blob: f8fa4dec8f718352954b66efd31944c9338e95b2 [file] [log] [blame]
Simon Glass42bf7db2019-12-08 17:40:19 -07001// SPDX-License-Identifier: GPL-2.0+
2/*
3 * Copyright 2019 Google LLC
4 * Written by Simon Glass <sjg@chromium.org>
5 */
6
7#include <common.h>
8#include <acpi_s3.h>
9#include <binman.h>
10#include <dm.h>
11#include <irq.h>
12#include <asm/intel_pinctrl.h>
13#include <asm/io.h>
14#include <asm/intel_regs.h>
15#include <asm/msr.h>
16#include <asm/msr-index.h>
17#include <asm/pci.h>
18#include <asm/arch/cpu.h>
19#include <asm/arch/systemagent.h>
20#include <asm/arch/fsp/fsp_configs.h>
21#include <asm/arch/fsp/fsp_s_upd.h>
22
23#define PCH_P2SB_E0 0xe0
24#define HIDE_BIT BIT(0)
25
26#define INTEL_GSPI_MAX 3
Simon Glass42bf7db2019-12-08 17:40:19 -070027#define MAX_USB2_PORTS 8
28
29enum {
30 CHIPSET_LOCKDOWN_FSP = 0, /* FSP handles locking per UPDs */
31 CHIPSET_LOCKDOWN_COREBOOT, /* coreboot handles locking */
32};
33
Simon Glass42bf7db2019-12-08 17:40:19 -070034/* Serial IRQ control. SERIRQ_QUIET is the default (0) */
35enum serirq_mode {
36 SERIRQ_QUIET,
37 SERIRQ_CONTINUOUS,
38 SERIRQ_OFF,
39};
40
Simon Glass42bf7db2019-12-08 17:40:19 -070041struct gspi_cfg {
42 /* Bus speed in MHz */
43 u32 speed_mhz;
44 /* Bus should be enabled prior to ramstage with temporary base */
45 u8 early_init;
46};
47
48/*
49 * This structure will hold data required by common blocks.
50 * These are soc specific configurations which will be filled by soc.
51 * We'll fill this structure once during init and use the data in common block.
52 */
53struct soc_intel_common_config {
54 int chipset_lockdown;
55 struct gspi_cfg gspi[INTEL_GSPI_MAX];
Simon Glass42bf7db2019-12-08 17:40:19 -070056};
57
58enum pnp_settings {
59 PNP_PERF,
60 PNP_POWER,
61 PNP_PERF_POWER,
62};
63
64struct usb2_eye_per_port {
65 u8 per_port_tx_pe_half;
66 u8 per_port_pe_txi_set;
67 u8 per_port_txi_set;
68 u8 hs_skew_sel;
69 u8 usb_tx_emphasis_en;
70 u8 per_port_rxi_set;
71 u8 hs_npre_drv_sel;
72 u8 override_en;
73};
74
75struct apl_config {
76 /* Common structure containing soc config data required by common code*/
77 struct soc_intel_common_config common_soc_config;
78
79 /*
80 * Mapping from PCIe root port to CLKREQ input on the SOC. The SOC has
81 * four CLKREQ inputs, but six root ports. Root ports without an
82 * associated CLKREQ signal must be marked with "CLKREQ_DISABLED"
83 */
84 u8 pcie_rp_clkreq_pin[MAX_PCIE_PORTS];
85
86 /* Enable/disable hot-plug for root ports (0 = disable, 1 = enable) */
87 u8 pcie_rp_hotplug_enable[MAX_PCIE_PORTS];
88
89 /* De-emphasis enable configuration for each PCIe root port */
90 u8 pcie_rp_deemphasis_enable[MAX_PCIE_PORTS];
91
92 /*
93 * [14:8] DDR mode Number of dealy elements.Each = 125pSec.
94 * [6:0] SDR mode Number of dealy elements.Each = 125pSec.
95 */
96 u32 emmc_tx_cmd_cntl;
97
98 /*
99 * [14:8] HS400 mode Number of dealy elements.Each = 125pSec.
100 * [6:0] SDR104/HS200 mode Number of dealy elements.Each = 125pSec.
101 */
102 u32 emmc_tx_data_cntl1;
103
104 /*
105 * [30:24] SDR50 mode Number of dealy elements.Each = 125pSec.
106 * [22:16] DDR50 mode Number of dealy elements.Each = 125pSec.
107 * [14:8] SDR25/HS50 mode Number of dealy elements.Each = 125pSec.
108 * [6:0] SDR12/Compatibility mode Number of dealy elements.
109 * Each = 125pSec.
110 */
111 u32 emmc_tx_data_cntl2;
112
113 /*
114 * [30:24] SDR50 mode Number of dealy elements.Each = 125pSec.
115 * [22:16] DDR50 mode Number of dealy elements.Each = 125pSec.
116 * [14:8] SDR25/HS50 mode Number of dealy elements.Each = 125pSec.
117 * [6:0] SDR12/Compatibility mode Number of dealy elements.
118 * Each = 125pSec.
119 */
120 u32 emmc_rx_cmd_data_cntl1;
121
122 /*
123 * [14:8] HS400 mode 1 Number of dealy elements.Each = 125pSec.
124 * [6:0] HS400 mode 2 Number of dealy elements.Each = 125pSec.
125 */
126 u32 emmc_rx_strobe_cntl;
127
128 /*
129 * [13:8] Auto Tuning mode Number of dealy elements.Each = 125pSec.
130 * [6:0] SDR104/HS200 Number of dealy elements.Each = 125pSec.
131 */
132 u32 emmc_rx_cmd_data_cntl2;
133
134 /* Select the eMMC max speed allowed */
135 u32 emmc_host_max_speed;
136
137 /* Specifies on which IRQ the SCI will internally appear */
138 u32 sci_irq;
139
140 /* Configure serial IRQ (SERIRQ) line */
141 enum serirq_mode serirq_mode;
142
143 /* Configure LPSS S0ix Enable */
144 bool lpss_s0ix_enable;
145
146 /* Enable DPTF support */
147 bool dptf_enable;
148
149 /* TCC activation offset value in degrees Celsius */
150 int tcc_offset;
151
152 /*
153 * Configure Audio clk gate and power gate
154 * IOSF-SB port ID 92 offset 0x530 [5] and [3]
155 */
156 bool hdaudio_clk_gate_enable;
157 bool hdaudio_pwr_gate_enable;
158 bool hdaudio_bios_config_lockdown;
159
160 /* SLP S3 minimum assertion width */
161 int slp_s3_assertion_width_usecs;
162
163 /* GPIO pin for PERST_0 */
164 u32 prt0_gpio;
165
166 /* USB2 eye diagram settings per port */
167 struct usb2_eye_per_port usb2eye[MAX_USB2_PORTS];
168
169 /* GPIO SD card detect pin */
170 unsigned int sdcard_cd_gpio;
171
172 /*
173 * PRMRR size setting with three options
174 * 0x02000000 - 32MiB
175 * 0x04000000 - 64MiB
176 * 0x08000000 - 128MiB
177 */
178 u32 PrmrrSize;
179
180 /*
181 * Enable SGX feature.
182 * Enabling SGX feature is 2 step process,
183 * (1) set sgx_enable = 1
184 * (2) set PrmrrSize to supported size
185 */
186 bool sgx_enable;
187
188 /*
189 * Select PNP Settings.
190 * (0) Performance,
191 * (1) Power
192 * (2) Power & Performance
193 */
194 enum pnp_settings pnp_settings;
195
196 /*
197 * PMIC PCH_PWROK delay configuration - IPC Configuration
198 * Upd for changing PCH_PWROK delay configuration : I2C_Slave_Address
199 * (31:24) + Register_Offset (23:16) + OR Value (15:8) + AND Value (7:0)
200 */
201 u32 pmic_pmc_ipc_ctrl;
202
203 /*
204 * Options to disable XHCI Link Compliance Mode. Default is FALSE to not
205 * disable Compliance Mode. Set TRUE to disable Compliance Mode.
206 * 0:FALSE(Default), 1:True.
207 */
208 bool disable_compliance_mode;
209
210 /*
211 * Options to change USB3 ModPhy setting for the Integrated Filter (IF)
212 * value. Default is 0 to not changing default IF value (0x12). Set
213 * value with the range from 0x01 to 0xff to change IF value.
214 */
215 u32 mod_phy_if_value;
216
217 /*
218 * Options to bump USB3 LDO voltage. Default is FALSE to not increasing
219 * LDO voltage. Set TRUE to increase LDO voltage with 40mV.
220 * 0:FALSE (default), 1:True.
221 */
222 bool mod_phy_voltage_bump;
223
224 /*
225 * Options to adjust PMIC Vdd2 voltage. Default is 0 to not adjusting
226 * the PMIC Vdd2 default voltage 1.20v. Upd for changing Vdd2 Voltage
227 * configuration: I2C_Slave_Address (31:23) + Register_Offset (23:16)
228 * + OR Value (15:8) + AND Value (7:0) through BUCK5_VID[3:2]:
229 * 00=1.10v, 01=1.15v, 10=1.24v, 11=1.20v (default).
230 */
231 u32 pmic_vdd2_voltage;
232
233 /* Option to enable VTD feature */
234 bool enable_vtd;
235};
236
237static int get_config(struct udevice *dev, struct apl_config *apl)
238{
239 const u8 *ptr;
240 ofnode node;
241 u32 emmc[4];
242 int ret;
243
244 memset(apl, '\0', sizeof(*apl));
245
246 node = dev_read_subnode(dev, "fsp-s");
247 if (!ofnode_valid(node))
248 return log_msg_ret("fsp-s settings", -ENOENT);
249
250 ptr = ofnode_read_u8_array_ptr(node, "pcie-rp-clkreq-pin",
251 MAX_PCIE_PORTS);
252 if (!ptr)
253 return log_msg_ret("pcie-rp-clkreq-pin", -EINVAL);
254 memcpy(apl->pcie_rp_clkreq_pin, ptr, MAX_PCIE_PORTS);
255
256 ret = ofnode_read_u32(node, "prt0-gpio", &apl->prt0_gpio);
257 if (ret)
258 return log_msg_ret("prt0-gpio", ret);
259 ret = ofnode_read_u32(node, "sdcard-cd-gpio", &apl->sdcard_cd_gpio);
260 if (ret)
261 return log_msg_ret("sdcard-cd-gpio", ret);
262
263 ret = ofnode_read_u32_array(node, "emmc", emmc, ARRAY_SIZE(emmc));
264 if (ret)
265 return log_msg_ret("emmc", ret);
266 apl->emmc_tx_data_cntl1 = emmc[0];
267 apl->emmc_tx_data_cntl2 = emmc[1];
268 apl->emmc_rx_cmd_data_cntl1 = emmc[2];
269 apl->emmc_rx_cmd_data_cntl2 = emmc[3];
270
271 apl->dptf_enable = ofnode_read_bool(node, "dptf-enable");
272
273 apl->hdaudio_clk_gate_enable = ofnode_read_bool(node,
274 "hdaudio-clk-gate-enable");
275 apl->hdaudio_pwr_gate_enable = ofnode_read_bool(node,
276 "hdaudio-pwr-gate-enable");
277 apl->hdaudio_bios_config_lockdown = ofnode_read_bool(node,
278 "hdaudio-bios-config-lockdown");
279 apl->lpss_s0ix_enable = ofnode_read_bool(node, "lpss-s0ix-enable");
280
281 /* Santa */
282 apl->usb2eye[1].per_port_pe_txi_set = 7;
283 apl->usb2eye[1].per_port_txi_set = 2;
284
285 return 0;
286}
287
288static void apl_fsp_silicon_init_params_cb(struct apl_config *apl,
289 struct fsp_s_config *cfg)
290{
291 u8 port;
292
293 for (port = 0; port < MAX_USB2_PORTS; port++) {
294 if (apl->usb2eye[port].per_port_tx_pe_half)
295 cfg->port_usb20_per_port_tx_pe_half[port] =
296 apl->usb2eye[port].per_port_tx_pe_half;
297
298 if (apl->usb2eye[port].per_port_pe_txi_set)
299 cfg->port_usb20_per_port_pe_txi_set[port] =
300 apl->usb2eye[port].per_port_pe_txi_set;
301
302 if (apl->usb2eye[port].per_port_txi_set)
303 cfg->port_usb20_per_port_txi_set[port] =
304 apl->usb2eye[port].per_port_txi_set;
305
306 if (apl->usb2eye[port].hs_skew_sel)
307 cfg->port_usb20_hs_skew_sel[port] =
308 apl->usb2eye[port].hs_skew_sel;
309
310 if (apl->usb2eye[port].usb_tx_emphasis_en)
311 cfg->port_usb20_i_usb_tx_emphasis_en[port] =
312 apl->usb2eye[port].usb_tx_emphasis_en;
313
314 if (apl->usb2eye[port].per_port_rxi_set)
315 cfg->port_usb20_per_port_rxi_set[port] =
316 apl->usb2eye[port].per_port_rxi_set;
317
318 if (apl->usb2eye[port].hs_npre_drv_sel)
319 cfg->port_usb20_hs_npre_drv_sel[port] =
320 apl->usb2eye[port].hs_npre_drv_sel;
321 }
322}
323
324int fsps_update_config(struct udevice *dev, ulong rom_offset,
325 struct fsps_upd *upd)
326{
327 struct fsp_s_config *cfg = &upd->config;
328 struct apl_config *apl;
329 struct binman_entry vbt;
330 void *buf;
331 int ret;
332
333 ret = binman_entry_find("intel-vbt", &vbt);
334 if (ret)
335 return log_msg_ret("Cannot find VBT", ret);
336 vbt.image_pos += rom_offset;
337 buf = malloc(vbt.size);
338 if (!buf)
339 return log_msg_ret("Alloc VBT", -ENOMEM);
340
341 /*
342 * Load VBT before devicetree-specific config. This only supports
343 * memory-mapped SPI at present.
344 */
345 bootstage_start(BOOTSTAGE_ID_ACCUM_MMAP_SPI, "mmap_spi");
346 memcpy(buf, (void *)vbt.image_pos, vbt.size);
347 bootstage_accum(BOOTSTAGE_ID_ACCUM_MMAP_SPI);
348 if (*(u32 *)buf != VBT_SIGNATURE)
349 return log_msg_ret("VBT signature", -EINVAL);
350 cfg->graphics_config_ptr = (ulong)buf;
351
352 apl = malloc(sizeof(*apl));
353 if (!apl)
354 return log_msg_ret("config", -ENOMEM);
355 get_config(dev, apl);
356
357 cfg->ish_enable = 0;
358 cfg->enable_sata = 0;
359 cfg->pcie_root_port_en[2] = 0;
360 cfg->pcie_rp_hot_plug[2] = 0;
361 cfg->pcie_root_port_en[3] = 0;
362 cfg->pcie_rp_hot_plug[3] = 0;
363 cfg->pcie_root_port_en[4] = 0;
364 cfg->pcie_rp_hot_plug[4] = 0;
365 cfg->pcie_root_port_en[5] = 0;
366 cfg->pcie_rp_hot_plug[5] = 0;
367 cfg->pcie_root_port_en[1] = 0;
368 cfg->pcie_rp_hot_plug[1] = 0;
369 cfg->usb_otg = 0;
370 cfg->i2c6_enable = 0;
371 cfg->i2c7_enable = 0;
372 cfg->hsuart3_enable = 0;
373 cfg->spi1_enable = 0;
374 cfg->spi2_enable = 0;
375 cfg->sdio_enabled = 0;
376
377 memcpy(cfg->pcie_rp_clk_req_number, apl->pcie_rp_clkreq_pin,
378 sizeof(cfg->pcie_rp_clk_req_number));
379
380 memcpy(cfg->pcie_rp_hot_plug, apl->pcie_rp_hotplug_enable,
381 sizeof(cfg->pcie_rp_hot_plug));
382
383 switch (apl->serirq_mode) {
384 case SERIRQ_QUIET:
385 cfg->sirq_enable = 1;
386 cfg->sirq_mode = 0;
387 break;
388 case SERIRQ_CONTINUOUS:
389 cfg->sirq_enable = 1;
390 cfg->sirq_mode = 1;
391 break;
392 case SERIRQ_OFF:
393 default:
394 cfg->sirq_enable = 0;
395 break;
396 }
397
398 if (apl->emmc_tx_cmd_cntl)
399 cfg->emmc_tx_cmd_cntl = apl->emmc_tx_cmd_cntl;
400 if (apl->emmc_tx_data_cntl1)
401 cfg->emmc_tx_data_cntl1 = apl->emmc_tx_data_cntl1;
402 if (apl->emmc_tx_data_cntl2)
403 cfg->emmc_tx_data_cntl2 = apl->emmc_tx_data_cntl2;
404 if (apl->emmc_rx_cmd_data_cntl1)
405 cfg->emmc_rx_cmd_data_cntl1 = apl->emmc_rx_cmd_data_cntl1;
406 if (apl->emmc_rx_strobe_cntl)
407 cfg->emmc_rx_strobe_cntl = apl->emmc_rx_strobe_cntl;
408 if (apl->emmc_rx_cmd_data_cntl2)
409 cfg->emmc_rx_cmd_data_cntl2 = apl->emmc_rx_cmd_data_cntl2;
410 if (apl->emmc_host_max_speed)
411 cfg->e_mmc_host_max_speed = apl->emmc_host_max_speed;
412
413 cfg->lpss_s0ix_enable = apl->lpss_s0ix_enable;
414
415 cfg->skip_mp_init = true;
416
417 /* Disable setting of EISS bit in FSP */
418 cfg->spi_eiss = 0;
419
420 /* Disable FSP from locking access to the RTC NVRAM */
421 cfg->rtc_lock = 0;
422
423 /* Enable Audio clk gate and power gate */
424 cfg->hd_audio_clk_gate = apl->hdaudio_clk_gate_enable;
425 cfg->hd_audio_pwr_gate = apl->hdaudio_pwr_gate_enable;
426 /* Bios config lockdown Audio clk and power gate */
427 cfg->bios_cfg_lock_down = apl->hdaudio_bios_config_lockdown;
428 apl_fsp_silicon_init_params_cb(apl, cfg);
429
430 cfg->usb_otg = true;
431 cfg->vtd_enable = apl->enable_vtd;
432
433 return 0;
434}
435
436static void p2sb_set_hide_bit(pci_dev_t dev, int hide)
437{
438 pci_x86_clrset_config(dev, PCH_P2SB_E0 + 1, HIDE_BIT,
439 hide ? HIDE_BIT : 0, PCI_SIZE_8);
440}
441
442/* Configure package power limits */
443static int set_power_limits(struct udevice *dev)
444{
445 msr_t rapl_msr_reg, limit;
446 u32 power_unit;
447 u32 tdp, min_power, max_power;
448 u32 pl2_val;
449 u32 override_tdp[2];
450 int ret;
451
452 /* Get units */
453 rapl_msr_reg = msr_read(MSR_PKG_POWER_SKU_UNIT);
454 power_unit = 1 << (rapl_msr_reg.lo & 0xf);
455
456 /* Get power defaults for this SKU */
457 rapl_msr_reg = msr_read(MSR_PKG_POWER_SKU);
458 tdp = rapl_msr_reg.lo & PKG_POWER_LIMIT_MASK;
459 pl2_val = rapl_msr_reg.hi & PKG_POWER_LIMIT_MASK;
460 min_power = (rapl_msr_reg.lo >> 16) & PKG_POWER_LIMIT_MASK;
461 max_power = rapl_msr_reg.hi & PKG_POWER_LIMIT_MASK;
462
463 if (min_power > 0 && tdp < min_power)
464 tdp = min_power;
465
466 if (max_power > 0 && tdp > max_power)
467 tdp = max_power;
468
469 ret = dev_read_u32_array(dev, "tdp-pl-override-mw", override_tdp,
470 ARRAY_SIZE(override_tdp));
471 if (ret)
472 return log_msg_ret("tdp-pl-override-mw", ret);
473
474 /* Set PL1 override value */
475 if (override_tdp[0])
476 tdp = override_tdp[0] * power_unit / 1000;
477
478 /* Set PL2 override value */
479 if (override_tdp[1])
480 pl2_val = override_tdp[1] * power_unit / 1000;
481
482 /* Set long term power limit to TDP */
483 limit.lo = tdp & PKG_POWER_LIMIT_MASK;
484 /* Set PL1 Pkg Power clamp bit */
485 limit.lo |= PKG_POWER_LIMIT_CLAMP;
486
487 limit.lo |= PKG_POWER_LIMIT_EN;
488 limit.lo |= (MB_POWER_LIMIT1_TIME_DEFAULT &
489 PKG_POWER_LIMIT_TIME_MASK) << PKG_POWER_LIMIT_TIME_SHIFT;
490
491 /* Set short term power limit PL2 */
492 limit.hi = pl2_val & PKG_POWER_LIMIT_MASK;
493 limit.hi |= PKG_POWER_LIMIT_EN;
494
495 /* Program package power limits in RAPL MSR */
496 msr_write(MSR_PKG_POWER_LIMIT, limit);
497 log_info("RAPL PL1 %d.%dW\n", tdp / power_unit,
498 100 * (tdp % power_unit) / power_unit);
499 log_info("RAPL PL2 %d.%dW\n", pl2_val / power_unit,
500 100 * (pl2_val % power_unit) / power_unit);
501
502 /*
503 * Sett RAPL MMIO register for Power limits. RAPL driver is using MSR
504 * instead of MMIO, so disable LIMIT_EN bit for MMIO
505 */
506 writel(limit.lo & ~PKG_POWER_LIMIT_EN, MCHBAR_REG(MCHBAR_RAPL_PPL));
507 writel(limit.hi & ~PKG_POWER_LIMIT_EN, MCHBAR_REG(MCHBAR_RAPL_PPL + 4));
508
509 return 0;
510}
511
512int p2sb_unhide(void)
513{
514 pci_dev_t dev = PCI_BDF(0, 0xd, 0);
515 ulong val;
516
517 p2sb_set_hide_bit(dev, 0);
518
519 pci_x86_read_config(dev, PCI_VENDOR_ID, &val, PCI_SIZE_16);
520
521 if (val != PCI_VENDOR_ID_INTEL)
522 return log_msg_ret("p2sb unhide", -EIO);
523
524 return 0;
525}
526
527/* Overwrites the SCI IRQ if another IRQ number is given by device tree */
528static void set_sci_irq(void)
529{
530 /* Skip this for now */
531}
532
533int arch_fsps_preinit(void)
534{
535 struct udevice *itss;
536 int ret;
537
538 ret = uclass_first_device_err(UCLASS_IRQ, &itss);
539 if (ret)
540 return log_msg_ret("no itss", ret);
541 /*
542 * Snapshot the current GPIO IRQ polarities. FSP is setting a default
543 * policy that doesn't honour boards' requirements
544 */
545 irq_snapshot_polarities(itss);
546
547 /*
548 * Clear the GPI interrupt status and enable registers. These
549 * registers do not get reset to default state when booting from S5.
550 */
551 ret = pinctrl_gpi_clear_int_cfg();
552 if (ret)
553 return log_msg_ret("gpi_clear", ret);
554
555 return 0;
556}
557
558int arch_fsp_init_r(void)
559{
560#ifdef CONFIG_HAVE_ACPI_RESUME
561 bool s3wake = gd->arch.prev_sleep_state == ACPI_S3;
562#else
563 bool s3wake = false;
564#endif
565 struct udevice *dev, *itss;
566 int ret;
567
568 /*
569 * This must be called before any devices are probed. Put any probing
570 * into arch_fsps_preinit() above.
571 *
572 * We don't use CONFIG_APL_BOOT_FROM_FAST_SPI_FLASH here since it will
573 * force PCI to be probed.
574 */
575 ret = fsp_silicon_init(s3wake, false);
576 if (ret)
577 return ret;
578
579 ret = uclass_first_device_err(UCLASS_IRQ, &itss);
580 if (ret)
581 return log_msg_ret("no itss", ret);
582 /* Restore GPIO IRQ polarities back to previous settings */
583 irq_restore_polarities(itss);
584
585 /* soc_init() */
586 ret = p2sb_unhide();
587 if (ret)
588 return log_msg_ret("unhide p2sb", ret);
589
590 /* Set RAPL MSR for Package power limits*/
591 ret = uclass_first_device_err(UCLASS_NORTHBRIDGE, &dev);
592 if (ret)
593 return log_msg_ret("Cannot get northbridge", ret);
594 set_power_limits(dev);
595
596 /*
597 * FSP-S routes SCI to IRQ 9. With the help of this function you can
598 * select another IRQ for SCI.
599 */
600 set_sci_irq();
601
602 return 0;
603}