h>
#include <linux/pm_runtime.h>
#include <acpi/video.h>
#include <drm/drmP.h>
#include <drm/drm_crtc_helper.h>
#include "amdgpu.h"
#include "amdgpu_pm.h"
#include "amdgpu_display.h"
#include "amd_acpi.h"
#include "atom.h"
struct amdgpu_atif_notification_cfg {
bool enabled;
int command_code;
};
struct amdgpu_atif_notifications {
bool display_switch;
bool expansion_mode_change;
bool thermal_state;
bool forced_power_state;
bool system_power_state;
bool display_conf_change;
bool px_gfx_switch;
bool brightness_change;
bool dgpu_display_event;
};
struct amdgpu_atif_functions {
bool system_params;
bool sbios_requests;
bool select_active_disp;
bool lid_state;
bool get_tv_standard;
bool set_tv_standard;
bool get_panel_expansion_mode;
bool set_panel_expansion_mode;
bool temperature_change;
bool graphics_device_types;
};
struct amdgpu_atif {
ACPI_HANDLE handle;
struct amdgpu_atif_notifications notifications;
struct amdgpu_atif_functions functions;
struct amdgpu_atif_notification_cfg notification_cfg;
struct amdgpu_encoder *encoder_for_bl;
};
static ACPI_OBJECT *amdgpu_atif_call(struct amdgpu_atif *atif,
int function,
ACPI_BUFFER *params)
{
ACPI_STATUS status;
ACPI_OBJECT atif_arg_elements[2];
ACPI_OBJECT_LIST atif_arg;
ACPI_BUFFER buffer = { ACPI_ALLOCATE_BUFFER, NULL };
atif_arg.Count = 2;
atif_arg.Pointer = &atif_arg_elements[0];
atif_arg_elements[0].Type = ACPI_TYPE_INTEGER;
atif_arg_elements[0].Integer.Value = function;
if (params) {
atif_arg_elements[1].Type = ACPI_TYPE_BUFFER;
atif_arg_elements[1].Buffer.Length = params->Length;
atif_arg_elements[1].Buffer.Pointer = params->Pointer;
} else {
atif_arg_elements[1].Type = ACPI_TYPE_INTEGER;
atif_arg_elements[1].Integer.Value = 0;
}
status = AcpiEvaluateObject(atif->handle, NULL, &atif_arg,
&buffer);
if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
DRM_DEBUG_DRIVER("failed to evaluate ATIF got %s\n",
AcpiFormatException(status));
AcpiOsFree(buffer.Pointer);
return NULL;
}
return buffer.Pointer;
}
static void amdgpu_atif_parse_notification(struct amdgpu_atif_notifications *n, u32 mask)
{
n->display_switch = mask & ATIF_DISPLAY_SWITCH_REQUEST_SUPPORTED;
n->expansion_mode_change = mask & ATIF_EXPANSION_MODE_CHANGE_REQUEST_SUPPORTED;
n->thermal_state = mask & ATIF_THERMAL_STATE_CHANGE_REQUEST_SUPPORTED;
n->forced_power_state = mask & ATIF_FORCED_POWER_STATE_CHANGE_REQUEST_SUPPORTED;
n->system_power_state = mask & ATIF_SYSTEM_POWER_SOURCE_CHANGE_REQUEST_SUPPORTED;
n->display_conf_change = mask & ATIF_DISPLAY_CONF_CHANGE_REQUEST_SUPPORTED;
n->px_gfx_switch = mask & ATIF_PX_GFX_SWITCH_REQUEST_SUPPORTED;
n->brightness_change = mask & ATIF_PANEL_BRIGHTNESS_CHANGE_REQUEST_SUPPORTED;
n->dgpu_display_event = mask & ATIF_DGPU_DISPLAY_EVENT_SUPPORTED;
}
static void amdgpu_atif_parse_functions(struct amdgpu_atif_functions *f, u32 mask)
{
f->system_params = mask & ATIF_GET_SYSTEM_PARAMETERS_SUPPORTED;
f->sbios_requests = mask & ATIF_GET_SYSTEM_BIOS_REQUESTS_SUPPORTED;
f->select_active_disp = mask & ATIF_SELECT_ACTIVE_DISPLAYS_SUPPORTED;
f->lid_state = mask & ATIF_GET_LID_STATE_SUPPORTED;
f->get_tv_standard = mask & ATIF_GET_TV_STANDARD_FROM_CMOS_SUPPORTED;
f->set_tv_standard = mask & ATIF_SET_TV_STANDARD_IN_CMOS_SUPPORTED;
f->get_panel_expansion_mode = mask & ATIF_GET_PANEL_EXPANSION_MODE_FROM_CMOS_SUPPORTED;
f->set_panel_expansion_mode = mask & ATIF_SET_PANEL_EXPANSION_MODE_IN_CMOS_SUPPORTED;
f->temperature_change = mask & ATIF_TEMPERATURE_CHANGE_NOTIFICATION_SUPPORTED;
f->graphics_device_types = mask & ATIF_GET_GRAPHICS_DEVICE_TYPES_SUPPORTED;
}
static int amdgpu_atif_verify_interface(struct amdgpu_atif *atif)
{
ACPI_OBJECT *info;
struct atif_verify_interface output;
size_t size;
int err = 0;
info = amdgpu_atif_call(atif, ATIF_FUNCTION_VERIFY_INTERFACE, NULL);
if (!info)
return -EIO;
memset(&output, 0, sizeof(output));
size = *(u16 *) info->Buffer.Pointer;
if (size < 12) {
DRM_INFO("ATIF buffer is too small: %zu\n", size);
err = -EINVAL;
goto out;
}
size = min(sizeof(output), size);
memcpy(&output, info->Buffer.Pointer, size);
DRM_DEBUG_DRIVER("ATIF version %u\n", output.version);
amdgpu_atif_parse_notification(&atif->notifications, output.notification_mask);
amdgpu_atif_parse_functions(&atif->functions, output.function_bits);
out:
AcpiOsFree(info);
return err;
}
static ACPI_HANDLE amdgpu_atif_probe_handle(ACPI_HANDLE dhandle)
{
ACPI_HANDLE handle = NULL;
char acpi_method_name[255] = { 0 };
ACPI_BUFFER buffer = { sizeof(acpi_method_name), acpi_method_name };
ACPI_STATUS status;
status = AcpiGetHandle(dhandle, "ATIF", &handle);
if (ACPI_SUCCESS(status))
goto out;
if (amdgpu_has_atpx()) {
status = AcpiGetHandle(amdgpu_atpx_get_dhandle(), "ATIF",
&handle);
if (ACPI_SUCCESS(status))
goto out;
}
DRM_DEBUG_DRIVER("No ATIF handle found\n");
return NULL;
out:
AcpiGetName(handle, ACPI_FULL_PATHNAME, &buffer);
DRM_DEBUG_DRIVER("Found ATIF handle %s\n", acpi_method_name);
return handle;
}
static int amdgpu_atif_get_notification_params(struct amdgpu_atif *atif)
{
ACPI_OBJECT *info;
struct amdgpu_atif_notification_cfg *n = &atif->notification_cfg;
struct atif_system_params params;
size_t size;
int err = 0;
info = amdgpu_atif_call(atif, ATIF_FUNCTION_GET_SYSTEM_PARAMETERS,
NULL);
if (!info) {
err = -EIO;
goto out;
}
size = *(u16 *) info->Buffer.Pointer;
if (size < 10) {
err = -EINVAL;
goto out;
}
memset(¶ms, 0, sizeof(params));
size = min(sizeof(params), size);
memcpy(¶ms, info->Buffer.Pointer, size);
DRM_DEBUG_DRIVER("SYSTEM_PARAMS: mask = %#x, flags = %#x\n",
params.flags, params.valid_mask);
params.flags = params.flags & params.valid_mask;
if ((params.flags & ATIF_NOTIFY_MASK) == ATIF_NOTIFY_NONE) {
n->enabled = false;
n->command_code = 0;
} else if ((params.flags & ATIF_NOTIFY_MASK) == ATIF_NOTIFY_81) {
n->enabled = true;
n->command_code = 0x81;
} else {
if (size < 11) {
err = -EINVAL;
goto out;
}
n->enabled = true;
n->command_code = params.command_code;
}
out:
DRM_DEBUG_DRIVER("Notification %s, command code = %#x\n",
(n->enabled ? "enabled" : "disabled"),
n->command_code);
AcpiOsFree(info);
return err;
}
static int amdgpu_atif_get_sbios_requests(struct amdgpu_atif *atif,
struct atif_sbios_requests *req)
{
ACPI_OBJECT *info;
size_t size;
int count = 0;
info = amdgpu_atif_call(atif, ATIF_FUNCTION_GET_SYSTEM_BIOS_REQUESTS,
NULL);
if (!info)
return -EIO;
size = *(u16 *)info->Buffer.Pointer;
if (size < 0xd) {
count = -EINVAL;
goto out;
}
memset(req, 0, sizeof(*req));
size = min(sizeof(*req), size);
memcpy(req, info->Buffer.Pointer, size);
DRM_DEBUG_DRIVER("SBIOS pending requests: %#x\n", req->pending);
count = hweight32(req->pending);
out:
AcpiOsFree(info);
return count;
}
static void amdgpu_atif_handler(struct amdgpu_device *adev,
UINT32 type)
{
struct amdgpu_atif *atif = adev->atif;
int count;
DRM_DEBUG_DRIVER("event, type = %#x\n", type);
if (!atif ||
!atif->notification_cfg.enabled ||
type != atif->notification_cfg.command_code) {
#if 0
if (event->type == ACPI_VIDEO_NOTIFY_PROBE)
return NOTIFY_BAD;
else
return NOTIFY_DONE;
#endif
}
if (atif->functions.sbios_requests) {
struct atif_sbios_requests req;
count = amdgpu_atif_get_sbios_requests(atif, &req);
if (count <= 0)
return;
DRM_DEBUG_DRIVER("ATIF: %d pending SBIOS requests\n", count);
if ((req.pending & ATIF_PANEL_BRIGHTNESS_CHANGE_REQUEST) &&
!amdgpu_device_has_dc_support(adev)) {
struct amdgpu_encoder *enc = atif->encoder_for_bl;
if (enc) {
#if 0
struct amdgpu_encoder_atom_dig *dig = enc->enc_priv;
#endif
DRM_DEBUG_DRIVER("Changing brightness to %d\n",
req.backlight_level);
amdgpu_display_backlight_set_level(adev, enc, req.backlight_level);
#if 0
#if defined(CONFIG_BACKLIGHT_CLASS_DEVICE) || defined(CONFIG_BACKLIGHT_CLASS_DEVICE_MODULE)
backlight_force_update(dig->bl_dev,
BACKLIGHT_UPDATE_HOTKEY);
#endif
#endif
}
}
if (req.pending & ATIF_DGPU_DISPLAY_EVENT) {
if ((adev->flags & AMD_IS_PX) &&
amdgpu_atpx_dgpu_req_power_for_displays()) {
pm_runtime_get_sync(adev->ddev->dev);
drm_helper_hpd_irq_event(adev->ddev);
pm_runtime_mark_last_busy(adev->ddev->dev);
pm_runtime_put_autosuspend(adev->ddev->dev);
}
}
}
return;
}
static ACPI_OBJECT *amdgpu_atcs_call(ACPI_HANDLE handle, int function,
ACPI_BUFFER *params)
{
ACPI_STATUS status;
ACPI_OBJECT atcs_arg_elements[2];
ACPI_OBJECT_LIST atcs_arg;
ACPI_BUFFER buffer = { ACPI_ALLOCATE_BUFFER, NULL };
atcs_arg.Count = 2;
atcs_arg.Pointer = &atcs_arg_elements[0];
atcs_arg_elements[0].Type = ACPI_TYPE_INTEGER;
atcs_arg_elements[0].Integer.Value = function;
if (params) {
atcs_arg_elements[1].Type = ACPI_TYPE_BUFFER;
atcs_arg_elements[1].Buffer.Length = params->Length;
atcs_arg_elements[1].Buffer.Pointer = params->Pointer;
} else {
atcs_arg_elements[1].Type = ACPI_TYPE_INTEGER;
atcs_arg_elements[1].Integer.Value = 0;
}
status = AcpiEvaluateObject(handle, "ATCS", &atcs_arg, &buffer);
if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
DRM_DEBUG_DRIVER("failed to evaluate ATCS got %s\n",
AcpiFormatException(status));
AcpiOsFree(buffer.Pointer);
return NULL;
}
return buffer.Pointer;
}
static void amdgpu_atcs_parse_functions(struct amdgpu_atcs_functions *f, u32 mask)
{
f->get_ext_state = mask & ATCS_GET_EXTERNAL_STATE_SUPPORTED;
f->pcie_perf_req = mask & ATCS_PCIE_PERFORMANCE_REQUEST_SUPPORTED;
f->pcie_dev_rdy = mask & ATCS_PCIE_DEVICE_READY_NOTIFICATION_SUPPORTED;
f->pcie_bus_width = mask & ATCS_SET_PCIE_BUS_WIDTH_SUPPORTED;
}
static int amdgpu_atcs_verify_interface(ACPI_HANDLE handle,
struct amdgpu_atcs *atcs)
{
ACPI_OBJECT *info;
struct atcs_verify_interface output;
size_t size;
int err = 0;
info = amdgpu_atcs_call(handle, ATCS_FUNCTION_VERIFY_INTERFACE, NULL);
if (!info)
return -EIO;
memset(&output, 0, sizeof(output));
size = *(u16 *) info->Buffer.Pointer;
if (size < 8) {
DRM_INFO("ATCS buffer is too small: %zu\n", size);
err = -EINVAL;
goto out;
}
size = min(sizeof(output), size);
memcpy(&output, info->Buffer.Pointer, size);
DRM_DEBUG_DRIVER("ATCS version %u\n", output.version);
amdgpu_atcs_parse_functions(&atcs->functions, output.function_bits);
out:
AcpiOsFree(info);
return err;
}
bool amdgpu_acpi_is_pcie_performance_request_supported(struct amdgpu_device *adev)
{
struct amdgpu_atcs *atcs = &adev->atcs;
if (atcs->functions.pcie_perf_req && atcs->functions.pcie_dev_rdy)
return true;
return false;
}
int amdgpu_acpi_pcie_notify_device_ready(struct amdgpu_device *adev)
{
ACPI_HANDLE handle;
ACPI_OBJECT *info;
struct amdgpu_atcs *atcs = &adev->atcs;
handle = acpi_get_handle(adev->dev->bsddev);
if (!handle)
return -EINVAL;
if (!atcs->functions.pcie_dev_rdy)
return -EINVAL;
info = amdgpu_atcs_call(handle, ATCS_FUNCTION_PCIE_DEVICE_READY_NOTIFICATION, NULL);
if (!info)
return -EIO;
AcpiOsFree(info);
return 0;
}
int amdgpu_acpi_pcie_performance_request(struct amdgpu_device *adev,
u8 perf_req, bool advertise)
{
#if 0
ACPI_HANDLE handle;
ACPI_OBJECT *info;
struct amdgpu_atcs *atcs = &adev->atcs;
struct atcs_pref_req_input atcs_input;
struct atcs_pref_req_output atcs_output;
ACPI_BUFFER params;
size_t size;
u32 retry = 3;
if (amdgpu_acpi_pcie_notify_device_ready(adev))
return -EINVAL;
handle = acpi_get_handle(adev->dev->bsddev)
if (!handle)
return -EINVAL;
if (!atcs->functions.pcie_perf_req)
return -EINVAL;
atcs_input.size = sizeof(struct atcs_pref_req_input);
atcs_input.client_id = adev->pdev->devfn | (adev->pdev->bus->number << 8);
atcs_input.valid_flags_mask = ATCS_VALID_FLAGS_MASK;
atcs_input.flags = ATCS_WAIT_FOR_COMPLETION;
if (advertise)
atcs_input.flags |= ATCS_ADVERTISE_CAPS;
atcs_input.req_type = ATCS_PCIE_LINK_SPEED;
atcs_input.perf_req = perf_req;
params.Length = sizeof(struct atcs_pref_req_input);
params.Pointer = &atcs_input;
while (retry--) {
info = amdgpu_atcs_call(handle, ATCS_FUNCTION_PCIE_PERFORMANCE_REQUEST, ¶ms);
if (!info)
return -EIO;
memset(&atcs_output, 0, sizeof(atcs_output));
size = *(u16 *) info->Buffer.Pointer;
if (size < 3) {
DRM_INFO("ATCS buffer is too small: %zu\n", size);
AcpiOsFree(info);
return -EINVAL;
}
size = min(sizeof(atcs_output), size);
memcpy(&atcs_output, info->Buffer.Pointer, size);
AcpiOsFree(info);
switch (atcs_output.ret_val) {
case ATCS_REQUEST_REFUSED:
default:
return -EINVAL;
case ATCS_REQUEST_COMPLETE:
return 0;
case ATCS_REQUEST_IN_PROGRESS:
udelay(10);
break;
}
}
return 0;
#else
return -EINVAL;
#endif
}
static void amdgpu_acpi_event(ACPI_HANDLE handle,
UINT32 type,
void *context)
{
struct amdgpu_device *adev = (struct amdgpu_device *)context;
#if 0
if (strcmp(entry->device_class, ACPI_AC_CLASS) == 0) {
if (power_supply_is_system_supplied() > 0)
DRM_DEBUG_DRIVER("pm: AC\n");
else
DRM_DEBUG_DRIVER("pm: DC\n");
amdgpu_pm_acpi_event_handler(adev);
}
#endif
return amdgpu_atif_handler(adev, type);
}
int amdgpu_acpi_init(struct amdgpu_device *adev)
{
ACPI_HANDLE handle, atif_handle;
struct amdgpu_atif *atif;
struct amdgpu_atcs *atcs = &adev->atcs;
int ret;
handle = acpi_get_handle(adev->dev->bsddev);
if (!adev->bios || !handle)
return 0;
ret = amdgpu_atcs_verify_interface(handle, atcs);
if (ret) {
DRM_DEBUG_DRIVER("Call to ATCS verify_interface failed: %d\n", ret);
}
atif_handle = amdgpu_atif_probe_handle(handle);
if (!atif_handle)
goto out;
atif = kzalloc(sizeof(*atif), GFP_KERNEL);
if (!atif) {
DRM_WARN("Not enough memory to initialize ATIF\n");
goto out;
}
atif->handle = atif_handle;
ret = amdgpu_atif_verify_interface(atif);
if (ret) {
DRM_DEBUG_DRIVER("Call to ATIF verify_interface failed: %d\n", ret);
AcpiOsFree(atif);
goto out;
}
adev->atif = atif;
if (atif->notifications.brightness_change) {
struct drm_encoder *tmp;
list_for_each_entry(tmp, &adev->ddev->mode_config.encoder_list,
head) {
struct amdgpu_encoder *enc = to_amdgpu_encoder(tmp);
if ((enc->devices & (ATOM_DEVICE_LCD_SUPPORT)) &&
enc->enc_priv) {
struct amdgpu_encoder_atom_dig *dig = enc->enc_priv;
if (dig->bl_dev) {
atif->encoder_for_bl = enc;
break;
}
}
}
}
if (atif->functions.sbios_requests && !atif->functions.system_params) {
atif->functions.system_params = true;
}
if (atif->functions.system_params) {
ret = amdgpu_atif_get_notification_params(atif);
if (ret) {
DRM_DEBUG_DRIVER("Call to GET_SYSTEM_PARAMS failed: %d\n",
ret);
atif->notification_cfg.enabled = false;
}
}
out:
adev->acpi.handle = handle;
adev->acpi.notifier_call = amdgpu_acpi_event;
AcpiInstallNotifyHandler(handle, ACPI_DEVICE_NOTIFY,
adev->acpi.notifier_call, adev);
return ret;
}
void amdgpu_acpi_fini(struct amdgpu_device *adev)
{
if (adev->atif)
AcpiOsFree(adev->atif);
}