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1 /* SPDX-License-Identifier: GPL-2.0-only */
2 
3 #include <acpi/acpi.h>
4 #include <acpi/acpi_gnvs.h>
5 #include <acpi/acpigen.h>
6 #include <arch/ioapic.h>
7 #include <device/device.h>
8 #include <device/mmio.h>
9 #include <arch/smp/mpspec.h>
10 #include <console/console.h>
11 #include <device/pci_ops.h>
12 #include <intelblocks/cpulib.h>
13 #include <intelblocks/pmclib.h>
14 #include <intelblocks/acpi.h>
15 #include <soc/cpu.h>
16 #include <soc/iomap.h>
17 #include <soc/nvs.h>
18 #include <soc/pci_devs.h>
19 #include <soc/pm.h>
20 #include <soc/soc_chip.h>
21 #include <soc/systemagent.h>
22 
23 /*
24  * List of supported C-states in this processor.
25  */
26 enum {
27 	C_STATE_C0,		/* 0 */
28 	C_STATE_C1,		/* 1 */
29 	C_STATE_C1E,		/* 2 */
30 	C_STATE_C6_SHORT_LAT,	/* 3 */
31 	C_STATE_C6_LONG_LAT,	/* 4 */
32 	C_STATE_C7_SHORT_LAT,	/* 5 */
33 	C_STATE_C7_LONG_LAT,	/* 6 */
34 	C_STATE_C7S_SHORT_LAT,	/* 7 */
35 	C_STATE_C7S_LONG_LAT,	/* 8 */
36 	C_STATE_C8,		/* 9 */
37 	C_STATE_C9,		/* 10 */
38 	C_STATE_C10,		/* 11 */
39 	NUM_C_STATES
40 };
41 
42 static const acpi_cstate_t cstate_map[NUM_C_STATES] = {
43 	[C_STATE_C0] = {},
44 	[C_STATE_C1] = {
45 		.latency = C1_LATENCY,
46 		.power = C1_POWER,
47 		.resource = MWAIT_RES(0, 0),
48 	},
49 	[C_STATE_C1E] = {
50 		.latency = C1_LATENCY,
51 		.power = C1_POWER,
52 		.resource = MWAIT_RES(0, 1),
53 	},
54 	[C_STATE_C6_SHORT_LAT] = {
55 		.latency = C6_LATENCY,
56 		.power = C6_POWER,
57 		.resource = MWAIT_RES(2, 0),
58 	},
59 	[C_STATE_C6_LONG_LAT] = {
60 		.latency = C6_LATENCY,
61 		.power = C6_POWER,
62 		.resource = MWAIT_RES(2, 1),
63 	},
64 	[C_STATE_C7_SHORT_LAT] = {
65 		.latency = C7_LATENCY,
66 		.power = C7_POWER,
67 		.resource = MWAIT_RES(3, 0),
68 	},
69 	[C_STATE_C7_LONG_LAT] = {
70 		.latency = C7_LATENCY,
71 		.power = C7_POWER,
72 		.resource = MWAIT_RES(3, 1),
73 	},
74 	[C_STATE_C7S_SHORT_LAT] = {
75 		.latency = C7_LATENCY,
76 		.power = C7_POWER,
77 		.resource = MWAIT_RES(3, 2),
78 	},
79 	[C_STATE_C7S_LONG_LAT] = {
80 		.latency = C7_LATENCY,
81 		.power = C7_POWER,
82 		.resource = MWAIT_RES(3, 3),
83 	},
84 	[C_STATE_C8] = {
85 		.latency = C8_LATENCY,
86 		.power = C8_POWER,
87 		.resource = MWAIT_RES(4, 0),
88 	},
89 	[C_STATE_C9] = {
90 		.latency = C9_LATENCY,
91 		.power = C9_POWER,
92 		.resource = MWAIT_RES(5, 0),
93 	},
94 	[C_STATE_C10] = {
95 		.latency = C10_LATENCY,
96 		.power = C10_POWER,
97 		.resource = MWAIT_RES(6, 0),
98 	},
99 };
100 
101 static int cstate_set_non_s0ix[] = {
102 	C_STATE_C1,
103 	C_STATE_C6_LONG_LAT,
104 	C_STATE_C7S_LONG_LAT
105 };
106 
107 static int cstate_set_s0ix[] = {
108 	C_STATE_C1,
109 	C_STATE_C7S_LONG_LAT,
110 	C_STATE_C10
111 };
112 
soc_get_cstate_map(size_t * entries)113 const acpi_cstate_t *soc_get_cstate_map(size_t *entries)
114 {
115 	static acpi_cstate_t map[MAX(ARRAY_SIZE(cstate_set_s0ix),
116 				ARRAY_SIZE(cstate_set_non_s0ix))];
117 	int *set;
118 	int i;
119 
120 	config_t *config = config_of_soc();
121 
122 	int is_s0ix_enable = config->s0ix_enable;
123 
124 	if (is_s0ix_enable) {
125 		*entries = ARRAY_SIZE(cstate_set_s0ix);
126 		set = cstate_set_s0ix;
127 	} else {
128 		*entries = ARRAY_SIZE(cstate_set_non_s0ix);
129 		set = cstate_set_non_s0ix;
130 	}
131 
132 	for (i = 0; i < *entries; i++) {
133 		map[i] = cstate_map[set[i]];
134 		map[i].ctype = i + 1;
135 	}
136 	return map;
137 }
138 
soc_power_states_generation(int core_id,int cores_per_package)139 void soc_power_states_generation(int core_id, int cores_per_package)
140 {
141 	config_t *config = config_of_soc();
142 
143 	if (config->eist_enable)
144 		/* Generate P-state tables */
145 		generate_p_state_entries(core_id, cores_per_package);
146 }
147 
soc_fill_fadt(acpi_fadt_t * fadt)148 void soc_fill_fadt(acpi_fadt_t *fadt)
149 {
150 	const uint16_t pmbase = ACPI_BASE_ADDRESS;
151 
152 	config_t *config = config_of_soc();
153 
154 	fadt->pm_tmr_blk = pmbase + PM1_TMR;
155 	fadt->pm_tmr_len = 4;
156 
157 	fill_fadt_extended_pm_io(fadt);
158 
159 	if (config->s0ix_enable)
160 		fadt->flags |= ACPI_FADT_LOW_PWR_IDLE_S0;
161 }
162 
soc_read_sci_irq_select(void)163 uint32_t soc_read_sci_irq_select(void)
164 {
165 	return read32p(soc_read_pmc_base() + IRQ_REG);
166 }
167 
soc_fill_dmar(unsigned long current)168 static unsigned long soc_fill_dmar(unsigned long current)
169 {
170 	uint64_t gfxvtbar = MCHBAR64(GFXVTBAR) & VTBAR_MASK;
171 	bool gfxvten = MCHBAR32(GFXVTBAR) & VTBAR_ENABLED;
172 
173 	if (is_devfn_enabled(SA_DEVFN_IGD) && gfxvtbar && gfxvten) {
174 		unsigned long tmp = current;
175 
176 		current += acpi_create_dmar_drhd_4k(current, 0, 0, gfxvtbar);
177 		current += acpi_create_dmar_ds_pci(current, 0, 2, 0);
178 
179 		acpi_dmar_drhd_fixup(tmp, current);
180 	}
181 
182 	uint64_t ipuvtbar = MCHBAR64(IPUVTBAR) & VTBAR_MASK;
183 	bool ipuvten = MCHBAR32(IPUVTBAR) & VTBAR_ENABLED;
184 
185 	if (is_devfn_enabled(SA_DEVFN_IPU) && ipuvtbar && ipuvten) {
186 		unsigned long tmp = current;
187 
188 		current += acpi_create_dmar_drhd_4k(current, 0, 0, ipuvtbar);
189 		current += acpi_create_dmar_ds_pci(current, 0, 5, 0);
190 
191 		acpi_dmar_drhd_fixup(tmp, current);
192 	}
193 
194 	uint64_t vtvc0bar = MCHBAR64(VTVC0BAR) & VTBAR_MASK;
195 	bool vtvc0en = MCHBAR32(VTVC0BAR) & VTBAR_ENABLED;
196 
197 	if (vtvc0bar && vtvc0en) {
198 		const unsigned long tmp = current;
199 
200 		current += acpi_create_dmar_drhd_4k(current,
201 				DRHD_INCLUDE_PCI_ALL, 0, vtvc0bar);
202 		current += acpi_create_dmar_ds_ioapic_from_hw(current,
203 				IO_APIC_ADDR, V_P2SB_CFG_IBDF_BUS, V_P2SB_CFG_IBDF_DEV,
204 				V_P2SB_CFG_IBDF_FUNC);
205 		current += acpi_create_dmar_ds_msi_hpet(current,
206 				0, V_P2SB_CFG_HBDF_BUS, V_P2SB_CFG_HBDF_DEV,
207 				V_P2SB_CFG_HBDF_FUNC);
208 
209 		acpi_dmar_drhd_fixup(tmp, current);
210 	}
211 
212 	/* Add RMRR entry */
213 	const unsigned long tmp = current;
214 	current += acpi_create_dmar_rmrr(current, 0,
215 		sa_get_gsm_base(), sa_get_tolud_base() - 1);
216 	current += acpi_create_dmar_ds_pci(current, 0, 2, 0);
217 	acpi_dmar_rmrr_fixup(tmp, current);
218 
219 	return current;
220 }
221 
sa_write_acpi_tables(const struct device * dev,unsigned long current,struct acpi_rsdp * rsdp)222 unsigned long sa_write_acpi_tables(const struct device *dev, unsigned long current,
223 				   struct acpi_rsdp *rsdp)
224 {
225 	acpi_dmar_t *const dmar = (acpi_dmar_t *)current;
226 
227 	/*
228 	 * Create DMAR table only if we have VT-d capability and FSP does not override its
229 	 * feature.
230 	 */
231 	if ((pci_read_config32(dev, CAPID0_A) & VTD_DISABLE) ||
232 	    !(MCHBAR32(VTVC0BAR) & VTBAR_ENABLED))
233 		return current;
234 
235 	printk(BIOS_DEBUG, "ACPI:    * DMAR\n");
236 	acpi_create_dmar(dmar, DMAR_INTR_REMAP | DMA_CTRL_PLATFORM_OPT_IN_FLAG, soc_fill_dmar);
237 	current += dmar->header.length;
238 	current = acpi_align_current(current);
239 	acpi_add_table(rsdp, dmar);
240 
241 	return current;
242 }
243 
soc_fill_gnvs(struct global_nvs * gnvs)244 void soc_fill_gnvs(struct global_nvs *gnvs)
245 {
246 	config_t *config = config_of_soc();
247 
248 	/* Enable DPTF based on mainboard configuration */
249 	gnvs->dpte = config->dptf_enable;
250 
251 	/* Set USB2/USB3 wake enable bitmaps. */
252 	gnvs->u2we = config->usb2_wake_enable_bitmap;
253 	gnvs->u3we = config->usb3_wake_enable_bitmap;
254 }
255 
soc_madt_sci_irq_polarity(int sci)256 int soc_madt_sci_irq_polarity(int sci)
257 {
258 	return MP_IRQ_POLARITY_HIGH;
259 }
260