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1/*
2 * Copyright 2004-2007 Freescale Semiconductor, Inc. All Rights Reserved.
3 */
4
5/*
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 */
10
11#ifndef __ASM_ARCH_MXC_MX31_H__
12#define __ASM_ARCH_MXC_MX31_H__
13
14#ifndef __ASM_ARCH_MXC_HARDWARE_H__
15#error "Do not include directly."
16#endif
17
18/*
19 * MX31 memory map:
20 *
21 * Virt Phys Size What
22 * ---------------------------------------------------------------------------
23 * FC000000 43F00000 1M AIPS 1
24 * FC100000 50000000 1M SPBA
25 * FC200000 53F00000 1M AIPS 2
26 * FC500000 60000000 128M ROMPATCH
27 * FC400000 68000000 128M AVIC
28 * 70000000 256M IPU (MAX M2)
29 * 80000000 256M CSD0 SDRAM/DDR
30 * 90000000 256M CSD1 SDRAM/DDR
31 * A0000000 128M CS0 Flash
32 * A8000000 128M CS1 Flash
33 * B0000000 32M CS2
34 * B2000000 32M CS3
35 * F4000000 B4000000 32M CS4
36 * B6000000 32M CS5
37 * FC320000 B8000000 64K NAND, SDRAM, WEIM, M3IF, EMI controllers
38 * C0000000 64M PCMCIA/CF
39 */
40
41#define CS0_BASE_ADDR 0xA0000000
42#define CS1_BASE_ADDR 0xA8000000
43#define CS2_BASE_ADDR 0xB0000000
44#define CS3_BASE_ADDR 0xB2000000
45
46#define CS4_BASE_ADDR 0xB4000000
47#define CS4_BASE_ADDR_VIRT 0xF4000000
48#define CS4_SIZE SZ_32M
49
50#define CS5_BASE_ADDR 0xB6000000
51#define PCMCIA_MEM_BASE_ADDR 0xBC000000
52
53/*
54 * L2CC
55 */
56#define L2CC_BASE_ADDR 0x30000000
57#define L2CC_SIZE SZ_1M
58
59/*
60 * AIPS 1
61 */
62#define AIPS1_BASE_ADDR 0x43F00000
63#define AIPS1_BASE_ADDR_VIRT 0xFC000000
64#define AIPS1_SIZE SZ_1M
65
66#define MAX_BASE_ADDR (AIPS1_BASE_ADDR + 0x00004000)
67#define EVTMON_BASE_ADDR (AIPS1_BASE_ADDR + 0x00008000)
68#define CLKCTL_BASE_ADDR (AIPS1_BASE_ADDR + 0x0000C000)
69#define ETB_SLOT4_BASE_ADDR (AIPS1_BASE_ADDR + 0x00010000)
70#define ETB_SLOT5_BASE_ADDR (AIPS1_BASE_ADDR + 0x00014000)
71#define ECT_CTIO_BASE_ADDR (AIPS1_BASE_ADDR + 0x00018000)
72#define I2C_BASE_ADDR (AIPS1_BASE_ADDR + 0x00080000)
73#define I2C3_BASE_ADDR (AIPS1_BASE_ADDR + 0x00084000)
74#define UART1_BASE_ADDR (AIPS1_BASE_ADDR + 0x00090000)
75#define UART2_BASE_ADDR (AIPS1_BASE_ADDR + 0x00094000)
76#define I2C2_BASE_ADDR (AIPS1_BASE_ADDR + 0x00098000)
77#define OWIRE_BASE_ADDR (AIPS1_BASE_ADDR + 0x0009C000)
78#define SSI1_BASE_ADDR (AIPS1_BASE_ADDR + 0x000A0000)
79#define CSPI1_BASE_ADDR (AIPS1_BASE_ADDR + 0x000A4000)
80#define KPP_BASE_ADDR (AIPS1_BASE_ADDR + 0x000A8000)
81#define IOMUXC_BASE_ADDR (AIPS1_BASE_ADDR + 0x000AC000)
82#define ECT_IP1_BASE_ADDR (AIPS1_BASE_ADDR + 0x000B8000)
83#define ECT_IP2_BASE_ADDR (AIPS1_BASE_ADDR + 0x000BC000)
84
85/*
86 * SPBA global module enabled #0
87 */
88#define SPBA0_BASE_ADDR 0x50000000
89#define SPBA0_BASE_ADDR_VIRT 0xFC100000
90#define SPBA0_SIZE SZ_1M
91
92#define UART3_BASE_ADDR (SPBA0_BASE_ADDR + 0x0000C000)
93#define CSPI2_BASE_ADDR (SPBA0_BASE_ADDR + 0x00010000)
94#define SSI2_BASE_ADDR (SPBA0_BASE_ADDR + 0x00014000)
95#define ATA_DMA_BASE_ADDR (SPBA0_BASE_ADDR + 0x00020000)
96#define MSHC1_BASE_ADDR (SPBA0_BASE_ADDR + 0x00024000)
97#define SPBA_CTRL_BASE_ADDR (SPBA0_BASE_ADDR + 0x0003C000)
98
99/*
100 * AIPS 2
101 */
102#define AIPS2_BASE_ADDR 0x53F00000
103#define AIPS2_BASE_ADDR_VIRT 0xFC200000
104#define AIPS2_SIZE SZ_1M
105#define CCM_BASE_ADDR (AIPS2_BASE_ADDR + 0x00080000)
106#define GPT1_BASE_ADDR (AIPS2_BASE_ADDR + 0x00090000)
107#define EPIT1_BASE_ADDR (AIPS2_BASE_ADDR + 0x00094000)
108#define EPIT2_BASE_ADDR (AIPS2_BASE_ADDR + 0x00098000)
109#define GPIO3_BASE_ADDR (AIPS2_BASE_ADDR + 0x000A4000)
110#define SCC_BASE_ADDR (AIPS2_BASE_ADDR + 0x000AC000)
111#define RNGA_BASE_ADDR (AIPS2_BASE_ADDR + 0x000B0000)
112#define IPU_CTRL_BASE_ADDR (AIPS2_BASE_ADDR + 0x000C0000)
113#define AUDMUX_BASE_ADDR (AIPS2_BASE_ADDR + 0x000C4000)
114#define GPIO1_BASE_ADDR (AIPS2_BASE_ADDR + 0x000CC000)
115#define GPIO2_BASE_ADDR (AIPS2_BASE_ADDR + 0x000D0000)
116#define SDMA_BASE_ADDR (AIPS2_BASE_ADDR + 0x000D4000)
117#define RTC_BASE_ADDR (AIPS2_BASE_ADDR + 0x000D8000)
118#define WDOG_BASE_ADDR (AIPS2_BASE_ADDR + 0x000DC000)
119#define PWM_BASE_ADDR (AIPS2_BASE_ADDR + 0x000E0000)
120#define RTIC_BASE_ADDR (AIPS2_BASE_ADDR + 0x000EC000)
121
122/*
123 * ROMP and AVIC
124 */
125#define ROMP_BASE_ADDR 0x60000000
126#define ROMP_BASE_ADDR_VIRT 0xFC500000
127#define ROMP_SIZE SZ_1M
128
129#define AVIC_BASE_ADDR 0x68000000
130#define AVIC_BASE_ADDR_VIRT 0xFC400000
131#define AVIC_SIZE SZ_1M
132
133/*
134 * NAND, SDRAM, WEIM, M3IF, EMI controllers
135 */
136#define X_MEMC_BASE_ADDR 0xB8000000
137#define X_MEMC_BASE_ADDR_VIRT 0xFC320000
138#define X_MEMC_SIZE SZ_64K
139
140#define ESDCTL_BASE_ADDR (X_MEMC_BASE_ADDR + 0x1000)
141#define WEIM_BASE_ADDR (X_MEMC_BASE_ADDR + 0x2000)
142#define M3IF_BASE_ADDR (X_MEMC_BASE_ADDR + 0x3000)
143#define EMI_CTL_BASE_ADDR (X_MEMC_BASE_ADDR + 0x4000)
144#define PCMCIA_CTL_BASE_ADDR EMI_CTL_BASE_ADDR
145
146/*
147 * Memory regions and CS
148 */
149#define IPU_MEM_BASE_ADDR 0x70000000
150#define CSD0_BASE_ADDR 0x80000000
151#define CSD1_BASE_ADDR 0x90000000
152
153/*!
154 * This macro defines the physical to virtual address mapping for all the
155 * peripheral modules. It is used by passing in the physical address as x
156 * and returning the virtual address. If the physical address is not mapped,
157 * it returns 0xDEADBEEF
158 */
159#define IO_ADDRESS(x) \
160 (void __force __iomem *) \
161 (((x >= AIPS1_BASE_ADDR) && (x < (AIPS1_BASE_ADDR + AIPS1_SIZE))) ? AIPS1_IO_ADDRESS(x):\
162 ((x >= SPBA0_BASE_ADDR) && (x < (SPBA0_BASE_ADDR + SPBA0_SIZE))) ? SPBA0_IO_ADDRESS(x):\
163 ((x >= AIPS2_BASE_ADDR) && (x < (AIPS2_BASE_ADDR + AIPS2_SIZE))) ? AIPS2_IO_ADDRESS(x):\
164 ((x >= ROMP_BASE_ADDR) && (x < (ROMP_BASE_ADDR + ROMP_SIZE))) ? ROMP_IO_ADDRESS(x):\
165 ((x >= AVIC_BASE_ADDR) && (x < (AVIC_BASE_ADDR + AVIC_SIZE))) ? AVIC_IO_ADDRESS(x):\
166 ((x >= CS4_BASE_ADDR) && (x < (CS4_BASE_ADDR + CS4_SIZE))) ? CS4_IO_ADDRESS(x):\
167 ((x >= X_MEMC_BASE_ADDR) && (x < (X_MEMC_BASE_ADDR + X_MEMC_SIZE))) ? X_MEMC_IO_ADDRESS(x):\
168 0xDEADBEEF)
169
170/*
171 * define the address mapping macros: in physical address order
172 */
173#define L2CC_IO_ADDRESS(x) \
174 (((x) - L2CC_BASE_ADDR) + L2CC_BASE_ADDR_VIRT)
175
176#define AIPS1_IO_ADDRESS(x) \
177 (((x) - AIPS1_BASE_ADDR) + AIPS1_BASE_ADDR_VIRT)
178
179#define SPBA0_IO_ADDRESS(x) \
180 (((x) - SPBA0_BASE_ADDR) + SPBA0_BASE_ADDR_VIRT)
181
182#define AIPS2_IO_ADDRESS(x) \
183 (((x) - AIPS2_BASE_ADDR) + AIPS2_BASE_ADDR_VIRT)
184
185#define ROMP_IO_ADDRESS(x) \
186 (((x) - ROMP_BASE_ADDR) + ROMP_BASE_ADDR_VIRT)
187
188#define AVIC_IO_ADDRESS(x) \
189 (((x) - AVIC_BASE_ADDR) + AVIC_BASE_ADDR_VIRT)
190
191#define CS4_IO_ADDRESS(x) \
192 (((x) - CS4_BASE_ADDR) + CS4_BASE_ADDR_VIRT)
193
194#define X_MEMC_IO_ADDRESS(x) \
195 (((x) - X_MEMC_BASE_ADDR) + X_MEMC_BASE_ADDR_VIRT)
196
197#define PCMCIA_IO_ADDRESS(x) \
198 (((x) - X_MEMC_BASE_ADDR) + X_MEMC_BASE_ADDR_VIRT)
199
200/*
201 * Interrupt numbers
202 */
203#define MXC_INT_I2C3 3
204#define MXC_INT_I2C2 4
205#define MXC_INT_RTIC 6
206#define MXC_INT_I2C 10
207#define MXC_INT_CSPI2 13
208#define MXC_INT_CSPI1 14
209#define MXC_INT_ATA 15
210#define MXC_INT_UART3 18
211#define MXC_INT_IIM 19
212#define MXC_INT_RNGA 22
213#define MXC_INT_EVTMON 23
214#define MXC_INT_KPP 24
215#define MXC_INT_RTC 25
216#define MXC_INT_PWM 26
217#define MXC_INT_EPIT2 27
218#define MXC_INT_EPIT1 28
219#define MXC_INT_GPT 29
220#define MXC_INT_POWER_FAIL 30
221#define MXC_INT_UART2 32
222#define MXC_INT_NANDFC 33
223#define MXC_INT_SDMA 34
224#define MXC_INT_MSHC1 39
225#define MXC_INT_IPU_ERR 41
226#define MXC_INT_IPU_SYN 42
227#define MXC_INT_UART1 45
228#define MXC_INT_ECT 48
229#define MXC_INT_SCC_SCM 49
230#define MXC_INT_SCC_SMN 50
231#define MXC_INT_GPIO2 51
232#define MXC_INT_GPIO1 52
233#define MXC_INT_WDOG 55
234#define MXC_INT_GPIO3 56
235#define MXC_INT_EXT_POWER 58
236#define MXC_INT_EXT_TEMPER 59
237#define MXC_INT_EXT_SENSOR60 60
238#define MXC_INT_EXT_SENSOR61 61
239#define MXC_INT_EXT_WDOG 62
240#define MXC_INT_EXT_TV 63
241
242#define PROD_SIGNATURE 0x1 /* For MX31 */
243
244/* silicon revisions specific to i.MX31 */
245#define CHIP_REV_1_0 0x10
246#define CHIP_REV_1_1 0x11
247#define CHIP_REV_1_2 0x12
248#define CHIP_REV_1_3 0x13
249#define CHIP_REV_2_0 0x20
250#define CHIP_REV_2_1 0x21
251#define CHIP_REV_2_2 0x22
252#define CHIP_REV_2_3 0x23
253#define CHIP_REV_3_0 0x30
254#define CHIP_REV_3_1 0x31
255#define CHIP_REV_3_2 0x32
256
257#define SYSTEM_REV_MIN CHIP_REV_1_0
258#define SYSTEM_REV_NUM 3
259
260/* gpio and gpio based interrupt handling */
261#define GPIO_DR 0x00
262#define GPIO_GDIR 0x04
263#define GPIO_PSR 0x08
264#define GPIO_ICR1 0x0C
265#define GPIO_ICR2 0x10
266#define GPIO_IMR 0x14
267#define GPIO_ISR 0x18
268#define GPIO_INT_LOW_LEV 0x0
269#define GPIO_INT_HIGH_LEV 0x1
270#define GPIO_INT_RISE_EDGE 0x2
271#define GPIO_INT_FALL_EDGE 0x3
272#define GPIO_INT_NONE 0x4
273
274/* Mandatory defines used globally */
275
276/* this CPU supports up to 96 GPIOs */
277#define ARCH_NR_GPIOS 96
278
279#if !defined(__ASSEMBLY__) && !defined(__MXC_BOOT_UNCOMPRESS)
280
281extern unsigned int system_rev;
282
283static inline int mx31_revision(void)
284{
285 return system_rev;
286}
287#endif
288
289#endif /* __ASM_ARCH_MXC_MX31_H__ */
290