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@@ -66,6 +66,7 @@ struct IR {
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/* Device info */
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struct mutex ir_lock;
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int open;
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+ bool is_hdpvr;
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/* RX device */
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struct i2c_client c_rx;
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@@ -206,16 +207,12 @@ static int add_to_buf(struct IR *ir)
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}
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/* key pressed ? */
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-#ifdef I2C_HW_B_HDPVR
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- if (ir->c_rx.adapter->id == I2C_HW_B_HDPVR) {
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+ if (ir->is_hdpvr) {
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if (got_data && (keybuf[0] == 0x80))
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return 0;
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else if (got_data && (keybuf[0] == 0x00))
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return -ENODATA;
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} else if ((ir->b[0] & 0x80) == 0)
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-#else
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- if ((ir->b[0] & 0x80) == 0)
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-#endif
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return got_data ? 0 : -ENODATA;
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/* look what we have */
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@@ -841,15 +838,15 @@ static int send_code(struct IR *ir, unsigned int code, unsigned int key)
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return ret < 0 ? ret : -EFAULT;
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}
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-#ifdef I2C_HW_B_HDPVR
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/*
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* The sleep bits aren't necessary on the HD PVR, and in fact, the
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* last i2c_master_recv always fails with a -5, so for now, we're
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* going to skip this whole mess and say we're done on the HD PVR
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*/
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- if (ir->c_rx.adapter->id == I2C_HW_B_HDPVR)
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- goto done;
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-#endif
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+ if (ir->is_hdpvr) {
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+ dprintk("sent code %u, key %u\n", code, key);
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+ return 0;
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+ }
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/*
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* This bit NAKs until the device is ready, so we retry it
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@@ -1111,12 +1108,14 @@ static int ir_remove(struct i2c_client *client);
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static int ir_probe(struct i2c_client *client, const struct i2c_device_id *id);
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static int ir_command(struct i2c_client *client, unsigned int cmd, void *arg);
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+#define ID_FLAG_TX 0x01
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+#define ID_FLAG_HDPVR 0x02
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+
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static const struct i2c_device_id ir_transceiver_id[] = {
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- /* Generic entry for any IR transceiver */
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- { "ir_video", 0 },
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- /* IR device specific entries should be added here */
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- { "ir_tx_z8f0811_haup", 0 },
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- { "ir_rx_z8f0811_haup", 0 },
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+ { "ir_tx_z8f0811_haup", ID_FLAG_TX },
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+ { "ir_rx_z8f0811_haup", 0 },
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+ { "ir_tx_z8f0811_hdpvr", ID_FLAG_HDPVR | ID_FLAG_TX },
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+ { "ir_rx_z8f0811_hdpvr", ID_FLAG_HDPVR },
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{ }
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};
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@@ -1196,9 +1195,24 @@ static int ir_probe(struct i2c_client *client, const struct i2c_device_id *id)
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int ret;
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int have_rx = 0, have_tx = 0;
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- dprintk("%s: adapter id=0x%x, client addr=0x%02x\n",
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- __func__, adap->id, client->addr);
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+ dprintk("%s: adapter name (%s) nr %d, i2c_device_id name (%s), "
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+ "client addr=0x%02x\n",
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+ __func__, adap->name, adap->nr, id->name, client->addr);
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+ /*
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+ * FIXME - This probe function probes both the Tx and Rx
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+ * addresses of the IR microcontroller.
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+ *
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+ * However, the I2C subsystem is passing along one I2C client at a
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+ * time, based on matches to the ir_transceiver_id[] table above.
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+ * The expectation is that each i2c_client address will be probed
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+ * individually by drivers so the I2C subsystem can mark all client
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+ * addresses as claimed or not.
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+ *
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+ * This probe routine causes only one of the client addresses, TX or RX,
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+ * to be claimed. This will cause a problem if the I2C subsystem is
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+ * subsequently triggered to probe unclaimed clients again.
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+ */
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/*
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* The external IR receiver is at i2c address 0x71.
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* The IR transmitter is at 0x70.
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@@ -1241,6 +1255,7 @@ static int ir_probe(struct i2c_client *client, const struct i2c_device_id *id)
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mutex_init(&ir->ir_lock);
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mutex_init(&ir->buf_lock);
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ir->need_boot = 1;
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+ ir->is_hdpvr = (id->driver_data & ID_FLAG_HDPVR) ? true : false;
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memcpy(&ir->l, &lirc_template, sizeof(struct lirc_driver));
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ir->l.minor = -1;
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