2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
6 * Copyright (C) 1992 - 1997, 1999, 2000 Silicon Graphics, Inc.
7 * Copyright (C) 1999, 2000 by Ralf Baechle
9 #ifndef _ASM_SN_ADDRS_H
10 #define _ASM_SN_ADDRS_H
14 #include <linux/types.h>
15 #endif /* !__ASSEMBLY__ */
17 #include <asm/addrspace.h>
18 #include <asm/sn/kldir.h>
20 #if defined(CONFIG_SGI_IP27)
21 #include <asm/sn/sn0/addrs.h>
27 #define PS_UINT_CAST (unsigned long)
28 #define UINT64_CAST (unsigned long)
30 #define HUBREG_CAST (volatile hubreg_t *)
32 #else /* __ASSEMBLY__ */
38 #endif /* __ASSEMBLY__ */
41 #define NASID_GET_META(_n) ((_n) >> NASID_LOCAL_BITS)
42 #ifdef CONFIG_SGI_IP27
43 #define NASID_GET_LOCAL(_n) ((_n) & 0xf)
45 #define NASID_MAKE(_m, _l) (((_m) << NASID_LOCAL_BITS) | (_l))
47 #define NODE_ADDRSPACE_MASK (NODE_ADDRSPACE_SIZE - 1)
48 #define TO_NODE_ADDRSPACE(_pa) (UINT64_CAST (_pa) & NODE_ADDRSPACE_MASK)
50 #define CHANGE_ADDR_NASID(_pa, _nasid) \
51 ((UINT64_CAST(_pa) & ~NASID_MASK) | \
52 (UINT64_CAST(_nasid) << NASID_SHFT))
56 * The following macros are used to index to the beginning of a specific
57 * node's address space.
60 #define NODE_OFFSET(_n) (UINT64_CAST (_n) << NODE_SIZE_BITS)
62 #define NODE_CAC_BASE(_n) (CAC_BASE + NODE_OFFSET(_n))
63 #define NODE_HSPEC_BASE(_n) (HSPEC_BASE + NODE_OFFSET(_n))
64 #define NODE_IO_BASE(_n) (IO_BASE + NODE_OFFSET(_n))
65 #define NODE_MSPEC_BASE(_n) (MSPEC_BASE + NODE_OFFSET(_n))
66 #define NODE_UNCAC_BASE(_n) (UNCAC_BASE + NODE_OFFSET(_n))
68 #define TO_NODE(_n, _x) (NODE_OFFSET(_n) | ((_x) ))
69 #define TO_NODE_CAC(_n, _x) (NODE_CAC_BASE(_n) | ((_x) & TO_PHYS_MASK))
70 #define TO_NODE_UNCAC(_n, _x) (NODE_UNCAC_BASE(_n) | ((_x) & TO_PHYS_MASK))
71 #define TO_NODE_MSPEC(_n, _x) (NODE_MSPEC_BASE(_n) | ((_x) & TO_PHYS_MASK))
72 #define TO_NODE_HSPEC(_n, _x) (NODE_HSPEC_BASE(_n) | ((_x) & TO_PHYS_MASK))
75 #define RAW_NODE_SWIN_BASE(nasid, widget) \
76 (NODE_IO_BASE(nasid) + (UINT64_CAST(widget) << SWIN_SIZE_BITS))
78 #define WIDGETID_GET(addr) ((unsigned char)((addr >> SWIN_SIZE_BITS) & 0xff))
81 * The following definitions pertain to the IO special address
82 * space. They define the location of the big and little windows
86 #define SWIN_SIZE_BITS 24
87 #define SWIN_SIZE (UINT64_CAST 1 << 24)
88 #define SWIN_SIZEMASK (SWIN_SIZE - 1)
89 #define SWIN_WIDGET_MASK 0xF
92 * Convert smallwindow address to xtalk address.
94 * 'addr' can be physical or virtual address, but will be converted
95 * to Xtalk address in the range 0 -> SWINZ_SIZEMASK
97 #define SWIN_WIDGETADDR(addr) ((addr) & SWIN_SIZEMASK)
98 #define SWIN_WIDGETNUM(addr) (((addr) >> SWIN_SIZE_BITS) & SWIN_WIDGET_MASK)
100 * Verify if addr belongs to small window address on node with "nasid"
103 * NOTE: "addr" is expected to be XKPHYS address, and NOT physical
108 #define NODE_SWIN_ADDR(nasid, addr) \
109 (((addr) >= NODE_SWIN_BASE(nasid, 0)) && \
110 ((addr) < (NODE_SWIN_BASE(nasid, HUB_NUM_WIDGET) + SWIN_SIZE)\
114 * The following define the major position-independent aliases used
116 * UALIAS -- 256MB in size, reads in the UALIAS result in
117 * uncached references to the memory of the reader's node.
118 * CPU_UALIAS -- 128kb in size, the bottom part of UALIAS is flipped
119 * depending on which CPU does the access to provide
120 * all CPUs with unique uncached memory at low addresses.
121 * LBOOT -- 256MB in size, reads in the LBOOT area result in
122 * uncached references to the local hub's boot prom and
123 * other directory-bus connected devices.
124 * IALIAS -- 8MB in size, reads in the IALIAS result in uncached
125 * references to the local hub's registers.
128 #define UALIAS_BASE HSPEC_BASE
129 #define UALIAS_SIZE 0x10000000 /* 256 Megabytes */
130 #define UALIAS_LIMIT (UALIAS_BASE + UALIAS_SIZE)
133 * The bottom of ualias space is flipped depending on whether you're
134 * processor 0 or 1 within a node.
136 #ifdef CONFIG_SGI_IP27
137 #define UALIAS_FLIP_BASE UALIAS_BASE
138 #define UALIAS_FLIP_SIZE 0x20000
139 #define UALIAS_FLIP_BIT 0x10000
140 #define UALIAS_FLIP_ADDR(_x) (cputoslice(smp_processor_id()) ? \
141 (_x) ^ UALIAS_FLIP_BIT : (_x))
143 #define LBOOT_BASE (HSPEC_BASE + 0x10000000)
144 #define LBOOT_SIZE 0x10000000
145 #define LBOOT_LIMIT (LBOOT_BASE + LBOOT_SIZE)
146 #define LBOOT_STRIDE 0 /* IP27 has only one CPU PROM */
150 #define HUB_REGISTER_WIDGET 1
151 #define IALIAS_BASE NODE_SWIN_BASE(0, HUB_REGISTER_WIDGET)
152 #define IALIAS_SIZE 0x800000 /* 8 Megabytes */
153 #define IS_IALIAS(_a) (((_a) >= IALIAS_BASE) && \
154 ((_a) < (IALIAS_BASE + IALIAS_SIZE)))
157 * Macro for referring to Hub's RBOOT space
160 #ifdef CONFIG_SGI_IP27
161 #define RBOOT_SIZE 0x10000000 /* 256 Megabytes */
162 #define NODE_RBOOT_BASE(_n) (NODE_HSPEC_BASE(_n) + 0x30000000)
163 #define NODE_RBOOT_LIMIT(_n) (NODE_RBOOT_BASE(_n) + RBOOT_SIZE)
168 * Macros for referring the Hub's back door space
170 * These macros correctly process addresses in any node's space.
171 * WARNING: They won't work in assembler.
173 * BDDIR_ENTRY_LO returns the address of the low double-word of the dir
174 * entry corresponding to a physical (Cac or Uncac) address.
175 * BDDIR_ENTRY_HI returns the address of the high double-word of the entry.
176 * BDPRT_ENTRY returns the address of the double-word protection entry
177 * corresponding to the page containing the physical address.
178 * BDPRT_ENTRY_S Stores the value into the protection entry.
179 * BDPRT_ENTRY_L Load the value from the protection entry.
180 * BDECC_ENTRY returns the address of the ECC byte corresponding to a
181 * double-word at a specified physical address.
182 * BDECC_ENTRY_H returns the address of the two ECC bytes corresponding to a
183 * quad-word at a specified physical address.
185 #define NODE_BDOOR_BASE(_n) (NODE_HSPEC_BASE(_n) + (NODE_ADDRSPACE_SIZE/2))
187 #define NODE_BDECC_BASE(_n) (NODE_BDOOR_BASE(_n))
188 #define NODE_BDDIR_BASE(_n) (NODE_BDOOR_BASE(_n) + (NODE_ADDRSPACE_SIZE/4))
189 #ifdef CONFIG_SGI_IP27
190 #define BDDIR_ENTRY_LO(_pa) ((HSPEC_BASE + \
191 NODE_ADDRSPACE_SIZE * 3 / 4 + \
193 UINT64_CAST(_pa) & NASID_MASK | \
194 UINT64_CAST(_pa) >> 2 & BDDIR_UPPER_MASK | \
195 UINT64_CAST(_pa) >> 3 & 0x1f << 4)
197 #define BDDIR_ENTRY_HI(_pa) ((HSPEC_BASE + \
198 NODE_ADDRSPACE_SIZE * 3 / 4 + \
200 UINT64_CAST(_pa) & NASID_MASK | \
201 UINT64_CAST(_pa) >> 2 & BDDIR_UPPER_MASK | \
202 UINT64_CAST(_pa) >> 3 & 0x1f << 4)
204 #define BDPRT_ENTRY(_pa, _rgn) ((HSPEC_BASE + \
205 NODE_ADDRSPACE_SIZE * 3 / 4) | \
206 UINT64_CAST(_pa) & NASID_MASK | \
207 UINT64_CAST(_pa) >> 2 & BDDIR_UPPER_MASK | \
209 #define BDPRT_ENTRY_ADDR(_pa, _rgn) (BDPRT_ENTRY((_pa), (_rgn)))
210 #define BDPRT_ENTRY_S(_pa, _rgn, _val) (*(__psunsigned_t *)BDPRT_ENTRY((_pa), (_rgn))=(_val))
211 #define BDPRT_ENTRY_L(_pa, _rgn) (*(__psunsigned_t *)BDPRT_ENTRY((_pa), (_rgn)))
213 #define BDECC_ENTRY(_pa) ((HSPEC_BASE + \
214 NODE_ADDRSPACE_SIZE / 2) | \
215 UINT64_CAST(_pa) & NASID_MASK | \
216 UINT64_CAST(_pa) >> 2 & BDECC_UPPER_MASK | \
217 UINT64_CAST(_pa) >> 3 & 3)
220 * Macro to convert a back door directory or protection address into the
221 * raw physical address of the associated cache line or protection page.
223 #define BDADDR_IS_DIR(_ba) ((UINT64_CAST (_ba) & 0x200) != 0)
224 #define BDADDR_IS_PRT(_ba) ((UINT64_CAST (_ba) & 0x200) == 0)
226 #define BDDIR_TO_MEM(_ba) (UINT64_CAST (_ba) & NASID_MASK | \
227 (UINT64_CAST(_ba) & BDDIR_UPPER_MASK)<<2 | \
228 (UINT64_CAST(_ba) & 0x1f << 4) << 3)
230 #define BDPRT_TO_MEM(_ba) (UINT64_CAST (_ba) & NASID_MASK | \
231 (UINT64_CAST(_ba) & BDDIR_UPPER_MASK)<<2)
233 #define BDECC_TO_MEM(_ba) (UINT64_CAST (_ba) & NASID_MASK | \
234 (UINT64_CAST(_ba) & BDECC_UPPER_MASK)<<2 | \
235 (UINT64_CAST(_ba) & 3) << 3)
236 #endif /* CONFIG_SGI_IP27 */
240 * The following macros produce the correct base virtual address for
241 * the hub registers. The LOCAL_HUB_* macros produce the appropriate
242 * address for the local registers. The REMOTE_HUB_* macro produce
243 * the address for the specified hub's registers. The intent is
244 * that the appropriate PI, MD, NI, or II register would be substituted
250 * When certain Hub chip workaround are defined, it's not sufficient
251 * to dereference the *_HUB_ADDR() macros. You should instead use
252 * HUB_L() and HUB_S() if you must deal with pointers to hub registers.
253 * Otherwise, the recommended approach is to use *_HUB_L() and *_HUB_S().
254 * They're always safe.
256 #define LOCAL_HUB_ADDR(_x) (HUBREG_CAST (IALIAS_BASE + (_x)))
257 #define REMOTE_HUB_ADDR(_n, _x) (HUBREG_CAST (NODE_SWIN_BASE(_n, 1) + \
259 #ifdef CONFIG_SGI_IP27
260 #define REMOTE_HUB_PI_ADDR(_n, _sn, _x) (HUBREG_CAST (NODE_SWIN_BASE(_n, 1) + \
262 #endif /* CONFIG_SGI_IP27 */
266 #define HUB_L(_a) *(_a)
267 #define HUB_S(_a, _d) *(_a) = (_d)
269 #define LOCAL_HUB_L(_r) HUB_L(LOCAL_HUB_ADDR(_r))
270 #define LOCAL_HUB_S(_r, _d) HUB_S(LOCAL_HUB_ADDR(_r), (_d))
271 #define REMOTE_HUB_L(_n, _r) HUB_L(REMOTE_HUB_ADDR((_n), (_r)))
272 #define REMOTE_HUB_S(_n, _r, _d) HUB_S(REMOTE_HUB_ADDR((_n), (_r)), (_d))
273 #define REMOTE_HUB_PI_L(_n, _sn, _r) HUB_L(REMOTE_HUB_PI_ADDR((_n), (_sn), (_r)))
274 #define REMOTE_HUB_PI_S(_n, _sn, _r, _d) HUB_S(REMOTE_HUB_PI_ADDR((_n), (_sn), (_r)), (_d))
276 #endif /* !__ASSEMBLY__ */
279 * The following macros are used to get to a hub/bridge register, given
280 * the base of the register space.
282 #define HUB_REG_PTR(_base, _off) \
283 (HUBREG_CAST((__psunsigned_t)(_base) + (__psunsigned_t)(_off)))
285 #define HUB_REG_PTR_L(_base, _off) \
286 HUB_L(HUB_REG_PTR((_base), (_off)))
288 #define HUB_REG_PTR_S(_base, _off, _data) \
289 HUB_S(HUB_REG_PTR((_base), (_off)), (_data))
292 * Software structure locations -- permanently fixed
293 * See diagram in kldir.h
296 #define PHYS_RAMBASE 0x0
297 #define K0_RAMBASE PHYS_TO_K0(PHYS_RAMBASE)
299 #define EX_HANDLER_OFFSET(slice) ((slice) << 16)
300 #define EX_HANDLER_ADDR(nasid, slice) \
301 PHYS_TO_K0(NODE_OFFSET(nasid) | EX_HANDLER_OFFSET(slice))
302 #define EX_HANDLER_SIZE 0x0400
304 #define EX_FRAME_OFFSET(slice) ((slice) << 16 | 0x400)
305 #define EX_FRAME_ADDR(nasid, slice) \
306 PHYS_TO_K0(NODE_OFFSET(nasid) | EX_FRAME_OFFSET(slice))
307 #define EX_FRAME_SIZE 0x0c00
309 #define ARCS_SPB_OFFSET 0x1000
310 #define ARCS_SPB_ADDR(nasid) \
311 PHYS_TO_K0(NODE_OFFSET(nasid) | ARCS_SPB_OFFSET)
312 #define ARCS_SPB_SIZE 0x0400
314 #define KLDIR_OFFSET 0x2000
315 #define KLDIR_ADDR(nasid) \
316 TO_NODE_UNCAC((nasid), KLDIR_OFFSET)
317 #define KLDIR_SIZE 0x0400
321 * Software structure locations -- indirected through KLDIR
322 * See diagram in kldir.h
324 * Important: All low memory structures must only be accessed
325 * uncached, except for the symmon stacks.
328 #define KLI_LAUNCH 0 /* Dir. entries */
329 #define KLI_KLCONFIG 1
332 #define KLI_FREEMEM 4
333 #define KLI_SYMMON_STK 5
334 #define KLI_PI_ERROR 6
335 #define KLI_KERN_VARS 7
336 #define KLI_KERN_XP 8
337 #define KLI_KERN_PARTID 9
341 #define KLD_BASE(nasid) ((kldir_ent_t *) KLDIR_ADDR(nasid))
342 #define KLD_LAUNCH(nasid) (KLD_BASE(nasid) + KLI_LAUNCH)
343 #define KLD_NMI(nasid) (KLD_BASE(nasid) + KLI_NMI)
344 #define KLD_KLCONFIG(nasid) (KLD_BASE(nasid) + KLI_KLCONFIG)
345 #define KLD_PI_ERROR(nasid) (KLD_BASE(nasid) + KLI_PI_ERROR)
346 #define KLD_GDA(nasid) (KLD_BASE(nasid) + KLI_GDA)
347 #define KLD_SYMMON_STK(nasid) (KLD_BASE(nasid) + KLI_SYMMON_STK)
348 #define KLD_FREEMEM(nasid) (KLD_BASE(nasid) + KLI_FREEMEM)
349 #define KLD_KERN_VARS(nasid) (KLD_BASE(nasid) + KLI_KERN_VARS)
350 #define KLD_KERN_XP(nasid) (KLD_BASE(nasid) + KLI_KERN_XP)
351 #define KLD_KERN_PARTID(nasid) (KLD_BASE(nasid) + KLI_KERN_PARTID)
353 #define LAUNCH_OFFSET(nasid, slice) \
354 (KLD_LAUNCH(nasid)->offset + \
355 KLD_LAUNCH(nasid)->stride * (slice))
356 #define LAUNCH_ADDR(nasid, slice) \
357 TO_NODE_UNCAC((nasid), LAUNCH_OFFSET(nasid, slice))
358 #define LAUNCH_SIZE(nasid) KLD_LAUNCH(nasid)->size
360 #define NMI_OFFSET(nasid, slice) \
361 (KLD_NMI(nasid)->offset + \
362 KLD_NMI(nasid)->stride * (slice))
363 #define NMI_ADDR(nasid, slice) \
364 TO_NODE_UNCAC((nasid), NMI_OFFSET(nasid, slice))
365 #define NMI_SIZE(nasid) KLD_NMI(nasid)->size
367 #define KLCONFIG_OFFSET(nasid) KLD_KLCONFIG(nasid)->offset
368 #define KLCONFIG_ADDR(nasid) \
369 TO_NODE_UNCAC((nasid), KLCONFIG_OFFSET(nasid))
370 #define KLCONFIG_SIZE(nasid) KLD_KLCONFIG(nasid)->size
372 #define GDA_ADDR(nasid) KLD_GDA(nasid)->pointer
373 #define GDA_SIZE(nasid) KLD_GDA(nasid)->size
375 #define SYMMON_STK_OFFSET(nasid, slice) \
376 (KLD_SYMMON_STK(nasid)->offset + \
377 KLD_SYMMON_STK(nasid)->stride * (slice))
378 #define SYMMON_STK_STRIDE(nasid) KLD_SYMMON_STK(nasid)->stride
380 #define SYMMON_STK_ADDR(nasid, slice) \
381 TO_NODE_CAC((nasid), SYMMON_STK_OFFSET(nasid, slice))
383 #define SYMMON_STK_SIZE(nasid) KLD_SYMMON_STK(nasid)->stride
385 #define SYMMON_STK_END(nasid) (SYMMON_STK_ADDR(nasid, 0) + KLD_SYMMON_STK(nasid)->size)
387 /* loading symmon 4k below UNIX. the arcs loader needs the topaddr for a
388 * relocatable program
390 #define UNIX_DEBUG_LOADADDR 0x300000
391 #define SYMMON_LOADADDR(nasid) \
392 TO_NODE(nasid, PHYS_TO_K0(UNIX_DEBUG_LOADADDR - 0x1000))
394 #define FREEMEM_OFFSET(nasid) KLD_FREEMEM(nasid)->offset
395 #define FREEMEM_ADDR(nasid) SYMMON_STK_END(nasid)
398 * Fix this. FREEMEM_ADDR should be aware of if symmon is loaded.
399 * Also, it should take into account what prom thinks to be a safe
401 PHYS_TO_K0(NODE_OFFSET(nasid) + FREEMEM_OFFSET(nasid))
403 #define FREEMEM_SIZE(nasid) KLD_FREEMEM(nasid)->size
405 #define PI_ERROR_OFFSET(nasid) KLD_PI_ERROR(nasid)->offset
406 #define PI_ERROR_ADDR(nasid) \
407 TO_NODE_UNCAC((nasid), PI_ERROR_OFFSET(nasid))
408 #define PI_ERROR_SIZE(nasid) KLD_PI_ERROR(nasid)->size
410 #define NODE_OFFSET_TO_K0(_nasid, _off) \
411 PHYS_TO_K0((NODE_OFFSET(_nasid) + (_off)) | CAC_BASE)
412 #define NODE_OFFSET_TO_K1(_nasid, _off) \
413 TO_UNCAC((NODE_OFFSET(_nasid) + (_off)) | UNCAC_BASE)
414 #define K0_TO_NODE_OFFSET(_k0addr) \
415 ((__psunsigned_t)(_k0addr) & NODE_ADDRSPACE_MASK)
417 #define KERN_VARS_ADDR(nasid) KLD_KERN_VARS(nasid)->pointer
418 #define KERN_VARS_SIZE(nasid) KLD_KERN_VARS(nasid)->size
420 #define KERN_XP_ADDR(nasid) KLD_KERN_XP(nasid)->pointer
421 #define KERN_XP_SIZE(nasid) KLD_KERN_XP(nasid)->size
423 #define GPDA_ADDR(nasid) TO_NODE_CAC(nasid, GPDA_OFFSET)
425 #endif /* !__ASSEMBLY__ */
428 #endif /* _ASM_SN_ADDRS_H */