xref: /openbmc/u-boot/drivers/ddr/fsl/ctrl_regs.c (revision c2800b16)
1 /*
2  * Copyright 2008-2012 Freescale Semiconductor, Inc.
3  *
4  * SPDX-License-Identifier:	GPL-2.0+
5  */
6 
7 /*
8  * Generic driver for Freescale DDR/DDR2/DDR3 memory controller.
9  * Based on code from spd_sdram.c
10  * Author: James Yang [at freescale.com]
11  */
12 
13 #include <common.h>
14 #include <fsl_ddr_sdram.h>
15 
16 #include <fsl_ddr.h>
17 #include <fsl_immap.h>
18 #include <asm/io.h>
19 
20 #define _DDR_ADDR CONFIG_SYS_FSL_DDR_ADDR
21 
22 static u32 fsl_ddr_get_version(void)
23 {
24 	struct ccsr_ddr __iomem *ddr;
25 	u32 ver_major_minor_errata;
26 
27 	ddr = (void *)_DDR_ADDR;
28 	ver_major_minor_errata = (ddr_in32(&ddr->ip_rev1) & 0xFFFF) << 8;
29 	ver_major_minor_errata |= (ddr_in32(&ddr->ip_rev2) & 0xFF00) >> 8;
30 
31 	return ver_major_minor_errata;
32 }
33 
34 unsigned int picos_to_mclk(unsigned int picos);
35 
36 /*
37  * Determine Rtt value.
38  *
39  * This should likely be either board or controller specific.
40  *
41  * Rtt(nominal) - DDR2:
42  *	0 = Rtt disabled
43  *	1 = 75 ohm
44  *	2 = 150 ohm
45  *	3 = 50 ohm
46  * Rtt(nominal) - DDR3:
47  *	0 = Rtt disabled
48  *	1 = 60 ohm
49  *	2 = 120 ohm
50  *	3 = 40 ohm
51  *	4 = 20 ohm
52  *	5 = 30 ohm
53  *
54  * FIXME: Apparently 8641 needs a value of 2
55  * FIXME: Old code seys if 667 MHz or higher, use 3 on 8572
56  *
57  * FIXME: There was some effort down this line earlier:
58  *
59  *	unsigned int i;
60  *	for (i = 0; i < CONFIG_CHIP_SELECTS_PER_CTRL/2; i++) {
61  *		if (popts->dimmslot[i].num_valid_cs
62  *		    && (popts->cs_local_opts[2*i].odt_rd_cfg
63  *			|| popts->cs_local_opts[2*i].odt_wr_cfg)) {
64  *			rtt = 2;
65  *			break;
66  *		}
67  *	}
68  */
69 static inline int fsl_ddr_get_rtt(void)
70 {
71 	int rtt;
72 
73 #if defined(CONFIG_SYS_FSL_DDR1)
74 	rtt = 0;
75 #elif defined(CONFIG_SYS_FSL_DDR2)
76 	rtt = 3;
77 #else
78 	rtt = 0;
79 #endif
80 
81 	return rtt;
82 }
83 
84 /*
85  * compute the CAS write latency according to DDR3 spec
86  * CWL = 5 if tCK >= 2.5ns
87  *       6 if 2.5ns > tCK >= 1.875ns
88  *       7 if 1.875ns > tCK >= 1.5ns
89  *       8 if 1.5ns > tCK >= 1.25ns
90  *       9 if 1.25ns > tCK >= 1.07ns
91  *       10 if 1.07ns > tCK >= 0.935ns
92  *       11 if 0.935ns > tCK >= 0.833ns
93  *       12 if 0.833ns > tCK >= 0.75ns
94  */
95 static inline unsigned int compute_cas_write_latency(void)
96 {
97 	unsigned int cwl;
98 	const unsigned int mclk_ps = get_memory_clk_period_ps();
99 
100 	if (mclk_ps >= 2500)
101 		cwl = 5;
102 	else if (mclk_ps >= 1875)
103 		cwl = 6;
104 	else if (mclk_ps >= 1500)
105 		cwl = 7;
106 	else if (mclk_ps >= 1250)
107 		cwl = 8;
108 	else if (mclk_ps >= 1070)
109 		cwl = 9;
110 	else if (mclk_ps >= 935)
111 		cwl = 10;
112 	else if (mclk_ps >= 833)
113 		cwl = 11;
114 	else if (mclk_ps >= 750)
115 		cwl = 12;
116 	else {
117 		cwl = 12;
118 		printf("Warning: CWL is out of range\n");
119 	}
120 	return cwl;
121 }
122 
123 /* Chip Select Configuration (CSn_CONFIG) */
124 static void set_csn_config(int dimm_number, int i, fsl_ddr_cfg_regs_t *ddr,
125 			       const memctl_options_t *popts,
126 			       const dimm_params_t *dimm_params)
127 {
128 	unsigned int cs_n_en = 0; /* Chip Select enable */
129 	unsigned int intlv_en = 0; /* Memory controller interleave enable */
130 	unsigned int intlv_ctl = 0; /* Interleaving control */
131 	unsigned int ap_n_en = 0; /* Chip select n auto-precharge enable */
132 	unsigned int odt_rd_cfg = 0; /* ODT for reads configuration */
133 	unsigned int odt_wr_cfg = 0; /* ODT for writes configuration */
134 	unsigned int ba_bits_cs_n = 0; /* Num of bank bits for SDRAM on CSn */
135 	unsigned int row_bits_cs_n = 0; /* Num of row bits for SDRAM on CSn */
136 	unsigned int col_bits_cs_n = 0; /* Num of ocl bits for SDRAM on CSn */
137 	int go_config = 0;
138 
139 	/* Compute CS_CONFIG only for existing ranks of each DIMM.  */
140 	switch (i) {
141 	case 0:
142 		if (dimm_params[dimm_number].n_ranks > 0) {
143 			go_config = 1;
144 			/* These fields only available in CS0_CONFIG */
145 			if (!popts->memctl_interleaving)
146 				break;
147 			switch (popts->memctl_interleaving_mode) {
148 			case FSL_DDR_256B_INTERLEAVING:
149 			case FSL_DDR_CACHE_LINE_INTERLEAVING:
150 			case FSL_DDR_PAGE_INTERLEAVING:
151 			case FSL_DDR_BANK_INTERLEAVING:
152 			case FSL_DDR_SUPERBANK_INTERLEAVING:
153 				intlv_en = popts->memctl_interleaving;
154 				intlv_ctl = popts->memctl_interleaving_mode;
155 				break;
156 			default:
157 				break;
158 			}
159 		}
160 		break;
161 	case 1:
162 		if ((dimm_number == 0 && dimm_params[0].n_ranks > 1) || \
163 		    (dimm_number == 1 && dimm_params[1].n_ranks > 0))
164 			go_config = 1;
165 		break;
166 	case 2:
167 		if ((dimm_number == 0 && dimm_params[0].n_ranks > 2) || \
168 		   (dimm_number >= 1 && dimm_params[dimm_number].n_ranks > 0))
169 			go_config = 1;
170 		break;
171 	case 3:
172 		if ((dimm_number == 0 && dimm_params[0].n_ranks > 3) || \
173 		    (dimm_number == 1 && dimm_params[1].n_ranks > 1) || \
174 		    (dimm_number == 3 && dimm_params[3].n_ranks > 0))
175 			go_config = 1;
176 		break;
177 	default:
178 		break;
179 	}
180 	if (go_config) {
181 		unsigned int n_banks_per_sdram_device;
182 		cs_n_en = 1;
183 		ap_n_en = popts->cs_local_opts[i].auto_precharge;
184 		odt_rd_cfg = popts->cs_local_opts[i].odt_rd_cfg;
185 		odt_wr_cfg = popts->cs_local_opts[i].odt_wr_cfg;
186 		n_banks_per_sdram_device
187 			= dimm_params[dimm_number].n_banks_per_sdram_device;
188 		ba_bits_cs_n = __ilog2(n_banks_per_sdram_device) - 2;
189 		row_bits_cs_n = dimm_params[dimm_number].n_row_addr - 12;
190 		col_bits_cs_n = dimm_params[dimm_number].n_col_addr - 8;
191 	}
192 	ddr->cs[i].config = (0
193 		| ((cs_n_en & 0x1) << 31)
194 		| ((intlv_en & 0x3) << 29)
195 		| ((intlv_ctl & 0xf) << 24)
196 		| ((ap_n_en & 0x1) << 23)
197 
198 		/* XXX: some implementation only have 1 bit starting at left */
199 		| ((odt_rd_cfg & 0x7) << 20)
200 
201 		/* XXX: Some implementation only have 1 bit starting at left */
202 		| ((odt_wr_cfg & 0x7) << 16)
203 
204 		| ((ba_bits_cs_n & 0x3) << 14)
205 		| ((row_bits_cs_n & 0x7) << 8)
206 		| ((col_bits_cs_n & 0x7) << 0)
207 		);
208 	debug("FSLDDR: cs[%d]_config = 0x%08x\n", i,ddr->cs[i].config);
209 }
210 
211 /* Chip Select Configuration 2 (CSn_CONFIG_2) */
212 /* FIXME: 8572 */
213 static void set_csn_config_2(int i, fsl_ddr_cfg_regs_t *ddr)
214 {
215 	unsigned int pasr_cfg = 0;	/* Partial array self refresh config */
216 
217 	ddr->cs[i].config_2 = ((pasr_cfg & 7) << 24);
218 	debug("FSLDDR: cs[%d]_config_2 = 0x%08x\n", i, ddr->cs[i].config_2);
219 }
220 
221 /* -3E = 667 CL5, -25 = CL6 800, -25E = CL5 800 */
222 
223 #if !defined(CONFIG_SYS_FSL_DDR1)
224 static inline int avoid_odt_overlap(const dimm_params_t *dimm_params)
225 {
226 #if CONFIG_DIMM_SLOTS_PER_CTLR == 1
227 	if (dimm_params[0].n_ranks == 4)
228 		return 1;
229 #endif
230 
231 #if CONFIG_DIMM_SLOTS_PER_CTLR == 2
232 	if ((dimm_params[0].n_ranks == 2) &&
233 		(dimm_params[1].n_ranks == 2))
234 		return 1;
235 
236 #ifdef CONFIG_FSL_DDR_FIRST_SLOT_QUAD_CAPABLE
237 	if (dimm_params[0].n_ranks == 4)
238 		return 1;
239 #endif
240 #endif
241 	return 0;
242 }
243 
244 /*
245  * DDR SDRAM Timing Configuration 0 (TIMING_CFG_0)
246  *
247  * Avoid writing for DDR I.  The new PQ38 DDR controller
248  * dreams up non-zero default values to be backwards compatible.
249  */
250 static void set_timing_cfg_0(fsl_ddr_cfg_regs_t *ddr,
251 				const memctl_options_t *popts,
252 				const dimm_params_t *dimm_params)
253 {
254 	unsigned char trwt_mclk = 0;   /* Read-to-write turnaround */
255 	unsigned char twrt_mclk = 0;   /* Write-to-read turnaround */
256 	/* 7.5 ns on -3E; 0 means WL - CL + BL/2 + 1 */
257 	unsigned char trrt_mclk = 0;   /* Read-to-read turnaround */
258 	unsigned char twwt_mclk = 0;   /* Write-to-write turnaround */
259 
260 	/* Active powerdown exit timing (tXARD and tXARDS). */
261 	unsigned char act_pd_exit_mclk;
262 	/* Precharge powerdown exit timing (tXP). */
263 	unsigned char pre_pd_exit_mclk;
264 	/* ODT powerdown exit timing (tAXPD). */
265 	unsigned char taxpd_mclk;
266 	/* Mode register set cycle time (tMRD). */
267 	unsigned char tmrd_mclk;
268 
269 #ifdef CONFIG_SYS_FSL_DDR3
270 	/*
271 	 * (tXARD and tXARDS). Empirical?
272 	 * The DDR3 spec has not tXARD,
273 	 * we use the tXP instead of it.
274 	 * tXP=max(3nCK, 7.5ns) for DDR3.
275 	 * spec has not the tAXPD, we use
276 	 * tAXPD=1, need design to confirm.
277 	 */
278 	int tXP = max((get_memory_clk_period_ps() * 3), 7500); /* unit=ps */
279 	unsigned int data_rate = get_ddr_freq(0);
280 	tmrd_mclk = 4;
281 	/* set the turnaround time */
282 
283 	/*
284 	 * for single quad-rank DIMM and two dual-rank DIMMs
285 	 * to avoid ODT overlap
286 	 */
287 	if (avoid_odt_overlap(dimm_params)) {
288 		twwt_mclk = 2;
289 		trrt_mclk = 1;
290 	}
291 	/* for faster clock, need more time for data setup */
292 	trwt_mclk = (data_rate/1000000 > 1800) ? 2 : 1;
293 
294 	if ((data_rate/1000000 > 1150) || (popts->memctl_interleaving))
295 		twrt_mclk = 1;
296 
297 	if (popts->dynamic_power == 0) {	/* powerdown is not used */
298 		act_pd_exit_mclk = 1;
299 		pre_pd_exit_mclk = 1;
300 		taxpd_mclk = 1;
301 	} else {
302 		/* act_pd_exit_mclk = tXARD, see above */
303 		act_pd_exit_mclk = picos_to_mclk(tXP);
304 		/* Mode register MR0[A12] is '1' - fast exit */
305 		pre_pd_exit_mclk = act_pd_exit_mclk;
306 		taxpd_mclk = 1;
307 	}
308 #else /* CONFIG_SYS_FSL_DDR2 */
309 	/*
310 	 * (tXARD and tXARDS). Empirical?
311 	 * tXARD = 2 for DDR2
312 	 * tXP=2
313 	 * tAXPD=8
314 	 */
315 	act_pd_exit_mclk = 2;
316 	pre_pd_exit_mclk = 2;
317 	taxpd_mclk = 8;
318 	tmrd_mclk = 2;
319 #endif
320 
321 	if (popts->trwt_override)
322 		trwt_mclk = popts->trwt;
323 
324 	ddr->timing_cfg_0 = (0
325 		| ((trwt_mclk & 0x3) << 30)	/* RWT */
326 		| ((twrt_mclk & 0x3) << 28)	/* WRT */
327 		| ((trrt_mclk & 0x3) << 26)	/* RRT */
328 		| ((twwt_mclk & 0x3) << 24)	/* WWT */
329 		| ((act_pd_exit_mclk & 0xf) << 20)  /* ACT_PD_EXIT */
330 		| ((pre_pd_exit_mclk & 0xF) << 16)  /* PRE_PD_EXIT */
331 		| ((taxpd_mclk & 0xf) << 8)	/* ODT_PD_EXIT */
332 		| ((tmrd_mclk & 0x1f) << 0)	/* MRS_CYC */
333 		);
334 	debug("FSLDDR: timing_cfg_0 = 0x%08x\n", ddr->timing_cfg_0);
335 }
336 #endif	/* defined(CONFIG_SYS_FSL_DDR2) */
337 
338 /* DDR SDRAM Timing Configuration 3 (TIMING_CFG_3) */
339 static void set_timing_cfg_3(fsl_ddr_cfg_regs_t *ddr,
340 			       const memctl_options_t *popts,
341 			       const common_timing_params_t *common_dimm,
342 			       unsigned int cas_latency,
343 			       unsigned int additive_latency)
344 {
345 	/* Extended precharge to activate interval (tRP) */
346 	unsigned int ext_pretoact = 0;
347 	/* Extended Activate to precharge interval (tRAS) */
348 	unsigned int ext_acttopre = 0;
349 	/* Extended activate to read/write interval (tRCD) */
350 	unsigned int ext_acttorw = 0;
351 	/* Extended refresh recovery time (tRFC) */
352 	unsigned int ext_refrec;
353 	/* Extended MCAS latency from READ cmd */
354 	unsigned int ext_caslat = 0;
355 	/* Extended additive latency */
356 	unsigned int ext_add_lat = 0;
357 	/* Extended last data to precharge interval (tWR) */
358 	unsigned int ext_wrrec = 0;
359 	/* Control Adjust */
360 	unsigned int cntl_adj = 0;
361 
362 	ext_pretoact = picos_to_mclk(common_dimm->trp_ps) >> 4;
363 	ext_acttopre = picos_to_mclk(common_dimm->tras_ps) >> 4;
364 	ext_acttorw = picos_to_mclk(common_dimm->trcd_ps) >> 4;
365 	ext_caslat = (2 * cas_latency - 1) >> 4;
366 	ext_add_lat = additive_latency >> 4;
367 	ext_refrec = (picos_to_mclk(common_dimm->trfc_ps) - 8) >> 4;
368 	/* ext_wrrec only deals with 16 clock and above, or 14 with OTF */
369 	ext_wrrec = (picos_to_mclk(common_dimm->twr_ps) +
370 		(popts->otf_burst_chop_en ? 2 : 0)) >> 4;
371 
372 	ddr->timing_cfg_3 = (0
373 		| ((ext_pretoact & 0x1) << 28)
374 		| ((ext_acttopre & 0x3) << 24)
375 		| ((ext_acttorw & 0x1) << 22)
376 		| ((ext_refrec & 0x1F) << 16)
377 		| ((ext_caslat & 0x3) << 12)
378 		| ((ext_add_lat & 0x1) << 10)
379 		| ((ext_wrrec & 0x1) << 8)
380 		| ((cntl_adj & 0x7) << 0)
381 		);
382 	debug("FSLDDR: timing_cfg_3 = 0x%08x\n", ddr->timing_cfg_3);
383 }
384 
385 /* DDR SDRAM Timing Configuration 1 (TIMING_CFG_1) */
386 static void set_timing_cfg_1(fsl_ddr_cfg_regs_t *ddr,
387 			       const memctl_options_t *popts,
388 			       const common_timing_params_t *common_dimm,
389 			       unsigned int cas_latency)
390 {
391 	/* Precharge-to-activate interval (tRP) */
392 	unsigned char pretoact_mclk;
393 	/* Activate to precharge interval (tRAS) */
394 	unsigned char acttopre_mclk;
395 	/*  Activate to read/write interval (tRCD) */
396 	unsigned char acttorw_mclk;
397 	/* CASLAT */
398 	unsigned char caslat_ctrl;
399 	/*  Refresh recovery time (tRFC) ; trfc_low */
400 	unsigned char refrec_ctrl;
401 	/* Last data to precharge minimum interval (tWR) */
402 	unsigned char wrrec_mclk;
403 	/* Activate-to-activate interval (tRRD) */
404 	unsigned char acttoact_mclk;
405 	/* Last write data pair to read command issue interval (tWTR) */
406 	unsigned char wrtord_mclk;
407 	/* DDR_SDRAM_MODE doesn't support 9,11,13,15 */
408 	static const u8 wrrec_table[] = {
409 		1, 2, 3, 4, 5, 6, 7, 8, 10, 10, 12, 12, 14, 14, 0, 0};
410 
411 	pretoact_mclk = picos_to_mclk(common_dimm->trp_ps);
412 	acttopre_mclk = picos_to_mclk(common_dimm->tras_ps);
413 	acttorw_mclk = picos_to_mclk(common_dimm->trcd_ps);
414 
415 	/*
416 	 * Translate CAS Latency to a DDR controller field value:
417 	 *
418 	 *      CAS Lat DDR I   DDR II  Ctrl
419 	 *      Clocks  SPD Bit SPD Bit Value
420 	 *      ------- ------- ------- -----
421 	 *      1.0     0               0001
422 	 *      1.5     1               0010
423 	 *      2.0     2       2       0011
424 	 *      2.5     3               0100
425 	 *      3.0     4       3       0101
426 	 *      3.5     5               0110
427 	 *      4.0             4       0111
428 	 *      4.5                     1000
429 	 *      5.0             5       1001
430 	 */
431 #if defined(CONFIG_SYS_FSL_DDR1)
432 	caslat_ctrl = (cas_latency + 1) & 0x07;
433 #elif defined(CONFIG_SYS_FSL_DDR2)
434 	caslat_ctrl = 2 * cas_latency - 1;
435 #else
436 	/*
437 	 * if the CAS latency more than 8 cycle,
438 	 * we need set extend bit for it at
439 	 * TIMING_CFG_3[EXT_CASLAT]
440 	 */
441 	caslat_ctrl = 2 * cas_latency - 1;
442 #endif
443 
444 	refrec_ctrl = picos_to_mclk(common_dimm->trfc_ps) - 8;
445 	wrrec_mclk = picos_to_mclk(common_dimm->twr_ps);
446 
447 	if (wrrec_mclk > 16)
448 		printf("Error: WRREC doesn't support more than 16 clocks\n");
449 	else
450 		wrrec_mclk = wrrec_table[wrrec_mclk - 1];
451 	if (popts->otf_burst_chop_en)
452 		wrrec_mclk += 2;
453 
454 	acttoact_mclk = picos_to_mclk(common_dimm->trrd_ps);
455 	/*
456 	 * JEDEC has min requirement for tRRD
457 	 */
458 #if defined(CONFIG_SYS_FSL_DDR3)
459 	if (acttoact_mclk < 4)
460 		acttoact_mclk = 4;
461 #endif
462 	wrtord_mclk = picos_to_mclk(common_dimm->twtr_ps);
463 	/*
464 	 * JEDEC has some min requirements for tWTR
465 	 */
466 #if defined(CONFIG_SYS_FSL_DDR2)
467 	if (wrtord_mclk < 2)
468 		wrtord_mclk = 2;
469 #elif defined(CONFIG_SYS_FSL_DDR3)
470 	if (wrtord_mclk < 4)
471 		wrtord_mclk = 4;
472 #endif
473 	if (popts->otf_burst_chop_en)
474 		wrtord_mclk += 2;
475 
476 	ddr->timing_cfg_1 = (0
477 		| ((pretoact_mclk & 0x0F) << 28)
478 		| ((acttopre_mclk & 0x0F) << 24)
479 		| ((acttorw_mclk & 0xF) << 20)
480 		| ((caslat_ctrl & 0xF) << 16)
481 		| ((refrec_ctrl & 0xF) << 12)
482 		| ((wrrec_mclk & 0x0F) << 8)
483 		| ((acttoact_mclk & 0x0F) << 4)
484 		| ((wrtord_mclk & 0x0F) << 0)
485 		);
486 	debug("FSLDDR: timing_cfg_1 = 0x%08x\n", ddr->timing_cfg_1);
487 }
488 
489 /* DDR SDRAM Timing Configuration 2 (TIMING_CFG_2) */
490 static void set_timing_cfg_2(fsl_ddr_cfg_regs_t *ddr,
491 			       const memctl_options_t *popts,
492 			       const common_timing_params_t *common_dimm,
493 			       unsigned int cas_latency,
494 			       unsigned int additive_latency)
495 {
496 	/* Additive latency */
497 	unsigned char add_lat_mclk;
498 	/* CAS-to-preamble override */
499 	unsigned short cpo;
500 	/* Write latency */
501 	unsigned char wr_lat;
502 	/*  Read to precharge (tRTP) */
503 	unsigned char rd_to_pre;
504 	/* Write command to write data strobe timing adjustment */
505 	unsigned char wr_data_delay;
506 	/* Minimum CKE pulse width (tCKE) */
507 	unsigned char cke_pls;
508 	/* Window for four activates (tFAW) */
509 	unsigned short four_act;
510 
511 	/* FIXME add check that this must be less than acttorw_mclk */
512 	add_lat_mclk = additive_latency;
513 	cpo = popts->cpo_override;
514 
515 #if defined(CONFIG_SYS_FSL_DDR1)
516 	/*
517 	 * This is a lie.  It should really be 1, but if it is
518 	 * set to 1, bits overlap into the old controller's
519 	 * otherwise unused ACSM field.  If we leave it 0, then
520 	 * the HW will magically treat it as 1 for DDR 1.  Oh Yea.
521 	 */
522 	wr_lat = 0;
523 #elif defined(CONFIG_SYS_FSL_DDR2)
524 	wr_lat = cas_latency - 1;
525 #else
526 	wr_lat = compute_cas_write_latency();
527 #endif
528 
529 	rd_to_pre = picos_to_mclk(common_dimm->trtp_ps);
530 	/*
531 	 * JEDEC has some min requirements for tRTP
532 	 */
533 #if defined(CONFIG_SYS_FSL_DDR2)
534 	if (rd_to_pre  < 2)
535 		rd_to_pre  = 2;
536 #elif defined(CONFIG_SYS_FSL_DDR3)
537 	if (rd_to_pre < 4)
538 		rd_to_pre = 4;
539 #endif
540 	if (popts->otf_burst_chop_en)
541 		rd_to_pre += 2; /* according to UM */
542 
543 	wr_data_delay = popts->write_data_delay;
544 	cke_pls = picos_to_mclk(popts->tcke_clock_pulse_width_ps);
545 	four_act = picos_to_mclk(popts->tfaw_window_four_activates_ps);
546 
547 	ddr->timing_cfg_2 = (0
548 		| ((add_lat_mclk & 0xf) << 28)
549 		| ((cpo & 0x1f) << 23)
550 		| ((wr_lat & 0xf) << 19)
551 		| ((rd_to_pre & RD_TO_PRE_MASK) << RD_TO_PRE_SHIFT)
552 		| ((wr_data_delay & WR_DATA_DELAY_MASK) << WR_DATA_DELAY_SHIFT)
553 		| ((cke_pls & 0x7) << 6)
554 		| ((four_act & 0x3f) << 0)
555 		);
556 	debug("FSLDDR: timing_cfg_2 = 0x%08x\n", ddr->timing_cfg_2);
557 }
558 
559 /* DDR SDRAM Register Control Word */
560 static void set_ddr_sdram_rcw(fsl_ddr_cfg_regs_t *ddr,
561 			       const memctl_options_t *popts,
562 			       const common_timing_params_t *common_dimm)
563 {
564 	if (common_dimm->all_dimms_registered &&
565 	    !common_dimm->all_dimms_unbuffered)	{
566 		if (popts->rcw_override) {
567 			ddr->ddr_sdram_rcw_1 = popts->rcw_1;
568 			ddr->ddr_sdram_rcw_2 = popts->rcw_2;
569 		} else {
570 			ddr->ddr_sdram_rcw_1 =
571 				common_dimm->rcw[0] << 28 | \
572 				common_dimm->rcw[1] << 24 | \
573 				common_dimm->rcw[2] << 20 | \
574 				common_dimm->rcw[3] << 16 | \
575 				common_dimm->rcw[4] << 12 | \
576 				common_dimm->rcw[5] << 8 | \
577 				common_dimm->rcw[6] << 4 | \
578 				common_dimm->rcw[7];
579 			ddr->ddr_sdram_rcw_2 =
580 				common_dimm->rcw[8] << 28 | \
581 				common_dimm->rcw[9] << 24 | \
582 				common_dimm->rcw[10] << 20 | \
583 				common_dimm->rcw[11] << 16 | \
584 				common_dimm->rcw[12] << 12 | \
585 				common_dimm->rcw[13] << 8 | \
586 				common_dimm->rcw[14] << 4 | \
587 				common_dimm->rcw[15];
588 		}
589 		debug("FSLDDR: ddr_sdram_rcw_1 = 0x%08x\n", ddr->ddr_sdram_rcw_1);
590 		debug("FSLDDR: ddr_sdram_rcw_2 = 0x%08x\n", ddr->ddr_sdram_rcw_2);
591 	}
592 }
593 
594 /* DDR SDRAM control configuration (DDR_SDRAM_CFG) */
595 static void set_ddr_sdram_cfg(fsl_ddr_cfg_regs_t *ddr,
596 			       const memctl_options_t *popts,
597 			       const common_timing_params_t *common_dimm)
598 {
599 	unsigned int mem_en;		/* DDR SDRAM interface logic enable */
600 	unsigned int sren;		/* Self refresh enable (during sleep) */
601 	unsigned int ecc_en;		/* ECC enable. */
602 	unsigned int rd_en;		/* Registered DIMM enable */
603 	unsigned int sdram_type;	/* Type of SDRAM */
604 	unsigned int dyn_pwr;		/* Dynamic power management mode */
605 	unsigned int dbw;		/* DRAM dta bus width */
606 	unsigned int eight_be = 0;	/* 8-beat burst enable, DDR2 is zero */
607 	unsigned int ncap = 0;		/* Non-concurrent auto-precharge */
608 	unsigned int threet_en;		/* Enable 3T timing */
609 	unsigned int twot_en;		/* Enable 2T timing */
610 	unsigned int ba_intlv_ctl;	/* Bank (CS) interleaving control */
611 	unsigned int x32_en = 0;	/* x32 enable */
612 	unsigned int pchb8 = 0;		/* precharge bit 8 enable */
613 	unsigned int hse;		/* Global half strength override */
614 	unsigned int mem_halt = 0;	/* memory controller halt */
615 	unsigned int bi = 0;		/* Bypass initialization */
616 
617 	mem_en = 1;
618 	sren = popts->self_refresh_in_sleep;
619 	if (common_dimm->all_dimms_ecc_capable) {
620 		/* Allow setting of ECC only if all DIMMs are ECC. */
621 		ecc_en = popts->ecc_mode;
622 	} else {
623 		ecc_en = 0;
624 	}
625 
626 	if (common_dimm->all_dimms_registered &&
627 	    !common_dimm->all_dimms_unbuffered)	{
628 		rd_en = 1;
629 		twot_en = 0;
630 	} else {
631 		rd_en = 0;
632 		twot_en = popts->twot_en;
633 	}
634 
635 	sdram_type = CONFIG_FSL_SDRAM_TYPE;
636 
637 	dyn_pwr = popts->dynamic_power;
638 	dbw = popts->data_bus_width;
639 	/* 8-beat burst enable DDR-III case
640 	 * we must clear it when use the on-the-fly mode,
641 	 * must set it when use the 32-bits bus mode.
642 	 */
643 	if (sdram_type == SDRAM_TYPE_DDR3) {
644 		if (popts->burst_length == DDR_BL8)
645 			eight_be = 1;
646 		if (popts->burst_length == DDR_OTF)
647 			eight_be = 0;
648 		if (dbw == 0x1)
649 			eight_be = 1;
650 	}
651 
652 	threet_en = popts->threet_en;
653 	ba_intlv_ctl = popts->ba_intlv_ctl;
654 	hse = popts->half_strength_driver_enable;
655 
656 	ddr->ddr_sdram_cfg = (0
657 			| ((mem_en & 0x1) << 31)
658 			| ((sren & 0x1) << 30)
659 			| ((ecc_en & 0x1) << 29)
660 			| ((rd_en & 0x1) << 28)
661 			| ((sdram_type & 0x7) << 24)
662 			| ((dyn_pwr & 0x1) << 21)
663 			| ((dbw & 0x3) << 19)
664 			| ((eight_be & 0x1) << 18)
665 			| ((ncap & 0x1) << 17)
666 			| ((threet_en & 0x1) << 16)
667 			| ((twot_en & 0x1) << 15)
668 			| ((ba_intlv_ctl & 0x7F) << 8)
669 			| ((x32_en & 0x1) << 5)
670 			| ((pchb8 & 0x1) << 4)
671 			| ((hse & 0x1) << 3)
672 			| ((mem_halt & 0x1) << 1)
673 			| ((bi & 0x1) << 0)
674 			);
675 	debug("FSLDDR: ddr_sdram_cfg = 0x%08x\n", ddr->ddr_sdram_cfg);
676 }
677 
678 /* DDR SDRAM control configuration 2 (DDR_SDRAM_CFG_2) */
679 static void set_ddr_sdram_cfg_2(fsl_ddr_cfg_regs_t *ddr,
680 			       const memctl_options_t *popts,
681 			       const unsigned int unq_mrs_en)
682 {
683 	unsigned int frc_sr = 0;	/* Force self refresh */
684 	unsigned int sr_ie = 0;		/* Self-refresh interrupt enable */
685 	unsigned int dll_rst_dis;	/* DLL reset disable */
686 	unsigned int dqs_cfg;		/* DQS configuration */
687 	unsigned int odt_cfg = 0;	/* ODT configuration */
688 	unsigned int num_pr;		/* Number of posted refreshes */
689 	unsigned int slow = 0;		/* DDR will be run less than 1250 */
690 	unsigned int x4_en = 0;		/* x4 DRAM enable */
691 	unsigned int obc_cfg;		/* On-The-Fly Burst Chop Cfg */
692 	unsigned int ap_en;		/* Address Parity Enable */
693 	unsigned int d_init;		/* DRAM data initialization */
694 	unsigned int rcw_en = 0;	/* Register Control Word Enable */
695 	unsigned int md_en = 0;		/* Mirrored DIMM Enable */
696 	unsigned int qd_en = 0;		/* quad-rank DIMM Enable */
697 	int i;
698 
699 	dll_rst_dis = 1;	/* Make this configurable */
700 	dqs_cfg = popts->dqs_config;
701 	for (i = 0; i < CONFIG_CHIP_SELECTS_PER_CTRL; i++) {
702 		if (popts->cs_local_opts[i].odt_rd_cfg
703 			|| popts->cs_local_opts[i].odt_wr_cfg) {
704 			odt_cfg = SDRAM_CFG2_ODT_ONLY_READ;
705 			break;
706 		}
707 	}
708 
709 	num_pr = 1;	/* Make this configurable */
710 
711 	/*
712 	 * 8572 manual says
713 	 *     {TIMING_CFG_1[PRETOACT]
714 	 *      + [DDR_SDRAM_CFG_2[NUM_PR]
715 	 *        * ({EXT_REFREC || REFREC} + 8 + 2)]}
716 	 *      << DDR_SDRAM_INTERVAL[REFINT]
717 	 */
718 #if defined(CONFIG_SYS_FSL_DDR3)
719 	obc_cfg = popts->otf_burst_chop_en;
720 #else
721 	obc_cfg = 0;
722 #endif
723 
724 #if (CONFIG_SYS_FSL_DDR_VER >= FSL_DDR_VER_4_7)
725 	slow = get_ddr_freq(0) < 1249000000;
726 #endif
727 
728 	if (popts->registered_dimm_en) {
729 		rcw_en = 1;
730 		ap_en = popts->ap_en;
731 	} else {
732 		ap_en = 0;
733 	}
734 
735 	x4_en = popts->x4_en ? 1 : 0;
736 
737 #if defined(CONFIG_ECC_INIT_VIA_DDRCONTROLLER)
738 	/* Use the DDR controller to auto initialize memory. */
739 	d_init = popts->ecc_init_using_memctl;
740 	ddr->ddr_data_init = CONFIG_MEM_INIT_VALUE;
741 	debug("DDR: ddr_data_init = 0x%08x\n", ddr->ddr_data_init);
742 #else
743 	/* Memory will be initialized via DMA, or not at all. */
744 	d_init = 0;
745 #endif
746 
747 #if defined(CONFIG_SYS_FSL_DDR3)
748 	md_en = popts->mirrored_dimm;
749 #endif
750 	qd_en = popts->quad_rank_present ? 1 : 0;
751 	ddr->ddr_sdram_cfg_2 = (0
752 		| ((frc_sr & 0x1) << 31)
753 		| ((sr_ie & 0x1) << 30)
754 		| ((dll_rst_dis & 0x1) << 29)
755 		| ((dqs_cfg & 0x3) << 26)
756 		| ((odt_cfg & 0x3) << 21)
757 		| ((num_pr & 0xf) << 12)
758 		| ((slow & 1) << 11)
759 		| (x4_en << 10)
760 		| (qd_en << 9)
761 		| (unq_mrs_en << 8)
762 		| ((obc_cfg & 0x1) << 6)
763 		| ((ap_en & 0x1) << 5)
764 		| ((d_init & 0x1) << 4)
765 		| ((rcw_en & 0x1) << 2)
766 		| ((md_en & 0x1) << 0)
767 		);
768 	debug("FSLDDR: ddr_sdram_cfg_2 = 0x%08x\n", ddr->ddr_sdram_cfg_2);
769 }
770 
771 /* DDR SDRAM Mode configuration 2 (DDR_SDRAM_MODE_2) */
772 static void set_ddr_sdram_mode_2(fsl_ddr_cfg_regs_t *ddr,
773 				const memctl_options_t *popts,
774 				const common_timing_params_t *common_dimm,
775 				const unsigned int unq_mrs_en)
776 {
777 	unsigned short esdmode2 = 0;	/* Extended SDRAM mode 2 */
778 	unsigned short esdmode3 = 0;	/* Extended SDRAM mode 3 */
779 
780 #if defined(CONFIG_SYS_FSL_DDR3)
781 	int i;
782 	unsigned int rtt_wr = 0;	/* Rtt_WR - dynamic ODT off */
783 	unsigned int srt = 0;	/* self-refresh temerature, normal range */
784 	unsigned int asr = 0;	/* auto self-refresh disable */
785 	unsigned int cwl = compute_cas_write_latency() - 5;
786 	unsigned int pasr = 0;	/* partial array self refresh disable */
787 
788 	if (popts->rtt_override)
789 		rtt_wr = popts->rtt_wr_override_value;
790 	else
791 		rtt_wr = popts->cs_local_opts[0].odt_rtt_wr;
792 
793 	if (common_dimm->extended_op_srt)
794 		srt = common_dimm->extended_op_srt;
795 
796 	esdmode2 = (0
797 		| ((rtt_wr & 0x3) << 9)
798 		| ((srt & 0x1) << 7)
799 		| ((asr & 0x1) << 6)
800 		| ((cwl & 0x7) << 3)
801 		| ((pasr & 0x7) << 0));
802 #endif
803 	ddr->ddr_sdram_mode_2 = (0
804 				 | ((esdmode2 & 0xFFFF) << 16)
805 				 | ((esdmode3 & 0xFFFF) << 0)
806 				 );
807 	debug("FSLDDR: ddr_sdram_mode_2 = 0x%08x\n", ddr->ddr_sdram_mode_2);
808 
809 #ifdef CONFIG_SYS_FSL_DDR3
810 	if (unq_mrs_en) {	/* unique mode registers are supported */
811 		for (i = 1; i < CONFIG_CHIP_SELECTS_PER_CTRL; i++) {
812 			if (popts->rtt_override)
813 				rtt_wr = popts->rtt_wr_override_value;
814 			else
815 				rtt_wr = popts->cs_local_opts[i].odt_rtt_wr;
816 
817 			esdmode2 &= 0xF9FF;	/* clear bit 10, 9 */
818 			esdmode2 |= (rtt_wr & 0x3) << 9;
819 			switch (i) {
820 			case 1:
821 				ddr->ddr_sdram_mode_4 = (0
822 					| ((esdmode2 & 0xFFFF) << 16)
823 					| ((esdmode3 & 0xFFFF) << 0)
824 					);
825 				break;
826 			case 2:
827 				ddr->ddr_sdram_mode_6 = (0
828 					| ((esdmode2 & 0xFFFF) << 16)
829 					| ((esdmode3 & 0xFFFF) << 0)
830 					);
831 				break;
832 			case 3:
833 				ddr->ddr_sdram_mode_8 = (0
834 					| ((esdmode2 & 0xFFFF) << 16)
835 					| ((esdmode3 & 0xFFFF) << 0)
836 					);
837 				break;
838 			}
839 		}
840 		debug("FSLDDR: ddr_sdram_mode_4 = 0x%08x\n",
841 			ddr->ddr_sdram_mode_4);
842 		debug("FSLDDR: ddr_sdram_mode_6 = 0x%08x\n",
843 			ddr->ddr_sdram_mode_6);
844 		debug("FSLDDR: ddr_sdram_mode_8 = 0x%08x\n",
845 			ddr->ddr_sdram_mode_8);
846 	}
847 #endif
848 }
849 
850 /* DDR SDRAM Interval Configuration (DDR_SDRAM_INTERVAL) */
851 static void set_ddr_sdram_interval(fsl_ddr_cfg_regs_t *ddr,
852 			       const memctl_options_t *popts,
853 			       const common_timing_params_t *common_dimm)
854 {
855 	unsigned int refint;	/* Refresh interval */
856 	unsigned int bstopre;	/* Precharge interval */
857 
858 	refint = picos_to_mclk(common_dimm->refresh_rate_ps);
859 
860 	bstopre = popts->bstopre;
861 
862 	/* refint field used 0x3FFF in earlier controllers */
863 	ddr->ddr_sdram_interval = (0
864 				   | ((refint & 0xFFFF) << 16)
865 				   | ((bstopre & 0x3FFF) << 0)
866 				   );
867 	debug("FSLDDR: ddr_sdram_interval = 0x%08x\n", ddr->ddr_sdram_interval);
868 }
869 
870 #if defined(CONFIG_SYS_FSL_DDR3)
871 /* DDR SDRAM Mode configuration set (DDR_SDRAM_MODE) */
872 static void set_ddr_sdram_mode(fsl_ddr_cfg_regs_t *ddr,
873 			       const memctl_options_t *popts,
874 			       const common_timing_params_t *common_dimm,
875 			       unsigned int cas_latency,
876 			       unsigned int additive_latency,
877 			       const unsigned int unq_mrs_en)
878 {
879 	unsigned short esdmode;		/* Extended SDRAM mode */
880 	unsigned short sdmode;		/* SDRAM mode */
881 
882 	/* Mode Register - MR1 */
883 	unsigned int qoff = 0;		/* Output buffer enable 0=yes, 1=no */
884 	unsigned int tdqs_en = 0;	/* TDQS Enable: 0=no, 1=yes */
885 	unsigned int rtt;
886 	unsigned int wrlvl_en = 0;	/* Write level enable: 0=no, 1=yes */
887 	unsigned int al = 0;		/* Posted CAS# additive latency (AL) */
888 	unsigned int dic = 0;		/* Output driver impedance, 40ohm */
889 	unsigned int dll_en = 0;	/* DLL Enable  0=Enable (Normal),
890 						       1=Disable (Test/Debug) */
891 
892 	/* Mode Register - MR0 */
893 	unsigned int dll_on;	/* DLL control for precharge PD, 0=off, 1=on */
894 	unsigned int wr = 0;	/* Write Recovery */
895 	unsigned int dll_rst;	/* DLL Reset */
896 	unsigned int mode;	/* Normal=0 or Test=1 */
897 	unsigned int caslat = 4;/* CAS# latency, default set as 6 cycles */
898 	/* BT: Burst Type (0=Nibble Sequential, 1=Interleaved) */
899 	unsigned int bt;
900 	unsigned int bl;	/* BL: Burst Length */
901 
902 	unsigned int wr_mclk;
903 	/*
904 	 * DDR_SDRAM_MODE doesn't support 9,11,13,15
905 	 * Please refer JEDEC Standard No. 79-3E for Mode Register MR0
906 	 * for this table
907 	 */
908 	static const u8 wr_table[] = {1, 2, 3, 4, 5, 5, 6, 6, 7, 7, 0, 0};
909 
910 	const unsigned int mclk_ps = get_memory_clk_period_ps();
911 	int i;
912 
913 	if (popts->rtt_override)
914 		rtt = popts->rtt_override_value;
915 	else
916 		rtt = popts->cs_local_opts[0].odt_rtt_norm;
917 
918 	if (additive_latency == (cas_latency - 1))
919 		al = 1;
920 	if (additive_latency == (cas_latency - 2))
921 		al = 2;
922 
923 	if (popts->quad_rank_present)
924 		dic = 1;	/* output driver impedance 240/7 ohm */
925 
926 	/*
927 	 * The esdmode value will also be used for writing
928 	 * MR1 during write leveling for DDR3, although the
929 	 * bits specifically related to the write leveling
930 	 * scheme will be handled automatically by the DDR
931 	 * controller. so we set the wrlvl_en = 0 here.
932 	 */
933 	esdmode = (0
934 		| ((qoff & 0x1) << 12)
935 		| ((tdqs_en & 0x1) << 11)
936 		| ((rtt & 0x4) << 7)   /* rtt field is split */
937 		| ((wrlvl_en & 0x1) << 7)
938 		| ((rtt & 0x2) << 5)   /* rtt field is split */
939 		| ((dic & 0x2) << 4)   /* DIC field is split */
940 		| ((al & 0x3) << 3)
941 		| ((rtt & 0x1) << 2)  /* rtt field is split */
942 		| ((dic & 0x1) << 1)   /* DIC field is split */
943 		| ((dll_en & 0x1) << 0)
944 		);
945 
946 	/*
947 	 * DLL control for precharge PD
948 	 * 0=slow exit DLL off (tXPDLL)
949 	 * 1=fast exit DLL on (tXP)
950 	 */
951 	dll_on = 1;
952 
953 	wr_mclk = (common_dimm->twr_ps + mclk_ps - 1) / mclk_ps;
954 	if (wr_mclk <= 16) {
955 		wr = wr_table[wr_mclk - 5];
956 	} else {
957 		printf("Error: unsupported write recovery for mode register "
958 		       "wr_mclk = %d\n", wr_mclk);
959 	}
960 
961 	dll_rst = 0;	/* dll no reset */
962 	mode = 0;	/* normal mode */
963 
964 	/* look up table to get the cas latency bits */
965 	if (cas_latency >= 5 && cas_latency <= 16) {
966 		unsigned char cas_latency_table[] = {
967 			0x2,	/* 5 clocks */
968 			0x4,	/* 6 clocks */
969 			0x6,	/* 7 clocks */
970 			0x8,	/* 8 clocks */
971 			0xa,	/* 9 clocks */
972 			0xc,	/* 10 clocks */
973 			0xe,	/* 11 clocks */
974 			0x1,	/* 12 clocks */
975 			0x3,	/* 13 clocks */
976 			0x5,	/* 14 clocks */
977 			0x7,	/* 15 clocks */
978 			0x9,	/* 16 clocks */
979 		};
980 		caslat = cas_latency_table[cas_latency - 5];
981 	} else {
982 		printf("Error: unsupported cas latency for mode register\n");
983 	}
984 
985 	bt = 0;	/* Nibble sequential */
986 
987 	switch (popts->burst_length) {
988 	case DDR_BL8:
989 		bl = 0;
990 		break;
991 	case DDR_OTF:
992 		bl = 1;
993 		break;
994 	case DDR_BC4:
995 		bl = 2;
996 		break;
997 	default:
998 		printf("Error: invalid burst length of %u specified. "
999 			" Defaulting to on-the-fly BC4 or BL8 beats.\n",
1000 			popts->burst_length);
1001 		bl = 1;
1002 		break;
1003 	}
1004 
1005 	sdmode = (0
1006 		  | ((dll_on & 0x1) << 12)
1007 		  | ((wr & 0x7) << 9)
1008 		  | ((dll_rst & 0x1) << 8)
1009 		  | ((mode & 0x1) << 7)
1010 		  | (((caslat >> 1) & 0x7) << 4)
1011 		  | ((bt & 0x1) << 3)
1012 		  | ((caslat & 1) << 2)
1013 		  | ((bl & 0x3) << 0)
1014 		  );
1015 
1016 	ddr->ddr_sdram_mode = (0
1017 			       | ((esdmode & 0xFFFF) << 16)
1018 			       | ((sdmode & 0xFFFF) << 0)
1019 			       );
1020 
1021 	debug("FSLDDR: ddr_sdram_mode = 0x%08x\n", ddr->ddr_sdram_mode);
1022 
1023 	if (unq_mrs_en) {	/* unique mode registers are supported */
1024 		for (i = 1; i < CONFIG_CHIP_SELECTS_PER_CTRL; i++) {
1025 			if (popts->rtt_override)
1026 				rtt = popts->rtt_override_value;
1027 			else
1028 				rtt = popts->cs_local_opts[i].odt_rtt_norm;
1029 
1030 			esdmode &= 0xFDBB;	/* clear bit 9,6,2 */
1031 			esdmode |= (0
1032 				| ((rtt & 0x4) << 7)   /* rtt field is split */
1033 				| ((rtt & 0x2) << 5)   /* rtt field is split */
1034 				| ((rtt & 0x1) << 2)  /* rtt field is split */
1035 				);
1036 			switch (i) {
1037 			case 1:
1038 				ddr->ddr_sdram_mode_3 = (0
1039 				       | ((esdmode & 0xFFFF) << 16)
1040 				       | ((sdmode & 0xFFFF) << 0)
1041 				       );
1042 				break;
1043 			case 2:
1044 				ddr->ddr_sdram_mode_5 = (0
1045 				       | ((esdmode & 0xFFFF) << 16)
1046 				       | ((sdmode & 0xFFFF) << 0)
1047 				       );
1048 				break;
1049 			case 3:
1050 				ddr->ddr_sdram_mode_7 = (0
1051 				       | ((esdmode & 0xFFFF) << 16)
1052 				       | ((sdmode & 0xFFFF) << 0)
1053 				       );
1054 				break;
1055 			}
1056 		}
1057 		debug("FSLDDR: ddr_sdram_mode_3 = 0x%08x\n",
1058 			ddr->ddr_sdram_mode_3);
1059 		debug("FSLDDR: ddr_sdram_mode_5 = 0x%08x\n",
1060 			ddr->ddr_sdram_mode_5);
1061 		debug("FSLDDR: ddr_sdram_mode_5 = 0x%08x\n",
1062 			ddr->ddr_sdram_mode_5);
1063 	}
1064 }
1065 
1066 #else /* !CONFIG_SYS_FSL_DDR3 */
1067 
1068 /* DDR SDRAM Mode configuration set (DDR_SDRAM_MODE) */
1069 static void set_ddr_sdram_mode(fsl_ddr_cfg_regs_t *ddr,
1070 			       const memctl_options_t *popts,
1071 			       const common_timing_params_t *common_dimm,
1072 			       unsigned int cas_latency,
1073 			       unsigned int additive_latency,
1074 			       const unsigned int unq_mrs_en)
1075 {
1076 	unsigned short esdmode;		/* Extended SDRAM mode */
1077 	unsigned short sdmode;		/* SDRAM mode */
1078 
1079 	/*
1080 	 * FIXME: This ought to be pre-calculated in a
1081 	 * technology-specific routine,
1082 	 * e.g. compute_DDR2_mode_register(), and then the
1083 	 * sdmode and esdmode passed in as part of common_dimm.
1084 	 */
1085 
1086 	/* Extended Mode Register */
1087 	unsigned int mrs = 0;		/* Mode Register Set */
1088 	unsigned int outputs = 0;	/* 0=Enabled, 1=Disabled */
1089 	unsigned int rdqs_en = 0;	/* RDQS Enable: 0=no, 1=yes */
1090 	unsigned int dqs_en = 0;	/* DQS# Enable: 0=enable, 1=disable */
1091 	unsigned int ocd = 0;		/* 0x0=OCD not supported,
1092 					   0x7=OCD default state */
1093 	unsigned int rtt;
1094 	unsigned int al;		/* Posted CAS# additive latency (AL) */
1095 	unsigned int ods = 0;		/* Output Drive Strength:
1096 						0 = Full strength (18ohm)
1097 						1 = Reduced strength (4ohm) */
1098 	unsigned int dll_en = 0;	/* DLL Enable  0=Enable (Normal),
1099 						       1=Disable (Test/Debug) */
1100 
1101 	/* Mode Register (MR) */
1102 	unsigned int mr;	/* Mode Register Definition */
1103 	unsigned int pd;	/* Power-Down Mode */
1104 	unsigned int wr;	/* Write Recovery */
1105 	unsigned int dll_res;	/* DLL Reset */
1106 	unsigned int mode;	/* Normal=0 or Test=1 */
1107 	unsigned int caslat = 0;/* CAS# latency */
1108 	/* BT: Burst Type (0=Sequential, 1=Interleaved) */
1109 	unsigned int bt;
1110 	unsigned int bl;	/* BL: Burst Length */
1111 
1112 #if defined(CONFIG_SYS_FSL_DDR2)
1113 	const unsigned int mclk_ps = get_memory_clk_period_ps();
1114 #endif
1115 	dqs_en = !popts->dqs_config;
1116 	rtt = fsl_ddr_get_rtt();
1117 
1118 	al = additive_latency;
1119 
1120 	esdmode = (0
1121 		| ((mrs & 0x3) << 14)
1122 		| ((outputs & 0x1) << 12)
1123 		| ((rdqs_en & 0x1) << 11)
1124 		| ((dqs_en & 0x1) << 10)
1125 		| ((ocd & 0x7) << 7)
1126 		| ((rtt & 0x2) << 5)   /* rtt field is split */
1127 		| ((al & 0x7) << 3)
1128 		| ((rtt & 0x1) << 2)   /* rtt field is split */
1129 		| ((ods & 0x1) << 1)
1130 		| ((dll_en & 0x1) << 0)
1131 		);
1132 
1133 	mr = 0;		 /* FIXME: CHECKME */
1134 
1135 	/*
1136 	 * 0 = Fast Exit (Normal)
1137 	 * 1 = Slow Exit (Low Power)
1138 	 */
1139 	pd = 0;
1140 
1141 #if defined(CONFIG_SYS_FSL_DDR1)
1142 	wr = 0;       /* Historical */
1143 #elif defined(CONFIG_SYS_FSL_DDR2)
1144 	wr = (common_dimm->twr_ps + mclk_ps - 1) / mclk_ps - 1;
1145 #endif
1146 	dll_res = 0;
1147 	mode = 0;
1148 
1149 #if defined(CONFIG_SYS_FSL_DDR1)
1150 	if (1 <= cas_latency && cas_latency <= 4) {
1151 		unsigned char mode_caslat_table[4] = {
1152 			0x5,	/* 1.5 clocks */
1153 			0x2,	/* 2.0 clocks */
1154 			0x6,	/* 2.5 clocks */
1155 			0x3	/* 3.0 clocks */
1156 		};
1157 		caslat = mode_caslat_table[cas_latency - 1];
1158 	} else {
1159 		printf("Warning: unknown cas_latency %d\n", cas_latency);
1160 	}
1161 #elif defined(CONFIG_SYS_FSL_DDR2)
1162 	caslat = cas_latency;
1163 #endif
1164 	bt = 0;
1165 
1166 	switch (popts->burst_length) {
1167 	case DDR_BL4:
1168 		bl = 2;
1169 		break;
1170 	case DDR_BL8:
1171 		bl = 3;
1172 		break;
1173 	default:
1174 		printf("Error: invalid burst length of %u specified. "
1175 			" Defaulting to 4 beats.\n",
1176 			popts->burst_length);
1177 		bl = 2;
1178 		break;
1179 	}
1180 
1181 	sdmode = (0
1182 		  | ((mr & 0x3) << 14)
1183 		  | ((pd & 0x1) << 12)
1184 		  | ((wr & 0x7) << 9)
1185 		  | ((dll_res & 0x1) << 8)
1186 		  | ((mode & 0x1) << 7)
1187 		  | ((caslat & 0x7) << 4)
1188 		  | ((bt & 0x1) << 3)
1189 		  | ((bl & 0x7) << 0)
1190 		  );
1191 
1192 	ddr->ddr_sdram_mode = (0
1193 			       | ((esdmode & 0xFFFF) << 16)
1194 			       | ((sdmode & 0xFFFF) << 0)
1195 			       );
1196 	debug("FSLDDR: ddr_sdram_mode = 0x%08x\n", ddr->ddr_sdram_mode);
1197 }
1198 #endif
1199 
1200 /* DDR SDRAM Data Initialization (DDR_DATA_INIT) */
1201 static void set_ddr_data_init(fsl_ddr_cfg_regs_t *ddr)
1202 {
1203 	unsigned int init_value;	/* Initialization value */
1204 
1205 #ifdef CONFIG_MEM_INIT_VALUE
1206 	init_value = CONFIG_MEM_INIT_VALUE;
1207 #else
1208 	init_value = 0xDEADBEEF;
1209 #endif
1210 	ddr->ddr_data_init = init_value;
1211 }
1212 
1213 /*
1214  * DDR SDRAM Clock Control (DDR_SDRAM_CLK_CNTL)
1215  * The old controller on the 8540/60 doesn't have this register.
1216  * Hope it's OK to set it (to 0) anyway.
1217  */
1218 static void set_ddr_sdram_clk_cntl(fsl_ddr_cfg_regs_t *ddr,
1219 					 const memctl_options_t *popts)
1220 {
1221 	unsigned int clk_adjust;	/* Clock adjust */
1222 
1223 	clk_adjust = popts->clk_adjust;
1224 	ddr->ddr_sdram_clk_cntl = (clk_adjust & 0xF) << 23;
1225 	debug("FSLDDR: clk_cntl = 0x%08x\n", ddr->ddr_sdram_clk_cntl);
1226 }
1227 
1228 /* DDR Initialization Address (DDR_INIT_ADDR) */
1229 static void set_ddr_init_addr(fsl_ddr_cfg_regs_t *ddr)
1230 {
1231 	unsigned int init_addr = 0;	/* Initialization address */
1232 
1233 	ddr->ddr_init_addr = init_addr;
1234 }
1235 
1236 /* DDR Initialization Address (DDR_INIT_EXT_ADDR) */
1237 static void set_ddr_init_ext_addr(fsl_ddr_cfg_regs_t *ddr)
1238 {
1239 	unsigned int uia = 0;	/* Use initialization address */
1240 	unsigned int init_ext_addr = 0;	/* Initialization address */
1241 
1242 	ddr->ddr_init_ext_addr = (0
1243 				  | ((uia & 0x1) << 31)
1244 				  | (init_ext_addr & 0xF)
1245 				  );
1246 }
1247 
1248 /* DDR SDRAM Timing Configuration 4 (TIMING_CFG_4) */
1249 static void set_timing_cfg_4(fsl_ddr_cfg_regs_t *ddr,
1250 				const memctl_options_t *popts)
1251 {
1252 	unsigned int rwt = 0; /* Read-to-write turnaround for same CS */
1253 	unsigned int wrt = 0; /* Write-to-read turnaround for same CS */
1254 	unsigned int rrt = 0; /* Read-to-read turnaround for same CS */
1255 	unsigned int wwt = 0; /* Write-to-write turnaround for same CS */
1256 	unsigned int dll_lock = 0; /* DDR SDRAM DLL Lock Time */
1257 
1258 #if defined(CONFIG_SYS_FSL_DDR3)
1259 	if (popts->burst_length == DDR_BL8) {
1260 		/* We set BL/2 for fixed BL8 */
1261 		rrt = 0;	/* BL/2 clocks */
1262 		wwt = 0;	/* BL/2 clocks */
1263 	} else {
1264 		/* We need to set BL/2 + 2 to BC4 and OTF */
1265 		rrt = 2;	/* BL/2 + 2 clocks */
1266 		wwt = 2;	/* BL/2 + 2 clocks */
1267 	}
1268 	dll_lock = 1;	/* tDLLK = 512 clocks from spec */
1269 #endif
1270 	ddr->timing_cfg_4 = (0
1271 			     | ((rwt & 0xf) << 28)
1272 			     | ((wrt & 0xf) << 24)
1273 			     | ((rrt & 0xf) << 20)
1274 			     | ((wwt & 0xf) << 16)
1275 			     | (dll_lock & 0x3)
1276 			     );
1277 	debug("FSLDDR: timing_cfg_4 = 0x%08x\n", ddr->timing_cfg_4);
1278 }
1279 
1280 /* DDR SDRAM Timing Configuration 5 (TIMING_CFG_5) */
1281 static void set_timing_cfg_5(fsl_ddr_cfg_regs_t *ddr, unsigned int cas_latency)
1282 {
1283 	unsigned int rodt_on = 0;	/* Read to ODT on */
1284 	unsigned int rodt_off = 0;	/* Read to ODT off */
1285 	unsigned int wodt_on = 0;	/* Write to ODT on */
1286 	unsigned int wodt_off = 0;	/* Write to ODT off */
1287 
1288 #if defined(CONFIG_SYS_FSL_DDR3)
1289 	/* rodt_on = timing_cfg_1[caslat] - timing_cfg_2[wrlat] + 1 */
1290 	rodt_on = cas_latency - ((ddr->timing_cfg_2 & 0x00780000) >> 19) + 1;
1291 	rodt_off = 4;	/*  4 clocks */
1292 	wodt_on = 1;	/*  1 clocks */
1293 	wodt_off = 4;	/*  4 clocks */
1294 #endif
1295 
1296 	ddr->timing_cfg_5 = (0
1297 			     | ((rodt_on & 0x1f) << 24)
1298 			     | ((rodt_off & 0x7) << 20)
1299 			     | ((wodt_on & 0x1f) << 12)
1300 			     | ((wodt_off & 0x7) << 8)
1301 			     );
1302 	debug("FSLDDR: timing_cfg_5 = 0x%08x\n", ddr->timing_cfg_5);
1303 }
1304 
1305 /* DDR ZQ Calibration Control (DDR_ZQ_CNTL) */
1306 static void set_ddr_zq_cntl(fsl_ddr_cfg_regs_t *ddr, unsigned int zq_en)
1307 {
1308 	unsigned int zqinit = 0;/* POR ZQ Calibration Time (tZQinit) */
1309 	/* Normal Operation Full Calibration Time (tZQoper) */
1310 	unsigned int zqoper = 0;
1311 	/* Normal Operation Short Calibration Time (tZQCS) */
1312 	unsigned int zqcs = 0;
1313 
1314 	if (zq_en) {
1315 		zqinit = 9;	/* 512 clocks */
1316 		zqoper = 8;	/* 256 clocks */
1317 		zqcs = 6;	/* 64 clocks */
1318 	}
1319 
1320 	ddr->ddr_zq_cntl = (0
1321 			    | ((zq_en & 0x1) << 31)
1322 			    | ((zqinit & 0xF) << 24)
1323 			    | ((zqoper & 0xF) << 16)
1324 			    | ((zqcs & 0xF) << 8)
1325 			    );
1326 	debug("FSLDDR: zq_cntl = 0x%08x\n", ddr->ddr_zq_cntl);
1327 }
1328 
1329 /* DDR Write Leveling Control (DDR_WRLVL_CNTL) */
1330 static void set_ddr_wrlvl_cntl(fsl_ddr_cfg_regs_t *ddr, unsigned int wrlvl_en,
1331 				const memctl_options_t *popts)
1332 {
1333 	/*
1334 	 * First DQS pulse rising edge after margining mode
1335 	 * is programmed (tWL_MRD)
1336 	 */
1337 	unsigned int wrlvl_mrd = 0;
1338 	/* ODT delay after margining mode is programmed (tWL_ODTEN) */
1339 	unsigned int wrlvl_odten = 0;
1340 	/* DQS/DQS_ delay after margining mode is programmed (tWL_DQSEN) */
1341 	unsigned int wrlvl_dqsen = 0;
1342 	/* WRLVL_SMPL: Write leveling sample time */
1343 	unsigned int wrlvl_smpl = 0;
1344 	/* WRLVL_WLR: Write leveling repeition time */
1345 	unsigned int wrlvl_wlr = 0;
1346 	/* WRLVL_START: Write leveling start time */
1347 	unsigned int wrlvl_start = 0;
1348 
1349 	/* suggest enable write leveling for DDR3 due to fly-by topology */
1350 	if (wrlvl_en) {
1351 		/* tWL_MRD min = 40 nCK, we set it 64 */
1352 		wrlvl_mrd = 0x6;
1353 		/* tWL_ODTEN 128 */
1354 		wrlvl_odten = 0x7;
1355 		/* tWL_DQSEN min = 25 nCK, we set it 32 */
1356 		wrlvl_dqsen = 0x5;
1357 		/*
1358 		 * Write leveling sample time at least need 6 clocks
1359 		 * higher than tWLO to allow enough time for progagation
1360 		 * delay and sampling the prime data bits.
1361 		 */
1362 		wrlvl_smpl = 0xf;
1363 		/*
1364 		 * Write leveling repetition time
1365 		 * at least tWLO + 6 clocks clocks
1366 		 * we set it 64
1367 		 */
1368 		wrlvl_wlr = 0x6;
1369 		/*
1370 		 * Write leveling start time
1371 		 * The value use for the DQS_ADJUST for the first sample
1372 		 * when write leveling is enabled. It probably needs to be
1373 		 * overriden per platform.
1374 		 */
1375 		wrlvl_start = 0x8;
1376 		/*
1377 		 * Override the write leveling sample and start time
1378 		 * according to specific board
1379 		 */
1380 		if (popts->wrlvl_override) {
1381 			wrlvl_smpl = popts->wrlvl_sample;
1382 			wrlvl_start = popts->wrlvl_start;
1383 		}
1384 	}
1385 
1386 	ddr->ddr_wrlvl_cntl = (0
1387 			       | ((wrlvl_en & 0x1) << 31)
1388 			       | ((wrlvl_mrd & 0x7) << 24)
1389 			       | ((wrlvl_odten & 0x7) << 20)
1390 			       | ((wrlvl_dqsen & 0x7) << 16)
1391 			       | ((wrlvl_smpl & 0xf) << 12)
1392 			       | ((wrlvl_wlr & 0x7) << 8)
1393 			       | ((wrlvl_start & 0x1F) << 0)
1394 			       );
1395 	debug("FSLDDR: wrlvl_cntl = 0x%08x\n", ddr->ddr_wrlvl_cntl);
1396 	ddr->ddr_wrlvl_cntl_2 = popts->wrlvl_ctl_2;
1397 	debug("FSLDDR: wrlvl_cntl_2 = 0x%08x\n", ddr->ddr_wrlvl_cntl_2);
1398 	ddr->ddr_wrlvl_cntl_3 = popts->wrlvl_ctl_3;
1399 	debug("FSLDDR: wrlvl_cntl_3 = 0x%08x\n", ddr->ddr_wrlvl_cntl_3);
1400 
1401 }
1402 
1403 /* DDR Self Refresh Counter (DDR_SR_CNTR) */
1404 static void set_ddr_sr_cntr(fsl_ddr_cfg_regs_t *ddr, unsigned int sr_it)
1405 {
1406 	/* Self Refresh Idle Threshold */
1407 	ddr->ddr_sr_cntr = (sr_it & 0xF) << 16;
1408 }
1409 
1410 static void set_ddr_eor(fsl_ddr_cfg_regs_t *ddr, const memctl_options_t *popts)
1411 {
1412 	if (popts->addr_hash) {
1413 		ddr->ddr_eor = 0x40000000;	/* address hash enable */
1414 		puts("Address hashing enabled.\n");
1415 	}
1416 }
1417 
1418 static void set_ddr_cdr1(fsl_ddr_cfg_regs_t *ddr, const memctl_options_t *popts)
1419 {
1420 	ddr->ddr_cdr1 = popts->ddr_cdr1;
1421 	debug("FSLDDR: ddr_cdr1 = 0x%08x\n", ddr->ddr_cdr1);
1422 }
1423 
1424 static void set_ddr_cdr2(fsl_ddr_cfg_regs_t *ddr, const memctl_options_t *popts)
1425 {
1426 	ddr->ddr_cdr2 = popts->ddr_cdr2;
1427 	debug("FSLDDR: ddr_cdr2 = 0x%08x\n", ddr->ddr_cdr2);
1428 }
1429 
1430 unsigned int
1431 check_fsl_memctl_config_regs(const fsl_ddr_cfg_regs_t *ddr)
1432 {
1433 	unsigned int res = 0;
1434 
1435 	/*
1436 	 * Check that DDR_SDRAM_CFG[RD_EN] and DDR_SDRAM_CFG[2T_EN] are
1437 	 * not set at the same time.
1438 	 */
1439 	if (ddr->ddr_sdram_cfg & 0x10000000
1440 	    && ddr->ddr_sdram_cfg & 0x00008000) {
1441 		printf("Error: DDR_SDRAM_CFG[RD_EN] and DDR_SDRAM_CFG[2T_EN] "
1442 				" should not be set at the same time.\n");
1443 		res++;
1444 	}
1445 
1446 	return res;
1447 }
1448 
1449 unsigned int
1450 compute_fsl_memctl_config_regs(const memctl_options_t *popts,
1451 			       fsl_ddr_cfg_regs_t *ddr,
1452 			       const common_timing_params_t *common_dimm,
1453 			       const dimm_params_t *dimm_params,
1454 			       unsigned int dbw_cap_adj,
1455 			       unsigned int size_only)
1456 {
1457 	unsigned int i;
1458 	unsigned int cas_latency;
1459 	unsigned int additive_latency;
1460 	unsigned int sr_it;
1461 	unsigned int zq_en;
1462 	unsigned int wrlvl_en;
1463 	unsigned int ip_rev = 0;
1464 	unsigned int unq_mrs_en = 0;
1465 	int cs_en = 1;
1466 
1467 	memset(ddr, 0, sizeof(fsl_ddr_cfg_regs_t));
1468 
1469 	if (common_dimm == NULL) {
1470 		printf("Error: subset DIMM params struct null pointer\n");
1471 		return 1;
1472 	}
1473 
1474 	/*
1475 	 * Process overrides first.
1476 	 *
1477 	 * FIXME: somehow add dereated caslat to this
1478 	 */
1479 	cas_latency = (popts->cas_latency_override)
1480 		? popts->cas_latency_override_value
1481 		: common_dimm->lowest_common_SPD_caslat;
1482 
1483 	additive_latency = (popts->additive_latency_override)
1484 		? popts->additive_latency_override_value
1485 		: common_dimm->additive_latency;
1486 
1487 	sr_it = (popts->auto_self_refresh_en)
1488 		? popts->sr_it
1489 		: 0;
1490 	/* ZQ calibration */
1491 	zq_en = (popts->zq_en) ? 1 : 0;
1492 	/* write leveling */
1493 	wrlvl_en = (popts->wrlvl_en) ? 1 : 0;
1494 
1495 	/* Chip Select Memory Bounds (CSn_BNDS) */
1496 	for (i = 0; i < CONFIG_CHIP_SELECTS_PER_CTRL; i++) {
1497 		unsigned long long ea, sa;
1498 		unsigned int cs_per_dimm
1499 			= CONFIG_CHIP_SELECTS_PER_CTRL / CONFIG_DIMM_SLOTS_PER_CTLR;
1500 		unsigned int dimm_number
1501 			= i / cs_per_dimm;
1502 		unsigned long long rank_density
1503 			= dimm_params[dimm_number].rank_density >> dbw_cap_adj;
1504 
1505 		if (dimm_params[dimm_number].n_ranks == 0) {
1506 			debug("Skipping setup of CS%u "
1507 				"because n_ranks on DIMM %u is 0\n", i, dimm_number);
1508 			continue;
1509 		}
1510 		if (popts->memctl_interleaving) {
1511 			switch (popts->ba_intlv_ctl & FSL_DDR_CS0_CS1_CS2_CS3) {
1512 			case FSL_DDR_CS0_CS1_CS2_CS3:
1513 				break;
1514 			case FSL_DDR_CS0_CS1:
1515 			case FSL_DDR_CS0_CS1_AND_CS2_CS3:
1516 				if (i > 1)
1517 					cs_en = 0;
1518 				break;
1519 			case FSL_DDR_CS2_CS3:
1520 			default:
1521 				if (i > 0)
1522 					cs_en = 0;
1523 				break;
1524 			}
1525 			sa = common_dimm->base_address;
1526 			ea = sa + common_dimm->total_mem - 1;
1527 		} else if (!popts->memctl_interleaving) {
1528 			/*
1529 			 * If memory interleaving between controllers is NOT
1530 			 * enabled, the starting address for each memory
1531 			 * controller is distinct.  However, because rank
1532 			 * interleaving is enabled, the starting and ending
1533 			 * addresses of the total memory on that memory
1534 			 * controller needs to be programmed into its
1535 			 * respective CS0_BNDS.
1536 			 */
1537 			switch (popts->ba_intlv_ctl & FSL_DDR_CS0_CS1_CS2_CS3) {
1538 			case FSL_DDR_CS0_CS1_CS2_CS3:
1539 				sa = common_dimm->base_address;
1540 				ea = sa + common_dimm->total_mem - 1;
1541 				break;
1542 			case FSL_DDR_CS0_CS1_AND_CS2_CS3:
1543 				if ((i >= 2) && (dimm_number == 0)) {
1544 					sa = dimm_params[dimm_number].base_address +
1545 					      2 * rank_density;
1546 					ea = sa + 2 * rank_density - 1;
1547 				} else {
1548 					sa = dimm_params[dimm_number].base_address;
1549 					ea = sa + 2 * rank_density - 1;
1550 				}
1551 				break;
1552 			case FSL_DDR_CS0_CS1:
1553 				if (dimm_params[dimm_number].n_ranks > (i % cs_per_dimm)) {
1554 					sa = dimm_params[dimm_number].base_address;
1555 					ea = sa + rank_density - 1;
1556 					if (i != 1)
1557 						sa += (i % cs_per_dimm) * rank_density;
1558 					ea += (i % cs_per_dimm) * rank_density;
1559 				} else {
1560 					sa = 0;
1561 					ea = 0;
1562 				}
1563 				if (i == 0)
1564 					ea += rank_density;
1565 				break;
1566 			case FSL_DDR_CS2_CS3:
1567 				if (dimm_params[dimm_number].n_ranks > (i % cs_per_dimm)) {
1568 					sa = dimm_params[dimm_number].base_address;
1569 					ea = sa + rank_density - 1;
1570 					if (i != 3)
1571 						sa += (i % cs_per_dimm) * rank_density;
1572 					ea += (i % cs_per_dimm) * rank_density;
1573 				} else {
1574 					sa = 0;
1575 					ea = 0;
1576 				}
1577 				if (i == 2)
1578 					ea += (rank_density >> dbw_cap_adj);
1579 				break;
1580 			default:  /* No bank(chip-select) interleaving */
1581 				sa = dimm_params[dimm_number].base_address;
1582 				ea = sa + rank_density - 1;
1583 				if (dimm_params[dimm_number].n_ranks > (i % cs_per_dimm)) {
1584 					sa += (i % cs_per_dimm) * rank_density;
1585 					ea += (i % cs_per_dimm) * rank_density;
1586 				} else {
1587 					sa = 0;
1588 					ea = 0;
1589 				}
1590 				break;
1591 			}
1592 		}
1593 
1594 		sa >>= 24;
1595 		ea >>= 24;
1596 
1597 		if (cs_en) {
1598 			ddr->cs[i].bnds = (0
1599 				| ((sa & 0xffff) << 16) /* starting address */
1600 				| ((ea & 0xffff) << 0)	/* ending address */
1601 				);
1602 		} else {
1603 			/* setting bnds to 0xffffffff for inactive CS */
1604 			ddr->cs[i].bnds = 0xffffffff;
1605 		}
1606 
1607 		debug("FSLDDR: cs[%d]_bnds = 0x%08x\n", i, ddr->cs[i].bnds);
1608 		set_csn_config(dimm_number, i, ddr, popts, dimm_params);
1609 		set_csn_config_2(i, ddr);
1610 	}
1611 
1612 	/*
1613 	 * In the case we only need to compute the ddr sdram size, we only need
1614 	 * to set csn registers, so return from here.
1615 	 */
1616 	if (size_only)
1617 		return 0;
1618 
1619 	set_ddr_eor(ddr, popts);
1620 
1621 #if !defined(CONFIG_SYS_FSL_DDR1)
1622 	set_timing_cfg_0(ddr, popts, dimm_params);
1623 #endif
1624 
1625 	set_timing_cfg_3(ddr, popts, common_dimm, cas_latency,
1626 			 additive_latency);
1627 	set_timing_cfg_1(ddr, popts, common_dimm, cas_latency);
1628 	set_timing_cfg_2(ddr, popts, common_dimm,
1629 				cas_latency, additive_latency);
1630 
1631 	set_ddr_cdr1(ddr, popts);
1632 	set_ddr_cdr2(ddr, popts);
1633 	set_ddr_sdram_cfg(ddr, popts, common_dimm);
1634 	ip_rev = fsl_ddr_get_version();
1635 	if (ip_rev > 0x40400)
1636 		unq_mrs_en = 1;
1637 
1638 	set_ddr_sdram_cfg_2(ddr, popts, unq_mrs_en);
1639 	set_ddr_sdram_mode(ddr, popts, common_dimm,
1640 				cas_latency, additive_latency, unq_mrs_en);
1641 	set_ddr_sdram_mode_2(ddr, popts, common_dimm, unq_mrs_en);
1642 	set_ddr_sdram_interval(ddr, popts, common_dimm);
1643 	set_ddr_data_init(ddr);
1644 	set_ddr_sdram_clk_cntl(ddr, popts);
1645 	set_ddr_init_addr(ddr);
1646 	set_ddr_init_ext_addr(ddr);
1647 	set_timing_cfg_4(ddr, popts);
1648 	set_timing_cfg_5(ddr, cas_latency);
1649 
1650 	set_ddr_zq_cntl(ddr, zq_en);
1651 	set_ddr_wrlvl_cntl(ddr, wrlvl_en, popts);
1652 
1653 	set_ddr_sr_cntr(ddr, sr_it);
1654 
1655 	set_ddr_sdram_rcw(ddr, popts, common_dimm);
1656 
1657 #ifdef CONFIG_SYS_FSL_DDR_EMU
1658 	/* disble DDR training for emulator */
1659 	ddr->debug[2] = 0x00000400;
1660 	ddr->debug[4] = 0xff800000;
1661 #endif
1662 	return check_fsl_memctl_config_regs(ddr);
1663 }
1664