10136db58SBen Widawsky /* 20136db58SBen Widawsky * Copyright © 2012 Intel Corporation 30136db58SBen Widawsky * 40136db58SBen Widawsky * Permission is hereby granted, free of charge, to any person obtaining a 50136db58SBen Widawsky * copy of this software and associated documentation files (the "Software"), 60136db58SBen Widawsky * to deal in the Software without restriction, including without limitation 70136db58SBen Widawsky * the rights to use, copy, modify, merge, publish, distribute, sublicense, 80136db58SBen Widawsky * and/or sell copies of the Software, and to permit persons to whom the 90136db58SBen Widawsky * Software is furnished to do so, subject to the following conditions: 100136db58SBen Widawsky * 110136db58SBen Widawsky * The above copyright notice and this permission notice (including the next 120136db58SBen Widawsky * paragraph) shall be included in all copies or substantial portions of the 130136db58SBen Widawsky * Software. 140136db58SBen Widawsky * 150136db58SBen Widawsky * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 160136db58SBen Widawsky * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 170136db58SBen Widawsky * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 180136db58SBen Widawsky * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 190136db58SBen Widawsky * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING 200136db58SBen Widawsky * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS 210136db58SBen Widawsky * IN THE SOFTWARE. 220136db58SBen Widawsky * 230136db58SBen Widawsky * Authors: 240136db58SBen Widawsky * Ben Widawsky <ben@bwidawsk.net> 250136db58SBen Widawsky * 260136db58SBen Widawsky */ 270136db58SBen Widawsky 280136db58SBen Widawsky #include <linux/device.h> 290136db58SBen Widawsky #include <linux/module.h> 300136db58SBen Widawsky #include <linux/stat.h> 310136db58SBen Widawsky #include <linux/sysfs.h> 3284bc7581SBen Widawsky #include "intel_drv.h" 330136db58SBen Widawsky #include "i915_drv.h" 340136db58SBen Widawsky 355ab3633dSHunt Xu #ifdef CONFIG_PM 360136db58SBen Widawsky static u32 calc_residency(struct drm_device *dev, const u32 reg) 370136db58SBen Widawsky { 380136db58SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 390136db58SBen Widawsky u64 raw_time; /* 32b value may overflow during fixed point math */ 400136db58SBen Widawsky 410136db58SBen Widawsky if (!intel_enable_rc6(dev)) 420136db58SBen Widawsky return 0; 430136db58SBen Widawsky 44a85d4bcbSBen Widawsky raw_time = I915_READ(reg) * 128ULL; 45a85d4bcbSBen Widawsky return DIV_ROUND_UP_ULL(raw_time, 100000); 460136db58SBen Widawsky } 470136db58SBen Widawsky 480136db58SBen Widawsky static ssize_t 49dbdfd8e9SBen Widawsky show_rc6_mask(struct device *kdev, struct device_attribute *attr, char *buf) 500136db58SBen Widawsky { 51dbdfd8e9SBen Widawsky struct drm_minor *dminor = container_of(kdev, struct drm_minor, kdev); 523e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%x\n", intel_enable_rc6(dminor->dev)); 530136db58SBen Widawsky } 540136db58SBen Widawsky 550136db58SBen Widawsky static ssize_t 56dbdfd8e9SBen Widawsky show_rc6_ms(struct device *kdev, struct device_attribute *attr, char *buf) 570136db58SBen Widawsky { 58dbdfd8e9SBen Widawsky struct drm_minor *dminor = container_of(kdev, struct drm_minor, kdev); 590136db58SBen Widawsky u32 rc6_residency = calc_residency(dminor->dev, GEN6_GT_GFX_RC6); 603e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%u\n", rc6_residency); 610136db58SBen Widawsky } 620136db58SBen Widawsky 630136db58SBen Widawsky static ssize_t 64dbdfd8e9SBen Widawsky show_rc6p_ms(struct device *kdev, struct device_attribute *attr, char *buf) 650136db58SBen Widawsky { 66dbdfd8e9SBen Widawsky struct drm_minor *dminor = container_of(kdev, struct drm_minor, kdev); 670136db58SBen Widawsky u32 rc6p_residency = calc_residency(dminor->dev, GEN6_GT_GFX_RC6p); 683e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%u\n", rc6p_residency); 690136db58SBen Widawsky } 700136db58SBen Widawsky 710136db58SBen Widawsky static ssize_t 72dbdfd8e9SBen Widawsky show_rc6pp_ms(struct device *kdev, struct device_attribute *attr, char *buf) 730136db58SBen Widawsky { 74dbdfd8e9SBen Widawsky struct drm_minor *dminor = container_of(kdev, struct drm_minor, kdev); 750136db58SBen Widawsky u32 rc6pp_residency = calc_residency(dminor->dev, GEN6_GT_GFX_RC6pp); 763e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%u\n", rc6pp_residency); 770136db58SBen Widawsky } 780136db58SBen Widawsky 790136db58SBen Widawsky static DEVICE_ATTR(rc6_enable, S_IRUGO, show_rc6_mask, NULL); 800136db58SBen Widawsky static DEVICE_ATTR(rc6_residency_ms, S_IRUGO, show_rc6_ms, NULL); 810136db58SBen Widawsky static DEVICE_ATTR(rc6p_residency_ms, S_IRUGO, show_rc6p_ms, NULL); 820136db58SBen Widawsky static DEVICE_ATTR(rc6pp_residency_ms, S_IRUGO, show_rc6pp_ms, NULL); 830136db58SBen Widawsky 840136db58SBen Widawsky static struct attribute *rc6_attrs[] = { 850136db58SBen Widawsky &dev_attr_rc6_enable.attr, 860136db58SBen Widawsky &dev_attr_rc6_residency_ms.attr, 870136db58SBen Widawsky &dev_attr_rc6p_residency_ms.attr, 880136db58SBen Widawsky &dev_attr_rc6pp_residency_ms.attr, 890136db58SBen Widawsky NULL 900136db58SBen Widawsky }; 910136db58SBen Widawsky 920136db58SBen Widawsky static struct attribute_group rc6_attr_group = { 930136db58SBen Widawsky .name = power_group_name, 940136db58SBen Widawsky .attrs = rc6_attrs 950136db58SBen Widawsky }; 968c3f929bSBen Widawsky #endif 970136db58SBen Widawsky 9884bc7581SBen Widawsky static int l3_access_valid(struct drm_device *dev, loff_t offset) 9984bc7581SBen Widawsky { 100ebf69cb8SDaniel Vetter if (!HAS_L3_GPU_CACHE(dev)) 10184bc7581SBen Widawsky return -EPERM; 10284bc7581SBen Widawsky 10384bc7581SBen Widawsky if (offset % 4 != 0) 10484bc7581SBen Widawsky return -EINVAL; 10584bc7581SBen Widawsky 10684bc7581SBen Widawsky if (offset >= GEN7_L3LOG_SIZE) 10784bc7581SBen Widawsky return -ENXIO; 10884bc7581SBen Widawsky 10984bc7581SBen Widawsky return 0; 11084bc7581SBen Widawsky } 11184bc7581SBen Widawsky 11284bc7581SBen Widawsky static ssize_t 11384bc7581SBen Widawsky i915_l3_read(struct file *filp, struct kobject *kobj, 11484bc7581SBen Widawsky struct bin_attribute *attr, char *buf, 11584bc7581SBen Widawsky loff_t offset, size_t count) 11684bc7581SBen Widawsky { 11784bc7581SBen Widawsky struct device *dev = container_of(kobj, struct device, kobj); 11884bc7581SBen Widawsky struct drm_minor *dminor = container_of(dev, struct drm_minor, kdev); 11984bc7581SBen Widawsky struct drm_device *drm_dev = dminor->dev; 12084bc7581SBen Widawsky struct drm_i915_private *dev_priv = drm_dev->dev_private; 12184bc7581SBen Widawsky uint32_t misccpctl; 12284bc7581SBen Widawsky int i, ret; 12384bc7581SBen Widawsky 12484bc7581SBen Widawsky ret = l3_access_valid(drm_dev, offset); 12584bc7581SBen Widawsky if (ret) 12684bc7581SBen Widawsky return ret; 12784bc7581SBen Widawsky 12884bc7581SBen Widawsky ret = i915_mutex_lock_interruptible(drm_dev); 12984bc7581SBen Widawsky if (ret) 13084bc7581SBen Widawsky return ret; 13184bc7581SBen Widawsky 13284bc7581SBen Widawsky misccpctl = I915_READ(GEN7_MISCCPCTL); 13384bc7581SBen Widawsky I915_WRITE(GEN7_MISCCPCTL, misccpctl & ~GEN7_DOP_CLOCK_GATE_ENABLE); 13484bc7581SBen Widawsky 13584bc7581SBen Widawsky for (i = offset; count >= 4 && i < GEN7_L3LOG_SIZE; i += 4, count -= 4) 13684bc7581SBen Widawsky *((uint32_t *)(&buf[i])) = I915_READ(GEN7_L3LOG_BASE + i); 13784bc7581SBen Widawsky 13884bc7581SBen Widawsky I915_WRITE(GEN7_MISCCPCTL, misccpctl); 13984bc7581SBen Widawsky 14084bc7581SBen Widawsky mutex_unlock(&drm_dev->struct_mutex); 14184bc7581SBen Widawsky 14284bc7581SBen Widawsky return i - offset; 14384bc7581SBen Widawsky } 14484bc7581SBen Widawsky 14584bc7581SBen Widawsky static ssize_t 14684bc7581SBen Widawsky i915_l3_write(struct file *filp, struct kobject *kobj, 14784bc7581SBen Widawsky struct bin_attribute *attr, char *buf, 14884bc7581SBen Widawsky loff_t offset, size_t count) 14984bc7581SBen Widawsky { 15084bc7581SBen Widawsky struct device *dev = container_of(kobj, struct device, kobj); 15184bc7581SBen Widawsky struct drm_minor *dminor = container_of(dev, struct drm_minor, kdev); 15284bc7581SBen Widawsky struct drm_device *drm_dev = dminor->dev; 15384bc7581SBen Widawsky struct drm_i915_private *dev_priv = drm_dev->dev_private; 15484bc7581SBen Widawsky u32 *temp = NULL; /* Just here to make handling failures easy */ 15584bc7581SBen Widawsky int ret; 15684bc7581SBen Widawsky 15784bc7581SBen Widawsky ret = l3_access_valid(drm_dev, offset); 15884bc7581SBen Widawsky if (ret) 15984bc7581SBen Widawsky return ret; 16084bc7581SBen Widawsky 16184bc7581SBen Widawsky ret = i915_mutex_lock_interruptible(drm_dev); 16284bc7581SBen Widawsky if (ret) 16384bc7581SBen Widawsky return ret; 16484bc7581SBen Widawsky 165a4da4fa4SDaniel Vetter if (!dev_priv->l3_parity.remap_info) { 16684bc7581SBen Widawsky temp = kzalloc(GEN7_L3LOG_SIZE, GFP_KERNEL); 16784bc7581SBen Widawsky if (!temp) { 16884bc7581SBen Widawsky mutex_unlock(&drm_dev->struct_mutex); 16984bc7581SBen Widawsky return -ENOMEM; 17084bc7581SBen Widawsky } 17184bc7581SBen Widawsky } 17284bc7581SBen Widawsky 17384bc7581SBen Widawsky ret = i915_gpu_idle(drm_dev); 17484bc7581SBen Widawsky if (ret) { 17584bc7581SBen Widawsky kfree(temp); 17684bc7581SBen Widawsky mutex_unlock(&drm_dev->struct_mutex); 17784bc7581SBen Widawsky return ret; 17884bc7581SBen Widawsky } 17984bc7581SBen Widawsky 18084bc7581SBen Widawsky /* TODO: Ideally we really want a GPU reset here to make sure errors 18184bc7581SBen Widawsky * aren't propagated. Since I cannot find a stable way to reset the GPU 18284bc7581SBen Widawsky * at this point it is left as a TODO. 18384bc7581SBen Widawsky */ 18484bc7581SBen Widawsky if (temp) 185a4da4fa4SDaniel Vetter dev_priv->l3_parity.remap_info = temp; 18684bc7581SBen Widawsky 187a4da4fa4SDaniel Vetter memcpy(dev_priv->l3_parity.remap_info + (offset/4), 18884bc7581SBen Widawsky buf + (offset/4), 18984bc7581SBen Widawsky count); 19084bc7581SBen Widawsky 19184bc7581SBen Widawsky i915_gem_l3_remap(drm_dev); 19284bc7581SBen Widawsky 19384bc7581SBen Widawsky mutex_unlock(&drm_dev->struct_mutex); 19484bc7581SBen Widawsky 19584bc7581SBen Widawsky return count; 19684bc7581SBen Widawsky } 19784bc7581SBen Widawsky 19884bc7581SBen Widawsky static struct bin_attribute dpf_attrs = { 19984bc7581SBen Widawsky .attr = {.name = "l3_parity", .mode = (S_IRUSR | S_IWUSR)}, 20084bc7581SBen Widawsky .size = GEN7_L3LOG_SIZE, 20184bc7581SBen Widawsky .read = i915_l3_read, 20284bc7581SBen Widawsky .write = i915_l3_write, 20384bc7581SBen Widawsky .mmap = NULL 20484bc7581SBen Widawsky }; 20584bc7581SBen Widawsky 206df6eedc8SBen Widawsky static ssize_t gt_cur_freq_mhz_show(struct device *kdev, 207df6eedc8SBen Widawsky struct device_attribute *attr, char *buf) 208df6eedc8SBen Widawsky { 209df6eedc8SBen Widawsky struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 210df6eedc8SBen Widawsky struct drm_device *dev = minor->dev; 211df6eedc8SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 212df6eedc8SBen Widawsky int ret; 213df6eedc8SBen Widawsky 2144fc688ceSJesse Barnes mutex_lock(&dev_priv->rps.hw_lock); 215177006a1SJesse Barnes if (IS_VALLEYVIEW(dev_priv->dev)) { 216177006a1SJesse Barnes u32 freq; 21764936258SJani Nikula freq = vlv_punit_read(dev_priv, PUNIT_REG_GPU_FREQ_STS); 218177006a1SJesse Barnes ret = vlv_gpu_freq(dev_priv->mem_freq, (freq >> 8) & 0xff); 219177006a1SJesse Barnes } else { 220df6eedc8SBen Widawsky ret = dev_priv->rps.cur_delay * GT_FREQUENCY_MULTIPLIER; 221177006a1SJesse Barnes } 2224fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 223df6eedc8SBen Widawsky 2243e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%d\n", ret); 225df6eedc8SBen Widawsky } 226df6eedc8SBen Widawsky 227*97e4eed7SChris Wilson static ssize_t vlv_rpe_freq_mhz_show(struct device *kdev, 228*97e4eed7SChris Wilson struct device_attribute *attr, char *buf) 229*97e4eed7SChris Wilson { 230*97e4eed7SChris Wilson struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 231*97e4eed7SChris Wilson struct drm_device *dev = minor->dev; 232*97e4eed7SChris Wilson struct drm_i915_private *dev_priv = dev->dev_private; 233*97e4eed7SChris Wilson 234*97e4eed7SChris Wilson return snprintf(buf, PAGE_SIZE, "%d\n", 235*97e4eed7SChris Wilson vlv_gpu_freq(dev_priv->mem_freq, 236*97e4eed7SChris Wilson dev_priv->rps.rpe_delay)); 237*97e4eed7SChris Wilson } 238*97e4eed7SChris Wilson 239df6eedc8SBen Widawsky static ssize_t gt_max_freq_mhz_show(struct device *kdev, struct device_attribute *attr, char *buf) 240df6eedc8SBen Widawsky { 241df6eedc8SBen Widawsky struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 242df6eedc8SBen Widawsky struct drm_device *dev = minor->dev; 243df6eedc8SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 244df6eedc8SBen Widawsky int ret; 245df6eedc8SBen Widawsky 2464fc688ceSJesse Barnes mutex_lock(&dev_priv->rps.hw_lock); 2470a073b84SJesse Barnes if (IS_VALLEYVIEW(dev_priv->dev)) 2480a073b84SJesse Barnes ret = vlv_gpu_freq(dev_priv->mem_freq, dev_priv->rps.max_delay); 2490a073b84SJesse Barnes else 250182642b0SMika Kuoppala ret = dev_priv->rps.max_delay * GT_FREQUENCY_MULTIPLIER; 2514fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 252df6eedc8SBen Widawsky 2533e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%d\n", ret); 254df6eedc8SBen Widawsky } 255df6eedc8SBen Widawsky 25646ddf194SBen Widawsky static ssize_t gt_max_freq_mhz_store(struct device *kdev, 25746ddf194SBen Widawsky struct device_attribute *attr, 25846ddf194SBen Widawsky const char *buf, size_t count) 25946ddf194SBen Widawsky { 26046ddf194SBen Widawsky struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 26146ddf194SBen Widawsky struct drm_device *dev = minor->dev; 26246ddf194SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 26331c77388SBen Widawsky u32 val, rp_state_cap, hw_max, hw_min, non_oc_max; 26446ddf194SBen Widawsky ssize_t ret; 26546ddf194SBen Widawsky 26646ddf194SBen Widawsky ret = kstrtou32(buf, 0, &val); 26746ddf194SBen Widawsky if (ret) 26846ddf194SBen Widawsky return ret; 26946ddf194SBen Widawsky 2704fc688ceSJesse Barnes mutex_lock(&dev_priv->rps.hw_lock); 27146ddf194SBen Widawsky 2720a073b84SJesse Barnes if (IS_VALLEYVIEW(dev_priv->dev)) { 2730a073b84SJesse Barnes val = vlv_freq_opcode(dev_priv->mem_freq, val); 2740a073b84SJesse Barnes 2750a073b84SJesse Barnes hw_max = valleyview_rps_max_freq(dev_priv); 2760a073b84SJesse Barnes hw_min = valleyview_rps_min_freq(dev_priv); 2770a073b84SJesse Barnes non_oc_max = hw_max; 2780a073b84SJesse Barnes } else { 2790a073b84SJesse Barnes val /= GT_FREQUENCY_MULTIPLIER; 2800a073b84SJesse Barnes 28146ddf194SBen Widawsky rp_state_cap = I915_READ(GEN6_RP_STATE_CAP); 28231c77388SBen Widawsky hw_max = dev_priv->rps.hw_max; 28331c77388SBen Widawsky non_oc_max = (rp_state_cap & 0xff); 28446ddf194SBen Widawsky hw_min = ((rp_state_cap & 0xff0000) >> 16); 2850a073b84SJesse Barnes } 28646ddf194SBen Widawsky 2870a073b84SJesse Barnes if (val < hw_min || val > hw_max || 2880a073b84SJesse Barnes val < dev_priv->rps.min_delay) { 2894fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 29046ddf194SBen Widawsky return -EINVAL; 29146ddf194SBen Widawsky } 29246ddf194SBen Widawsky 29331c77388SBen Widawsky if (val > non_oc_max) 29431c77388SBen Widawsky DRM_DEBUG("User requested overclocking to %d\n", 29531c77388SBen Widawsky val * GT_FREQUENCY_MULTIPLIER); 29631c77388SBen Widawsky 2970a073b84SJesse Barnes if (dev_priv->rps.cur_delay > val) { 2980a073b84SJesse Barnes if (IS_VALLEYVIEW(dev_priv->dev)) 2990a073b84SJesse Barnes valleyview_set_rps(dev_priv->dev, val); 3000a073b84SJesse Barnes else 30146ddf194SBen Widawsky gen6_set_rps(dev_priv->dev, val); 3020a073b84SJesse Barnes } 30346ddf194SBen Widawsky 30446ddf194SBen Widawsky dev_priv->rps.max_delay = val; 30546ddf194SBen Widawsky 3064fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 30746ddf194SBen Widawsky 30846ddf194SBen Widawsky return count; 30946ddf194SBen Widawsky } 31046ddf194SBen Widawsky 311df6eedc8SBen Widawsky static ssize_t gt_min_freq_mhz_show(struct device *kdev, struct device_attribute *attr, char *buf) 312df6eedc8SBen Widawsky { 313df6eedc8SBen Widawsky struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 314df6eedc8SBen Widawsky struct drm_device *dev = minor->dev; 315df6eedc8SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 316df6eedc8SBen Widawsky int ret; 317df6eedc8SBen Widawsky 3184fc688ceSJesse Barnes mutex_lock(&dev_priv->rps.hw_lock); 3190a073b84SJesse Barnes if (IS_VALLEYVIEW(dev_priv->dev)) 3200a073b84SJesse Barnes ret = vlv_gpu_freq(dev_priv->mem_freq, dev_priv->rps.min_delay); 3210a073b84SJesse Barnes else 322df6eedc8SBen Widawsky ret = dev_priv->rps.min_delay * GT_FREQUENCY_MULTIPLIER; 3234fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 324df6eedc8SBen Widawsky 3253e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%d\n", ret); 326df6eedc8SBen Widawsky } 327df6eedc8SBen Widawsky 32846ddf194SBen Widawsky static ssize_t gt_min_freq_mhz_store(struct device *kdev, 32946ddf194SBen Widawsky struct device_attribute *attr, 33046ddf194SBen Widawsky const char *buf, size_t count) 33146ddf194SBen Widawsky { 33246ddf194SBen Widawsky struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 33346ddf194SBen Widawsky struct drm_device *dev = minor->dev; 33446ddf194SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 33546ddf194SBen Widawsky u32 val, rp_state_cap, hw_max, hw_min; 33646ddf194SBen Widawsky ssize_t ret; 33746ddf194SBen Widawsky 33846ddf194SBen Widawsky ret = kstrtou32(buf, 0, &val); 33946ddf194SBen Widawsky if (ret) 34046ddf194SBen Widawsky return ret; 34146ddf194SBen Widawsky 3424fc688ceSJesse Barnes mutex_lock(&dev_priv->rps.hw_lock); 34346ddf194SBen Widawsky 3440a073b84SJesse Barnes if (IS_VALLEYVIEW(dev)) { 3450a073b84SJesse Barnes val = vlv_freq_opcode(dev_priv->mem_freq, val); 3460a073b84SJesse Barnes 3470a073b84SJesse Barnes hw_max = valleyview_rps_max_freq(dev_priv); 3480a073b84SJesse Barnes hw_min = valleyview_rps_min_freq(dev_priv); 3490a073b84SJesse Barnes } else { 3500a073b84SJesse Barnes val /= GT_FREQUENCY_MULTIPLIER; 3510a073b84SJesse Barnes 35246ddf194SBen Widawsky rp_state_cap = I915_READ(GEN6_RP_STATE_CAP); 35331c77388SBen Widawsky hw_max = dev_priv->rps.hw_max; 35446ddf194SBen Widawsky hw_min = ((rp_state_cap & 0xff0000) >> 16); 3550a073b84SJesse Barnes } 35646ddf194SBen Widawsky 35746ddf194SBen Widawsky if (val < hw_min || val > hw_max || val > dev_priv->rps.max_delay) { 3584fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 35946ddf194SBen Widawsky return -EINVAL; 36046ddf194SBen Widawsky } 36146ddf194SBen Widawsky 3620a073b84SJesse Barnes if (dev_priv->rps.cur_delay < val) { 3630a073b84SJesse Barnes if (IS_VALLEYVIEW(dev)) 3640a073b84SJesse Barnes valleyview_set_rps(dev, val); 3650a073b84SJesse Barnes else 36646ddf194SBen Widawsky gen6_set_rps(dev_priv->dev, val); 3670a073b84SJesse Barnes } 36846ddf194SBen Widawsky 36946ddf194SBen Widawsky dev_priv->rps.min_delay = val; 37046ddf194SBen Widawsky 3714fc688ceSJesse Barnes mutex_unlock(&dev_priv->rps.hw_lock); 37246ddf194SBen Widawsky 37346ddf194SBen Widawsky return count; 37446ddf194SBen Widawsky 37546ddf194SBen Widawsky } 37646ddf194SBen Widawsky 377df6eedc8SBen Widawsky static DEVICE_ATTR(gt_cur_freq_mhz, S_IRUGO, gt_cur_freq_mhz_show, NULL); 37846ddf194SBen Widawsky static DEVICE_ATTR(gt_max_freq_mhz, S_IRUGO | S_IWUSR, gt_max_freq_mhz_show, gt_max_freq_mhz_store); 37946ddf194SBen Widawsky static DEVICE_ATTR(gt_min_freq_mhz, S_IRUGO | S_IWUSR, gt_min_freq_mhz_show, gt_min_freq_mhz_store); 380df6eedc8SBen Widawsky 381*97e4eed7SChris Wilson static DEVICE_ATTR(vlv_rpe_freq_mhz, S_IRUGO, vlv_rpe_freq_mhz_show, NULL); 382ac6ae347SBen Widawsky 383ac6ae347SBen Widawsky static ssize_t gt_rp_mhz_show(struct device *kdev, struct device_attribute *attr, char *buf); 384ac6ae347SBen Widawsky static DEVICE_ATTR(gt_RP0_freq_mhz, S_IRUGO, gt_rp_mhz_show, NULL); 385ac6ae347SBen Widawsky static DEVICE_ATTR(gt_RP1_freq_mhz, S_IRUGO, gt_rp_mhz_show, NULL); 386ac6ae347SBen Widawsky static DEVICE_ATTR(gt_RPn_freq_mhz, S_IRUGO, gt_rp_mhz_show, NULL); 387ac6ae347SBen Widawsky 388ac6ae347SBen Widawsky /* For now we have a static number of RP states */ 389ac6ae347SBen Widawsky static ssize_t gt_rp_mhz_show(struct device *kdev, struct device_attribute *attr, char *buf) 390ac6ae347SBen Widawsky { 391ac6ae347SBen Widawsky struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 392ac6ae347SBen Widawsky struct drm_device *dev = minor->dev; 393ac6ae347SBen Widawsky struct drm_i915_private *dev_priv = dev->dev_private; 394ac6ae347SBen Widawsky u32 val, rp_state_cap; 395ac6ae347SBen Widawsky ssize_t ret; 396ac6ae347SBen Widawsky 397ac6ae347SBen Widawsky ret = mutex_lock_interruptible(&dev->struct_mutex); 398ac6ae347SBen Widawsky if (ret) 399ac6ae347SBen Widawsky return ret; 400ac6ae347SBen Widawsky rp_state_cap = I915_READ(GEN6_RP_STATE_CAP); 401ac6ae347SBen Widawsky mutex_unlock(&dev->struct_mutex); 402ac6ae347SBen Widawsky 403ac6ae347SBen Widawsky if (attr == &dev_attr_gt_RP0_freq_mhz) { 404ac6ae347SBen Widawsky val = ((rp_state_cap & 0x0000ff) >> 0) * GT_FREQUENCY_MULTIPLIER; 405ac6ae347SBen Widawsky } else if (attr == &dev_attr_gt_RP1_freq_mhz) { 406ac6ae347SBen Widawsky val = ((rp_state_cap & 0x00ff00) >> 8) * GT_FREQUENCY_MULTIPLIER; 407ac6ae347SBen Widawsky } else if (attr == &dev_attr_gt_RPn_freq_mhz) { 408ac6ae347SBen Widawsky val = ((rp_state_cap & 0xff0000) >> 16) * GT_FREQUENCY_MULTIPLIER; 409ac6ae347SBen Widawsky } else { 410ac6ae347SBen Widawsky BUG(); 411ac6ae347SBen Widawsky } 4123e2a1556SJani Nikula return snprintf(buf, PAGE_SIZE, "%d\n", val); 413ac6ae347SBen Widawsky } 414ac6ae347SBen Widawsky 415df6eedc8SBen Widawsky static const struct attribute *gen6_attrs[] = { 416df6eedc8SBen Widawsky &dev_attr_gt_cur_freq_mhz.attr, 417df6eedc8SBen Widawsky &dev_attr_gt_max_freq_mhz.attr, 418df6eedc8SBen Widawsky &dev_attr_gt_min_freq_mhz.attr, 419ac6ae347SBen Widawsky &dev_attr_gt_RP0_freq_mhz.attr, 420ac6ae347SBen Widawsky &dev_attr_gt_RP1_freq_mhz.attr, 421ac6ae347SBen Widawsky &dev_attr_gt_RPn_freq_mhz.attr, 422df6eedc8SBen Widawsky NULL, 423df6eedc8SBen Widawsky }; 424df6eedc8SBen Widawsky 425*97e4eed7SChris Wilson static const struct attribute *vlv_attrs[] = { 426*97e4eed7SChris Wilson &dev_attr_gt_cur_freq_mhz.attr, 427*97e4eed7SChris Wilson &dev_attr_gt_max_freq_mhz.attr, 428*97e4eed7SChris Wilson &dev_attr_gt_min_freq_mhz.attr, 429*97e4eed7SChris Wilson &dev_attr_vlv_rpe_freq_mhz.attr, 430*97e4eed7SChris Wilson NULL, 431*97e4eed7SChris Wilson }; 432*97e4eed7SChris Wilson 433ef86ddceSMika Kuoppala static ssize_t error_state_read(struct file *filp, struct kobject *kobj, 434ef86ddceSMika Kuoppala struct bin_attribute *attr, char *buf, 435ef86ddceSMika Kuoppala loff_t off, size_t count) 436ef86ddceSMika Kuoppala { 437ef86ddceSMika Kuoppala 438ef86ddceSMika Kuoppala struct device *kdev = container_of(kobj, struct device, kobj); 439ef86ddceSMika Kuoppala struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 440ef86ddceSMika Kuoppala struct drm_device *dev = minor->dev; 441ef86ddceSMika Kuoppala struct i915_error_state_file_priv error_priv; 442ef86ddceSMika Kuoppala struct drm_i915_error_state_buf error_str; 443ef86ddceSMika Kuoppala ssize_t ret_count = 0; 444ef86ddceSMika Kuoppala int ret; 445ef86ddceSMika Kuoppala 446ef86ddceSMika Kuoppala memset(&error_priv, 0, sizeof(error_priv)); 447ef86ddceSMika Kuoppala 448ef86ddceSMika Kuoppala ret = i915_error_state_buf_init(&error_str, count, off); 449ef86ddceSMika Kuoppala if (ret) 450ef86ddceSMika Kuoppala return ret; 451ef86ddceSMika Kuoppala 452ef86ddceSMika Kuoppala error_priv.dev = dev; 453ef86ddceSMika Kuoppala i915_error_state_get(dev, &error_priv); 454ef86ddceSMika Kuoppala 455ef86ddceSMika Kuoppala ret = i915_error_state_to_str(&error_str, &error_priv); 456ef86ddceSMika Kuoppala if (ret) 457ef86ddceSMika Kuoppala goto out; 458ef86ddceSMika Kuoppala 459ef86ddceSMika Kuoppala ret_count = count < error_str.bytes ? count : error_str.bytes; 460ef86ddceSMika Kuoppala 461ef86ddceSMika Kuoppala memcpy(buf, error_str.buf, ret_count); 462ef86ddceSMika Kuoppala out: 463ef86ddceSMika Kuoppala i915_error_state_put(&error_priv); 464ef86ddceSMika Kuoppala i915_error_state_buf_release(&error_str); 465ef86ddceSMika Kuoppala 466ef86ddceSMika Kuoppala return ret ?: ret_count; 467ef86ddceSMika Kuoppala } 468ef86ddceSMika Kuoppala 469ef86ddceSMika Kuoppala static ssize_t error_state_write(struct file *file, struct kobject *kobj, 470ef86ddceSMika Kuoppala struct bin_attribute *attr, char *buf, 471ef86ddceSMika Kuoppala loff_t off, size_t count) 472ef86ddceSMika Kuoppala { 473ef86ddceSMika Kuoppala struct device *kdev = container_of(kobj, struct device, kobj); 474ef86ddceSMika Kuoppala struct drm_minor *minor = container_of(kdev, struct drm_minor, kdev); 475ef86ddceSMika Kuoppala struct drm_device *dev = minor->dev; 476ef86ddceSMika Kuoppala int ret; 477ef86ddceSMika Kuoppala 478ef86ddceSMika Kuoppala DRM_DEBUG_DRIVER("Resetting error state\n"); 479ef86ddceSMika Kuoppala 480ef86ddceSMika Kuoppala ret = mutex_lock_interruptible(&dev->struct_mutex); 481ef86ddceSMika Kuoppala if (ret) 482ef86ddceSMika Kuoppala return ret; 483ef86ddceSMika Kuoppala 484ef86ddceSMika Kuoppala i915_destroy_error_state(dev); 485ef86ddceSMika Kuoppala mutex_unlock(&dev->struct_mutex); 486ef86ddceSMika Kuoppala 487ef86ddceSMika Kuoppala return count; 488ef86ddceSMika Kuoppala } 489ef86ddceSMika Kuoppala 490ef86ddceSMika Kuoppala static struct bin_attribute error_state_attr = { 491ef86ddceSMika Kuoppala .attr.name = "error", 492ef86ddceSMika Kuoppala .attr.mode = S_IRUSR | S_IWUSR, 493ef86ddceSMika Kuoppala .size = 0, 494ef86ddceSMika Kuoppala .read = error_state_read, 495ef86ddceSMika Kuoppala .write = error_state_write, 496ef86ddceSMika Kuoppala }; 497ef86ddceSMika Kuoppala 4980136db58SBen Widawsky void i915_setup_sysfs(struct drm_device *dev) 4990136db58SBen Widawsky { 5000136db58SBen Widawsky int ret; 5010136db58SBen Widawsky 5028c3f929bSBen Widawsky #ifdef CONFIG_PM 503112abd29SDaniel Vetter if (INTEL_INFO(dev)->gen >= 6) { 504112abd29SDaniel Vetter ret = sysfs_merge_group(&dev->primary->kdev.kobj, 505112abd29SDaniel Vetter &rc6_attr_group); 5060136db58SBen Widawsky if (ret) 50784bc7581SBen Widawsky DRM_ERROR("RC6 residency sysfs setup failed\n"); 508112abd29SDaniel Vetter } 5098c3f929bSBen Widawsky #endif 510e1ef7cc2SBen Widawsky if (HAS_L3_GPU_CACHE(dev)) { 51184bc7581SBen Widawsky ret = device_create_bin_file(&dev->primary->kdev, &dpf_attrs); 51284bc7581SBen Widawsky if (ret) 51384bc7581SBen Widawsky DRM_ERROR("l3 parity sysfs setup failed\n"); 5140136db58SBen Widawsky } 515df6eedc8SBen Widawsky 516*97e4eed7SChris Wilson ret = 0; 517*97e4eed7SChris Wilson if (IS_VALLEYVIEW(dev)) 518*97e4eed7SChris Wilson ret = sysfs_create_files(&dev->primary->kdev.kobj, vlv_attrs); 519*97e4eed7SChris Wilson else if (INTEL_INFO(dev)->gen >= 6) 520df6eedc8SBen Widawsky ret = sysfs_create_files(&dev->primary->kdev.kobj, gen6_attrs); 521df6eedc8SBen Widawsky if (ret) 522*97e4eed7SChris Wilson DRM_ERROR("RPS sysfs setup failed\n"); 523ef86ddceSMika Kuoppala 524ef86ddceSMika Kuoppala ret = sysfs_create_bin_file(&dev->primary->kdev.kobj, 525ef86ddceSMika Kuoppala &error_state_attr); 526ef86ddceSMika Kuoppala if (ret) 527ef86ddceSMika Kuoppala DRM_ERROR("error_state sysfs setup failed\n"); 528112abd29SDaniel Vetter } 5290136db58SBen Widawsky 5300136db58SBen Widawsky void i915_teardown_sysfs(struct drm_device *dev) 5310136db58SBen Widawsky { 532ef86ddceSMika Kuoppala sysfs_remove_bin_file(&dev->primary->kdev.kobj, &error_state_attr); 533*97e4eed7SChris Wilson if (IS_VALLEYVIEW(dev)) 534*97e4eed7SChris Wilson sysfs_remove_files(&dev->primary->kdev.kobj, vlv_attrs); 535*97e4eed7SChris Wilson else 536df6eedc8SBen Widawsky sysfs_remove_files(&dev->primary->kdev.kobj, gen6_attrs); 53784bc7581SBen Widawsky device_remove_bin_file(&dev->primary->kdev, &dpf_attrs); 538853c70e8SBen Widawsky #ifdef CONFIG_PM 5390136db58SBen Widawsky sysfs_unmerge_group(&dev->primary->kdev.kobj, &rc6_attr_group); 540853c70e8SBen Widawsky #endif 5410136db58SBen Widawsky } 542