atarihw.h 20 KB

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  1. /*
  2. ** linux/atarihw.h -- This header defines some macros and pointers for
  3. ** the various Atari custom hardware registers.
  4. **
  5. ** Copyright 1994 by Björn Brauel
  6. **
  7. ** 5/1/94 Roman Hodek:
  8. ** Added definitions for TT specific chips.
  9. **
  10. ** 1996-09-13 lars brinkhoff <[email protected]>:
  11. ** Finally added definitions for the matrix/codec and the DSP56001 host
  12. ** interface.
  13. **
  14. ** This file is subject to the terms and conditions of the GNU General Public
  15. ** License. See the file COPYING in the main directory of this archive
  16. ** for more details.
  17. **
  18. */
  19. #ifndef _LINUX_ATARIHW_H_
  20. #define _LINUX_ATARIHW_H_
  21. #include <linux/types.h>
  22. #include <asm/bootinfo-atari.h>
  23. #include <asm/kmap.h>
  24. extern u_long atari_mch_cookie;
  25. extern u_long atari_mch_type;
  26. extern u_long atari_switches;
  27. extern int atari_rtc_year_offset;
  28. extern int atari_dont_touch_floppy_select;
  29. extern int atari_SCC_reset_done;
  30. extern ssize_t atari_nvram_read(char *, size_t, loff_t *);
  31. extern ssize_t atari_nvram_write(char *, size_t, loff_t *);
  32. extern ssize_t atari_nvram_get_size(void);
  33. extern long atari_nvram_set_checksum(void);
  34. extern long atari_nvram_initialize(void);
  35. /* convenience macros for testing machine type */
  36. #define MACH_IS_ST ((atari_mch_cookie >> 16) == ATARI_MCH_ST)
  37. #define MACH_IS_STE ((atari_mch_cookie >> 16) == ATARI_MCH_STE && \
  38. (atari_mch_cookie & 0xffff) == 0)
  39. #define MACH_IS_MSTE ((atari_mch_cookie >> 16) == ATARI_MCH_STE && \
  40. (atari_mch_cookie & 0xffff) == 0x10)
  41. #define MACH_IS_TT ((atari_mch_cookie >> 16) == ATARI_MCH_TT)
  42. #define MACH_IS_FALCON ((atari_mch_cookie >> 16) == ATARI_MCH_FALCON)
  43. #define MACH_IS_MEDUSA (atari_mch_type == ATARI_MACH_MEDUSA)
  44. #define MACH_IS_AB40 (atari_mch_type == ATARI_MACH_AB40)
  45. /* values for atari_switches */
  46. #define ATARI_SWITCH_IKBD 0x01
  47. #define ATARI_SWITCH_MIDI 0x02
  48. #define ATARI_SWITCH_SND6 0x04
  49. #define ATARI_SWITCH_SND7 0x08
  50. #define ATARI_SWITCH_OVSC_SHIFT 16
  51. #define ATARI_SWITCH_OVSC_IKBD (ATARI_SWITCH_IKBD << ATARI_SWITCH_OVSC_SHIFT)
  52. #define ATARI_SWITCH_OVSC_MIDI (ATARI_SWITCH_MIDI << ATARI_SWITCH_OVSC_SHIFT)
  53. #define ATARI_SWITCH_OVSC_SND6 (ATARI_SWITCH_SND6 << ATARI_SWITCH_OVSC_SHIFT)
  54. #define ATARI_SWITCH_OVSC_SND7 (ATARI_SWITCH_SND7 << ATARI_SWITCH_OVSC_SHIFT)
  55. #define ATARI_SWITCH_OVSC_MASK 0xffff0000
  56. /*
  57. * Define several Hardware-Chips for indication so that for the ATARI we do
  58. * no longer decide whether it is a Falcon or other machine . It's just
  59. * important what hardware the machine uses
  60. */
  61. /* ++roman 08/08/95: rewritten from ORing constants to a C bitfield */
  62. #define ATARIHW_DECLARE(name) unsigned name : 1
  63. #define ATARIHW_SET(name) (atari_hw_present.name = 1)
  64. #define ATARIHW_PRESENT(name) (atari_hw_present.name)
  65. struct atari_hw_present {
  66. /* video hardware */
  67. ATARIHW_DECLARE(STND_SHIFTER); /* ST-Shifter - no base low ! */
  68. ATARIHW_DECLARE(EXTD_SHIFTER); /* STe-Shifter - 24 bit address */
  69. ATARIHW_DECLARE(TT_SHIFTER); /* TT-Shifter */
  70. ATARIHW_DECLARE(VIDEL_SHIFTER); /* Falcon-Shifter */
  71. /* sound hardware */
  72. ATARIHW_DECLARE(YM_2149); /* Yamaha YM 2149 */
  73. ATARIHW_DECLARE(PCM_8BIT); /* PCM-Sound in STe-ATARI */
  74. ATARIHW_DECLARE(CODEC); /* CODEC Sound (Falcon) */
  75. /* disk storage interfaces */
  76. ATARIHW_DECLARE(TT_SCSI); /* Directly mapped NCR5380 */
  77. ATARIHW_DECLARE(ST_SCSI); /* NCR5380 via ST-DMA (Falcon) */
  78. ATARIHW_DECLARE(ACSI); /* Standard ACSI like in STs */
  79. ATARIHW_DECLARE(IDE); /* IDE Interface */
  80. ATARIHW_DECLARE(FDCSPEED); /* 8/16 MHz switch for FDC */
  81. /* other I/O hardware */
  82. ATARIHW_DECLARE(ST_MFP); /* The ST-MFP (there should be no Atari
  83. without it... but who knows?) */
  84. ATARIHW_DECLARE(TT_MFP); /* 2nd MFP */
  85. ATARIHW_DECLARE(SCC); /* Serial Communications Contr. */
  86. ATARIHW_DECLARE(ST_ESCC); /* SCC Z83230 in an ST */
  87. ATARIHW_DECLARE(ANALOG_JOY); /* Paddle Interface for STe
  88. and Falcon */
  89. ATARIHW_DECLARE(MICROWIRE); /* Microwire Interface */
  90. /* DMA */
  91. ATARIHW_DECLARE(STND_DMA); /* 24 Bit limited ST-DMA */
  92. ATARIHW_DECLARE(EXTD_DMA); /* 32 Bit ST-DMA */
  93. ATARIHW_DECLARE(SCSI_DMA); /* DMA for the NCR5380 */
  94. ATARIHW_DECLARE(SCC_DMA); /* DMA for the SCC */
  95. /* real time clocks */
  96. ATARIHW_DECLARE(TT_CLK); /* TT compatible clock chip */
  97. ATARIHW_DECLARE(MSTE_CLK); /* Mega ST(E) clock chip */
  98. /* supporting hardware */
  99. ATARIHW_DECLARE(SCU); /* System Control Unit */
  100. ATARIHW_DECLARE(BLITTER); /* Blitter */
  101. ATARIHW_DECLARE(VME); /* VME Bus */
  102. ATARIHW_DECLARE(DSP56K); /* DSP56k processor in Falcon */
  103. };
  104. extern struct atari_hw_present atari_hw_present;
  105. /* Reading the MFP port register gives a machine independent delay, since the
  106. * MFP always has a 8 MHz clock. This avoids problems with the varying length
  107. * of nops on various machines. Somebody claimed that the tstb takes 600 ns.
  108. */
  109. #define MFPDELAY() \
  110. __asm__ __volatile__ ( "tstb %0" : : "m" (st_mfp.par_dt_reg) : "cc" );
  111. /* Do cache push/invalidate for DMA read/write. This function obeys the
  112. * snooping on some machines (Medusa) and processors: The Medusa itself can
  113. * snoop, but only the '040 can source data from its cache to DMA writes i.e.,
  114. * reads from memory). Both '040 and '060 invalidate cache entries on snooped
  115. * DMA reads (i.e., writes to memory).
  116. */
  117. #include <linux/mm.h>
  118. #include <asm/cacheflush.h>
  119. static inline void dma_cache_maintenance( unsigned long paddr,
  120. unsigned long len,
  121. int writeflag )
  122. {
  123. if (writeflag) {
  124. if (!MACH_IS_MEDUSA || CPU_IS_060)
  125. cache_push( paddr, len );
  126. }
  127. else {
  128. if (!MACH_IS_MEDUSA)
  129. cache_clear( paddr, len );
  130. }
  131. }
  132. /*
  133. ** Shifter
  134. */
  135. #define ST_LOW 0
  136. #define ST_MID 1
  137. #define ST_HIGH 2
  138. #define TT_LOW 7
  139. #define TT_MID 4
  140. #define TT_HIGH 6
  141. #define SHF_BAS (0xffff8200)
  142. struct SHIFTER_ST
  143. {
  144. u_char pad1;
  145. u_char bas_hi;
  146. u_char pad2;
  147. u_char bas_md;
  148. u_char pad3;
  149. u_char volatile vcounthi;
  150. u_char pad4;
  151. u_char volatile vcountmid;
  152. u_char pad5;
  153. u_char volatile vcountlow;
  154. u_char volatile syncmode;
  155. u_char pad6;
  156. u_char pad7;
  157. u_char bas_lo;
  158. };
  159. # define shifter_st ((*(volatile struct SHIFTER_ST *)SHF_BAS))
  160. #define SHF_FBAS (0xffff820e)
  161. struct SHIFTER_F030
  162. {
  163. u_short off_next;
  164. u_short scn_width;
  165. };
  166. # define shifter_f030 ((*(volatile struct SHIFTER_F030 *)SHF_FBAS))
  167. #define SHF_TBAS (0xffff8200)
  168. struct SHIFTER_TT {
  169. u_char char_dummy0;
  170. u_char bas_hi; /* video mem base addr, high and mid byte */
  171. u_char char_dummy1;
  172. u_char bas_md;
  173. u_char char_dummy2;
  174. u_char vcount_hi; /* pointer to currently displayed byte */
  175. u_char char_dummy3;
  176. u_char vcount_md;
  177. u_char char_dummy4;
  178. u_char vcount_lo;
  179. u_short st_sync; /* ST compatible sync mode register, unused */
  180. u_char char_dummy5;
  181. u_char bas_lo; /* video mem addr, low byte */
  182. u_char char_dummy6[2+3*16];
  183. /* $ffff8240: */
  184. u_short color_reg[16]; /* 16 color registers */
  185. u_char st_shiftmode; /* ST compatible shift mode register, unused */
  186. u_char char_dummy7;
  187. u_short tt_shiftmode; /* TT shift mode register */
  188. };
  189. #define shifter_tt ((*(volatile struct SHIFTER_TT *)SHF_TBAS))
  190. /* values for shifter_tt->tt_shiftmode */
  191. #define TT_SHIFTER_STLOW 0x0000
  192. #define TT_SHIFTER_STMID 0x0100
  193. #define TT_SHIFTER_STHIGH 0x0200
  194. #define TT_SHIFTER_TTLOW 0x0700
  195. #define TT_SHIFTER_TTMID 0x0400
  196. #define TT_SHIFTER_TTHIGH 0x0600
  197. #define TT_SHIFTER_MODEMASK 0x0700
  198. #define TT_SHIFTER_NUMMODE 0x0008
  199. #define TT_SHIFTER_PALETTE_MASK 0x000f
  200. #define TT_SHIFTER_GRAYMODE 0x1000
  201. /* 256 TT palette registers */
  202. #define TT_PALETTE_BASE (0xffff8400)
  203. #define tt_palette ((volatile u_short *)TT_PALETTE_BASE)
  204. #define TT_PALETTE_RED_MASK 0x0f00
  205. #define TT_PALETTE_GREEN_MASK 0x00f0
  206. #define TT_PALETTE_BLUE_MASK 0x000f
  207. /*
  208. ** Falcon030 VIDEL Video Controller
  209. ** for description see File 'linux\tools\atari\hardware.txt
  210. */
  211. #define f030_col ((u_long *) 0xffff9800)
  212. #define f030_xreg ((u_short*) 0xffff8282)
  213. #define f030_yreg ((u_short*) 0xffff82a2)
  214. #define f030_creg ((u_short*) 0xffff82c0)
  215. #define f030_sreg ((u_short*) 0xffff8260)
  216. #define f030_mreg ((u_short*) 0xffff820a)
  217. #define f030_linewidth ((u_short*) 0xffff820e)
  218. #define f030_hscroll ((u_char*) 0xffff8265)
  219. #define VIDEL_BAS (0xffff8260)
  220. struct VIDEL {
  221. u_short st_shift;
  222. u_short pad1;
  223. u_char xoffset_s;
  224. u_char xoffset;
  225. u_short f_shift;
  226. u_char pad2[0x1a];
  227. u_short hht;
  228. u_short hbb;
  229. u_short hbe;
  230. u_short hdb;
  231. u_short hde;
  232. u_short hss;
  233. u_char pad3[0x14];
  234. u_short vft;
  235. u_short vbb;
  236. u_short vbe;
  237. u_short vdb;
  238. u_short vde;
  239. u_short vss;
  240. u_char pad4[0x12];
  241. u_short control;
  242. u_short mode;
  243. };
  244. #define videl ((*(volatile struct VIDEL *)VIDEL_BAS))
  245. /*
  246. ** DMA/WD1772 Disk Controller
  247. */
  248. #define FWD_BAS (0xffff8604)
  249. struct DMA_WD
  250. {
  251. u_short fdc_acces_seccount;
  252. u_short dma_mode_status;
  253. u_char dma_vhi; /* Some extended ST-DMAs can handle 32 bit addresses */
  254. u_char dma_hi;
  255. u_char char_dummy2;
  256. u_char dma_md;
  257. u_char char_dummy3;
  258. u_char dma_lo;
  259. u_short fdc_speed;
  260. };
  261. # define dma_wd ((*(volatile struct DMA_WD *)FWD_BAS))
  262. /* alias */
  263. #define st_dma dma_wd
  264. /* The two highest bytes of an extended DMA as a short; this is a must
  265. * for the Medusa.
  266. */
  267. #define st_dma_ext_dmahi (*((volatile unsigned short *)0xffff8608))
  268. /*
  269. ** YM2149 Sound Chip
  270. ** access in bytes
  271. */
  272. #define YM_BAS (0xffff8800)
  273. struct SOUND_YM
  274. {
  275. u_char rd_data_reg_sel;
  276. u_char char_dummy1;
  277. u_char wd_data;
  278. };
  279. #define sound_ym ((*(volatile struct SOUND_YM *)YM_BAS))
  280. /* TT SCSI DMA */
  281. #define TT_SCSI_DMA_BAS (0xffff8700)
  282. struct TT_DMA {
  283. u_char char_dummy0;
  284. u_char dma_addr_hi;
  285. u_char char_dummy1;
  286. u_char dma_addr_hmd;
  287. u_char char_dummy2;
  288. u_char dma_addr_lmd;
  289. u_char char_dummy3;
  290. u_char dma_addr_lo;
  291. u_char char_dummy4;
  292. u_char dma_cnt_hi;
  293. u_char char_dummy5;
  294. u_char dma_cnt_hmd;
  295. u_char char_dummy6;
  296. u_char dma_cnt_lmd;
  297. u_char char_dummy7;
  298. u_char dma_cnt_lo;
  299. u_long dma_restdata;
  300. u_short dma_ctrl;
  301. };
  302. #define tt_scsi_dma ((*(volatile struct TT_DMA *)TT_SCSI_DMA_BAS))
  303. /* TT SCSI Controller 5380 */
  304. #define TT_5380_BAS (0xffff8781)
  305. struct TT_5380 {
  306. u_char scsi_data;
  307. u_char char_dummy1;
  308. u_char scsi_icr;
  309. u_char char_dummy2;
  310. u_char scsi_mode;
  311. u_char char_dummy3;
  312. u_char scsi_tcr;
  313. u_char char_dummy4;
  314. u_char scsi_idstat;
  315. u_char char_dummy5;
  316. u_char scsi_dmastat;
  317. u_char char_dummy6;
  318. u_char scsi_targrcv;
  319. u_char char_dummy7;
  320. u_char scsi_inircv;
  321. };
  322. #define tt_scsi ((*(volatile struct TT_5380 *)TT_5380_BAS))
  323. #define tt_scsi_regp ((volatile char *)TT_5380_BAS)
  324. /*
  325. ** Falcon DMA Sound Subsystem
  326. */
  327. #define MATRIX_BASE (0xffff8930)
  328. struct MATRIX
  329. {
  330. u_short source;
  331. u_short destination;
  332. u_char external_frequency_divider;
  333. u_char internal_frequency_divider;
  334. };
  335. #define falcon_matrix (*(volatile struct MATRIX *)MATRIX_BASE)
  336. #define CODEC_BASE (0xffff8936)
  337. struct CODEC
  338. {
  339. u_char tracks;
  340. u_char input_source;
  341. #define CODEC_SOURCE_ADC 1
  342. #define CODEC_SOURCE_MATRIX 2
  343. u_char adc_source;
  344. #define ADC_SOURCE_RIGHT_PSG 1
  345. #define ADC_SOURCE_LEFT_PSG 2
  346. u_char gain;
  347. #define CODEC_GAIN_RIGHT 0x0f
  348. #define CODEC_GAIN_LEFT 0xf0
  349. u_char attenuation;
  350. #define CODEC_ATTENUATION_RIGHT 0x0f
  351. #define CODEC_ATTENUATION_LEFT 0xf0
  352. u_char unused1;
  353. u_char status;
  354. #define CODEC_OVERFLOW_RIGHT 1
  355. #define CODEC_OVERFLOW_LEFT 2
  356. u_char unused2, unused3, unused4, unused5;
  357. u_char gpio_directions;
  358. #define CODEC_GPIO_IN 0
  359. #define CODEC_GPIO_OUT 1
  360. u_char unused6;
  361. u_char gpio_data;
  362. };
  363. #define falcon_codec (*(volatile struct CODEC *)CODEC_BASE)
  364. /*
  365. ** Falcon Blitter
  366. */
  367. #define BLT_BAS (0xffff8a00)
  368. struct BLITTER
  369. {
  370. u_short halftone[16];
  371. u_short src_x_inc;
  372. u_short src_y_inc;
  373. u_long src_address;
  374. u_short endmask1;
  375. u_short endmask2;
  376. u_short endmask3;
  377. u_short dst_x_inc;
  378. u_short dst_y_inc;
  379. u_long dst_address;
  380. u_short wd_per_line;
  381. u_short ln_per_bb;
  382. u_short hlf_op_reg;
  383. u_short log_op_reg;
  384. u_short lin_nm_reg;
  385. u_short skew_reg;
  386. };
  387. # define blitter ((*(volatile struct BLITTER *)BLT_BAS))
  388. /*
  389. ** SCC Z8530
  390. */
  391. #define SCC_BAS (0xffff8c81)
  392. struct SCC
  393. {
  394. u_char cha_a_ctrl;
  395. u_char char_dummy1;
  396. u_char cha_a_data;
  397. u_char char_dummy2;
  398. u_char cha_b_ctrl;
  399. u_char char_dummy3;
  400. u_char cha_b_data;
  401. };
  402. # define atari_scc ((*(volatile struct SCC*)SCC_BAS))
  403. /* The ESCC (Z85230) in an Atari ST. The channels are reversed! */
  404. # define st_escc ((*(volatile struct SCC*)0xfffffa31))
  405. # define st_escc_dsr ((*(volatile char *)0xfffffa39))
  406. /* TT SCC DMA Controller (same chip as SCSI DMA) */
  407. #define TT_SCC_DMA_BAS (0xffff8c00)
  408. #define tt_scc_dma ((*(volatile struct TT_DMA *)TT_SCC_DMA_BAS))
  409. /*
  410. ** VIDEL Palette Register
  411. */
  412. #define FPL_BAS (0xffff9800)
  413. struct VIDEL_PALETTE
  414. {
  415. u_long reg[256];
  416. };
  417. # define videl_palette ((*(volatile struct VIDEL_PALETTE*)FPL_BAS))
  418. /*
  419. ** Falcon DSP Host Interface
  420. */
  421. #define DSP56K_HOST_INTERFACE_BASE (0xffffa200)
  422. struct DSP56K_HOST_INTERFACE {
  423. u_char icr;
  424. #define DSP56K_ICR_RREQ 0x01
  425. #define DSP56K_ICR_TREQ 0x02
  426. #define DSP56K_ICR_HF0 0x08
  427. #define DSP56K_ICR_HF1 0x10
  428. #define DSP56K_ICR_HM0 0x20
  429. #define DSP56K_ICR_HM1 0x40
  430. #define DSP56K_ICR_INIT 0x80
  431. u_char cvr;
  432. #define DSP56K_CVR_HV_MASK 0x1f
  433. #define DSP56K_CVR_HC 0x80
  434. u_char isr;
  435. #define DSP56K_ISR_RXDF 0x01
  436. #define DSP56K_ISR_TXDE 0x02
  437. #define DSP56K_ISR_TRDY 0x04
  438. #define DSP56K_ISR_HF2 0x08
  439. #define DSP56K_ISR_HF3 0x10
  440. #define DSP56K_ISR_DMA 0x40
  441. #define DSP56K_ISR_HREQ 0x80
  442. u_char ivr;
  443. union {
  444. u_char b[4];
  445. u_short w[2];
  446. u_long l;
  447. } data;
  448. };
  449. #define dsp56k_host_interface ((*(volatile struct DSP56K_HOST_INTERFACE *)DSP56K_HOST_INTERFACE_BASE))
  450. /*
  451. ** MFP 68901
  452. */
  453. #define MFP_BAS (0xfffffa01)
  454. struct MFP
  455. {
  456. u_char par_dt_reg;
  457. u_char char_dummy1;
  458. u_char active_edge;
  459. u_char char_dummy2;
  460. u_char data_dir;
  461. u_char char_dummy3;
  462. u_char int_en_a;
  463. u_char char_dummy4;
  464. u_char int_en_b;
  465. u_char char_dummy5;
  466. u_char int_pn_a;
  467. u_char char_dummy6;
  468. u_char int_pn_b;
  469. u_char char_dummy7;
  470. u_char int_sv_a;
  471. u_char char_dummy8;
  472. u_char int_sv_b;
  473. u_char char_dummy9;
  474. u_char int_mk_a;
  475. u_char char_dummy10;
  476. u_char int_mk_b;
  477. u_char char_dummy11;
  478. u_char vec_adr;
  479. u_char char_dummy12;
  480. u_char tim_ct_a;
  481. u_char char_dummy13;
  482. u_char tim_ct_b;
  483. u_char char_dummy14;
  484. u_char tim_ct_cd;
  485. u_char char_dummy15;
  486. u_char tim_dt_a;
  487. u_char char_dummy16;
  488. u_char tim_dt_b;
  489. u_char char_dummy17;
  490. u_char tim_dt_c;
  491. u_char char_dummy18;
  492. u_char tim_dt_d;
  493. u_char char_dummy19;
  494. u_char sync_char;
  495. u_char char_dummy20;
  496. u_char usart_ctr;
  497. u_char char_dummy21;
  498. u_char rcv_stat;
  499. u_char char_dummy22;
  500. u_char trn_stat;
  501. u_char char_dummy23;
  502. u_char usart_dta;
  503. };
  504. # define st_mfp ((*(volatile struct MFP*)MFP_BAS))
  505. /* TT's second MFP */
  506. #define TT_MFP_BAS (0xfffffa81)
  507. # define tt_mfp ((*(volatile struct MFP*)TT_MFP_BAS))
  508. /* TT System Control Unit */
  509. #define TT_SCU_BAS (0xffff8e01)
  510. struct TT_SCU {
  511. u_char sys_mask;
  512. u_char char_dummy1;
  513. u_char sys_stat;
  514. u_char char_dummy2;
  515. u_char softint;
  516. u_char char_dummy3;
  517. u_char vmeint;
  518. u_char char_dummy4;
  519. u_char gp_reg1;
  520. u_char char_dummy5;
  521. u_char gp_reg2;
  522. u_char char_dummy6;
  523. u_char vme_mask;
  524. u_char char_dummy7;
  525. u_char vme_stat;
  526. };
  527. #define tt_scu ((*(volatile struct TT_SCU *)TT_SCU_BAS))
  528. /* TT real time clock */
  529. #define TT_RTC_BAS (0xffff8961)
  530. struct TT_RTC {
  531. u_char regsel;
  532. u_char dummy;
  533. u_char data;
  534. };
  535. #define tt_rtc ((*(volatile struct TT_RTC *)TT_RTC_BAS))
  536. /*
  537. ** ACIA 6850
  538. */
  539. /* constants for the ACIA registers */
  540. /* baudrate selection and reset (Baudrate = clock/factor) */
  541. #define ACIA_DIV1 0
  542. #define ACIA_DIV16 1
  543. #define ACIA_DIV64 2
  544. #define ACIA_RESET 3
  545. /* character format */
  546. #define ACIA_D7E2S (0<<2) /* 7 data, even parity, 2 stop */
  547. #define ACIA_D7O2S (1<<2) /* 7 data, odd parity, 2 stop */
  548. #define ACIA_D7E1S (2<<2) /* 7 data, even parity, 1 stop */
  549. #define ACIA_D7O1S (3<<2) /* 7 data, odd parity, 1 stop */
  550. #define ACIA_D8N2S (4<<2) /* 8 data, no parity, 2 stop */
  551. #define ACIA_D8N1S (5<<2) /* 8 data, no parity, 1 stop */
  552. #define ACIA_D8E1S (6<<2) /* 8 data, even parity, 1 stop */
  553. #define ACIA_D8O1S (7<<2) /* 8 data, odd parity, 1 stop */
  554. /* transmit control */
  555. #define ACIA_RLTID (0<<5) /* RTS low, TxINT disabled */
  556. #define ACIA_RLTIE (1<<5) /* RTS low, TxINT enabled */
  557. #define ACIA_RHTID (2<<5) /* RTS high, TxINT disabled */
  558. #define ACIA_RLTIDSB (3<<5) /* RTS low, TxINT disabled, send break */
  559. /* receive control */
  560. #define ACIA_RID (0<<7) /* RxINT disabled */
  561. #define ACIA_RIE (1<<7) /* RxINT enabled */
  562. /* status fields of the ACIA */
  563. #define ACIA_RDRF 1 /* Receive Data Register Full */
  564. #define ACIA_TDRE (1<<1) /* Transmit Data Register Empty */
  565. #define ACIA_DCD (1<<2) /* Data Carrier Detect */
  566. #define ACIA_CTS (1<<3) /* Clear To Send */
  567. #define ACIA_FE (1<<4) /* Framing Error */
  568. #define ACIA_OVRN (1<<5) /* Receiver Overrun */
  569. #define ACIA_PE (1<<6) /* Parity Error */
  570. #define ACIA_IRQ (1<<7) /* Interrupt Request */
  571. #define ACIA_BAS (0xfffffc00)
  572. struct ACIA
  573. {
  574. u_char key_ctrl;
  575. u_char char_dummy1;
  576. u_char key_data;
  577. u_char char_dummy2;
  578. u_char mid_ctrl;
  579. u_char char_dummy3;
  580. u_char mid_data;
  581. };
  582. # define acia ((*(volatile struct ACIA*)ACIA_BAS))
  583. #define TT_DMASND_BAS (0xffff8900)
  584. struct TT_DMASND {
  585. u_char int_ctrl; /* Falcon: Interrupt control */
  586. u_char ctrl;
  587. u_char pad2;
  588. u_char bas_hi;
  589. u_char pad3;
  590. u_char bas_mid;
  591. u_char pad4;
  592. u_char bas_low;
  593. u_char pad5;
  594. u_char addr_hi;
  595. u_char pad6;
  596. u_char addr_mid;
  597. u_char pad7;
  598. u_char addr_low;
  599. u_char pad8;
  600. u_char end_hi;
  601. u_char pad9;
  602. u_char end_mid;
  603. u_char pad10;
  604. u_char end_low;
  605. u_char pad11[12];
  606. u_char track_select; /* Falcon */
  607. u_char mode;
  608. u_char pad12[14];
  609. /* Falcon only: */
  610. u_short cbar_src;
  611. u_short cbar_dst;
  612. u_char ext_div;
  613. u_char int_div;
  614. u_char rec_track_select;
  615. u_char dac_src;
  616. u_char adc_src;
  617. u_char input_gain;
  618. u_short output_atten;
  619. };
  620. # define tt_dmasnd ((*(volatile struct TT_DMASND *)TT_DMASND_BAS))
  621. #define DMASND_MFP_INT_REPLAY 0x01
  622. #define DMASND_MFP_INT_RECORD 0x02
  623. #define DMASND_TIMERA_INT_REPLAY 0x04
  624. #define DMASND_TIMERA_INT_RECORD 0x08
  625. #define DMASND_CTRL_OFF 0x00
  626. #define DMASND_CTRL_ON 0x01
  627. #define DMASND_CTRL_REPEAT 0x02
  628. #define DMASND_CTRL_RECORD_ON 0x10
  629. #define DMASND_CTRL_RECORD_OFF 0x00
  630. #define DMASND_CTRL_RECORD_REPEAT 0x20
  631. #define DMASND_CTRL_SELECT_REPLAY 0x00
  632. #define DMASND_CTRL_SELECT_RECORD 0x80
  633. #define DMASND_MODE_MONO 0x80
  634. #define DMASND_MODE_STEREO 0x00
  635. #define DMASND_MODE_8BIT 0x00
  636. #define DMASND_MODE_16BIT 0x40 /* Falcon only */
  637. #define DMASND_MODE_6KHZ 0x00 /* Falcon: mute */
  638. #define DMASND_MODE_12KHZ 0x01
  639. #define DMASND_MODE_25KHZ 0x02
  640. #define DMASND_MODE_50KHZ 0x03
  641. #define DMASNDSetBase(bufstart) \
  642. do { \
  643. tt_dmasnd.bas_hi = (unsigned char)(((bufstart) & 0xff0000) >> 16); \
  644. tt_dmasnd.bas_mid = (unsigned char)(((bufstart) & 0x00ff00) >> 8); \
  645. tt_dmasnd.bas_low = (unsigned char) ((bufstart) & 0x0000ff); \
  646. } while( 0 )
  647. #define DMASNDGetAdr() ((tt_dmasnd.addr_hi << 16) + \
  648. (tt_dmasnd.addr_mid << 8) + \
  649. (tt_dmasnd.addr_low))
  650. #define DMASNDSetEnd(bufend) \
  651. do { \
  652. tt_dmasnd.end_hi = (unsigned char)(((bufend) & 0xff0000) >> 16); \
  653. tt_dmasnd.end_mid = (unsigned char)(((bufend) & 0x00ff00) >> 8); \
  654. tt_dmasnd.end_low = (unsigned char) ((bufend) & 0x0000ff); \
  655. } while( 0 )
  656. #define TT_MICROWIRE_BAS (0xffff8922)
  657. struct TT_MICROWIRE {
  658. u_short data;
  659. u_short mask;
  660. };
  661. # define tt_microwire ((*(volatile struct TT_MICROWIRE *)TT_MICROWIRE_BAS))
  662. #define MW_LM1992_ADDR 0x0400
  663. #define MW_LM1992_VOLUME(dB) \
  664. (0x0c0 | ((dB) < -80 ? 0 : (dB) > 0 ? 40 : (((dB) + 80) / 2)))
  665. #define MW_LM1992_BALLEFT(dB) \
  666. (0x140 | ((dB) < -40 ? 0 : (dB) > 0 ? 20 : (((dB) + 40) / 2)))
  667. #define MW_LM1992_BALRIGHT(dB) \
  668. (0x100 | ((dB) < -40 ? 0 : (dB) > 0 ? 20 : (((dB) + 40) / 2)))
  669. #define MW_LM1992_TREBLE(dB) \
  670. (0x080 | ((dB) < -12 ? 0 : (dB) > 12 ? 12 : (((dB) / 2) + 6)))
  671. #define MW_LM1992_BASS(dB) \
  672. (0x040 | ((dB) < -12 ? 0 : (dB) > 12 ? 12 : (((dB) / 2) + 6)))
  673. #define MW_LM1992_PSG_LOW 0x000
  674. #define MW_LM1992_PSG_HIGH 0x001
  675. #define MW_LM1992_PSG_OFF 0x002
  676. #define MSTE_RTC_BAS (0xfffffc21)
  677. struct MSTE_RTC {
  678. u_char sec_ones;
  679. u_char dummy1;
  680. u_char sec_tens;
  681. u_char dummy2;
  682. u_char min_ones;
  683. u_char dummy3;
  684. u_char min_tens;
  685. u_char dummy4;
  686. u_char hr_ones;
  687. u_char dummy5;
  688. u_char hr_tens;
  689. u_char dummy6;
  690. u_char weekday;
  691. u_char dummy7;
  692. u_char day_ones;
  693. u_char dummy8;
  694. u_char day_tens;
  695. u_char dummy9;
  696. u_char mon_ones;
  697. u_char dummy10;
  698. u_char mon_tens;
  699. u_char dummy11;
  700. u_char year_ones;
  701. u_char dummy12;
  702. u_char year_tens;
  703. u_char dummy13;
  704. u_char mode;
  705. u_char dummy14;
  706. u_char test;
  707. u_char dummy15;
  708. u_char reset;
  709. };
  710. #define mste_rtc ((*(volatile struct MSTE_RTC *)MSTE_RTC_BAS))
  711. /*
  712. ** EtherNAT add-on card for Falcon - combined ethernet and USB adapter
  713. */
  714. #define ATARI_ETHERNAT_PHYS_ADDR 0x80000000
  715. #endif /* linux/atarihw.h */