flexcop-pci.c 12 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433
  1. /*
  2. * This file is part of linux driver the digital TV devices equipped with B2C2 FlexcopII(b)/III
  3. *
  4. * flexcop-pci.c - covers the PCI part including DMA transfers.
  5. *
  6. * see flexcop.c for copyright information.
  7. */
  8. #define FC_LOG_PREFIX "flexcop-pci"
  9. #include "flexcop-common.h"
  10. static int enable_pid_filtering = 1;
  11. module_param(enable_pid_filtering, int, 0444);
  12. MODULE_PARM_DESC(enable_pid_filtering, "enable hardware pid filtering: supported values: 0 (fullts), 1");
  13. static int irq_chk_intv;
  14. module_param(irq_chk_intv, int, 0644);
  15. MODULE_PARM_DESC(irq_chk_intv, "set the interval for IRQ watchdog (currently just debugging).");
  16. #ifdef CONFIG_DVB_B2C2_FLEXCOP_DEBUG
  17. #define dprintk(level,args...) \
  18. do { if ((debug & level)) printk(args); } while (0)
  19. #define DEBSTATUS ""
  20. #else
  21. #define dprintk(level,args...)
  22. #define DEBSTATUS " (debugging is not enabled)"
  23. #endif
  24. #define deb_info(args...) dprintk(0x01,args)
  25. #define deb_reg(args...) dprintk(0x02,args)
  26. #define deb_ts(args...) dprintk(0x04,args)
  27. #define deb_irq(args...) dprintk(0x08,args)
  28. #define deb_chk(args...) dprintk(0x10,args)
  29. static int debug = 0;
  30. module_param(debug, int, 0644);
  31. MODULE_PARM_DESC(debug, "set debug level (1=info,2=regs,4=TS,8=irqdma (|-able))." DEBSTATUS);
  32. #define DRIVER_VERSION "0.1"
  33. #define DRIVER_NAME "Technisat/B2C2 FlexCop II/IIb/III Digital TV PCI Driver"
  34. #define DRIVER_AUTHOR "Patrick Boettcher <patrick.boettcher@desy.de>"
  35. struct flexcop_pci {
  36. struct pci_dev *pdev;
  37. #define FC_PCI_INIT 0x01
  38. #define FC_PCI_DMA_INIT 0x02
  39. int init_state;
  40. void __iomem *io_mem;
  41. u32 irq;
  42. /* buffersize (at least for DMA1, need to be % 188 == 0,
  43. * this logic is required */
  44. #define FC_DEFAULT_DMA1_BUFSIZE (1280 * 188)
  45. #define FC_DEFAULT_DMA2_BUFSIZE (10 * 188)
  46. struct flexcop_dma dma[2];
  47. int active_dma1_addr; /* 0 = addr0 of dma1; 1 = addr1 of dma1 */
  48. u32 last_dma1_cur_pos; /* position of the pointer last time the timer/packet irq occured */
  49. int count;
  50. spinlock_t irq_lock;
  51. unsigned long last_irq;
  52. struct work_struct irq_check_work;
  53. struct flexcop_device *fc_dev;
  54. };
  55. static int lastwreg,lastwval,lastrreg,lastrval;
  56. static flexcop_ibi_value flexcop_pci_read_ibi_reg (struct flexcop_device *fc, flexcop_ibi_register r)
  57. {
  58. struct flexcop_pci *fc_pci = fc->bus_specific;
  59. flexcop_ibi_value v;
  60. v.raw = readl(fc_pci->io_mem + r);
  61. if (lastrreg != r || lastrval != v.raw) {
  62. lastrreg = r; lastrval = v.raw;
  63. deb_reg("new rd: %3x: %08x\n",r,v.raw);
  64. }
  65. return v;
  66. }
  67. static int flexcop_pci_write_ibi_reg(struct flexcop_device *fc, flexcop_ibi_register r, flexcop_ibi_value v)
  68. {
  69. struct flexcop_pci *fc_pci = fc->bus_specific;
  70. if (lastwreg != r || lastwval != v.raw) {
  71. lastwreg = r; lastwval = v.raw;
  72. deb_reg("new wr: %3x: %08x\n",r,v.raw);
  73. }
  74. writel(v.raw, fc_pci->io_mem + r);
  75. return 0;
  76. }
  77. static void flexcop_pci_irq_check_work(void *data)
  78. {
  79. struct flexcop_pci *fc_pci = data;
  80. struct flexcop_device *fc = fc_pci->fc_dev;
  81. flexcop_ibi_value v = fc->read_ibi_reg(fc,sram_dest_reg_714);
  82. flexcop_dump_reg(fc_pci->fc_dev,dma1_000,4);
  83. if (v.sram_dest_reg_714.net_ovflow_error)
  84. deb_chk("sram net_ovflow_error\n");
  85. if (v.sram_dest_reg_714.media_ovflow_error)
  86. deb_chk("sram media_ovflow_error\n");
  87. if (v.sram_dest_reg_714.cai_ovflow_error)
  88. deb_chk("sram cai_ovflow_error\n");
  89. if (v.sram_dest_reg_714.cai_ovflow_error)
  90. deb_chk("sram cai_ovflow_error\n");
  91. schedule_delayed_work(&fc_pci->irq_check_work,
  92. msecs_to_jiffies(irq_chk_intv < 100 ? 100 : irq_chk_intv));
  93. }
  94. /* When PID filtering is turned on, we use the timer IRQ, because small amounts
  95. * of data need to be passed to the user space instantly as well. When PID
  96. * filtering is turned off, we use the page-change-IRQ */
  97. static irqreturn_t flexcop_pci_isr(int irq, void *dev_id, struct pt_regs *regs)
  98. {
  99. struct flexcop_pci *fc_pci = dev_id;
  100. struct flexcop_device *fc = fc_pci->fc_dev;
  101. flexcop_ibi_value v;
  102. irqreturn_t ret = IRQ_HANDLED;
  103. spin_lock_irq(&fc_pci->irq_lock);
  104. v = fc->read_ibi_reg(fc,irq_20c);
  105. /* errors */
  106. if (v.irq_20c.Data_receiver_error)
  107. deb_chk("data receiver error\n");
  108. if (v.irq_20c.Continuity_error_flag)
  109. deb_chk("Contunuity error flag is set\n");
  110. if (v.irq_20c.LLC_SNAP_FLAG_set)
  111. deb_chk("LLC_SNAP_FLAG_set is set\n");
  112. if (v.irq_20c.Transport_Error)
  113. deb_chk("Transport error\n");
  114. if ((fc_pci->count % 1000) == 0)
  115. deb_chk("%d valid irq took place so far\n",fc_pci->count);
  116. if (v.irq_20c.DMA1_IRQ_Status == 1) {
  117. if (fc_pci->active_dma1_addr == 0)
  118. flexcop_pass_dmx_packets(fc_pci->fc_dev,fc_pci->dma[0].cpu_addr0,fc_pci->dma[0].size / 188);
  119. else
  120. flexcop_pass_dmx_packets(fc_pci->fc_dev,fc_pci->dma[0].cpu_addr1,fc_pci->dma[0].size / 188);
  121. deb_irq("page change to page: %d\n",!fc_pci->active_dma1_addr);
  122. fc_pci->active_dma1_addr = !fc_pci->active_dma1_addr;
  123. } else if (v.irq_20c.DMA1_Timer_Status == 1) {
  124. /* for the timer IRQ we only can use buffer dmx feeding, because we don't have
  125. * complete TS packets when reading from the DMA memory */
  126. dma_addr_t cur_addr =
  127. fc->read_ibi_reg(fc,dma1_008).dma_0x8.dma_cur_addr << 2;
  128. u32 cur_pos = cur_addr - fc_pci->dma[0].dma_addr0;
  129. deb_irq("%u irq: %08x cur_addr: %08x: cur_pos: %08x, last_cur_pos: %08x ",
  130. jiffies_to_usecs(jiffies - fc_pci->last_irq),v.raw,cur_addr,cur_pos,fc_pci->last_dma1_cur_pos);
  131. fc_pci->last_irq = jiffies;
  132. /* buffer end was reached, restarted from the beginning
  133. * pass the data from last_cur_pos to the buffer end to the demux
  134. */
  135. if (cur_pos < fc_pci->last_dma1_cur_pos) {
  136. deb_irq(" end was reached: passing %d bytes ",(fc_pci->dma[0].size*2 - 1) - fc_pci->last_dma1_cur_pos);
  137. flexcop_pass_dmx_data(fc_pci->fc_dev,
  138. fc_pci->dma[0].cpu_addr0 + fc_pci->last_dma1_cur_pos,
  139. (fc_pci->dma[0].size*2) - fc_pci->last_dma1_cur_pos);
  140. fc_pci->last_dma1_cur_pos = 0;
  141. }
  142. if (cur_pos > fc_pci->last_dma1_cur_pos) {
  143. deb_irq(" passing %d bytes ",cur_pos - fc_pci->last_dma1_cur_pos);
  144. flexcop_pass_dmx_data(fc_pci->fc_dev,
  145. fc_pci->dma[0].cpu_addr0 + fc_pci->last_dma1_cur_pos,
  146. cur_pos - fc_pci->last_dma1_cur_pos);
  147. }
  148. deb_irq("\n");
  149. fc_pci->last_dma1_cur_pos = cur_pos;
  150. fc_pci->count++;
  151. } else {
  152. deb_irq("isr for flexcop called, apparently without reason (%08x)\n",v.raw);
  153. ret = IRQ_NONE;
  154. }
  155. spin_unlock_irq(&fc_pci->irq_lock);
  156. return ret;
  157. }
  158. static int flexcop_pci_stream_control(struct flexcop_device *fc, int onoff)
  159. {
  160. struct flexcop_pci *fc_pci = fc->bus_specific;
  161. if (onoff) {
  162. flexcop_dma_config(fc,&fc_pci->dma[0],FC_DMA_1);
  163. flexcop_dma_config(fc,&fc_pci->dma[1],FC_DMA_2);
  164. flexcop_dma_config_timer(fc,FC_DMA_1,0);
  165. flexcop_dma_xfer_control(fc,FC_DMA_1,FC_DMA_SUBADDR_0 | FC_DMA_SUBADDR_1,1);
  166. deb_irq("DMA xfer enabled\n");
  167. fc_pci->last_dma1_cur_pos = 0;
  168. flexcop_dma_control_timer_irq(fc,FC_DMA_1,1);
  169. deb_irq("IRQ enabled\n");
  170. // fc_pci->active_dma1_addr = 0;
  171. // flexcop_dma_control_size_irq(fc,FC_DMA_1,1);
  172. if (irq_chk_intv > 0)
  173. schedule_delayed_work(&fc_pci->irq_check_work,
  174. msecs_to_jiffies(irq_chk_intv < 100 ? 100 : irq_chk_intv));
  175. } else {
  176. if (irq_chk_intv > 0)
  177. cancel_delayed_work(&fc_pci->irq_check_work);
  178. flexcop_dma_control_timer_irq(fc,FC_DMA_1,0);
  179. deb_irq("IRQ disabled\n");
  180. // flexcop_dma_control_size_irq(fc,FC_DMA_1,0);
  181. flexcop_dma_xfer_control(fc,FC_DMA_1,FC_DMA_SUBADDR_0 | FC_DMA_SUBADDR_1,0);
  182. deb_irq("DMA xfer disabled\n");
  183. }
  184. return 0;
  185. }
  186. static int flexcop_pci_dma_init(struct flexcop_pci *fc_pci)
  187. {
  188. int ret;
  189. if ((ret = flexcop_dma_allocate(fc_pci->pdev,&fc_pci->dma[0],FC_DEFAULT_DMA1_BUFSIZE)) != 0)
  190. return ret;
  191. if ((ret = flexcop_dma_allocate(fc_pci->pdev,&fc_pci->dma[1],FC_DEFAULT_DMA2_BUFSIZE)) != 0)
  192. goto dma1_free;
  193. flexcop_sram_set_dest(fc_pci->fc_dev,FC_SRAM_DEST_MEDIA | FC_SRAM_DEST_NET, FC_SRAM_DEST_TARGET_DMA1);
  194. flexcop_sram_set_dest(fc_pci->fc_dev,FC_SRAM_DEST_CAO | FC_SRAM_DEST_CAI, FC_SRAM_DEST_TARGET_DMA2);
  195. fc_pci->init_state |= FC_PCI_DMA_INIT;
  196. goto success;
  197. dma1_free:
  198. flexcop_dma_free(&fc_pci->dma[0]);
  199. success:
  200. return ret;
  201. }
  202. static void flexcop_pci_dma_exit(struct flexcop_pci *fc_pci)
  203. {
  204. if (fc_pci->init_state & FC_PCI_DMA_INIT) {
  205. flexcop_dma_free(&fc_pci->dma[0]);
  206. flexcop_dma_free(&fc_pci->dma[1]);
  207. }
  208. fc_pci->init_state &= ~FC_PCI_DMA_INIT;
  209. }
  210. static int flexcop_pci_init(struct flexcop_pci *fc_pci)
  211. {
  212. int ret;
  213. u8 card_rev;
  214. pci_read_config_byte(fc_pci->pdev, PCI_CLASS_REVISION, &card_rev);
  215. info("card revision %x", card_rev);
  216. if ((ret = pci_enable_device(fc_pci->pdev)) != 0)
  217. return ret;
  218. pci_set_master(fc_pci->pdev);
  219. /* enable interrupts */
  220. // pci_write_config_dword(pdev, 0x6c, 0x8000);
  221. if ((ret = pci_request_regions(fc_pci->pdev, DRIVER_NAME)) != 0)
  222. goto err_pci_disable_device;
  223. fc_pci->io_mem = pci_iomap(fc_pci->pdev, 0, 0x800);
  224. if (!fc_pci->io_mem) {
  225. err("cannot map io memory\n");
  226. ret = -EIO;
  227. goto err_pci_release_regions;
  228. }
  229. pci_set_drvdata(fc_pci->pdev, fc_pci);
  230. if ((ret = request_irq(fc_pci->pdev->irq, flexcop_pci_isr,
  231. SA_SHIRQ, DRIVER_NAME, fc_pci)) != 0)
  232. goto err_pci_iounmap;
  233. spin_lock_init(&fc_pci->irq_lock);
  234. fc_pci->init_state |= FC_PCI_INIT;
  235. goto success;
  236. err_pci_iounmap:
  237. pci_iounmap(fc_pci->pdev, fc_pci->io_mem);
  238. pci_set_drvdata(fc_pci->pdev, NULL);
  239. err_pci_release_regions:
  240. pci_release_regions(fc_pci->pdev);
  241. err_pci_disable_device:
  242. pci_disable_device(fc_pci->pdev);
  243. success:
  244. return ret;
  245. }
  246. static void flexcop_pci_exit(struct flexcop_pci *fc_pci)
  247. {
  248. if (fc_pci->init_state & FC_PCI_INIT) {
  249. free_irq(fc_pci->pdev->irq, fc_pci);
  250. pci_iounmap(fc_pci->pdev, fc_pci->io_mem);
  251. pci_set_drvdata(fc_pci->pdev, NULL);
  252. pci_release_regions(fc_pci->pdev);
  253. pci_disable_device(fc_pci->pdev);
  254. }
  255. fc_pci->init_state &= ~FC_PCI_INIT;
  256. }
  257. static int flexcop_pci_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
  258. {
  259. struct flexcop_device *fc;
  260. struct flexcop_pci *fc_pci;
  261. int ret = -ENOMEM;
  262. if ((fc = flexcop_device_kmalloc(sizeof(struct flexcop_pci))) == NULL) {
  263. err("out of memory\n");
  264. return -ENOMEM;
  265. }
  266. /* general flexcop init */
  267. fc_pci = fc->bus_specific;
  268. fc_pci->fc_dev = fc;
  269. fc->read_ibi_reg = flexcop_pci_read_ibi_reg;
  270. fc->write_ibi_reg = flexcop_pci_write_ibi_reg;
  271. fc->i2c_request = flexcop_i2c_request;
  272. fc->get_mac_addr = flexcop_eeprom_check_mac_addr;
  273. fc->stream_control = flexcop_pci_stream_control;
  274. if (enable_pid_filtering)
  275. info("will use the HW PID filter.");
  276. else
  277. info("will pass the complete TS to the demuxer.");
  278. fc->pid_filtering = enable_pid_filtering;
  279. fc->bus_type = FC_PCI;
  280. fc->dev = &pdev->dev;
  281. fc->owner = THIS_MODULE;
  282. /* bus specific part */
  283. fc_pci->pdev = pdev;
  284. if ((ret = flexcop_pci_init(fc_pci)) != 0)
  285. goto err_kfree;
  286. /* init flexcop */
  287. if ((ret = flexcop_device_initialize(fc)) != 0)
  288. goto err_pci_exit;
  289. /* init dma */
  290. if ((ret = flexcop_pci_dma_init(fc_pci)) != 0)
  291. goto err_fc_exit;
  292. INIT_WORK(&fc_pci->irq_check_work, flexcop_pci_irq_check_work, fc_pci);
  293. goto success;
  294. err_fc_exit:
  295. flexcop_device_exit(fc);
  296. err_pci_exit:
  297. flexcop_pci_exit(fc_pci);
  298. err_kfree:
  299. flexcop_device_kfree(fc);
  300. success:
  301. return ret;
  302. }
  303. /* in theory every _exit function should be called exactly two times,
  304. * here and in the bail-out-part of the _init-function
  305. */
  306. static void flexcop_pci_remove(struct pci_dev *pdev)
  307. {
  308. struct flexcop_pci *fc_pci = pci_get_drvdata(pdev);
  309. flexcop_pci_dma_exit(fc_pci);
  310. flexcop_device_exit(fc_pci->fc_dev);
  311. flexcop_pci_exit(fc_pci);
  312. flexcop_device_kfree(fc_pci->fc_dev);
  313. }
  314. static struct pci_device_id flexcop_pci_tbl[] = {
  315. { PCI_DEVICE(0x13d0, 0x2103) },
  316. /* { PCI_DEVICE(0x13d0, 0x2200) }, ? */
  317. { },
  318. };
  319. MODULE_DEVICE_TABLE(pci, flexcop_pci_tbl);
  320. static struct pci_driver flexcop_pci_driver = {
  321. .name = "b2c2_flexcop_pci",
  322. .id_table = flexcop_pci_tbl,
  323. .probe = flexcop_pci_probe,
  324. .remove = flexcop_pci_remove,
  325. };
  326. static int __init flexcop_pci_module_init(void)
  327. {
  328. return pci_register_driver(&flexcop_pci_driver);
  329. }
  330. static void __exit flexcop_pci_module_exit(void)
  331. {
  332. pci_unregister_driver(&flexcop_pci_driver);
  333. }
  334. module_init(flexcop_pci_module_init);
  335. module_exit(flexcop_pci_module_exit);
  336. MODULE_AUTHOR(DRIVER_AUTHOR);
  337. MODULE_DESCRIPTION(DRIVER_NAME);
  338. MODULE_LICENSE("GPL");