release.S 12 KB

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  1. /*
  2. * Copyright 2008-2012 Freescale Semiconductor, Inc.
  3. * Kumar Gala <kumar.gala@freescale.com>
  4. *
  5. * See file CREDITS for list of people who contributed to this
  6. * project.
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License as
  10. * published by the Free Software Foundation; either version 2 of
  11. * the License, or (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  21. * MA 02111-1307 USA
  22. */
  23. #include <asm-offsets.h>
  24. #include <config.h>
  25. #include <mpc85xx.h>
  26. #include <version.h>
  27. #define _LINUX_CONFIG_H 1 /* avoid reading Linux autoconf.h file */
  28. #include <ppc_asm.tmpl>
  29. #include <ppc_defs.h>
  30. #include <asm/cache.h>
  31. #include <asm/mmu.h>
  32. /* To boot secondary cpus, we need a place for them to start up.
  33. * Normally, they start at 0xfffffffc, but that's usually the
  34. * firmware, and we don't want to have to run the firmware again.
  35. * Instead, the primary cpu will set the BPTR to point here to
  36. * this page. We then set up the core, and head to
  37. * start_secondary. Note that this means that the code below
  38. * must never exceed 1023 instructions (the branch at the end
  39. * would then be the 1024th).
  40. */
  41. .globl __secondary_start_page
  42. .align 12
  43. __secondary_start_page:
  44. /* First do some preliminary setup */
  45. lis r3, HID0_EMCP@h /* enable machine check */
  46. #ifndef CONFIG_E500MC
  47. ori r3,r3,HID0_TBEN@l /* enable Timebase */
  48. #endif
  49. #ifdef CONFIG_PHYS_64BIT
  50. ori r3,r3,HID0_ENMAS7@l /* enable MAS7 updates */
  51. #endif
  52. mtspr SPRN_HID0,r3
  53. #ifndef CONFIG_E500MC
  54. li r3,(HID1_ASTME|HID1_ABE)@l /* Addr streaming & broadcast */
  55. mfspr r0,PVR
  56. andi. r0,r0,0xff
  57. cmpwi r0,0x50@l /* if we are rev 5.0 or greater set MBDD */
  58. blt 1f
  59. /* Set MBDD bit also */
  60. ori r3, r3, HID1_MBDD@l
  61. 1:
  62. mtspr SPRN_HID1,r3
  63. #endif
  64. #ifdef CONFIG_SYS_FSL_ERRATUM_CPU_A003999
  65. mfspr r3,SPRN_HDBCR1
  66. oris r3,r3,0x0100
  67. mtspr SPRN_HDBCR1,r3
  68. #endif
  69. #ifdef CONFIG_SYS_FSL_ERRATUM_A004510
  70. mfspr r3,SPRN_SVR
  71. rlwinm r3,r3,0,0xff
  72. li r4,CONFIG_SYS_FSL_ERRATUM_A004510_SVR_REV
  73. cmpw r3,r4
  74. beq 1f
  75. #ifdef CONFIG_SYS_FSL_ERRATUM_A004510_SVR_REV2
  76. li r4,CONFIG_SYS_FSL_ERRATUM_A004510_SVR_REV2
  77. cmpw r3,r4
  78. beq 1f
  79. #endif
  80. /* Not a supported revision affected by erratum */
  81. b 2f
  82. 1: /* Erratum says set bits 55:60 to 001001 */
  83. msync
  84. isync
  85. mfspr r3,SPRN_HDBCR0
  86. li r4,0x48
  87. rlwimi r3,r4,0,0x1f8
  88. mtspr SPRN_HDBCR0,r3
  89. isync
  90. 2:
  91. #endif
  92. /* Enable branch prediction */
  93. lis r3,BUCSR_ENABLE@h
  94. ori r3,r3,BUCSR_ENABLE@l
  95. mtspr SPRN_BUCSR,r3
  96. /* Ensure TB is 0 */
  97. li r3,0
  98. mttbl r3
  99. mttbu r3
  100. /* Enable/invalidate the I-Cache */
  101. lis r2,(L1CSR1_ICFI|L1CSR1_ICLFR)@h
  102. ori r2,r2,(L1CSR1_ICFI|L1CSR1_ICLFR)@l
  103. mtspr SPRN_L1CSR1,r2
  104. 1:
  105. mfspr r3,SPRN_L1CSR1
  106. and. r1,r3,r2
  107. bne 1b
  108. lis r3,(L1CSR1_CPE|L1CSR1_ICE)@h
  109. ori r3,r3,(L1CSR1_CPE|L1CSR1_ICE)@l
  110. mtspr SPRN_L1CSR1,r3
  111. isync
  112. 2:
  113. mfspr r3,SPRN_L1CSR1
  114. andi. r1,r3,L1CSR1_ICE@l
  115. beq 2b
  116. /* Enable/invalidate the D-Cache */
  117. lis r2,(L1CSR0_DCFI|L1CSR0_DCLFR)@h
  118. ori r2,r2,(L1CSR0_DCFI|L1CSR0_DCLFR)@l
  119. mtspr SPRN_L1CSR0,r2
  120. 1:
  121. mfspr r3,SPRN_L1CSR0
  122. and. r1,r3,r2
  123. bne 1b
  124. lis r3,(L1CSR0_CPE|L1CSR0_DCE)@h
  125. ori r3,r3,(L1CSR0_CPE|L1CSR0_DCE)@l
  126. mtspr SPRN_L1CSR0,r3
  127. isync
  128. 2:
  129. mfspr r3,SPRN_L1CSR0
  130. andi. r1,r3,L1CSR0_DCE@l
  131. beq 2b
  132. #define toreset(x) (x - __secondary_start_page + 0xfffff000)
  133. /* get our PIR to figure out our table entry */
  134. lis r3,toreset(__spin_table_addr)@h
  135. ori r3,r3,toreset(__spin_table_addr)@l
  136. lwz r3,0(r3)
  137. mfspr r0,SPRN_PIR
  138. #ifdef CONFIG_SYS_FSL_QORIQ_CHASSIS2
  139. /*
  140. * PIR definition for Chassis 2
  141. * 0-17 Reserved (logic 0s)
  142. * 18-19 CHIP_ID, 2'b00 - SoC 1
  143. * all others - reserved
  144. * 20-24 CLUSTER_ID 5'b00000 - CCM 1
  145. * all others - reserved
  146. * 25-26 CORE_CLUSTER_ID 2'b00 - cluster 1
  147. * 2'b01 - cluster 2
  148. * 2'b10 - cluster 3
  149. * 2'b11 - cluster 4
  150. * 27-28 CORE_ID 2'b00 - core 0
  151. * 2'b01 - core 1
  152. * 2'b10 - core 2
  153. * 2'b11 - core 3
  154. * 29-31 THREAD_ID 3'b000 - thread 0
  155. * 3'b001 - thread 1
  156. *
  157. * Power-on PIR increments threads by 0x01, cores within a cluster by 0x08
  158. * and clusters by 0x20.
  159. *
  160. * We renumber PIR so that all threads in the system are consecutive.
  161. */
  162. rlwinm r8,r0,29,0x03 /* r8 = core within cluster */
  163. srwi r10,r0,5 /* r10 = cluster */
  164. mulli r5,r10,CONFIG_SYS_FSL_CORES_PER_CLUSTER
  165. add r5,r5,r8 /* for spin table index */
  166. mulli r4,r5,CONFIG_SYS_FSL_THREADS_PER_CORE /* for PIR */
  167. #elif defined(CONFIG_E500MC)
  168. rlwinm r4,r0,27,27,31
  169. mr r5,r4
  170. #else
  171. mr r4,r0
  172. mr r5,r4
  173. #endif
  174. /*
  175. * r10 has the base address for the entry.
  176. * we cannot access it yet before setting up a new TLB
  177. */
  178. slwi r8,r5,6 /* spin table is padded to 64 byte */
  179. add r10,r3,r8
  180. mtspr SPRN_PIR,r4 /* write to PIR register */
  181. #ifdef CONFIG_SYS_CACHE_STASHING
  182. /* set stash id to (coreID) * 2 + 32 + L1 CT (0) */
  183. slwi r8,r4,1
  184. addi r8,r8,32
  185. mtspr L1CSR2,r8
  186. #endif
  187. #if defined(CONFIG_SYS_P4080_ERRATUM_CPU22) || \
  188. defined(CONFIG_SYS_FSL_ERRATUM_NMG_CPU_A011)
  189. /*
  190. * CPU22 applies to P4080 rev 1.0, 2.0, fixed in 3.0
  191. * NMG_CPU_A011 applies to P4080 rev 1.0, 2.0, fixed in 3.0
  192. * also appleis to P3041 rev 1.0, 1.1, P2041 rev 1.0, 1.1
  193. */
  194. mfspr r3,SPRN_SVR
  195. rlwinm r6,r3,24,~0x800 /* clear E bit */
  196. lis r5,SVR_P4080@h
  197. ori r5,r5,SVR_P4080@l
  198. cmpw r6,r5
  199. bne 1f
  200. rlwinm r3,r3,0,0xf0
  201. li r5,0x30
  202. cmpw r3,r5
  203. bge 2f
  204. 1:
  205. #ifdef CONFIG_SYS_FSL_ERRATUM_NMG_CPU_A011
  206. lis r3,toreset(enable_cpu_a011_workaround)@ha
  207. lwz r3,toreset(enable_cpu_a011_workaround)@l(r3)
  208. cmpwi r3,0
  209. beq 2f
  210. #endif
  211. mfspr r3,L1CSR2
  212. oris r3,r3,(L1CSR2_DCWS)@h
  213. mtspr L1CSR2,r3
  214. 2:
  215. #endif
  216. #ifdef CONFIG_BACKSIDE_L2_CACHE
  217. /* skip L2 setup on P2040/P2040E as they have no L2 */
  218. mfspr r3,SPRN_SVR
  219. rlwinm r6,r3,24,~0x800 /* clear E bit of SVR */
  220. lis r3,SVR_P2040@h
  221. ori r3,r3,SVR_P2040@l
  222. cmpw r6,r3
  223. beq 3f
  224. /* Enable/invalidate the L2 cache */
  225. msync
  226. lis r2,(L2CSR0_L2FI|L2CSR0_L2LFC)@h
  227. ori r2,r2,(L2CSR0_L2FI|L2CSR0_L2LFC)@l
  228. mtspr SPRN_L2CSR0,r2
  229. 1:
  230. mfspr r3,SPRN_L2CSR0
  231. and. r1,r3,r2
  232. bne 1b
  233. #ifdef CONFIG_SYS_CACHE_STASHING
  234. /* set stash id to (coreID) * 2 + 32 + L2 (1) */
  235. addi r3,r8,1
  236. mtspr SPRN_L2CSR1,r3
  237. #endif
  238. lis r3,CONFIG_SYS_INIT_L2CSR0@h
  239. ori r3,r3,CONFIG_SYS_INIT_L2CSR0@l
  240. mtspr SPRN_L2CSR0,r3
  241. isync
  242. 2:
  243. mfspr r3,SPRN_L2CSR0
  244. andis. r1,r3,L2CSR0_L2E@h
  245. beq 2b
  246. #endif
  247. 3:
  248. /* setup mapping for the spin table, WIMGE=0b00100 */
  249. lis r13,toreset(__spin_table_addr)@h
  250. ori r13,r13,toreset(__spin_table_addr)@l
  251. lwz r13,0(r13)
  252. /* mask by 4K */
  253. rlwinm r13,r13,0,0,19
  254. lis r11,(MAS0_TLBSEL(1)|MAS0_ESEL(1))@h
  255. mtspr SPRN_MAS0,r11
  256. lis r11,(MAS1_VALID|MAS1_IPROT)@h
  257. ori r11,r11,(MAS1_TS|MAS1_TSIZE(BOOKE_PAGESZ_4K))@l
  258. mtspr SPRN_MAS1,r11
  259. oris r11,r13,(MAS2_M|MAS2_G)@h
  260. ori r11,r13,(MAS2_M|MAS2_G)@l
  261. mtspr SPRN_MAS2,r11
  262. oris r11,r13,(MAS3_SX|MAS3_SW|MAS3_SR)@h
  263. ori r11,r13,(MAS3_SX|MAS3_SW|MAS3_SR)@l
  264. mtspr SPRN_MAS3,r11
  265. li r11,0
  266. mtspr SPRN_MAS7,r11
  267. tlbwe
  268. /*
  269. * __bootpg_addr has the address of __second_half_boot_page
  270. * jump there in AS=1 space with cache enabled
  271. */
  272. lis r13,toreset(__bootpg_addr)@h
  273. ori r13,r13,toreset(__bootpg_addr)@l
  274. lwz r11,0(r13)
  275. mtspr SPRN_SRR0,r11
  276. mfmsr r13
  277. ori r12,r13,MSR_IS|MSR_DS@l
  278. mtspr SPRN_SRR1,r12
  279. rfi
  280. /*
  281. * Allocate some space for the SDRAM address of the bootpg.
  282. * This variable has to be in the boot page so that it can
  283. * be accessed by secondary cores when they come out of reset.
  284. */
  285. .align L1_CACHE_SHIFT
  286. .globl __bootpg_addr
  287. __bootpg_addr:
  288. .long 0
  289. .global __spin_table_addr
  290. __spin_table_addr:
  291. .long 0
  292. /*
  293. * This variable is set by cpu_init_r() after parsing hwconfig
  294. * to enable workaround for erratum NMG_CPU_A011.
  295. */
  296. .align L1_CACHE_SHIFT
  297. .global enable_cpu_a011_workaround
  298. enable_cpu_a011_workaround:
  299. .long 1
  300. /* Fill in the empty space. The actual reset vector is
  301. * the last word of the page */
  302. __secondary_start_code_end:
  303. .space 4092 - (__secondary_start_code_end - __secondary_start_page)
  304. __secondary_reset_vector:
  305. b __secondary_start_page
  306. /* this is a separated page for the spin table and cacheable boot code */
  307. .align L1_CACHE_SHIFT
  308. .global __second_half_boot_page
  309. __second_half_boot_page:
  310. #ifdef CONFIG_PPC_SPINTABLE_COMPATIBLE
  311. lis r3,(spin_table_compat - __second_half_boot_page)@h
  312. ori r3,r3,(spin_table_compat - __second_half_boot_page)@l
  313. add r3,r3,r11 /* r11 has the address of __second_half_boot_page */
  314. lwz r14,0(r3)
  315. #endif
  316. #define ENTRY_ADDR_UPPER 0
  317. #define ENTRY_ADDR_LOWER 4
  318. #define ENTRY_R3_UPPER 8
  319. #define ENTRY_R3_LOWER 12
  320. #define ENTRY_RESV 16
  321. #define ENTRY_PIR 20
  322. #define ENTRY_SIZE 64
  323. /*
  324. * setup the entry
  325. * r10 has the base address of the spin table.
  326. * spin table is defined as
  327. * struct {
  328. * uint64_t entry_addr;
  329. * uint64_t r3;
  330. * uint32_t rsvd1;
  331. * uint32_t pir;
  332. * };
  333. * we pad this struct to 64 bytes so each entry is in its own cacheline
  334. */
  335. li r3,0
  336. li r8,1
  337. mfspr r4,SPRN_PIR
  338. stw r3,ENTRY_ADDR_UPPER(r10)
  339. stw r3,ENTRY_R3_UPPER(r10)
  340. stw r4,ENTRY_R3_LOWER(r10)
  341. stw r3,ENTRY_RESV(r10)
  342. stw r4,ENTRY_PIR(r10)
  343. msync
  344. stw r8,ENTRY_ADDR_LOWER(r10)
  345. /* spin waiting for addr */
  346. 3:
  347. /*
  348. * To comply with ePAPR 1.1, the spin table has been moved to cache-enabled
  349. * memory. Old OS may not work with this change. A patch is waiting to be
  350. * accepted for Linux kernel. Other OS needs similar fix to spin table.
  351. * For OSes with old spin table code, we can enable this temporary fix by
  352. * setting environmental variable "spin_table_compat". For new OSes, set
  353. * "spin_table_compat=no". After Linux is fixed, we can remove this macro
  354. * and related code. For now, it is enabled by default.
  355. */
  356. #ifdef CONFIG_PPC_SPINTABLE_COMPATIBLE
  357. cmpwi r14,0
  358. beq 4f
  359. dcbf 0, r10
  360. sync
  361. 4:
  362. #endif
  363. lwz r4,ENTRY_ADDR_LOWER(r10)
  364. andi. r11,r4,1
  365. bne 3b
  366. isync
  367. /* setup IVORs to match fixed offsets */
  368. #include "fixed_ivor.S"
  369. /* get the upper bits of the addr */
  370. lwz r11,ENTRY_ADDR_UPPER(r10)
  371. /* setup branch addr */
  372. mtspr SPRN_SRR0,r4
  373. /* mark the entry as released */
  374. li r8,3
  375. stw r8,ENTRY_ADDR_LOWER(r10)
  376. /* mask by ~64M to setup our tlb we will jump to */
  377. rlwinm r12,r4,0,0,5
  378. /*
  379. * setup r3, r4, r5, r6, r7, r8, r9
  380. * r3 contains the value to put in the r3 register at secondary cpu
  381. * entry. The high 32-bits are ignored on 32-bit chip implementations.
  382. * 64-bit chip implementations however shall load all 64-bits
  383. */
  384. #ifdef CONFIG_SYS_PPC64
  385. ld r3,ENTRY_R3_UPPER(r10)
  386. #else
  387. lwz r3,ENTRY_R3_LOWER(r10)
  388. #endif
  389. li r4,0
  390. li r5,0
  391. li r6,0
  392. lis r7,(64*1024*1024)@h
  393. li r8,0
  394. li r9,0
  395. /* load up the pir */
  396. lwz r0,ENTRY_PIR(r10)
  397. mtspr SPRN_PIR,r0
  398. mfspr r0,SPRN_PIR
  399. stw r0,ENTRY_PIR(r10)
  400. mtspr IVPR,r12
  401. /*
  402. * Coming here, we know the cpu has one TLB mapping in TLB1[0]
  403. * which maps 0xfffff000-0xffffffff one-to-one. We set up a
  404. * second mapping that maps addr 1:1 for 64M, and then we jump to
  405. * addr
  406. */
  407. lis r10,(MAS0_TLBSEL(1)|MAS0_ESEL(0))@h
  408. mtspr SPRN_MAS0,r10
  409. lis r10,(MAS1_VALID|MAS1_IPROT)@h
  410. ori r10,r10,(MAS1_TSIZE(BOOKE_PAGESZ_64M))@l
  411. mtspr SPRN_MAS1,r10
  412. /* WIMGE = 0b00000 for now */
  413. mtspr SPRN_MAS2,r12
  414. ori r12,r12,(MAS3_SX|MAS3_SW|MAS3_SR)
  415. mtspr SPRN_MAS3,r12
  416. #ifdef CONFIG_ENABLE_36BIT_PHYS
  417. mtspr SPRN_MAS7,r11
  418. #endif
  419. tlbwe
  420. /* Now we have another mapping for this page, so we jump to that
  421. * mapping
  422. */
  423. mtspr SPRN_SRR1,r13
  424. rfi
  425. .align 6
  426. .globl __spin_table
  427. __spin_table:
  428. .space CONFIG_MAX_CPUS*ENTRY_SIZE
  429. #ifdef CONFIG_PPC_SPINTABLE_COMPATIBLE
  430. .align L1_CACHE_SHIFT
  431. .global spin_table_compat
  432. spin_table_compat:
  433. .long 1
  434. #endif
  435. __spin_table_end:
  436. .space 4096 - (__spin_table_end - __spin_table)