vfphw.S 6.6 KB

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  1. /*
  2. * linux/arch/arm/vfp/vfphw.S
  3. *
  4. * Copyright (C) 2004 ARM Limited.
  5. * Written by Deep Blue Solutions Limited.
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License version 2 as
  9. * published by the Free Software Foundation.
  10. *
  11. * This code is called from the kernel's undefined instruction trap.
  12. * r9 holds the return address for successful handling.
  13. * lr holds the return address for unrecognised instructions.
  14. * r10 points at the start of the private FP workspace in the thread structure
  15. * sp points to a struct pt_regs (as defined in include/asm/proc/ptrace.h)
  16. */
  17. #include <asm/thread_info.h>
  18. #include <asm/vfpmacros.h>
  19. #include "../kernel/entry-header.S"
  20. .macro DBGSTR, str
  21. #ifdef DEBUG
  22. stmfd sp!, {r0-r3, ip, lr}
  23. add r0, pc, #4
  24. bl printk
  25. b 1f
  26. .asciz "<7>VFP: \str\n"
  27. .balign 4
  28. 1: ldmfd sp!, {r0-r3, ip, lr}
  29. #endif
  30. .endm
  31. .macro DBGSTR1, str, arg
  32. #ifdef DEBUG
  33. stmfd sp!, {r0-r3, ip, lr}
  34. mov r1, \arg
  35. add r0, pc, #4
  36. bl printk
  37. b 1f
  38. .asciz "<7>VFP: \str\n"
  39. .balign 4
  40. 1: ldmfd sp!, {r0-r3, ip, lr}
  41. #endif
  42. .endm
  43. .macro DBGSTR3, str, arg1, arg2, arg3
  44. #ifdef DEBUG
  45. stmfd sp!, {r0-r3, ip, lr}
  46. mov r3, \arg3
  47. mov r2, \arg2
  48. mov r1, \arg1
  49. add r0, pc, #4
  50. bl printk
  51. b 1f
  52. .asciz "<7>VFP: \str\n"
  53. .balign 4
  54. 1: ldmfd sp!, {r0-r3, ip, lr}
  55. #endif
  56. .endm
  57. @ VFP hardware support entry point.
  58. @
  59. @ r0 = faulted instruction
  60. @ r2 = faulted PC+4
  61. @ r9 = successful return
  62. @ r10 = vfp_state union
  63. @ r11 = CPU number
  64. @ lr = failure return
  65. ENTRY(vfp_support_entry)
  66. DBGSTR3 "instr %08x pc %08x state %p", r0, r2, r10
  67. VFPFMRX r1, FPEXC @ Is the VFP enabled?
  68. DBGSTR1 "fpexc %08x", r1
  69. tst r1, #FPEXC_EN
  70. bne look_for_VFP_exceptions @ VFP is already enabled
  71. DBGSTR1 "enable %x", r10
  72. ldr r3, last_VFP_context_address
  73. orr r1, r1, #FPEXC_EN @ user FPEXC has the enable bit set
  74. ldr r4, [r3, r11, lsl #2] @ last_VFP_context pointer
  75. bic r5, r1, #FPEXC_EX @ make sure exceptions are disabled
  76. cmp r4, r10
  77. beq check_for_exception @ we are returning to the same
  78. @ process, so the registers are
  79. @ still there. In this case, we do
  80. @ not want to drop a pending exception.
  81. VFPFMXR FPEXC, r5 @ enable VFP, disable any pending
  82. @ exceptions, so we can get at the
  83. @ rest of it
  84. #ifndef CONFIG_SMP
  85. @ Save out the current registers to the old thread state
  86. @ No need for SMP since this is not done lazily
  87. DBGSTR1 "save old state %p", r4
  88. cmp r4, #0
  89. beq no_old_VFP_process
  90. VFPFSTMIA r4, r5 @ save the working registers
  91. VFPFMRX r5, FPSCR @ current status
  92. tst r1, #FPEXC_EX @ is there additional state to save?
  93. VFPFMRX r6, FPINST, NE @ FPINST (only if FPEXC.EX is set)
  94. tstne r1, #FPEXC_FP2V @ is there an FPINST2 to read?
  95. VFPFMRX r8, FPINST2, NE @ FPINST2 if needed (and present)
  96. stmia r4, {r1, r5, r6, r8} @ save FPEXC, FPSCR, FPINST, FPINST2
  97. @ and point r4 at the word at the
  98. @ start of the register dump
  99. #endif
  100. no_old_VFP_process:
  101. DBGSTR1 "load state %p", r10
  102. str r10, [r3, r11, lsl #2] @ update the last_VFP_context pointer
  103. @ Load the saved state back into the VFP
  104. VFPFLDMIA r10, r5 @ reload the working registers while
  105. @ FPEXC is in a safe state
  106. ldmia r10, {r1, r5, r6, r8} @ load FPEXC, FPSCR, FPINST, FPINST2
  107. tst r1, #FPEXC_EX @ is there additional state to restore?
  108. VFPFMXR FPINST, r6, NE @ restore FPINST (only if FPEXC.EX is set)
  109. tstne r1, #FPEXC_FP2V @ is there an FPINST2 to write?
  110. VFPFMXR FPINST2, r8, NE @ FPINST2 if needed (and present)
  111. VFPFMXR FPSCR, r5 @ restore status
  112. check_for_exception:
  113. tst r1, #FPEXC_EX
  114. bne process_exception @ might as well handle the pending
  115. @ exception before retrying branch
  116. @ out before setting an FPEXC that
  117. @ stops us reading stuff
  118. VFPFMXR FPEXC, r1 @ restore FPEXC last
  119. sub r2, r2, #4
  120. str r2, [sp, #S_PC] @ retry the instruction
  121. mov pc, r9 @ we think we have handled things
  122. look_for_VFP_exceptions:
  123. @ Check for synchronous or asynchronous exception
  124. tst r1, #FPEXC_EX | FPEXC_DEX
  125. bne process_exception
  126. @ On some implementations of the VFP subarch 1, setting FPSCR.IXE
  127. @ causes all the CDP instructions to be bounced synchronously without
  128. @ setting the FPEXC.EX bit
  129. VFPFMRX r5, FPSCR
  130. tst r5, #FPSCR_IXE
  131. bne process_exception
  132. @ Fall into hand on to next handler - appropriate coproc instr
  133. @ not recognised by VFP
  134. DBGSTR "not VFP"
  135. mov pc, lr
  136. process_exception:
  137. DBGSTR "bounce"
  138. mov r2, sp @ nothing stacked - regdump is at TOS
  139. mov lr, r9 @ setup for a return to the user code.
  140. @ Now call the C code to package up the bounce to the support code
  141. @ r0 holds the trigger instruction
  142. @ r1 holds the FPEXC value
  143. @ r2 pointer to register dump
  144. b VFP_bounce @ we have handled this - the support
  145. @ code will raise an exception if
  146. @ required. If not, the user code will
  147. @ retry the faulted instruction
  148. ENDPROC(vfp_support_entry)
  149. #ifdef CONFIG_SMP
  150. ENTRY(vfp_save_state)
  151. @ Save the current VFP state
  152. @ r0 - save location
  153. @ r1 - FPEXC
  154. DBGSTR1 "save VFP state %p", r0
  155. VFPFSTMIA r0, r2 @ save the working registers
  156. VFPFMRX r2, FPSCR @ current status
  157. tst r1, #FPEXC_EX @ is there additional state to save?
  158. VFPFMRX r3, FPINST, NE @ FPINST (only if FPEXC.EX is set)
  159. tstne r1, #FPEXC_FP2V @ is there an FPINST2 to read?
  160. VFPFMRX r12, FPINST2, NE @ FPINST2 if needed (and present)
  161. stmia r0, {r1, r2, r3, r12} @ save FPEXC, FPSCR, FPINST, FPINST2
  162. mov pc, lr
  163. ENDPROC(vfp_save_state)
  164. #endif
  165. last_VFP_context_address:
  166. .word last_VFP_context
  167. ENTRY(vfp_get_float)
  168. add pc, pc, r0, lsl #3
  169. mov r0, r0
  170. .irp dr,0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15
  171. mrc p10, 0, r0, c\dr, c0, 0 @ fmrs r0, s0
  172. mov pc, lr
  173. mrc p10, 0, r0, c\dr, c0, 4 @ fmrs r0, s1
  174. mov pc, lr
  175. .endr
  176. ENDPROC(vfp_get_float)
  177. ENTRY(vfp_put_float)
  178. add pc, pc, r1, lsl #3
  179. mov r0, r0
  180. .irp dr,0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15
  181. mcr p10, 0, r0, c\dr, c0, 0 @ fmsr r0, s0
  182. mov pc, lr
  183. mcr p10, 0, r0, c\dr, c0, 4 @ fmsr r0, s1
  184. mov pc, lr
  185. .endr
  186. ENDPROC(vfp_put_float)
  187. ENTRY(vfp_get_double)
  188. add pc, pc, r0, lsl #3
  189. mov r0, r0
  190. .irp dr,0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15
  191. fmrrd r0, r1, d\dr
  192. mov pc, lr
  193. .endr
  194. #ifdef CONFIG_VFPv3
  195. @ d16 - d31 registers
  196. .irp dr,0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15
  197. mrrc p11, 3, r0, r1, c\dr @ fmrrd r0, r1, d\dr
  198. mov pc, lr
  199. .endr
  200. #endif
  201. @ virtual register 16 (or 32 if VFPv3) for compare with zero
  202. mov r0, #0
  203. mov r1, #0
  204. mov pc, lr
  205. ENDPROC(vfp_get_double)
  206. ENTRY(vfp_put_double)
  207. add pc, pc, r2, lsl #3
  208. mov r0, r0
  209. .irp dr,0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15
  210. fmdrr d\dr, r0, r1
  211. mov pc, lr
  212. .endr
  213. #ifdef CONFIG_VFPv3
  214. @ d16 - d31 registers
  215. .irp dr,0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15
  216. mcrr p11, 3, r1, r2, c\dr @ fmdrr r1, r2, d\dr
  217. mov pc, lr
  218. .endr
  219. #endif
  220. ENDPROC(vfp_put_double)