1512d1027SAndreas Herrmann /* 2512d1027SAndreas Herrmann * fam15h_power.c - AMD Family 15h processor power monitoring 3512d1027SAndreas Herrmann * 4512d1027SAndreas Herrmann * Copyright (c) 2011 Advanced Micro Devices, Inc. 5d034fbf0SAndreas Herrmann * Author: Andreas Herrmann <herrmann.der.user@googlemail.com> 6512d1027SAndreas Herrmann * 7512d1027SAndreas Herrmann * 8512d1027SAndreas Herrmann * This driver is free software; you can redistribute it and/or 9512d1027SAndreas Herrmann * modify it under the terms of the GNU General Public License; either 10512d1027SAndreas Herrmann * version 2 of the License, or (at your option) any later version. 11512d1027SAndreas Herrmann * 12512d1027SAndreas Herrmann * This driver is distributed in the hope that it will be useful, 13512d1027SAndreas Herrmann * but WITHOUT ANY WARRANTY; without even the implied warranty of 14512d1027SAndreas Herrmann * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. 15512d1027SAndreas Herrmann * See the GNU General Public License for more details. 16512d1027SAndreas Herrmann * 17512d1027SAndreas Herrmann * You should have received a copy of the GNU General Public License 18512d1027SAndreas Herrmann * along with this driver; if not, see <http://www.gnu.org/licenses/>. 19512d1027SAndreas Herrmann */ 20512d1027SAndreas Herrmann 21512d1027SAndreas Herrmann #include <linux/err.h> 22512d1027SAndreas Herrmann #include <linux/hwmon.h> 23512d1027SAndreas Herrmann #include <linux/hwmon-sysfs.h> 24512d1027SAndreas Herrmann #include <linux/init.h> 25512d1027SAndreas Herrmann #include <linux/module.h> 26512d1027SAndreas Herrmann #include <linux/pci.h> 27512d1027SAndreas Herrmann #include <linux/bitops.h> 28512d1027SAndreas Herrmann #include <asm/processor.h> 29512d1027SAndreas Herrmann 30512d1027SAndreas Herrmann MODULE_DESCRIPTION("AMD Family 15h CPU processor power monitor"); 31d034fbf0SAndreas Herrmann MODULE_AUTHOR("Andreas Herrmann <herrmann.der.user@googlemail.com>"); 32512d1027SAndreas Herrmann MODULE_LICENSE("GPL"); 33512d1027SAndreas Herrmann 34512d1027SAndreas Herrmann /* D18F3 */ 35512d1027SAndreas Herrmann #define REG_NORTHBRIDGE_CAP 0xe8 36512d1027SAndreas Herrmann 37512d1027SAndreas Herrmann /* D18F4 */ 38512d1027SAndreas Herrmann #define REG_PROCESSOR_TDP 0x1b8 39512d1027SAndreas Herrmann 40512d1027SAndreas Herrmann /* D18F5 */ 41512d1027SAndreas Herrmann #define REG_TDP_RUNNING_AVERAGE 0xe0 42512d1027SAndreas Herrmann #define REG_TDP_LIMIT3 0xe8 43512d1027SAndreas Herrmann 447deb14b1SHuang Rui #define FAM15H_MIN_NUM_ATTRS 2 457deb14b1SHuang Rui #define FAM15H_NUM_GROUPS 2 467deb14b1SHuang Rui 47512d1027SAndreas Herrmann struct fam15h_power_data { 48562dc973SAxel Lin struct pci_dev *pdev; 49512d1027SAndreas Herrmann unsigned int tdp_to_watts; 50512d1027SAndreas Herrmann unsigned int base_tdp; 51512d1027SAndreas Herrmann unsigned int processor_pwr_watts; 521ed32160SHuang Rui unsigned int cpu_pwr_sample_ratio; 537deb14b1SHuang Rui const struct attribute_group *groups[FAM15H_NUM_GROUPS]; 547deb14b1SHuang Rui struct attribute_group group; 55512d1027SAndreas Herrmann }; 56512d1027SAndreas Herrmann 57512d1027SAndreas Herrmann static ssize_t show_power(struct device *dev, 58512d1027SAndreas Herrmann struct device_attribute *attr, char *buf) 59512d1027SAndreas Herrmann { 60512d1027SAndreas Herrmann u32 val, tdp_limit, running_avg_range; 61512d1027SAndreas Herrmann s32 running_avg_capture; 62512d1027SAndreas Herrmann u64 curr_pwr_watts; 63512d1027SAndreas Herrmann struct fam15h_power_data *data = dev_get_drvdata(dev); 64562dc973SAxel Lin struct pci_dev *f4 = data->pdev; 65512d1027SAndreas Herrmann 66512d1027SAndreas Herrmann pci_bus_read_config_dword(f4->bus, PCI_DEVFN(PCI_SLOT(f4->devfn), 5), 67512d1027SAndreas Herrmann REG_TDP_RUNNING_AVERAGE, &val); 68e9cd4d55SHuang Rui 69e9cd4d55SHuang Rui /* 70e9cd4d55SHuang Rui * On Carrizo and later platforms, TdpRunAvgAccCap bit field 71e9cd4d55SHuang Rui * is extended to 4:31 from 4:25. 72e9cd4d55SHuang Rui */ 73e9cd4d55SHuang Rui if (boot_cpu_data.x86 == 0x15 && boot_cpu_data.x86_model >= 0x60) { 74e9cd4d55SHuang Rui running_avg_capture = val >> 4; 75e9cd4d55SHuang Rui running_avg_capture = sign_extend32(running_avg_capture, 27); 76e9cd4d55SHuang Rui } else { 77512d1027SAndreas Herrmann running_avg_capture = (val >> 4) & 0x3fffff; 78fc0900cbSAndreas Herrmann running_avg_capture = sign_extend32(running_avg_capture, 21); 79e9cd4d55SHuang Rui } 80e9cd4d55SHuang Rui 81941a956bSAndre Przywara running_avg_range = (val & 0xf) + 1; 82512d1027SAndreas Herrmann 83512d1027SAndreas Herrmann pci_bus_read_config_dword(f4->bus, PCI_DEVFN(PCI_SLOT(f4->devfn), 5), 84512d1027SAndreas Herrmann REG_TDP_LIMIT3, &val); 85512d1027SAndreas Herrmann 86512d1027SAndreas Herrmann tdp_limit = val >> 16; 8762867d49SGuenter Roeck curr_pwr_watts = ((u64)(tdp_limit + 8862867d49SGuenter Roeck data->base_tdp)) << running_avg_range; 89941a956bSAndre Przywara curr_pwr_watts -= running_avg_capture; 90512d1027SAndreas Herrmann curr_pwr_watts *= data->tdp_to_watts; 91512d1027SAndreas Herrmann 92512d1027SAndreas Herrmann /* 93512d1027SAndreas Herrmann * Convert to microWatt 94512d1027SAndreas Herrmann * 95512d1027SAndreas Herrmann * power is in Watt provided as fixed point integer with 96512d1027SAndreas Herrmann * scaling factor 1/(2^16). For conversion we use 97512d1027SAndreas Herrmann * (10^6)/(2^16) = 15625/(2^10) 98512d1027SAndreas Herrmann */ 99941a956bSAndre Przywara curr_pwr_watts = (curr_pwr_watts * 15625) >> (10 + running_avg_range); 100512d1027SAndreas Herrmann return sprintf(buf, "%u\n", (unsigned int) curr_pwr_watts); 101512d1027SAndreas Herrmann } 102512d1027SAndreas Herrmann static DEVICE_ATTR(power1_input, S_IRUGO, show_power, NULL); 103512d1027SAndreas Herrmann 104512d1027SAndreas Herrmann static ssize_t show_power_crit(struct device *dev, 105512d1027SAndreas Herrmann struct device_attribute *attr, char *buf) 106512d1027SAndreas Herrmann { 107512d1027SAndreas Herrmann struct fam15h_power_data *data = dev_get_drvdata(dev); 108512d1027SAndreas Herrmann 109512d1027SAndreas Herrmann return sprintf(buf, "%u\n", data->processor_pwr_watts); 110512d1027SAndreas Herrmann } 111512d1027SAndreas Herrmann static DEVICE_ATTR(power1_crit, S_IRUGO, show_power_crit, NULL); 112512d1027SAndreas Herrmann 1137deb14b1SHuang Rui static int fam15h_power_init_attrs(struct pci_dev *pdev, 1147deb14b1SHuang Rui struct fam15h_power_data *data) 115961a2378SAravind Gopalakrishnan { 1167deb14b1SHuang Rui int n = FAM15H_MIN_NUM_ATTRS; 1177deb14b1SHuang Rui struct attribute **fam15h_power_attrs; 118*46f29c2bSHuang Rui struct cpuinfo_x86 *c = &boot_cpu_data; 1197deb14b1SHuang Rui 120*46f29c2bSHuang Rui if (c->x86 == 0x15 && 121*46f29c2bSHuang Rui (c->x86_model <= 0xf || 122*46f29c2bSHuang Rui (c->x86_model >= 0x60 && c->x86_model <= 0x6f))) 1237deb14b1SHuang Rui n += 1; 1247deb14b1SHuang Rui 1257deb14b1SHuang Rui fam15h_power_attrs = devm_kcalloc(&pdev->dev, n, 1267deb14b1SHuang Rui sizeof(*fam15h_power_attrs), 1277deb14b1SHuang Rui GFP_KERNEL); 1287deb14b1SHuang Rui 1297deb14b1SHuang Rui if (!fam15h_power_attrs) 1307deb14b1SHuang Rui return -ENOMEM; 1317deb14b1SHuang Rui 1327deb14b1SHuang Rui n = 0; 1337deb14b1SHuang Rui fam15h_power_attrs[n++] = &dev_attr_power1_crit.attr; 134*46f29c2bSHuang Rui if (c->x86 == 0x15 && 135*46f29c2bSHuang Rui (c->x86_model <= 0xf || 136*46f29c2bSHuang Rui (c->x86_model >= 0x60 && c->x86_model <= 0x6f))) 1377deb14b1SHuang Rui fam15h_power_attrs[n++] = &dev_attr_power1_input.attr; 1387deb14b1SHuang Rui 1397deb14b1SHuang Rui data->group.attrs = fam15h_power_attrs; 1407deb14b1SHuang Rui 141961a2378SAravind Gopalakrishnan return 0; 142961a2378SAravind Gopalakrishnan } 143961a2378SAravind Gopalakrishnan 144d83e92b3SHuang Rui static bool should_load_on_this_node(struct pci_dev *f4) 145512d1027SAndreas Herrmann { 146512d1027SAndreas Herrmann u32 val; 147512d1027SAndreas Herrmann 148512d1027SAndreas Herrmann pci_bus_read_config_dword(f4->bus, PCI_DEVFN(PCI_SLOT(f4->devfn), 3), 149512d1027SAndreas Herrmann REG_NORTHBRIDGE_CAP, &val); 150512d1027SAndreas Herrmann if ((val & BIT(29)) && ((val >> 30) & 3)) 151512d1027SAndreas Herrmann return false; 152512d1027SAndreas Herrmann 153512d1027SAndreas Herrmann return true; 154512d1027SAndreas Herrmann } 155512d1027SAndreas Herrmann 15600250ec9SAndre Przywara /* 15700250ec9SAndre Przywara * Newer BKDG versions have an updated recommendation on how to properly 15800250ec9SAndre Przywara * initialize the running average range (was: 0xE, now: 0x9). This avoids 15900250ec9SAndre Przywara * counter saturations resulting in bogus power readings. 16000250ec9SAndre Przywara * We correct this value ourselves to cope with older BIOSes. 16100250ec9SAndre Przywara */ 1625f0ecb90SAndreas Herrmann static const struct pci_device_id affected_device[] = { 163c3e40a99SGuenter Roeck { PCI_VDEVICE(AMD, PCI_DEVICE_ID_AMD_15H_NB_F4) }, 164c3e40a99SGuenter Roeck { 0 } 165c3e40a99SGuenter Roeck }; 166c3e40a99SGuenter Roeck 1675f0ecb90SAndreas Herrmann static void tweak_runavg_range(struct pci_dev *pdev) 16800250ec9SAndre Przywara { 16900250ec9SAndre Przywara u32 val; 17000250ec9SAndre Przywara 17100250ec9SAndre Przywara /* 17200250ec9SAndre Przywara * let this quirk apply only to the current version of the 17300250ec9SAndre Przywara * northbridge, since future versions may change the behavior 17400250ec9SAndre Przywara */ 175c3e40a99SGuenter Roeck if (!pci_match_id(affected_device, pdev)) 17600250ec9SAndre Przywara return; 17700250ec9SAndre Przywara 17800250ec9SAndre Przywara pci_bus_read_config_dword(pdev->bus, 17900250ec9SAndre Przywara PCI_DEVFN(PCI_SLOT(pdev->devfn), 5), 18000250ec9SAndre Przywara REG_TDP_RUNNING_AVERAGE, &val); 18100250ec9SAndre Przywara if ((val & 0xf) != 0xe) 18200250ec9SAndre Przywara return; 18300250ec9SAndre Przywara 18400250ec9SAndre Przywara val &= ~0xf; 18500250ec9SAndre Przywara val |= 0x9; 18600250ec9SAndre Przywara pci_bus_write_config_dword(pdev->bus, 18700250ec9SAndre Przywara PCI_DEVFN(PCI_SLOT(pdev->devfn), 5), 18800250ec9SAndre Przywara REG_TDP_RUNNING_AVERAGE, val); 18900250ec9SAndre Przywara } 19000250ec9SAndre Przywara 1915f0ecb90SAndreas Herrmann #ifdef CONFIG_PM 1925f0ecb90SAndreas Herrmann static int fam15h_power_resume(struct pci_dev *pdev) 1935f0ecb90SAndreas Herrmann { 1945f0ecb90SAndreas Herrmann tweak_runavg_range(pdev); 1955f0ecb90SAndreas Herrmann return 0; 1965f0ecb90SAndreas Herrmann } 1975f0ecb90SAndreas Herrmann #else 1985f0ecb90SAndreas Herrmann #define fam15h_power_resume NULL 1995f0ecb90SAndreas Herrmann #endif 2005f0ecb90SAndreas Herrmann 2017deb14b1SHuang Rui static int fam15h_power_init_data(struct pci_dev *f4, 202512d1027SAndreas Herrmann struct fam15h_power_data *data) 203512d1027SAndreas Herrmann { 2041ed32160SHuang Rui u32 val, eax, ebx, ecx, edx; 205512d1027SAndreas Herrmann u64 tmp; 2067deb14b1SHuang Rui int ret; 207512d1027SAndreas Herrmann 208512d1027SAndreas Herrmann pci_read_config_dword(f4, REG_PROCESSOR_TDP, &val); 209512d1027SAndreas Herrmann data->base_tdp = val >> 16; 210512d1027SAndreas Herrmann tmp = val & 0xffff; 211512d1027SAndreas Herrmann 212512d1027SAndreas Herrmann pci_bus_read_config_dword(f4->bus, PCI_DEVFN(PCI_SLOT(f4->devfn), 5), 213512d1027SAndreas Herrmann REG_TDP_LIMIT3, &val); 214512d1027SAndreas Herrmann 215512d1027SAndreas Herrmann data->tdp_to_watts = ((val & 0x3ff) << 6) | ((val >> 10) & 0x3f); 216512d1027SAndreas Herrmann tmp *= data->tdp_to_watts; 217512d1027SAndreas Herrmann 218512d1027SAndreas Herrmann /* result not allowed to be >= 256W */ 219512d1027SAndreas Herrmann if ((tmp >> 16) >= 256) 220b55f3757SGuenter Roeck dev_warn(&f4->dev, 221b55f3757SGuenter Roeck "Bogus value for ProcessorPwrWatts (processor_pwr_watts>=%u)\n", 222512d1027SAndreas Herrmann (unsigned int) (tmp >> 16)); 223512d1027SAndreas Herrmann 224512d1027SAndreas Herrmann /* convert to microWatt */ 225512d1027SAndreas Herrmann data->processor_pwr_watts = (tmp * 15625) >> 10; 2261ed32160SHuang Rui 2277deb14b1SHuang Rui ret = fam15h_power_init_attrs(f4, data); 2287deb14b1SHuang Rui if (ret) 2297deb14b1SHuang Rui return ret; 2307deb14b1SHuang Rui 2311ed32160SHuang Rui cpuid(0x80000007, &eax, &ebx, &ecx, &edx); 2321ed32160SHuang Rui 2331ed32160SHuang Rui /* CPUID Fn8000_0007:EDX[12] indicates to support accumulated power */ 2341ed32160SHuang Rui if (!(edx & BIT(12))) 2357deb14b1SHuang Rui return 0; 2361ed32160SHuang Rui 2371ed32160SHuang Rui /* 2381ed32160SHuang Rui * determine the ratio of the compute unit power accumulator 2391ed32160SHuang Rui * sample period to the PTSC counter period by executing CPUID 2401ed32160SHuang Rui * Fn8000_0007:ECX 2411ed32160SHuang Rui */ 2421ed32160SHuang Rui data->cpu_pwr_sample_ratio = ecx; 2437deb14b1SHuang Rui 2447deb14b1SHuang Rui return 0; 245512d1027SAndreas Herrmann } 246512d1027SAndreas Herrmann 2476c931ae1SBill Pemberton static int fam15h_power_probe(struct pci_dev *pdev, 248512d1027SAndreas Herrmann const struct pci_device_id *id) 249512d1027SAndreas Herrmann { 250512d1027SAndreas Herrmann struct fam15h_power_data *data; 25187432a2eSGuenter Roeck struct device *dev = &pdev->dev; 252562dc973SAxel Lin struct device *hwmon_dev; 2537deb14b1SHuang Rui int ret; 254512d1027SAndreas Herrmann 25500250ec9SAndre Przywara /* 25600250ec9SAndre Przywara * though we ignore every other northbridge, we still have to 25700250ec9SAndre Przywara * do the tweaking on _each_ node in MCM processors as the counters 25800250ec9SAndre Przywara * are working hand-in-hand 25900250ec9SAndre Przywara */ 26000250ec9SAndre Przywara tweak_runavg_range(pdev); 26100250ec9SAndre Przywara 262d83e92b3SHuang Rui if (!should_load_on_this_node(pdev)) 26387432a2eSGuenter Roeck return -ENODEV; 264512d1027SAndreas Herrmann 26587432a2eSGuenter Roeck data = devm_kzalloc(dev, sizeof(struct fam15h_power_data), GFP_KERNEL); 26687432a2eSGuenter Roeck if (!data) 26787432a2eSGuenter Roeck return -ENOMEM; 26887432a2eSGuenter Roeck 2697deb14b1SHuang Rui ret = fam15h_power_init_data(pdev, data); 2707deb14b1SHuang Rui if (ret) 2717deb14b1SHuang Rui return ret; 2727deb14b1SHuang Rui 273562dc973SAxel Lin data->pdev = pdev; 274512d1027SAndreas Herrmann 2757deb14b1SHuang Rui data->groups[0] = &data->group; 2767deb14b1SHuang Rui 277562dc973SAxel Lin hwmon_dev = devm_hwmon_device_register_with_groups(dev, "fam15h_power", 278562dc973SAxel Lin data, 2797deb14b1SHuang Rui &data->groups[0]); 280562dc973SAxel Lin return PTR_ERR_OR_ZERO(hwmon_dev); 281512d1027SAndreas Herrmann } 282512d1027SAndreas Herrmann 283cd9bb056SJingoo Han static const struct pci_device_id fam15h_power_id_table[] = { 284512d1027SAndreas Herrmann { PCI_VDEVICE(AMD, PCI_DEVICE_ID_AMD_15H_NB_F4) }, 2850a0039adSAravind Gopalakrishnan { PCI_VDEVICE(AMD, PCI_DEVICE_ID_AMD_15H_M30H_NB_F4) }, 2865dc08725SHuang Rui { PCI_VDEVICE(AMD, PCI_DEVICE_ID_AMD_15H_M60H_NB_F4) }, 28722e32f4fSBoris Ostrovsky { PCI_VDEVICE(AMD, PCI_DEVICE_ID_AMD_16H_NB_F4) }, 2880bd52941SAravind Gopalakrishnan { PCI_VDEVICE(AMD, PCI_DEVICE_ID_AMD_16H_M30H_NB_F4) }, 289512d1027SAndreas Herrmann {} 290512d1027SAndreas Herrmann }; 291512d1027SAndreas Herrmann MODULE_DEVICE_TABLE(pci, fam15h_power_id_table); 292512d1027SAndreas Herrmann 293512d1027SAndreas Herrmann static struct pci_driver fam15h_power_driver = { 294512d1027SAndreas Herrmann .name = "fam15h_power", 295512d1027SAndreas Herrmann .id_table = fam15h_power_id_table, 296512d1027SAndreas Herrmann .probe = fam15h_power_probe, 2975f0ecb90SAndreas Herrmann .resume = fam15h_power_resume, 298512d1027SAndreas Herrmann }; 299512d1027SAndreas Herrmann 300f71f5a55SAxel Lin module_pci_driver(fam15h_power_driver); 301