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6df01ab8ab
The defs.h header will take care of including the various config.h headers. For now, it's just config.h, but we'll add more when we integrate gnulib in. This header should be used instead of config.h, and should be the first include in every .c file. We won't rely on the old behavior where we expected files to include the port's sim-main.h which then includes the common sim-basics.h which then includes config.h. We have a ton of code that includes things before sim-main.h, and it sometimes needs to be that way. Creating a dedicated header avoids the ordering mess and implicit inclusion that shows up otherwise.
238 lines
5.8 KiB
C
238 lines
5.8 KiB
C
/* Blackfin Serial Peripheral Interface (SPI) model
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Copyright (C) 2010-2021 Free Software Foundation, Inc.
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Contributed by Analog Devices, Inc.
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This file is part of simulators.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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/* This must come before any other includes. */
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#include "defs.h"
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#include "sim-main.h"
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#include "devices.h"
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#include "dv-bfin_spi.h"
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/* XXX: This is merely a stub. */
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struct bfin_spi
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{
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/* This top portion matches common dv_bfin struct. */
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bu32 base;
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struct hw *dma_master;
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bool acked;
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struct hw_event *handler;
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char saved_byte;
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int saved_count;
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/* Order after here is important -- matches hardware MMR layout. */
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bu16 BFIN_MMR_16(ctl);
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bu16 BFIN_MMR_16(flg);
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bu16 BFIN_MMR_16(stat);
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bu16 BFIN_MMR_16(tdbr);
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bu16 BFIN_MMR_16(rdbr);
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bu16 BFIN_MMR_16(baud);
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bu16 BFIN_MMR_16(shadow);
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};
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#define mmr_base() offsetof(struct bfin_spi, ctl)
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#define mmr_offset(mmr) (offsetof(struct bfin_spi, mmr) - mmr_base())
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static const char * const mmr_names[] =
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{
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"SPI_CTL", "SPI_FLG", "SPI_STAT", "SPI_TDBR",
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"SPI_RDBR", "SPI_BAUD", "SPI_SHADOW",
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};
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#define mmr_name(off) mmr_names[(off) / 4]
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static bool
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bfin_spi_enabled (struct bfin_spi *spi)
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{
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return (spi->ctl & SPE);
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}
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static bu16
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bfin_spi_timod (struct bfin_spi *spi)
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{
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return (spi->ctl & TIMOD);
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}
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static unsigned
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bfin_spi_io_write_buffer (struct hw *me, const void *source, int space,
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address_word addr, unsigned nr_bytes)
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{
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struct bfin_spi *spi = hw_data (me);
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bu32 mmr_off;
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bu32 value;
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bu16 *valuep;
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/* Invalid access mode is higher priority than missing register. */
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if (!dv_bfin_mmr_require_16 (me, addr, nr_bytes, true))
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return 0;
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value = dv_load_2 (source);
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mmr_off = addr - spi->base;
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valuep = (void *)((unsigned long)spi + mmr_base() + mmr_off);
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HW_TRACE_WRITE ();
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switch (mmr_off)
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{
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case mmr_offset(stat):
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dv_w1c_2 (valuep, value, ~(SPIF | TXS | RXS));
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break;
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case mmr_offset(tdbr):
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*valuep = value;
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if (bfin_spi_enabled (spi) && bfin_spi_timod (spi) == TDBR_CORE)
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{
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spi->stat |= RXS;
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spi->stat &= ~TXS;
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}
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break;
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case mmr_offset(rdbr):
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case mmr_offset(ctl):
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case mmr_offset(flg):
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case mmr_offset(baud):
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case mmr_offset(shadow):
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*valuep = value;
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break;
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default:
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dv_bfin_mmr_invalid (me, addr, nr_bytes, true);
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return 0;
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}
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return nr_bytes;
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}
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static unsigned
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bfin_spi_io_read_buffer (struct hw *me, void *dest, int space,
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address_word addr, unsigned nr_bytes)
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{
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struct bfin_spi *spi = hw_data (me);
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bu32 mmr_off;
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bu16 *valuep;
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/* Invalid access mode is higher priority than missing register. */
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if (!dv_bfin_mmr_require_16 (me, addr, nr_bytes, false))
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return 0;
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mmr_off = addr - spi->base;
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valuep = (void *)((unsigned long)spi + mmr_base() + mmr_off);
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HW_TRACE_READ ();
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switch (mmr_off)
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{
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case mmr_offset(rdbr):
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dv_store_2 (dest, *valuep);
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if (bfin_spi_enabled (spi) && bfin_spi_timod (spi) == RDBR_CORE)
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spi->stat &= ~(RXS | TXS);
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break;
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case mmr_offset(ctl):
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case mmr_offset(stat):
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case mmr_offset(flg):
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case mmr_offset(tdbr):
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case mmr_offset(baud):
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case mmr_offset(shadow):
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dv_store_2 (dest, *valuep);
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break;
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default:
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dv_bfin_mmr_invalid (me, addr, nr_bytes, false);
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return 0;
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}
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return nr_bytes;
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}
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static unsigned
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bfin_spi_dma_read_buffer (struct hw *me, void *dest, int space,
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unsigned_word addr, unsigned nr_bytes)
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{
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HW_TRACE_DMA_READ ();
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return 0;
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}
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static unsigned
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bfin_spi_dma_write_buffer (struct hw *me, const void *source,
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int space, unsigned_word addr,
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unsigned nr_bytes,
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int violate_read_only_section)
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{
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HW_TRACE_DMA_WRITE ();
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return 0;
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}
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static const struct hw_port_descriptor bfin_spi_ports[] =
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{
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{ "stat", 0, 0, output_port, },
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{ NULL, 0, 0, 0, },
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};
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static void
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attach_bfin_spi_regs (struct hw *me, struct bfin_spi *spi)
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{
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address_word attach_address;
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int attach_space;
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unsigned attach_size;
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reg_property_spec reg;
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if (hw_find_property (me, "reg") == NULL)
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hw_abort (me, "Missing \"reg\" property");
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if (!hw_find_reg_array_property (me, "reg", 0, ®))
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hw_abort (me, "\"reg\" property must contain three addr/size entries");
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hw_unit_address_to_attach_address (hw_parent (me),
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®.address,
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&attach_space, &attach_address, me);
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hw_unit_size_to_attach_size (hw_parent (me), ®.size, &attach_size, me);
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if (attach_size != BFIN_MMR_SPI_SIZE)
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hw_abort (me, "\"reg\" size must be %#x", BFIN_MMR_SPI_SIZE);
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hw_attach_address (hw_parent (me),
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0, attach_space, attach_address, attach_size, me);
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spi->base = attach_address;
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}
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static void
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bfin_spi_finish (struct hw *me)
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{
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struct bfin_spi *spi;
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spi = HW_ZALLOC (me, struct bfin_spi);
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set_hw_data (me, spi);
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set_hw_io_read_buffer (me, bfin_spi_io_read_buffer);
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set_hw_io_write_buffer (me, bfin_spi_io_write_buffer);
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set_hw_dma_read_buffer (me, bfin_spi_dma_read_buffer);
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set_hw_dma_write_buffer (me, bfin_spi_dma_write_buffer);
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set_hw_ports (me, bfin_spi_ports);
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attach_bfin_spi_regs (me, spi);
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/* Initialize the SPI. */
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spi->ctl = 0x0400;
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spi->flg = 0xFF00;
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spi->stat = 0x0001;
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}
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const struct hw_descriptor dv_bfin_spi_descriptor[] =
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{
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{"bfin_spi", bfin_spi_finish,},
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{NULL, NULL},
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};
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