lite5200_pm.c 5.5 KB

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  1. #include <linux/init.h>
  2. #include <linux/suspend.h>
  3. #include <asm/io.h>
  4. #include <asm/time.h>
  5. #include <asm/mpc52xx.h>
  6. #include "mpc52xx_pic.h"
  7. /* defined in lite5200_sleep.S and only used here */
  8. extern void lite5200_low_power(void __iomem *sram, void __iomem *mbar);
  9. static struct mpc52xx_cdm __iomem *cdm;
  10. static struct mpc52xx_intr __iomem *pic;
  11. static struct mpc52xx_sdma __iomem *bes;
  12. static struct mpc52xx_xlb __iomem *xlb;
  13. static struct mpc52xx_gpio __iomem *gps;
  14. static struct mpc52xx_gpio_wkup __iomem *gpw;
  15. static void __iomem *sram;
  16. static const int sram_size = 0x4000; /* 16 kBytes */
  17. static void __iomem *mbar;
  18. static suspend_state_t lite5200_pm_target_state;
  19. static int lite5200_pm_valid(suspend_state_t state)
  20. {
  21. switch (state) {
  22. case PM_SUSPEND_STANDBY:
  23. case PM_SUSPEND_MEM:
  24. return 1;
  25. default:
  26. return 0;
  27. }
  28. }
  29. static int lite5200_pm_set_target(suspend_state_t state)
  30. {
  31. if (lite5200_pm_valid(state)) {
  32. lite5200_pm_target_state = state;
  33. return 0;
  34. }
  35. return -EINVAL;
  36. }
  37. static int lite5200_pm_prepare(void)
  38. {
  39. /* deep sleep? let mpc52xx code handle that */
  40. if (lite5200_pm_target_state == PM_SUSPEND_STANDBY)
  41. return mpc52xx_pm_prepare();
  42. if (lite5200_pm_target_state != PM_SUSPEND_MEM)
  43. return -EINVAL;
  44. /* map registers */
  45. mbar = mpc52xx_find_and_map("mpc5200");
  46. if (!mbar) {
  47. printk(KERN_ERR "%s:%i Error mapping registers\n", __func__, __LINE__);
  48. return -ENOSYS;
  49. }
  50. cdm = mbar + 0x200;
  51. pic = mbar + 0x500;
  52. gps = mbar + 0xb00;
  53. gpw = mbar + 0xc00;
  54. bes = mbar + 0x1200;
  55. xlb = mbar + 0x1f00;
  56. sram = mbar + 0x8000;
  57. return 0;
  58. }
  59. /* save and restore registers not bound to any real devices */
  60. static struct mpc52xx_cdm scdm;
  61. static struct mpc52xx_intr spic;
  62. static struct mpc52xx_sdma sbes;
  63. static struct mpc52xx_xlb sxlb;
  64. static struct mpc52xx_gpio sgps;
  65. static struct mpc52xx_gpio_wkup sgpw;
  66. static void lite5200_save_regs(void)
  67. {
  68. _memcpy_fromio(&spic, pic, sizeof(*pic));
  69. _memcpy_fromio(&sbes, bes, sizeof(*bes));
  70. _memcpy_fromio(&scdm, cdm, sizeof(*cdm));
  71. _memcpy_fromio(&sxlb, xlb, sizeof(*xlb));
  72. _memcpy_fromio(&sgps, gps, sizeof(*gps));
  73. _memcpy_fromio(&sgpw, gpw, sizeof(*gpw));
  74. _memcpy_fromio(saved_sram, sram, sram_size);
  75. }
  76. static void lite5200_restore_regs(void)
  77. {
  78. int i;
  79. _memcpy_toio(sram, saved_sram, sram_size);
  80. /*
  81. * GPIOs. Interrupt Master Enable has higher address then other
  82. * registers, so just memcpy is ok.
  83. */
  84. _memcpy_toio(gpw, &sgpw, sizeof(*gpw));
  85. _memcpy_toio(gps, &sgps, sizeof(*gps));
  86. /* XLB Arbitrer */
  87. out_be32(&xlb->snoop_window, sxlb.snoop_window);
  88. out_be32(&xlb->master_priority, sxlb.master_priority);
  89. out_be32(&xlb->master_pri_enable, sxlb.master_pri_enable);
  90. /* enable */
  91. out_be32(&xlb->int_enable, sxlb.int_enable);
  92. out_be32(&xlb->config, sxlb.config);
  93. /* CDM - Clock Distribution Module */
  94. out_8(&cdm->ipb_clk_sel, scdm.ipb_clk_sel);
  95. out_8(&cdm->pci_clk_sel, scdm.pci_clk_sel);
  96. out_8(&cdm->ext_48mhz_en, scdm.ext_48mhz_en);
  97. out_8(&cdm->fd_enable, scdm.fd_enable);
  98. out_be16(&cdm->fd_counters, scdm.fd_counters);
  99. out_be32(&cdm->clk_enables, scdm.clk_enables);
  100. out_8(&cdm->osc_disable, scdm.osc_disable);
  101. out_be16(&cdm->mclken_div_psc1, scdm.mclken_div_psc1);
  102. out_be16(&cdm->mclken_div_psc2, scdm.mclken_div_psc2);
  103. out_be16(&cdm->mclken_div_psc3, scdm.mclken_div_psc3);
  104. out_be16(&cdm->mclken_div_psc6, scdm.mclken_div_psc6);
  105. /* BESTCOMM */
  106. out_be32(&bes->taskBar, sbes.taskBar);
  107. out_be32(&bes->currentPointer, sbes.currentPointer);
  108. out_be32(&bes->endPointer, sbes.endPointer);
  109. out_be32(&bes->variablePointer, sbes.variablePointer);
  110. out_8(&bes->IntVect1, sbes.IntVect1);
  111. out_8(&bes->IntVect2, sbes.IntVect2);
  112. out_be16(&bes->PtdCntrl, sbes.PtdCntrl);
  113. for (i=0; i<32; i++)
  114. out_8(&bes->ipr[i], sbes.ipr[i]);
  115. out_be32(&bes->cReqSelect, sbes.cReqSelect);
  116. out_be32(&bes->task_size0, sbes.task_size0);
  117. out_be32(&bes->task_size1, sbes.task_size1);
  118. out_be32(&bes->MDEDebug, sbes.MDEDebug);
  119. out_be32(&bes->ADSDebug, sbes.ADSDebug);
  120. out_be32(&bes->Value1, sbes.Value1);
  121. out_be32(&bes->Value2, sbes.Value2);
  122. out_be32(&bes->Control, sbes.Control);
  123. out_be32(&bes->Status, sbes.Status);
  124. out_be32(&bes->PTDDebug, sbes.PTDDebug);
  125. /* restore tasks */
  126. for (i=0; i<16; i++)
  127. out_be16(&bes->tcr[i], sbes.tcr[i]);
  128. /* enable interrupts */
  129. out_be32(&bes->IntPend, sbes.IntPend);
  130. out_be32(&bes->IntMask, sbes.IntMask);
  131. /* PIC */
  132. out_be32(&pic->per_pri1, spic.per_pri1);
  133. out_be32(&pic->per_pri2, spic.per_pri2);
  134. out_be32(&pic->per_pri3, spic.per_pri3);
  135. out_be32(&pic->main_pri1, spic.main_pri1);
  136. out_be32(&pic->main_pri2, spic.main_pri2);
  137. out_be32(&pic->enc_status, spic.enc_status);
  138. /* unmask and enable interrupts */
  139. out_be32(&pic->per_mask, spic.per_mask);
  140. out_be32(&pic->main_mask, spic.main_mask);
  141. out_be32(&pic->ctrl, spic.ctrl);
  142. }
  143. static int lite5200_pm_enter(suspend_state_t state)
  144. {
  145. /* deep sleep? let mpc52xx code handle that */
  146. if (state == PM_SUSPEND_STANDBY) {
  147. return mpc52xx_pm_enter(state);
  148. }
  149. lite5200_save_regs();
  150. /* effectively save FP regs */
  151. enable_kernel_fp();
  152. lite5200_low_power(sram, mbar);
  153. lite5200_restore_regs();
  154. /* restart jiffies */
  155. wakeup_decrementer();
  156. iounmap(mbar);
  157. return 0;
  158. }
  159. static void lite5200_pm_finish(void)
  160. {
  161. /* deep sleep? let mpc52xx code handle that */
  162. if (lite5200_pm_target_state == PM_SUSPEND_STANDBY)
  163. mpc52xx_pm_finish();
  164. }
  165. static struct platform_suspend_ops lite5200_pm_ops = {
  166. .valid = lite5200_pm_valid,
  167. .set_target = lite5200_pm_set_target,
  168. .prepare = lite5200_pm_prepare,
  169. .enter = lite5200_pm_enter,
  170. .finish = lite5200_pm_finish,
  171. };
  172. int __init lite5200_pm_init(void)
  173. {
  174. suspend_set_ops(&lite5200_pm_ops);
  175. return 0;
  176. }