1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright (C) 2010 Albert ARIBAUD <albert.u.boot@aribaud.net>
4  *
5  * Based on original Kirkwood support which is
6  * (C) Copyright 2009
7  * Marvell Semiconductor <www.marvell.com>
8  * Written-by: Prafulla Wadaskar <prafulla@marvell.com>
9  */
10 
11 #include <common.h>
12 #include <netdev.h>
13 #include <asm/cache.h>
14 #include <asm/io.h>
15 #include <u-boot/md5.h>
16 #include <asm/arch/cpu.h>
17 
18 #define BUFLEN	16
19 
reset_cpu(unsigned long ignored)20 void reset_cpu(unsigned long ignored)
21 {
22 	struct orion5x_cpu_registers *cpureg =
23 	    (struct orion5x_cpu_registers *)ORION5X_CPU_REG_BASE;
24 
25 	writel(readl(&cpureg->rstoutn_mask) | (1 << 2),
26 		&cpureg->rstoutn_mask);
27 	writel(readl(&cpureg->sys_soft_rst) | 1,
28 		&cpureg->sys_soft_rst);
29 	while (1)
30 		;
31 }
32 
33 /*
34  * Compute Window Size field value from size expressed in bytes
35  * Used with the Base register to set the address window size and location.
36  * Must be programmed from LSB to MSB as sequence of ones followed by
37  * sequence of zeros. The number of ones specifies the size of the window in
38  * 64 KiB granularity (e.g., a value of 0x00FF specifies 256 = 16 MiB).
39  * NOTES:
40  * 1) A sizeval equal to 0x0 specifies 4 GiB.
41  * 2) A return value of 0x0 specifies 64 KiB.
42  */
orion5x_winctrl_calcsize(unsigned int sizeval)43 unsigned int orion5x_winctrl_calcsize(unsigned int sizeval)
44 {
45 	/*
46 	 * Calculate the number of 64 KiB blocks needed minus one (rounding up).
47 	 * For sizeval > 0 this is equivalent to:
48 	 * sizeval = (u32) ceil((double) sizeval / 65536.0) - 1
49 	 */
50 	sizeval = (sizeval - 1) >> 16;
51 
52 	/*
53 	 * Propagate 'one' bits to the right by 'oring' them.
54 	 * We need only treat bits 15-0.
55 	 */
56 	sizeval |= sizeval >> 1;  /* 'Or' bit 15 onto bit 14 */
57 	sizeval |= sizeval >> 2;  /* 'Or' bits 15-14 onto bits 13-12 */
58 	sizeval |= sizeval >> 4;  /* 'Or' bits 15-12 onto bits 11-8 */
59 	sizeval |= sizeval >> 8;  /* 'Or' bits 15-8 onto bits 7-0*/
60 
61 	return sizeval;
62 }
63 
64 /*
65  * orion5x_config_adr_windows - Configure address Windows
66  *
67  * There are 8 address windows supported by Orion5x Soc to addess different
68  * devices. Each window can be configured for size, BAR and remap addr
69  * Below configuration is standard for most of the cases
70  *
71  * If remap function not used, remap_lo must be set as base
72  *
73  * NOTES:
74  *
75  * 1) in order to avoid windows with inconsistent control and base values
76  *    (which could prevent access to BOOTCS and hence execution from FLASH)
77  *    always disable window before writing the base value then reenable it
78  *    by writing the control value.
79  *
80  * 2) in order to avoid losing access to BOOTCS when disabling window 7,
81  *    first configure window 6 for BOOTCS, then configure window 7 for BOOTCS,
82  *    then configure windows 6 for its own target.
83  *
84  * Reference Documentation:
85  * Mbus-L to Mbus Bridge Registers Configuration.
86  * (Sec 25.1 and 25.3 of Datasheet)
87  */
orion5x_config_adr_windows(void)88 int orion5x_config_adr_windows(void)
89 {
90 	struct orion5x_win_registers *winregs =
91 		(struct orion5x_win_registers *)ORION5X_CPU_WIN_BASE;
92 
93 /* Disable window 0, configure it for its intended target, enable it. */
94 	writel(0, &winregs[0].ctrl);
95 	writel(ORION5X_ADR_PCIE_MEM, &winregs[0].base);
96 	writel(ORION5X_ADR_PCIE_MEM_REMAP_LO, &winregs[0].remap_lo);
97 	writel(ORION5X_ADR_PCIE_MEM_REMAP_HI, &winregs[0].remap_hi);
98 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_PCIE_MEM,
99 		ORION5X_TARGET_PCIE, ORION5X_ATTR_PCIE_MEM,
100 		ORION5X_WIN_ENABLE), &winregs[0].ctrl);
101 /* Disable window 1, configure it for its intended target, enable it. */
102 	writel(0, &winregs[1].ctrl);
103 	writel(ORION5X_ADR_PCIE_IO, &winregs[1].base);
104 	writel(ORION5X_ADR_PCIE_IO_REMAP_LO, &winregs[1].remap_lo);
105 	writel(ORION5X_ADR_PCIE_IO_REMAP_HI, &winregs[1].remap_hi);
106 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_PCIE_IO,
107 		ORION5X_TARGET_PCIE, ORION5X_ATTR_PCIE_IO,
108 		ORION5X_WIN_ENABLE), &winregs[1].ctrl);
109 /* Disable window 2, configure it for its intended target, enable it. */
110 	writel(0, &winregs[2].ctrl);
111 	writel(ORION5X_ADR_PCI_MEM, &winregs[2].base);
112 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_PCI_MEM,
113 		ORION5X_TARGET_PCI, ORION5X_ATTR_PCI_MEM,
114 		ORION5X_WIN_ENABLE), &winregs[2].ctrl);
115 /* Disable window 3, configure it for its intended target, enable it. */
116 	writel(0, &winregs[3].ctrl);
117 	writel(ORION5X_ADR_PCI_IO, &winregs[3].base);
118 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_PCI_IO,
119 		ORION5X_TARGET_PCI, ORION5X_ATTR_PCI_IO,
120 		ORION5X_WIN_ENABLE), &winregs[3].ctrl);
121 /* Disable window 4, configure it for its intended target, enable it. */
122 	writel(0, &winregs[4].ctrl);
123 	writel(ORION5X_ADR_DEV_CS0, &winregs[4].base);
124 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_DEV_CS0,
125 		ORION5X_TARGET_DEVICE, ORION5X_ATTR_DEV_CS0,
126 		ORION5X_WIN_ENABLE), &winregs[4].ctrl);
127 /* Disable window 5, configure it for its intended target, enable it. */
128 	writel(0, &winregs[5].ctrl);
129 	writel(ORION5X_ADR_DEV_CS1, &winregs[5].base);
130 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_DEV_CS1,
131 		ORION5X_TARGET_DEVICE, ORION5X_ATTR_DEV_CS1,
132 		ORION5X_WIN_ENABLE), &winregs[5].ctrl);
133 /* Disable window 6, configure it for FLASH, enable it. */
134 	writel(0, &winregs[6].ctrl);
135 	writel(ORION5X_ADR_BOOTROM, &winregs[6].base);
136 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_BOOTROM,
137 		ORION5X_TARGET_DEVICE, ORION5X_ATTR_BOOTROM,
138 		ORION5X_WIN_ENABLE), &winregs[6].ctrl);
139 /* Disable window 7, configure it for FLASH, enable it. */
140 	writel(0, &winregs[7].ctrl);
141 	writel(ORION5X_ADR_BOOTROM, &winregs[7].base);
142 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_BOOTROM,
143 		ORION5X_TARGET_DEVICE, ORION5X_ATTR_BOOTROM,
144 		ORION5X_WIN_ENABLE), &winregs[7].ctrl);
145 /* Disable window 6, configure it for its intended target, enable it. */
146 	writel(0, &winregs[6].ctrl);
147 	writel(ORION5X_ADR_DEV_CS2, &winregs[6].base);
148 	writel(ORION5X_CPU_WIN_CTRL_DATA(ORION5X_SZ_DEV_CS2,
149 		ORION5X_TARGET_DEVICE, ORION5X_ATTR_DEV_CS2,
150 		ORION5X_WIN_ENABLE), &winregs[6].ctrl);
151 
152 	return 0;
153 }
154 
155 /*
156  * Orion5x identification is done through PCIE space.
157  */
158 
orion5x_device_id(void)159 u32 orion5x_device_id(void)
160 {
161 	return readl(PCIE_DEV_ID_OFF) >> 16;
162 }
163 
orion5x_device_rev(void)164 u32 orion5x_device_rev(void)
165 {
166 	return readl(PCIE_DEV_REV_OFF) & 0xff;
167 }
168 
169 #if defined(CONFIG_DISPLAY_CPUINFO)
170 
171 /* Display device and revision IDs.
172  * This function must cover all known device/revision
173  * combinations, not only the one for which u-boot is
174  * compiled; this way, one can identify actual HW in
175  * case of a mismatch.
176  */
print_cpuinfo(void)177 int print_cpuinfo(void)
178 {
179 	char dev_str[7]; /* room enough for 0x0000 plus null byte */
180 	char rev_str[5]; /* room enough for 0x00 plus null byte */
181 	char *dev_name = NULL;
182 	char *rev_name = NULL;
183 
184 	u32 dev = orion5x_device_id();
185 	u32 rev = orion5x_device_rev();
186 
187 	if (dev == MV88F5181_DEV_ID) {
188 		dev_name = "MV88F5181";
189 		if (rev == MV88F5181_REV_B1)
190 			rev_name = "B1";
191 		else if (rev == MV88F5181L_REV_A1) {
192 			dev_name = "MV88F5181L";
193 			rev_name = "A1";
194 		} else if (rev == MV88F5181L_REV_A0) {
195 			dev_name = "MV88F5181L";
196 			rev_name = "A0";
197 		}
198 	} else if (dev == MV88F5182_DEV_ID) {
199 		dev_name = "MV88F5182";
200 		if (rev == MV88F5182_REV_A2)
201 			rev_name = "A2";
202 	} else if (dev == MV88F5281_DEV_ID) {
203 		dev_name = "MV88F5281";
204 		if (rev == MV88F5281_REV_D2)
205 			rev_name = "D2";
206 		else if (rev == MV88F5281_REV_D1)
207 			rev_name = "D1";
208 		else if (rev == MV88F5281_REV_D0)
209 			rev_name = "D0";
210 	} else if (dev == MV88F6183_DEV_ID) {
211 		dev_name = "MV88F6183";
212 		if (rev == MV88F6183_REV_B0)
213 			rev_name = "B0";
214 	}
215 	if (dev_name == NULL) {
216 		sprintf(dev_str, "0x%04x", dev);
217 		dev_name = dev_str;
218 	}
219 	if (rev_name == NULL) {
220 		sprintf(rev_str, "0x%02x", rev);
221 		rev_name = rev_str;
222 	}
223 
224 	printf("SoC:   Orion5x %s-%s\n", dev_name, rev_name);
225 
226 	return 0;
227 }
228 #endif /* CONFIG_DISPLAY_CPUINFO */
229 
230 #ifdef CONFIG_ARCH_CPU_INIT
arch_cpu_init(void)231 int arch_cpu_init(void)
232 {
233 	/* Enable and invalidate L2 cache in write through mode */
234 	invalidate_l2_cache();
235 
236 #ifdef CONFIG_SPL_BUILD
237 	orion5x_config_adr_windows();
238 #endif
239 
240 	return 0;
241 }
242 #endif /* CONFIG_ARCH_CPU_INIT */
243 
244 /*
245  * SOC specific misc init
246  */
247 #if defined(CONFIG_ARCH_MISC_INIT)
arch_misc_init(void)248 int arch_misc_init(void)
249 {
250 	u32 temp;
251 
252 	/*CPU streaming & write allocate */
253 	temp = readfr_extra_feature_reg();
254 	temp &= ~(1 << 28);	/* disable wr alloc */
255 	writefr_extra_feature_reg(temp);
256 
257 	temp = readfr_extra_feature_reg();
258 	temp &= ~(1 << 29);	/* streaming disabled */
259 	writefr_extra_feature_reg(temp);
260 
261 	/* L2Cache settings */
262 	temp = readfr_extra_feature_reg();
263 	/* Disable L2C pre fetch - Set bit 24 */
264 	temp |= (1 << 24);
265 	/* enable L2C - Set bit 22 */
266 	temp |= (1 << 22);
267 	writefr_extra_feature_reg(temp);
268 
269 	icache_enable();
270 	/* Change reset vector to address 0x0 */
271 	temp = get_cr();
272 	set_cr(temp & ~CR_V);
273 
274 	/* Set CPIOs and MPPs - values provided by board
275 	   include file */
276 	writel(ORION5X_MPP0_7, ORION5X_MPP_BASE+0x00);
277 	writel(ORION5X_MPP8_15, ORION5X_MPP_BASE+0x04);
278 	writel(ORION5X_MPP16_23, ORION5X_MPP_BASE+0x50);
279 	writel(ORION5X_GPIO_OUT_VALUE, ORION5X_GPIO_BASE+0x00);
280 	writel(ORION5X_GPIO_OUT_ENABLE, ORION5X_GPIO_BASE+0x04);
281 	writel(ORION5X_GPIO_IN_POLARITY, ORION5X_GPIO_BASE+0x0c);
282 
283 	/* initialize timer */
284 	timer_init_r();
285 	return 0;
286 }
287 #endif /* CONFIG_ARCH_MISC_INIT */
288 
289 #ifdef CONFIG_MVGBE
cpu_eth_init(bd_t * bis)290 int cpu_eth_init(bd_t *bis)
291 {
292 	mvgbe_initialize(bis);
293 	return 0;
294 }
295 #endif
296