blob: 37134aaf9954f8fcaa2343f45406e9e0f00ae667 [file] [log] [blame]
Bryan Wu1394f032007-05-06 14:50:22 -07001/************************************************************************
2 *
3 * This file is subject to the terms and conditions of the GNU Public
4 * License. See the file "COPYING" in the main directory of this archive
5 * for more details.
6 *
7 * Non-GPL License also available as part of VisualDSP++
8 * http://www.analog.com/processors/resources/crosscore/visualDspDevSoftware.html
9 *
10 * (c) Copyright 2001-2005 Analog Devices, Inc. All rights reserved
11 *
12 * This file under source code control, please send bugs or changes to:
13 * dsptools.support@analog.com
14 *
15 ************************************************************************/
16/*
17 * File: include/asm-blackfin/mach-bf533/defBF532.h
18 * Based on:
19 * Author:
20 *
21 * Created:
22 * Description:
23 *
24 * Rev:
25 *
26 * Modified:
27 *
28 * Bugs: Enter bugs at http://blackfin.uclinux.org/
29 *
30 * This program is free software; you can redistribute it and/or modify
31 * it under the terms of the GNU General Public License as published by
32 * the Free Software Foundation; either version 2, or (at your option)
33 * any later version.
34 *
35 * This program is distributed in the hope that it will be useful,
36 * but WITHOUT ANY WARRANTY; without even the implied warranty of
37 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
38 * GNU General Public License for more details.
39 *
40 * You should have received a copy of the GNU General Public License
41 * along with this program; see the file COPYING.
42 * If not, write to the Free Software Foundation,
43 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
44 */
45/* SYSTEM & MM REGISTER BIT & ADDRESS DEFINITIONS FOR ADSP-BF532 */
46
47#ifndef _DEF_BF532_H
48#define _DEF_BF532_H
Bryan Wu19381f02007-05-21 18:09:31 +080049
Bryan Wu1394f032007-05-06 14:50:22 -070050/* include all Core registers and bit definitions */
51#include <asm/mach-common/def_LPBlackfin.h>
52
53/*********************************************************************************** */
54/* System MMR Register Map */
55/*********************************************************************************** */
56/* Clock and System Control (0xFFC00000 - 0xFFC000FF) */
57
58#define PLL_CTL 0xFFC00000 /* PLL Control register (16-bit) */
59#define PLL_DIV 0xFFC00004 /* PLL Divide Register (16-bit) */
60#define VR_CTL 0xFFC00008 /* Voltage Regulator Control Register (16-bit) */
61#define PLL_STAT 0xFFC0000C /* PLL Status register (16-bit) */
62#define PLL_LOCKCNT 0xFFC00010 /* PLL Lock Count register (16-bit) */
63#define CHIPID 0xFFC00014 /* Chip ID Register */
Bryan Wu1394f032007-05-06 14:50:22 -070064
65/* System Interrupt Controller (0xFFC00100 - 0xFFC001FF) */
Bryan Wu19381f02007-05-21 18:09:31 +080066#define SWRST 0xFFC00100 /* Software Reset Register (16-bit) */
67#define SYSCR 0xFFC00104 /* System Configuration registe */
Bryan Wu1394f032007-05-06 14:50:22 -070068#define SIC_RVECT 0xFFC00108 /* Interrupt Reset Vector Address Register */
69#define SIC_IMASK 0xFFC0010C /* Interrupt Mask Register */
70#define SIC_IAR0 0xFFC00110 /* Interrupt Assignment Register 0 */
71#define SIC_IAR1 0xFFC00114 /* Interrupt Assignment Register 1 */
72#define SIC_IAR2 0xFFC00118 /* Interrupt Assignment Register 2 */
73#define SIC_ISR 0xFFC00120 /* Interrupt Status Register */
74#define SIC_IWR 0xFFC00124 /* Interrupt Wakeup Register */
75
76/* Watchdog Timer (0xFFC00200 - 0xFFC002FF) */
77#define WDOG_CTL 0xFFC00200 /* Watchdog Control Register */
78#define WDOG_CNT 0xFFC00204 /* Watchdog Count Register */
79#define WDOG_STAT 0xFFC00208 /* Watchdog Status Register */
80
81/* Real Time Clock (0xFFC00300 - 0xFFC003FF) */
82#define RTC_STAT 0xFFC00300 /* RTC Status Register */
83#define RTC_ICTL 0xFFC00304 /* RTC Interrupt Control Register */
84#define RTC_ISTAT 0xFFC00308 /* RTC Interrupt Status Register */
85#define RTC_SWCNT 0xFFC0030C /* RTC Stopwatch Count Register */
86#define RTC_ALARM 0xFFC00310 /* RTC Alarm Time Register */
87#define RTC_FAST 0xFFC00314 /* RTC Prescaler Enable Register */
88#define RTC_PREN 0xFFC00314 /* RTC Prescaler Enable Register (alternate macro) */
89
90/* UART Controller (0xFFC00400 - 0xFFC004FF) */
91#define UART_THR 0xFFC00400 /* Transmit Holding register */
92#define UART_RBR 0xFFC00400 /* Receive Buffer register */
93#define UART_DLL 0xFFC00400 /* Divisor Latch (Low-Byte) */
94#define UART_IER 0xFFC00404 /* Interrupt Enable Register */
95#define UART_DLH 0xFFC00404 /* Divisor Latch (High-Byte) */
96#define UART_IIR 0xFFC00408 /* Interrupt Identification Register */
97#define UART_LCR 0xFFC0040C /* Line Control Register */
98#define UART_MCR 0xFFC00410 /* Modem Control Register */
99#define UART_LSR 0xFFC00414 /* Line Status Register */
100#if 0
101#define UART_MSR 0xFFC00418 /* Modem Status Register (UNUSED in ADSP-BF532) */
102#endif
103#define UART_SCR 0xFFC0041C /* SCR Scratch Register */
104#define UART_GCTL 0xFFC00424 /* Global Control Register */
105
106/* SPI Controller (0xFFC00500 - 0xFFC005FF) */
Bryan Wu1d487f42007-10-11 00:30:56 +0800107#define SPI0_REGBASE 0xFFC00500
Bryan Wu1394f032007-05-06 14:50:22 -0700108#define SPI_CTL 0xFFC00500 /* SPI Control Register */
109#define SPI_FLG 0xFFC00504 /* SPI Flag register */
110#define SPI_STAT 0xFFC00508 /* SPI Status register */
111#define SPI_TDBR 0xFFC0050C /* SPI Transmit Data Buffer Register */
112#define SPI_RDBR 0xFFC00510 /* SPI Receive Data Buffer Register */
113#define SPI_BAUD 0xFFC00514 /* SPI Baud rate Register */
114#define SPI_SHADOW 0xFFC00518 /* SPI_RDBR Shadow Register */
115
116/* TIMER 0, 1, 2 Registers (0xFFC00600 - 0xFFC006FF) */
117
118#define TIMER0_CONFIG 0xFFC00600 /* Timer 0 Configuration Register */
119#define TIMER0_COUNTER 0xFFC00604 /* Timer 0 Counter Register */
120#define TIMER0_PERIOD 0xFFC00608 /* Timer 0 Period Register */
121#define TIMER0_WIDTH 0xFFC0060C /* Timer 0 Width Register */
122
123#define TIMER1_CONFIG 0xFFC00610 /* Timer 1 Configuration Register */
124#define TIMER1_COUNTER 0xFFC00614 /* Timer 1 Counter Register */
125#define TIMER1_PERIOD 0xFFC00618 /* Timer 1 Period Register */
126#define TIMER1_WIDTH 0xFFC0061C /* Timer 1 Width Register */
127
128#define TIMER2_CONFIG 0xFFC00620 /* Timer 2 Configuration Register */
129#define TIMER2_COUNTER 0xFFC00624 /* Timer 2 Counter Register */
130#define TIMER2_PERIOD 0xFFC00628 /* Timer 2 Period Register */
131#define TIMER2_WIDTH 0xFFC0062C /* Timer 2 Width Register */
132
133#define TIMER_ENABLE 0xFFC00640 /* Timer Enable Register */
134#define TIMER_DISABLE 0xFFC00644 /* Timer Disable Register */
135#define TIMER_STATUS 0xFFC00648 /* Timer Status Register */
136
137/* General Purpose IO (0xFFC00700 - 0xFFC007FF) */
138
139#define FIO_FLAG_D 0xFFC00700 /* Flag Mask to directly specify state of pins */
140#define FIO_FLAG_C 0xFFC00704 /* Peripheral Interrupt Flag Register (clear) */
141#define FIO_FLAG_S 0xFFC00708 /* Peripheral Interrupt Flag Register (set) */
142#define FIO_FLAG_T 0xFFC0070C /* Flag Mask to directly toggle state of pins */
143#define FIO_MASKA_D 0xFFC00710 /* Flag Mask Interrupt A Register (set directly) */
144#define FIO_MASKA_C 0xFFC00714 /* Flag Mask Interrupt A Register (clear) */
145#define FIO_MASKA_S 0xFFC00718 /* Flag Mask Interrupt A Register (set) */
146#define FIO_MASKA_T 0xFFC0071C /* Flag Mask Interrupt A Register (toggle) */
147#define FIO_MASKB_D 0xFFC00720 /* Flag Mask Interrupt B Register (set directly) */
148#define FIO_MASKB_C 0xFFC00724 /* Flag Mask Interrupt B Register (clear) */
149#define FIO_MASKB_S 0xFFC00728 /* Flag Mask Interrupt B Register (set) */
150#define FIO_MASKB_T 0xFFC0072C /* Flag Mask Interrupt B Register (toggle) */
151#define FIO_DIR 0xFFC00730 /* Peripheral Flag Direction Register */
152#define FIO_POLAR 0xFFC00734 /* Flag Source Polarity Register */
153#define FIO_EDGE 0xFFC00738 /* Flag Source Sensitivity Register */
154#define FIO_BOTH 0xFFC0073C /* Flag Set on BOTH Edges Register */
155#define FIO_INEN 0xFFC00740 /* Flag Input Enable Register */
156
157/* SPORT0 Controller (0xFFC00800 - 0xFFC008FF) */
158#define SPORT0_TCR1 0xFFC00800 /* SPORT0 Transmit Configuration 1 Register */
159#define SPORT0_TCR2 0xFFC00804 /* SPORT0 Transmit Configuration 2 Register */
160#define SPORT0_TCLKDIV 0xFFC00808 /* SPORT0 Transmit Clock Divider */
161#define SPORT0_TFSDIV 0xFFC0080C /* SPORT0 Transmit Frame Sync Divider */
162#define SPORT0_TX 0xFFC00810 /* SPORT0 TX Data Register */
163#define SPORT0_RX 0xFFC00818 /* SPORT0 RX Data Register */
164#define SPORT0_RCR1 0xFFC00820 /* SPORT0 Transmit Configuration 1 Register */
165#define SPORT0_RCR2 0xFFC00824 /* SPORT0 Transmit Configuration 2 Register */
166#define SPORT0_RCLKDIV 0xFFC00828 /* SPORT0 Receive Clock Divider */
167#define SPORT0_RFSDIV 0xFFC0082C /* SPORT0 Receive Frame Sync Divider */
168#define SPORT0_STAT 0xFFC00830 /* SPORT0 Status Register */
169#define SPORT0_CHNL 0xFFC00834 /* SPORT0 Current Channel Register */
170#define SPORT0_MCMC1 0xFFC00838 /* SPORT0 Multi-Channel Configuration Register 1 */
171#define SPORT0_MCMC2 0xFFC0083C /* SPORT0 Multi-Channel Configuration Register 2 */
172#define SPORT0_MTCS0 0xFFC00840 /* SPORT0 Multi-Channel Transmit Select Register 0 */
173#define SPORT0_MTCS1 0xFFC00844 /* SPORT0 Multi-Channel Transmit Select Register 1 */
174#define SPORT0_MTCS2 0xFFC00848 /* SPORT0 Multi-Channel Transmit Select Register 2 */
175#define SPORT0_MTCS3 0xFFC0084C /* SPORT0 Multi-Channel Transmit Select Register 3 */
176#define SPORT0_MRCS0 0xFFC00850 /* SPORT0 Multi-Channel Receive Select Register 0 */
177#define SPORT0_MRCS1 0xFFC00854 /* SPORT0 Multi-Channel Receive Select Register 1 */
178#define SPORT0_MRCS2 0xFFC00858 /* SPORT0 Multi-Channel Receive Select Register 2 */
179#define SPORT0_MRCS3 0xFFC0085C /* SPORT0 Multi-Channel Receive Select Register 3 */
180
181/* SPORT1 Controller (0xFFC00900 - 0xFFC009FF) */
182#define SPORT1_TCR1 0xFFC00900 /* SPORT1 Transmit Configuration 1 Register */
183#define SPORT1_TCR2 0xFFC00904 /* SPORT1 Transmit Configuration 2 Register */
184#define SPORT1_TCLKDIV 0xFFC00908 /* SPORT1 Transmit Clock Divider */
185#define SPORT1_TFSDIV 0xFFC0090C /* SPORT1 Transmit Frame Sync Divider */
186#define SPORT1_TX 0xFFC00910 /* SPORT1 TX Data Register */
187#define SPORT1_RX 0xFFC00918 /* SPORT1 RX Data Register */
188#define SPORT1_RCR1 0xFFC00920 /* SPORT1 Transmit Configuration 1 Register */
189#define SPORT1_RCR2 0xFFC00924 /* SPORT1 Transmit Configuration 2 Register */
190#define SPORT1_RCLKDIV 0xFFC00928 /* SPORT1 Receive Clock Divider */
191#define SPORT1_RFSDIV 0xFFC0092C /* SPORT1 Receive Frame Sync Divider */
192#define SPORT1_STAT 0xFFC00930 /* SPORT1 Status Register */
193#define SPORT1_CHNL 0xFFC00934 /* SPORT1 Current Channel Register */
194#define SPORT1_MCMC1 0xFFC00938 /* SPORT1 Multi-Channel Configuration Register 1 */
195#define SPORT1_MCMC2 0xFFC0093C /* SPORT1 Multi-Channel Configuration Register 2 */
196#define SPORT1_MTCS0 0xFFC00940 /* SPORT1 Multi-Channel Transmit Select Register 0 */
197#define SPORT1_MTCS1 0xFFC00944 /* SPORT1 Multi-Channel Transmit Select Register 1 */
198#define SPORT1_MTCS2 0xFFC00948 /* SPORT1 Multi-Channel Transmit Select Register 2 */
199#define SPORT1_MTCS3 0xFFC0094C /* SPORT1 Multi-Channel Transmit Select Register 3 */
200#define SPORT1_MRCS0 0xFFC00950 /* SPORT1 Multi-Channel Receive Select Register 0 */
201#define SPORT1_MRCS1 0xFFC00954 /* SPORT1 Multi-Channel Receive Select Register 1 */
202#define SPORT1_MRCS2 0xFFC00958 /* SPORT1 Multi-Channel Receive Select Register 2 */
203#define SPORT1_MRCS3 0xFFC0095C /* SPORT1 Multi-Channel Receive Select Register 3 */
204
205/* Asynchronous Memory Controller - External Bus Interface Unit */
206#define EBIU_AMGCTL 0xFFC00A00 /* Asynchronous Memory Global Control Register */
207#define EBIU_AMBCTL0 0xFFC00A04 /* Asynchronous Memory Bank Control Register 0 */
208#define EBIU_AMBCTL1 0xFFC00A08 /* Asynchronous Memory Bank Control Register 1 */
209
210/* SDRAM Controller External Bus Interface Unit (0xFFC00A00 - 0xFFC00AFF) */
211
212#define EBIU_SDGCTL 0xFFC00A10 /* SDRAM Global Control Register */
213#define EBIU_SDBCTL 0xFFC00A14 /* SDRAM Bank Control Register */
214#define EBIU_SDRRC 0xFFC00A18 /* SDRAM Refresh Rate Control Register */
215#define EBIU_SDSTAT 0xFFC00A1C /* SDRAM Status Register */
216
217/* DMA Traffic controls */
Bryan Wu1394f032007-05-06 14:50:22 -0700218#define DMA_TC_PER 0xFFC00B0C /* Traffic Control Periods Register */
219#define DMA_TC_CNT 0xFFC00B10 /* Traffic Control Current Counts Register */
220
Bryan Wu19381f02007-05-21 18:09:31 +0800221/* Alternate deprecated register names (below) provided for backwards code compatibility */
222#define DMA_TCPER 0xFFC00B0C /* Traffic Control Periods Register */
223#define DMA_TCCNT 0xFFC00B10 /* Traffic Control Current Counts Register */
224
Bryan Wu1394f032007-05-06 14:50:22 -0700225/* DMA Controller (0xFFC00C00 - 0xFFC00FFF) */
226#define DMA0_CONFIG 0xFFC00C08 /* DMA Channel 0 Configuration Register */
227#define DMA0_NEXT_DESC_PTR 0xFFC00C00 /* DMA Channel 0 Next Descriptor Pointer Register */
228#define DMA0_START_ADDR 0xFFC00C04 /* DMA Channel 0 Start Address Register */
229#define DMA0_X_COUNT 0xFFC00C10 /* DMA Channel 0 X Count Register */
230#define DMA0_Y_COUNT 0xFFC00C18 /* DMA Channel 0 Y Count Register */
231#define DMA0_X_MODIFY 0xFFC00C14 /* DMA Channel 0 X Modify Register */
232#define DMA0_Y_MODIFY 0xFFC00C1C /* DMA Channel 0 Y Modify Register */
233#define DMA0_CURR_DESC_PTR 0xFFC00C20 /* DMA Channel 0 Current Descriptor Pointer Register */
234#define DMA0_CURR_ADDR 0xFFC00C24 /* DMA Channel 0 Current Address Register */
235#define DMA0_CURR_X_COUNT 0xFFC00C30 /* DMA Channel 0 Current X Count Register */
236#define DMA0_CURR_Y_COUNT 0xFFC00C38 /* DMA Channel 0 Current Y Count Register */
237#define DMA0_IRQ_STATUS 0xFFC00C28 /* DMA Channel 0 Interrupt/Status Register */
238#define DMA0_PERIPHERAL_MAP 0xFFC00C2C /* DMA Channel 0 Peripheral Map Register */
239
240#define DMA1_CONFIG 0xFFC00C48 /* DMA Channel 1 Configuration Register */
241#define DMA1_NEXT_DESC_PTR 0xFFC00C40 /* DMA Channel 1 Next Descriptor Pointer Register */
242#define DMA1_START_ADDR 0xFFC00C44 /* DMA Channel 1 Start Address Register */
243#define DMA1_X_COUNT 0xFFC00C50 /* DMA Channel 1 X Count Register */
244#define DMA1_Y_COUNT 0xFFC00C58 /* DMA Channel 1 Y Count Register */
245#define DMA1_X_MODIFY 0xFFC00C54 /* DMA Channel 1 X Modify Register */
246#define DMA1_Y_MODIFY 0xFFC00C5C /* DMA Channel 1 Y Modify Register */
247#define DMA1_CURR_DESC_PTR 0xFFC00C60 /* DMA Channel 1 Current Descriptor Pointer Register */
248#define DMA1_CURR_ADDR 0xFFC00C64 /* DMA Channel 1 Current Address Register */
249#define DMA1_CURR_X_COUNT 0xFFC00C70 /* DMA Channel 1 Current X Count Register */
250#define DMA1_CURR_Y_COUNT 0xFFC00C78 /* DMA Channel 1 Current Y Count Register */
251#define DMA1_IRQ_STATUS 0xFFC00C68 /* DMA Channel 1 Interrupt/Status Register */
252#define DMA1_PERIPHERAL_MAP 0xFFC00C6C /* DMA Channel 1 Peripheral Map Register */
253
254#define DMA2_CONFIG 0xFFC00C88 /* DMA Channel 2 Configuration Register */
255#define DMA2_NEXT_DESC_PTR 0xFFC00C80 /* DMA Channel 2 Next Descriptor Pointer Register */
256#define DMA2_START_ADDR 0xFFC00C84 /* DMA Channel 2 Start Address Register */
257#define DMA2_X_COUNT 0xFFC00C90 /* DMA Channel 2 X Count Register */
258#define DMA2_Y_COUNT 0xFFC00C98 /* DMA Channel 2 Y Count Register */
259#define DMA2_X_MODIFY 0xFFC00C94 /* DMA Channel 2 X Modify Register */
260#define DMA2_Y_MODIFY 0xFFC00C9C /* DMA Channel 2 Y Modify Register */
261#define DMA2_CURR_DESC_PTR 0xFFC00CA0 /* DMA Channel 2 Current Descriptor Pointer Register */
262#define DMA2_CURR_ADDR 0xFFC00CA4 /* DMA Channel 2 Current Address Register */
263#define DMA2_CURR_X_COUNT 0xFFC00CB0 /* DMA Channel 2 Current X Count Register */
264#define DMA2_CURR_Y_COUNT 0xFFC00CB8 /* DMA Channel 2 Current Y Count Register */
265#define DMA2_IRQ_STATUS 0xFFC00CA8 /* DMA Channel 2 Interrupt/Status Register */
266#define DMA2_PERIPHERAL_MAP 0xFFC00CAC /* DMA Channel 2 Peripheral Map Register */
267
268#define DMA3_CONFIG 0xFFC00CC8 /* DMA Channel 3 Configuration Register */
269#define DMA3_NEXT_DESC_PTR 0xFFC00CC0 /* DMA Channel 3 Next Descriptor Pointer Register */
270#define DMA3_START_ADDR 0xFFC00CC4 /* DMA Channel 3 Start Address Register */
271#define DMA3_X_COUNT 0xFFC00CD0 /* DMA Channel 3 X Count Register */
272#define DMA3_Y_COUNT 0xFFC00CD8 /* DMA Channel 3 Y Count Register */
273#define DMA3_X_MODIFY 0xFFC00CD4 /* DMA Channel 3 X Modify Register */
274#define DMA3_Y_MODIFY 0xFFC00CDC /* DMA Channel 3 Y Modify Register */
275#define DMA3_CURR_DESC_PTR 0xFFC00CE0 /* DMA Channel 3 Current Descriptor Pointer Register */
276#define DMA3_CURR_ADDR 0xFFC00CE4 /* DMA Channel 3 Current Address Register */
277#define DMA3_CURR_X_COUNT 0xFFC00CF0 /* DMA Channel 3 Current X Count Register */
278#define DMA3_CURR_Y_COUNT 0xFFC00CF8 /* DMA Channel 3 Current Y Count Register */
279#define DMA3_IRQ_STATUS 0xFFC00CE8 /* DMA Channel 3 Interrupt/Status Register */
280#define DMA3_PERIPHERAL_MAP 0xFFC00CEC /* DMA Channel 3 Peripheral Map Register */
281
282#define DMA4_CONFIG 0xFFC00D08 /* DMA Channel 4 Configuration Register */
283#define DMA4_NEXT_DESC_PTR 0xFFC00D00 /* DMA Channel 4 Next Descriptor Pointer Register */
284#define DMA4_START_ADDR 0xFFC00D04 /* DMA Channel 4 Start Address Register */
285#define DMA4_X_COUNT 0xFFC00D10 /* DMA Channel 4 X Count Register */
286#define DMA4_Y_COUNT 0xFFC00D18 /* DMA Channel 4 Y Count Register */
287#define DMA4_X_MODIFY 0xFFC00D14 /* DMA Channel 4 X Modify Register */
288#define DMA4_Y_MODIFY 0xFFC00D1C /* DMA Channel 4 Y Modify Register */
289#define DMA4_CURR_DESC_PTR 0xFFC00D20 /* DMA Channel 4 Current Descriptor Pointer Register */
290#define DMA4_CURR_ADDR 0xFFC00D24 /* DMA Channel 4 Current Address Register */
291#define DMA4_CURR_X_COUNT 0xFFC00D30 /* DMA Channel 4 Current X Count Register */
292#define DMA4_CURR_Y_COUNT 0xFFC00D38 /* DMA Channel 4 Current Y Count Register */
293#define DMA4_IRQ_STATUS 0xFFC00D28 /* DMA Channel 4 Interrupt/Status Register */
294#define DMA4_PERIPHERAL_MAP 0xFFC00D2C /* DMA Channel 4 Peripheral Map Register */
295
296#define DMA5_CONFIG 0xFFC00D48 /* DMA Channel 5 Configuration Register */
297#define DMA5_NEXT_DESC_PTR 0xFFC00D40 /* DMA Channel 5 Next Descriptor Pointer Register */
298#define DMA5_START_ADDR 0xFFC00D44 /* DMA Channel 5 Start Address Register */
299#define DMA5_X_COUNT 0xFFC00D50 /* DMA Channel 5 X Count Register */
300#define DMA5_Y_COUNT 0xFFC00D58 /* DMA Channel 5 Y Count Register */
301#define DMA5_X_MODIFY 0xFFC00D54 /* DMA Channel 5 X Modify Register */
302#define DMA5_Y_MODIFY 0xFFC00D5C /* DMA Channel 5 Y Modify Register */
303#define DMA5_CURR_DESC_PTR 0xFFC00D60 /* DMA Channel 5 Current Descriptor Pointer Register */
304#define DMA5_CURR_ADDR 0xFFC00D64 /* DMA Channel 5 Current Address Register */
305#define DMA5_CURR_X_COUNT 0xFFC00D70 /* DMA Channel 5 Current X Count Register */
306#define DMA5_CURR_Y_COUNT 0xFFC00D78 /* DMA Channel 5 Current Y Count Register */
307#define DMA5_IRQ_STATUS 0xFFC00D68 /* DMA Channel 5 Interrupt/Status Register */
308#define DMA5_PERIPHERAL_MAP 0xFFC00D6C /* DMA Channel 5 Peripheral Map Register */
309
310#define DMA6_CONFIG 0xFFC00D88 /* DMA Channel 6 Configuration Register */
311#define DMA6_NEXT_DESC_PTR 0xFFC00D80 /* DMA Channel 6 Next Descriptor Pointer Register */
312#define DMA6_START_ADDR 0xFFC00D84 /* DMA Channel 6 Start Address Register */
313#define DMA6_X_COUNT 0xFFC00D90 /* DMA Channel 6 X Count Register */
314#define DMA6_Y_COUNT 0xFFC00D98 /* DMA Channel 6 Y Count Register */
315#define DMA6_X_MODIFY 0xFFC00D94 /* DMA Channel 6 X Modify Register */
316#define DMA6_Y_MODIFY 0xFFC00D9C /* DMA Channel 6 Y Modify Register */
317#define DMA6_CURR_DESC_PTR 0xFFC00DA0 /* DMA Channel 6 Current Descriptor Pointer Register */
318#define DMA6_CURR_ADDR 0xFFC00DA4 /* DMA Channel 6 Current Address Register */
319#define DMA6_CURR_X_COUNT 0xFFC00DB0 /* DMA Channel 6 Current X Count Register */
320#define DMA6_CURR_Y_COUNT 0xFFC00DB8 /* DMA Channel 6 Current Y Count Register */
321#define DMA6_IRQ_STATUS 0xFFC00DA8 /* DMA Channel 6 Interrupt/Status Register */
322#define DMA6_PERIPHERAL_MAP 0xFFC00DAC /* DMA Channel 6 Peripheral Map Register */
323
324#define DMA7_CONFIG 0xFFC00DC8 /* DMA Channel 7 Configuration Register */
325#define DMA7_NEXT_DESC_PTR 0xFFC00DC0 /* DMA Channel 7 Next Descriptor Pointer Register */
326#define DMA7_START_ADDR 0xFFC00DC4 /* DMA Channel 7 Start Address Register */
327#define DMA7_X_COUNT 0xFFC00DD0 /* DMA Channel 7 X Count Register */
328#define DMA7_Y_COUNT 0xFFC00DD8 /* DMA Channel 7 Y Count Register */
329#define DMA7_X_MODIFY 0xFFC00DD4 /* DMA Channel 7 X Modify Register */
330#define DMA7_Y_MODIFY 0xFFC00DDC /* DMA Channel 7 Y Modify Register */
331#define DMA7_CURR_DESC_PTR 0xFFC00DE0 /* DMA Channel 7 Current Descriptor Pointer Register */
332#define DMA7_CURR_ADDR 0xFFC00DE4 /* DMA Channel 7 Current Address Register */
333#define DMA7_CURR_X_COUNT 0xFFC00DF0 /* DMA Channel 7 Current X Count Register */
334#define DMA7_CURR_Y_COUNT 0xFFC00DF8 /* DMA Channel 7 Current Y Count Register */
335#define DMA7_IRQ_STATUS 0xFFC00DE8 /* DMA Channel 7 Interrupt/Status Register */
336#define DMA7_PERIPHERAL_MAP 0xFFC00DEC /* DMA Channel 7 Peripheral Map Register */
337
338#define MDMA_D1_CONFIG 0xFFC00E88 /* MemDMA Stream 1 Destination Configuration Register */
339#define MDMA_D1_NEXT_DESC_PTR 0xFFC00E80 /* MemDMA Stream 1 Destination Next Descriptor Pointer Register */
340#define MDMA_D1_START_ADDR 0xFFC00E84 /* MemDMA Stream 1 Destination Start Address Register */
341#define MDMA_D1_X_COUNT 0xFFC00E90 /* MemDMA Stream 1 Destination X Count Register */
342#define MDMA_D1_Y_COUNT 0xFFC00E98 /* MemDMA Stream 1 Destination Y Count Register */
343#define MDMA_D1_X_MODIFY 0xFFC00E94 /* MemDMA Stream 1 Destination X Modify Register */
344#define MDMA_D1_Y_MODIFY 0xFFC00E9C /* MemDMA Stream 1 Destination Y Modify Register */
345#define MDMA_D1_CURR_DESC_PTR 0xFFC00EA0 /* MemDMA Stream 1 Destination Current Descriptor Pointer Register */
346#define MDMA_D1_CURR_ADDR 0xFFC00EA4 /* MemDMA Stream 1 Destination Current Address Register */
347#define MDMA_D1_CURR_X_COUNT 0xFFC00EB0 /* MemDMA Stream 1 Destination Current X Count Register */
348#define MDMA_D1_CURR_Y_COUNT 0xFFC00EB8 /* MemDMA Stream 1 Destination Current Y Count Register */
349#define MDMA_D1_IRQ_STATUS 0xFFC00EA8 /* MemDMA Stream 1 Destination Interrupt/Status Register */
350#define MDMA_D1_PERIPHERAL_MAP 0xFFC00EAC /* MemDMA Stream 1 Destination Peripheral Map Register */
351
352#define MDMA_S1_CONFIG 0xFFC00EC8 /* MemDMA Stream 1 Source Configuration Register */
353#define MDMA_S1_NEXT_DESC_PTR 0xFFC00EC0 /* MemDMA Stream 1 Source Next Descriptor Pointer Register */
354#define MDMA_S1_START_ADDR 0xFFC00EC4 /* MemDMA Stream 1 Source Start Address Register */
355#define MDMA_S1_X_COUNT 0xFFC00ED0 /* MemDMA Stream 1 Source X Count Register */
356#define MDMA_S1_Y_COUNT 0xFFC00ED8 /* MemDMA Stream 1 Source Y Count Register */
357#define MDMA_S1_X_MODIFY 0xFFC00ED4 /* MemDMA Stream 1 Source X Modify Register */
358#define MDMA_S1_Y_MODIFY 0xFFC00EDC /* MemDMA Stream 1 Source Y Modify Register */
359#define MDMA_S1_CURR_DESC_PTR 0xFFC00EE0 /* MemDMA Stream 1 Source Current Descriptor Pointer Register */
360#define MDMA_S1_CURR_ADDR 0xFFC00EE4 /* MemDMA Stream 1 Source Current Address Register */
361#define MDMA_S1_CURR_X_COUNT 0xFFC00EF0 /* MemDMA Stream 1 Source Current X Count Register */
362#define MDMA_S1_CURR_Y_COUNT 0xFFC00EF8 /* MemDMA Stream 1 Source Current Y Count Register */
363#define MDMA_S1_IRQ_STATUS 0xFFC00EE8 /* MemDMA Stream 1 Source Interrupt/Status Register */
364#define MDMA_S1_PERIPHERAL_MAP 0xFFC00EEC /* MemDMA Stream 1 Source Peripheral Map Register */
365
366#define MDMA_D0_CONFIG 0xFFC00E08 /* MemDMA Stream 0 Destination Configuration Register */
367#define MDMA_D0_NEXT_DESC_PTR 0xFFC00E00 /* MemDMA Stream 0 Destination Next Descriptor Pointer Register */
368#define MDMA_D0_START_ADDR 0xFFC00E04 /* MemDMA Stream 0 Destination Start Address Register */
369#define MDMA_D0_X_COUNT 0xFFC00E10 /* MemDMA Stream 0 Destination X Count Register */
370#define MDMA_D0_Y_COUNT 0xFFC00E18 /* MemDMA Stream 0 Destination Y Count Register */
371#define MDMA_D0_X_MODIFY 0xFFC00E14 /* MemDMA Stream 0 Destination X Modify Register */
372#define MDMA_D0_Y_MODIFY 0xFFC00E1C /* MemDMA Stream 0 Destination Y Modify Register */
373#define MDMA_D0_CURR_DESC_PTR 0xFFC00E20 /* MemDMA Stream 0 Destination Current Descriptor Pointer Register */
374#define MDMA_D0_CURR_ADDR 0xFFC00E24 /* MemDMA Stream 0 Destination Current Address Register */
375#define MDMA_D0_CURR_X_COUNT 0xFFC00E30 /* MemDMA Stream 0 Destination Current X Count Register */
376#define MDMA_D0_CURR_Y_COUNT 0xFFC00E38 /* MemDMA Stream 0 Destination Current Y Count Register */
377#define MDMA_D0_IRQ_STATUS 0xFFC00E28 /* MemDMA Stream 0 Destination Interrupt/Status Register */
378#define MDMA_D0_PERIPHERAL_MAP 0xFFC00E2C /* MemDMA Stream 0 Destination Peripheral Map Register */
379
380#define MDMA_S0_CONFIG 0xFFC00E48 /* MemDMA Stream 0 Source Configuration Register */
381#define MDMA_S0_NEXT_DESC_PTR 0xFFC00E40 /* MemDMA Stream 0 Source Next Descriptor Pointer Register */
382#define MDMA_S0_START_ADDR 0xFFC00E44 /* MemDMA Stream 0 Source Start Address Register */
383#define MDMA_S0_X_COUNT 0xFFC00E50 /* MemDMA Stream 0 Source X Count Register */
384#define MDMA_S0_Y_COUNT 0xFFC00E58 /* MemDMA Stream 0 Source Y Count Register */
385#define MDMA_S0_X_MODIFY 0xFFC00E54 /* MemDMA Stream 0 Source X Modify Register */
386#define MDMA_S0_Y_MODIFY 0xFFC00E5C /* MemDMA Stream 0 Source Y Modify Register */
387#define MDMA_S0_CURR_DESC_PTR 0xFFC00E60 /* MemDMA Stream 0 Source Current Descriptor Pointer Register */
388#define MDMA_S0_CURR_ADDR 0xFFC00E64 /* MemDMA Stream 0 Source Current Address Register */
389#define MDMA_S0_CURR_X_COUNT 0xFFC00E70 /* MemDMA Stream 0 Source Current X Count Register */
390#define MDMA_S0_CURR_Y_COUNT 0xFFC00E78 /* MemDMA Stream 0 Source Current Y Count Register */
391#define MDMA_S0_IRQ_STATUS 0xFFC00E68 /* MemDMA Stream 0 Source Interrupt/Status Register */
392#define MDMA_S0_PERIPHERAL_MAP 0xFFC00E6C /* MemDMA Stream 0 Source Peripheral Map Register */
393
394/* Parallel Peripheral Interface (PPI) (0xFFC01000 - 0xFFC010FF) */
395
396#define PPI_CONTROL 0xFFC01000 /* PPI Control Register */
397#define PPI_STATUS 0xFFC01004 /* PPI Status Register */
398#define PPI_COUNT 0xFFC01008 /* PPI Transfer Count Register */
399#define PPI_DELAY 0xFFC0100C /* PPI Delay Count Register */
400#define PPI_FRAME 0xFFC01010 /* PPI Frame Length Register */
401
402/*********************************************************************************** */
403/* System MMR Register Bits */
404/******************************************************************************* */
405
406/* ********************* PLL AND RESET MASKS ************************ */
407
408/* PLL_CTL Masks */
Bryan Wu19381f02007-05-21 18:09:31 +0800409#define PLL_CLKIN 0x0000 /* Pass CLKIN to PLL */
410#define PLL_CLKIN_DIV2 0x0001 /* Pass CLKIN/2 to PLL */
411#define DF 0x0001 /* 0: PLL = CLKIN, 1: PLL = CLKIN/2 */
412#define PLL_OFF 0x0002 /* Shut off PLL clocks */
413#define STOPCK_OFF 0x0008 /* Core clock off */
414#define STOPCK 0x0008 /* Core Clock Off */
415#define PDWN 0x0020 /* Put the PLL in a Deep Sleep state */
416#if !defined(__ADSPBF538__)
417/* this file is included in defBF538.h but IN_DELAY/OUT_DELAY are different */
418# define IN_DELAY 0x0040 /* Add 200ps Delay To EBIU Input Latches */
419# define OUT_DELAY 0x0080 /* Add 200ps Delay To EBIU Output Signals */
420#endif
421#define BYPASS 0x0100 /* Bypass the PLL */
422/* PLL_CTL Macros (Only Use With Logic OR While Setting Lower Order Bits) */
423#define SET_MSEL(x) (((x)&0x3F) << 0x9) /* Set MSEL = 0-63 --> VCO = CLKIN*MSEL */
Bryan Wu1394f032007-05-06 14:50:22 -0700424
425/* PLL_DIV Masks */
Bryan Wu19381f02007-05-21 18:09:31 +0800426#define SSEL 0x000F /* System Select */
427#define CSEL 0x0030 /* Core Select */
Bryan Wu1394f032007-05-06 14:50:22 -0700428
429#define SCLK_DIV(x) (x) /* SCLK = VCO / x */
430
431#define CCLK_DIV1 0x00000000 /* CCLK = VCO / 1 */
432#define CCLK_DIV2 0x00000010 /* CCLK = VCO / 2 */
433#define CCLK_DIV4 0x00000020 /* CCLK = VCO / 4 */
434#define CCLK_DIV8 0x00000030 /* CCLK = VCO / 8 */
Bryan Wu19381f02007-05-21 18:09:31 +0800435/* PLL_DIV Macros */
436#define SET_SSEL(x) ((x)&0xF) /* Set SSEL = 0-15 --> SCLK = VCO/SSEL */
Bryan Wu1394f032007-05-06 14:50:22 -0700437
438/* PLL_STAT Masks */
439#define ACTIVE_PLLENABLED 0x0001 /* Processor In Active Mode With PLL Enabled */
440#define FULL_ON 0x0002 /* Processor In Full On Mode */
441#define ACTIVE_PLLDISABLED 0x0004 /* Processor In Active Mode With PLL Disabled */
442#define PLL_LOCKED 0x0020 /* PLL_LOCKCNT Has Been Reached */
443
Bryan Wu19381f02007-05-21 18:09:31 +0800444/* VR_CTL Masks */
445#define FREQ 0x0003 /* Switching Oscillator Frequency For Regulator */
446#define HIBERNATE 0x0000 /* Powerdown/Bypass On-Board Regulation */
447#define FREQ_333 0x0001 /* Switching Frequency Is 333 kHz */
448#define FREQ_667 0x0002 /* Switching Frequency Is 667 kHz */
449#define FREQ_1000 0x0003 /* Switching Frequency Is 1 MHz */
450
451#define GAIN 0x000C /* Voltage Level Gain */
452#define GAIN_5 0x0000 /* GAIN = 5 */
453#define GAIN_10 0x0004 /* GAIN = 10 */
454#define GAIN_20 0x0008 /* GAIN = 20 */
455#define GAIN_50 0x000C /* GAIN = 50 */
456
457#define VLEV 0x00F0 /* Internal Voltage Level */
458#define VLEV_085 0x0060 /* VLEV = 0.85 V (-5% - +10% Accuracy) */
459#define VLEV_090 0x0070 /* VLEV = 0.90 V (-5% - +10% Accuracy) */
460#define VLEV_095 0x0080 /* VLEV = 0.95 V (-5% - +10% Accuracy) */
461#define VLEV_100 0x0090 /* VLEV = 1.00 V (-5% - +10% Accuracy) */
462#define VLEV_105 0x00A0 /* VLEV = 1.05 V (-5% - +10% Accuracy) */
463#define VLEV_110 0x00B0 /* VLEV = 1.10 V (-5% - +10% Accuracy) */
464#define VLEV_115 0x00C0 /* VLEV = 1.15 V (-5% - +10% Accuracy) */
465#define VLEV_120 0x00D0 /* VLEV = 1.20 V (-5% - +10% Accuracy) */
466
467#define WAKE 0x0100 /* Enable RTC/Reset Wakeup From Hibernate */
468#define SCKELOW 0x8000 /* Do Not Drive SCKE High During Reset After Hibernate */
469
Bryan Wu1394f032007-05-06 14:50:22 -0700470/* CHIPID Masks */
471#define CHIPID_VERSION 0xF0000000
472#define CHIPID_FAMILY 0x0FFFF000
473#define CHIPID_MANUFACTURE 0x00000FFE
474
475/* SWRST Mask */
Bryan Wu19381f02007-05-21 18:09:31 +0800476#define SYSTEM_RESET 0x0007 /* Initiates A System Software Reset */
477#define DOUBLE_FAULT 0x0008 /* Core Double Fault Causes Reset */
478#define RESET_DOUBLE 0x2000 /* SW Reset Generated By Core Double-Fault */
479#define RESET_WDOG 0x4000 /* SW Reset Generated By Watchdog Timer */
480#define RESET_SOFTWARE 0x8000 /* SW Reset Occurred Since Last Read Of SWRST */
481
482/* SYSCR Masks */
483#define BMODE 0x0006 /* Boot Mode - Latched During HW Reset From Mode Pins */
484#define NOBOOT 0x0010 /* Execute From L1 or ASYNC Bank 0 When BMODE = 0 */
Bryan Wu1394f032007-05-06 14:50:22 -0700485
486/* ************* SYSTEM INTERRUPT CONTROLLER MASKS ***************** */
487
488 /* SIC_IAR0 Masks */
489
490#define P0_IVG(x) ((x)-7) /* Peripheral #0 assigned IVG #x */
491#define P1_IVG(x) ((x)-7) << 0x4 /* Peripheral #1 assigned IVG #x */
492#define P2_IVG(x) ((x)-7) << 0x8 /* Peripheral #2 assigned IVG #x */
493#define P3_IVG(x) ((x)-7) << 0xC /* Peripheral #3 assigned IVG #x */
494#define P4_IVG(x) ((x)-7) << 0x10 /* Peripheral #4 assigned IVG #x */
495#define P5_IVG(x) ((x)-7) << 0x14 /* Peripheral #5 assigned IVG #x */
496#define P6_IVG(x) ((x)-7) << 0x18 /* Peripheral #6 assigned IVG #x */
497#define P7_IVG(x) ((x)-7) << 0x1C /* Peripheral #7 assigned IVG #x */
498
499/* SIC_IAR1 Masks */
500
501#define P8_IVG(x) ((x)-7) /* Peripheral #8 assigned IVG #x */
502#define P9_IVG(x) ((x)-7) << 0x4 /* Peripheral #9 assigned IVG #x */
503#define P10_IVG(x) ((x)-7) << 0x8 /* Peripheral #10 assigned IVG #x */
504#define P11_IVG(x) ((x)-7) << 0xC /* Peripheral #11 assigned IVG #x */
505#define P12_IVG(x) ((x)-7) << 0x10 /* Peripheral #12 assigned IVG #x */
506#define P13_IVG(x) ((x)-7) << 0x14 /* Peripheral #13 assigned IVG #x */
507#define P14_IVG(x) ((x)-7) << 0x18 /* Peripheral #14 assigned IVG #x */
508#define P15_IVG(x) ((x)-7) << 0x1C /* Peripheral #15 assigned IVG #x */
509
510/* SIC_IAR2 Masks */
511#define P16_IVG(x) ((x)-7) /* Peripheral #16 assigned IVG #x */
512#define P17_IVG(x) ((x)-7) << 0x4 /* Peripheral #17 assigned IVG #x */
513#define P18_IVG(x) ((x)-7) << 0x8 /* Peripheral #18 assigned IVG #x */
514#define P19_IVG(x) ((x)-7) << 0xC /* Peripheral #19 assigned IVG #x */
515#define P20_IVG(x) ((x)-7) << 0x10 /* Peripheral #20 assigned IVG #x */
516#define P21_IVG(x) ((x)-7) << 0x14 /* Peripheral #21 assigned IVG #x */
517#define P22_IVG(x) ((x)-7) << 0x18 /* Peripheral #22 assigned IVG #x */
518#define P23_IVG(x) ((x)-7) << 0x1C /* Peripheral #23 assigned IVG #x */
519
520/* SIC_IMASK Masks */
521#define SIC_UNMASK_ALL 0x00000000 /* Unmask all peripheral interrupts */
522#define SIC_MASK_ALL 0xFFFFFFFF /* Mask all peripheral interrupts */
523#define SIC_MASK(x) (1 << (x)) /* Mask Peripheral #x interrupt */
524#define SIC_UNMASK(x) (0xFFFFFFFF ^ (1 << (x))) /* Unmask Peripheral #x interrupt */
525
526/* SIC_IWR Masks */
527#define IWR_DISABLE_ALL 0x00000000 /* Wakeup Disable all peripherals */
528#define IWR_ENABLE_ALL 0xFFFFFFFF /* Wakeup Enable all peripherals */
529#define IWR_ENABLE(x) (1 << (x)) /* Wakeup Enable Peripheral #x */
530#define IWR_DISABLE(x) (0xFFFFFFFF ^ (1 << (x))) /* Wakeup Disable Peripheral #x */
531
Bryan Wu1394f032007-05-06 14:50:22 -0700532/* ***************************** UART CONTROLLER MASKS ********************** */
533
534/* UART_LCR Register */
535
536#define DLAB 0x80
537#define SB 0x40
538#define STP 0x20
539#define EPS 0x10
540#define PEN 0x08
541#define STB 0x04
542#define WLS(x) ((x-5) & 0x03)
543
544#define DLAB_P 0x07
545#define SB_P 0x06
546#define STP_P 0x05
547#define EPS_P 0x04
548#define PEN_P 0x03
549#define STB_P 0x02
550#define WLS_P1 0x01
551#define WLS_P0 0x00
552
553/* UART_MCR Register */
554#define LOOP_ENA 0x10
555#define LOOP_ENA_P 0x04
556
557/* UART_LSR Register */
558#define TEMT 0x40
559#define THRE 0x20
560#define BI 0x10
561#define FE 0x08
562#define PE 0x04
563#define OE 0x02
564#define DR 0x01
565
566#define TEMP_P 0x06
567#define THRE_P 0x05
568#define BI_P 0x04
569#define FE_P 0x03
570#define PE_P 0x02
571#define OE_P 0x01
572#define DR_P 0x00
573
574/* UART_IER Register */
575#define ELSI 0x04
576#define ETBEI 0x02
577#define ERBFI 0x01
578
579#define ELSI_P 0x02
580#define ETBEI_P 0x01
581#define ERBFI_P 0x00
582
583/* UART_IIR Register */
584#define STATUS(x) ((x << 1) & 0x06)
585#define NINT 0x01
586#define STATUS_P1 0x02
587#define STATUS_P0 0x01
588#define NINT_P 0x00
589#define IIR_TX_READY 0x02 /* UART_THR empty */
590#define IIR_RX_READY 0x04 /* Receive data ready */
591#define IIR_LINE_CHANGE 0x06 /* Receive line status */
592#define IIR_STATUS 0x06
593
594/* UART_GCTL Register */
595#define FFE 0x20
596#define FPE 0x10
597#define RPOLC 0x08
598#define TPOLC 0x04
599#define IREN 0x02
600#define UCEN 0x01
601
602#define FFE_P 0x05
603#define FPE_P 0x04
604#define RPOLC_P 0x03
605#define TPOLC_P 0x02
606#define IREN_P 0x01
607#define UCEN_P 0x00
608
609/* ********** SERIAL PORT MASKS ********************** */
610
611/* SPORTx_TCR1 Masks */
612#define TSPEN 0x0001 /* TX enable */
613#define ITCLK 0x0002 /* Internal TX Clock Select */
614#define TDTYPE 0x000C /* TX Data Formatting Select */
Bryan Wu19381f02007-05-21 18:09:31 +0800615#define DTYPE_NORM 0x0000 /* Data Format Normal */
616#define DTYPE_ULAW 0x0008 /* Compand Using u-Law */
617#define DTYPE_ALAW 0x000C /* Compand Using A-Law */
Bryan Wu1394f032007-05-06 14:50:22 -0700618#define TLSBIT 0x0010 /* TX Bit Order */
619#define ITFS 0x0200 /* Internal TX Frame Sync Select */
620#define TFSR 0x0400 /* TX Frame Sync Required Select */
621#define DITFS 0x0800 /* Data Independent TX Frame Sync Select */
622#define LTFS 0x1000 /* Low TX Frame Sync Select */
623#define LATFS 0x2000 /* Late TX Frame Sync Select */
624#define TCKFE 0x4000 /* TX Clock Falling Edge Select */
625
626/* SPORTx_TCR2 Masks */
Bryan Wu19381f02007-05-21 18:09:31 +0800627#if defined(__ADSPBF531__) || defined(__ADSPBF532__) || \
628 defined(__ADSPBF533__)
629# define SLEN 0x001F /*TX Word Length */
630#else
631# define SLEN(x) ((x)&0x1F) /* SPORT TX Word Length (2 - 31) */
632#endif
Bryan Wu1394f032007-05-06 14:50:22 -0700633#define TXSE 0x0100 /*TX Secondary Enable */
634#define TSFSE 0x0200 /*TX Stereo Frame Sync Enable */
635#define TRFST 0x0400 /*TX Right-First Data Order */
636
637/* SPORTx_RCR1 Masks */
638#define RSPEN 0x0001 /* RX enable */
639#define IRCLK 0x0002 /* Internal RX Clock Select */
640#define RDTYPE 0x000C /* RX Data Formatting Select */
Bryan Wu19381f02007-05-21 18:09:31 +0800641#define DTYPE_NORM 0x0000 /* no companding */
642#define DTYPE_ULAW 0x0008 /* Compand Using u-Law */
643#define DTYPE_ALAW 0x000C /* Compand Using A-Law */
Bryan Wu1394f032007-05-06 14:50:22 -0700644#define RLSBIT 0x0010 /* RX Bit Order */
645#define IRFS 0x0200 /* Internal RX Frame Sync Select */
646#define RFSR 0x0400 /* RX Frame Sync Required Select */
647#define LRFS 0x1000 /* Low RX Frame Sync Select */
648#define LARFS 0x2000 /* Late RX Frame Sync Select */
649#define RCKFE 0x4000 /* RX Clock Falling Edge Select */
650
651/* SPORTx_RCR2 Masks */
Bryan Wu19381f02007-05-21 18:09:31 +0800652/* SLEN defined above */
Bryan Wu1394f032007-05-06 14:50:22 -0700653#define RXSE 0x0100 /*RX Secondary Enable */
654#define RSFSE 0x0200 /*RX Stereo Frame Sync Enable */
655#define RRFST 0x0400 /*Right-First Data Order */
656
657/*SPORTx_STAT Masks */
658#define RXNE 0x0001 /*RX FIFO Not Empty Status */
659#define RUVF 0x0002 /*RX Underflow Status */
660#define ROVF 0x0004 /*RX Overflow Status */
661#define TXF 0x0008 /*TX FIFO Full Status */
662#define TUVF 0x0010 /*TX Underflow Status */
663#define TOVF 0x0020 /*TX Overflow Status */
664#define TXHRE 0x0040 /*TX Hold Register Empty */
665
666/*SPORTx_MCMC1 Masks */
667#define SP_WSIZE 0x0000F000 /*Multichannel Window Size Field */
668#define SP_WOFF 0x000003FF /*Multichannel Window Offset Field */
Bryan Wu19381f02007-05-21 18:09:31 +0800669/* SPORTx_MCMC1 Macros */
670#define SET_SP_WOFF(x) ((x) & 0x3FF) /* Multichannel Window Offset Field */
671/* Only use SET_WSIZE Macro With Logic OR While Setting Lower Order Bits */
672#define SET_SP_WSIZE(x) (((((x)>>0x3)-1)&0xF) << 0xC) /* Multichannel Window Size = (x/8)-1 */
Bryan Wu1394f032007-05-06 14:50:22 -0700673
674/*SPORTx_MCMC2 Masks */
Bryan Wu19381f02007-05-21 18:09:31 +0800675#define MCCRM 0x00000003 /*Multichannel Clock Recovery Mode */
676#define REC_BYPASS 0x0000 /* Bypass Mode (No Clock Recovery) */
677#define REC_2FROM4 0x0002 /* Recover 2 MHz Clock from 4 MHz Clock */
678#define REC_8FROM16 0x0003 /* Recover 8 MHz Clock from 16 MHz Clock */
679#define MCDTXPE 0x00000004 /*Multichannel DMA Transmit Packing */
680#define MCDRXPE 0x00000008 /*Multichannel DMA Receive Packing */
681#define MCMEN 0x00000010 /*Multichannel Frame Mode Enable */
682#define FSDR 0x00000080 /*Multichannel Frame Sync to Data Relationship */
683#define MFD 0x0000F000 /*Multichannel Frame Delay */
684#define MFD_0 0x0000 /* Multichannel Frame Delay = 0 */
685#define MFD_1 0x1000 /* Multichannel Frame Delay = 1 */
686#define MFD_2 0x2000 /* Multichannel Frame Delay = 2 */
687#define MFD_3 0x3000 /* Multichannel Frame Delay = 3 */
688#define MFD_4 0x4000 /* Multichannel Frame Delay = 4 */
689#define MFD_5 0x5000 /* Multichannel Frame Delay = 5 */
690#define MFD_6 0x6000 /* Multichannel Frame Delay = 6 */
691#define MFD_7 0x7000 /* Multichannel Frame Delay = 7 */
692#define MFD_8 0x8000 /* Multichannel Frame Delay = 8 */
693#define MFD_9 0x9000 /* Multichannel Frame Delay = 9 */
694#define MFD_10 0xA000 /* Multichannel Frame Delay = 10 */
695#define MFD_11 0xB000 /* Multichannel Frame Delay = 11 */
696#define MFD_12 0xC000 /* Multichannel Frame Delay = 12 */
697#define MFD_13 0xD000 /* Multichannel Frame Delay = 13 */
698#define MFD_14 0xE000 /* Multichannel Frame Delay = 14 */
699#define MFD_15 0xF000 /* Multichannel Frame Delay = 15 */
Bryan Wu1394f032007-05-06 14:50:22 -0700700
701/* ********* PARALLEL PERIPHERAL INTERFACE (PPI) MASKS **************** */
702
703/* PPI_CONTROL Masks */
704#define PORT_EN 0x00000001 /* PPI Port Enable */
705#define PORT_DIR 0x00000002 /* PPI Port Direction */
706#define XFR_TYPE 0x0000000C /* PPI Transfer Type */
707#define PORT_CFG 0x00000030 /* PPI Port Configuration */
708#define FLD_SEL 0x00000040 /* PPI Active Field Select */
709#define PACK_EN 0x00000080 /* PPI Packing Mode */
710#define DMA32 0x00000100 /* PPI 32-bit DMA Enable */
711#define SKIP_EN 0x00000200 /* PPI Skip Element Enable */
712#define SKIP_EO 0x00000400 /* PPI Skip Even/Odd Elements */
713#define DLENGTH 0x00003800 /* PPI Data Length */
714#define DLEN_8 0x0000 /* Data Length = 8 Bits */
715#define DLEN_10 0x0800 /* Data Length = 10 Bits */
716#define DLEN_11 0x1000 /* Data Length = 11 Bits */
717#define DLEN_12 0x1800 /* Data Length = 12 Bits */
718#define DLEN_13 0x2000 /* Data Length = 13 Bits */
719#define DLEN_14 0x2800 /* Data Length = 14 Bits */
720#define DLEN_15 0x3000 /* Data Length = 15 Bits */
721#define DLEN_16 0x3800 /* Data Length = 16 Bits */
722#define DLEN(x) (((x-9) & 0x07) << 11) /* PPI Data Length (only works for x=10-->x=16) */
723#define POL 0x0000C000 /* PPI Signal Polarities */
Bryan Wu19381f02007-05-21 18:09:31 +0800724#define POLC 0x4000 /* PPI Clock Polarity */
725#define POLS 0x8000 /* PPI Frame Sync Polarity */
Bryan Wu1394f032007-05-06 14:50:22 -0700726
727/* PPI_STATUS Masks */
728#define FLD 0x00000400 /* Field Indicator */
729#define FT_ERR 0x00000800 /* Frame Track Error */
730#define OVR 0x00001000 /* FIFO Overflow Error */
731#define UNDR 0x00002000 /* FIFO Underrun Error */
732#define ERR_DET 0x00004000 /* Error Detected Indicator */
733#define ERR_NCOR 0x00008000 /* Error Not Corrected Indicator */
734
735/* ********** DMA CONTROLLER MASKS *********************8 */
736
737/*DMAx_CONFIG, MDMA_yy_CONFIG Masks */
738#define DMAEN 0x00000001 /* Channel Enable */
739#define WNR 0x00000002 /* Channel Direction (W/R*) */
740#define WDSIZE_8 0x00000000 /* Word Size 8 bits */
741#define WDSIZE_16 0x00000004 /* Word Size 16 bits */
742#define WDSIZE_32 0x00000008 /* Word Size 32 bits */
743#define DMA2D 0x00000010 /* 2D/1D* Mode */
744#define RESTART 0x00000020 /* Restart */
745#define DI_SEL 0x00000040 /* Data Interrupt Select */
746#define DI_EN 0x00000080 /* Data Interrupt Enable */
747#define NDSIZE_0 0x0000 /* Next Descriptor Size = 0 (Stop/Autobuffer) */
748#define NDSIZE_1 0x0100 /* Next Descriptor Size = 1 */
749#define NDSIZE_2 0x0200 /* Next Descriptor Size = 2 */
750#define NDSIZE_3 0x0300 /* Next Descriptor Size = 3 */
751#define NDSIZE_4 0x0400 /* Next Descriptor Size = 4 */
752#define NDSIZE_5 0x0500 /* Next Descriptor Size = 5 */
753#define NDSIZE_6 0x0600 /* Next Descriptor Size = 6 */
754#define NDSIZE_7 0x0700 /* Next Descriptor Size = 7 */
755#define NDSIZE_8 0x0800 /* Next Descriptor Size = 8 */
756#define NDSIZE_9 0x0900 /* Next Descriptor Size = 9 */
757#define NDSIZE 0x00000900 /* Next Descriptor Size */
758#define DMAFLOW 0x00007000 /* Flow Control */
759#define DMAFLOW_STOP 0x0000 /* Stop Mode */
760#define DMAFLOW_AUTO 0x1000 /* Autobuffer Mode */
761#define DMAFLOW_ARRAY 0x4000 /* Descriptor Array Mode */
762#define DMAFLOW_SMALL 0x6000 /* Small Model Descriptor List Mode */
763#define DMAFLOW_LARGE 0x7000 /* Large Model Descriptor List Mode */
764
765#define DMAEN_P 0 /* Channel Enable */
766#define WNR_P 1 /* Channel Direction (W/R*) */
767#define DMA2D_P 4 /* 2D/1D* Mode */
768#define RESTART_P 5 /* Restart */
769#define DI_SEL_P 6 /* Data Interrupt Select */
770#define DI_EN_P 7 /* Data Interrupt Enable */
771
772/*DMAx_IRQ_STATUS, MDMA_yy_IRQ_STATUS Masks */
773
774#define DMA_DONE 0x00000001 /* DMA Done Indicator */
775#define DMA_ERR 0x00000002 /* DMA Error Indicator */
776#define DFETCH 0x00000004 /* Descriptor Fetch Indicator */
777#define DMA_RUN 0x00000008 /* DMA Running Indicator */
778
779#define DMA_DONE_P 0 /* DMA Done Indicator */
780#define DMA_ERR_P 1 /* DMA Error Indicator */
781#define DFETCH_P 2 /* Descriptor Fetch Indicator */
782#define DMA_RUN_P 3 /* DMA Running Indicator */
783
784/*DMAx_PERIPHERAL_MAP, MDMA_yy_PERIPHERAL_MAP Masks */
785
786#define CTYPE 0x00000040 /* DMA Channel Type Indicator */
787#define CTYPE_P 6 /* DMA Channel Type Indicator BIT POSITION */
788#define PCAP8 0x00000080 /* DMA 8-bit Operation Indicator */
789#define PCAP16 0x00000100 /* DMA 16-bit Operation Indicator */
790#define PCAP32 0x00000200 /* DMA 32-bit Operation Indicator */
791#define PCAPWR 0x00000400 /* DMA Write Operation Indicator */
792#define PCAPRD 0x00000800 /* DMA Read Operation Indicator */
793#define PMAP 0x00007000 /* DMA Peripheral Map Field */
794
Bryan Wu19381f02007-05-21 18:09:31 +0800795#define PMAP_PPI 0x0000 /* PMAP PPI Port DMA */
796#define PMAP_SPORT0RX 0x1000 /* PMAP SPORT0 Receive DMA */
797#define PMAP_SPORT0TX 0x2000 /* PMAP SPORT0 Transmit DMA */
798#define PMAP_SPORT1RX 0x3000 /* PMAP SPORT1 Receive DMA */
799#define PMAP_SPORT1TX 0x4000 /* PMAP SPORT1 Transmit DMA */
800#define PMAP_SPI 0x5000 /* PMAP SPI DMA */
801#define PMAP_UARTRX 0x6000 /* PMAP UART Receive DMA */
802#define PMAP_UARTTX 0x7000 /* PMAP UART Transmit DMA */
803
Bryan Wu1394f032007-05-06 14:50:22 -0700804/* ************* GENERAL PURPOSE TIMER MASKS ******************** */
805
806/* PWM Timer bit definitions */
807
808/* TIMER_ENABLE Register */
809#define TIMEN0 0x0001
810#define TIMEN1 0x0002
811#define TIMEN2 0x0004
812
813#define TIMEN0_P 0x00
814#define TIMEN1_P 0x01
815#define TIMEN2_P 0x02
816
817/* TIMER_DISABLE Register */
818#define TIMDIS0 0x0001
819#define TIMDIS1 0x0002
820#define TIMDIS2 0x0004
821
822#define TIMDIS0_P 0x00
823#define TIMDIS1_P 0x01
824#define TIMDIS2_P 0x02
825
826/* TIMER_STATUS Register */
827#define TIMIL0 0x0001
828#define TIMIL1 0x0002
829#define TIMIL2 0x0004
Bryan Wu19381f02007-05-21 18:09:31 +0800830#define TOVF_ERR0 0x0010 /* Timer 0 Counter Overflow */
831#define TOVF_ERR1 0x0020 /* Timer 1 Counter Overflow */
832#define TOVF_ERR2 0x0040 /* Timer 2 Counter Overflow */
Bryan Wu1394f032007-05-06 14:50:22 -0700833#define TRUN0 0x1000
834#define TRUN1 0x2000
835#define TRUN2 0x4000
836
837#define TIMIL0_P 0x00
838#define TIMIL1_P 0x01
839#define TIMIL2_P 0x02
Bryan Wu19381f02007-05-21 18:09:31 +0800840#define TOVF_ERR0_P 0x04
841#define TOVF_ERR1_P 0x05
842#define TOVF_ERR2_P 0x06
Bryan Wu1394f032007-05-06 14:50:22 -0700843#define TRUN0_P 0x0C
844#define TRUN1_P 0x0D
845#define TRUN2_P 0x0E
846
Bryan Wu19381f02007-05-21 18:09:31 +0800847/* Alternate Deprecated Macros Provided For Backwards Code Compatibility */
848#define TOVL_ERR0 TOVF_ERR0
849#define TOVL_ERR1 TOVF_ERR1
850#define TOVL_ERR2 TOVF_ERR2
851#define TOVL_ERR0_P TOVF_ERR0_P
852#define TOVL_ERR1_P TOVF_ERR1_P
853#define TOVL_ERR2_P TOVF_ERR2_P
854
Bryan Wu1394f032007-05-06 14:50:22 -0700855/* TIMERx_CONFIG Registers */
856#define PWM_OUT 0x0001
857#define WDTH_CAP 0x0002
858#define EXT_CLK 0x0003
859#define PULSE_HI 0x0004
860#define PERIOD_CNT 0x0008
861#define IRQ_ENA 0x0010
862#define TIN_SEL 0x0020
863#define OUT_DIS 0x0040
864#define CLK_SEL 0x0080
865#define TOGGLE_HI 0x0100
866#define EMU_RUN 0x0200
867#define ERR_TYP(x) ((x & 0x03) << 14)
868
869#define TMODE_P0 0x00
870#define TMODE_P1 0x01
871#define PULSE_HI_P 0x02
872#define PERIOD_CNT_P 0x03
873#define IRQ_ENA_P 0x04
874#define TIN_SEL_P 0x05
875#define OUT_DIS_P 0x06
876#define CLK_SEL_P 0x07
877#define TOGGLE_HI_P 0x08
878#define EMU_RUN_P 0x09
879#define ERR_TYP_P0 0x0E
880#define ERR_TYP_P1 0x0F
881
882/*/ ****************** PROGRAMMABLE FLAG MASKS ********************* */
883
884/* General Purpose IO (0xFFC00700 - 0xFFC007FF) Masks */
885#define PF0 0x0001
886#define PF1 0x0002
887#define PF2 0x0004
888#define PF3 0x0008
889#define PF4 0x0010
890#define PF5 0x0020
891#define PF6 0x0040
892#define PF7 0x0080
893#define PF8 0x0100
894#define PF9 0x0200
895#define PF10 0x0400
896#define PF11 0x0800
897#define PF12 0x1000
898#define PF13 0x2000
899#define PF14 0x4000
900#define PF15 0x8000
901
902/* General Purpose IO (0xFFC00700 - 0xFFC007FF) BIT POSITIONS */
903#define PF0_P 0
904#define PF1_P 1
905#define PF2_P 2
906#define PF3_P 3
907#define PF4_P 4
908#define PF5_P 5
909#define PF6_P 6
910#define PF7_P 7
911#define PF8_P 8
912#define PF9_P 9
913#define PF10_P 10
914#define PF11_P 11
915#define PF12_P 12
916#define PF13_P 13
917#define PF14_P 14
918#define PF15_P 15
919
920/* *********** SERIAL PERIPHERAL INTERFACE (SPI) MASKS **************** */
921
922/* SPI_CTL Masks */
923#define TIMOD 0x00000003 /* Transfer initiation mode and interrupt generation */
Bryan Wu19381f02007-05-21 18:09:31 +0800924#define RDBR_CORE 0x0000 /* RDBR Read Initiates, IRQ When RDBR Full */
925#define TDBR_CORE 0x0001 /* TDBR Write Initiates, IRQ When TDBR Empty */
926#define RDBR_DMA 0x0002 /* DMA Read, DMA Until FIFO Empty */
927#define TDBR_DMA 0x0003 /* DMA Write, DMA Until FIFO Full */
Bryan Wu1394f032007-05-06 14:50:22 -0700928#define SZ 0x00000004 /* Send Zero (=0) or last (=1) word when TDBR empty. */
929#define GM 0x00000008 /* When RDBR full, get more (=1) data or discard (=0) incoming Data */
930#define PSSE 0x00000010 /* Enable (=1) Slave-Select input for Master. */
931#define EMISO 0x00000020 /* Enable (=1) MISO pin as an output. */
Mike Frysingerdbcc78b2007-08-05 17:06:48 +0800932#define SIZE 0x00000100 /* Word length (0 => 8 bits, 1 => 16 bits) */
Bryan Wu1394f032007-05-06 14:50:22 -0700933#define LSBF 0x00000200 /* Data format (0 => MSB sent/received first 1 => LSB sent/received first) */
934#define CPHA 0x00000400 /* Clock phase (0 => SPICLK starts toggling in middle of xfer, 1 => SPICLK toggles at the beginning of xfer. */
935#define CPOL 0x00000800 /* Clock polarity (0 => active-high, 1 => active-low) */
936#define MSTR 0x00001000 /* Configures SPI as master (=1) or slave (=0) */
937#define WOM 0x00002000 /* Open drain (=1) data output enable (for MOSI and MISO) */
938#define SPE 0x00004000 /* SPI module enable (=1), disable (=0) */
939
940/* SPI_FLG Masks */
941#define FLS1 0x00000002 /* Enables (=1) SPI_FLOUT1 as flag output for SPI Slave-select */
942#define FLS2 0x00000004 /* Enables (=1) SPI_FLOUT2 as flag output for SPI Slave-select */
943#define FLS3 0x00000008 /* Enables (=1) SPI_FLOUT3 as flag output for SPI Slave-select */
944#define FLS4 0x00000010 /* Enables (=1) SPI_FLOUT4 as flag output for SPI Slave-select */
945#define FLS5 0x00000020 /* Enables (=1) SPI_FLOUT5 as flag output for SPI Slave-select */
946#define FLS6 0x00000040 /* Enables (=1) SPI_FLOUT6 as flag output for SPI Slave-select */
947#define FLS7 0x00000080 /* Enables (=1) SPI_FLOUT7 as flag output for SPI Slave-select */
948#define FLG1 0x00000200 /* Activates (=0) SPI_FLOUT1 as flag output for SPI Slave-select */
949#define FLG2 0x00000400 /* Activates (=0) SPI_FLOUT2 as flag output for SPI Slave-select */
950#define FLG3 0x00000800 /* Activates (=0) SPI_FLOUT3 as flag output for SPI Slave-select */
951#define FLG4 0x00001000 /* Activates (=0) SPI_FLOUT4 as flag output for SPI Slave-select */
952#define FLG5 0x00002000 /* Activates (=0) SPI_FLOUT5 as flag output for SPI Slave-select */
953#define FLG6 0x00004000 /* Activates (=0) SPI_FLOUT6 as flag output for SPI Slave-select */
954#define FLG7 0x00008000 /* Activates (=0) SPI_FLOUT7 as flag output for SPI Slave-select */
955
956/* SPI_FLG Bit Positions */
957#define FLS1_P 0x00000001 /* Enables (=1) SPI_FLOUT1 as flag output for SPI Slave-select */
958#define FLS2_P 0x00000002 /* Enables (=1) SPI_FLOUT2 as flag output for SPI Slave-select */
959#define FLS3_P 0x00000003 /* Enables (=1) SPI_FLOUT3 as flag output for SPI Slave-select */
960#define FLS4_P 0x00000004 /* Enables (=1) SPI_FLOUT4 as flag output for SPI Slave-select */
961#define FLS5_P 0x00000005 /* Enables (=1) SPI_FLOUT5 as flag output for SPI Slave-select */
962#define FLS6_P 0x00000006 /* Enables (=1) SPI_FLOUT6 as flag output for SPI Slave-select */
963#define FLS7_P 0x00000007 /* Enables (=1) SPI_FLOUT7 as flag output for SPI Slave-select */
964#define FLG1_P 0x00000009 /* Activates (=0) SPI_FLOUT1 as flag output for SPI Slave-select */
965#define FLG2_P 0x0000000A /* Activates (=0) SPI_FLOUT2 as flag output for SPI Slave-select */
966#define FLG3_P 0x0000000B /* Activates (=0) SPI_FLOUT3 as flag output for SPI Slave-select */
967#define FLG4_P 0x0000000C /* Activates (=0) SPI_FLOUT4 as flag output for SPI Slave-select */
968#define FLG5_P 0x0000000D /* Activates (=0) SPI_FLOUT5 as flag output for SPI Slave-select */
969#define FLG6_P 0x0000000E /* Activates (=0) SPI_FLOUT6 as flag output for SPI Slave-select */
970#define FLG7_P 0x0000000F /* Activates (=0) SPI_FLOUT7 as flag output for SPI Slave-select */
971
972/* SPI_STAT Masks */
973#define SPIF 0x00000001 /* Set (=1) when SPI single-word transfer complete */
974#define MODF 0x00000002 /* Set (=1) in a master device when some other device tries to become master */
975#define TXE 0x00000004 /* Set (=1) when transmission occurs with no new data in SPI_TDBR */
976#define TXS 0x00000008 /* SPI_TDBR Data Buffer Status (0=Empty, 1=Full) */
977#define RBSY 0x00000010 /* Set (=1) when data is received with RDBR full */
978#define RXS 0x00000020 /* SPI_RDBR Data Buffer Status (0=Empty, 1=Full) */
979#define TXCOL 0x00000040 /* When set (=1), corrupt data may have been transmitted */
980
Bryan Wu19381f02007-05-21 18:09:31 +0800981/* SPIx_FLG Masks */
982#define FLG1E 0xFDFF /* Activates SPI_FLOUT1 */
983#define FLG2E 0xFBFF /* Activates SPI_FLOUT2 */
984#define FLG3E 0xF7FF /* Activates SPI_FLOUT3 */
985#define FLG4E 0xEFFF /* Activates SPI_FLOUT4 */
986#define FLG5E 0xDFFF /* Activates SPI_FLOUT5 */
987#define FLG6E 0xBFFF /* Activates SPI_FLOUT6 */
988#define FLG7E 0x7FFF /* Activates SPI_FLOUT7 */
989
Bryan Wu1394f032007-05-06 14:50:22 -0700990/* ********************* ASYNCHRONOUS MEMORY CONTROLLER MASKS ************* */
991
992/* AMGCTL Masks */
993#define AMCKEN 0x00000001 /* Enable CLKOUT */
Bryan Wu19381f02007-05-21 18:09:31 +0800994#define AMBEN_NONE 0x00000000 /* All Banks Disabled */
Bryan Wu1394f032007-05-06 14:50:22 -0700995#define AMBEN_B0 0x00000002 /* Enable Asynchronous Memory Bank 0 only */
996#define AMBEN_B0_B1 0x00000004 /* Enable Asynchronous Memory Banks 0 & 1 only */
997#define AMBEN_B0_B1_B2 0x00000006 /* Enable Asynchronous Memory Banks 0, 1, and 2 */
998#define AMBEN_ALL 0x00000008 /* Enable Asynchronous Memory Banks (all) 0, 1, 2, and 3 */
999
1000/* AMGCTL Bit Positions */
1001#define AMCKEN_P 0x00000000 /* Enable CLKOUT */
1002#define AMBEN_P0 0x00000001 /* Asynchronous Memory Enable, 000 - banks 0-3 disabled, 001 - Bank 0 enabled */
1003#define AMBEN_P1 0x00000002 /* Asynchronous Memory Enable, 010 - banks 0&1 enabled, 011 - banks 0-3 enabled */
1004#define AMBEN_P2 0x00000003 /* Asynchronous Memory Enable, 1xx - All banks (bank 0, 1, 2, and 3) enabled */
1005
1006/* AMBCTL0 Masks */
1007#define B0RDYEN 0x00000001 /* Bank 0 RDY Enable, 0=disable, 1=enable */
1008#define B0RDYPOL 0x00000002 /* Bank 0 RDY Active high, 0=active low, 1=active high */
1009#define B0TT_1 0x00000004 /* Bank 0 Transition Time from Read to Write = 1 cycle */
1010#define B0TT_2 0x00000008 /* Bank 0 Transition Time from Read to Write = 2 cycles */
1011#define B0TT_3 0x0000000C /* Bank 0 Transition Time from Read to Write = 3 cycles */
1012#define B0TT_4 0x00000000 /* Bank 0 Transition Time from Read to Write = 4 cycles */
1013#define B0ST_1 0x00000010 /* Bank 0 Setup Time from AOE asserted to Read/Write asserted=1 cycle */
1014#define B0ST_2 0x00000020 /* Bank 0 Setup Time from AOE asserted to Read/Write asserted=2 cycles */
1015#define B0ST_3 0x00000030 /* Bank 0 Setup Time from AOE asserted to Read/Write asserted=3 cycles */
1016#define B0ST_4 0x00000000 /* Bank 0 Setup Time from AOE asserted to Read/Write asserted=4 cycles */
1017#define B0HT_1 0x00000040 /* Bank 0 Hold Time from Read/Write deasserted to AOE deasserted = 1 cycle */
1018#define B0HT_2 0x00000080 /* Bank 0 Hold Time from Read/Write deasserted to AOE deasserted = 2 cycles */
1019#define B0HT_3 0x000000C0 /* Bank 0 Hold Time from Read/Write deasserted to AOE deasserted = 3 cycles */
1020#define B0HT_0 0x00000000 /* Bank 0 Hold Time from Read/Write deasserted to AOE deasserted = 0 cycles */
1021#define B0RAT_1 0x00000100 /* Bank 0 Read Access Time = 1 cycle */
1022#define B0RAT_2 0x00000200 /* Bank 0 Read Access Time = 2 cycles */
1023#define B0RAT_3 0x00000300 /* Bank 0 Read Access Time = 3 cycles */
1024#define B0RAT_4 0x00000400 /* Bank 0 Read Access Time = 4 cycles */
1025#define B0RAT_5 0x00000500 /* Bank 0 Read Access Time = 5 cycles */
1026#define B0RAT_6 0x00000600 /* Bank 0 Read Access Time = 6 cycles */
1027#define B0RAT_7 0x00000700 /* Bank 0 Read Access Time = 7 cycles */
1028#define B0RAT_8 0x00000800 /* Bank 0 Read Access Time = 8 cycles */
1029#define B0RAT_9 0x00000900 /* Bank 0 Read Access Time = 9 cycles */
1030#define B0RAT_10 0x00000A00 /* Bank 0 Read Access Time = 10 cycles */
1031#define B0RAT_11 0x00000B00 /* Bank 0 Read Access Time = 11 cycles */
1032#define B0RAT_12 0x00000C00 /* Bank 0 Read Access Time = 12 cycles */
1033#define B0RAT_13 0x00000D00 /* Bank 0 Read Access Time = 13 cycles */
1034#define B0RAT_14 0x00000E00 /* Bank 0 Read Access Time = 14 cycles */
1035#define B0RAT_15 0x00000F00 /* Bank 0 Read Access Time = 15 cycles */
1036#define B0WAT_1 0x00001000 /* Bank 0 Write Access Time = 1 cycle */
1037#define B0WAT_2 0x00002000 /* Bank 0 Write Access Time = 2 cycles */
1038#define B0WAT_3 0x00003000 /* Bank 0 Write Access Time = 3 cycles */
1039#define B0WAT_4 0x00004000 /* Bank 0 Write Access Time = 4 cycles */
1040#define B0WAT_5 0x00005000 /* Bank 0 Write Access Time = 5 cycles */
1041#define B0WAT_6 0x00006000 /* Bank 0 Write Access Time = 6 cycles */
1042#define B0WAT_7 0x00007000 /* Bank 0 Write Access Time = 7 cycles */
1043#define B0WAT_8 0x00008000 /* Bank 0 Write Access Time = 8 cycles */
1044#define B0WAT_9 0x00009000 /* Bank 0 Write Access Time = 9 cycles */
1045#define B0WAT_10 0x0000A000 /* Bank 0 Write Access Time = 10 cycles */
1046#define B0WAT_11 0x0000B000 /* Bank 0 Write Access Time = 11 cycles */
1047#define B0WAT_12 0x0000C000 /* Bank 0 Write Access Time = 12 cycles */
1048#define B0WAT_13 0x0000D000 /* Bank 0 Write Access Time = 13 cycles */
1049#define B0WAT_14 0x0000E000 /* Bank 0 Write Access Time = 14 cycles */
1050#define B0WAT_15 0x0000F000 /* Bank 0 Write Access Time = 15 cycles */
1051#define B1RDYEN 0x00010000 /* Bank 1 RDY enable, 0=disable, 1=enable */
1052#define B1RDYPOL 0x00020000 /* Bank 1 RDY Active high, 0=active low, 1=active high */
1053#define B1TT_1 0x00040000 /* Bank 1 Transition Time from Read to Write = 1 cycle */
1054#define B1TT_2 0x00080000 /* Bank 1 Transition Time from Read to Write = 2 cycles */
1055#define B1TT_3 0x000C0000 /* Bank 1 Transition Time from Read to Write = 3 cycles */
1056#define B1TT_4 0x00000000 /* Bank 1 Transition Time from Read to Write = 4 cycles */
1057#define B1ST_1 0x00100000 /* Bank 1 Setup Time from AOE asserted to Read or Write asserted = 1 cycle */
1058#define B1ST_2 0x00200000 /* Bank 1 Setup Time from AOE asserted to Read or Write asserted = 2 cycles */
1059#define B1ST_3 0x00300000 /* Bank 1 Setup Time from AOE asserted to Read or Write asserted = 3 cycles */
1060#define B1ST_4 0x00000000 /* Bank 1 Setup Time from AOE asserted to Read or Write asserted = 4 cycles */
1061#define B1HT_1 0x00400000 /* Bank 1 Hold Time from Read or Write deasserted to AOE deasserted = 1 cycle */
1062#define B1HT_2 0x00800000 /* Bank 1 Hold Time from Read or Write deasserted to AOE deasserted = 2 cycles */
1063#define B1HT_3 0x00C00000 /* Bank 1 Hold Time from Read or Write deasserted to AOE deasserted = 3 cycles */
1064#define B1HT_0 0x00000000 /* Bank 1 Hold Time from Read or Write deasserted to AOE deasserted = 0 cycles */
1065#define B1RAT_1 0x01000000 /* Bank 1 Read Access Time = 1 cycle */
1066#define B1RAT_2 0x02000000 /* Bank 1 Read Access Time = 2 cycles */
1067#define B1RAT_3 0x03000000 /* Bank 1 Read Access Time = 3 cycles */
1068#define B1RAT_4 0x04000000 /* Bank 1 Read Access Time = 4 cycles */
1069#define B1RAT_5 0x05000000 /* Bank 1 Read Access Time = 5 cycles */
1070#define B1RAT_6 0x06000000 /* Bank 1 Read Access Time = 6 cycles */
1071#define B1RAT_7 0x07000000 /* Bank 1 Read Access Time = 7 cycles */
1072#define B1RAT_8 0x08000000 /* Bank 1 Read Access Time = 8 cycles */
1073#define B1RAT_9 0x09000000 /* Bank 1 Read Access Time = 9 cycles */
1074#define B1RAT_10 0x0A000000 /* Bank 1 Read Access Time = 10 cycles */
1075#define B1RAT_11 0x0B000000 /* Bank 1 Read Access Time = 11 cycles */
1076#define B1RAT_12 0x0C000000 /* Bank 1 Read Access Time = 12 cycles */
1077#define B1RAT_13 0x0D000000 /* Bank 1 Read Access Time = 13 cycles */
1078#define B1RAT_14 0x0E000000 /* Bank 1 Read Access Time = 14 cycles */
1079#define B1RAT_15 0x0F000000 /* Bank 1 Read Access Time = 15 cycles */
1080#define B1WAT_1 0x10000000 /* Bank 1 Write Access Time = 1 cycle */
1081#define B1WAT_2 0x20000000 /* Bank 1 Write Access Time = 2 cycles */
1082#define B1WAT_3 0x30000000 /* Bank 1 Write Access Time = 3 cycles */
1083#define B1WAT_4 0x40000000 /* Bank 1 Write Access Time = 4 cycles */
1084#define B1WAT_5 0x50000000 /* Bank 1 Write Access Time = 5 cycles */
1085#define B1WAT_6 0x60000000 /* Bank 1 Write Access Time = 6 cycles */
1086#define B1WAT_7 0x70000000 /* Bank 1 Write Access Time = 7 cycles */
1087#define B1WAT_8 0x80000000 /* Bank 1 Write Access Time = 8 cycles */
1088#define B1WAT_9 0x90000000 /* Bank 1 Write Access Time = 9 cycles */
1089#define B1WAT_10 0xA0000000 /* Bank 1 Write Access Time = 10 cycles */
1090#define B1WAT_11 0xB0000000 /* Bank 1 Write Access Time = 11 cycles */
1091#define B1WAT_12 0xC0000000 /* Bank 1 Write Access Time = 12 cycles */
1092#define B1WAT_13 0xD0000000 /* Bank 1 Write Access Time = 13 cycles */
1093#define B1WAT_14 0xE0000000 /* Bank 1 Write Access Time = 14 cycles */
1094#define B1WAT_15 0xF0000000 /* Bank 1 Write Access Time = 15 cycles */
1095
1096/* AMBCTL1 Masks */
1097#define B2RDYEN 0x00000001 /* Bank 2 RDY Enable, 0=disable, 1=enable */
1098#define B2RDYPOL 0x00000002 /* Bank 2 RDY Active high, 0=active low, 1=active high */
1099#define B2TT_1 0x00000004 /* Bank 2 Transition Time from Read to Write = 1 cycle */
1100#define B2TT_2 0x00000008 /* Bank 2 Transition Time from Read to Write = 2 cycles */
1101#define B2TT_3 0x0000000C /* Bank 2 Transition Time from Read to Write = 3 cycles */
1102#define B2TT_4 0x00000000 /* Bank 2 Transition Time from Read to Write = 4 cycles */
1103#define B2ST_1 0x00000010 /* Bank 2 Setup Time from AOE asserted to Read or Write asserted = 1 cycle */
1104#define B2ST_2 0x00000020 /* Bank 2 Setup Time from AOE asserted to Read or Write asserted = 2 cycles */
1105#define B2ST_3 0x00000030 /* Bank 2 Setup Time from AOE asserted to Read or Write asserted = 3 cycles */
1106#define B2ST_4 0x00000000 /* Bank 2 Setup Time from AOE asserted to Read or Write asserted = 4 cycles */
1107#define B2HT_1 0x00000040 /* Bank 2 Hold Time from Read or Write deasserted to AOE deasserted = 1 cycle */
1108#define B2HT_2 0x00000080 /* Bank 2 Hold Time from Read or Write deasserted to AOE deasserted = 2 cycles */
1109#define B2HT_3 0x000000C0 /* Bank 2 Hold Time from Read or Write deasserted to AOE deasserted = 3 cycles */
1110#define B2HT_0 0x00000000 /* Bank 2 Hold Time from Read or Write deasserted to AOE deasserted = 0 cycles */
1111#define B2RAT_1 0x00000100 /* Bank 2 Read Access Time = 1 cycle */
1112#define B2RAT_2 0x00000200 /* Bank 2 Read Access Time = 2 cycles */
1113#define B2RAT_3 0x00000300 /* Bank 2 Read Access Time = 3 cycles */
1114#define B2RAT_4 0x00000400 /* Bank 2 Read Access Time = 4 cycles */
1115#define B2RAT_5 0x00000500 /* Bank 2 Read Access Time = 5 cycles */
1116#define B2RAT_6 0x00000600 /* Bank 2 Read Access Time = 6 cycles */
1117#define B2RAT_7 0x00000700 /* Bank 2 Read Access Time = 7 cycles */
1118#define B2RAT_8 0x00000800 /* Bank 2 Read Access Time = 8 cycles */
1119#define B2RAT_9 0x00000900 /* Bank 2 Read Access Time = 9 cycles */
1120#define B2RAT_10 0x00000A00 /* Bank 2 Read Access Time = 10 cycles */
1121#define B2RAT_11 0x00000B00 /* Bank 2 Read Access Time = 11 cycles */
1122#define B2RAT_12 0x00000C00 /* Bank 2 Read Access Time = 12 cycles */
1123#define B2RAT_13 0x00000D00 /* Bank 2 Read Access Time = 13 cycles */
1124#define B2RAT_14 0x00000E00 /* Bank 2 Read Access Time = 14 cycles */
1125#define B2RAT_15 0x00000F00 /* Bank 2 Read Access Time = 15 cycles */
1126#define B2WAT_1 0x00001000 /* Bank 2 Write Access Time = 1 cycle */
1127#define B2WAT_2 0x00002000 /* Bank 2 Write Access Time = 2 cycles */
1128#define B2WAT_3 0x00003000 /* Bank 2 Write Access Time = 3 cycles */
1129#define B2WAT_4 0x00004000 /* Bank 2 Write Access Time = 4 cycles */
1130#define B2WAT_5 0x00005000 /* Bank 2 Write Access Time = 5 cycles */
1131#define B2WAT_6 0x00006000 /* Bank 2 Write Access Time = 6 cycles */
1132#define B2WAT_7 0x00007000 /* Bank 2 Write Access Time = 7 cycles */
1133#define B2WAT_8 0x00008000 /* Bank 2 Write Access Time = 8 cycles */
1134#define B2WAT_9 0x00009000 /* Bank 2 Write Access Time = 9 cycles */
1135#define B2WAT_10 0x0000A000 /* Bank 2 Write Access Time = 10 cycles */
1136#define B2WAT_11 0x0000B000 /* Bank 2 Write Access Time = 11 cycles */
1137#define B2WAT_12 0x0000C000 /* Bank 2 Write Access Time = 12 cycles */
1138#define B2WAT_13 0x0000D000 /* Bank 2 Write Access Time = 13 cycles */
1139#define B2WAT_14 0x0000E000 /* Bank 2 Write Access Time = 14 cycles */
1140#define B2WAT_15 0x0000F000 /* Bank 2 Write Access Time = 15 cycles */
1141#define B3RDYEN 0x00010000 /* Bank 3 RDY enable, 0=disable, 1=enable */
1142#define B3RDYPOL 0x00020000 /* Bank 3 RDY Active high, 0=active low, 1=active high */
1143#define B3TT_1 0x00040000 /* Bank 3 Transition Time from Read to Write = 1 cycle */
1144#define B3TT_2 0x00080000 /* Bank 3 Transition Time from Read to Write = 2 cycles */
1145#define B3TT_3 0x000C0000 /* Bank 3 Transition Time from Read to Write = 3 cycles */
1146#define B3TT_4 0x00000000 /* Bank 3 Transition Time from Read to Write = 4 cycles */
1147#define B3ST_1 0x00100000 /* Bank 3 Setup Time from AOE asserted to Read or Write asserted = 1 cycle */
1148#define B3ST_2 0x00200000 /* Bank 3 Setup Time from AOE asserted to Read or Write asserted = 2 cycles */
1149#define B3ST_3 0x00300000 /* Bank 3 Setup Time from AOE asserted to Read or Write asserted = 3 cycles */
1150#define B3ST_4 0x00000000 /* Bank 3 Setup Time from AOE asserted to Read or Write asserted = 4 cycles */
1151#define B3HT_1 0x00400000 /* Bank 3 Hold Time from Read or Write deasserted to AOE deasserted = 1 cycle */
1152#define B3HT_2 0x00800000 /* Bank 3 Hold Time from Read or Write deasserted to AOE deasserted = 2 cycles */
1153#define B3HT_3 0x00C00000 /* Bank 3 Hold Time from Read or Write deasserted to AOE deasserted = 3 cycles */
1154#define B3HT_0 0x00000000 /* Bank 3 Hold Time from Read or Write deasserted to AOE deasserted = 0 cycles */
1155#define B3RAT_1 0x01000000 /* Bank 3 Read Access Time = 1 cycle */
1156#define B3RAT_2 0x02000000 /* Bank 3 Read Access Time = 2 cycles */
1157#define B3RAT_3 0x03000000 /* Bank 3 Read Access Time = 3 cycles */
1158#define B3RAT_4 0x04000000 /* Bank 3 Read Access Time = 4 cycles */
1159#define B3RAT_5 0x05000000 /* Bank 3 Read Access Time = 5 cycles */
1160#define B3RAT_6 0x06000000 /* Bank 3 Read Access Time = 6 cycles */
1161#define B3RAT_7 0x07000000 /* Bank 3 Read Access Time = 7 cycles */
1162#define B3RAT_8 0x08000000 /* Bank 3 Read Access Time = 8 cycles */
1163#define B3RAT_9 0x09000000 /* Bank 3 Read Access Time = 9 cycles */
1164#define B3RAT_10 0x0A000000 /* Bank 3 Read Access Time = 10 cycles */
1165#define B3RAT_11 0x0B000000 /* Bank 3 Read Access Time = 11 cycles */
1166#define B3RAT_12 0x0C000000 /* Bank 3 Read Access Time = 12 cycles */
1167#define B3RAT_13 0x0D000000 /* Bank 3 Read Access Time = 13 cycles */
1168#define B3RAT_14 0x0E000000 /* Bank 3 Read Access Time = 14 cycles */
1169#define B3RAT_15 0x0F000000 /* Bank 3 Read Access Time = 15 cycles */
1170#define B3WAT_1 0x10000000 /* Bank 3 Write Access Time = 1 cycle */
1171#define B3WAT_2 0x20000000 /* Bank 3 Write Access Time = 2 cycles */
1172#define B3WAT_3 0x30000000 /* Bank 3 Write Access Time = 3 cycles */
1173#define B3WAT_4 0x40000000 /* Bank 3 Write Access Time = 4 cycles */
1174#define B3WAT_5 0x50000000 /* Bank 3 Write Access Time = 5 cycles */
1175#define B3WAT_6 0x60000000 /* Bank 3 Write Access Time = 6 cycles */
1176#define B3WAT_7 0x70000000 /* Bank 3 Write Access Time = 7 cycles */
1177#define B3WAT_8 0x80000000 /* Bank 3 Write Access Time = 8 cycles */
1178#define B3WAT_9 0x90000000 /* Bank 3 Write Access Time = 9 cycles */
1179#define B3WAT_10 0xA0000000 /* Bank 3 Write Access Time = 10 cycles */
1180#define B3WAT_11 0xB0000000 /* Bank 3 Write Access Time = 11 cycles */
1181#define B3WAT_12 0xC0000000 /* Bank 3 Write Access Time = 12 cycles */
1182#define B3WAT_13 0xD0000000 /* Bank 3 Write Access Time = 13 cycles */
1183#define B3WAT_14 0xE0000000 /* Bank 3 Write Access Time = 14 cycles */
1184#define B3WAT_15 0xF0000000 /* Bank 3 Write Access Time = 15 cycles */
1185
1186/* ********************** SDRAM CONTROLLER MASKS *************************** */
1187
1188/* SDGCTL Masks */
1189#define SCTLE 0x00000001 /* Enable SCLK[0], /SRAS, /SCAS, /SWE, SDQM[3:0] */
1190#define CL_2 0x00000008 /* SDRAM CAS latency = 2 cycles */
1191#define CL_3 0x0000000C /* SDRAM CAS latency = 3 cycles */
1192#define PFE 0x00000010 /* Enable SDRAM prefetch */
1193#define PFP 0x00000020 /* Prefetch has priority over AMC requests */
Bryan Wu19381f02007-05-21 18:09:31 +08001194#define PASR_ALL 0x00000000 /* All 4 SDRAM Banks Refreshed In Self-Refresh */
1195#define PASR_B0_B1 0x00000010 /* SDRAM Banks 0 and 1 Are Refreshed In Self-Refresh */
1196#define PASR_B0 0x00000020 /* Only SDRAM Bank 0 Is Refreshed In Self-Refresh */
Bryan Wu1394f032007-05-06 14:50:22 -07001197#define TRAS_1 0x00000040 /* SDRAM tRAS = 1 cycle */
1198#define TRAS_2 0x00000080 /* SDRAM tRAS = 2 cycles */
1199#define TRAS_3 0x000000C0 /* SDRAM tRAS = 3 cycles */
1200#define TRAS_4 0x00000100 /* SDRAM tRAS = 4 cycles */
1201#define TRAS_5 0x00000140 /* SDRAM tRAS = 5 cycles */
1202#define TRAS_6 0x00000180 /* SDRAM tRAS = 6 cycles */
1203#define TRAS_7 0x000001C0 /* SDRAM tRAS = 7 cycles */
1204#define TRAS_8 0x00000200 /* SDRAM tRAS = 8 cycles */
1205#define TRAS_9 0x00000240 /* SDRAM tRAS = 9 cycles */
1206#define TRAS_10 0x00000280 /* SDRAM tRAS = 10 cycles */
1207#define TRAS_11 0x000002C0 /* SDRAM tRAS = 11 cycles */
1208#define TRAS_12 0x00000300 /* SDRAM tRAS = 12 cycles */
1209#define TRAS_13 0x00000340 /* SDRAM tRAS = 13 cycles */
1210#define TRAS_14 0x00000380 /* SDRAM tRAS = 14 cycles */
1211#define TRAS_15 0x000003C0 /* SDRAM tRAS = 15 cycles */
1212#define TRP_1 0x00000800 /* SDRAM tRP = 1 cycle */
1213#define TRP_2 0x00001000 /* SDRAM tRP = 2 cycles */
1214#define TRP_3 0x00001800 /* SDRAM tRP = 3 cycles */
1215#define TRP_4 0x00002000 /* SDRAM tRP = 4 cycles */
1216#define TRP_5 0x00002800 /* SDRAM tRP = 5 cycles */
1217#define TRP_6 0x00003000 /* SDRAM tRP = 6 cycles */
1218#define TRP_7 0x00003800 /* SDRAM tRP = 7 cycles */
1219#define TRCD_1 0x00008000 /* SDRAM tRCD = 1 cycle */
1220#define TRCD_2 0x00010000 /* SDRAM tRCD = 2 cycles */
1221#define TRCD_3 0x00018000 /* SDRAM tRCD = 3 cycles */
1222#define TRCD_4 0x00020000 /* SDRAM tRCD = 4 cycles */
1223#define TRCD_5 0x00028000 /* SDRAM tRCD = 5 cycles */
1224#define TRCD_6 0x00030000 /* SDRAM tRCD = 6 cycles */
1225#define TRCD_7 0x00038000 /* SDRAM tRCD = 7 cycles */
1226#define TWR_1 0x00080000 /* SDRAM tWR = 1 cycle */
1227#define TWR_2 0x00100000 /* SDRAM tWR = 2 cycles */
1228#define TWR_3 0x00180000 /* SDRAM tWR = 3 cycles */
1229#define PUPSD 0x00200000 /*Power-up start delay */
1230#define PSM 0x00400000 /* SDRAM power-up sequence = Precharge, mode register set, 8 CBR refresh cycles */
1231#define PSS 0x00800000 /* enable SDRAM power-up sequence on next SDRAM access */
1232#define SRFS 0x01000000 /* Start SDRAM self-refresh mode */
1233#define EBUFE 0x02000000 /* Enable external buffering timing */
1234#define FBBRW 0x04000000 /* Fast back-to-back read write enable */
1235#define EMREN 0x10000000 /* Extended mode register enable */
1236#define TCSR 0x20000000 /* Temp compensated self refresh value 85 deg C */
1237#define CDDBG 0x40000000 /* Tristate SDRAM controls during bus grant */
1238
1239/* EBIU_SDBCTL Masks */
1240#define EBE 0x00000001 /* Enable SDRAM external bank */
1241#define EBSZ_16 0x00000000 /* SDRAM external bank size = 16MB */
1242#define EBSZ_32 0x00000002 /* SDRAM external bank size = 32MB */
1243#define EBSZ_64 0x00000004 /* SDRAM external bank size = 64MB */
1244#define EBSZ_128 0x00000006 /* SDRAM external bank size = 128MB */
1245#define EBCAW_8 0x00000000 /* SDRAM external bank column address width = 8 bits */
1246#define EBCAW_9 0x00000010 /* SDRAM external bank column address width = 9 bits */
1247#define EBCAW_10 0x00000020 /* SDRAM external bank column address width = 9 bits */
1248#define EBCAW_11 0x00000030 /* SDRAM external bank column address width = 9 bits */
1249
1250/* EBIU_SDSTAT Masks */
1251#define SDCI 0x00000001 /* SDRAM controller is idle */
1252#define SDSRA 0x00000002 /* SDRAM SDRAM self refresh is active */
1253#define SDPUA 0x00000004 /* SDRAM power up active */
1254#define SDRS 0x00000008 /* SDRAM is in reset state */
1255#define SDEASE 0x00000010 /* SDRAM EAB sticky error status - W1C */
1256#define BGSTAT 0x00000020 /* Bus granted */
1257
Bryan Wu1394f032007-05-06 14:50:22 -07001258
1259#endif /* _DEF_BF532_H */