/linux-6.3-rc2/drivers/w1/masters/ |
A D | Kconfig | 3 # 1-wire bus master configuration 6 menu "1-wire Bus Masters" 9 tristate "Matrox G400 transport layer for 1-wire" 12 Say Y here if you want to communicate with your 1-wire devices 19 tristate "DS2490 USB <-> W1 transport layer for 1-wire" 39 tristate "Freescale MXC 1-wire busmaster" 42 Say Y here to enable MXC 1-wire host 45 tristate "GPIO 1-wire busmaster" 49 GPIO pins. This driver uses the GPIO API to control the wire. 58 Say Y here if you want support for the 1-wire or HDQ Interface [all …]
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/linux-6.3-rc2/drivers/w1/slaves/ |
A D | Kconfig | 3 # 1-wire slaves configuration 6 menu "1-wire Slaves" 12 wire. 17 Say Y here if you want to connect 1-wire 31 Say Y here if you want to use a 1-wire 47 Say Y here if you want to use a 1-wire 59 tristate "Counter 1-wire device (DS2423)" 66 Say Y here if you want to use a 1-wire 72 Say Y here if you want to use a 1-wire 88 Say Y here if you want to use a 1-wire [all …]
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/linux-6.3-rc2/net/rxrpc/ |
A D | txbuf.c | 37 txb->wire.epoch = htonl(call->conn->proto.epoch); in rxrpc_alloc_txbuf() 38 txb->wire.cid = htonl(call->cid); in rxrpc_alloc_txbuf() 39 txb->wire.callNumber = htonl(call->call_id); in rxrpc_alloc_txbuf() 40 txb->wire.seq = htonl(txb->seq); in rxrpc_alloc_txbuf() 41 txb->wire.type = packet_type; in rxrpc_alloc_txbuf() 42 txb->wire.flags = call->conn->out_clientflag; in rxrpc_alloc_txbuf() 43 txb->wire.userStatus = 0; in rxrpc_alloc_txbuf() 44 txb->wire.securityIndex = call->security_ix; in rxrpc_alloc_txbuf() 45 txb->wire._rsvd = 0; in rxrpc_alloc_txbuf() 46 txb->wire.serviceId = htons(call->dest_srx.srx_service); in rxrpc_alloc_txbuf()
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A D | output.c | 209 txb->wire.flags |= RXRPC_REQUEST_ACK; in rxrpc_send_ack_packet() 215 iov[0].iov_base = &txb->wire; in rxrpc_send_ack_packet() 220 txb->wire.serial = htonl(serial); in rxrpc_send_ack_packet() 243 if (txb->wire.flags & RXRPC_REQUEST_ACK) in rxrpc_send_ack_packet() 338 txb->wire.serial = htonl(serial); in rxrpc_send_data_packet() 344 iov[0].iov_base = &txb->wire; in rxrpc_send_data_packet() 362 if (txb->wire.flags & RXRPC_REQUEST_ACK) in rxrpc_send_data_packet() 384 txb->wire.flags |= RXRPC_REQUEST_ACK; in rxrpc_send_data_packet() 392 txb->wire.flags, in rxrpc_send_data_packet() 417 if (txb->wire.flags & RXRPC_REQUEST_ACK) in rxrpc_send_data_packet() [all …]
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A D | call_event.c | 87 txb->wire.seq = 0; in rxrpc_send_ACK() 88 txb->wire.type = RXRPC_PACKET_TYPE_ACK; in rxrpc_send_ACK() 89 txb->wire.flags |= RXRPC_SLOW_START_OK; in rxrpc_send_ACK() 163 if (after(ntohl(txb->wire.serial), call->acks_highest_serial)) in rxrpc_resend() 200 before(ntohl(txb->wire.serial), ntohl(ack->serial))) in rxrpc_resend() 323 if (txb->wire.flags & RXRPC_LAST_PACKET) in rxrpc_decant_prepared_tx()
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/linux-6.3-rc2/Documentation/devicetree/bindings/iio/temperature/ |
A D | maxim,max31865.yaml | 22 maxim,3-wire: 25 enables 3-wire RTD connection. Else 2-wire or 4-wire RTD connection. 51 maxim,3-wire;
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/linux-6.3-rc2/Documentation/w1/masters/ |
A D | omap-hdq.rst | 2 Kernel driver for omap HDQ/1-wire module 7 HDQ/1-wire controller on the TI OMAP 2430/3430 platforms. 17 Semiconductor 1-Wire protocols. These protocols use a single wire for 24 The controller supports operation in both HDQ and 1-wire mode. The essential 25 difference between the HDQ and 1-wire mode is how the slave device responds to 49 The driver also supports 1-wire mode. In this mode, there is no need to 51 to the bus using SEARCH_ROM procedure. 1-wire mode can be selected by
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A D | w1-gpio.rst | 11 GPIO 1-wire bus master driver. The driver uses the GPIO API to control the 12 wire and the GPIO pin can be specified using GPIO machine descriptor tables.
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/linux-6.3-rc2/drivers/i2c/busses/ |
A D | i2c-gpio.c | 82 #define WIRE_ATTRIBUTE(wire) \ argument 83 static int fops_##wire##_get(void *data, u64 *val) \ 88 *val = get##wire(&priv->bit_data); \ 92 static int fops_##wire##_set(void *data, u64 val) \ 97 set##wire(&priv->bit_data, val); \ 101 DEFINE_DEBUGFS_ATTRIBUTE(fops_##wire, fops_##wire##_get, fops_##wire##_set, "%llu\n")
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/linux-6.3-rc2/drivers/w1/ |
A D | Makefile | 6 obj-$(CONFIG_W1) += wire.o 7 wire-objs := w1.o w1_int.o w1_family.o w1_netlink.o w1_io.o
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A D | Kconfig | 3 tristate "Dallas's 1-wire support" 6 Dallas' 1-wire bus is useful to connect slow 1-pin devices 12 will be called wire.
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/linux-6.3-rc2/Documentation/devicetree/bindings/interrupt-controller/ |
A D | intel,ce4100-lapic.yaml | 42 intel,virtual-wire-mode: 47 Virtual Wire Mode - use lapic as virtual wire interrupt delivery mode. 52 mode is configured to virtual wire compatibility mode. 70 intel,virtual-wire-mode;
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/linux-6.3-rc2/Documentation/devicetree/bindings/sound/ |
A D | awinic,aw8738.yaml | 14 (set using one-wire pulse control). The mode configures the speaker-guard 26 GPIO used for one-wire pulse control. The pin is typically called SHDN 32 description: Operation mode (number of pulses for one-wire pulse control)
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/linux-6.3-rc2/Documentation/devicetree/bindings/spi/ |
A D | icpdas-lp8841-spi-rtc.txt | 28 - spi-3wire: The master itself has only 3 wire. It cannor work in 50 spi-3wire;
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/linux-6.3-rc2/Documentation/devicetree/bindings/input/touchscreen/ |
A D | ti,am3359-tsc.yaml | 17 description: Wires refer to application modes i.e. 4/5/8 wire touchscreen 36 ti,wire-config: 63 - ti,wire-config 74 ti,wire-config = <0x00 0x11 0x22 0x33>;
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/linux-6.3-rc2/Documentation/devicetree/bindings/w1/ |
A D | omap-hdq.txt | 1 * OMAP HDQ One wire bus master controller 10 - ti,mode: should be "hdq": HDQ mode "1w": one-wire mode.
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/linux-6.3-rc2/Documentation/devicetree/bindings/display/panel/ |
A D | tpo,tpg110.yaml | 61 spi-3wire: true 72 - spi-3wire 87 spi-3wire;
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A D | kingdisplay,kd035g6-54nt.yaml | 26 spi-3wire: true 48 spi-3wire;
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A D | leadtek,ltk035c5444t.yaml | 27 spi-3wire: true 47 spi-3wire;
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/linux-6.3-rc2/Documentation/devicetree/bindings/display/ |
A D | multi-inno,mi0283qt.txt | 12 - present: IM=x110 4-wire 8-bit data serial interface 13 - absent: IM=x101 3-wire 9-bit data serial interface
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/linux-6.3-rc2/Documentation/devicetree/bindings/leds/backlight/ |
A D | kinetic,ktd253.yaml | 7 title: Kinetic Technologies KTD253 and KTD259 one-wire backlight 16 using pulses on the enable wire. This is sometimes referred to as
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/linux-6.3-rc2/drivers/infiniband/hw/mlx5/ |
A D | wr.c | 363 struct ib_sig_domain *wire = &sig_attrs->wire; in mlx5_set_bsf() local 387 switch (sig_attrs->wire.sig_type) { in mlx5_set_bsf() 392 mem->sig_type == wire->sig_type) { in mlx5_set_bsf() 395 if (mem->sig.dif.bg_type == wire->sig.dif.bg_type) in mlx5_set_bsf() 396 basic->wire.copy_byte_mask |= MLX5_CPY_GRD_MASK; in mlx5_set_bsf() 398 basic->wire.copy_byte_mask |= MLX5_CPY_APP_MASK; in mlx5_set_bsf() 400 basic->wire.copy_byte_mask |= MLX5_CPY_REF_MASK; in mlx5_set_bsf() 402 basic->wire.bs_selector = in mlx5_set_bsf() 403 bs_selector(wire->sig.dif.pi_interval); in mlx5_set_bsf() 406 mlx5_fill_inl_bsf(wire, &bsf->w_inl); in mlx5_set_bsf() [all …]
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/linux-6.3-rc2/drivers/infiniband/ulp/iser/ |
A D | iser_memory.c | 200 iser_set_dif_domain(sc, &sig_attrs->wire); in iser_set_sig_attrs() 201 sig_attrs->wire.sig.dif.bg_type = IB_T10DIF_CRC; in iser_set_sig_attrs() 205 sig_attrs->wire.sig_type = IB_SIG_TYPE_NONE; in iser_set_sig_attrs() 212 iser_set_dif_domain(sc, &sig_attrs->wire); in iser_set_sig_attrs() 213 sig_attrs->wire.sig.dif.bg_type = IB_T10DIF_CRC; in iser_set_sig_attrs()
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/linux-6.3-rc2/Documentation/w1/ |
A D | w1-generic.rst | 2 Introduction to the 1-wire (w1) subsystem 5 The 1-wire bus is a simple master-slave bus that communicates via a single 6 signal wire (plus ground, so two wires). 41 Then provided control buffer is being written to the wire. 78 Devices that support the 1-wire natively must provide the ability to write and
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/linux-6.3-rc2/Documentation/devicetree/bindings/rtc/ |
A D | maxim-ds1302.txt | 22 - spi-3wire : The device has a shared signal IN/OUT line. 42 spi-3wire;
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