16bc75619SDan Williams /* 26bc75619SDan Williams * Copyright(c) 2013-2015 Intel Corporation. All rights reserved. 36bc75619SDan Williams * 46bc75619SDan Williams * This program is free software; you can redistribute it and/or modify 56bc75619SDan Williams * it under the terms of version 2 of the GNU General Public License as 66bc75619SDan Williams * published by the Free Software Foundation. 76bc75619SDan Williams * 86bc75619SDan Williams * This program is distributed in the hope that it will be useful, but 96bc75619SDan Williams * WITHOUT ANY WARRANTY; without even the implied warranty of 106bc75619SDan Williams * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 116bc75619SDan Williams * General Public License for more details. 126bc75619SDan Williams */ 136bc75619SDan Williams #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 146bc75619SDan Williams #include <linux/platform_device.h> 156bc75619SDan Williams #include <linux/dma-mapping.h> 16d8d378faSDan Williams #include <linux/workqueue.h> 176bc75619SDan Williams #include <linux/libnvdimm.h> 186bc75619SDan Williams #include <linux/vmalloc.h> 196bc75619SDan Williams #include <linux/device.h> 206bc75619SDan Williams #include <linux/module.h> 2120985164SVishal Verma #include <linux/mutex.h> 226bc75619SDan Williams #include <linux/ndctl.h> 236bc75619SDan Williams #include <linux/sizes.h> 2420985164SVishal Verma #include <linux/list.h> 256bc75619SDan Williams #include <linux/slab.h> 266bc75619SDan Williams #include <nfit.h> 276bc75619SDan Williams #include <nd.h> 286bc75619SDan Williams #include "nfit_test.h" 296bc75619SDan Williams 306bc75619SDan Williams /* 316bc75619SDan Williams * Generate an NFIT table to describe the following topology: 326bc75619SDan Williams * 336bc75619SDan Williams * BUS0: Interleaved PMEM regions, and aliasing with BLK regions 346bc75619SDan Williams * 356bc75619SDan Williams * (a) (b) DIMM BLK-REGION 366bc75619SDan Williams * +----------+--------------+----------+---------+ 376bc75619SDan Williams * +------+ | blk2.0 | pm0.0 | blk2.1 | pm1.0 | 0 region2 386bc75619SDan Williams * | imc0 +--+- - - - - region0 - - - -+----------+ + 396bc75619SDan Williams * +--+---+ | blk3.0 | pm0.0 | blk3.1 | pm1.0 | 1 region3 406bc75619SDan Williams * | +----------+--------------v----------v v 416bc75619SDan Williams * +--+---+ | | 426bc75619SDan Williams * | cpu0 | region1 436bc75619SDan Williams * +--+---+ | | 446bc75619SDan Williams * | +-------------------------^----------^ ^ 456bc75619SDan Williams * +--+---+ | blk4.0 | pm1.0 | 2 region4 466bc75619SDan Williams * | imc1 +--+-------------------------+----------+ + 476bc75619SDan Williams * +------+ | blk5.0 | pm1.0 | 3 region5 486bc75619SDan Williams * +-------------------------+----------+-+-------+ 496bc75619SDan Williams * 5020985164SVishal Verma * +--+---+ 5120985164SVishal Verma * | cpu1 | 5220985164SVishal Verma * +--+---+ (Hotplug DIMM) 5320985164SVishal Verma * | +----------------------------------------------+ 5420985164SVishal Verma * +--+---+ | blk6.0/pm7.0 | 4 region6/7 5520985164SVishal Verma * | imc0 +--+----------------------------------------------+ 5620985164SVishal Verma * +------+ 5720985164SVishal Verma * 5820985164SVishal Verma * 596bc75619SDan Williams * *) In this layout we have four dimms and two memory controllers in one 606bc75619SDan Williams * socket. Each unique interface (BLK or PMEM) to DPA space 616bc75619SDan Williams * is identified by a region device with a dynamically assigned id. 626bc75619SDan Williams * 636bc75619SDan Williams * *) The first portion of dimm0 and dimm1 are interleaved as REGION0. 646bc75619SDan Williams * A single PMEM namespace "pm0.0" is created using half of the 656bc75619SDan Williams * REGION0 SPA-range. REGION0 spans dimm0 and dimm1. PMEM namespace 666bc75619SDan Williams * allocate from from the bottom of a region. The unallocated 676bc75619SDan Williams * portion of REGION0 aliases with REGION2 and REGION3. That 686bc75619SDan Williams * unallacted capacity is reclaimed as BLK namespaces ("blk2.0" and 696bc75619SDan Williams * "blk3.0") starting at the base of each DIMM to offset (a) in those 706bc75619SDan Williams * DIMMs. "pm0.0", "blk2.0" and "blk3.0" are free-form readable 716bc75619SDan Williams * names that can be assigned to a namespace. 726bc75619SDan Williams * 736bc75619SDan Williams * *) In the last portion of dimm0 and dimm1 we have an interleaved 746bc75619SDan Williams * SPA range, REGION1, that spans those two dimms as well as dimm2 756bc75619SDan Williams * and dimm3. Some of REGION1 allocated to a PMEM namespace named 766bc75619SDan Williams * "pm1.0" the rest is reclaimed in 4 BLK namespaces (for each 776bc75619SDan Williams * dimm in the interleave set), "blk2.1", "blk3.1", "blk4.0", and 786bc75619SDan Williams * "blk5.0". 796bc75619SDan Williams * 806bc75619SDan Williams * *) The portion of dimm2 and dimm3 that do not participate in the 816bc75619SDan Williams * REGION1 interleaved SPA range (i.e. the DPA address below offset 826bc75619SDan Williams * (b) are also included in the "blk4.0" and "blk5.0" namespaces. 836bc75619SDan Williams * Note, that BLK namespaces need not be contiguous in DPA-space, and 846bc75619SDan Williams * can consume aliased capacity from multiple interleave sets. 856bc75619SDan Williams * 866bc75619SDan Williams * BUS1: Legacy NVDIMM (single contiguous range) 876bc75619SDan Williams * 886bc75619SDan Williams * region2 896bc75619SDan Williams * +---------------------+ 906bc75619SDan Williams * |---------------------| 916bc75619SDan Williams * || pm2.0 || 926bc75619SDan Williams * |---------------------| 936bc75619SDan Williams * +---------------------+ 946bc75619SDan Williams * 956bc75619SDan Williams * *) A NFIT-table may describe a simple system-physical-address range 966bc75619SDan Williams * with no BLK aliasing. This type of region may optionally 976bc75619SDan Williams * reference an NVDIMM. 986bc75619SDan Williams */ 996bc75619SDan Williams enum { 10020985164SVishal Verma NUM_PM = 3, 10120985164SVishal Verma NUM_DCR = 5, 10285d3fa02SDan Williams NUM_HINTS = 8, 1036bc75619SDan Williams NUM_BDW = NUM_DCR, 1046bc75619SDan Williams NUM_SPA = NUM_PM + NUM_DCR + NUM_BDW, 1056bc75619SDan Williams NUM_MEM = NUM_DCR + NUM_BDW + 2 /* spa0 iset */ + 4 /* spa1 iset */, 1066bc75619SDan Williams DIMM_SIZE = SZ_32M, 1076bc75619SDan Williams LABEL_SIZE = SZ_128K, 1087bfe97c7SDan Williams SPA_VCD_SIZE = SZ_4M, 1096bc75619SDan Williams SPA0_SIZE = DIMM_SIZE, 1106bc75619SDan Williams SPA1_SIZE = DIMM_SIZE*2, 1116bc75619SDan Williams SPA2_SIZE = DIMM_SIZE, 1126bc75619SDan Williams BDW_SIZE = 64 << 8, 1136bc75619SDan Williams DCR_SIZE = 12, 1146bc75619SDan Williams NUM_NFITS = 2, /* permit testing multiple NFITs per system */ 1156bc75619SDan Williams }; 1166bc75619SDan Williams 1176bc75619SDan Williams struct nfit_test_dcr { 1186bc75619SDan Williams __le64 bdw_addr; 1196bc75619SDan Williams __le32 bdw_status; 1206bc75619SDan Williams __u8 aperature[BDW_SIZE]; 1216bc75619SDan Williams }; 1226bc75619SDan Williams 1236bc75619SDan Williams #define NFIT_DIMM_HANDLE(node, socket, imc, chan, dimm) \ 1246bc75619SDan Williams (((node & 0xfff) << 16) | ((socket & 0xf) << 12) \ 1256bc75619SDan Williams | ((imc & 0xf) << 8) | ((chan & 0xf) << 4) | (dimm & 0xf)) 1266bc75619SDan Williams 1276bc75619SDan Williams static u32 handle[NUM_DCR] = { 1286bc75619SDan Williams [0] = NFIT_DIMM_HANDLE(0, 0, 0, 0, 0), 1296bc75619SDan Williams [1] = NFIT_DIMM_HANDLE(0, 0, 0, 0, 1), 1306bc75619SDan Williams [2] = NFIT_DIMM_HANDLE(0, 0, 1, 0, 0), 1316bc75619SDan Williams [3] = NFIT_DIMM_HANDLE(0, 0, 1, 0, 1), 13220985164SVishal Verma [4] = NFIT_DIMM_HANDLE(0, 1, 0, 0, 0), 1336bc75619SDan Williams }; 1346bc75619SDan Williams 1356bc75619SDan Williams struct nfit_test { 1366bc75619SDan Williams struct acpi_nfit_desc acpi_desc; 1376bc75619SDan Williams struct platform_device pdev; 1386bc75619SDan Williams struct list_head resources; 1396bc75619SDan Williams void *nfit_buf; 1406bc75619SDan Williams dma_addr_t nfit_dma; 1416bc75619SDan Williams size_t nfit_size; 1426bc75619SDan Williams int num_dcr; 1436bc75619SDan Williams int num_pm; 1446bc75619SDan Williams void **dimm; 1456bc75619SDan Williams dma_addr_t *dimm_dma; 1469d27a87eSDan Williams void **flush; 1479d27a87eSDan Williams dma_addr_t *flush_dma; 1486bc75619SDan Williams void **label; 1496bc75619SDan Williams dma_addr_t *label_dma; 1506bc75619SDan Williams void **spa_set; 1516bc75619SDan Williams dma_addr_t *spa_set_dma; 1526bc75619SDan Williams struct nfit_test_dcr **dcr; 1536bc75619SDan Williams dma_addr_t *dcr_dma; 1546bc75619SDan Williams int (*alloc)(struct nfit_test *t); 1556bc75619SDan Williams void (*setup)(struct nfit_test *t); 15620985164SVishal Verma int setup_hotplug; 157c14a868aSDan Williams union acpi_object **_fit; 158c14a868aSDan Williams dma_addr_t _fit_dma; 159f471f1a7SDan Williams struct ars_state { 160f471f1a7SDan Williams struct nd_cmd_ars_status *ars_status; 161f471f1a7SDan Williams unsigned long deadline; 162f471f1a7SDan Williams spinlock_t lock; 163f471f1a7SDan Williams } ars_state; 164*231bf117SDan Williams struct device *dimm_dev[NUM_DCR]; 1656bc75619SDan Williams }; 1666bc75619SDan Williams 1676bc75619SDan Williams static struct nfit_test *to_nfit_test(struct device *dev) 1686bc75619SDan Williams { 1696bc75619SDan Williams struct platform_device *pdev = to_platform_device(dev); 1706bc75619SDan Williams 1716bc75619SDan Williams return container_of(pdev, struct nfit_test, pdev); 1726bc75619SDan Williams } 1736bc75619SDan Williams 17439c686b8SVishal Verma static int nfit_test_cmd_get_config_size(struct nd_cmd_get_config_size *nd_cmd, 1756bc75619SDan Williams unsigned int buf_len) 1766bc75619SDan Williams { 1776bc75619SDan Williams if (buf_len < sizeof(*nd_cmd)) 1786bc75619SDan Williams return -EINVAL; 17939c686b8SVishal Verma 1806bc75619SDan Williams nd_cmd->status = 0; 1816bc75619SDan Williams nd_cmd->config_size = LABEL_SIZE; 1826bc75619SDan Williams nd_cmd->max_xfer = SZ_4K; 18339c686b8SVishal Verma 18439c686b8SVishal Verma return 0; 1856bc75619SDan Williams } 18639c686b8SVishal Verma 18739c686b8SVishal Verma static int nfit_test_cmd_get_config_data(struct nd_cmd_get_config_data_hdr 18839c686b8SVishal Verma *nd_cmd, unsigned int buf_len, void *label) 18939c686b8SVishal Verma { 1906bc75619SDan Williams unsigned int len, offset = nd_cmd->in_offset; 19139c686b8SVishal Verma int rc; 1926bc75619SDan Williams 1936bc75619SDan Williams if (buf_len < sizeof(*nd_cmd)) 1946bc75619SDan Williams return -EINVAL; 1956bc75619SDan Williams if (offset >= LABEL_SIZE) 1966bc75619SDan Williams return -EINVAL; 1976bc75619SDan Williams if (nd_cmd->in_length + sizeof(*nd_cmd) > buf_len) 1986bc75619SDan Williams return -EINVAL; 1996bc75619SDan Williams 2006bc75619SDan Williams nd_cmd->status = 0; 2016bc75619SDan Williams len = min(nd_cmd->in_length, LABEL_SIZE - offset); 20239c686b8SVishal Verma memcpy(nd_cmd->out_buf, label + offset, len); 2036bc75619SDan Williams rc = buf_len - sizeof(*nd_cmd) - len; 20439c686b8SVishal Verma 20539c686b8SVishal Verma return rc; 2066bc75619SDan Williams } 20739c686b8SVishal Verma 20839c686b8SVishal Verma static int nfit_test_cmd_set_config_data(struct nd_cmd_set_config_hdr *nd_cmd, 20939c686b8SVishal Verma unsigned int buf_len, void *label) 21039c686b8SVishal Verma { 2116bc75619SDan Williams unsigned int len, offset = nd_cmd->in_offset; 2126bc75619SDan Williams u32 *status; 21339c686b8SVishal Verma int rc; 2146bc75619SDan Williams 2156bc75619SDan Williams if (buf_len < sizeof(*nd_cmd)) 2166bc75619SDan Williams return -EINVAL; 2176bc75619SDan Williams if (offset >= LABEL_SIZE) 2186bc75619SDan Williams return -EINVAL; 2196bc75619SDan Williams if (nd_cmd->in_length + sizeof(*nd_cmd) + 4 > buf_len) 2206bc75619SDan Williams return -EINVAL; 2216bc75619SDan Williams 22239c686b8SVishal Verma status = (void *)nd_cmd + nd_cmd->in_length + sizeof(*nd_cmd); 2236bc75619SDan Williams *status = 0; 2246bc75619SDan Williams len = min(nd_cmd->in_length, LABEL_SIZE - offset); 22539c686b8SVishal Verma memcpy(label + offset, nd_cmd->in_buf, len); 2266bc75619SDan Williams rc = buf_len - sizeof(*nd_cmd) - (len + 4); 22739c686b8SVishal Verma 22839c686b8SVishal Verma return rc; 2296bc75619SDan Williams } 23039c686b8SVishal Verma 231747ffe11SDan Williams #define NFIT_TEST_ARS_RECORDS 4 232d4f32367SDan Williams #define NFIT_TEST_CLEAR_ERR_UNIT 256 233747ffe11SDan Williams 23439c686b8SVishal Verma static int nfit_test_cmd_ars_cap(struct nd_cmd_ars_cap *nd_cmd, 23539c686b8SVishal Verma unsigned int buf_len) 23639c686b8SVishal Verma { 23739c686b8SVishal Verma if (buf_len < sizeof(*nd_cmd)) 23839c686b8SVishal Verma return -EINVAL; 23939c686b8SVishal Verma 240747ffe11SDan Williams nd_cmd->max_ars_out = sizeof(struct nd_cmd_ars_status) 241747ffe11SDan Williams + NFIT_TEST_ARS_RECORDS * sizeof(struct nd_ars_record); 24239c686b8SVishal Verma nd_cmd->status = (ND_ARS_PERSISTENT | ND_ARS_VOLATILE) << 16; 243d4f32367SDan Williams nd_cmd->clear_err_unit = NFIT_TEST_CLEAR_ERR_UNIT; 24439c686b8SVishal Verma 24539c686b8SVishal Verma return 0; 24639c686b8SVishal Verma } 24739c686b8SVishal Verma 248f471f1a7SDan Williams /* 249f471f1a7SDan Williams * Initialize the ars_state to return an ars_result 1 second in the future with 250f471f1a7SDan Williams * a 4K error range in the middle of the requested address range. 251f471f1a7SDan Williams */ 252f471f1a7SDan Williams static void post_ars_status(struct ars_state *ars_state, u64 addr, u64 len) 25339c686b8SVishal Verma { 254f471f1a7SDan Williams struct nd_cmd_ars_status *ars_status; 255f471f1a7SDan Williams struct nd_ars_record *ars_record; 256f471f1a7SDan Williams 257f471f1a7SDan Williams ars_state->deadline = jiffies + 1*HZ; 258f471f1a7SDan Williams ars_status = ars_state->ars_status; 259f471f1a7SDan Williams ars_status->status = 0; 260f471f1a7SDan Williams ars_status->out_length = sizeof(struct nd_cmd_ars_status) 261f471f1a7SDan Williams + sizeof(struct nd_ars_record); 262f471f1a7SDan Williams ars_status->address = addr; 263f471f1a7SDan Williams ars_status->length = len; 264f471f1a7SDan Williams ars_status->type = ND_ARS_PERSISTENT; 265f471f1a7SDan Williams ars_status->num_records = 1; 266f471f1a7SDan Williams ars_record = &ars_status->records[0]; 267f471f1a7SDan Williams ars_record->handle = 0; 268f471f1a7SDan Williams ars_record->err_address = addr + len / 2; 269f471f1a7SDan Williams ars_record->length = SZ_4K; 270f471f1a7SDan Williams } 271f471f1a7SDan Williams 272f471f1a7SDan Williams static int nfit_test_cmd_ars_start(struct ars_state *ars_state, 273f471f1a7SDan Williams struct nd_cmd_ars_start *ars_start, unsigned int buf_len, 274f471f1a7SDan Williams int *cmd_rc) 275f471f1a7SDan Williams { 276f471f1a7SDan Williams if (buf_len < sizeof(*ars_start)) 27739c686b8SVishal Verma return -EINVAL; 27839c686b8SVishal Verma 279f471f1a7SDan Williams spin_lock(&ars_state->lock); 280f471f1a7SDan Williams if (time_before(jiffies, ars_state->deadline)) { 281f471f1a7SDan Williams ars_start->status = NFIT_ARS_START_BUSY; 282f471f1a7SDan Williams *cmd_rc = -EBUSY; 283f471f1a7SDan Williams } else { 284f471f1a7SDan Williams ars_start->status = 0; 285f471f1a7SDan Williams ars_start->scrub_time = 1; 286f471f1a7SDan Williams post_ars_status(ars_state, ars_start->address, 287f471f1a7SDan Williams ars_start->length); 288f471f1a7SDan Williams *cmd_rc = 0; 289f471f1a7SDan Williams } 290f471f1a7SDan Williams spin_unlock(&ars_state->lock); 29139c686b8SVishal Verma 29239c686b8SVishal Verma return 0; 29339c686b8SVishal Verma } 29439c686b8SVishal Verma 295f471f1a7SDan Williams static int nfit_test_cmd_ars_status(struct ars_state *ars_state, 296f471f1a7SDan Williams struct nd_cmd_ars_status *ars_status, unsigned int buf_len, 297f471f1a7SDan Williams int *cmd_rc) 29839c686b8SVishal Verma { 299f471f1a7SDan Williams if (buf_len < ars_state->ars_status->out_length) 30039c686b8SVishal Verma return -EINVAL; 30139c686b8SVishal Verma 302f471f1a7SDan Williams spin_lock(&ars_state->lock); 303f471f1a7SDan Williams if (time_before(jiffies, ars_state->deadline)) { 304f471f1a7SDan Williams memset(ars_status, 0, buf_len); 305f471f1a7SDan Williams ars_status->status = NFIT_ARS_STATUS_BUSY; 306f471f1a7SDan Williams ars_status->out_length = sizeof(*ars_status); 307f471f1a7SDan Williams *cmd_rc = -EBUSY; 308f471f1a7SDan Williams } else { 309f471f1a7SDan Williams memcpy(ars_status, ars_state->ars_status, 310f471f1a7SDan Williams ars_state->ars_status->out_length); 311f471f1a7SDan Williams *cmd_rc = 0; 312f471f1a7SDan Williams } 313f471f1a7SDan Williams spin_unlock(&ars_state->lock); 31439c686b8SVishal Verma return 0; 31539c686b8SVishal Verma } 31639c686b8SVishal Verma 317d4f32367SDan Williams static int nfit_test_cmd_clear_error(struct nd_cmd_clear_error *clear_err, 318d4f32367SDan Williams unsigned int buf_len, int *cmd_rc) 319d4f32367SDan Williams { 320d4f32367SDan Williams const u64 mask = NFIT_TEST_CLEAR_ERR_UNIT - 1; 321d4f32367SDan Williams if (buf_len < sizeof(*clear_err)) 322d4f32367SDan Williams return -EINVAL; 323d4f32367SDan Williams 324d4f32367SDan Williams if ((clear_err->address & mask) || (clear_err->length & mask)) 325d4f32367SDan Williams return -EINVAL; 326d4f32367SDan Williams 327d4f32367SDan Williams /* 328d4f32367SDan Williams * Report 'all clear' success for all commands even though a new 329d4f32367SDan Williams * scrub will find errors again. This is enough to have the 330d4f32367SDan Williams * error removed from the 'badblocks' tracking in the pmem 331d4f32367SDan Williams * driver. 332d4f32367SDan Williams */ 333d4f32367SDan Williams clear_err->status = 0; 334d4f32367SDan Williams clear_err->cleared = clear_err->length; 335d4f32367SDan Williams *cmd_rc = 0; 336d4f32367SDan Williams return 0; 337d4f32367SDan Williams } 338d4f32367SDan Williams 339baa51277SDan Williams static int nfit_test_cmd_smart(struct nd_cmd_smart *smart, unsigned int buf_len) 340baa51277SDan Williams { 341baa51277SDan Williams static const struct nd_smart_payload smart_data = { 342baa51277SDan Williams .flags = ND_SMART_HEALTH_VALID | ND_SMART_TEMP_VALID 343baa51277SDan Williams | ND_SMART_SPARES_VALID | ND_SMART_ALARM_VALID 344baa51277SDan Williams | ND_SMART_USED_VALID | ND_SMART_SHUTDOWN_VALID, 345baa51277SDan Williams .health = ND_SMART_NON_CRITICAL_HEALTH, 346baa51277SDan Williams .temperature = 23 * 16, 347baa51277SDan Williams .spares = 75, 348baa51277SDan Williams .alarm_flags = ND_SMART_SPARE_TRIP | ND_SMART_TEMP_TRIP, 349baa51277SDan Williams .life_used = 5, 350baa51277SDan Williams .shutdown_state = 0, 351baa51277SDan Williams .vendor_size = 0, 352baa51277SDan Williams }; 353baa51277SDan Williams 354baa51277SDan Williams if (buf_len < sizeof(*smart)) 355baa51277SDan Williams return -EINVAL; 356baa51277SDan Williams memcpy(smart->data, &smart_data, sizeof(smart_data)); 357baa51277SDan Williams return 0; 358baa51277SDan Williams } 359baa51277SDan Williams 360baa51277SDan Williams static int nfit_test_cmd_smart_threshold(struct nd_cmd_smart_threshold *smart_t, 361baa51277SDan Williams unsigned int buf_len) 362baa51277SDan Williams { 363baa51277SDan Williams static const struct nd_smart_threshold_payload smart_t_data = { 364baa51277SDan Williams .alarm_control = ND_SMART_SPARE_TRIP | ND_SMART_TEMP_TRIP, 365baa51277SDan Williams .temperature = 40 * 16, 366baa51277SDan Williams .spares = 5, 367baa51277SDan Williams }; 368baa51277SDan Williams 369baa51277SDan Williams if (buf_len < sizeof(*smart_t)) 370baa51277SDan Williams return -EINVAL; 371baa51277SDan Williams memcpy(smart_t->data, &smart_t_data, sizeof(smart_t_data)); 372baa51277SDan Williams return 0; 373baa51277SDan Williams } 374baa51277SDan Williams 37539c686b8SVishal Verma static int nfit_test_ctl(struct nvdimm_bus_descriptor *nd_desc, 37639c686b8SVishal Verma struct nvdimm *nvdimm, unsigned int cmd, void *buf, 377aef25338SDan Williams unsigned int buf_len, int *cmd_rc) 37839c686b8SVishal Verma { 37939c686b8SVishal Verma struct acpi_nfit_desc *acpi_desc = to_acpi_desc(nd_desc); 38039c686b8SVishal Verma struct nfit_test *t = container_of(acpi_desc, typeof(*t), acpi_desc); 3816634fb06SDan Williams unsigned int func = cmd; 382f471f1a7SDan Williams int i, rc = 0, __cmd_rc; 383f471f1a7SDan Williams 384f471f1a7SDan Williams if (!cmd_rc) 385f471f1a7SDan Williams cmd_rc = &__cmd_rc; 386f471f1a7SDan Williams *cmd_rc = 0; 38739c686b8SVishal Verma 38839c686b8SVishal Verma if (nvdimm) { 38939c686b8SVishal Verma struct nfit_mem *nfit_mem = nvdimm_provider_data(nvdimm); 390e3654ecaSDan Williams unsigned long cmd_mask = nvdimm_cmd_mask(nvdimm); 39139c686b8SVishal Verma 3926634fb06SDan Williams if (!nfit_mem) 3936634fb06SDan Williams return -ENOTTY; 3946634fb06SDan Williams 3956634fb06SDan Williams if (cmd == ND_CMD_CALL) { 3966634fb06SDan Williams struct nd_cmd_pkg *call_pkg = buf; 3976634fb06SDan Williams 3986634fb06SDan Williams buf_len = call_pkg->nd_size_in + call_pkg->nd_size_out; 3996634fb06SDan Williams buf = (void *) call_pkg->nd_payload; 4006634fb06SDan Williams func = call_pkg->nd_command; 4016634fb06SDan Williams if (call_pkg->nd_family != nfit_mem->family) 4026634fb06SDan Williams return -ENOTTY; 4036634fb06SDan Williams } 4046634fb06SDan Williams 4056634fb06SDan Williams if (!test_bit(cmd, &cmd_mask) 4066634fb06SDan Williams || !test_bit(func, &nfit_mem->dsm_mask)) 40739c686b8SVishal Verma return -ENOTTY; 40839c686b8SVishal Verma 40939c686b8SVishal Verma /* lookup label space for the given dimm */ 41039c686b8SVishal Verma for (i = 0; i < ARRAY_SIZE(handle); i++) 41139c686b8SVishal Verma if (__to_nfit_memdev(nfit_mem)->device_handle == 41239c686b8SVishal Verma handle[i]) 41339c686b8SVishal Verma break; 41439c686b8SVishal Verma if (i >= ARRAY_SIZE(handle)) 41539c686b8SVishal Verma return -ENXIO; 41639c686b8SVishal Verma 4176634fb06SDan Williams switch (func) { 41839c686b8SVishal Verma case ND_CMD_GET_CONFIG_SIZE: 41939c686b8SVishal Verma rc = nfit_test_cmd_get_config_size(buf, buf_len); 42039c686b8SVishal Verma break; 42139c686b8SVishal Verma case ND_CMD_GET_CONFIG_DATA: 42239c686b8SVishal Verma rc = nfit_test_cmd_get_config_data(buf, buf_len, 42339c686b8SVishal Verma t->label[i]); 42439c686b8SVishal Verma break; 42539c686b8SVishal Verma case ND_CMD_SET_CONFIG_DATA: 42639c686b8SVishal Verma rc = nfit_test_cmd_set_config_data(buf, buf_len, 42739c686b8SVishal Verma t->label[i]); 42839c686b8SVishal Verma break; 429baa51277SDan Williams case ND_CMD_SMART: 430baa51277SDan Williams rc = nfit_test_cmd_smart(buf, buf_len); 431baa51277SDan Williams break; 432baa51277SDan Williams case ND_CMD_SMART_THRESHOLD: 433baa51277SDan Williams rc = nfit_test_cmd_smart_threshold(buf, buf_len); 434*231bf117SDan Williams device_lock(&t->pdev.dev); 435*231bf117SDan Williams __acpi_nvdimm_notify(t->dimm_dev[i], 0x81); 436*231bf117SDan Williams device_unlock(&t->pdev.dev); 437baa51277SDan Williams break; 4386bc75619SDan Williams default: 4396bc75619SDan Williams return -ENOTTY; 4406bc75619SDan Williams } 44139c686b8SVishal Verma } else { 442f471f1a7SDan Williams struct ars_state *ars_state = &t->ars_state; 443f471f1a7SDan Williams 444e3654ecaSDan Williams if (!nd_desc || !test_bit(cmd, &nd_desc->cmd_mask)) 44539c686b8SVishal Verma return -ENOTTY; 44639c686b8SVishal Verma 4476634fb06SDan Williams switch (func) { 44839c686b8SVishal Verma case ND_CMD_ARS_CAP: 44939c686b8SVishal Verma rc = nfit_test_cmd_ars_cap(buf, buf_len); 45039c686b8SVishal Verma break; 45139c686b8SVishal Verma case ND_CMD_ARS_START: 452f471f1a7SDan Williams rc = nfit_test_cmd_ars_start(ars_state, buf, buf_len, 453f471f1a7SDan Williams cmd_rc); 45439c686b8SVishal Verma break; 45539c686b8SVishal Verma case ND_CMD_ARS_STATUS: 456f471f1a7SDan Williams rc = nfit_test_cmd_ars_status(ars_state, buf, buf_len, 457f471f1a7SDan Williams cmd_rc); 45839c686b8SVishal Verma break; 459d4f32367SDan Williams case ND_CMD_CLEAR_ERROR: 460d4f32367SDan Williams rc = nfit_test_cmd_clear_error(buf, buf_len, cmd_rc); 461d4f32367SDan Williams break; 46239c686b8SVishal Verma default: 46339c686b8SVishal Verma return -ENOTTY; 46439c686b8SVishal Verma } 46539c686b8SVishal Verma } 4666bc75619SDan Williams 4676bc75619SDan Williams return rc; 4686bc75619SDan Williams } 4696bc75619SDan Williams 4706bc75619SDan Williams static DEFINE_SPINLOCK(nfit_test_lock); 4716bc75619SDan Williams static struct nfit_test *instances[NUM_NFITS]; 4726bc75619SDan Williams 4736bc75619SDan Williams static void release_nfit_res(void *data) 4746bc75619SDan Williams { 4756bc75619SDan Williams struct nfit_test_resource *nfit_res = data; 4766bc75619SDan Williams struct resource *res = nfit_res->res; 4776bc75619SDan Williams 4786bc75619SDan Williams spin_lock(&nfit_test_lock); 4796bc75619SDan Williams list_del(&nfit_res->list); 4806bc75619SDan Williams spin_unlock(&nfit_test_lock); 4816bc75619SDan Williams 4826bc75619SDan Williams vfree(nfit_res->buf); 4836bc75619SDan Williams kfree(res); 4846bc75619SDan Williams kfree(nfit_res); 4856bc75619SDan Williams } 4866bc75619SDan Williams 4876bc75619SDan Williams static void *__test_alloc(struct nfit_test *t, size_t size, dma_addr_t *dma, 4886bc75619SDan Williams void *buf) 4896bc75619SDan Williams { 4906bc75619SDan Williams struct device *dev = &t->pdev.dev; 4916bc75619SDan Williams struct resource *res = kzalloc(sizeof(*res) * 2, GFP_KERNEL); 4926bc75619SDan Williams struct nfit_test_resource *nfit_res = kzalloc(sizeof(*nfit_res), 4936bc75619SDan Williams GFP_KERNEL); 4946bc75619SDan Williams int rc; 4956bc75619SDan Williams 4966bc75619SDan Williams if (!res || !buf || !nfit_res) 4976bc75619SDan Williams goto err; 4986bc75619SDan Williams rc = devm_add_action(dev, release_nfit_res, nfit_res); 4996bc75619SDan Williams if (rc) 5006bc75619SDan Williams goto err; 5016bc75619SDan Williams INIT_LIST_HEAD(&nfit_res->list); 5026bc75619SDan Williams memset(buf, 0, size); 5036bc75619SDan Williams nfit_res->dev = dev; 5046bc75619SDan Williams nfit_res->buf = buf; 5056bc75619SDan Williams nfit_res->res = res; 5066bc75619SDan Williams res->start = *dma; 5076bc75619SDan Williams res->end = *dma + size - 1; 5086bc75619SDan Williams res->name = "NFIT"; 5096bc75619SDan Williams spin_lock(&nfit_test_lock); 5106bc75619SDan Williams list_add(&nfit_res->list, &t->resources); 5116bc75619SDan Williams spin_unlock(&nfit_test_lock); 5126bc75619SDan Williams 5136bc75619SDan Williams return nfit_res->buf; 5146bc75619SDan Williams err: 515ee8520feSDan Williams if (buf) 5166bc75619SDan Williams vfree(buf); 5176bc75619SDan Williams kfree(res); 5186bc75619SDan Williams kfree(nfit_res); 5196bc75619SDan Williams return NULL; 5206bc75619SDan Williams } 5216bc75619SDan Williams 5226bc75619SDan Williams static void *test_alloc(struct nfit_test *t, size_t size, dma_addr_t *dma) 5236bc75619SDan Williams { 5246bc75619SDan Williams void *buf = vmalloc(size); 5256bc75619SDan Williams 5266bc75619SDan Williams *dma = (unsigned long) buf; 5276bc75619SDan Williams return __test_alloc(t, size, dma, buf); 5286bc75619SDan Williams } 5296bc75619SDan Williams 5306bc75619SDan Williams static struct nfit_test_resource *nfit_test_lookup(resource_size_t addr) 5316bc75619SDan Williams { 5326bc75619SDan Williams int i; 5336bc75619SDan Williams 5346bc75619SDan Williams for (i = 0; i < ARRAY_SIZE(instances); i++) { 5356bc75619SDan Williams struct nfit_test_resource *n, *nfit_res = NULL; 5366bc75619SDan Williams struct nfit_test *t = instances[i]; 5376bc75619SDan Williams 5386bc75619SDan Williams if (!t) 5396bc75619SDan Williams continue; 5406bc75619SDan Williams spin_lock(&nfit_test_lock); 5416bc75619SDan Williams list_for_each_entry(n, &t->resources, list) { 5426bc75619SDan Williams if (addr >= n->res->start && (addr < n->res->start 5436bc75619SDan Williams + resource_size(n->res))) { 5446bc75619SDan Williams nfit_res = n; 5456bc75619SDan Williams break; 5466bc75619SDan Williams } else if (addr >= (unsigned long) n->buf 5476bc75619SDan Williams && (addr < (unsigned long) n->buf 5486bc75619SDan Williams + resource_size(n->res))) { 5496bc75619SDan Williams nfit_res = n; 5506bc75619SDan Williams break; 5516bc75619SDan Williams } 5526bc75619SDan Williams } 5536bc75619SDan Williams spin_unlock(&nfit_test_lock); 5546bc75619SDan Williams if (nfit_res) 5556bc75619SDan Williams return nfit_res; 5566bc75619SDan Williams } 5576bc75619SDan Williams 5586bc75619SDan Williams return NULL; 5596bc75619SDan Williams } 5606bc75619SDan Williams 561f471f1a7SDan Williams static int ars_state_init(struct device *dev, struct ars_state *ars_state) 562f471f1a7SDan Williams { 563f471f1a7SDan Williams ars_state->ars_status = devm_kzalloc(dev, 564f471f1a7SDan Williams sizeof(struct nd_cmd_ars_status) 565f471f1a7SDan Williams + sizeof(struct nd_ars_record) * NFIT_TEST_ARS_RECORDS, 566f471f1a7SDan Williams GFP_KERNEL); 567f471f1a7SDan Williams if (!ars_state->ars_status) 568f471f1a7SDan Williams return -ENOMEM; 569f471f1a7SDan Williams spin_lock_init(&ars_state->lock); 570f471f1a7SDan Williams return 0; 571f471f1a7SDan Williams } 572f471f1a7SDan Williams 573*231bf117SDan Williams static void put_dimms(void *data) 574*231bf117SDan Williams { 575*231bf117SDan Williams struct device **dimm_dev = data; 576*231bf117SDan Williams int i; 577*231bf117SDan Williams 578*231bf117SDan Williams for (i = 0; i < NUM_DCR; i++) 579*231bf117SDan Williams if (dimm_dev[i]) 580*231bf117SDan Williams device_unregister(dimm_dev[i]); 581*231bf117SDan Williams } 582*231bf117SDan Williams 583*231bf117SDan Williams static struct class *nfit_test_dimm; 584*231bf117SDan Williams 5856bc75619SDan Williams static int nfit_test0_alloc(struct nfit_test *t) 5866bc75619SDan Williams { 5876b577c9dSLinda Knippers size_t nfit_size = sizeof(struct acpi_nfit_system_address) * NUM_SPA 5886bc75619SDan Williams + sizeof(struct acpi_nfit_memory_map) * NUM_MEM 5896bc75619SDan Williams + sizeof(struct acpi_nfit_control_region) * NUM_DCR 5903b87356fSDan Williams + offsetof(struct acpi_nfit_control_region, 5913b87356fSDan Williams window_size) * NUM_DCR 5929d27a87eSDan Williams + sizeof(struct acpi_nfit_data_region) * NUM_BDW 59385d3fa02SDan Williams + (sizeof(struct acpi_nfit_flush_address) 59485d3fa02SDan Williams + sizeof(u64) * NUM_HINTS) * NUM_DCR; 5956bc75619SDan Williams int i; 5966bc75619SDan Williams 5976bc75619SDan Williams t->nfit_buf = test_alloc(t, nfit_size, &t->nfit_dma); 5986bc75619SDan Williams if (!t->nfit_buf) 5996bc75619SDan Williams return -ENOMEM; 6006bc75619SDan Williams t->nfit_size = nfit_size; 6016bc75619SDan Williams 602ee8520feSDan Williams t->spa_set[0] = test_alloc(t, SPA0_SIZE, &t->spa_set_dma[0]); 6036bc75619SDan Williams if (!t->spa_set[0]) 6046bc75619SDan Williams return -ENOMEM; 6056bc75619SDan Williams 606ee8520feSDan Williams t->spa_set[1] = test_alloc(t, SPA1_SIZE, &t->spa_set_dma[1]); 6076bc75619SDan Williams if (!t->spa_set[1]) 6086bc75619SDan Williams return -ENOMEM; 6096bc75619SDan Williams 610ee8520feSDan Williams t->spa_set[2] = test_alloc(t, SPA0_SIZE, &t->spa_set_dma[2]); 61120985164SVishal Verma if (!t->spa_set[2]) 61220985164SVishal Verma return -ENOMEM; 61320985164SVishal Verma 6146bc75619SDan Williams for (i = 0; i < NUM_DCR; i++) { 6156bc75619SDan Williams t->dimm[i] = test_alloc(t, DIMM_SIZE, &t->dimm_dma[i]); 6166bc75619SDan Williams if (!t->dimm[i]) 6176bc75619SDan Williams return -ENOMEM; 6186bc75619SDan Williams 6196bc75619SDan Williams t->label[i] = test_alloc(t, LABEL_SIZE, &t->label_dma[i]); 6206bc75619SDan Williams if (!t->label[i]) 6216bc75619SDan Williams return -ENOMEM; 6226bc75619SDan Williams sprintf(t->label[i], "label%d", i); 6239d27a87eSDan Williams 62485d3fa02SDan Williams t->flush[i] = test_alloc(t, sizeof(u64) * NUM_HINTS, 62585d3fa02SDan Williams &t->flush_dma[i]); 6269d27a87eSDan Williams if (!t->flush[i]) 6279d27a87eSDan Williams return -ENOMEM; 6286bc75619SDan Williams } 6296bc75619SDan Williams 6306bc75619SDan Williams for (i = 0; i < NUM_DCR; i++) { 6316bc75619SDan Williams t->dcr[i] = test_alloc(t, LABEL_SIZE, &t->dcr_dma[i]); 6326bc75619SDan Williams if (!t->dcr[i]) 6336bc75619SDan Williams return -ENOMEM; 6346bc75619SDan Williams } 6356bc75619SDan Williams 636c14a868aSDan Williams t->_fit = test_alloc(t, sizeof(union acpi_object **), &t->_fit_dma); 637c14a868aSDan Williams if (!t->_fit) 638c14a868aSDan Williams return -ENOMEM; 639c14a868aSDan Williams 640*231bf117SDan Williams if (devm_add_action_or_reset(&t->pdev.dev, put_dimms, t->dimm_dev)) 641*231bf117SDan Williams return -ENOMEM; 642*231bf117SDan Williams for (i = 0; i < NUM_DCR; i++) { 643*231bf117SDan Williams t->dimm_dev[i] = device_create(nfit_test_dimm, &t->pdev.dev, 0, 644*231bf117SDan Williams NULL, "test_dimm%d", i); 645*231bf117SDan Williams if (!t->dimm_dev[i]) 646*231bf117SDan Williams return -ENOMEM; 647*231bf117SDan Williams } 648*231bf117SDan Williams 649f471f1a7SDan Williams return ars_state_init(&t->pdev.dev, &t->ars_state); 6506bc75619SDan Williams } 6516bc75619SDan Williams 6526bc75619SDan Williams static int nfit_test1_alloc(struct nfit_test *t) 6536bc75619SDan Williams { 6547bfe97c7SDan Williams size_t nfit_size = sizeof(struct acpi_nfit_system_address) * 2 6556bc75619SDan Williams + sizeof(struct acpi_nfit_memory_map) 6563b87356fSDan Williams + offsetof(struct acpi_nfit_control_region, window_size); 6576bc75619SDan Williams 6586bc75619SDan Williams t->nfit_buf = test_alloc(t, nfit_size, &t->nfit_dma); 6596bc75619SDan Williams if (!t->nfit_buf) 6606bc75619SDan Williams return -ENOMEM; 6616bc75619SDan Williams t->nfit_size = nfit_size; 6626bc75619SDan Williams 663ee8520feSDan Williams t->spa_set[0] = test_alloc(t, SPA2_SIZE, &t->spa_set_dma[0]); 6646bc75619SDan Williams if (!t->spa_set[0]) 6656bc75619SDan Williams return -ENOMEM; 6666bc75619SDan Williams 6677bfe97c7SDan Williams t->spa_set[1] = test_alloc(t, SPA_VCD_SIZE, &t->spa_set_dma[1]); 6687bfe97c7SDan Williams if (!t->spa_set[1]) 6697bfe97c7SDan Williams return -ENOMEM; 6707bfe97c7SDan Williams 671f471f1a7SDan Williams return ars_state_init(&t->pdev.dev, &t->ars_state); 6726bc75619SDan Williams } 6736bc75619SDan Williams 6745dc68e55SDan Williams static void dcr_common_init(struct acpi_nfit_control_region *dcr) 6755dc68e55SDan Williams { 6765dc68e55SDan Williams dcr->vendor_id = 0xabcd; 6775dc68e55SDan Williams dcr->device_id = 0; 6785dc68e55SDan Williams dcr->revision_id = 1; 6795dc68e55SDan Williams dcr->valid_fields = 1; 6805dc68e55SDan Williams dcr->manufacturing_location = 0xa; 6815dc68e55SDan Williams dcr->manufacturing_date = cpu_to_be16(2016); 6825dc68e55SDan Williams } 6835dc68e55SDan Williams 6846bc75619SDan Williams static void nfit_test0_setup(struct nfit_test *t) 6856bc75619SDan Williams { 68685d3fa02SDan Williams const int flush_hint_size = sizeof(struct acpi_nfit_flush_address) 68785d3fa02SDan Williams + (sizeof(u64) * NUM_HINTS); 6886bc75619SDan Williams struct acpi_nfit_desc *acpi_desc; 6896bc75619SDan Williams struct acpi_nfit_memory_map *memdev; 6906bc75619SDan Williams void *nfit_buf = t->nfit_buf; 6916bc75619SDan Williams struct acpi_nfit_system_address *spa; 6926bc75619SDan Williams struct acpi_nfit_control_region *dcr; 6936bc75619SDan Williams struct acpi_nfit_data_region *bdw; 6949d27a87eSDan Williams struct acpi_nfit_flush_address *flush; 69585d3fa02SDan Williams unsigned int offset, i; 6966bc75619SDan Williams 6976bc75619SDan Williams /* 6986bc75619SDan Williams * spa0 (interleave first half of dimm0 and dimm1, note storage 6996bc75619SDan Williams * does not actually alias the related block-data-window 7006bc75619SDan Williams * regions) 7016bc75619SDan Williams */ 7026b577c9dSLinda Knippers spa = nfit_buf; 7036bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7046bc75619SDan Williams spa->header.length = sizeof(*spa); 7056bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_PM), 16); 7066bc75619SDan Williams spa->range_index = 0+1; 7076bc75619SDan Williams spa->address = t->spa_set_dma[0]; 7086bc75619SDan Williams spa->length = SPA0_SIZE; 7096bc75619SDan Williams 7106bc75619SDan Williams /* 7116bc75619SDan Williams * spa1 (interleave last half of the 4 DIMMS, note storage 7126bc75619SDan Williams * does not actually alias the related block-data-window 7136bc75619SDan Williams * regions) 7146bc75619SDan Williams */ 7156b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa); 7166bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7176bc75619SDan Williams spa->header.length = sizeof(*spa); 7186bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_PM), 16); 7196bc75619SDan Williams spa->range_index = 1+1; 7206bc75619SDan Williams spa->address = t->spa_set_dma[1]; 7216bc75619SDan Williams spa->length = SPA1_SIZE; 7226bc75619SDan Williams 7236bc75619SDan Williams /* spa2 (dcr0) dimm0 */ 7246b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 2; 7256bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7266bc75619SDan Williams spa->header.length = sizeof(*spa); 7276bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_DCR), 16); 7286bc75619SDan Williams spa->range_index = 2+1; 7296bc75619SDan Williams spa->address = t->dcr_dma[0]; 7306bc75619SDan Williams spa->length = DCR_SIZE; 7316bc75619SDan Williams 7326bc75619SDan Williams /* spa3 (dcr1) dimm1 */ 7336b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 3; 7346bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7356bc75619SDan Williams spa->header.length = sizeof(*spa); 7366bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_DCR), 16); 7376bc75619SDan Williams spa->range_index = 3+1; 7386bc75619SDan Williams spa->address = t->dcr_dma[1]; 7396bc75619SDan Williams spa->length = DCR_SIZE; 7406bc75619SDan Williams 7416bc75619SDan Williams /* spa4 (dcr2) dimm2 */ 7426b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 4; 7436bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7446bc75619SDan Williams spa->header.length = sizeof(*spa); 7456bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_DCR), 16); 7466bc75619SDan Williams spa->range_index = 4+1; 7476bc75619SDan Williams spa->address = t->dcr_dma[2]; 7486bc75619SDan Williams spa->length = DCR_SIZE; 7496bc75619SDan Williams 7506bc75619SDan Williams /* spa5 (dcr3) dimm3 */ 7516b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 5; 7526bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7536bc75619SDan Williams spa->header.length = sizeof(*spa); 7546bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_DCR), 16); 7556bc75619SDan Williams spa->range_index = 5+1; 7566bc75619SDan Williams spa->address = t->dcr_dma[3]; 7576bc75619SDan Williams spa->length = DCR_SIZE; 7586bc75619SDan Williams 7596bc75619SDan Williams /* spa6 (bdw for dcr0) dimm0 */ 7606b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 6; 7616bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7626bc75619SDan Williams spa->header.length = sizeof(*spa); 7636bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_BDW), 16); 7646bc75619SDan Williams spa->range_index = 6+1; 7656bc75619SDan Williams spa->address = t->dimm_dma[0]; 7666bc75619SDan Williams spa->length = DIMM_SIZE; 7676bc75619SDan Williams 7686bc75619SDan Williams /* spa7 (bdw for dcr1) dimm1 */ 7696b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 7; 7706bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7716bc75619SDan Williams spa->header.length = sizeof(*spa); 7726bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_BDW), 16); 7736bc75619SDan Williams spa->range_index = 7+1; 7746bc75619SDan Williams spa->address = t->dimm_dma[1]; 7756bc75619SDan Williams spa->length = DIMM_SIZE; 7766bc75619SDan Williams 7776bc75619SDan Williams /* spa8 (bdw for dcr2) dimm2 */ 7786b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 8; 7796bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7806bc75619SDan Williams spa->header.length = sizeof(*spa); 7816bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_BDW), 16); 7826bc75619SDan Williams spa->range_index = 8+1; 7836bc75619SDan Williams spa->address = t->dimm_dma[2]; 7846bc75619SDan Williams spa->length = DIMM_SIZE; 7856bc75619SDan Williams 7866bc75619SDan Williams /* spa9 (bdw for dcr3) dimm3 */ 7876b577c9dSLinda Knippers spa = nfit_buf + sizeof(*spa) * 9; 7886bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 7896bc75619SDan Williams spa->header.length = sizeof(*spa); 7906bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_BDW), 16); 7916bc75619SDan Williams spa->range_index = 9+1; 7926bc75619SDan Williams spa->address = t->dimm_dma[3]; 7936bc75619SDan Williams spa->length = DIMM_SIZE; 7946bc75619SDan Williams 7956b577c9dSLinda Knippers offset = sizeof(*spa) * 10; 7966bc75619SDan Williams /* mem-region0 (spa0, dimm0) */ 7976bc75619SDan Williams memdev = nfit_buf + offset; 7986bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 7996bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8006bc75619SDan Williams memdev->device_handle = handle[0]; 8016bc75619SDan Williams memdev->physical_id = 0; 8026bc75619SDan Williams memdev->region_id = 0; 8036bc75619SDan Williams memdev->range_index = 0+1; 8043b87356fSDan Williams memdev->region_index = 4+1; 8056bc75619SDan Williams memdev->region_size = SPA0_SIZE/2; 8066bc75619SDan Williams memdev->region_offset = t->spa_set_dma[0]; 8076bc75619SDan Williams memdev->address = 0; 8086bc75619SDan Williams memdev->interleave_index = 0; 8096bc75619SDan Williams memdev->interleave_ways = 2; 8106bc75619SDan Williams 8116bc75619SDan Williams /* mem-region1 (spa0, dimm1) */ 8126bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map); 8136bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 8146bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8156bc75619SDan Williams memdev->device_handle = handle[1]; 8166bc75619SDan Williams memdev->physical_id = 1; 8176bc75619SDan Williams memdev->region_id = 0; 8186bc75619SDan Williams memdev->range_index = 0+1; 8193b87356fSDan Williams memdev->region_index = 5+1; 8206bc75619SDan Williams memdev->region_size = SPA0_SIZE/2; 8216bc75619SDan Williams memdev->region_offset = t->spa_set_dma[0] + SPA0_SIZE/2; 8226bc75619SDan Williams memdev->address = 0; 8236bc75619SDan Williams memdev->interleave_index = 0; 8246bc75619SDan Williams memdev->interleave_ways = 2; 8256bc75619SDan Williams 8266bc75619SDan Williams /* mem-region2 (spa1, dimm0) */ 8276bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 2; 8286bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 8296bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8306bc75619SDan Williams memdev->device_handle = handle[0]; 8316bc75619SDan Williams memdev->physical_id = 0; 8326bc75619SDan Williams memdev->region_id = 1; 8336bc75619SDan Williams memdev->range_index = 1+1; 8343b87356fSDan Williams memdev->region_index = 4+1; 8356bc75619SDan Williams memdev->region_size = SPA1_SIZE/4; 8366bc75619SDan Williams memdev->region_offset = t->spa_set_dma[1]; 8376bc75619SDan Williams memdev->address = SPA0_SIZE/2; 8386bc75619SDan Williams memdev->interleave_index = 0; 8396bc75619SDan Williams memdev->interleave_ways = 4; 8406bc75619SDan Williams 8416bc75619SDan Williams /* mem-region3 (spa1, dimm1) */ 8426bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 3; 8436bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 8446bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8456bc75619SDan Williams memdev->device_handle = handle[1]; 8466bc75619SDan Williams memdev->physical_id = 1; 8476bc75619SDan Williams memdev->region_id = 1; 8486bc75619SDan Williams memdev->range_index = 1+1; 8493b87356fSDan Williams memdev->region_index = 5+1; 8506bc75619SDan Williams memdev->region_size = SPA1_SIZE/4; 8516bc75619SDan Williams memdev->region_offset = t->spa_set_dma[1] + SPA1_SIZE/4; 8526bc75619SDan Williams memdev->address = SPA0_SIZE/2; 8536bc75619SDan Williams memdev->interleave_index = 0; 8546bc75619SDan Williams memdev->interleave_ways = 4; 8556bc75619SDan Williams 8566bc75619SDan Williams /* mem-region4 (spa1, dimm2) */ 8576bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 4; 8586bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 8596bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8606bc75619SDan Williams memdev->device_handle = handle[2]; 8616bc75619SDan Williams memdev->physical_id = 2; 8626bc75619SDan Williams memdev->region_id = 0; 8636bc75619SDan Williams memdev->range_index = 1+1; 8643b87356fSDan Williams memdev->region_index = 6+1; 8656bc75619SDan Williams memdev->region_size = SPA1_SIZE/4; 8666bc75619SDan Williams memdev->region_offset = t->spa_set_dma[1] + 2*SPA1_SIZE/4; 8676bc75619SDan Williams memdev->address = SPA0_SIZE/2; 8686bc75619SDan Williams memdev->interleave_index = 0; 8696bc75619SDan Williams memdev->interleave_ways = 4; 8706bc75619SDan Williams 8716bc75619SDan Williams /* mem-region5 (spa1, dimm3) */ 8726bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 5; 8736bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 8746bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8756bc75619SDan Williams memdev->device_handle = handle[3]; 8766bc75619SDan Williams memdev->physical_id = 3; 8776bc75619SDan Williams memdev->region_id = 0; 8786bc75619SDan Williams memdev->range_index = 1+1; 8793b87356fSDan Williams memdev->region_index = 7+1; 8806bc75619SDan Williams memdev->region_size = SPA1_SIZE/4; 8816bc75619SDan Williams memdev->region_offset = t->spa_set_dma[1] + 3*SPA1_SIZE/4; 8826bc75619SDan Williams memdev->address = SPA0_SIZE/2; 8836bc75619SDan Williams memdev->interleave_index = 0; 8846bc75619SDan Williams memdev->interleave_ways = 4; 8856bc75619SDan Williams 8866bc75619SDan Williams /* mem-region6 (spa/dcr0, dimm0) */ 8876bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 6; 8886bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 8896bc75619SDan Williams memdev->header.length = sizeof(*memdev); 8906bc75619SDan Williams memdev->device_handle = handle[0]; 8916bc75619SDan Williams memdev->physical_id = 0; 8926bc75619SDan Williams memdev->region_id = 0; 8936bc75619SDan Williams memdev->range_index = 2+1; 8946bc75619SDan Williams memdev->region_index = 0+1; 8956bc75619SDan Williams memdev->region_size = 0; 8966bc75619SDan Williams memdev->region_offset = 0; 8976bc75619SDan Williams memdev->address = 0; 8986bc75619SDan Williams memdev->interleave_index = 0; 8996bc75619SDan Williams memdev->interleave_ways = 1; 9006bc75619SDan Williams 9016bc75619SDan Williams /* mem-region7 (spa/dcr1, dimm1) */ 9026bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 7; 9036bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9046bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9056bc75619SDan Williams memdev->device_handle = handle[1]; 9066bc75619SDan Williams memdev->physical_id = 1; 9076bc75619SDan Williams memdev->region_id = 0; 9086bc75619SDan Williams memdev->range_index = 3+1; 9096bc75619SDan Williams memdev->region_index = 1+1; 9106bc75619SDan Williams memdev->region_size = 0; 9116bc75619SDan Williams memdev->region_offset = 0; 9126bc75619SDan Williams memdev->address = 0; 9136bc75619SDan Williams memdev->interleave_index = 0; 9146bc75619SDan Williams memdev->interleave_ways = 1; 9156bc75619SDan Williams 9166bc75619SDan Williams /* mem-region8 (spa/dcr2, dimm2) */ 9176bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 8; 9186bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9196bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9206bc75619SDan Williams memdev->device_handle = handle[2]; 9216bc75619SDan Williams memdev->physical_id = 2; 9226bc75619SDan Williams memdev->region_id = 0; 9236bc75619SDan Williams memdev->range_index = 4+1; 9246bc75619SDan Williams memdev->region_index = 2+1; 9256bc75619SDan Williams memdev->region_size = 0; 9266bc75619SDan Williams memdev->region_offset = 0; 9276bc75619SDan Williams memdev->address = 0; 9286bc75619SDan Williams memdev->interleave_index = 0; 9296bc75619SDan Williams memdev->interleave_ways = 1; 9306bc75619SDan Williams 9316bc75619SDan Williams /* mem-region9 (spa/dcr3, dimm3) */ 9326bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 9; 9336bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9346bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9356bc75619SDan Williams memdev->device_handle = handle[3]; 9366bc75619SDan Williams memdev->physical_id = 3; 9376bc75619SDan Williams memdev->region_id = 0; 9386bc75619SDan Williams memdev->range_index = 5+1; 9396bc75619SDan Williams memdev->region_index = 3+1; 9406bc75619SDan Williams memdev->region_size = 0; 9416bc75619SDan Williams memdev->region_offset = 0; 9426bc75619SDan Williams memdev->address = 0; 9436bc75619SDan Williams memdev->interleave_index = 0; 9446bc75619SDan Williams memdev->interleave_ways = 1; 9456bc75619SDan Williams 9466bc75619SDan Williams /* mem-region10 (spa/bdw0, dimm0) */ 9476bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 10; 9486bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9496bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9506bc75619SDan Williams memdev->device_handle = handle[0]; 9516bc75619SDan Williams memdev->physical_id = 0; 9526bc75619SDan Williams memdev->region_id = 0; 9536bc75619SDan Williams memdev->range_index = 6+1; 9546bc75619SDan Williams memdev->region_index = 0+1; 9556bc75619SDan Williams memdev->region_size = 0; 9566bc75619SDan Williams memdev->region_offset = 0; 9576bc75619SDan Williams memdev->address = 0; 9586bc75619SDan Williams memdev->interleave_index = 0; 9596bc75619SDan Williams memdev->interleave_ways = 1; 9606bc75619SDan Williams 9616bc75619SDan Williams /* mem-region11 (spa/bdw1, dimm1) */ 9626bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 11; 9636bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9646bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9656bc75619SDan Williams memdev->device_handle = handle[1]; 9666bc75619SDan Williams memdev->physical_id = 1; 9676bc75619SDan Williams memdev->region_id = 0; 9686bc75619SDan Williams memdev->range_index = 7+1; 9696bc75619SDan Williams memdev->region_index = 1+1; 9706bc75619SDan Williams memdev->region_size = 0; 9716bc75619SDan Williams memdev->region_offset = 0; 9726bc75619SDan Williams memdev->address = 0; 9736bc75619SDan Williams memdev->interleave_index = 0; 9746bc75619SDan Williams memdev->interleave_ways = 1; 9756bc75619SDan Williams 9766bc75619SDan Williams /* mem-region12 (spa/bdw2, dimm2) */ 9776bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 12; 9786bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9796bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9806bc75619SDan Williams memdev->device_handle = handle[2]; 9816bc75619SDan Williams memdev->physical_id = 2; 9826bc75619SDan Williams memdev->region_id = 0; 9836bc75619SDan Williams memdev->range_index = 8+1; 9846bc75619SDan Williams memdev->region_index = 2+1; 9856bc75619SDan Williams memdev->region_size = 0; 9866bc75619SDan Williams memdev->region_offset = 0; 9876bc75619SDan Williams memdev->address = 0; 9886bc75619SDan Williams memdev->interleave_index = 0; 9896bc75619SDan Williams memdev->interleave_ways = 1; 9906bc75619SDan Williams 9916bc75619SDan Williams /* mem-region13 (spa/dcr3, dimm3) */ 9926bc75619SDan Williams memdev = nfit_buf + offset + sizeof(struct acpi_nfit_memory_map) * 13; 9936bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 9946bc75619SDan Williams memdev->header.length = sizeof(*memdev); 9956bc75619SDan Williams memdev->device_handle = handle[3]; 9966bc75619SDan Williams memdev->physical_id = 3; 9976bc75619SDan Williams memdev->region_id = 0; 9986bc75619SDan Williams memdev->range_index = 9+1; 9996bc75619SDan Williams memdev->region_index = 3+1; 10006bc75619SDan Williams memdev->region_size = 0; 10016bc75619SDan Williams memdev->region_offset = 0; 10026bc75619SDan Williams memdev->address = 0; 10036bc75619SDan Williams memdev->interleave_index = 0; 10046bc75619SDan Williams memdev->interleave_ways = 1; 10056bc75619SDan Williams 10066bc75619SDan Williams offset = offset + sizeof(struct acpi_nfit_memory_map) * 14; 10073b87356fSDan Williams /* dcr-descriptor0: blk */ 10086bc75619SDan Williams dcr = nfit_buf + offset; 10096bc75619SDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10106bc75619SDan Williams dcr->header.length = sizeof(struct acpi_nfit_control_region); 10116bc75619SDan Williams dcr->region_index = 0+1; 10125dc68e55SDan Williams dcr_common_init(dcr); 10136bc75619SDan Williams dcr->serial_number = ~handle[0]; 1014be26f9aeSDan Williams dcr->code = NFIT_FIC_BLK; 10156bc75619SDan Williams dcr->windows = 1; 10166bc75619SDan Williams dcr->window_size = DCR_SIZE; 10176bc75619SDan Williams dcr->command_offset = 0; 10186bc75619SDan Williams dcr->command_size = 8; 10196bc75619SDan Williams dcr->status_offset = 8; 10206bc75619SDan Williams dcr->status_size = 4; 10216bc75619SDan Williams 10223b87356fSDan Williams /* dcr-descriptor1: blk */ 10236bc75619SDan Williams dcr = nfit_buf + offset + sizeof(struct acpi_nfit_control_region); 10246bc75619SDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10256bc75619SDan Williams dcr->header.length = sizeof(struct acpi_nfit_control_region); 10266bc75619SDan Williams dcr->region_index = 1+1; 10275dc68e55SDan Williams dcr_common_init(dcr); 10286bc75619SDan Williams dcr->serial_number = ~handle[1]; 1029be26f9aeSDan Williams dcr->code = NFIT_FIC_BLK; 10306bc75619SDan Williams dcr->windows = 1; 10316bc75619SDan Williams dcr->window_size = DCR_SIZE; 10326bc75619SDan Williams dcr->command_offset = 0; 10336bc75619SDan Williams dcr->command_size = 8; 10346bc75619SDan Williams dcr->status_offset = 8; 10356bc75619SDan Williams dcr->status_size = 4; 10366bc75619SDan Williams 10373b87356fSDan Williams /* dcr-descriptor2: blk */ 10386bc75619SDan Williams dcr = nfit_buf + offset + sizeof(struct acpi_nfit_control_region) * 2; 10396bc75619SDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10406bc75619SDan Williams dcr->header.length = sizeof(struct acpi_nfit_control_region); 10416bc75619SDan Williams dcr->region_index = 2+1; 10425dc68e55SDan Williams dcr_common_init(dcr); 10436bc75619SDan Williams dcr->serial_number = ~handle[2]; 1044be26f9aeSDan Williams dcr->code = NFIT_FIC_BLK; 10456bc75619SDan Williams dcr->windows = 1; 10466bc75619SDan Williams dcr->window_size = DCR_SIZE; 10476bc75619SDan Williams dcr->command_offset = 0; 10486bc75619SDan Williams dcr->command_size = 8; 10496bc75619SDan Williams dcr->status_offset = 8; 10506bc75619SDan Williams dcr->status_size = 4; 10516bc75619SDan Williams 10523b87356fSDan Williams /* dcr-descriptor3: blk */ 10536bc75619SDan Williams dcr = nfit_buf + offset + sizeof(struct acpi_nfit_control_region) * 3; 10546bc75619SDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10556bc75619SDan Williams dcr->header.length = sizeof(struct acpi_nfit_control_region); 10566bc75619SDan Williams dcr->region_index = 3+1; 10575dc68e55SDan Williams dcr_common_init(dcr); 10586bc75619SDan Williams dcr->serial_number = ~handle[3]; 1059be26f9aeSDan Williams dcr->code = NFIT_FIC_BLK; 10606bc75619SDan Williams dcr->windows = 1; 10616bc75619SDan Williams dcr->window_size = DCR_SIZE; 10626bc75619SDan Williams dcr->command_offset = 0; 10636bc75619SDan Williams dcr->command_size = 8; 10646bc75619SDan Williams dcr->status_offset = 8; 10656bc75619SDan Williams dcr->status_size = 4; 10666bc75619SDan Williams 10676bc75619SDan Williams offset = offset + sizeof(struct acpi_nfit_control_region) * 4; 10683b87356fSDan Williams /* dcr-descriptor0: pmem */ 10693b87356fSDan Williams dcr = nfit_buf + offset; 10703b87356fSDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10713b87356fSDan Williams dcr->header.length = offsetof(struct acpi_nfit_control_region, 10723b87356fSDan Williams window_size); 10733b87356fSDan Williams dcr->region_index = 4+1; 10745dc68e55SDan Williams dcr_common_init(dcr); 10753b87356fSDan Williams dcr->serial_number = ~handle[0]; 10763b87356fSDan Williams dcr->code = NFIT_FIC_BYTEN; 10773b87356fSDan Williams dcr->windows = 0; 10783b87356fSDan Williams 10793b87356fSDan Williams /* dcr-descriptor1: pmem */ 10803b87356fSDan Williams dcr = nfit_buf + offset + offsetof(struct acpi_nfit_control_region, 10813b87356fSDan Williams window_size); 10823b87356fSDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10833b87356fSDan Williams dcr->header.length = offsetof(struct acpi_nfit_control_region, 10843b87356fSDan Williams window_size); 10853b87356fSDan Williams dcr->region_index = 5+1; 10865dc68e55SDan Williams dcr_common_init(dcr); 10873b87356fSDan Williams dcr->serial_number = ~handle[1]; 10883b87356fSDan Williams dcr->code = NFIT_FIC_BYTEN; 10893b87356fSDan Williams dcr->windows = 0; 10903b87356fSDan Williams 10913b87356fSDan Williams /* dcr-descriptor2: pmem */ 10923b87356fSDan Williams dcr = nfit_buf + offset + offsetof(struct acpi_nfit_control_region, 10933b87356fSDan Williams window_size) * 2; 10943b87356fSDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 10953b87356fSDan Williams dcr->header.length = offsetof(struct acpi_nfit_control_region, 10963b87356fSDan Williams window_size); 10973b87356fSDan Williams dcr->region_index = 6+1; 10985dc68e55SDan Williams dcr_common_init(dcr); 10993b87356fSDan Williams dcr->serial_number = ~handle[2]; 11003b87356fSDan Williams dcr->code = NFIT_FIC_BYTEN; 11013b87356fSDan Williams dcr->windows = 0; 11023b87356fSDan Williams 11033b87356fSDan Williams /* dcr-descriptor3: pmem */ 11043b87356fSDan Williams dcr = nfit_buf + offset + offsetof(struct acpi_nfit_control_region, 11053b87356fSDan Williams window_size) * 3; 11063b87356fSDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 11073b87356fSDan Williams dcr->header.length = offsetof(struct acpi_nfit_control_region, 11083b87356fSDan Williams window_size); 11093b87356fSDan Williams dcr->region_index = 7+1; 11105dc68e55SDan Williams dcr_common_init(dcr); 11113b87356fSDan Williams dcr->serial_number = ~handle[3]; 11123b87356fSDan Williams dcr->code = NFIT_FIC_BYTEN; 11133b87356fSDan Williams dcr->windows = 0; 11143b87356fSDan Williams 11153b87356fSDan Williams offset = offset + offsetof(struct acpi_nfit_control_region, 11163b87356fSDan Williams window_size) * 4; 11176bc75619SDan Williams /* bdw0 (spa/dcr0, dimm0) */ 11186bc75619SDan Williams bdw = nfit_buf + offset; 11196bc75619SDan Williams bdw->header.type = ACPI_NFIT_TYPE_DATA_REGION; 11206bc75619SDan Williams bdw->header.length = sizeof(struct acpi_nfit_data_region); 11216bc75619SDan Williams bdw->region_index = 0+1; 11226bc75619SDan Williams bdw->windows = 1; 11236bc75619SDan Williams bdw->offset = 0; 11246bc75619SDan Williams bdw->size = BDW_SIZE; 11256bc75619SDan Williams bdw->capacity = DIMM_SIZE; 11266bc75619SDan Williams bdw->start_address = 0; 11276bc75619SDan Williams 11286bc75619SDan Williams /* bdw1 (spa/dcr1, dimm1) */ 11296bc75619SDan Williams bdw = nfit_buf + offset + sizeof(struct acpi_nfit_data_region); 11306bc75619SDan Williams bdw->header.type = ACPI_NFIT_TYPE_DATA_REGION; 11316bc75619SDan Williams bdw->header.length = sizeof(struct acpi_nfit_data_region); 11326bc75619SDan Williams bdw->region_index = 1+1; 11336bc75619SDan Williams bdw->windows = 1; 11346bc75619SDan Williams bdw->offset = 0; 11356bc75619SDan Williams bdw->size = BDW_SIZE; 11366bc75619SDan Williams bdw->capacity = DIMM_SIZE; 11376bc75619SDan Williams bdw->start_address = 0; 11386bc75619SDan Williams 11396bc75619SDan Williams /* bdw2 (spa/dcr2, dimm2) */ 11406bc75619SDan Williams bdw = nfit_buf + offset + sizeof(struct acpi_nfit_data_region) * 2; 11416bc75619SDan Williams bdw->header.type = ACPI_NFIT_TYPE_DATA_REGION; 11426bc75619SDan Williams bdw->header.length = sizeof(struct acpi_nfit_data_region); 11436bc75619SDan Williams bdw->region_index = 2+1; 11446bc75619SDan Williams bdw->windows = 1; 11456bc75619SDan Williams bdw->offset = 0; 11466bc75619SDan Williams bdw->size = BDW_SIZE; 11476bc75619SDan Williams bdw->capacity = DIMM_SIZE; 11486bc75619SDan Williams bdw->start_address = 0; 11496bc75619SDan Williams 11506bc75619SDan Williams /* bdw3 (spa/dcr3, dimm3) */ 11516bc75619SDan Williams bdw = nfit_buf + offset + sizeof(struct acpi_nfit_data_region) * 3; 11526bc75619SDan Williams bdw->header.type = ACPI_NFIT_TYPE_DATA_REGION; 11536bc75619SDan Williams bdw->header.length = sizeof(struct acpi_nfit_data_region); 11546bc75619SDan Williams bdw->region_index = 3+1; 11556bc75619SDan Williams bdw->windows = 1; 11566bc75619SDan Williams bdw->offset = 0; 11576bc75619SDan Williams bdw->size = BDW_SIZE; 11586bc75619SDan Williams bdw->capacity = DIMM_SIZE; 11596bc75619SDan Williams bdw->start_address = 0; 11606bc75619SDan Williams 11619d27a87eSDan Williams offset = offset + sizeof(struct acpi_nfit_data_region) * 4; 11629d27a87eSDan Williams /* flush0 (dimm0) */ 11639d27a87eSDan Williams flush = nfit_buf + offset; 11649d27a87eSDan Williams flush->header.type = ACPI_NFIT_TYPE_FLUSH_ADDRESS; 116585d3fa02SDan Williams flush->header.length = flush_hint_size; 11669d27a87eSDan Williams flush->device_handle = handle[0]; 116785d3fa02SDan Williams flush->hint_count = NUM_HINTS; 116885d3fa02SDan Williams for (i = 0; i < NUM_HINTS; i++) 116985d3fa02SDan Williams flush->hint_address[i] = t->flush_dma[0] + i * sizeof(u64); 11709d27a87eSDan Williams 11719d27a87eSDan Williams /* flush1 (dimm1) */ 117285d3fa02SDan Williams flush = nfit_buf + offset + flush_hint_size * 1; 11739d27a87eSDan Williams flush->header.type = ACPI_NFIT_TYPE_FLUSH_ADDRESS; 117485d3fa02SDan Williams flush->header.length = flush_hint_size; 11759d27a87eSDan Williams flush->device_handle = handle[1]; 117685d3fa02SDan Williams flush->hint_count = NUM_HINTS; 117785d3fa02SDan Williams for (i = 0; i < NUM_HINTS; i++) 117885d3fa02SDan Williams flush->hint_address[i] = t->flush_dma[1] + i * sizeof(u64); 11799d27a87eSDan Williams 11809d27a87eSDan Williams /* flush2 (dimm2) */ 118185d3fa02SDan Williams flush = nfit_buf + offset + flush_hint_size * 2; 11829d27a87eSDan Williams flush->header.type = ACPI_NFIT_TYPE_FLUSH_ADDRESS; 118385d3fa02SDan Williams flush->header.length = flush_hint_size; 11849d27a87eSDan Williams flush->device_handle = handle[2]; 118585d3fa02SDan Williams flush->hint_count = NUM_HINTS; 118685d3fa02SDan Williams for (i = 0; i < NUM_HINTS; i++) 118785d3fa02SDan Williams flush->hint_address[i] = t->flush_dma[2] + i * sizeof(u64); 11889d27a87eSDan Williams 11899d27a87eSDan Williams /* flush3 (dimm3) */ 119085d3fa02SDan Williams flush = nfit_buf + offset + flush_hint_size * 3; 11919d27a87eSDan Williams flush->header.type = ACPI_NFIT_TYPE_FLUSH_ADDRESS; 119285d3fa02SDan Williams flush->header.length = flush_hint_size; 11939d27a87eSDan Williams flush->device_handle = handle[3]; 119485d3fa02SDan Williams flush->hint_count = NUM_HINTS; 119585d3fa02SDan Williams for (i = 0; i < NUM_HINTS; i++) 119685d3fa02SDan Williams flush->hint_address[i] = t->flush_dma[3] + i * sizeof(u64); 11979d27a87eSDan Williams 119820985164SVishal Verma if (t->setup_hotplug) { 119985d3fa02SDan Williams offset = offset + flush_hint_size * 4; 12003b87356fSDan Williams /* dcr-descriptor4: blk */ 120120985164SVishal Verma dcr = nfit_buf + offset; 120220985164SVishal Verma dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 120320985164SVishal Verma dcr->header.length = sizeof(struct acpi_nfit_control_region); 12043b87356fSDan Williams dcr->region_index = 8+1; 12055dc68e55SDan Williams dcr_common_init(dcr); 120620985164SVishal Verma dcr->serial_number = ~handle[4]; 1207be26f9aeSDan Williams dcr->code = NFIT_FIC_BLK; 120820985164SVishal Verma dcr->windows = 1; 120920985164SVishal Verma dcr->window_size = DCR_SIZE; 121020985164SVishal Verma dcr->command_offset = 0; 121120985164SVishal Verma dcr->command_size = 8; 121220985164SVishal Verma dcr->status_offset = 8; 121320985164SVishal Verma dcr->status_size = 4; 121420985164SVishal Verma 121520985164SVishal Verma offset = offset + sizeof(struct acpi_nfit_control_region); 12163b87356fSDan Williams /* dcr-descriptor4: pmem */ 12173b87356fSDan Williams dcr = nfit_buf + offset; 12183b87356fSDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 12193b87356fSDan Williams dcr->header.length = offsetof(struct acpi_nfit_control_region, 12203b87356fSDan Williams window_size); 12213b87356fSDan Williams dcr->region_index = 9+1; 12225dc68e55SDan Williams dcr_common_init(dcr); 12233b87356fSDan Williams dcr->serial_number = ~handle[4]; 12243b87356fSDan Williams dcr->code = NFIT_FIC_BYTEN; 12253b87356fSDan Williams dcr->windows = 0; 12263b87356fSDan Williams 12273b87356fSDan Williams offset = offset + offsetof(struct acpi_nfit_control_region, 12283b87356fSDan Williams window_size); 122920985164SVishal Verma /* bdw4 (spa/dcr4, dimm4) */ 123020985164SVishal Verma bdw = nfit_buf + offset; 123120985164SVishal Verma bdw->header.type = ACPI_NFIT_TYPE_DATA_REGION; 123220985164SVishal Verma bdw->header.length = sizeof(struct acpi_nfit_data_region); 12333b87356fSDan Williams bdw->region_index = 8+1; 123420985164SVishal Verma bdw->windows = 1; 123520985164SVishal Verma bdw->offset = 0; 123620985164SVishal Verma bdw->size = BDW_SIZE; 123720985164SVishal Verma bdw->capacity = DIMM_SIZE; 123820985164SVishal Verma bdw->start_address = 0; 123920985164SVishal Verma 124020985164SVishal Verma offset = offset + sizeof(struct acpi_nfit_data_region); 124120985164SVishal Verma /* spa10 (dcr4) dimm4 */ 124220985164SVishal Verma spa = nfit_buf + offset; 124320985164SVishal Verma spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 124420985164SVishal Verma spa->header.length = sizeof(*spa); 124520985164SVishal Verma memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_DCR), 16); 124620985164SVishal Verma spa->range_index = 10+1; 124720985164SVishal Verma spa->address = t->dcr_dma[4]; 124820985164SVishal Verma spa->length = DCR_SIZE; 124920985164SVishal Verma 125020985164SVishal Verma /* 125120985164SVishal Verma * spa11 (single-dimm interleave for hotplug, note storage 125220985164SVishal Verma * does not actually alias the related block-data-window 125320985164SVishal Verma * regions) 125420985164SVishal Verma */ 125520985164SVishal Verma spa = nfit_buf + offset + sizeof(*spa); 125620985164SVishal Verma spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 125720985164SVishal Verma spa->header.length = sizeof(*spa); 125820985164SVishal Verma memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_PM), 16); 125920985164SVishal Verma spa->range_index = 11+1; 126020985164SVishal Verma spa->address = t->spa_set_dma[2]; 126120985164SVishal Verma spa->length = SPA0_SIZE; 126220985164SVishal Verma 126320985164SVishal Verma /* spa12 (bdw for dcr4) dimm4 */ 126420985164SVishal Verma spa = nfit_buf + offset + sizeof(*spa) * 2; 126520985164SVishal Verma spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 126620985164SVishal Verma spa->header.length = sizeof(*spa); 126720985164SVishal Verma memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_BDW), 16); 126820985164SVishal Verma spa->range_index = 12+1; 126920985164SVishal Verma spa->address = t->dimm_dma[4]; 127020985164SVishal Verma spa->length = DIMM_SIZE; 127120985164SVishal Verma 127220985164SVishal Verma offset = offset + sizeof(*spa) * 3; 127320985164SVishal Verma /* mem-region14 (spa/dcr4, dimm4) */ 127420985164SVishal Verma memdev = nfit_buf + offset; 127520985164SVishal Verma memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 127620985164SVishal Verma memdev->header.length = sizeof(*memdev); 127720985164SVishal Verma memdev->device_handle = handle[4]; 127820985164SVishal Verma memdev->physical_id = 4; 127920985164SVishal Verma memdev->region_id = 0; 128020985164SVishal Verma memdev->range_index = 10+1; 12813b87356fSDan Williams memdev->region_index = 8+1; 128220985164SVishal Verma memdev->region_size = 0; 128320985164SVishal Verma memdev->region_offset = 0; 128420985164SVishal Verma memdev->address = 0; 128520985164SVishal Verma memdev->interleave_index = 0; 128620985164SVishal Verma memdev->interleave_ways = 1; 128720985164SVishal Verma 128820985164SVishal Verma /* mem-region15 (spa0, dimm4) */ 128920985164SVishal Verma memdev = nfit_buf + offset + 129020985164SVishal Verma sizeof(struct acpi_nfit_memory_map); 129120985164SVishal Verma memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 129220985164SVishal Verma memdev->header.length = sizeof(*memdev); 129320985164SVishal Verma memdev->device_handle = handle[4]; 129420985164SVishal Verma memdev->physical_id = 4; 129520985164SVishal Verma memdev->region_id = 0; 129620985164SVishal Verma memdev->range_index = 11+1; 12973b87356fSDan Williams memdev->region_index = 9+1; 129820985164SVishal Verma memdev->region_size = SPA0_SIZE; 129920985164SVishal Verma memdev->region_offset = t->spa_set_dma[2]; 130020985164SVishal Verma memdev->address = 0; 130120985164SVishal Verma memdev->interleave_index = 0; 130220985164SVishal Verma memdev->interleave_ways = 1; 130320985164SVishal Verma 13043b87356fSDan Williams /* mem-region16 (spa/bdw4, dimm4) */ 130520985164SVishal Verma memdev = nfit_buf + offset + 130620985164SVishal Verma sizeof(struct acpi_nfit_memory_map) * 2; 130720985164SVishal Verma memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 130820985164SVishal Verma memdev->header.length = sizeof(*memdev); 130920985164SVishal Verma memdev->device_handle = handle[4]; 131020985164SVishal Verma memdev->physical_id = 4; 131120985164SVishal Verma memdev->region_id = 0; 131220985164SVishal Verma memdev->range_index = 12+1; 13133b87356fSDan Williams memdev->region_index = 8+1; 131420985164SVishal Verma memdev->region_size = 0; 131520985164SVishal Verma memdev->region_offset = 0; 131620985164SVishal Verma memdev->address = 0; 131720985164SVishal Verma memdev->interleave_index = 0; 131820985164SVishal Verma memdev->interleave_ways = 1; 131920985164SVishal Verma 132020985164SVishal Verma offset = offset + sizeof(struct acpi_nfit_memory_map) * 3; 132120985164SVishal Verma /* flush3 (dimm4) */ 132220985164SVishal Verma flush = nfit_buf + offset; 132320985164SVishal Verma flush->header.type = ACPI_NFIT_TYPE_FLUSH_ADDRESS; 132485d3fa02SDan Williams flush->header.length = flush_hint_size; 132520985164SVishal Verma flush->device_handle = handle[4]; 132685d3fa02SDan Williams flush->hint_count = NUM_HINTS; 132785d3fa02SDan Williams for (i = 0; i < NUM_HINTS; i++) 132885d3fa02SDan Williams flush->hint_address[i] = t->flush_dma[4] 132985d3fa02SDan Williams + i * sizeof(u64); 133020985164SVishal Verma } 133120985164SVishal Verma 1332f471f1a7SDan Williams post_ars_status(&t->ars_state, t->spa_set_dma[0], SPA0_SIZE); 1333f471f1a7SDan Williams 13346bc75619SDan Williams acpi_desc = &t->acpi_desc; 1335e3654ecaSDan Williams set_bit(ND_CMD_GET_CONFIG_SIZE, &acpi_desc->dimm_cmd_force_en); 1336e3654ecaSDan Williams set_bit(ND_CMD_GET_CONFIG_DATA, &acpi_desc->dimm_cmd_force_en); 1337e3654ecaSDan Williams set_bit(ND_CMD_SET_CONFIG_DATA, &acpi_desc->dimm_cmd_force_en); 13381f716d05SDan Williams set_bit(ND_CMD_SMART, &acpi_desc->dimm_cmd_force_en); 1339e3654ecaSDan Williams set_bit(ND_CMD_ARS_CAP, &acpi_desc->bus_cmd_force_en); 1340e3654ecaSDan Williams set_bit(ND_CMD_ARS_START, &acpi_desc->bus_cmd_force_en); 1341e3654ecaSDan Williams set_bit(ND_CMD_ARS_STATUS, &acpi_desc->bus_cmd_force_en); 1342e3654ecaSDan Williams set_bit(ND_CMD_CLEAR_ERROR, &acpi_desc->bus_cmd_force_en); 13431f716d05SDan Williams set_bit(ND_CMD_SMART_THRESHOLD, &acpi_desc->dimm_cmd_force_en); 13446bc75619SDan Williams } 13456bc75619SDan Williams 13466bc75619SDan Williams static void nfit_test1_setup(struct nfit_test *t) 13476bc75619SDan Williams { 13486b577c9dSLinda Knippers size_t offset; 13496bc75619SDan Williams void *nfit_buf = t->nfit_buf; 13506bc75619SDan Williams struct acpi_nfit_memory_map *memdev; 13516bc75619SDan Williams struct acpi_nfit_control_region *dcr; 13526bc75619SDan Williams struct acpi_nfit_system_address *spa; 1353d26f73f0SDan Williams struct acpi_nfit_desc *acpi_desc; 13546bc75619SDan Williams 13556b577c9dSLinda Knippers offset = 0; 13566bc75619SDan Williams /* spa0 (flat range with no bdw aliasing) */ 13576bc75619SDan Williams spa = nfit_buf + offset; 13586bc75619SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 13596bc75619SDan Williams spa->header.length = sizeof(*spa); 13606bc75619SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_PM), 16); 13616bc75619SDan Williams spa->range_index = 0+1; 13626bc75619SDan Williams spa->address = t->spa_set_dma[0]; 13636bc75619SDan Williams spa->length = SPA2_SIZE; 13646bc75619SDan Williams 13657bfe97c7SDan Williams /* virtual cd region */ 13667bfe97c7SDan Williams spa = nfit_buf + sizeof(*spa); 13677bfe97c7SDan Williams spa->header.type = ACPI_NFIT_TYPE_SYSTEM_ADDRESS; 13687bfe97c7SDan Williams spa->header.length = sizeof(*spa); 13697bfe97c7SDan Williams memcpy(spa->range_guid, to_nfit_uuid(NFIT_SPA_VCD), 16); 13707bfe97c7SDan Williams spa->range_index = 0; 13717bfe97c7SDan Williams spa->address = t->spa_set_dma[1]; 13727bfe97c7SDan Williams spa->length = SPA_VCD_SIZE; 13737bfe97c7SDan Williams 13747bfe97c7SDan Williams offset += sizeof(*spa) * 2; 13756bc75619SDan Williams /* mem-region0 (spa0, dimm0) */ 13766bc75619SDan Williams memdev = nfit_buf + offset; 13776bc75619SDan Williams memdev->header.type = ACPI_NFIT_TYPE_MEMORY_MAP; 13786bc75619SDan Williams memdev->header.length = sizeof(*memdev); 13796bc75619SDan Williams memdev->device_handle = 0; 13806bc75619SDan Williams memdev->physical_id = 0; 13816bc75619SDan Williams memdev->region_id = 0; 13826bc75619SDan Williams memdev->range_index = 0+1; 13836bc75619SDan Williams memdev->region_index = 0+1; 13846bc75619SDan Williams memdev->region_size = SPA2_SIZE; 13856bc75619SDan Williams memdev->region_offset = 0; 13866bc75619SDan Williams memdev->address = 0; 13876bc75619SDan Williams memdev->interleave_index = 0; 13886bc75619SDan Williams memdev->interleave_ways = 1; 138958138820SDan Williams memdev->flags = ACPI_NFIT_MEM_SAVE_FAILED | ACPI_NFIT_MEM_RESTORE_FAILED 139058138820SDan Williams | ACPI_NFIT_MEM_FLUSH_FAILED | ACPI_NFIT_MEM_HEALTH_OBSERVED 1391f4295796SDan Williams | ACPI_NFIT_MEM_NOT_ARMED; 13926bc75619SDan Williams 13936bc75619SDan Williams offset += sizeof(*memdev); 13946bc75619SDan Williams /* dcr-descriptor0 */ 13956bc75619SDan Williams dcr = nfit_buf + offset; 13966bc75619SDan Williams dcr->header.type = ACPI_NFIT_TYPE_CONTROL_REGION; 13973b87356fSDan Williams dcr->header.length = offsetof(struct acpi_nfit_control_region, 13983b87356fSDan Williams window_size); 13996bc75619SDan Williams dcr->region_index = 0+1; 14005dc68e55SDan Williams dcr_common_init(dcr); 14016bc75619SDan Williams dcr->serial_number = ~0; 1402be26f9aeSDan Williams dcr->code = NFIT_FIC_BYTE; 14036bc75619SDan Williams dcr->windows = 0; 1404d26f73f0SDan Williams 1405f471f1a7SDan Williams post_ars_status(&t->ars_state, t->spa_set_dma[0], SPA2_SIZE); 1406f471f1a7SDan Williams 1407d26f73f0SDan Williams acpi_desc = &t->acpi_desc; 1408e3654ecaSDan Williams set_bit(ND_CMD_ARS_CAP, &acpi_desc->bus_cmd_force_en); 1409e3654ecaSDan Williams set_bit(ND_CMD_ARS_START, &acpi_desc->bus_cmd_force_en); 1410e3654ecaSDan Williams set_bit(ND_CMD_ARS_STATUS, &acpi_desc->bus_cmd_force_en); 1411e3654ecaSDan Williams set_bit(ND_CMD_CLEAR_ERROR, &acpi_desc->bus_cmd_force_en); 14126bc75619SDan Williams } 14136bc75619SDan Williams 14146bc75619SDan Williams static int nfit_test_blk_do_io(struct nd_blk_region *ndbr, resource_size_t dpa, 14156bc75619SDan Williams void *iobuf, u64 len, int rw) 14166bc75619SDan Williams { 14176bc75619SDan Williams struct nfit_blk *nfit_blk = ndbr->blk_provider_data; 14186bc75619SDan Williams struct nfit_blk_mmio *mmio = &nfit_blk->mmio[BDW]; 14196bc75619SDan Williams struct nd_region *nd_region = &ndbr->nd_region; 14206bc75619SDan Williams unsigned int lane; 14216bc75619SDan Williams 14226bc75619SDan Williams lane = nd_region_acquire_lane(nd_region); 14236bc75619SDan Williams if (rw) 142467a3e8feSRoss Zwisler memcpy(mmio->addr.base + dpa, iobuf, len); 142567a3e8feSRoss Zwisler else { 142667a3e8feSRoss Zwisler memcpy(iobuf, mmio->addr.base + dpa, len); 142767a3e8feSRoss Zwisler 142867a3e8feSRoss Zwisler /* give us some some coverage of the mmio_flush_range() API */ 142967a3e8feSRoss Zwisler mmio_flush_range(mmio->addr.base + dpa, len); 143067a3e8feSRoss Zwisler } 14316bc75619SDan Williams nd_region_release_lane(nd_region, lane); 14326bc75619SDan Williams 14336bc75619SDan Williams return 0; 14346bc75619SDan Williams } 14356bc75619SDan Williams 14366bc75619SDan Williams static int nfit_test_probe(struct platform_device *pdev) 14376bc75619SDan Williams { 14386bc75619SDan Williams struct nvdimm_bus_descriptor *nd_desc; 14396bc75619SDan Williams struct acpi_nfit_desc *acpi_desc; 14406bc75619SDan Williams struct device *dev = &pdev->dev; 14416bc75619SDan Williams struct nfit_test *nfit_test; 1442*231bf117SDan Williams struct nfit_mem *nfit_mem; 1443c14a868aSDan Williams union acpi_object *obj; 14446bc75619SDan Williams int rc; 14456bc75619SDan Williams 14466bc75619SDan Williams nfit_test = to_nfit_test(&pdev->dev); 14476bc75619SDan Williams 14486bc75619SDan Williams /* common alloc */ 14496bc75619SDan Williams if (nfit_test->num_dcr) { 14506bc75619SDan Williams int num = nfit_test->num_dcr; 14516bc75619SDan Williams 14526bc75619SDan Williams nfit_test->dimm = devm_kcalloc(dev, num, sizeof(void *), 14536bc75619SDan Williams GFP_KERNEL); 14546bc75619SDan Williams nfit_test->dimm_dma = devm_kcalloc(dev, num, sizeof(dma_addr_t), 14556bc75619SDan Williams GFP_KERNEL); 14569d27a87eSDan Williams nfit_test->flush = devm_kcalloc(dev, num, sizeof(void *), 14579d27a87eSDan Williams GFP_KERNEL); 14589d27a87eSDan Williams nfit_test->flush_dma = devm_kcalloc(dev, num, sizeof(dma_addr_t), 14599d27a87eSDan Williams GFP_KERNEL); 14606bc75619SDan Williams nfit_test->label = devm_kcalloc(dev, num, sizeof(void *), 14616bc75619SDan Williams GFP_KERNEL); 14626bc75619SDan Williams nfit_test->label_dma = devm_kcalloc(dev, num, 14636bc75619SDan Williams sizeof(dma_addr_t), GFP_KERNEL); 14646bc75619SDan Williams nfit_test->dcr = devm_kcalloc(dev, num, 14656bc75619SDan Williams sizeof(struct nfit_test_dcr *), GFP_KERNEL); 14666bc75619SDan Williams nfit_test->dcr_dma = devm_kcalloc(dev, num, 14676bc75619SDan Williams sizeof(dma_addr_t), GFP_KERNEL); 14686bc75619SDan Williams if (nfit_test->dimm && nfit_test->dimm_dma && nfit_test->label 14696bc75619SDan Williams && nfit_test->label_dma && nfit_test->dcr 14709d27a87eSDan Williams && nfit_test->dcr_dma && nfit_test->flush 14719d27a87eSDan Williams && nfit_test->flush_dma) 14726bc75619SDan Williams /* pass */; 14736bc75619SDan Williams else 14746bc75619SDan Williams return -ENOMEM; 14756bc75619SDan Williams } 14766bc75619SDan Williams 14776bc75619SDan Williams if (nfit_test->num_pm) { 14786bc75619SDan Williams int num = nfit_test->num_pm; 14796bc75619SDan Williams 14806bc75619SDan Williams nfit_test->spa_set = devm_kcalloc(dev, num, sizeof(void *), 14816bc75619SDan Williams GFP_KERNEL); 14826bc75619SDan Williams nfit_test->spa_set_dma = devm_kcalloc(dev, num, 14836bc75619SDan Williams sizeof(dma_addr_t), GFP_KERNEL); 14846bc75619SDan Williams if (nfit_test->spa_set && nfit_test->spa_set_dma) 14856bc75619SDan Williams /* pass */; 14866bc75619SDan Williams else 14876bc75619SDan Williams return -ENOMEM; 14886bc75619SDan Williams } 14896bc75619SDan Williams 14906bc75619SDan Williams /* per-nfit specific alloc */ 14916bc75619SDan Williams if (nfit_test->alloc(nfit_test)) 14926bc75619SDan Williams return -ENOMEM; 14936bc75619SDan Williams 14946bc75619SDan Williams nfit_test->setup(nfit_test); 14956bc75619SDan Williams acpi_desc = &nfit_test->acpi_desc; 1496a61fe6f7SDan Williams acpi_nfit_desc_init(acpi_desc, &pdev->dev); 14976bc75619SDan Williams acpi_desc->blk_do_io = nfit_test_blk_do_io; 14986bc75619SDan Williams nd_desc = &acpi_desc->nd_desc; 1499a61fe6f7SDan Williams nd_desc->provider_name = NULL; 1500bc9775d8SDan Williams nd_desc->module = THIS_MODULE; 1501a61fe6f7SDan Williams nd_desc->ndctl = nfit_test_ctl; 15026bc75619SDan Williams 1503e7a11b44SDan Williams rc = acpi_nfit_init(acpi_desc, nfit_test->nfit_buf, 1504e7a11b44SDan Williams nfit_test->nfit_size); 150558cd71b4SDan Williams if (rc) 150620985164SVishal Verma return rc; 150720985164SVishal Verma 150820985164SVishal Verma if (nfit_test->setup != nfit_test0_setup) 150920985164SVishal Verma return 0; 151020985164SVishal Verma 151120985164SVishal Verma nfit_test->setup_hotplug = 1; 151220985164SVishal Verma nfit_test->setup(nfit_test); 151320985164SVishal Verma 1514c14a868aSDan Williams obj = kzalloc(sizeof(*obj), GFP_KERNEL); 1515c14a868aSDan Williams if (!obj) 1516c14a868aSDan Williams return -ENOMEM; 1517c14a868aSDan Williams obj->type = ACPI_TYPE_BUFFER; 1518c14a868aSDan Williams obj->buffer.length = nfit_test->nfit_size; 1519c14a868aSDan Williams obj->buffer.pointer = nfit_test->nfit_buf; 1520c14a868aSDan Williams *(nfit_test->_fit) = obj; 1521c14a868aSDan Williams __acpi_nfit_notify(&pdev->dev, nfit_test, 0x80); 1522*231bf117SDan Williams 1523*231bf117SDan Williams /* associate dimm devices with nfit_mem data for notification testing */ 1524*231bf117SDan Williams mutex_lock(&acpi_desc->init_mutex); 1525*231bf117SDan Williams list_for_each_entry(nfit_mem, &acpi_desc->dimms, list) { 1526*231bf117SDan Williams u32 nfit_handle = __to_nfit_memdev(nfit_mem)->device_handle; 1527*231bf117SDan Williams int i; 1528*231bf117SDan Williams 1529*231bf117SDan Williams for (i = 0; i < NUM_DCR; i++) 1530*231bf117SDan Williams if (nfit_handle == handle[i]) 1531*231bf117SDan Williams dev_set_drvdata(nfit_test->dimm_dev[i], 1532*231bf117SDan Williams nfit_mem); 1533*231bf117SDan Williams } 1534*231bf117SDan Williams mutex_unlock(&acpi_desc->init_mutex); 1535*231bf117SDan Williams 15366bc75619SDan Williams return 0; 15376bc75619SDan Williams } 15386bc75619SDan Williams 15396bc75619SDan Williams static int nfit_test_remove(struct platform_device *pdev) 15406bc75619SDan Williams { 15416bc75619SDan Williams return 0; 15426bc75619SDan Williams } 15436bc75619SDan Williams 15446bc75619SDan Williams static void nfit_test_release(struct device *dev) 15456bc75619SDan Williams { 15466bc75619SDan Williams struct nfit_test *nfit_test = to_nfit_test(dev); 15476bc75619SDan Williams 15486bc75619SDan Williams kfree(nfit_test); 15496bc75619SDan Williams } 15506bc75619SDan Williams 15516bc75619SDan Williams static const struct platform_device_id nfit_test_id[] = { 15526bc75619SDan Williams { KBUILD_MODNAME }, 15536bc75619SDan Williams { }, 15546bc75619SDan Williams }; 15556bc75619SDan Williams 15566bc75619SDan Williams static struct platform_driver nfit_test_driver = { 15576bc75619SDan Williams .probe = nfit_test_probe, 15586bc75619SDan Williams .remove = nfit_test_remove, 15596bc75619SDan Williams .driver = { 15606bc75619SDan Williams .name = KBUILD_MODNAME, 15616bc75619SDan Williams }, 15626bc75619SDan Williams .id_table = nfit_test_id, 15636bc75619SDan Williams }; 15646bc75619SDan Williams 15656bc75619SDan Williams static __init int nfit_test_init(void) 15666bc75619SDan Williams { 15676bc75619SDan Williams int rc, i; 15686bc75619SDan Williams 1569*231bf117SDan Williams nfit_test_dimm = class_create(THIS_MODULE, "nfit_test_dimm"); 1570*231bf117SDan Williams if (IS_ERR(nfit_test_dimm)) 1571*231bf117SDan Williams return PTR_ERR(nfit_test_dimm); 1572*231bf117SDan Williams 15736bc75619SDan Williams nfit_test_setup(nfit_test_lookup); 15746bc75619SDan Williams 15756bc75619SDan Williams for (i = 0; i < NUM_NFITS; i++) { 15766bc75619SDan Williams struct nfit_test *nfit_test; 15776bc75619SDan Williams struct platform_device *pdev; 15786bc75619SDan Williams 15796bc75619SDan Williams nfit_test = kzalloc(sizeof(*nfit_test), GFP_KERNEL); 15806bc75619SDan Williams if (!nfit_test) { 15816bc75619SDan Williams rc = -ENOMEM; 15826bc75619SDan Williams goto err_register; 15836bc75619SDan Williams } 15846bc75619SDan Williams INIT_LIST_HEAD(&nfit_test->resources); 15856bc75619SDan Williams switch (i) { 15866bc75619SDan Williams case 0: 15876bc75619SDan Williams nfit_test->num_pm = NUM_PM; 15886bc75619SDan Williams nfit_test->num_dcr = NUM_DCR; 15896bc75619SDan Williams nfit_test->alloc = nfit_test0_alloc; 15906bc75619SDan Williams nfit_test->setup = nfit_test0_setup; 15916bc75619SDan Williams break; 15926bc75619SDan Williams case 1: 15936bc75619SDan Williams nfit_test->num_pm = 1; 15946bc75619SDan Williams nfit_test->alloc = nfit_test1_alloc; 15956bc75619SDan Williams nfit_test->setup = nfit_test1_setup; 15966bc75619SDan Williams break; 15976bc75619SDan Williams default: 15986bc75619SDan Williams rc = -EINVAL; 15996bc75619SDan Williams goto err_register; 16006bc75619SDan Williams } 16016bc75619SDan Williams pdev = &nfit_test->pdev; 16026bc75619SDan Williams pdev->name = KBUILD_MODNAME; 16036bc75619SDan Williams pdev->id = i; 16046bc75619SDan Williams pdev->dev.release = nfit_test_release; 16056bc75619SDan Williams rc = platform_device_register(pdev); 16066bc75619SDan Williams if (rc) { 16076bc75619SDan Williams put_device(&pdev->dev); 16086bc75619SDan Williams goto err_register; 16096bc75619SDan Williams } 16106bc75619SDan Williams 16116bc75619SDan Williams rc = dma_coerce_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(64)); 16126bc75619SDan Williams if (rc) 16136bc75619SDan Williams goto err_register; 16146bc75619SDan Williams 16156bc75619SDan Williams instances[i] = nfit_test; 16166bc75619SDan Williams } 16176bc75619SDan Williams 16186bc75619SDan Williams rc = platform_driver_register(&nfit_test_driver); 16196bc75619SDan Williams if (rc) 16206bc75619SDan Williams goto err_register; 16216bc75619SDan Williams return 0; 16226bc75619SDan Williams 16236bc75619SDan Williams err_register: 16246bc75619SDan Williams for (i = 0; i < NUM_NFITS; i++) 16256bc75619SDan Williams if (instances[i]) 16266bc75619SDan Williams platform_device_unregister(&instances[i]->pdev); 16276bc75619SDan Williams nfit_test_teardown(); 16286bc75619SDan Williams return rc; 16296bc75619SDan Williams } 16306bc75619SDan Williams 16316bc75619SDan Williams static __exit void nfit_test_exit(void) 16326bc75619SDan Williams { 16336bc75619SDan Williams int i; 16346bc75619SDan Williams 16356bc75619SDan Williams platform_driver_unregister(&nfit_test_driver); 16366bc75619SDan Williams for (i = 0; i < NUM_NFITS; i++) 16376bc75619SDan Williams platform_device_unregister(&instances[i]->pdev); 16386bc75619SDan Williams nfit_test_teardown(); 1639*231bf117SDan Williams class_destroy(nfit_test_dimm); 16406bc75619SDan Williams } 16416bc75619SDan Williams 16426bc75619SDan Williams module_init(nfit_test_init); 16436bc75619SDan Williams module_exit(nfit_test_exit); 16446bc75619SDan Williams MODULE_LICENSE("GPL v2"); 16456bc75619SDan Williams MODULE_AUTHOR("Intel Corporation"); 1646