blob: b1df77d571b30ae08d7c91dcf779eefedfea7f11 [file] [log] [blame]
Simon Glass268eefd2014-11-12 22:42:28 -07001/*
2 * From Coreboot src/southbridge/intel/bd82x6x/early_me.c
3 *
4 * Copyright (C) 2011 The Chromium OS Authors. All rights reserved.
5 *
6 * SPDX-License-Identifier: GPL-2.0
7 */
8
9#include <common.h>
Simon Glass37a91ff2016-01-17 16:11:50 -070010#include <dm.h>
Simon Glass268eefd2014-11-12 22:42:28 -070011#include <errno.h>
12#include <asm/pci.h>
Simon Glass43a50342016-01-17 16:11:58 -070013#include <asm/cpu.h>
Simon Glass268eefd2014-11-12 22:42:28 -070014#include <asm/processor.h>
15#include <asm/arch/me.h>
16#include <asm/arch/pch.h>
17#include <asm/io.h>
18
19static const char *const me_ack_values[] = {
20 [ME_HFS_ACK_NO_DID] = "No DID Ack received",
21 [ME_HFS_ACK_RESET] = "Non-power cycle reset",
22 [ME_HFS_ACK_PWR_CYCLE] = "Power cycle reset",
23 [ME_HFS_ACK_S3] = "Go to S3",
24 [ME_HFS_ACK_S4] = "Go to S4",
25 [ME_HFS_ACK_S5] = "Go to S5",
26 [ME_HFS_ACK_GBL_RESET] = "Global Reset",
27 [ME_HFS_ACK_CONTINUE] = "Continue to boot"
28};
29
Simon Glass37a91ff2016-01-17 16:11:50 -070030static inline void pci_read_dword_ptr(struct udevice *me_dev, void *ptr,
31 int offset)
Simon Glass268eefd2014-11-12 22:42:28 -070032{
33 u32 dword;
34
Simon Glass37a91ff2016-01-17 16:11:50 -070035 dm_pci_read_config32(me_dev, offset, &dword);
Simon Glass268eefd2014-11-12 22:42:28 -070036 memcpy(ptr, &dword, sizeof(dword));
37}
38
Simon Glass37a91ff2016-01-17 16:11:50 -070039static inline void pci_write_dword_ptr(struct udevice *me_dev, void *ptr,
40 int offset)
Simon Glass268eefd2014-11-12 22:42:28 -070041{
42 u32 dword = 0;
Simon Glass37a91ff2016-01-17 16:11:50 -070043
Simon Glass268eefd2014-11-12 22:42:28 -070044 memcpy(&dword, ptr, sizeof(dword));
Simon Glass37a91ff2016-01-17 16:11:50 -070045 dm_pci_write_config32(me_dev, offset, dword);
Simon Glass268eefd2014-11-12 22:42:28 -070046}
47
Simon Glass37a91ff2016-01-17 16:11:50 -070048void intel_early_me_status(struct udevice *me_dev)
Simon Glass268eefd2014-11-12 22:42:28 -070049{
50 struct me_hfs hfs;
51 struct me_gmes gmes;
52
Simon Glass37a91ff2016-01-17 16:11:50 -070053 pci_read_dword_ptr(me_dev, &hfs, PCI_ME_HFS);
54 pci_read_dword_ptr(me_dev, &gmes, PCI_ME_GMES);
Simon Glass268eefd2014-11-12 22:42:28 -070055
56 intel_me_status(&hfs, &gmes);
57}
58
Simon Glass37a91ff2016-01-17 16:11:50 -070059int intel_early_me_init(struct udevice *me_dev)
Simon Glass268eefd2014-11-12 22:42:28 -070060{
61 int count;
62 struct me_uma uma;
63 struct me_hfs hfs;
64
65 debug("Intel ME early init\n");
66
67 /* Wait for ME UMA SIZE VALID bit to be set */
68 for (count = ME_RETRY; count > 0; --count) {
Simon Glass37a91ff2016-01-17 16:11:50 -070069 pci_read_dword_ptr(me_dev, &uma, PCI_ME_UMA);
Simon Glass268eefd2014-11-12 22:42:28 -070070 if (uma.valid)
71 break;
72 udelay(ME_DELAY);
73 }
74 if (!count) {
75 printf("ERROR: ME is not ready!\n");
76 return -EBUSY;
77 }
78
79 /* Check for valid firmware */
Simon Glass37a91ff2016-01-17 16:11:50 -070080 pci_read_dword_ptr(me_dev, &hfs, PCI_ME_HFS);
Simon Glass268eefd2014-11-12 22:42:28 -070081 if (hfs.fpt_bad) {
82 printf("WARNING: ME has bad firmware\n");
83 return -EBADF;
84 }
85
86 debug("Intel ME firmware is ready\n");
87
88 return 0;
89}
90
Simon Glass37a91ff2016-01-17 16:11:50 -070091int intel_early_me_uma_size(struct udevice *me_dev)
Simon Glass268eefd2014-11-12 22:42:28 -070092{
93 struct me_uma uma;
94
Simon Glass37a91ff2016-01-17 16:11:50 -070095 pci_read_dword_ptr(me_dev, &uma, PCI_ME_UMA);
Simon Glass268eefd2014-11-12 22:42:28 -070096 if (uma.valid) {
97 debug("ME: Requested %uMB UMA\n", uma.size);
98 return uma.size;
99 }
100
101 debug("ME: Invalid UMA size\n");
102 return -EINVAL;
103}
104
Simon Glass37a91ff2016-01-17 16:11:50 -0700105static inline void set_global_reset(struct udevice *dev, int enable)
Simon Glass268eefd2014-11-12 22:42:28 -0700106{
107 u32 etr3;
108
Simon Glass37a91ff2016-01-17 16:11:50 -0700109 dm_pci_read_config32(dev, ETR3, &etr3);
Simon Glass268eefd2014-11-12 22:42:28 -0700110
111 /* Clear CF9 Without Resume Well Reset Enable */
112 etr3 &= ~ETR3_CWORWRE;
113
114 /* CF9GR indicates a Global Reset */
115 if (enable)
116 etr3 |= ETR3_CF9GR;
117 else
118 etr3 &= ~ETR3_CF9GR;
119
Simon Glass37a91ff2016-01-17 16:11:50 -0700120 dm_pci_write_config32(dev, ETR3, etr3);
Simon Glass268eefd2014-11-12 22:42:28 -0700121}
122
Simon Glass37a91ff2016-01-17 16:11:50 -0700123int intel_early_me_init_done(struct udevice *dev, struct udevice *me_dev,
124 uint status)
Simon Glass268eefd2014-11-12 22:42:28 -0700125{
Simon Glass268eefd2014-11-12 22:42:28 -0700126 int count;
127 u32 mebase_l, mebase_h;
128 struct me_hfs hfs;
129 struct me_did did = {
130 .init_done = ME_INIT_DONE,
131 .status = status
132 };
133
134 /* MEBASE from MESEG_BASE[35:20] */
Simon Glass37a91ff2016-01-17 16:11:50 -0700135 dm_pci_read_config32(PCH_DEV, PCI_CPU_MEBASE_L, &mebase_l);
136 dm_pci_read_config32(PCH_DEV, PCI_CPU_MEBASE_H, &mebase_h);
Simon Glass268eefd2014-11-12 22:42:28 -0700137 mebase_h &= 0xf;
138 did.uma_base = (mebase_l >> 20) | (mebase_h << 12);
139
140 /* Send message to ME */
141 debug("ME: Sending Init Done with status: %d, UMA base: 0x%04x\n",
142 status, did.uma_base);
143
Simon Glass37a91ff2016-01-17 16:11:50 -0700144 pci_write_dword_ptr(me_dev, &did, PCI_ME_H_GS);
Simon Glass268eefd2014-11-12 22:42:28 -0700145
146 /* Must wait for ME acknowledgement */
147 for (count = ME_RETRY; count > 0; --count) {
Simon Glass37a91ff2016-01-17 16:11:50 -0700148 pci_read_dword_ptr(me_dev, &hfs, PCI_ME_HFS);
Simon Glass268eefd2014-11-12 22:42:28 -0700149 if (hfs.bios_msg_ack)
150 break;
151 udelay(ME_DELAY);
152 }
153 if (!count) {
154 printf("ERROR: ME failed to respond\n");
Simon Glass37a91ff2016-01-17 16:11:50 -0700155 return -ETIMEDOUT;
Simon Glass268eefd2014-11-12 22:42:28 -0700156 }
157
158 /* Return the requested BIOS action */
159 debug("ME: Requested BIOS Action: %s\n", me_ack_values[hfs.ack_data]);
160
161 /* Check status after acknowledgement */
Simon Glass37a91ff2016-01-17 16:11:50 -0700162 intel_early_me_status(me_dev);
Simon Glass268eefd2014-11-12 22:42:28 -0700163
Simon Glass268eefd2014-11-12 22:42:28 -0700164 switch (hfs.ack_data) {
165 case ME_HFS_ACK_CONTINUE:
166 /* Continue to boot */
167 return 0;
168 case ME_HFS_ACK_RESET:
169 /* Non-power cycle reset */
Simon Glass37a91ff2016-01-17 16:11:50 -0700170 set_global_reset(dev, 0);
Simon Glass1375e9a2015-04-28 20:11:30 -0600171 reset_cpu(0);
Simon Glass268eefd2014-11-12 22:42:28 -0700172 break;
173 case ME_HFS_ACK_PWR_CYCLE:
174 /* Power cycle reset */
Simon Glass37a91ff2016-01-17 16:11:50 -0700175 set_global_reset(dev, 0);
Simon Glass1375e9a2015-04-28 20:11:30 -0600176 x86_full_reset();
Simon Glass268eefd2014-11-12 22:42:28 -0700177 break;
178 case ME_HFS_ACK_GBL_RESET:
179 /* Global reset */
Simon Glass37a91ff2016-01-17 16:11:50 -0700180 set_global_reset(dev, 1);
Simon Glass1375e9a2015-04-28 20:11:30 -0600181 x86_full_reset();
Simon Glass268eefd2014-11-12 22:42:28 -0700182 break;
183 case ME_HFS_ACK_S3:
184 case ME_HFS_ACK_S4:
185 case ME_HFS_ACK_S5:
186 break;
187 }
188
Simon Glass37a91ff2016-01-17 16:11:50 -0700189 return -EINVAL;
Simon Glass268eefd2014-11-12 22:42:28 -0700190}
Simon Glass37a91ff2016-01-17 16:11:50 -0700191
192static const struct udevice_id ivybridge_syscon_ids[] = {
Simon Glass43a50342016-01-17 16:11:58 -0700193 { .compatible = "intel,me", .data = X86_SYSCON_ME },
Simon Glassa75abeb2016-01-17 16:11:59 -0700194 { .compatible = "intel,gma", .data = X86_SYSCON_GMA },
Simon Glass37a91ff2016-01-17 16:11:50 -0700195 { }
196};
197
198U_BOOT_DRIVER(syscon_intel_me) = {
199 .name = "intel_me_syscon",
200 .id = UCLASS_SYSCON,
201 .of_match = ivybridge_syscon_ids,
202};