1 /***************************************************************************
3 * Open \______ \ ____ ____ | | _\_ |__ _______ ___
4 * Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
5 * Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
6 * Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
10 * Copyright (C) 2002 by Alan Korr
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation; either version 2
15 * of the License, or (at your option) any later version.
17 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
18 * KIND, either express or implied.
20 ****************************************************************************/
29 extern void system_reboot (void);
30 extern void system_init(void);
32 extern long cpu_frequency
;
40 bool detect_flashed_romimage(void);
41 bool detect_flashed_ramimage(void);
42 bool detect_original_firmware(void);
44 #if defined(HAVE_ADJUSTABLE_CPU_FREQ) \
45 && defined(ROCKBOX_HAS_LOGF) && (NUM_CORES == 1)
46 #define CPU_BOOST_LOGGING
49 #ifdef HAVE_ADJUSTABLE_CPU_FREQ
51 extern struct spinlock boostctrl_spin
;
53 void cpu_boost_init(void);
54 #define FREQ cpu_frequency
55 void set_cpu_frequency(long frequency
);
56 #ifdef CPU_BOOST_LOGGING
57 char * cpu_boost_log_getlog_first(void);
58 char * cpu_boost_log_getlog_next(void);
59 int cpu_boost_log_getcount(void);
60 void cpu_boost_(bool on_off
, char* location
, int line
);
62 void cpu_boost(bool on_off
);
64 void cpu_idle_mode(bool on_off
);
65 int get_cpu_boost_counter(void);
68 #define set_cpu_frequency(frequency)
69 #define cpu_boost(on_off)
70 #define cpu_boost_id(on_off, id)
71 #define cpu_idle_mode(on_off)
72 #define get_cpu_boost_counter()
73 #define get_cpu_boost_tracker()
76 #ifdef CPU_BOOST_LOGGING
77 #define cpu_boost(on_off) cpu_boost_(on_off,__FILE__, __LINE__)
83 #define NULL ((void*)0)
87 #define MIN(a, b) (((a)<(b))?(a):(b))
91 #define MAX(a, b) (((a)>(b))?(a):(b))
94 /* return number of elements in array a */
95 #define ARRAYLEN(a) (sizeof(a)/sizeof((a)[0]))
97 /* return p incremented by specified number of bytes */
98 #define SKIPBYTES(p, count) ((typeof (p))((char *)(p) + (count)))
100 #define P2_M1(p2) ((1 << (p2))-1)
102 /* align up or down to nearest 2^p2 */
103 #define ALIGN_DOWN_P2(n, p2) ((n) & ~P2_M1(p2))
104 #define ALIGN_UP_P2(n, p2) ALIGN_DOWN_P2((n) + P2_M1(p2),p2)
106 /* align up or down to nearest integer multiple of a */
107 #define ALIGN_DOWN(n, a) ((n)/(a)*(a))
108 #define ALIGN_UP(n, a) ALIGN_DOWN((n)+((a)-1),a)
110 /* live endianness conversion */
111 #ifdef ROCKBOX_LITTLE_ENDIAN
112 #define letoh16(x) (x)
113 #define letoh32(x) (x)
114 #define htole16(x) (x)
115 #define htole32(x) (x)
116 #define betoh16(x) swap16(x)
117 #define betoh32(x) swap32(x)
118 #define htobe16(x) swap16(x)
119 #define htobe32(x) swap32(x)
120 #define swap_odd_even_be32(x) (x)
121 #define swap_odd_even_le32(x) swap_odd_even32(x)
123 #define letoh16(x) swap16(x)
124 #define letoh32(x) swap32(x)
125 #define htole16(x) swap16(x)
126 #define htole32(x) swap32(x)
127 #define betoh16(x) (x)
128 #define betoh32(x) (x)
129 #define htobe16(x) (x)
130 #define htobe32(x) (x)
131 #define swap_odd_even_be32(x) swap_odd_even32(x)
132 #define swap_odd_even_le32(x) (x)
135 /* static endianness conversion */
136 #define SWAP_16(x) ((typeof(x))(unsigned short)(((unsigned short)(x) >> 8) | \
137 ((unsigned short)(x) << 8)))
139 #define SWAP_32(x) ((typeof(x))(unsigned long)( ((unsigned long)(x) >> 24) | \
140 (((unsigned long)(x) & 0xff0000ul) >> 8) | \
141 (((unsigned long)(x) & 0xff00ul) << 8) | \
142 ((unsigned long)(x) << 24)))
144 #ifdef ROCKBOX_LITTLE_ENDIAN
145 #define LE_TO_H16(x) (x)
146 #define LE_TO_H32(x) (x)
147 #define H_TO_LE16(x) (x)
148 #define H_TO_LE32(x) (x)
149 #define BE_TO_H16(x) SWAP_16(x)
150 #define BE_TO_H32(x) SWAP_32(x)
151 #define H_TO_BE16(x) SWAP_16(x)
152 #define H_TO_BE32(x) SWAP_32(x)
154 #define LE_TO_H16(x) SWAP_16(x)
155 #define LE_TO_H32(x) SWAP_32(x)
156 #define H_TO_LE16(x) SWAP_16(x)
157 #define H_TO_LE32(x) SWAP_32(x)
158 #define BE_TO_H16(x) (x)
159 #define BE_TO_H32(x) (x)
160 #define H_TO_BE16(x) (x)
161 #define H_TO_BE32(x) (x)
164 /* Get the byte offset of a type's member */
165 #define OFFSETOF(type, membername) ((off_t)&((type *)0)->membername)
167 /* Get the type pointer from one of its members */
168 #define TYPE_FROM_MEMBER(type, memberptr, membername) \
169 ((type *)((intptr_t)(memberptr) - OFFSETOF(type, membername)))
171 /* returns index of first set bit + 1 or 0 if no bits are set */
172 int find_first_set_bit(uint32_t val
);
174 static inline __attribute__((always_inline
))
175 uint32_t isolate_first_bit(uint32_t val
)
176 { return val
& -val
; }
178 /* gcc 3.4 changed the format of the constraints */
179 #if (__GNUC__ >= 3) && (__GNUC_MINOR__ > 3) || (__GNUC__ >= 4)
180 #define I_CONSTRAINT "I08"
182 #define I_CONSTRAINT "I"
185 /* Utilize the user break controller to catch invalid memory accesses. */
186 int system_memory_guard(int newmode
);
189 MEMGUARD_KEEP
= -1, /* don't change the mode; for reading */
190 MEMGUARD_NONE
= 0, /* catch nothing */
191 MEMGUARD_FLASH_WRITES
, /* catch writes to area 02 (flash ROM) */
192 MEMGUARD_ZERO_AREA
, /* catch all accesses to areas 00 and 01 */
197 #include "system-target.h"
198 #else /* SIMULATOR */
200 static inline uint16_t swap16(uint16_t value
)
202 result[15..8] = value[ 7..0];
203 result[ 7..0] = value[15..8];
206 return (value
>> 8) | (value
<< 8);
209 static inline uint32_t swap32(uint32_t value
)
211 result[31..24] = value[ 7.. 0];
212 result[23..16] = value[15.. 8];
213 result[15.. 8] = value[23..16];
214 result[ 7.. 0] = value[31..24];
217 uint32_t hi
= swap16(value
>> 16);
218 uint32_t lo
= swap16(value
& 0xffff);
219 return (lo
<< 16) | hi
;
222 static inline uint32_t swap_odd_even32(uint32_t value
)
225 result[31..24],[15.. 8] = value[23..16],[ 7.. 0]
226 result[23..16],[ 7.. 0] = value[31..24],[15.. 8]
228 uint32_t t
= value
& 0xff00ff00;
229 return (t
>> 8) | ((t
^ value
) << 8);
232 #endif /* !SIMULATOR */
234 /* Declare this as HIGHEST_IRQ_LEVEL if they don't differ */
235 #ifndef DISABLE_INTERRUPTS
236 #define DISABLE_INTERRUPTS HIGHEST_IRQ_LEVEL
239 /* Just define these as empty if not declared */
240 #ifndef HAVE_INVALIDATE_ICACHE
241 #define invalidate_icache()
244 #ifndef HAVE_FLUSH_ICACHE
245 #define flush_icache()
248 #ifdef PROC_NEEDS_CACHEALIGN
249 /* Cache alignment attributes and sizes are enabled */
251 /* 2^CACHEALIGN_BITS = the byte size */
252 #define CACHEALIGN_SIZE (1u << CACHEALIGN_BITS)
254 #define CACHEALIGN_ATTR __attribute__((aligned(CACHEALIGN_SIZE)))
255 /* Aligns x up to a CACHEALIGN_SIZE boundary */
256 #define CACHEALIGN_UP(x) \
257 ((typeof (x))ALIGN_UP_P2((uintptr_t)(x), CACHEALIGN_BITS))
258 /* Aligns x down to a CACHEALIGN_SIZE boundary */
259 #define CACHEALIGN_DOWN(x) \
260 ((typeof (x))ALIGN_DOWN_P2((uintptr_t)(x), CACHEALIGN_BITS))
261 /* Aligns at least to the greater of size x or CACHEALIGN_SIZE */
262 #define CACHEALIGN_AT_LEAST_ATTR(x) \
263 __attribute__((aligned(CACHEALIGN_UP(x))))
264 /* Aligns a buffer pointer and size to proper boundaries */
265 #define CACHEALIGN_BUFFER(start, size) \
266 ({ align_buffer(PUN_PTR(void **, (start)), (size), CACHEALIGN_SIZE); })
268 #else /* ndef PROC_NEEDS_CACHEALIGN */
270 /* Cache alignment attributes and sizes are not enabled */
271 #define CACHEALIGN_ATTR
272 #define CACHEALIGN_AT_LEAST_ATTR(x) \
273 __attribute__((aligned(x)))
274 #define CACHEALIGN_UP(x) (x)
275 #define CACHEALIGN_DOWN(x) (x)
276 /* Make no adjustments */
277 #define CACHEALIGN_BUFFER(start, size) \
278 ({ (void)(start); (size); })
280 #endif /* PROC_NEEDS_CACHEALIGN */
282 /* Double-cast to avoid 'dereferencing type-punned pointer will
283 * break strict aliasing rules' B.S. */
284 #define PUN_PTR(type, p) ((type)(intptr_t)(p))
286 #endif /* __SYSTEM_H__ */