blob: 106704d65d4bd3c0589fe6e7c0c52cb339f8f0f1 [file] [log] [blame]
Dave Liu7737d5c2006-11-03 12:11:15 -06001/*
2 * Copyright (C) 2006 Freescale Semiconductor, Inc.
3 *
4 * Dave Liu <daveliu@freescale.com>
5 * based on source code of Shlomi Gridish
6 *
Wolfgang Denk1a459662013-07-08 09:37:19 +02007 * SPDX-License-Identifier: GPL-2.0+
Dave Liu7737d5c2006-11-03 12:11:15 -06008 */
9
10#include "common.h"
11#include "asm/errno.h"
12#include "asm/io.h"
13#include "asm/immap_83xx.h"
14
Dave Liu7737d5c2006-11-03 12:11:15 -060015#define NUM_OF_PINS 32
16void qe_config_iopin(u8 port, u8 pin, int dir, int open_drain, int assign)
17{
18 u32 pin_2bit_mask;
19 u32 pin_2bit_dir;
20 u32 pin_2bit_assign;
21 u32 pin_1bit_mask;
22 u32 tmp_val;
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +020023 volatile immap_t *im = (volatile immap_t *)CONFIG_SYS_IMMR;
Dave Liue0803132006-12-07 21:11:58 +080024 volatile qepio83xx_t *par_io = (volatile qepio83xx_t *)&im->qepio;
Dave Liu7737d5c2006-11-03 12:11:15 -060025
Robert P. J. Dayd7b4ca22015-12-16 12:25:42 -050026 /* Calculate pin location and 2bit mask and dir */
Dave Liu7737d5c2006-11-03 12:11:15 -060027 pin_2bit_mask = (u32)(0x3 << (NUM_OF_PINS-(pin%(NUM_OF_PINS/2)+1)*2));
28 pin_2bit_dir = (u32)(dir << (NUM_OF_PINS-(pin%(NUM_OF_PINS/2)+1)*2));
29
30 /* Setup the direction */
31 tmp_val = (pin > (NUM_OF_PINS/2) - 1) ? \
32 in_be32(&par_io->ioport[port].dir2) :
33 in_be32(&par_io->ioport[port].dir1);
34
35 if (pin > (NUM_OF_PINS/2) -1) {
36 out_be32(&par_io->ioport[port].dir2, ~pin_2bit_mask & tmp_val);
37 out_be32(&par_io->ioport[port].dir2, pin_2bit_dir | tmp_val);
38 } else {
39 out_be32(&par_io->ioport[port].dir1, ~pin_2bit_mask & tmp_val);
40 out_be32(&par_io->ioport[port].dir1, pin_2bit_dir | tmp_val);
41 }
42
43 /* Calculate pin location for 1bit mask */
44 pin_1bit_mask = (u32)(1 << (NUM_OF_PINS - (pin+1)));
45
46 /* Setup the open drain */
47 tmp_val = in_be32(&par_io->ioport[port].podr);
48 if (open_drain) {
49 out_be32(&par_io->ioport[port].podr, pin_1bit_mask | tmp_val);
50 } else {
51 out_be32(&par_io->ioport[port].podr, ~pin_1bit_mask & tmp_val);
52 }
53
54 /* Setup the assignment */
55 tmp_val = (pin > (NUM_OF_PINS/2) - 1) ?
56 in_be32(&par_io->ioport[port].ppar2):
57 in_be32(&par_io->ioport[port].ppar1);
58 pin_2bit_assign = (u32)(assign
59 << (NUM_OF_PINS - (pin%(NUM_OF_PINS/2)+1)*2));
60
61 /* Clear and set 2 bits mask */
62 if (pin > (NUM_OF_PINS/2) - 1) {
63 out_be32(&par_io->ioport[port].ppar2, ~pin_2bit_mask & tmp_val);
64 out_be32(&par_io->ioport[port].ppar2, pin_2bit_assign | tmp_val);
65 } else {
66 out_be32(&par_io->ioport[port].ppar1, ~pin_2bit_mask & tmp_val);
67 out_be32(&par_io->ioport[port].ppar1, pin_2bit_assign | tmp_val);
68 }
69}