sclp.S 8.1 KB

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  1. /*
  2. * Mini SCLP driver.
  3. *
  4. * Copyright IBM Corp. 2004, 2009
  5. *
  6. * Author(s): Peter Oberparleiter <Peter.Oberparleiter@de.ibm.com>,
  7. * Heiko Carstens <heiko.carstens@de.ibm.com>,
  8. *
  9. */
  10. #include <linux/linkage.h>
  11. LC_EXT_NEW_PSW = 0x58 # addr of ext int handler
  12. LC_EXT_NEW_PSW_64 = 0x1b0 # addr of ext int handler 64 bit
  13. LC_EXT_INT_PARAM = 0x80 # addr of ext int parameter
  14. LC_EXT_INT_CODE = 0x86 # addr of ext int code
  15. LC_AR_MODE_ID = 0xa3
  16. #
  17. # Subroutine which waits synchronously until either an external interruption
  18. # or a timeout occurs.
  19. #
  20. # Parameters:
  21. # R2 = 0 for no timeout, non-zero for timeout in (approximated) seconds
  22. #
  23. # Returns:
  24. # R2 = 0 on interrupt, 2 on timeout
  25. # R3 = external interruption parameter if R2=0
  26. #
  27. _sclp_wait_int:
  28. stm %r6,%r15,24(%r15) # save registers
  29. basr %r13,0 # get base register
  30. .LbaseS1:
  31. ahi %r15,-96 # create stack frame
  32. la %r8,LC_EXT_NEW_PSW # register int handler
  33. la %r9,.LextpswS1-.LbaseS1(%r13)
  34. #ifdef CONFIG_64BIT
  35. tm LC_AR_MODE_ID,1
  36. jno .Lesa1
  37. la %r8,LC_EXT_NEW_PSW_64 # register int handler 64 bit
  38. la %r9,.LextpswS1_64-.LbaseS1(%r13)
  39. .Lesa1:
  40. #endif
  41. mvc .LoldpswS1-.LbaseS1(16,%r13),0(%r8)
  42. mvc 0(16,%r8),0(%r9)
  43. #ifdef CONFIG_64BIT
  44. epsw %r6,%r7 # set current addressing mode
  45. nill %r6,0x1 # in new psw (31 or 64 bit mode)
  46. nilh %r7,0x8000
  47. stm %r6,%r7,0(%r8)
  48. #endif
  49. lhi %r6,0x0200 # cr mask for ext int (cr0.54)
  50. ltr %r2,%r2
  51. jz .LsetctS1
  52. ahi %r6,0x0800 # cr mask for clock int (cr0.52)
  53. stck .LtimeS1-.LbaseS1(%r13) # initiate timeout
  54. al %r2,.LtimeS1-.LbaseS1(%r13)
  55. st %r2,.LtimeS1-.LbaseS1(%r13)
  56. sckc .LtimeS1-.LbaseS1(%r13)
  57. .LsetctS1:
  58. stctl %c0,%c0,.LctlS1-.LbaseS1(%r13) # enable required interrupts
  59. l %r0,.LctlS1-.LbaseS1(%r13)
  60. lhi %r1,~(0x200 | 0x800) # clear old values
  61. nr %r1,%r0
  62. or %r1,%r6 # set new value
  63. st %r1,.LctlS1-.LbaseS1(%r13)
  64. lctl %c0,%c0,.LctlS1-.LbaseS1(%r13)
  65. st %r0,.LctlS1-.LbaseS1(%r13)
  66. lhi %r2,2 # return code for timeout
  67. .LloopS1:
  68. lpsw .LwaitpswS1-.LbaseS1(%r13) # wait until interrupt
  69. .LwaitS1:
  70. lh %r7,LC_EXT_INT_CODE
  71. chi %r7,0x1004 # timeout?
  72. je .LtimeoutS1
  73. chi %r7,0x2401 # service int?
  74. jne .LloopS1
  75. sr %r2,%r2
  76. l %r3,LC_EXT_INT_PARAM
  77. .LtimeoutS1:
  78. lctl %c0,%c0,.LctlS1-.LbaseS1(%r13) # restore interrupt setting
  79. # restore old handler
  80. mvc 0(16,%r8),.LoldpswS1-.LbaseS1(%r13)
  81. lm %r6,%r15,120(%r15) # restore registers
  82. br %r14 # return to caller
  83. .align 8
  84. .LoldpswS1:
  85. .long 0, 0, 0, 0 # old ext int PSW
  86. .LextpswS1:
  87. .long 0x00080000, 0x80000000+.LwaitS1 # PSW to handle ext int
  88. #ifdef CONFIG_64BIT
  89. .LextpswS1_64:
  90. .quad 0, .LwaitS1 # PSW to handle ext int, 64 bit
  91. #endif
  92. .LwaitpswS1:
  93. .long 0x010a0000, 0x00000000+.LloopS1 # PSW to wait for ext int
  94. .LtimeS1:
  95. .quad 0 # current time
  96. .LctlS1:
  97. .long 0 # CT0 contents
  98. #
  99. # Subroutine to synchronously issue a service call.
  100. #
  101. # Parameters:
  102. # R2 = command word
  103. # R3 = sccb address
  104. #
  105. # Returns:
  106. # R2 = 0 on success, 1 on failure
  107. # R3 = sccb response code if R2 = 0
  108. #
  109. _sclp_servc:
  110. stm %r6,%r15,24(%r15) # save registers
  111. ahi %r15,-96 # create stack frame
  112. lr %r6,%r2 # save command word
  113. lr %r7,%r3 # save sccb address
  114. .LretryS2:
  115. lhi %r2,1 # error return code
  116. .insn rre,0xb2200000,%r6,%r7 # servc
  117. brc 1,.LendS2 # exit if not operational
  118. brc 8,.LnotbusyS2 # go on if not busy
  119. sr %r2,%r2 # wait until no longer busy
  120. bras %r14,_sclp_wait_int
  121. j .LretryS2 # retry
  122. .LnotbusyS2:
  123. sr %r2,%r2 # wait until result
  124. bras %r14,_sclp_wait_int
  125. sr %r2,%r2
  126. lh %r3,6(%r7)
  127. .LendS2:
  128. lm %r6,%r15,120(%r15) # restore registers
  129. br %r14
  130. #
  131. # Subroutine to set up the SCLP interface.
  132. #
  133. # Parameters:
  134. # R2 = 0 to activate, non-zero to deactivate
  135. #
  136. # Returns:
  137. # R2 = 0 on success, non-zero on failure
  138. #
  139. _sclp_setup:
  140. stm %r6,%r15,24(%r15) # save registers
  141. ahi %r15,-96 # create stack frame
  142. basr %r13,0 # get base register
  143. .LbaseS3:
  144. l %r6,.LsccbS0-.LbaseS3(%r13) # prepare init mask sccb
  145. mvc 0(.LinitendS3-.LinitsccbS3,%r6),.LinitsccbS3-.LbaseS3(%r13)
  146. ltr %r2,%r2 # initialization?
  147. jz .LdoinitS3 # go ahead
  148. # clear masks
  149. xc .LinitmaskS3-.LinitsccbS3(8,%r6),.LinitmaskS3-.LinitsccbS3(%r6)
  150. .LdoinitS3:
  151. l %r2,.LwritemaskS3-.LbaseS3(%r13)# get command word
  152. lr %r3,%r6 # get sccb address
  153. bras %r14,_sclp_servc # issue service call
  154. ltr %r2,%r2 # servc successful?
  155. jnz .LerrorS3
  156. chi %r3,0x20 # write mask successful?
  157. jne .LerrorS3
  158. # check masks
  159. la %r2,.LinitmaskS3-.LinitsccbS3(%r6)
  160. l %r1,0(%r2) # receive mask ok?
  161. n %r1,12(%r2)
  162. cl %r1,0(%r2)
  163. jne .LerrorS3
  164. l %r1,4(%r2) # send mask ok?
  165. n %r1,8(%r2)
  166. cl %r1,4(%r2)
  167. sr %r2,%r2
  168. je .LendS3
  169. .LerrorS3:
  170. lhi %r2,1 # error return code
  171. .LendS3:
  172. lm %r6,%r15,120(%r15) # restore registers
  173. br %r14
  174. .LwritemaskS3:
  175. .long 0x00780005 # SCLP command for write mask
  176. .LinitsccbS3:
  177. .word .LinitendS3-.LinitsccbS3
  178. .byte 0,0,0,0
  179. .word 0
  180. .word 0
  181. .word 4
  182. .LinitmaskS3:
  183. .long 0x80000000
  184. .long 0x40000000
  185. .long 0
  186. .long 0
  187. .LinitendS3:
  188. #
  189. # Subroutine which prints a given text to the SCLP console.
  190. #
  191. # Parameters:
  192. # R2 = address of nil-terminated ASCII text
  193. #
  194. # Returns:
  195. # R2 = 0 on success, 1 on failure
  196. #
  197. _sclp_print:
  198. stm %r6,%r15,24(%r15) # save registers
  199. ahi %r15,-96 # create stack frame
  200. basr %r13,0 # get base register
  201. .LbaseS4:
  202. l %r8,.LsccbS0-.LbaseS4(%r13) # prepare write data sccb
  203. mvc 0(.LmtoS4-.LwritesccbS4,%r8),.LwritesccbS4-.LbaseS4(%r13)
  204. la %r7,.LmtoS4-.LwritesccbS4(%r8) # current mto addr
  205. sr %r0,%r0
  206. l %r10,.Lascebc-.LbaseS4(%r13) # address of translation table
  207. .LinitmtoS4:
  208. # initialize mto
  209. mvc 0(.LmtoendS4-.LmtoS4,%r7),.LmtoS4-.LbaseS4(%r13)
  210. lhi %r6,.LmtoendS4-.LmtoS4 # current mto length
  211. .LloopS4:
  212. ic %r0,0(%r2) # get character
  213. ahi %r2,1
  214. ltr %r0,%r0 # end of string?
  215. jz .LfinalizemtoS4
  216. chi %r0,0x15 # end of line (NL)?
  217. jz .LfinalizemtoS4
  218. stc %r0,0(%r6,%r7) # copy to mto
  219. la %r11,0(%r6,%r7)
  220. tr 0(1,%r11),0(%r10) # translate to EBCDIC
  221. ahi %r6,1
  222. j .LloopS4
  223. .LfinalizemtoS4:
  224. sth %r6,0(%r7) # update mto length
  225. lh %r9,.LmdbS4-.LwritesccbS4(%r8) # update mdb length
  226. ar %r9,%r6
  227. sth %r9,.LmdbS4-.LwritesccbS4(%r8)
  228. lh %r9,.LevbufS4-.LwritesccbS4(%r8)# update evbuf length
  229. ar %r9,%r6
  230. sth %r9,.LevbufS4-.LwritesccbS4(%r8)
  231. lh %r9,0(%r8) # update sccb length
  232. ar %r9,%r6
  233. sth %r9,0(%r8)
  234. ar %r7,%r6 # update current mto address
  235. ltr %r0,%r0 # more characters?
  236. jnz .LinitmtoS4
  237. l %r2,.LwritedataS4-.LbaseS4(%r13)# write data
  238. lr %r3,%r8
  239. bras %r14,_sclp_servc
  240. ltr %r2,%r2 # servc successful?
  241. jnz .LendS4
  242. chi %r3,0x20 # write data successful?
  243. je .LendS4
  244. lhi %r2,1 # error return code
  245. .LendS4:
  246. lm %r6,%r15,120(%r15) # restore registers
  247. br %r14
  248. #
  249. # Function which prints a given text to the SCLP console.
  250. #
  251. # Parameters:
  252. # R2 = address of nil-terminated ASCII text
  253. #
  254. # Returns:
  255. # R2 = 0 on success, 1 on failure
  256. #
  257. ENTRY(_sclp_print_early)
  258. stm %r6,%r15,24(%r15) # save registers
  259. ahi %r15,-96 # create stack frame
  260. #ifdef CONFIG_64BIT
  261. tm LC_AR_MODE_ID,1
  262. jno .Lesa2
  263. ahi %r15,-80
  264. stmh %r6,%r15,96(%r15) # store upper register halves
  265. .Lesa2:
  266. #endif
  267. lr %r10,%r2 # save string pointer
  268. lhi %r2,0
  269. bras %r14,_sclp_setup # enable console
  270. ltr %r2,%r2
  271. jnz .LendS5
  272. lr %r2,%r10
  273. bras %r14,_sclp_print # print string
  274. ltr %r2,%r2
  275. jnz .LendS5
  276. lhi %r2,1
  277. bras %r14,_sclp_setup # disable console
  278. .LendS5:
  279. #ifdef CONFIG_64BIT
  280. tm LC_AR_MODE_ID,1
  281. jno .Lesa3
  282. lmh %r6,%r15,96(%r15) # store upper register halves
  283. ahi %r15,80
  284. .Lesa3:
  285. #endif
  286. lm %r6,%r15,120(%r15) # restore registers
  287. br %r14
  288. .LwritedataS4:
  289. .long 0x00760005 # SCLP command for write data
  290. .LwritesccbS4:
  291. # sccb
  292. .word .LmtoS4-.LwritesccbS4
  293. .byte 0
  294. .byte 0,0,0
  295. .word 0
  296. # evbuf
  297. .LevbufS4:
  298. .word .LmtoS4-.LevbufS4
  299. .byte 0x02
  300. .byte 0
  301. .word 0
  302. .LmdbS4:
  303. # mdb
  304. .word .LmtoS4-.LmdbS4
  305. .word 1
  306. .long 0xd4c4c240
  307. .long 1
  308. # go
  309. .LgoS4:
  310. .word .LmtoS4-.LgoS4
  311. .word 1
  312. .long 0
  313. .byte 0,0,0,0,0,0,0,0
  314. .byte 0,0,0
  315. .byte 0
  316. .byte 0,0,0,0,0,0,0
  317. .byte 0
  318. .word 0
  319. .byte 0,0,0,0,0,0,0,0,0,0
  320. .byte 0,0,0,0,0,0,0,0
  321. .byte 0,0,0,0,0,0,0,0
  322. .LmtoS4:
  323. .word .LmtoendS4-.LmtoS4
  324. .word 4
  325. .word 0x1000
  326. .byte 0
  327. .byte 0,0,0
  328. .LmtoendS4:
  329. # Global constants
  330. .LsccbS0:
  331. .long _sclp_work_area
  332. .Lascebc:
  333. .long _ascebc
  334. .section .data,"aw",@progbits
  335. .balign 4096
  336. _sclp_work_area:
  337. .fill 4096
  338. .previous