prom_init.c 76 KB

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  1. /*
  2. * Procedures for interfacing to Open Firmware.
  3. *
  4. * Paul Mackerras August 1996.
  5. * Copyright (C) 1996-2005 Paul Mackerras.
  6. *
  7. * Adapted for 64bit PowerPC by Dave Engebretsen and Peter Bergner.
  8. * {engebret|bergner}@us.ibm.com
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License
  12. * as published by the Free Software Foundation; either version
  13. * 2 of the License, or (at your option) any later version.
  14. */
  15. #undef DEBUG_PROM
  16. #include <stdarg.h>
  17. #include <linux/kernel.h>
  18. #include <linux/string.h>
  19. #include <linux/init.h>
  20. #include <linux/threads.h>
  21. #include <linux/spinlock.h>
  22. #include <linux/types.h>
  23. #include <linux/pci.h>
  24. #include <linux/proc_fs.h>
  25. #include <linux/stringify.h>
  26. #include <linux/delay.h>
  27. #include <linux/initrd.h>
  28. #include <linux/bitops.h>
  29. #include <asm/prom.h>
  30. #include <asm/rtas.h>
  31. #include <asm/page.h>
  32. #include <asm/processor.h>
  33. #include <asm/irq.h>
  34. #include <asm/io.h>
  35. #include <asm/smp.h>
  36. #include <asm/mmu.h>
  37. #include <asm/pgtable.h>
  38. #include <asm/iommu.h>
  39. #include <asm/btext.h>
  40. #include <asm/sections.h>
  41. #include <asm/machdep.h>
  42. #include <asm/opal.h>
  43. #include <linux/linux_logo.h>
  44. /*
  45. * Eventually bump that one up
  46. */
  47. #define DEVTREE_CHUNK_SIZE 0x100000
  48. /*
  49. * This is the size of the local memory reserve map that gets copied
  50. * into the boot params passed to the kernel. That size is totally
  51. * flexible as the kernel just reads the list until it encounters an
  52. * entry with size 0, so it can be changed without breaking binary
  53. * compatibility
  54. */
  55. #define MEM_RESERVE_MAP_SIZE 8
  56. /*
  57. * prom_init() is called very early on, before the kernel text
  58. * and data have been mapped to KERNELBASE. At this point the code
  59. * is running at whatever address it has been loaded at.
  60. * On ppc32 we compile with -mrelocatable, which means that references
  61. * to extern and static variables get relocated automatically.
  62. * ppc64 objects are always relocatable, we just need to relocate the
  63. * TOC.
  64. *
  65. * Because OF may have mapped I/O devices into the area starting at
  66. * KERNELBASE, particularly on CHRP machines, we can't safely call
  67. * OF once the kernel has been mapped to KERNELBASE. Therefore all
  68. * OF calls must be done within prom_init().
  69. *
  70. * ADDR is used in calls to call_prom. The 4th and following
  71. * arguments to call_prom should be 32-bit values.
  72. * On ppc64, 64 bit values are truncated to 32 bits (and
  73. * fortunately don't get interpreted as two arguments).
  74. */
  75. #define ADDR(x) (u32)(unsigned long)(x)
  76. #ifdef CONFIG_PPC64
  77. #define OF_WORKAROUNDS 0
  78. #else
  79. #define OF_WORKAROUNDS of_workarounds
  80. int of_workarounds;
  81. #endif
  82. #define OF_WA_CLAIM 1 /* do phys/virt claim separately, then map */
  83. #define OF_WA_LONGTRAIL 2 /* work around longtrail bugs */
  84. #define PROM_BUG() do { \
  85. prom_printf("kernel BUG at %s line 0x%x!\n", \
  86. __FILE__, __LINE__); \
  87. __asm__ __volatile__(".long " BUG_ILLEGAL_INSTR); \
  88. } while (0)
  89. #ifdef DEBUG_PROM
  90. #define prom_debug(x...) prom_printf(x)
  91. #else
  92. #define prom_debug(x...)
  93. #endif
  94. typedef u32 prom_arg_t;
  95. struct prom_args {
  96. __be32 service;
  97. __be32 nargs;
  98. __be32 nret;
  99. __be32 args[10];
  100. };
  101. struct prom_t {
  102. ihandle root;
  103. phandle chosen;
  104. int cpu;
  105. ihandle stdout;
  106. ihandle mmumap;
  107. ihandle memory;
  108. };
  109. struct mem_map_entry {
  110. __be64 base;
  111. __be64 size;
  112. };
  113. typedef __be32 cell_t;
  114. extern void __start(unsigned long r3, unsigned long r4, unsigned long r5,
  115. unsigned long r6, unsigned long r7, unsigned long r8,
  116. unsigned long r9);
  117. #ifdef CONFIG_PPC64
  118. extern int enter_prom(struct prom_args *args, unsigned long entry);
  119. #else
  120. static inline int enter_prom(struct prom_args *args, unsigned long entry)
  121. {
  122. return ((int (*)(struct prom_args *))entry)(args);
  123. }
  124. #endif
  125. extern void copy_and_flush(unsigned long dest, unsigned long src,
  126. unsigned long size, unsigned long offset);
  127. /* prom structure */
  128. static struct prom_t __initdata prom;
  129. static unsigned long prom_entry __initdata;
  130. #define PROM_SCRATCH_SIZE 256
  131. static char __initdata of_stdout_device[256];
  132. static char __initdata prom_scratch[PROM_SCRATCH_SIZE];
  133. static unsigned long __initdata dt_header_start;
  134. static unsigned long __initdata dt_struct_start, dt_struct_end;
  135. static unsigned long __initdata dt_string_start, dt_string_end;
  136. static unsigned long __initdata prom_initrd_start, prom_initrd_end;
  137. #ifdef CONFIG_PPC64
  138. static int __initdata prom_iommu_force_on;
  139. static int __initdata prom_iommu_off;
  140. static unsigned long __initdata prom_tce_alloc_start;
  141. static unsigned long __initdata prom_tce_alloc_end;
  142. #endif
  143. /* Platforms codes are now obsolete in the kernel. Now only used within this
  144. * file and ultimately gone too. Feel free to change them if you need, they
  145. * are not shared with anything outside of this file anymore
  146. */
  147. #define PLATFORM_PSERIES 0x0100
  148. #define PLATFORM_PSERIES_LPAR 0x0101
  149. #define PLATFORM_LPAR 0x0001
  150. #define PLATFORM_POWERMAC 0x0400
  151. #define PLATFORM_GENERIC 0x0500
  152. #define PLATFORM_OPAL 0x0600
  153. static int __initdata of_platform;
  154. static char __initdata prom_cmd_line[COMMAND_LINE_SIZE];
  155. static unsigned long __initdata prom_memory_limit;
  156. static unsigned long __initdata alloc_top;
  157. static unsigned long __initdata alloc_top_high;
  158. static unsigned long __initdata alloc_bottom;
  159. static unsigned long __initdata rmo_top;
  160. static unsigned long __initdata ram_top;
  161. static struct mem_map_entry __initdata mem_reserve_map[MEM_RESERVE_MAP_SIZE];
  162. static int __initdata mem_reserve_cnt;
  163. static cell_t __initdata regbuf[1024];
  164. static bool rtas_has_query_cpu_stopped;
  165. /*
  166. * Error results ... some OF calls will return "-1" on error, some
  167. * will return 0, some will return either. To simplify, here are
  168. * macros to use with any ihandle or phandle return value to check if
  169. * it is valid
  170. */
  171. #define PROM_ERROR (-1u)
  172. #define PHANDLE_VALID(p) ((p) != 0 && (p) != PROM_ERROR)
  173. #define IHANDLE_VALID(i) ((i) != 0 && (i) != PROM_ERROR)
  174. /* This is the one and *ONLY* place where we actually call open
  175. * firmware.
  176. */
  177. static int __init call_prom(const char *service, int nargs, int nret, ...)
  178. {
  179. int i;
  180. struct prom_args args;
  181. va_list list;
  182. args.service = cpu_to_be32(ADDR(service));
  183. args.nargs = cpu_to_be32(nargs);
  184. args.nret = cpu_to_be32(nret);
  185. va_start(list, nret);
  186. for (i = 0; i < nargs; i++)
  187. args.args[i] = cpu_to_be32(va_arg(list, prom_arg_t));
  188. va_end(list);
  189. for (i = 0; i < nret; i++)
  190. args.args[nargs+i] = 0;
  191. if (enter_prom(&args, prom_entry) < 0)
  192. return PROM_ERROR;
  193. return (nret > 0) ? be32_to_cpu(args.args[nargs]) : 0;
  194. }
  195. static int __init call_prom_ret(const char *service, int nargs, int nret,
  196. prom_arg_t *rets, ...)
  197. {
  198. int i;
  199. struct prom_args args;
  200. va_list list;
  201. args.service = cpu_to_be32(ADDR(service));
  202. args.nargs = cpu_to_be32(nargs);
  203. args.nret = cpu_to_be32(nret);
  204. va_start(list, rets);
  205. for (i = 0; i < nargs; i++)
  206. args.args[i] = cpu_to_be32(va_arg(list, prom_arg_t));
  207. va_end(list);
  208. for (i = 0; i < nret; i++)
  209. args.args[nargs+i] = 0;
  210. if (enter_prom(&args, prom_entry) < 0)
  211. return PROM_ERROR;
  212. if (rets != NULL)
  213. for (i = 1; i < nret; ++i)
  214. rets[i-1] = be32_to_cpu(args.args[nargs+i]);
  215. return (nret > 0) ? be32_to_cpu(args.args[nargs]) : 0;
  216. }
  217. static void __init prom_print(const char *msg)
  218. {
  219. const char *p, *q;
  220. if (prom.stdout == 0)
  221. return;
  222. for (p = msg; *p != 0; p = q) {
  223. for (q = p; *q != 0 && *q != '\n'; ++q)
  224. ;
  225. if (q > p)
  226. call_prom("write", 3, 1, prom.stdout, p, q - p);
  227. if (*q == 0)
  228. break;
  229. ++q;
  230. call_prom("write", 3, 1, prom.stdout, ADDR("\r\n"), 2);
  231. }
  232. }
  233. static void __init prom_print_hex(unsigned long val)
  234. {
  235. int i, nibbles = sizeof(val)*2;
  236. char buf[sizeof(val)*2+1];
  237. for (i = nibbles-1; i >= 0; i--) {
  238. buf[i] = (val & 0xf) + '0';
  239. if (buf[i] > '9')
  240. buf[i] += ('a'-'0'-10);
  241. val >>= 4;
  242. }
  243. buf[nibbles] = '\0';
  244. call_prom("write", 3, 1, prom.stdout, buf, nibbles);
  245. }
  246. /* max number of decimal digits in an unsigned long */
  247. #define UL_DIGITS 21
  248. static void __init prom_print_dec(unsigned long val)
  249. {
  250. int i, size;
  251. char buf[UL_DIGITS+1];
  252. for (i = UL_DIGITS-1; i >= 0; i--) {
  253. buf[i] = (val % 10) + '0';
  254. val = val/10;
  255. if (val == 0)
  256. break;
  257. }
  258. /* shift stuff down */
  259. size = UL_DIGITS - i;
  260. call_prom("write", 3, 1, prom.stdout, buf+i, size);
  261. }
  262. static void __init prom_printf(const char *format, ...)
  263. {
  264. const char *p, *q, *s;
  265. va_list args;
  266. unsigned long v;
  267. long vs;
  268. va_start(args, format);
  269. for (p = format; *p != 0; p = q) {
  270. for (q = p; *q != 0 && *q != '\n' && *q != '%'; ++q)
  271. ;
  272. if (q > p)
  273. call_prom("write", 3, 1, prom.stdout, p, q - p);
  274. if (*q == 0)
  275. break;
  276. if (*q == '\n') {
  277. ++q;
  278. call_prom("write", 3, 1, prom.stdout,
  279. ADDR("\r\n"), 2);
  280. continue;
  281. }
  282. ++q;
  283. if (*q == 0)
  284. break;
  285. switch (*q) {
  286. case 's':
  287. ++q;
  288. s = va_arg(args, const char *);
  289. prom_print(s);
  290. break;
  291. case 'x':
  292. ++q;
  293. v = va_arg(args, unsigned long);
  294. prom_print_hex(v);
  295. break;
  296. case 'd':
  297. ++q;
  298. vs = va_arg(args, int);
  299. if (vs < 0) {
  300. prom_print("-");
  301. vs = -vs;
  302. }
  303. prom_print_dec(vs);
  304. break;
  305. case 'l':
  306. ++q;
  307. if (*q == 0)
  308. break;
  309. else if (*q == 'x') {
  310. ++q;
  311. v = va_arg(args, unsigned long);
  312. prom_print_hex(v);
  313. } else if (*q == 'u') { /* '%lu' */
  314. ++q;
  315. v = va_arg(args, unsigned long);
  316. prom_print_dec(v);
  317. } else if (*q == 'd') { /* %ld */
  318. ++q;
  319. vs = va_arg(args, long);
  320. if (vs < 0) {
  321. prom_print("-");
  322. vs = -vs;
  323. }
  324. prom_print_dec(vs);
  325. }
  326. break;
  327. }
  328. }
  329. }
  330. static unsigned int __init prom_claim(unsigned long virt, unsigned long size,
  331. unsigned long align)
  332. {
  333. if (align == 0 && (OF_WORKAROUNDS & OF_WA_CLAIM)) {
  334. /*
  335. * Old OF requires we claim physical and virtual separately
  336. * and then map explicitly (assuming virtual mode)
  337. */
  338. int ret;
  339. prom_arg_t result;
  340. ret = call_prom_ret("call-method", 5, 2, &result,
  341. ADDR("claim"), prom.memory,
  342. align, size, virt);
  343. if (ret != 0 || result == -1)
  344. return -1;
  345. ret = call_prom_ret("call-method", 5, 2, &result,
  346. ADDR("claim"), prom.mmumap,
  347. align, size, virt);
  348. if (ret != 0) {
  349. call_prom("call-method", 4, 1, ADDR("release"),
  350. prom.memory, size, virt);
  351. return -1;
  352. }
  353. /* the 0x12 is M (coherence) + PP == read/write */
  354. call_prom("call-method", 6, 1,
  355. ADDR("map"), prom.mmumap, 0x12, size, virt, virt);
  356. return virt;
  357. }
  358. return call_prom("claim", 3, 1, (prom_arg_t)virt, (prom_arg_t)size,
  359. (prom_arg_t)align);
  360. }
  361. static void __init __attribute__((noreturn)) prom_panic(const char *reason)
  362. {
  363. prom_print(reason);
  364. /* Do not call exit because it clears the screen on pmac
  365. * it also causes some sort of double-fault on early pmacs */
  366. if (of_platform == PLATFORM_POWERMAC)
  367. asm("trap\n");
  368. /* ToDo: should put up an SRC here on pSeries */
  369. call_prom("exit", 0, 0);
  370. for (;;) /* should never get here */
  371. ;
  372. }
  373. static int __init prom_next_node(phandle *nodep)
  374. {
  375. phandle node;
  376. if ((node = *nodep) != 0
  377. && (*nodep = call_prom("child", 1, 1, node)) != 0)
  378. return 1;
  379. if ((*nodep = call_prom("peer", 1, 1, node)) != 0)
  380. return 1;
  381. for (;;) {
  382. if ((node = call_prom("parent", 1, 1, node)) == 0)
  383. return 0;
  384. if ((*nodep = call_prom("peer", 1, 1, node)) != 0)
  385. return 1;
  386. }
  387. }
  388. static int inline prom_getprop(phandle node, const char *pname,
  389. void *value, size_t valuelen)
  390. {
  391. return call_prom("getprop", 4, 1, node, ADDR(pname),
  392. (u32)(unsigned long) value, (u32) valuelen);
  393. }
  394. static int inline prom_getproplen(phandle node, const char *pname)
  395. {
  396. return call_prom("getproplen", 2, 1, node, ADDR(pname));
  397. }
  398. static void add_string(char **str, const char *q)
  399. {
  400. char *p = *str;
  401. while (*q)
  402. *p++ = *q++;
  403. *p++ = ' ';
  404. *str = p;
  405. }
  406. static char *tohex(unsigned int x)
  407. {
  408. static char digits[] = "0123456789abcdef";
  409. static char result[9];
  410. int i;
  411. result[8] = 0;
  412. i = 8;
  413. do {
  414. --i;
  415. result[i] = digits[x & 0xf];
  416. x >>= 4;
  417. } while (x != 0 && i > 0);
  418. return &result[i];
  419. }
  420. static int __init prom_setprop(phandle node, const char *nodename,
  421. const char *pname, void *value, size_t valuelen)
  422. {
  423. char cmd[256], *p;
  424. if (!(OF_WORKAROUNDS & OF_WA_LONGTRAIL))
  425. return call_prom("setprop", 4, 1, node, ADDR(pname),
  426. (u32)(unsigned long) value, (u32) valuelen);
  427. /* gah... setprop doesn't work on longtrail, have to use interpret */
  428. p = cmd;
  429. add_string(&p, "dev");
  430. add_string(&p, nodename);
  431. add_string(&p, tohex((u32)(unsigned long) value));
  432. add_string(&p, tohex(valuelen));
  433. add_string(&p, tohex(ADDR(pname)));
  434. add_string(&p, tohex(strlen(pname)));
  435. add_string(&p, "property");
  436. *p = 0;
  437. return call_prom("interpret", 1, 1, (u32)(unsigned long) cmd);
  438. }
  439. /* We can't use the standard versions because of relocation headaches. */
  440. #define isxdigit(c) (('0' <= (c) && (c) <= '9') \
  441. || ('a' <= (c) && (c) <= 'f') \
  442. || ('A' <= (c) && (c) <= 'F'))
  443. #define isdigit(c) ('0' <= (c) && (c) <= '9')
  444. #define islower(c) ('a' <= (c) && (c) <= 'z')
  445. #define toupper(c) (islower(c) ? ((c) - 'a' + 'A') : (c))
  446. static unsigned long prom_strtoul(const char *cp, const char **endp)
  447. {
  448. unsigned long result = 0, base = 10, value;
  449. if (*cp == '0') {
  450. base = 8;
  451. cp++;
  452. if (toupper(*cp) == 'X') {
  453. cp++;
  454. base = 16;
  455. }
  456. }
  457. while (isxdigit(*cp) &&
  458. (value = isdigit(*cp) ? *cp - '0' : toupper(*cp) - 'A' + 10) < base) {
  459. result = result * base + value;
  460. cp++;
  461. }
  462. if (endp)
  463. *endp = cp;
  464. return result;
  465. }
  466. static unsigned long prom_memparse(const char *ptr, const char **retptr)
  467. {
  468. unsigned long ret = prom_strtoul(ptr, retptr);
  469. int shift = 0;
  470. /*
  471. * We can't use a switch here because GCC *may* generate a
  472. * jump table which won't work, because we're not running at
  473. * the address we're linked at.
  474. */
  475. if ('G' == **retptr || 'g' == **retptr)
  476. shift = 30;
  477. if ('M' == **retptr || 'm' == **retptr)
  478. shift = 20;
  479. if ('K' == **retptr || 'k' == **retptr)
  480. shift = 10;
  481. if (shift) {
  482. ret <<= shift;
  483. (*retptr)++;
  484. }
  485. return ret;
  486. }
  487. /*
  488. * Early parsing of the command line passed to the kernel, used for
  489. * "mem=x" and the options that affect the iommu
  490. */
  491. static void __init early_cmdline_parse(void)
  492. {
  493. const char *opt;
  494. char *p;
  495. int l = 0;
  496. prom_cmd_line[0] = 0;
  497. p = prom_cmd_line;
  498. if ((long)prom.chosen > 0)
  499. l = prom_getprop(prom.chosen, "bootargs", p, COMMAND_LINE_SIZE-1);
  500. #ifdef CONFIG_CMDLINE
  501. if (l <= 0 || p[0] == '\0') /* dbl check */
  502. strlcpy(prom_cmd_line,
  503. CONFIG_CMDLINE, sizeof(prom_cmd_line));
  504. #endif /* CONFIG_CMDLINE */
  505. prom_printf("command line: %s\n", prom_cmd_line);
  506. #ifdef CONFIG_PPC64
  507. opt = strstr(prom_cmd_line, "iommu=");
  508. if (opt) {
  509. prom_printf("iommu opt is: %s\n", opt);
  510. opt += 6;
  511. while (*opt && *opt == ' ')
  512. opt++;
  513. if (!strncmp(opt, "off", 3))
  514. prom_iommu_off = 1;
  515. else if (!strncmp(opt, "force", 5))
  516. prom_iommu_force_on = 1;
  517. }
  518. #endif
  519. opt = strstr(prom_cmd_line, "mem=");
  520. if (opt) {
  521. opt += 4;
  522. prom_memory_limit = prom_memparse(opt, (const char **)&opt);
  523. #ifdef CONFIG_PPC64
  524. /* Align to 16 MB == size of ppc64 large page */
  525. prom_memory_limit = ALIGN(prom_memory_limit, 0x1000000);
  526. #endif
  527. }
  528. }
  529. #if defined(CONFIG_PPC_PSERIES) || defined(CONFIG_PPC_POWERNV)
  530. /*
  531. * The architecture vector has an array of PVR mask/value pairs,
  532. * followed by # option vectors - 1, followed by the option vectors.
  533. *
  534. * See prom.h for the definition of the bits specified in the
  535. * architecture vector.
  536. *
  537. * Because the description vector contains a mix of byte and word
  538. * values, we declare it as an unsigned char array, and use this
  539. * macro to put word values in.
  540. */
  541. #define W(x) ((x) >> 24) & 0xff, ((x) >> 16) & 0xff, \
  542. ((x) >> 8) & 0xff, (x) & 0xff
  543. unsigned char ibm_architecture_vec[] = {
  544. W(0xfffe0000), W(0x003a0000), /* POWER5/POWER5+ */
  545. W(0xffff0000), W(0x003e0000), /* POWER6 */
  546. W(0xffff0000), W(0x003f0000), /* POWER7 */
  547. W(0xffff0000), W(0x004b0000), /* POWER8E */
  548. W(0xffff0000), W(0x004d0000), /* POWER8 */
  549. W(0xffffffff), W(0x0f000004), /* all 2.07-compliant */
  550. W(0xffffffff), W(0x0f000003), /* all 2.06-compliant */
  551. W(0xffffffff), W(0x0f000002), /* all 2.05-compliant */
  552. W(0xfffffffe), W(0x0f000001), /* all 2.04-compliant and earlier */
  553. 6 - 1, /* 6 option vectors */
  554. /* option vector 1: processor architectures supported */
  555. 3 - 2, /* length */
  556. 0, /* don't ignore, don't halt */
  557. OV1_PPC_2_00 | OV1_PPC_2_01 | OV1_PPC_2_02 | OV1_PPC_2_03 |
  558. OV1_PPC_2_04 | OV1_PPC_2_05 | OV1_PPC_2_06 | OV1_PPC_2_07,
  559. /* option vector 2: Open Firmware options supported */
  560. 34 - 2, /* length */
  561. OV2_REAL_MODE,
  562. 0, 0,
  563. W(0xffffffff), /* real_base */
  564. W(0xffffffff), /* real_size */
  565. W(0xffffffff), /* virt_base */
  566. W(0xffffffff), /* virt_size */
  567. W(0xffffffff), /* load_base */
  568. W(256), /* 256MB min RMA */
  569. W(0xffffffff), /* full client load */
  570. 0, /* min RMA percentage of total RAM */
  571. 48, /* max log_2(hash table size) */
  572. /* option vector 3: processor options supported */
  573. 3 - 2, /* length */
  574. 0, /* don't ignore, don't halt */
  575. OV3_FP | OV3_VMX | OV3_DFP,
  576. /* option vector 4: IBM PAPR implementation */
  577. 3 - 2, /* length */
  578. 0, /* don't halt */
  579. OV4_MIN_ENT_CAP, /* minimum VP entitled capacity */
  580. /* option vector 5: PAPR/OF options */
  581. 19 - 2, /* length */
  582. 0, /* don't ignore, don't halt */
  583. OV5_FEAT(OV5_LPAR) | OV5_FEAT(OV5_SPLPAR) | OV5_FEAT(OV5_LARGE_PAGES) |
  584. OV5_FEAT(OV5_DRCONF_MEMORY) | OV5_FEAT(OV5_DONATE_DEDICATE_CPU) |
  585. #ifdef CONFIG_PCI_MSI
  586. /* PCIe/MSI support. Without MSI full PCIe is not supported */
  587. OV5_FEAT(OV5_MSI),
  588. #else
  589. 0,
  590. #endif
  591. 0,
  592. #ifdef CONFIG_PPC_SMLPAR
  593. OV5_FEAT(OV5_CMO) | OV5_FEAT(OV5_XCMO),
  594. #else
  595. 0,
  596. #endif
  597. OV5_FEAT(OV5_TYPE1_AFFINITY) | OV5_FEAT(OV5_PRRN),
  598. 0,
  599. 0,
  600. 0,
  601. /* WARNING: The offset of the "number of cores" field below
  602. * must match by the macro below. Update the definition if
  603. * the structure layout changes.
  604. */
  605. #define IBM_ARCH_VEC_NRCORES_OFFSET 125
  606. W(NR_CPUS), /* number of cores supported */
  607. 0,
  608. 0,
  609. 0,
  610. 0,
  611. OV5_FEAT(OV5_PFO_HW_RNG) | OV5_FEAT(OV5_PFO_HW_ENCR) |
  612. OV5_FEAT(OV5_PFO_HW_842),
  613. OV5_FEAT(OV5_SUB_PROCESSORS),
  614. /* option vector 6: IBM PAPR hints */
  615. 4 - 2, /* length */
  616. 0,
  617. 0,
  618. OV6_LINUX,
  619. };
  620. /* Old method - ELF header with PT_NOTE sections only works on BE */
  621. #ifdef __BIG_ENDIAN__
  622. static struct fake_elf {
  623. Elf32_Ehdr elfhdr;
  624. Elf32_Phdr phdr[2];
  625. struct chrpnote {
  626. u32 namesz;
  627. u32 descsz;
  628. u32 type;
  629. char name[8]; /* "PowerPC" */
  630. struct chrpdesc {
  631. u32 real_mode;
  632. u32 real_base;
  633. u32 real_size;
  634. u32 virt_base;
  635. u32 virt_size;
  636. u32 load_base;
  637. } chrpdesc;
  638. } chrpnote;
  639. struct rpanote {
  640. u32 namesz;
  641. u32 descsz;
  642. u32 type;
  643. char name[24]; /* "IBM,RPA-Client-Config" */
  644. struct rpadesc {
  645. u32 lpar_affinity;
  646. u32 min_rmo_size;
  647. u32 min_rmo_percent;
  648. u32 max_pft_size;
  649. u32 splpar;
  650. u32 min_load;
  651. u32 new_mem_def;
  652. u32 ignore_me;
  653. } rpadesc;
  654. } rpanote;
  655. } fake_elf = {
  656. .elfhdr = {
  657. .e_ident = { 0x7f, 'E', 'L', 'F',
  658. ELFCLASS32, ELFDATA2MSB, EV_CURRENT },
  659. .e_type = ET_EXEC, /* yeah right */
  660. .e_machine = EM_PPC,
  661. .e_version = EV_CURRENT,
  662. .e_phoff = offsetof(struct fake_elf, phdr),
  663. .e_phentsize = sizeof(Elf32_Phdr),
  664. .e_phnum = 2
  665. },
  666. .phdr = {
  667. [0] = {
  668. .p_type = PT_NOTE,
  669. .p_offset = offsetof(struct fake_elf, chrpnote),
  670. .p_filesz = sizeof(struct chrpnote)
  671. }, [1] = {
  672. .p_type = PT_NOTE,
  673. .p_offset = offsetof(struct fake_elf, rpanote),
  674. .p_filesz = sizeof(struct rpanote)
  675. }
  676. },
  677. .chrpnote = {
  678. .namesz = sizeof("PowerPC"),
  679. .descsz = sizeof(struct chrpdesc),
  680. .type = 0x1275,
  681. .name = "PowerPC",
  682. .chrpdesc = {
  683. .real_mode = ~0U, /* ~0 means "don't care" */
  684. .real_base = ~0U,
  685. .real_size = ~0U,
  686. .virt_base = ~0U,
  687. .virt_size = ~0U,
  688. .load_base = ~0U
  689. },
  690. },
  691. .rpanote = {
  692. .namesz = sizeof("IBM,RPA-Client-Config"),
  693. .descsz = sizeof(struct rpadesc),
  694. .type = 0x12759999,
  695. .name = "IBM,RPA-Client-Config",
  696. .rpadesc = {
  697. .lpar_affinity = 0,
  698. .min_rmo_size = 64, /* in megabytes */
  699. .min_rmo_percent = 0,
  700. .max_pft_size = 48, /* 2^48 bytes max PFT size */
  701. .splpar = 1,
  702. .min_load = ~0U,
  703. .new_mem_def = 0
  704. }
  705. }
  706. };
  707. #endif /* __BIG_ENDIAN__ */
  708. static int __init prom_count_smt_threads(void)
  709. {
  710. phandle node;
  711. char type[64];
  712. unsigned int plen;
  713. /* Pick up th first CPU node we can find */
  714. for (node = 0; prom_next_node(&node); ) {
  715. type[0] = 0;
  716. prom_getprop(node, "device_type", type, sizeof(type));
  717. if (strcmp(type, "cpu"))
  718. continue;
  719. /*
  720. * There is an entry for each smt thread, each entry being
  721. * 4 bytes long. All cpus should have the same number of
  722. * smt threads, so return after finding the first.
  723. */
  724. plen = prom_getproplen(node, "ibm,ppc-interrupt-server#s");
  725. if (plen == PROM_ERROR)
  726. break;
  727. plen >>= 2;
  728. prom_debug("Found %lu smt threads per core\n", (unsigned long)plen);
  729. /* Sanity check */
  730. if (plen < 1 || plen > 64) {
  731. prom_printf("Threads per core %lu out of bounds, assuming 1\n",
  732. (unsigned long)plen);
  733. return 1;
  734. }
  735. return plen;
  736. }
  737. prom_debug("No threads found, assuming 1 per core\n");
  738. return 1;
  739. }
  740. static void __init prom_send_capabilities(void)
  741. {
  742. ihandle root;
  743. prom_arg_t ret;
  744. u32 cores;
  745. unsigned char *ptcores;
  746. root = call_prom("open", 1, 1, ADDR("/"));
  747. if (root != 0) {
  748. /* We need to tell the FW about the number of cores we support.
  749. *
  750. * To do that, we count the number of threads on the first core
  751. * (we assume this is the same for all cores) and use it to
  752. * divide NR_CPUS.
  753. */
  754. /* The core value may start at an odd address. If such a word
  755. * access is made at a cache line boundary, this leads to an
  756. * exception which may not be handled at this time.
  757. * Forcing a per byte access to avoid exception.
  758. */
  759. ptcores = &ibm_architecture_vec[IBM_ARCH_VEC_NRCORES_OFFSET];
  760. cores = 0;
  761. cores |= ptcores[0] << 24;
  762. cores |= ptcores[1] << 16;
  763. cores |= ptcores[2] << 8;
  764. cores |= ptcores[3];
  765. if (cores != NR_CPUS) {
  766. prom_printf("WARNING ! "
  767. "ibm_architecture_vec structure inconsistent: %lu!\n",
  768. cores);
  769. } else {
  770. cores = DIV_ROUND_UP(NR_CPUS, prom_count_smt_threads());
  771. prom_printf("Max number of cores passed to firmware: %lu (NR_CPUS = %lu)\n",
  772. cores, NR_CPUS);
  773. ptcores[0] = (cores >> 24) & 0xff;
  774. ptcores[1] = (cores >> 16) & 0xff;
  775. ptcores[2] = (cores >> 8) & 0xff;
  776. ptcores[3] = cores & 0xff;
  777. }
  778. /* try calling the ibm,client-architecture-support method */
  779. prom_printf("Calling ibm,client-architecture-support...");
  780. if (call_prom_ret("call-method", 3, 2, &ret,
  781. ADDR("ibm,client-architecture-support"),
  782. root,
  783. ADDR(ibm_architecture_vec)) == 0) {
  784. /* the call exists... */
  785. if (ret)
  786. prom_printf("\nWARNING: ibm,client-architecture"
  787. "-support call FAILED!\n");
  788. call_prom("close", 1, 0, root);
  789. prom_printf(" done\n");
  790. return;
  791. }
  792. call_prom("close", 1, 0, root);
  793. prom_printf(" not implemented\n");
  794. }
  795. #ifdef __BIG_ENDIAN__
  796. {
  797. ihandle elfloader;
  798. /* no ibm,client-architecture-support call, try the old way */
  799. elfloader = call_prom("open", 1, 1,
  800. ADDR("/packages/elf-loader"));
  801. if (elfloader == 0) {
  802. prom_printf("couldn't open /packages/elf-loader\n");
  803. return;
  804. }
  805. call_prom("call-method", 3, 1, ADDR("process-elf-header"),
  806. elfloader, ADDR(&fake_elf));
  807. call_prom("close", 1, 0, elfloader);
  808. }
  809. #endif /* __BIG_ENDIAN__ */
  810. }
  811. #endif /* #if defined(CONFIG_PPC_PSERIES) || defined(CONFIG_PPC_POWERNV) */
  812. /*
  813. * Memory allocation strategy... our layout is normally:
  814. *
  815. * at 14Mb or more we have vmlinux, then a gap and initrd. In some
  816. * rare cases, initrd might end up being before the kernel though.
  817. * We assume this won't override the final kernel at 0, we have no
  818. * provision to handle that in this version, but it should hopefully
  819. * never happen.
  820. *
  821. * alloc_top is set to the top of RMO, eventually shrink down if the
  822. * TCEs overlap
  823. *
  824. * alloc_bottom is set to the top of kernel/initrd
  825. *
  826. * from there, allocations are done this way : rtas is allocated
  827. * topmost, and the device-tree is allocated from the bottom. We try
  828. * to grow the device-tree allocation as we progress. If we can't,
  829. * then we fail, we don't currently have a facility to restart
  830. * elsewhere, but that shouldn't be necessary.
  831. *
  832. * Note that calls to reserve_mem have to be done explicitly, memory
  833. * allocated with either alloc_up or alloc_down isn't automatically
  834. * reserved.
  835. */
  836. /*
  837. * Allocates memory in the RMO upward from the kernel/initrd
  838. *
  839. * When align is 0, this is a special case, it means to allocate in place
  840. * at the current location of alloc_bottom or fail (that is basically
  841. * extending the previous allocation). Used for the device-tree flattening
  842. */
  843. static unsigned long __init alloc_up(unsigned long size, unsigned long align)
  844. {
  845. unsigned long base = alloc_bottom;
  846. unsigned long addr = 0;
  847. if (align)
  848. base = _ALIGN_UP(base, align);
  849. prom_debug("alloc_up(%x, %x)\n", size, align);
  850. if (ram_top == 0)
  851. prom_panic("alloc_up() called with mem not initialized\n");
  852. if (align)
  853. base = _ALIGN_UP(alloc_bottom, align);
  854. else
  855. base = alloc_bottom;
  856. for(; (base + size) <= alloc_top;
  857. base = _ALIGN_UP(base + 0x100000, align)) {
  858. prom_debug(" trying: 0x%x\n\r", base);
  859. addr = (unsigned long)prom_claim(base, size, 0);
  860. if (addr != PROM_ERROR && addr != 0)
  861. break;
  862. addr = 0;
  863. if (align == 0)
  864. break;
  865. }
  866. if (addr == 0)
  867. return 0;
  868. alloc_bottom = addr + size;
  869. prom_debug(" -> %x\n", addr);
  870. prom_debug(" alloc_bottom : %x\n", alloc_bottom);
  871. prom_debug(" alloc_top : %x\n", alloc_top);
  872. prom_debug(" alloc_top_hi : %x\n", alloc_top_high);
  873. prom_debug(" rmo_top : %x\n", rmo_top);
  874. prom_debug(" ram_top : %x\n", ram_top);
  875. return addr;
  876. }
  877. /*
  878. * Allocates memory downward, either from top of RMO, or if highmem
  879. * is set, from the top of RAM. Note that this one doesn't handle
  880. * failures. It does claim memory if highmem is not set.
  881. */
  882. static unsigned long __init alloc_down(unsigned long size, unsigned long align,
  883. int highmem)
  884. {
  885. unsigned long base, addr = 0;
  886. prom_debug("alloc_down(%x, %x, %s)\n", size, align,
  887. highmem ? "(high)" : "(low)");
  888. if (ram_top == 0)
  889. prom_panic("alloc_down() called with mem not initialized\n");
  890. if (highmem) {
  891. /* Carve out storage for the TCE table. */
  892. addr = _ALIGN_DOWN(alloc_top_high - size, align);
  893. if (addr <= alloc_bottom)
  894. return 0;
  895. /* Will we bump into the RMO ? If yes, check out that we
  896. * didn't overlap existing allocations there, if we did,
  897. * we are dead, we must be the first in town !
  898. */
  899. if (addr < rmo_top) {
  900. /* Good, we are first */
  901. if (alloc_top == rmo_top)
  902. alloc_top = rmo_top = addr;
  903. else
  904. return 0;
  905. }
  906. alloc_top_high = addr;
  907. goto bail;
  908. }
  909. base = _ALIGN_DOWN(alloc_top - size, align);
  910. for (; base > alloc_bottom;
  911. base = _ALIGN_DOWN(base - 0x100000, align)) {
  912. prom_debug(" trying: 0x%x\n\r", base);
  913. addr = (unsigned long)prom_claim(base, size, 0);
  914. if (addr != PROM_ERROR && addr != 0)
  915. break;
  916. addr = 0;
  917. }
  918. if (addr == 0)
  919. return 0;
  920. alloc_top = addr;
  921. bail:
  922. prom_debug(" -> %x\n", addr);
  923. prom_debug(" alloc_bottom : %x\n", alloc_bottom);
  924. prom_debug(" alloc_top : %x\n", alloc_top);
  925. prom_debug(" alloc_top_hi : %x\n", alloc_top_high);
  926. prom_debug(" rmo_top : %x\n", rmo_top);
  927. prom_debug(" ram_top : %x\n", ram_top);
  928. return addr;
  929. }
  930. /*
  931. * Parse a "reg" cell
  932. */
  933. static unsigned long __init prom_next_cell(int s, cell_t **cellp)
  934. {
  935. cell_t *p = *cellp;
  936. unsigned long r = 0;
  937. /* Ignore more than 2 cells */
  938. while (s > sizeof(unsigned long) / 4) {
  939. p++;
  940. s--;
  941. }
  942. r = be32_to_cpu(*p++);
  943. #ifdef CONFIG_PPC64
  944. if (s > 1) {
  945. r <<= 32;
  946. r |= be32_to_cpu(*(p++));
  947. }
  948. #endif
  949. *cellp = p;
  950. return r;
  951. }
  952. /*
  953. * Very dumb function for adding to the memory reserve list, but
  954. * we don't need anything smarter at this point
  955. *
  956. * XXX Eventually check for collisions. They should NEVER happen.
  957. * If problems seem to show up, it would be a good start to track
  958. * them down.
  959. */
  960. static void __init reserve_mem(u64 base, u64 size)
  961. {
  962. u64 top = base + size;
  963. unsigned long cnt = mem_reserve_cnt;
  964. if (size == 0)
  965. return;
  966. /* We need to always keep one empty entry so that we
  967. * have our terminator with "size" set to 0 since we are
  968. * dumb and just copy this entire array to the boot params
  969. */
  970. base = _ALIGN_DOWN(base, PAGE_SIZE);
  971. top = _ALIGN_UP(top, PAGE_SIZE);
  972. size = top - base;
  973. if (cnt >= (MEM_RESERVE_MAP_SIZE - 1))
  974. prom_panic("Memory reserve map exhausted !\n");
  975. mem_reserve_map[cnt].base = cpu_to_be64(base);
  976. mem_reserve_map[cnt].size = cpu_to_be64(size);
  977. mem_reserve_cnt = cnt + 1;
  978. }
  979. /*
  980. * Initialize memory allocation mechanism, parse "memory" nodes and
  981. * obtain that way the top of memory and RMO to setup out local allocator
  982. */
  983. static void __init prom_init_mem(void)
  984. {
  985. phandle node;
  986. char *path, type[64];
  987. unsigned int plen;
  988. cell_t *p, *endp;
  989. __be32 val;
  990. u32 rac, rsc;
  991. /*
  992. * We iterate the memory nodes to find
  993. * 1) top of RMO (first node)
  994. * 2) top of memory
  995. */
  996. val = cpu_to_be32(2);
  997. prom_getprop(prom.root, "#address-cells", &val, sizeof(val));
  998. rac = be32_to_cpu(val);
  999. val = cpu_to_be32(1);
  1000. prom_getprop(prom.root, "#size-cells", &val, sizeof(rsc));
  1001. rsc = be32_to_cpu(val);
  1002. prom_debug("root_addr_cells: %x\n", rac);
  1003. prom_debug("root_size_cells: %x\n", rsc);
  1004. prom_debug("scanning memory:\n");
  1005. path = prom_scratch;
  1006. for (node = 0; prom_next_node(&node); ) {
  1007. type[0] = 0;
  1008. prom_getprop(node, "device_type", type, sizeof(type));
  1009. if (type[0] == 0) {
  1010. /*
  1011. * CHRP Longtrail machines have no device_type
  1012. * on the memory node, so check the name instead...
  1013. */
  1014. prom_getprop(node, "name", type, sizeof(type));
  1015. }
  1016. if (strcmp(type, "memory"))
  1017. continue;
  1018. plen = prom_getprop(node, "reg", regbuf, sizeof(regbuf));
  1019. if (plen > sizeof(regbuf)) {
  1020. prom_printf("memory node too large for buffer !\n");
  1021. plen = sizeof(regbuf);
  1022. }
  1023. p = regbuf;
  1024. endp = p + (plen / sizeof(cell_t));
  1025. #ifdef DEBUG_PROM
  1026. memset(path, 0, PROM_SCRATCH_SIZE);
  1027. call_prom("package-to-path", 3, 1, node, path, PROM_SCRATCH_SIZE-1);
  1028. prom_debug(" node %s :\n", path);
  1029. #endif /* DEBUG_PROM */
  1030. while ((endp - p) >= (rac + rsc)) {
  1031. unsigned long base, size;
  1032. base = prom_next_cell(rac, &p);
  1033. size = prom_next_cell(rsc, &p);
  1034. if (size == 0)
  1035. continue;
  1036. prom_debug(" %x %x\n", base, size);
  1037. if (base == 0 && (of_platform & PLATFORM_LPAR))
  1038. rmo_top = size;
  1039. if ((base + size) > ram_top)
  1040. ram_top = base + size;
  1041. }
  1042. }
  1043. alloc_bottom = PAGE_ALIGN((unsigned long)&_end + 0x4000);
  1044. /*
  1045. * If prom_memory_limit is set we reduce the upper limits *except* for
  1046. * alloc_top_high. This must be the real top of RAM so we can put
  1047. * TCE's up there.
  1048. */
  1049. alloc_top_high = ram_top;
  1050. if (prom_memory_limit) {
  1051. if (prom_memory_limit <= alloc_bottom) {
  1052. prom_printf("Ignoring mem=%x <= alloc_bottom.\n",
  1053. prom_memory_limit);
  1054. prom_memory_limit = 0;
  1055. } else if (prom_memory_limit >= ram_top) {
  1056. prom_printf("Ignoring mem=%x >= ram_top.\n",
  1057. prom_memory_limit);
  1058. prom_memory_limit = 0;
  1059. } else {
  1060. ram_top = prom_memory_limit;
  1061. rmo_top = min(rmo_top, prom_memory_limit);
  1062. }
  1063. }
  1064. /*
  1065. * Setup our top alloc point, that is top of RMO or top of
  1066. * segment 0 when running non-LPAR.
  1067. * Some RS64 machines have buggy firmware where claims up at
  1068. * 1GB fail. Cap at 768MB as a workaround.
  1069. * Since 768MB is plenty of room, and we need to cap to something
  1070. * reasonable on 32-bit, cap at 768MB on all machines.
  1071. */
  1072. if (!rmo_top)
  1073. rmo_top = ram_top;
  1074. rmo_top = min(0x30000000ul, rmo_top);
  1075. alloc_top = rmo_top;
  1076. alloc_top_high = ram_top;
  1077. /*
  1078. * Check if we have an initrd after the kernel but still inside
  1079. * the RMO. If we do move our bottom point to after it.
  1080. */
  1081. if (prom_initrd_start &&
  1082. prom_initrd_start < rmo_top &&
  1083. prom_initrd_end > alloc_bottom)
  1084. alloc_bottom = PAGE_ALIGN(prom_initrd_end);
  1085. prom_printf("memory layout at init:\n");
  1086. prom_printf(" memory_limit : %x (16 MB aligned)\n", prom_memory_limit);
  1087. prom_printf(" alloc_bottom : %x\n", alloc_bottom);
  1088. prom_printf(" alloc_top : %x\n", alloc_top);
  1089. prom_printf(" alloc_top_hi : %x\n", alloc_top_high);
  1090. prom_printf(" rmo_top : %x\n", rmo_top);
  1091. prom_printf(" ram_top : %x\n", ram_top);
  1092. }
  1093. static void __init prom_close_stdin(void)
  1094. {
  1095. __be32 val;
  1096. ihandle stdin;
  1097. if (prom_getprop(prom.chosen, "stdin", &val, sizeof(val)) > 0) {
  1098. stdin = be32_to_cpu(val);
  1099. call_prom("close", 1, 0, stdin);
  1100. }
  1101. }
  1102. #ifdef CONFIG_PPC_POWERNV
  1103. #ifdef CONFIG_PPC_EARLY_DEBUG_OPAL
  1104. static u64 __initdata prom_opal_base;
  1105. static u64 __initdata prom_opal_entry;
  1106. #endif
  1107. /*
  1108. * Allocate room for and instantiate OPAL
  1109. */
  1110. static void __init prom_instantiate_opal(void)
  1111. {
  1112. phandle opal_node;
  1113. ihandle opal_inst;
  1114. u64 base, entry;
  1115. u64 size = 0, align = 0x10000;
  1116. __be64 val64;
  1117. u32 rets[2];
  1118. prom_debug("prom_instantiate_opal: start...\n");
  1119. opal_node = call_prom("finddevice", 1, 1, ADDR("/ibm,opal"));
  1120. prom_debug("opal_node: %x\n", opal_node);
  1121. if (!PHANDLE_VALID(opal_node))
  1122. return;
  1123. val64 = 0;
  1124. prom_getprop(opal_node, "opal-runtime-size", &val64, sizeof(val64));
  1125. size = be64_to_cpu(val64);
  1126. if (size == 0)
  1127. return;
  1128. val64 = 0;
  1129. prom_getprop(opal_node, "opal-runtime-alignment", &val64,sizeof(val64));
  1130. align = be64_to_cpu(val64);
  1131. base = alloc_down(size, align, 0);
  1132. if (base == 0) {
  1133. prom_printf("OPAL allocation failed !\n");
  1134. return;
  1135. }
  1136. opal_inst = call_prom("open", 1, 1, ADDR("/ibm,opal"));
  1137. if (!IHANDLE_VALID(opal_inst)) {
  1138. prom_printf("opening opal package failed (%x)\n", opal_inst);
  1139. return;
  1140. }
  1141. prom_printf("instantiating opal at 0x%x...", base);
  1142. if (call_prom_ret("call-method", 4, 3, rets,
  1143. ADDR("load-opal-runtime"),
  1144. opal_inst,
  1145. base >> 32, base & 0xffffffff) != 0
  1146. || (rets[0] == 0 && rets[1] == 0)) {
  1147. prom_printf(" failed\n");
  1148. return;
  1149. }
  1150. entry = (((u64)rets[0]) << 32) | rets[1];
  1151. prom_printf(" done\n");
  1152. reserve_mem(base, size);
  1153. prom_debug("opal base = 0x%x\n", base);
  1154. prom_debug("opal align = 0x%x\n", align);
  1155. prom_debug("opal entry = 0x%x\n", entry);
  1156. prom_debug("opal size = 0x%x\n", (long)size);
  1157. prom_setprop(opal_node, "/ibm,opal", "opal-base-address",
  1158. &base, sizeof(base));
  1159. prom_setprop(opal_node, "/ibm,opal", "opal-entry-address",
  1160. &entry, sizeof(entry));
  1161. #ifdef CONFIG_PPC_EARLY_DEBUG_OPAL
  1162. prom_opal_base = base;
  1163. prom_opal_entry = entry;
  1164. #endif
  1165. prom_debug("prom_instantiate_opal: end...\n");
  1166. }
  1167. #endif /* CONFIG_PPC_POWERNV */
  1168. /*
  1169. * Allocate room for and instantiate RTAS
  1170. */
  1171. static void __init prom_instantiate_rtas(void)
  1172. {
  1173. phandle rtas_node;
  1174. ihandle rtas_inst;
  1175. u32 base, entry = 0;
  1176. __be32 val;
  1177. u32 size = 0;
  1178. prom_debug("prom_instantiate_rtas: start...\n");
  1179. rtas_node = call_prom("finddevice", 1, 1, ADDR("/rtas"));
  1180. prom_debug("rtas_node: %x\n", rtas_node);
  1181. if (!PHANDLE_VALID(rtas_node))
  1182. return;
  1183. val = 0;
  1184. prom_getprop(rtas_node, "rtas-size", &val, sizeof(size));
  1185. size = be32_to_cpu(val);
  1186. if (size == 0)
  1187. return;
  1188. base = alloc_down(size, PAGE_SIZE, 0);
  1189. if (base == 0)
  1190. prom_panic("Could not allocate memory for RTAS\n");
  1191. rtas_inst = call_prom("open", 1, 1, ADDR("/rtas"));
  1192. if (!IHANDLE_VALID(rtas_inst)) {
  1193. prom_printf("opening rtas package failed (%x)\n", rtas_inst);
  1194. return;
  1195. }
  1196. prom_printf("instantiating rtas at 0x%x...", base);
  1197. if (call_prom_ret("call-method", 3, 2, &entry,
  1198. ADDR("instantiate-rtas"),
  1199. rtas_inst, base) != 0
  1200. || entry == 0) {
  1201. prom_printf(" failed\n");
  1202. return;
  1203. }
  1204. prom_printf(" done\n");
  1205. reserve_mem(base, size);
  1206. val = cpu_to_be32(base);
  1207. prom_setprop(rtas_node, "/rtas", "linux,rtas-base",
  1208. &val, sizeof(val));
  1209. val = cpu_to_be32(entry);
  1210. prom_setprop(rtas_node, "/rtas", "linux,rtas-entry",
  1211. &val, sizeof(val));
  1212. /* Check if it supports "query-cpu-stopped-state" */
  1213. if (prom_getprop(rtas_node, "query-cpu-stopped-state",
  1214. &val, sizeof(val)) != PROM_ERROR)
  1215. rtas_has_query_cpu_stopped = true;
  1216. prom_debug("rtas base = 0x%x\n", base);
  1217. prom_debug("rtas entry = 0x%x\n", entry);
  1218. prom_debug("rtas size = 0x%x\n", (long)size);
  1219. prom_debug("prom_instantiate_rtas: end...\n");
  1220. }
  1221. #ifdef CONFIG_PPC64
  1222. /*
  1223. * Allocate room for and instantiate Stored Measurement Log (SML)
  1224. */
  1225. static void __init prom_instantiate_sml(void)
  1226. {
  1227. phandle ibmvtpm_node;
  1228. ihandle ibmvtpm_inst;
  1229. u32 entry = 0, size = 0;
  1230. u64 base;
  1231. prom_debug("prom_instantiate_sml: start...\n");
  1232. ibmvtpm_node = call_prom("finddevice", 1, 1, ADDR("/ibm,vtpm"));
  1233. prom_debug("ibmvtpm_node: %x\n", ibmvtpm_node);
  1234. if (!PHANDLE_VALID(ibmvtpm_node))
  1235. return;
  1236. ibmvtpm_inst = call_prom("open", 1, 1, ADDR("/ibm,vtpm"));
  1237. if (!IHANDLE_VALID(ibmvtpm_inst)) {
  1238. prom_printf("opening vtpm package failed (%x)\n", ibmvtpm_inst);
  1239. return;
  1240. }
  1241. if (call_prom_ret("call-method", 2, 2, &size,
  1242. ADDR("sml-get-handover-size"),
  1243. ibmvtpm_inst) != 0 || size == 0) {
  1244. prom_printf("SML get handover size failed\n");
  1245. return;
  1246. }
  1247. base = alloc_down(size, PAGE_SIZE, 0);
  1248. if (base == 0)
  1249. prom_panic("Could not allocate memory for sml\n");
  1250. prom_printf("instantiating sml at 0x%x...", base);
  1251. if (call_prom_ret("call-method", 4, 2, &entry,
  1252. ADDR("sml-handover"),
  1253. ibmvtpm_inst, size, base) != 0 || entry == 0) {
  1254. prom_printf("SML handover failed\n");
  1255. return;
  1256. }
  1257. prom_printf(" done\n");
  1258. reserve_mem(base, size);
  1259. prom_setprop(ibmvtpm_node, "/ibm,vtpm", "linux,sml-base",
  1260. &base, sizeof(base));
  1261. prom_setprop(ibmvtpm_node, "/ibm,vtpm", "linux,sml-size",
  1262. &size, sizeof(size));
  1263. prom_debug("sml base = 0x%x\n", base);
  1264. prom_debug("sml size = 0x%x\n", (long)size);
  1265. prom_debug("prom_instantiate_sml: end...\n");
  1266. }
  1267. /*
  1268. * Allocate room for and initialize TCE tables
  1269. */
  1270. #ifdef __BIG_ENDIAN__
  1271. static void __init prom_initialize_tce_table(void)
  1272. {
  1273. phandle node;
  1274. ihandle phb_node;
  1275. char compatible[64], type[64], model[64];
  1276. char *path = prom_scratch;
  1277. u64 base, align;
  1278. u32 minalign, minsize;
  1279. u64 tce_entry, *tce_entryp;
  1280. u64 local_alloc_top, local_alloc_bottom;
  1281. u64 i;
  1282. if (prom_iommu_off)
  1283. return;
  1284. prom_debug("starting prom_initialize_tce_table\n");
  1285. /* Cache current top of allocs so we reserve a single block */
  1286. local_alloc_top = alloc_top_high;
  1287. local_alloc_bottom = local_alloc_top;
  1288. /* Search all nodes looking for PHBs. */
  1289. for (node = 0; prom_next_node(&node); ) {
  1290. compatible[0] = 0;
  1291. type[0] = 0;
  1292. model[0] = 0;
  1293. prom_getprop(node, "compatible",
  1294. compatible, sizeof(compatible));
  1295. prom_getprop(node, "device_type", type, sizeof(type));
  1296. prom_getprop(node, "model", model, sizeof(model));
  1297. if ((type[0] == 0) || (strstr(type, "pci") == NULL))
  1298. continue;
  1299. /* Keep the old logic intact to avoid regression. */
  1300. if (compatible[0] != 0) {
  1301. if ((strstr(compatible, "python") == NULL) &&
  1302. (strstr(compatible, "Speedwagon") == NULL) &&
  1303. (strstr(compatible, "Winnipeg") == NULL))
  1304. continue;
  1305. } else if (model[0] != 0) {
  1306. if ((strstr(model, "ython") == NULL) &&
  1307. (strstr(model, "peedwagon") == NULL) &&
  1308. (strstr(model, "innipeg") == NULL))
  1309. continue;
  1310. }
  1311. if (prom_getprop(node, "tce-table-minalign", &minalign,
  1312. sizeof(minalign)) == PROM_ERROR)
  1313. minalign = 0;
  1314. if (prom_getprop(node, "tce-table-minsize", &minsize,
  1315. sizeof(minsize)) == PROM_ERROR)
  1316. minsize = 4UL << 20;
  1317. /*
  1318. * Even though we read what OF wants, we just set the table
  1319. * size to 4 MB. This is enough to map 2GB of PCI DMA space.
  1320. * By doing this, we avoid the pitfalls of trying to DMA to
  1321. * MMIO space and the DMA alias hole.
  1322. *
  1323. * On POWER4, firmware sets the TCE region by assuming
  1324. * each TCE table is 8MB. Using this memory for anything
  1325. * else will impact performance, so we always allocate 8MB.
  1326. * Anton
  1327. */
  1328. if (pvr_version_is(PVR_POWER4) || pvr_version_is(PVR_POWER4p))
  1329. minsize = 8UL << 20;
  1330. else
  1331. minsize = 4UL << 20;
  1332. /* Align to the greater of the align or size */
  1333. align = max(minalign, minsize);
  1334. base = alloc_down(minsize, align, 1);
  1335. if (base == 0)
  1336. prom_panic("ERROR, cannot find space for TCE table.\n");
  1337. if (base < local_alloc_bottom)
  1338. local_alloc_bottom = base;
  1339. /* It seems OF doesn't null-terminate the path :-( */
  1340. memset(path, 0, PROM_SCRATCH_SIZE);
  1341. /* Call OF to setup the TCE hardware */
  1342. if (call_prom("package-to-path", 3, 1, node,
  1343. path, PROM_SCRATCH_SIZE-1) == PROM_ERROR) {
  1344. prom_printf("package-to-path failed\n");
  1345. }
  1346. /* Save away the TCE table attributes for later use. */
  1347. prom_setprop(node, path, "linux,tce-base", &base, sizeof(base));
  1348. prom_setprop(node, path, "linux,tce-size", &minsize, sizeof(minsize));
  1349. prom_debug("TCE table: %s\n", path);
  1350. prom_debug("\tnode = 0x%x\n", node);
  1351. prom_debug("\tbase = 0x%x\n", base);
  1352. prom_debug("\tsize = 0x%x\n", minsize);
  1353. /* Initialize the table to have a one-to-one mapping
  1354. * over the allocated size.
  1355. */
  1356. tce_entryp = (u64 *)base;
  1357. for (i = 0; i < (minsize >> 3) ;tce_entryp++, i++) {
  1358. tce_entry = (i << PAGE_SHIFT);
  1359. tce_entry |= 0x3;
  1360. *tce_entryp = tce_entry;
  1361. }
  1362. prom_printf("opening PHB %s", path);
  1363. phb_node = call_prom("open", 1, 1, path);
  1364. if (phb_node == 0)
  1365. prom_printf("... failed\n");
  1366. else
  1367. prom_printf("... done\n");
  1368. call_prom("call-method", 6, 0, ADDR("set-64-bit-addressing"),
  1369. phb_node, -1, minsize,
  1370. (u32) base, (u32) (base >> 32));
  1371. call_prom("close", 1, 0, phb_node);
  1372. }
  1373. reserve_mem(local_alloc_bottom, local_alloc_top - local_alloc_bottom);
  1374. /* These are only really needed if there is a memory limit in
  1375. * effect, but we don't know so export them always. */
  1376. prom_tce_alloc_start = local_alloc_bottom;
  1377. prom_tce_alloc_end = local_alloc_top;
  1378. /* Flag the first invalid entry */
  1379. prom_debug("ending prom_initialize_tce_table\n");
  1380. }
  1381. #endif /* __BIG_ENDIAN__ */
  1382. #endif /* CONFIG_PPC64 */
  1383. /*
  1384. * With CHRP SMP we need to use the OF to start the other processors.
  1385. * We can't wait until smp_boot_cpus (the OF is trashed by then)
  1386. * so we have to put the processors into a holding pattern controlled
  1387. * by the kernel (not OF) before we destroy the OF.
  1388. *
  1389. * This uses a chunk of low memory, puts some holding pattern
  1390. * code there and sends the other processors off to there until
  1391. * smp_boot_cpus tells them to do something. The holding pattern
  1392. * checks that address until its cpu # is there, when it is that
  1393. * cpu jumps to __secondary_start(). smp_boot_cpus() takes care
  1394. * of setting those values.
  1395. *
  1396. * We also use physical address 0x4 here to tell when a cpu
  1397. * is in its holding pattern code.
  1398. *
  1399. * -- Cort
  1400. */
  1401. /*
  1402. * We want to reference the copy of __secondary_hold_* in the
  1403. * 0 - 0x100 address range
  1404. */
  1405. #define LOW_ADDR(x) (((unsigned long) &(x)) & 0xff)
  1406. static void __init prom_hold_cpus(void)
  1407. {
  1408. unsigned long i;
  1409. phandle node;
  1410. char type[64];
  1411. unsigned long *spinloop
  1412. = (void *) LOW_ADDR(__secondary_hold_spinloop);
  1413. unsigned long *acknowledge
  1414. = (void *) LOW_ADDR(__secondary_hold_acknowledge);
  1415. unsigned long secondary_hold = LOW_ADDR(__secondary_hold);
  1416. /*
  1417. * On pseries, if RTAS supports "query-cpu-stopped-state",
  1418. * we skip this stage, the CPUs will be started by the
  1419. * kernel using RTAS.
  1420. */
  1421. if ((of_platform == PLATFORM_PSERIES ||
  1422. of_platform == PLATFORM_PSERIES_LPAR) &&
  1423. rtas_has_query_cpu_stopped) {
  1424. prom_printf("prom_hold_cpus: skipped\n");
  1425. return;
  1426. }
  1427. prom_debug("prom_hold_cpus: start...\n");
  1428. prom_debug(" 1) spinloop = 0x%x\n", (unsigned long)spinloop);
  1429. prom_debug(" 1) *spinloop = 0x%x\n", *spinloop);
  1430. prom_debug(" 1) acknowledge = 0x%x\n",
  1431. (unsigned long)acknowledge);
  1432. prom_debug(" 1) *acknowledge = 0x%x\n", *acknowledge);
  1433. prom_debug(" 1) secondary_hold = 0x%x\n", secondary_hold);
  1434. /* Set the common spinloop variable, so all of the secondary cpus
  1435. * will block when they are awakened from their OF spinloop.
  1436. * This must occur for both SMP and non SMP kernels, since OF will
  1437. * be trashed when we move the kernel.
  1438. */
  1439. *spinloop = 0;
  1440. /* look for cpus */
  1441. for (node = 0; prom_next_node(&node); ) {
  1442. unsigned int cpu_no;
  1443. __be32 reg;
  1444. type[0] = 0;
  1445. prom_getprop(node, "device_type", type, sizeof(type));
  1446. if (strcmp(type, "cpu") != 0)
  1447. continue;
  1448. /* Skip non-configured cpus. */
  1449. if (prom_getprop(node, "status", type, sizeof(type)) > 0)
  1450. if (strcmp(type, "okay") != 0)
  1451. continue;
  1452. reg = cpu_to_be32(-1); /* make sparse happy */
  1453. prom_getprop(node, "reg", &reg, sizeof(reg));
  1454. cpu_no = be32_to_cpu(reg);
  1455. prom_debug("cpu hw idx = %lu\n", cpu_no);
  1456. /* Init the acknowledge var which will be reset by
  1457. * the secondary cpu when it awakens from its OF
  1458. * spinloop.
  1459. */
  1460. *acknowledge = (unsigned long)-1;
  1461. if (cpu_no != prom.cpu) {
  1462. /* Primary Thread of non-boot cpu or any thread */
  1463. prom_printf("starting cpu hw idx %lu... ", cpu_no);
  1464. call_prom("start-cpu", 3, 0, node,
  1465. secondary_hold, cpu_no);
  1466. for (i = 0; (i < 100000000) &&
  1467. (*acknowledge == ((unsigned long)-1)); i++ )
  1468. mb();
  1469. if (*acknowledge == cpu_no)
  1470. prom_printf("done\n");
  1471. else
  1472. prom_printf("failed: %x\n", *acknowledge);
  1473. }
  1474. #ifdef CONFIG_SMP
  1475. else
  1476. prom_printf("boot cpu hw idx %lu\n", cpu_no);
  1477. #endif /* CONFIG_SMP */
  1478. }
  1479. prom_debug("prom_hold_cpus: end...\n");
  1480. }
  1481. static void __init prom_init_client_services(unsigned long pp)
  1482. {
  1483. /* Get a handle to the prom entry point before anything else */
  1484. prom_entry = pp;
  1485. /* get a handle for the stdout device */
  1486. prom.chosen = call_prom("finddevice", 1, 1, ADDR("/chosen"));
  1487. if (!PHANDLE_VALID(prom.chosen))
  1488. prom_panic("cannot find chosen"); /* msg won't be printed :( */
  1489. /* get device tree root */
  1490. prom.root = call_prom("finddevice", 1, 1, ADDR("/"));
  1491. if (!PHANDLE_VALID(prom.root))
  1492. prom_panic("cannot find device tree root"); /* msg won't be printed :( */
  1493. prom.mmumap = 0;
  1494. }
  1495. #ifdef CONFIG_PPC32
  1496. /*
  1497. * For really old powermacs, we need to map things we claim.
  1498. * For that, we need the ihandle of the mmu.
  1499. * Also, on the longtrail, we need to work around other bugs.
  1500. */
  1501. static void __init prom_find_mmu(void)
  1502. {
  1503. phandle oprom;
  1504. char version[64];
  1505. oprom = call_prom("finddevice", 1, 1, ADDR("/openprom"));
  1506. if (!PHANDLE_VALID(oprom))
  1507. return;
  1508. if (prom_getprop(oprom, "model", version, sizeof(version)) <= 0)
  1509. return;
  1510. version[sizeof(version) - 1] = 0;
  1511. /* XXX might need to add other versions here */
  1512. if (strcmp(version, "Open Firmware, 1.0.5") == 0)
  1513. of_workarounds = OF_WA_CLAIM;
  1514. else if (strncmp(version, "FirmWorks,3.", 12) == 0) {
  1515. of_workarounds = OF_WA_CLAIM | OF_WA_LONGTRAIL;
  1516. call_prom("interpret", 1, 1, "dev /memory 0 to allow-reclaim");
  1517. } else
  1518. return;
  1519. prom.memory = call_prom("open", 1, 1, ADDR("/memory"));
  1520. prom_getprop(prom.chosen, "mmu", &prom.mmumap,
  1521. sizeof(prom.mmumap));
  1522. prom.mmumap = be32_to_cpu(prom.mmumap);
  1523. if (!IHANDLE_VALID(prom.memory) || !IHANDLE_VALID(prom.mmumap))
  1524. of_workarounds &= ~OF_WA_CLAIM; /* hmmm */
  1525. }
  1526. #else
  1527. #define prom_find_mmu()
  1528. #endif
  1529. static void __init prom_init_stdout(void)
  1530. {
  1531. char *path = of_stdout_device;
  1532. char type[16];
  1533. phandle stdout_node;
  1534. __be32 val;
  1535. if (prom_getprop(prom.chosen, "stdout", &val, sizeof(val)) <= 0)
  1536. prom_panic("cannot find stdout");
  1537. prom.stdout = be32_to_cpu(val);
  1538. /* Get the full OF pathname of the stdout device */
  1539. memset(path, 0, 256);
  1540. call_prom("instance-to-path", 3, 1, prom.stdout, path, 255);
  1541. prom_printf("OF stdout device is: %s\n", of_stdout_device);
  1542. prom_setprop(prom.chosen, "/chosen", "linux,stdout-path",
  1543. path, strlen(path) + 1);
  1544. /* instance-to-package fails on PA-Semi */
  1545. stdout_node = call_prom("instance-to-package", 1, 1, prom.stdout);
  1546. if (stdout_node != PROM_ERROR) {
  1547. val = cpu_to_be32(stdout_node);
  1548. prom_setprop(prom.chosen, "/chosen", "linux,stdout-package",
  1549. &val, sizeof(val));
  1550. /* If it's a display, note it */
  1551. memset(type, 0, sizeof(type));
  1552. prom_getprop(stdout_node, "device_type", type, sizeof(type));
  1553. if (strcmp(type, "display") == 0)
  1554. prom_setprop(stdout_node, path, "linux,boot-display", NULL, 0);
  1555. }
  1556. }
  1557. static int __init prom_find_machine_type(void)
  1558. {
  1559. char compat[256];
  1560. int len, i = 0;
  1561. #ifdef CONFIG_PPC64
  1562. phandle rtas;
  1563. int x;
  1564. #endif
  1565. /* Look for a PowerMac or a Cell */
  1566. len = prom_getprop(prom.root, "compatible",
  1567. compat, sizeof(compat)-1);
  1568. if (len > 0) {
  1569. compat[len] = 0;
  1570. while (i < len) {
  1571. char *p = &compat[i];
  1572. int sl = strlen(p);
  1573. if (sl == 0)
  1574. break;
  1575. if (strstr(p, "Power Macintosh") ||
  1576. strstr(p, "MacRISC"))
  1577. return PLATFORM_POWERMAC;
  1578. #ifdef CONFIG_PPC64
  1579. /* We must make sure we don't detect the IBM Cell
  1580. * blades as pSeries due to some firmware issues,
  1581. * so we do it here.
  1582. */
  1583. if (strstr(p, "IBM,CBEA") ||
  1584. strstr(p, "IBM,CPBW-1.0"))
  1585. return PLATFORM_GENERIC;
  1586. #endif /* CONFIG_PPC64 */
  1587. i += sl + 1;
  1588. }
  1589. }
  1590. #ifdef CONFIG_PPC64
  1591. /* Try to detect OPAL */
  1592. if (PHANDLE_VALID(call_prom("finddevice", 1, 1, ADDR("/ibm,opal"))))
  1593. return PLATFORM_OPAL;
  1594. /* Try to figure out if it's an IBM pSeries or any other
  1595. * PAPR compliant platform. We assume it is if :
  1596. * - /device_type is "chrp" (please, do NOT use that for future
  1597. * non-IBM designs !
  1598. * - it has /rtas
  1599. */
  1600. len = prom_getprop(prom.root, "device_type",
  1601. compat, sizeof(compat)-1);
  1602. if (len <= 0)
  1603. return PLATFORM_GENERIC;
  1604. if (strcmp(compat, "chrp"))
  1605. return PLATFORM_GENERIC;
  1606. /* Default to pSeries. We need to know if we are running LPAR */
  1607. rtas = call_prom("finddevice", 1, 1, ADDR("/rtas"));
  1608. if (!PHANDLE_VALID(rtas))
  1609. return PLATFORM_GENERIC;
  1610. x = prom_getproplen(rtas, "ibm,hypertas-functions");
  1611. if (x != PROM_ERROR) {
  1612. prom_debug("Hypertas detected, assuming LPAR !\n");
  1613. return PLATFORM_PSERIES_LPAR;
  1614. }
  1615. return PLATFORM_PSERIES;
  1616. #else
  1617. return PLATFORM_GENERIC;
  1618. #endif
  1619. }
  1620. static int __init prom_set_color(ihandle ih, int i, int r, int g, int b)
  1621. {
  1622. return call_prom("call-method", 6, 1, ADDR("color!"), ih, i, b, g, r);
  1623. }
  1624. /*
  1625. * If we have a display that we don't know how to drive,
  1626. * we will want to try to execute OF's open method for it
  1627. * later. However, OF will probably fall over if we do that
  1628. * we've taken over the MMU.
  1629. * So we check whether we will need to open the display,
  1630. * and if so, open it now.
  1631. */
  1632. static void __init prom_check_displays(void)
  1633. {
  1634. char type[16], *path;
  1635. phandle node;
  1636. ihandle ih;
  1637. int i;
  1638. static unsigned char default_colors[] = {
  1639. 0x00, 0x00, 0x00,
  1640. 0x00, 0x00, 0xaa,
  1641. 0x00, 0xaa, 0x00,
  1642. 0x00, 0xaa, 0xaa,
  1643. 0xaa, 0x00, 0x00,
  1644. 0xaa, 0x00, 0xaa,
  1645. 0xaa, 0xaa, 0x00,
  1646. 0xaa, 0xaa, 0xaa,
  1647. 0x55, 0x55, 0x55,
  1648. 0x55, 0x55, 0xff,
  1649. 0x55, 0xff, 0x55,
  1650. 0x55, 0xff, 0xff,
  1651. 0xff, 0x55, 0x55,
  1652. 0xff, 0x55, 0xff,
  1653. 0xff, 0xff, 0x55,
  1654. 0xff, 0xff, 0xff
  1655. };
  1656. const unsigned char *clut;
  1657. prom_debug("Looking for displays\n");
  1658. for (node = 0; prom_next_node(&node); ) {
  1659. memset(type, 0, sizeof(type));
  1660. prom_getprop(node, "device_type", type, sizeof(type));
  1661. if (strcmp(type, "display") != 0)
  1662. continue;
  1663. /* It seems OF doesn't null-terminate the path :-( */
  1664. path = prom_scratch;
  1665. memset(path, 0, PROM_SCRATCH_SIZE);
  1666. /*
  1667. * leave some room at the end of the path for appending extra
  1668. * arguments
  1669. */
  1670. if (call_prom("package-to-path", 3, 1, node, path,
  1671. PROM_SCRATCH_SIZE-10) == PROM_ERROR)
  1672. continue;
  1673. prom_printf("found display : %s, opening... ", path);
  1674. ih = call_prom("open", 1, 1, path);
  1675. if (ih == 0) {
  1676. prom_printf("failed\n");
  1677. continue;
  1678. }
  1679. /* Success */
  1680. prom_printf("done\n");
  1681. prom_setprop(node, path, "linux,opened", NULL, 0);
  1682. /* Setup a usable color table when the appropriate
  1683. * method is available. Should update this to set-colors */
  1684. clut = default_colors;
  1685. for (i = 0; i < 16; i++, clut += 3)
  1686. if (prom_set_color(ih, i, clut[0], clut[1],
  1687. clut[2]) != 0)
  1688. break;
  1689. #ifdef CONFIG_LOGO_LINUX_CLUT224
  1690. clut = PTRRELOC(logo_linux_clut224.clut);
  1691. for (i = 0; i < logo_linux_clut224.clutsize; i++, clut += 3)
  1692. if (prom_set_color(ih, i + 32, clut[0], clut[1],
  1693. clut[2]) != 0)
  1694. break;
  1695. #endif /* CONFIG_LOGO_LINUX_CLUT224 */
  1696. #ifdef CONFIG_PPC_EARLY_DEBUG_BOOTX
  1697. if (prom_getprop(node, "linux,boot-display", NULL, 0) !=
  1698. PROM_ERROR) {
  1699. u32 width, height, pitch, addr;
  1700. prom_printf("Setting btext !\n");
  1701. prom_getprop(node, "width", &width, 4);
  1702. prom_getprop(node, "height", &height, 4);
  1703. prom_getprop(node, "linebytes", &pitch, 4);
  1704. prom_getprop(node, "address", &addr, 4);
  1705. prom_printf("W=%d H=%d LB=%d addr=0x%x\n",
  1706. width, height, pitch, addr);
  1707. btext_setup_display(width, height, 8, pitch, addr);
  1708. }
  1709. #endif /* CONFIG_PPC_EARLY_DEBUG_BOOTX */
  1710. }
  1711. }
  1712. /* Return (relocated) pointer to this much memory: moves initrd if reqd. */
  1713. static void __init *make_room(unsigned long *mem_start, unsigned long *mem_end,
  1714. unsigned long needed, unsigned long align)
  1715. {
  1716. void *ret;
  1717. *mem_start = _ALIGN(*mem_start, align);
  1718. while ((*mem_start + needed) > *mem_end) {
  1719. unsigned long room, chunk;
  1720. prom_debug("Chunk exhausted, claiming more at %x...\n",
  1721. alloc_bottom);
  1722. room = alloc_top - alloc_bottom;
  1723. if (room > DEVTREE_CHUNK_SIZE)
  1724. room = DEVTREE_CHUNK_SIZE;
  1725. if (room < PAGE_SIZE)
  1726. prom_panic("No memory for flatten_device_tree "
  1727. "(no room)\n");
  1728. chunk = alloc_up(room, 0);
  1729. if (chunk == 0)
  1730. prom_panic("No memory for flatten_device_tree "
  1731. "(claim failed)\n");
  1732. *mem_end = chunk + room;
  1733. }
  1734. ret = (void *)*mem_start;
  1735. *mem_start += needed;
  1736. return ret;
  1737. }
  1738. #define dt_push_token(token, mem_start, mem_end) do { \
  1739. void *room = make_room(mem_start, mem_end, 4, 4); \
  1740. *(__be32 *)room = cpu_to_be32(token); \
  1741. } while(0)
  1742. static unsigned long __init dt_find_string(char *str)
  1743. {
  1744. char *s, *os;
  1745. s = os = (char *)dt_string_start;
  1746. s += 4;
  1747. while (s < (char *)dt_string_end) {
  1748. if (strcmp(s, str) == 0)
  1749. return s - os;
  1750. s += strlen(s) + 1;
  1751. }
  1752. return 0;
  1753. }
  1754. /*
  1755. * The Open Firmware 1275 specification states properties must be 31 bytes or
  1756. * less, however not all firmwares obey this. Make it 64 bytes to be safe.
  1757. */
  1758. #define MAX_PROPERTY_NAME 64
  1759. static void __init scan_dt_build_strings(phandle node,
  1760. unsigned long *mem_start,
  1761. unsigned long *mem_end)
  1762. {
  1763. char *prev_name, *namep, *sstart;
  1764. unsigned long soff;
  1765. phandle child;
  1766. sstart = (char *)dt_string_start;
  1767. /* get and store all property names */
  1768. prev_name = "";
  1769. for (;;) {
  1770. /* 64 is max len of name including nul. */
  1771. namep = make_room(mem_start, mem_end, MAX_PROPERTY_NAME, 1);
  1772. if (call_prom("nextprop", 3, 1, node, prev_name, namep) != 1) {
  1773. /* No more nodes: unwind alloc */
  1774. *mem_start = (unsigned long)namep;
  1775. break;
  1776. }
  1777. /* skip "name" */
  1778. if (strcmp(namep, "name") == 0) {
  1779. *mem_start = (unsigned long)namep;
  1780. prev_name = "name";
  1781. continue;
  1782. }
  1783. /* get/create string entry */
  1784. soff = dt_find_string(namep);
  1785. if (soff != 0) {
  1786. *mem_start = (unsigned long)namep;
  1787. namep = sstart + soff;
  1788. } else {
  1789. /* Trim off some if we can */
  1790. *mem_start = (unsigned long)namep + strlen(namep) + 1;
  1791. dt_string_end = *mem_start;
  1792. }
  1793. prev_name = namep;
  1794. }
  1795. /* do all our children */
  1796. child = call_prom("child", 1, 1, node);
  1797. while (child != 0) {
  1798. scan_dt_build_strings(child, mem_start, mem_end);
  1799. child = call_prom("peer", 1, 1, child);
  1800. }
  1801. }
  1802. static void __init scan_dt_build_struct(phandle node, unsigned long *mem_start,
  1803. unsigned long *mem_end)
  1804. {
  1805. phandle child;
  1806. char *namep, *prev_name, *sstart, *p, *ep, *lp, *path;
  1807. unsigned long soff;
  1808. unsigned char *valp;
  1809. static char pname[MAX_PROPERTY_NAME];
  1810. int l, room, has_phandle = 0;
  1811. dt_push_token(OF_DT_BEGIN_NODE, mem_start, mem_end);
  1812. /* get the node's full name */
  1813. namep = (char *)*mem_start;
  1814. room = *mem_end - *mem_start;
  1815. if (room > 255)
  1816. room = 255;
  1817. l = call_prom("package-to-path", 3, 1, node, namep, room);
  1818. if (l >= 0) {
  1819. /* Didn't fit? Get more room. */
  1820. if (l >= room) {
  1821. if (l >= *mem_end - *mem_start)
  1822. namep = make_room(mem_start, mem_end, l+1, 1);
  1823. call_prom("package-to-path", 3, 1, node, namep, l);
  1824. }
  1825. namep[l] = '\0';
  1826. /* Fixup an Apple bug where they have bogus \0 chars in the
  1827. * middle of the path in some properties, and extract
  1828. * the unit name (everything after the last '/').
  1829. */
  1830. for (lp = p = namep, ep = namep + l; p < ep; p++) {
  1831. if (*p == '/')
  1832. lp = namep;
  1833. else if (*p != 0)
  1834. *lp++ = *p;
  1835. }
  1836. *lp = 0;
  1837. *mem_start = _ALIGN((unsigned long)lp + 1, 4);
  1838. }
  1839. /* get it again for debugging */
  1840. path = prom_scratch;
  1841. memset(path, 0, PROM_SCRATCH_SIZE);
  1842. call_prom("package-to-path", 3, 1, node, path, PROM_SCRATCH_SIZE-1);
  1843. /* get and store all properties */
  1844. prev_name = "";
  1845. sstart = (char *)dt_string_start;
  1846. for (;;) {
  1847. if (call_prom("nextprop", 3, 1, node, prev_name,
  1848. pname) != 1)
  1849. break;
  1850. /* skip "name" */
  1851. if (strcmp(pname, "name") == 0) {
  1852. prev_name = "name";
  1853. continue;
  1854. }
  1855. /* find string offset */
  1856. soff = dt_find_string(pname);
  1857. if (soff == 0) {
  1858. prom_printf("WARNING: Can't find string index for"
  1859. " <%s>, node %s\n", pname, path);
  1860. break;
  1861. }
  1862. prev_name = sstart + soff;
  1863. /* get length */
  1864. l = call_prom("getproplen", 2, 1, node, pname);
  1865. /* sanity checks */
  1866. if (l == PROM_ERROR)
  1867. continue;
  1868. /* push property head */
  1869. dt_push_token(OF_DT_PROP, mem_start, mem_end);
  1870. dt_push_token(l, mem_start, mem_end);
  1871. dt_push_token(soff, mem_start, mem_end);
  1872. /* push property content */
  1873. valp = make_room(mem_start, mem_end, l, 4);
  1874. call_prom("getprop", 4, 1, node, pname, valp, l);
  1875. *mem_start = _ALIGN(*mem_start, 4);
  1876. if (!strcmp(pname, "phandle"))
  1877. has_phandle = 1;
  1878. }
  1879. /* Add a "linux,phandle" property if no "phandle" property already
  1880. * existed (can happen with OPAL)
  1881. */
  1882. if (!has_phandle) {
  1883. soff = dt_find_string("linux,phandle");
  1884. if (soff == 0)
  1885. prom_printf("WARNING: Can't find string index for"
  1886. " <linux-phandle> node %s\n", path);
  1887. else {
  1888. dt_push_token(OF_DT_PROP, mem_start, mem_end);
  1889. dt_push_token(4, mem_start, mem_end);
  1890. dt_push_token(soff, mem_start, mem_end);
  1891. valp = make_room(mem_start, mem_end, 4, 4);
  1892. *(__be32 *)valp = cpu_to_be32(node);
  1893. }
  1894. }
  1895. /* do all our children */
  1896. child = call_prom("child", 1, 1, node);
  1897. while (child != 0) {
  1898. scan_dt_build_struct(child, mem_start, mem_end);
  1899. child = call_prom("peer", 1, 1, child);
  1900. }
  1901. dt_push_token(OF_DT_END_NODE, mem_start, mem_end);
  1902. }
  1903. static void __init flatten_device_tree(void)
  1904. {
  1905. phandle root;
  1906. unsigned long mem_start, mem_end, room;
  1907. struct boot_param_header *hdr;
  1908. char *namep;
  1909. u64 *rsvmap;
  1910. /*
  1911. * Check how much room we have between alloc top & bottom (+/- a
  1912. * few pages), crop to 1MB, as this is our "chunk" size
  1913. */
  1914. room = alloc_top - alloc_bottom - 0x4000;
  1915. if (room > DEVTREE_CHUNK_SIZE)
  1916. room = DEVTREE_CHUNK_SIZE;
  1917. prom_debug("starting device tree allocs at %x\n", alloc_bottom);
  1918. /* Now try to claim that */
  1919. mem_start = (unsigned long)alloc_up(room, PAGE_SIZE);
  1920. if (mem_start == 0)
  1921. prom_panic("Can't allocate initial device-tree chunk\n");
  1922. mem_end = mem_start + room;
  1923. /* Get root of tree */
  1924. root = call_prom("peer", 1, 1, (phandle)0);
  1925. if (root == (phandle)0)
  1926. prom_panic ("couldn't get device tree root\n");
  1927. /* Build header and make room for mem rsv map */
  1928. mem_start = _ALIGN(mem_start, 4);
  1929. hdr = make_room(&mem_start, &mem_end,
  1930. sizeof(struct boot_param_header), 4);
  1931. dt_header_start = (unsigned long)hdr;
  1932. rsvmap = make_room(&mem_start, &mem_end, sizeof(mem_reserve_map), 8);
  1933. /* Start of strings */
  1934. mem_start = PAGE_ALIGN(mem_start);
  1935. dt_string_start = mem_start;
  1936. mem_start += 4; /* hole */
  1937. /* Add "linux,phandle" in there, we'll need it */
  1938. namep = make_room(&mem_start, &mem_end, 16, 1);
  1939. strcpy(namep, "linux,phandle");
  1940. mem_start = (unsigned long)namep + strlen(namep) + 1;
  1941. /* Build string array */
  1942. prom_printf("Building dt strings...\n");
  1943. scan_dt_build_strings(root, &mem_start, &mem_end);
  1944. dt_string_end = mem_start;
  1945. /* Build structure */
  1946. mem_start = PAGE_ALIGN(mem_start);
  1947. dt_struct_start = mem_start;
  1948. prom_printf("Building dt structure...\n");
  1949. scan_dt_build_struct(root, &mem_start, &mem_end);
  1950. dt_push_token(OF_DT_END, &mem_start, &mem_end);
  1951. dt_struct_end = PAGE_ALIGN(mem_start);
  1952. /* Finish header */
  1953. hdr->boot_cpuid_phys = cpu_to_be32(prom.cpu);
  1954. hdr->magic = cpu_to_be32(OF_DT_HEADER);
  1955. hdr->totalsize = cpu_to_be32(dt_struct_end - dt_header_start);
  1956. hdr->off_dt_struct = cpu_to_be32(dt_struct_start - dt_header_start);
  1957. hdr->off_dt_strings = cpu_to_be32(dt_string_start - dt_header_start);
  1958. hdr->dt_strings_size = cpu_to_be32(dt_string_end - dt_string_start);
  1959. hdr->off_mem_rsvmap = cpu_to_be32(((unsigned long)rsvmap) - dt_header_start);
  1960. hdr->version = cpu_to_be32(OF_DT_VERSION);
  1961. /* Version 16 is not backward compatible */
  1962. hdr->last_comp_version = cpu_to_be32(0x10);
  1963. /* Copy the reserve map in */
  1964. memcpy(rsvmap, mem_reserve_map, sizeof(mem_reserve_map));
  1965. #ifdef DEBUG_PROM
  1966. {
  1967. int i;
  1968. prom_printf("reserved memory map:\n");
  1969. for (i = 0; i < mem_reserve_cnt; i++)
  1970. prom_printf(" %x - %x\n",
  1971. be64_to_cpu(mem_reserve_map[i].base),
  1972. be64_to_cpu(mem_reserve_map[i].size));
  1973. }
  1974. #endif
  1975. /* Bump mem_reserve_cnt to cause further reservations to fail
  1976. * since it's too late.
  1977. */
  1978. mem_reserve_cnt = MEM_RESERVE_MAP_SIZE;
  1979. prom_printf("Device tree strings 0x%x -> 0x%x\n",
  1980. dt_string_start, dt_string_end);
  1981. prom_printf("Device tree struct 0x%x -> 0x%x\n",
  1982. dt_struct_start, dt_struct_end);
  1983. }
  1984. #ifdef CONFIG_PPC_MAPLE
  1985. /* PIBS Version 1.05.0000 04/26/2005 has an incorrect /ht/isa/ranges property.
  1986. * The values are bad, and it doesn't even have the right number of cells. */
  1987. static void __init fixup_device_tree_maple(void)
  1988. {
  1989. phandle isa;
  1990. u32 rloc = 0x01002000; /* IO space; PCI device = 4 */
  1991. u32 isa_ranges[6];
  1992. char *name;
  1993. name = "/ht@0/isa@4";
  1994. isa = call_prom("finddevice", 1, 1, ADDR(name));
  1995. if (!PHANDLE_VALID(isa)) {
  1996. name = "/ht@0/isa@6";
  1997. isa = call_prom("finddevice", 1, 1, ADDR(name));
  1998. rloc = 0x01003000; /* IO space; PCI device = 6 */
  1999. }
  2000. if (!PHANDLE_VALID(isa))
  2001. return;
  2002. if (prom_getproplen(isa, "ranges") != 12)
  2003. return;
  2004. if (prom_getprop(isa, "ranges", isa_ranges, sizeof(isa_ranges))
  2005. == PROM_ERROR)
  2006. return;
  2007. if (isa_ranges[0] != 0x1 ||
  2008. isa_ranges[1] != 0xf4000000 ||
  2009. isa_ranges[2] != 0x00010000)
  2010. return;
  2011. prom_printf("Fixing up bogus ISA range on Maple/Apache...\n");
  2012. isa_ranges[0] = 0x1;
  2013. isa_ranges[1] = 0x0;
  2014. isa_ranges[2] = rloc;
  2015. isa_ranges[3] = 0x0;
  2016. isa_ranges[4] = 0x0;
  2017. isa_ranges[5] = 0x00010000;
  2018. prom_setprop(isa, name, "ranges",
  2019. isa_ranges, sizeof(isa_ranges));
  2020. }
  2021. #define CPC925_MC_START 0xf8000000
  2022. #define CPC925_MC_LENGTH 0x1000000
  2023. /* The values for memory-controller don't have right number of cells */
  2024. static void __init fixup_device_tree_maple_memory_controller(void)
  2025. {
  2026. phandle mc;
  2027. u32 mc_reg[4];
  2028. char *name = "/hostbridge@f8000000";
  2029. u32 ac, sc;
  2030. mc = call_prom("finddevice", 1, 1, ADDR(name));
  2031. if (!PHANDLE_VALID(mc))
  2032. return;
  2033. if (prom_getproplen(mc, "reg") != 8)
  2034. return;
  2035. prom_getprop(prom.root, "#address-cells", &ac, sizeof(ac));
  2036. prom_getprop(prom.root, "#size-cells", &sc, sizeof(sc));
  2037. if ((ac != 2) || (sc != 2))
  2038. return;
  2039. if (prom_getprop(mc, "reg", mc_reg, sizeof(mc_reg)) == PROM_ERROR)
  2040. return;
  2041. if (mc_reg[0] != CPC925_MC_START || mc_reg[1] != CPC925_MC_LENGTH)
  2042. return;
  2043. prom_printf("Fixing up bogus hostbridge on Maple...\n");
  2044. mc_reg[0] = 0x0;
  2045. mc_reg[1] = CPC925_MC_START;
  2046. mc_reg[2] = 0x0;
  2047. mc_reg[3] = CPC925_MC_LENGTH;
  2048. prom_setprop(mc, name, "reg", mc_reg, sizeof(mc_reg));
  2049. }
  2050. #else
  2051. #define fixup_device_tree_maple()
  2052. #define fixup_device_tree_maple_memory_controller()
  2053. #endif
  2054. #ifdef CONFIG_PPC_CHRP
  2055. /*
  2056. * Pegasos and BriQ lacks the "ranges" property in the isa node
  2057. * Pegasos needs decimal IRQ 14/15, not hexadecimal
  2058. * Pegasos has the IDE configured in legacy mode, but advertised as native
  2059. */
  2060. static void __init fixup_device_tree_chrp(void)
  2061. {
  2062. phandle ph;
  2063. u32 prop[6];
  2064. u32 rloc = 0x01006000; /* IO space; PCI device = 12 */
  2065. char *name;
  2066. int rc;
  2067. name = "/pci@80000000/isa@c";
  2068. ph = call_prom("finddevice", 1, 1, ADDR(name));
  2069. if (!PHANDLE_VALID(ph)) {
  2070. name = "/pci@ff500000/isa@6";
  2071. ph = call_prom("finddevice", 1, 1, ADDR(name));
  2072. rloc = 0x01003000; /* IO space; PCI device = 6 */
  2073. }
  2074. if (PHANDLE_VALID(ph)) {
  2075. rc = prom_getproplen(ph, "ranges");
  2076. if (rc == 0 || rc == PROM_ERROR) {
  2077. prom_printf("Fixing up missing ISA range on Pegasos...\n");
  2078. prop[0] = 0x1;
  2079. prop[1] = 0x0;
  2080. prop[2] = rloc;
  2081. prop[3] = 0x0;
  2082. prop[4] = 0x0;
  2083. prop[5] = 0x00010000;
  2084. prom_setprop(ph, name, "ranges", prop, sizeof(prop));
  2085. }
  2086. }
  2087. name = "/pci@80000000/ide@C,1";
  2088. ph = call_prom("finddevice", 1, 1, ADDR(name));
  2089. if (PHANDLE_VALID(ph)) {
  2090. prom_printf("Fixing up IDE interrupt on Pegasos...\n");
  2091. prop[0] = 14;
  2092. prop[1] = 0x0;
  2093. prom_setprop(ph, name, "interrupts", prop, 2*sizeof(u32));
  2094. prom_printf("Fixing up IDE class-code on Pegasos...\n");
  2095. rc = prom_getprop(ph, "class-code", prop, sizeof(u32));
  2096. if (rc == sizeof(u32)) {
  2097. prop[0] &= ~0x5;
  2098. prom_setprop(ph, name, "class-code", prop, sizeof(u32));
  2099. }
  2100. }
  2101. }
  2102. #else
  2103. #define fixup_device_tree_chrp()
  2104. #endif
  2105. #if defined(CONFIG_PPC64) && defined(CONFIG_PPC_PMAC)
  2106. static void __init fixup_device_tree_pmac(void)
  2107. {
  2108. phandle u3, i2c, mpic;
  2109. u32 u3_rev;
  2110. u32 interrupts[2];
  2111. u32 parent;
  2112. /* Some G5s have a missing interrupt definition, fix it up here */
  2113. u3 = call_prom("finddevice", 1, 1, ADDR("/u3@0,f8000000"));
  2114. if (!PHANDLE_VALID(u3))
  2115. return;
  2116. i2c = call_prom("finddevice", 1, 1, ADDR("/u3@0,f8000000/i2c@f8001000"));
  2117. if (!PHANDLE_VALID(i2c))
  2118. return;
  2119. mpic = call_prom("finddevice", 1, 1, ADDR("/u3@0,f8000000/mpic@f8040000"));
  2120. if (!PHANDLE_VALID(mpic))
  2121. return;
  2122. /* check if proper rev of u3 */
  2123. if (prom_getprop(u3, "device-rev", &u3_rev, sizeof(u3_rev))
  2124. == PROM_ERROR)
  2125. return;
  2126. if (u3_rev < 0x35 || u3_rev > 0x39)
  2127. return;
  2128. /* does it need fixup ? */
  2129. if (prom_getproplen(i2c, "interrupts") > 0)
  2130. return;
  2131. prom_printf("fixing up bogus interrupts for u3 i2c...\n");
  2132. /* interrupt on this revision of u3 is number 0 and level */
  2133. interrupts[0] = 0;
  2134. interrupts[1] = 1;
  2135. prom_setprop(i2c, "/u3@0,f8000000/i2c@f8001000", "interrupts",
  2136. &interrupts, sizeof(interrupts));
  2137. parent = (u32)mpic;
  2138. prom_setprop(i2c, "/u3@0,f8000000/i2c@f8001000", "interrupt-parent",
  2139. &parent, sizeof(parent));
  2140. }
  2141. #else
  2142. #define fixup_device_tree_pmac()
  2143. #endif
  2144. #ifdef CONFIG_PPC_EFIKA
  2145. /*
  2146. * The MPC5200 FEC driver requires an phy-handle property to tell it how
  2147. * to talk to the phy. If the phy-handle property is missing, then this
  2148. * function is called to add the appropriate nodes and link it to the
  2149. * ethernet node.
  2150. */
  2151. static void __init fixup_device_tree_efika_add_phy(void)
  2152. {
  2153. u32 node;
  2154. char prop[64];
  2155. int rv;
  2156. /* Check if /builtin/ethernet exists - bail if it doesn't */
  2157. node = call_prom("finddevice", 1, 1, ADDR("/builtin/ethernet"));
  2158. if (!PHANDLE_VALID(node))
  2159. return;
  2160. /* Check if the phy-handle property exists - bail if it does */
  2161. rv = prom_getprop(node, "phy-handle", prop, sizeof(prop));
  2162. if (!rv)
  2163. return;
  2164. /*
  2165. * At this point the ethernet device doesn't have a phy described.
  2166. * Now we need to add the missing phy node and linkage
  2167. */
  2168. /* Check for an MDIO bus node - if missing then create one */
  2169. node = call_prom("finddevice", 1, 1, ADDR("/builtin/mdio"));
  2170. if (!PHANDLE_VALID(node)) {
  2171. prom_printf("Adding Ethernet MDIO node\n");
  2172. call_prom("interpret", 1, 1,
  2173. " s\" /builtin\" find-device"
  2174. " new-device"
  2175. " 1 encode-int s\" #address-cells\" property"
  2176. " 0 encode-int s\" #size-cells\" property"
  2177. " s\" mdio\" device-name"
  2178. " s\" fsl,mpc5200b-mdio\" encode-string"
  2179. " s\" compatible\" property"
  2180. " 0xf0003000 0x400 reg"
  2181. " 0x2 encode-int"
  2182. " 0x5 encode-int encode+"
  2183. " 0x3 encode-int encode+"
  2184. " s\" interrupts\" property"
  2185. " finish-device");
  2186. };
  2187. /* Check for a PHY device node - if missing then create one and
  2188. * give it's phandle to the ethernet node */
  2189. node = call_prom("finddevice", 1, 1,
  2190. ADDR("/builtin/mdio/ethernet-phy"));
  2191. if (!PHANDLE_VALID(node)) {
  2192. prom_printf("Adding Ethernet PHY node\n");
  2193. call_prom("interpret", 1, 1,
  2194. " s\" /builtin/mdio\" find-device"
  2195. " new-device"
  2196. " s\" ethernet-phy\" device-name"
  2197. " 0x10 encode-int s\" reg\" property"
  2198. " my-self"
  2199. " ihandle>phandle"
  2200. " finish-device"
  2201. " s\" /builtin/ethernet\" find-device"
  2202. " encode-int"
  2203. " s\" phy-handle\" property"
  2204. " device-end");
  2205. }
  2206. }
  2207. static void __init fixup_device_tree_efika(void)
  2208. {
  2209. int sound_irq[3] = { 2, 2, 0 };
  2210. int bcomm_irq[3*16] = { 3,0,0, 3,1,0, 3,2,0, 3,3,0,
  2211. 3,4,0, 3,5,0, 3,6,0, 3,7,0,
  2212. 3,8,0, 3,9,0, 3,10,0, 3,11,0,
  2213. 3,12,0, 3,13,0, 3,14,0, 3,15,0 };
  2214. u32 node;
  2215. char prop[64];
  2216. int rv, len;
  2217. /* Check if we're really running on a EFIKA */
  2218. node = call_prom("finddevice", 1, 1, ADDR("/"));
  2219. if (!PHANDLE_VALID(node))
  2220. return;
  2221. rv = prom_getprop(node, "model", prop, sizeof(prop));
  2222. if (rv == PROM_ERROR)
  2223. return;
  2224. if (strcmp(prop, "EFIKA5K2"))
  2225. return;
  2226. prom_printf("Applying EFIKA device tree fixups\n");
  2227. /* Claiming to be 'chrp' is death */
  2228. node = call_prom("finddevice", 1, 1, ADDR("/"));
  2229. rv = prom_getprop(node, "device_type", prop, sizeof(prop));
  2230. if (rv != PROM_ERROR && (strcmp(prop, "chrp") == 0))
  2231. prom_setprop(node, "/", "device_type", "efika", sizeof("efika"));
  2232. /* CODEGEN,description is exposed in /proc/cpuinfo so
  2233. fix that too */
  2234. rv = prom_getprop(node, "CODEGEN,description", prop, sizeof(prop));
  2235. if (rv != PROM_ERROR && (strstr(prop, "CHRP")))
  2236. prom_setprop(node, "/", "CODEGEN,description",
  2237. "Efika 5200B PowerPC System",
  2238. sizeof("Efika 5200B PowerPC System"));
  2239. /* Fixup bestcomm interrupts property */
  2240. node = call_prom("finddevice", 1, 1, ADDR("/builtin/bestcomm"));
  2241. if (PHANDLE_VALID(node)) {
  2242. len = prom_getproplen(node, "interrupts");
  2243. if (len == 12) {
  2244. prom_printf("Fixing bestcomm interrupts property\n");
  2245. prom_setprop(node, "/builtin/bestcom", "interrupts",
  2246. bcomm_irq, sizeof(bcomm_irq));
  2247. }
  2248. }
  2249. /* Fixup sound interrupts property */
  2250. node = call_prom("finddevice", 1, 1, ADDR("/builtin/sound"));
  2251. if (PHANDLE_VALID(node)) {
  2252. rv = prom_getprop(node, "interrupts", prop, sizeof(prop));
  2253. if (rv == PROM_ERROR) {
  2254. prom_printf("Adding sound interrupts property\n");
  2255. prom_setprop(node, "/builtin/sound", "interrupts",
  2256. sound_irq, sizeof(sound_irq));
  2257. }
  2258. }
  2259. /* Make sure ethernet phy-handle property exists */
  2260. fixup_device_tree_efika_add_phy();
  2261. }
  2262. #else
  2263. #define fixup_device_tree_efika()
  2264. #endif
  2265. static void __init fixup_device_tree(void)
  2266. {
  2267. fixup_device_tree_maple();
  2268. fixup_device_tree_maple_memory_controller();
  2269. fixup_device_tree_chrp();
  2270. fixup_device_tree_pmac();
  2271. fixup_device_tree_efika();
  2272. }
  2273. static void __init prom_find_boot_cpu(void)
  2274. {
  2275. __be32 rval;
  2276. ihandle prom_cpu;
  2277. phandle cpu_pkg;
  2278. rval = 0;
  2279. if (prom_getprop(prom.chosen, "cpu", &rval, sizeof(rval)) <= 0)
  2280. return;
  2281. prom_cpu = be32_to_cpu(rval);
  2282. cpu_pkg = call_prom("instance-to-package", 1, 1, prom_cpu);
  2283. prom_getprop(cpu_pkg, "reg", &rval, sizeof(rval));
  2284. prom.cpu = be32_to_cpu(rval);
  2285. prom_debug("Booting CPU hw index = %lu\n", prom.cpu);
  2286. }
  2287. static void __init prom_check_initrd(unsigned long r3, unsigned long r4)
  2288. {
  2289. #ifdef CONFIG_BLK_DEV_INITRD
  2290. if (r3 && r4 && r4 != 0xdeadbeef) {
  2291. __be64 val;
  2292. prom_initrd_start = is_kernel_addr(r3) ? __pa(r3) : r3;
  2293. prom_initrd_end = prom_initrd_start + r4;
  2294. val = cpu_to_be64(prom_initrd_start);
  2295. prom_setprop(prom.chosen, "/chosen", "linux,initrd-start",
  2296. &val, sizeof(val));
  2297. val = cpu_to_be64(prom_initrd_end);
  2298. prom_setprop(prom.chosen, "/chosen", "linux,initrd-end",
  2299. &val, sizeof(val));
  2300. reserve_mem(prom_initrd_start,
  2301. prom_initrd_end - prom_initrd_start);
  2302. prom_debug("initrd_start=0x%x\n", prom_initrd_start);
  2303. prom_debug("initrd_end=0x%x\n", prom_initrd_end);
  2304. }
  2305. #endif /* CONFIG_BLK_DEV_INITRD */
  2306. }
  2307. #ifdef CONFIG_PPC64
  2308. #ifdef CONFIG_RELOCATABLE
  2309. static void reloc_toc(void)
  2310. {
  2311. }
  2312. static void unreloc_toc(void)
  2313. {
  2314. }
  2315. #else
  2316. static void __reloc_toc(unsigned long offset, unsigned long nr_entries)
  2317. {
  2318. unsigned long i;
  2319. unsigned long *toc_entry;
  2320. /* Get the start of the TOC by using r2 directly. */
  2321. asm volatile("addi %0,2,-0x8000" : "=b" (toc_entry));
  2322. for (i = 0; i < nr_entries; i++) {
  2323. *toc_entry = *toc_entry + offset;
  2324. toc_entry++;
  2325. }
  2326. }
  2327. static void reloc_toc(void)
  2328. {
  2329. unsigned long offset = reloc_offset();
  2330. unsigned long nr_entries =
  2331. (__prom_init_toc_end - __prom_init_toc_start) / sizeof(long);
  2332. __reloc_toc(offset, nr_entries);
  2333. mb();
  2334. }
  2335. static void unreloc_toc(void)
  2336. {
  2337. unsigned long offset = reloc_offset();
  2338. unsigned long nr_entries =
  2339. (__prom_init_toc_end - __prom_init_toc_start) / sizeof(long);
  2340. mb();
  2341. __reloc_toc(-offset, nr_entries);
  2342. }
  2343. #endif
  2344. #endif
  2345. /*
  2346. * We enter here early on, when the Open Firmware prom is still
  2347. * handling exceptions and the MMU hash table for us.
  2348. */
  2349. unsigned long __init prom_init(unsigned long r3, unsigned long r4,
  2350. unsigned long pp,
  2351. unsigned long r6, unsigned long r7,
  2352. unsigned long kbase)
  2353. {
  2354. unsigned long hdr;
  2355. #ifdef CONFIG_PPC32
  2356. unsigned long offset = reloc_offset();
  2357. reloc_got2(offset);
  2358. #else
  2359. reloc_toc();
  2360. #endif
  2361. /*
  2362. * First zero the BSS
  2363. */
  2364. memset(&__bss_start, 0, __bss_stop - __bss_start);
  2365. /*
  2366. * Init interface to Open Firmware, get some node references,
  2367. * like /chosen
  2368. */
  2369. prom_init_client_services(pp);
  2370. /*
  2371. * See if this OF is old enough that we need to do explicit maps
  2372. * and other workarounds
  2373. */
  2374. prom_find_mmu();
  2375. /*
  2376. * Init prom stdout device
  2377. */
  2378. prom_init_stdout();
  2379. prom_printf("Preparing to boot %s", linux_banner);
  2380. /*
  2381. * Get default machine type. At this point, we do not differentiate
  2382. * between pSeries SMP and pSeries LPAR
  2383. */
  2384. of_platform = prom_find_machine_type();
  2385. prom_printf("Detected machine type: %x\n", of_platform);
  2386. #ifndef CONFIG_NONSTATIC_KERNEL
  2387. /* Bail if this is a kdump kernel. */
  2388. if (PHYSICAL_START > 0)
  2389. prom_panic("Error: You can't boot a kdump kernel from OF!\n");
  2390. #endif
  2391. /*
  2392. * Check for an initrd
  2393. */
  2394. prom_check_initrd(r3, r4);
  2395. #if defined(CONFIG_PPC_PSERIES) || defined(CONFIG_PPC_POWERNV)
  2396. /*
  2397. * On pSeries, inform the firmware about our capabilities
  2398. */
  2399. if (of_platform == PLATFORM_PSERIES ||
  2400. of_platform == PLATFORM_PSERIES_LPAR)
  2401. prom_send_capabilities();
  2402. #endif
  2403. /*
  2404. * Copy the CPU hold code
  2405. */
  2406. if (of_platform != PLATFORM_POWERMAC)
  2407. copy_and_flush(0, kbase, 0x100, 0);
  2408. /*
  2409. * Do early parsing of command line
  2410. */
  2411. early_cmdline_parse();
  2412. /*
  2413. * Initialize memory management within prom_init
  2414. */
  2415. prom_init_mem();
  2416. /*
  2417. * Determine which cpu is actually running right _now_
  2418. */
  2419. prom_find_boot_cpu();
  2420. /*
  2421. * Initialize display devices
  2422. */
  2423. prom_check_displays();
  2424. #if defined(CONFIG_PPC64) && defined(__BIG_ENDIAN__)
  2425. /*
  2426. * Initialize IOMMU (TCE tables) on pSeries. Do that before anything else
  2427. * that uses the allocator, we need to make sure we get the top of memory
  2428. * available for us here...
  2429. */
  2430. if (of_platform == PLATFORM_PSERIES)
  2431. prom_initialize_tce_table();
  2432. #endif
  2433. /*
  2434. * On non-powermacs, try to instantiate RTAS. PowerMacs don't
  2435. * have a usable RTAS implementation.
  2436. */
  2437. if (of_platform != PLATFORM_POWERMAC &&
  2438. of_platform != PLATFORM_OPAL)
  2439. prom_instantiate_rtas();
  2440. #ifdef CONFIG_PPC_POWERNV
  2441. if (of_platform == PLATFORM_OPAL)
  2442. prom_instantiate_opal();
  2443. #endif /* CONFIG_PPC_POWERNV */
  2444. #ifdef CONFIG_PPC64
  2445. /* instantiate sml */
  2446. prom_instantiate_sml();
  2447. #endif
  2448. /*
  2449. * On non-powermacs, put all CPUs in spin-loops.
  2450. *
  2451. * PowerMacs use a different mechanism to spin CPUs
  2452. *
  2453. * (This must be done after instanciating RTAS)
  2454. */
  2455. if (of_platform != PLATFORM_POWERMAC &&
  2456. of_platform != PLATFORM_OPAL)
  2457. prom_hold_cpus();
  2458. /*
  2459. * Fill in some infos for use by the kernel later on
  2460. */
  2461. if (prom_memory_limit) {
  2462. __be64 val = cpu_to_be64(prom_memory_limit);
  2463. prom_setprop(prom.chosen, "/chosen", "linux,memory-limit",
  2464. &val, sizeof(val));
  2465. }
  2466. #ifdef CONFIG_PPC64
  2467. if (prom_iommu_off)
  2468. prom_setprop(prom.chosen, "/chosen", "linux,iommu-off",
  2469. NULL, 0);
  2470. if (prom_iommu_force_on)
  2471. prom_setprop(prom.chosen, "/chosen", "linux,iommu-force-on",
  2472. NULL, 0);
  2473. if (prom_tce_alloc_start) {
  2474. prom_setprop(prom.chosen, "/chosen", "linux,tce-alloc-start",
  2475. &prom_tce_alloc_start,
  2476. sizeof(prom_tce_alloc_start));
  2477. prom_setprop(prom.chosen, "/chosen", "linux,tce-alloc-end",
  2478. &prom_tce_alloc_end,
  2479. sizeof(prom_tce_alloc_end));
  2480. }
  2481. #endif
  2482. /*
  2483. * Fixup any known bugs in the device-tree
  2484. */
  2485. fixup_device_tree();
  2486. /*
  2487. * Now finally create the flattened device-tree
  2488. */
  2489. prom_printf("copying OF device tree...\n");
  2490. flatten_device_tree();
  2491. /*
  2492. * in case stdin is USB and still active on IBM machines...
  2493. * Unfortunately quiesce crashes on some powermacs if we have
  2494. * closed stdin already (in particular the powerbook 101). It
  2495. * appears that the OPAL version of OFW doesn't like it either.
  2496. */
  2497. if (of_platform != PLATFORM_POWERMAC &&
  2498. of_platform != PLATFORM_OPAL)
  2499. prom_close_stdin();
  2500. /*
  2501. * Call OF "quiesce" method to shut down pending DMA's from
  2502. * devices etc...
  2503. */
  2504. prom_printf("Quiescing Open Firmware ...\n");
  2505. call_prom("quiesce", 0, 0);
  2506. /*
  2507. * And finally, call the kernel passing it the flattened device
  2508. * tree and NULL as r5, thus triggering the new entry point which
  2509. * is common to us and kexec
  2510. */
  2511. hdr = dt_header_start;
  2512. /* Don't print anything after quiesce under OPAL, it crashes OFW */
  2513. if (of_platform != PLATFORM_OPAL) {
  2514. prom_printf("Booting Linux via __start() ...\n");
  2515. prom_debug("->dt_header_start=0x%x\n", hdr);
  2516. }
  2517. #ifdef CONFIG_PPC32
  2518. reloc_got2(-offset);
  2519. #else
  2520. unreloc_toc();
  2521. #endif
  2522. #ifdef CONFIG_PPC_EARLY_DEBUG_OPAL
  2523. /* OPAL early debug gets the OPAL base & entry in r8 and r9 */
  2524. __start(hdr, kbase, 0, 0, 0,
  2525. prom_opal_base, prom_opal_entry);
  2526. #else
  2527. __start(hdr, kbase, 0, 0, 0, 0, 0);
  2528. #endif
  2529. return 0;
  2530. }