sun3x_esp.c 10 KB

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  1. /* sun3x_esp.c: EnhancedScsiProcessor Sun3x SCSI driver code.
  2. *
  3. * (C) 1999 Thomas Bogendoerfer (tsbogend@alpha.franken.de)
  4. *
  5. * Based on David S. Miller's esp driver
  6. */
  7. #include <linux/kernel.h>
  8. #include <linux/types.h>
  9. #include <linux/string.h>
  10. #include <linux/slab.h>
  11. #include <linux/blkdev.h>
  12. #include <linux/proc_fs.h>
  13. #include <linux/stat.h>
  14. #include <linux/delay.h>
  15. #include <linux/interrupt.h>
  16. #include "scsi.h"
  17. #include <scsi/scsi_host.h>
  18. #include "NCR53C9x.h"
  19. #include <asm/sun3x.h>
  20. #include <asm/dvma.h>
  21. #include <asm/irq.h>
  22. extern struct NCR_ESP *espchain;
  23. static void dma_barrier(struct NCR_ESP *esp);
  24. static int dma_bytes_sent(struct NCR_ESP *esp, int fifo_count);
  25. static int dma_can_transfer(struct NCR_ESP *esp, Scsi_Cmnd *sp);
  26. static void dma_drain(struct NCR_ESP *esp);
  27. static void dma_invalidate(struct NCR_ESP *esp);
  28. static void dma_dump_state(struct NCR_ESP *esp);
  29. static void dma_init_read(struct NCR_ESP *esp, __u32 vaddress, int length);
  30. static void dma_init_write(struct NCR_ESP *esp, __u32 vaddress, int length);
  31. static void dma_ints_off(struct NCR_ESP *esp);
  32. static void dma_ints_on(struct NCR_ESP *esp);
  33. static int dma_irq_p(struct NCR_ESP *esp);
  34. static void dma_poll(struct NCR_ESP *esp, unsigned char *vaddr);
  35. static int dma_ports_p(struct NCR_ESP *esp);
  36. static void dma_reset(struct NCR_ESP *esp);
  37. static void dma_setup(struct NCR_ESP *esp, __u32 addr, int count, int write);
  38. static void dma_mmu_get_scsi_one (struct NCR_ESP *esp, Scsi_Cmnd *sp);
  39. static void dma_mmu_get_scsi_sgl (struct NCR_ESP *esp, Scsi_Cmnd *sp);
  40. static void dma_mmu_release_scsi_one (struct NCR_ESP *esp, Scsi_Cmnd *sp);
  41. static void dma_mmu_release_scsi_sgl (struct NCR_ESP *esp, Scsi_Cmnd *sp);
  42. static void dma_advance_sg (Scsi_Cmnd *sp);
  43. /* Detecting ESP chips on the machine. This is the simple and easy
  44. * version.
  45. */
  46. int sun3x_esp_detect(Scsi_Host_Template *tpnt)
  47. {
  48. struct NCR_ESP *esp;
  49. struct ConfigDev *esp_dev;
  50. esp_dev = 0;
  51. esp = esp_allocate(tpnt, (void *) esp_dev);
  52. /* Do command transfer with DMA */
  53. esp->do_pio_cmds = 0;
  54. /* Required functions */
  55. esp->dma_bytes_sent = &dma_bytes_sent;
  56. esp->dma_can_transfer = &dma_can_transfer;
  57. esp->dma_dump_state = &dma_dump_state;
  58. esp->dma_init_read = &dma_init_read;
  59. esp->dma_init_write = &dma_init_write;
  60. esp->dma_ints_off = &dma_ints_off;
  61. esp->dma_ints_on = &dma_ints_on;
  62. esp->dma_irq_p = &dma_irq_p;
  63. esp->dma_ports_p = &dma_ports_p;
  64. esp->dma_setup = &dma_setup;
  65. /* Optional functions */
  66. esp->dma_barrier = &dma_barrier;
  67. esp->dma_invalidate = &dma_invalidate;
  68. esp->dma_drain = &dma_drain;
  69. esp->dma_irq_entry = 0;
  70. esp->dma_irq_exit = 0;
  71. esp->dma_led_on = 0;
  72. esp->dma_led_off = 0;
  73. esp->dma_poll = &dma_poll;
  74. esp->dma_reset = &dma_reset;
  75. /* virtual DMA functions */
  76. esp->dma_mmu_get_scsi_one = &dma_mmu_get_scsi_one;
  77. esp->dma_mmu_get_scsi_sgl = &dma_mmu_get_scsi_sgl;
  78. esp->dma_mmu_release_scsi_one = &dma_mmu_release_scsi_one;
  79. esp->dma_mmu_release_scsi_sgl = &dma_mmu_release_scsi_sgl;
  80. esp->dma_advance_sg = &dma_advance_sg;
  81. /* SCSI chip speed */
  82. esp->cfreq = 20000000;
  83. esp->eregs = (struct ESP_regs *)(SUN3X_ESP_BASE);
  84. esp->dregs = (void *)SUN3X_ESP_DMA;
  85. esp->esp_command = (volatile unsigned char *)dvma_malloc(DVMA_PAGE_SIZE);
  86. esp->esp_command_dvma = dvma_vtob((unsigned long)esp->esp_command);
  87. esp->irq = 2;
  88. if (request_irq(esp->irq, esp_intr, SA_INTERRUPT,
  89. "SUN3X SCSI", esp->ehost)) {
  90. esp_deallocate(esp);
  91. return 0;
  92. }
  93. esp->scsi_id = 7;
  94. esp->diff = 0;
  95. esp_initialize(esp);
  96. /* for reasons beyond my knowledge (and which should likely be fixed)
  97. sync mode doesn't work on a 3/80 at 5mhz. but it does at 4. */
  98. esp->sync_defp = 0x3f;
  99. printk("ESP: Total of %d ESP hosts found, %d actually in use.\n", nesps,
  100. esps_in_use);
  101. esps_running = esps_in_use;
  102. return esps_in_use;
  103. }
  104. static void dma_do_drain(struct NCR_ESP *esp)
  105. {
  106. struct sparc_dma_registers *dregs =
  107. (struct sparc_dma_registers *) esp->dregs;
  108. int count = 500000;
  109. while((dregs->cond_reg & DMA_PEND_READ) && (--count > 0))
  110. udelay(1);
  111. if(!count) {
  112. printk("%s:%d timeout CSR %08lx\n", __FILE__, __LINE__, dregs->cond_reg);
  113. }
  114. dregs->cond_reg |= DMA_FIFO_STDRAIN;
  115. count = 500000;
  116. while((dregs->cond_reg & DMA_FIFO_ISDRAIN) && (--count > 0))
  117. udelay(1);
  118. if(!count) {
  119. printk("%s:%d timeout CSR %08lx\n", __FILE__, __LINE__, dregs->cond_reg);
  120. }
  121. }
  122. static void dma_barrier(struct NCR_ESP *esp)
  123. {
  124. struct sparc_dma_registers *dregs =
  125. (struct sparc_dma_registers *) esp->dregs;
  126. int count = 500000;
  127. while((dregs->cond_reg & DMA_PEND_READ) && (--count > 0))
  128. udelay(1);
  129. if(!count) {
  130. printk("%s:%d timeout CSR %08lx\n", __FILE__, __LINE__, dregs->cond_reg);
  131. }
  132. dregs->cond_reg &= ~(DMA_ENABLE);
  133. }
  134. /* This uses various DMA csr fields and the fifo flags count value to
  135. * determine how many bytes were successfully sent/received by the ESP.
  136. */
  137. static int dma_bytes_sent(struct NCR_ESP *esp, int fifo_count)
  138. {
  139. struct sparc_dma_registers *dregs =
  140. (struct sparc_dma_registers *) esp->dregs;
  141. int rval = dregs->st_addr - esp->esp_command_dvma;
  142. return rval - fifo_count;
  143. }
  144. static int dma_can_transfer(struct NCR_ESP *esp, Scsi_Cmnd *sp)
  145. {
  146. return sp->SCp.this_residual;
  147. }
  148. static void dma_drain(struct NCR_ESP *esp)
  149. {
  150. struct sparc_dma_registers *dregs =
  151. (struct sparc_dma_registers *) esp->dregs;
  152. int count = 500000;
  153. if(dregs->cond_reg & DMA_FIFO_ISDRAIN) {
  154. dregs->cond_reg |= DMA_FIFO_STDRAIN;
  155. while((dregs->cond_reg & DMA_FIFO_ISDRAIN) && (--count > 0))
  156. udelay(1);
  157. if(!count) {
  158. printk("%s:%d timeout CSR %08lx\n", __FILE__, __LINE__, dregs->cond_reg);
  159. }
  160. }
  161. }
  162. static void dma_invalidate(struct NCR_ESP *esp)
  163. {
  164. struct sparc_dma_registers *dregs =
  165. (struct sparc_dma_registers *) esp->dregs;
  166. __u32 tmp;
  167. int count = 500000;
  168. while(((tmp = dregs->cond_reg) & DMA_PEND_READ) && (--count > 0))
  169. udelay(1);
  170. if(!count) {
  171. printk("%s:%d timeout CSR %08lx\n", __FILE__, __LINE__, dregs->cond_reg);
  172. }
  173. dregs->cond_reg = tmp | DMA_FIFO_INV;
  174. dregs->cond_reg &= ~DMA_FIFO_INV;
  175. }
  176. static void dma_dump_state(struct NCR_ESP *esp)
  177. {
  178. struct sparc_dma_registers *dregs =
  179. (struct sparc_dma_registers *) esp->dregs;
  180. ESPLOG(("esp%d: dma -- cond_reg<%08lx> addr<%08lx>\n",
  181. esp->esp_id, dregs->cond_reg, dregs->st_addr));
  182. }
  183. static void dma_init_read(struct NCR_ESP *esp, __u32 vaddress, int length)
  184. {
  185. struct sparc_dma_registers *dregs =
  186. (struct sparc_dma_registers *) esp->dregs;
  187. dregs->st_addr = vaddress;
  188. dregs->cond_reg |= (DMA_ST_WRITE | DMA_ENABLE);
  189. }
  190. static void dma_init_write(struct NCR_ESP *esp, __u32 vaddress, int length)
  191. {
  192. struct sparc_dma_registers *dregs =
  193. (struct sparc_dma_registers *) esp->dregs;
  194. /* Set up the DMA counters */
  195. dregs->st_addr = vaddress;
  196. dregs->cond_reg = ((dregs->cond_reg & ~(DMA_ST_WRITE)) | DMA_ENABLE);
  197. }
  198. static void dma_ints_off(struct NCR_ESP *esp)
  199. {
  200. DMA_INTSOFF((struct sparc_dma_registers *) esp->dregs);
  201. }
  202. static void dma_ints_on(struct NCR_ESP *esp)
  203. {
  204. DMA_INTSON((struct sparc_dma_registers *) esp->dregs);
  205. }
  206. static int dma_irq_p(struct NCR_ESP *esp)
  207. {
  208. return DMA_IRQ_P((struct sparc_dma_registers *) esp->dregs);
  209. }
  210. static void dma_poll(struct NCR_ESP *esp, unsigned char *vaddr)
  211. {
  212. int count = 50;
  213. dma_do_drain(esp);
  214. /* Wait till the first bits settle. */
  215. while((*(volatile unsigned char *)vaddr == 0xff) && (--count > 0))
  216. udelay(1);
  217. if(!count) {
  218. // printk("%s:%d timeout expire (data %02x)\n", __FILE__, __LINE__,
  219. // esp_read(esp->eregs->esp_fdata));
  220. //mach_halt();
  221. vaddr[0] = esp_read(esp->eregs->esp_fdata);
  222. vaddr[1] = esp_read(esp->eregs->esp_fdata);
  223. }
  224. }
  225. static int dma_ports_p(struct NCR_ESP *esp)
  226. {
  227. return (((struct sparc_dma_registers *) esp->dregs)->cond_reg
  228. & DMA_INT_ENAB);
  229. }
  230. /* Resetting various pieces of the ESP scsi driver chipset/buses. */
  231. static void dma_reset(struct NCR_ESP *esp)
  232. {
  233. struct sparc_dma_registers *dregs =
  234. (struct sparc_dma_registers *)esp->dregs;
  235. /* Punt the DVMA into a known state. */
  236. dregs->cond_reg |= DMA_RST_SCSI;
  237. dregs->cond_reg &= ~(DMA_RST_SCSI);
  238. DMA_INTSON(dregs);
  239. }
  240. static void dma_setup(struct NCR_ESP *esp, __u32 addr, int count, int write)
  241. {
  242. struct sparc_dma_registers *dregs =
  243. (struct sparc_dma_registers *) esp->dregs;
  244. unsigned long nreg = dregs->cond_reg;
  245. // printk("dma_setup %c addr %08x cnt %08x\n",
  246. // write ? 'W' : 'R', addr, count);
  247. dma_do_drain(esp);
  248. if(write)
  249. nreg |= DMA_ST_WRITE;
  250. else {
  251. nreg &= ~(DMA_ST_WRITE);
  252. }
  253. nreg |= DMA_ENABLE;
  254. dregs->cond_reg = nreg;
  255. dregs->st_addr = addr;
  256. }
  257. static void dma_mmu_get_scsi_one (struct NCR_ESP *esp, Scsi_Cmnd *sp)
  258. {
  259. sp->SCp.have_data_in = dvma_map((unsigned long)sp->SCp.buffer,
  260. sp->SCp.this_residual);
  261. sp->SCp.ptr = (char *)((unsigned long)sp->SCp.have_data_in);
  262. }
  263. static void dma_mmu_get_scsi_sgl (struct NCR_ESP *esp, Scsi_Cmnd *sp)
  264. {
  265. int sz = sp->SCp.buffers_residual;
  266. struct scatterlist *sg = sp->SCp.buffer;
  267. while (sz >= 0) {
  268. sg[sz].dvma_address = dvma_map((unsigned long)page_address(sg[sz].page) +
  269. sg[sz].offset, sg[sz].length);
  270. sz--;
  271. }
  272. sp->SCp.ptr=(char *)((unsigned long)sp->SCp.buffer->dvma_address);
  273. }
  274. static void dma_mmu_release_scsi_one (struct NCR_ESP *esp, Scsi_Cmnd *sp)
  275. {
  276. dvma_unmap((char *)sp->SCp.have_data_in);
  277. }
  278. static void dma_mmu_release_scsi_sgl (struct NCR_ESP *esp, Scsi_Cmnd *sp)
  279. {
  280. int sz = sp->use_sg - 1;
  281. struct scatterlist *sg = (struct scatterlist *)sp->buffer;
  282. while(sz >= 0) {
  283. dvma_unmap((char *)sg[sz].dvma_address);
  284. sz--;
  285. }
  286. }
  287. static void dma_advance_sg (Scsi_Cmnd *sp)
  288. {
  289. sp->SCp.ptr = (char *)((unsigned long)sp->SCp.buffer->dvma_address);
  290. }
  291. static int sun3x_esp_release(struct Scsi_Host *instance)
  292. {
  293. /* this code does not support being compiled as a module */
  294. return 1;
  295. }
  296. static Scsi_Host_Template driver_template = {
  297. .proc_name = "sun3x_esp",
  298. .proc_info = &esp_proc_info,
  299. .name = "Sun ESP 100/100a/200",
  300. .detect = sun3x_esp_detect,
  301. .release = sun3x_esp_release,
  302. .slave_alloc = esp_slave_alloc,
  303. .slave_destroy = esp_slave_destroy,
  304. .info = esp_info,
  305. .queuecommand = esp_queue,
  306. .eh_abort_handler = esp_abort,
  307. .eh_bus_reset_handler = esp_reset,
  308. .can_queue = 7,
  309. .this_id = 7,
  310. .sg_tablesize = SG_ALL,
  311. .cmd_per_lun = 1,
  312. .use_clustering = DISABLE_CLUSTERING,
  313. };
  314. #include "scsi_module.c"
  315. MODULE_LICENSE("GPL");