* run edid check on all connectors regardless of encoder
* correction to output check (B_OK != true) * check for invalid gpio (prevents seg violation) * tab cleanup git-svn-id: file:///srv/svn/repos/haiku/haiku/trunk@42727 a95241bf-73f2-0310-859d-f6bbb57e9c96
This commit is contained in:
@@ -139,6 +139,7 @@ struct pll_info {
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struct ddc_info {
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struct ddc_info {
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bool valid;
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uint8 gpio_id;
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uint8 gpio_id;
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uint16 mask_scl_reg;
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uint16 mask_scl_reg;
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@@ -433,8 +433,8 @@ detect_connectors()
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= (B_LENDIAN_TO_HOST_INT16(path->usGraphicObjIds[j]) &
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= (B_LENDIAN_TO_HOST_INT16(path->usGraphicObjIds[j]) &
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OBJECT_TYPE_MASK) >> OBJECT_TYPE_SHIFT;
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OBJECT_TYPE_MASK) >> OBJECT_TYPE_SHIFT;
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if (grph_obj_type == GRAPH_OBJECT_TYPE_ENCODER) {
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if (grph_obj_type == GRAPH_OBJECT_TYPE_ENCODER) {
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// Found an encoder
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int32 k;
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int32 k;
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TRACE("%s: Found encoder at #%" B_PRIu32 "\n", __func__, j);
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for (k = 0; k < enc_obj->ucNumberOfObjects; k++) {
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for (k = 0; k < enc_obj->ucNumberOfObjects; k++) {
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uint16 encoder_obj
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uint16 encoder_obj
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= B_LENDIAN_TO_HOST_INT16(
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= B_LENDIAN_TO_HOST_INT16(
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@@ -533,7 +533,7 @@ detect_connectors()
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}
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}
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}
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}
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} else if (grph_obj_type == GRAPH_OBJECT_TYPE_ROUTER) {
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} else if (grph_obj_type == GRAPH_OBJECT_TYPE_ROUTER) {
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ERROR("%s: TODO : Router object?\n", __func__);
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ERROR("%s: TODO : Found router object?\n", __func__);
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}
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}
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}
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}
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@@ -630,20 +630,12 @@ detect_displays()
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if (displayIndex >= MAX_DISPLAY)
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if (displayIndex >= MAX_DISPLAY)
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continue;
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continue;
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bool found = false;
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if (radeon_gpu_read_edid(id, gDisplay[displayIndex]->edid_info)) {
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switch(gConnector[id]->encoder_type) {
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case VIDEO_ENCODER_DAC:
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found = radeon_gpu_read_edid(id, gDisplay[id]->edid_info);
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break;
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default:
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found = false;
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}
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if (found == true) {
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gDisplay[displayIndex]->active = true;
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gDisplay[displayIndex]->active = true;
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// set this display as active
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// set this display as active
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gDisplay[displayIndex]->connector_index = id;
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gDisplay[displayIndex]->connector_index = id;
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// set physical connector index from gConnector
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// set physical connector index from gConnector
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init_registers(gDisplay[displayIndex]->regs, displayIndex);
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init_registers(gDisplay[displayIndex]->regs, displayIndex);
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if (detect_crt_ranges(displayIndex) == B_OK)
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if (detect_crt_ranges(displayIndex) == B_OK)
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@@ -10,6 +10,7 @@
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#include "accelerant_protos.h"
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#include "accelerant_protos.h"
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#include "accelerant.h"
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#include "accelerant.h"
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#include "bios.h"
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#include "gpu.h"
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#include "gpu.h"
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#include "utility.h"
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#include "utility.h"
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@@ -286,6 +287,9 @@ get_i2c_signals(void* cookie, int* _clock, int* _data)
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*_clock = (value >> info->gpio_y_scl_shift) & 1;
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*_clock = (value >> info->gpio_y_scl_shift) & 1;
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*_data = (value >> info->gpio_y_sda_shift) & 1;
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*_data = (value >> info->gpio_y_sda_shift) & 1;
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TRACE("%s: GPIO 0x%" B_PRIX8 ", clock: %d, data: %d\n",
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__func__, info->gpio_id, *_clock, *_data);
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return B_OK;
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return B_OK;
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}
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}
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@@ -304,6 +308,9 @@ set_i2c_signals(void* cookie, int clock, int data)
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Write32(OUT, info->gpio_id, value);
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Write32(OUT, info->gpio_id, value);
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TRACE("%s: GPIO 0x%" B_PRIX8 ", clock: %d, data: %d\n",
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__func__, info->gpio_id, clock, data);
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return B_OK;
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return B_OK;
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}
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}
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@@ -311,6 +318,11 @@ set_i2c_signals(void* cookie, int clock, int data)
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bool
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bool
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radeon_gpu_read_edid(uint32 connector, edid1_info *edid)
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radeon_gpu_read_edid(uint32 connector, edid1_info *edid)
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{
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{
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// ensure things are sane
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if (gConnector[connector]->connector_ddc_info.valid == false
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|| gConnector[connector]->connector_ddc_info.gpio_id == 0)
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return false;
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i2c_bus bus;
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i2c_bus bus;
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ddc2_init_timing(&bus);
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ddc2_init_timing(&bus);
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@@ -339,22 +351,27 @@ radeon_gpu_i2c_setup(uint32 connector, uint8 gpio_id)
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TRACE("%s: Path #%" B_PRId32 ": GPIO Pin 0x%" B_PRIx8 "\n", __func__,
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TRACE("%s: Path #%" B_PRId32 ": GPIO Pin 0x%" B_PRIx8 "\n", __func__,
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connector, gpio_id);
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connector, gpio_id);
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ATOM_GPIO_I2C_ASSIGMENT *gpio;
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struct _ATOM_GPIO_I2C_INFO *i2c_info;
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int index = GetIndexIntoMasterTable(DATA, GPIO_I2C_Info);
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int index = GetIndexIntoMasterTable(DATA, GPIO_I2C_Info);
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uint8 frev;
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uint8 crev;
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uint16 offset;
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uint16 offset;
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uint16 size;
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uint16 size;
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if (atom_parse_data_header(gAtomContext, index,
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if (atom_parse_data_header(gAtomContext, index, &size, &frev, &crev,
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&size, NULL, NULL, &offset)) {
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&offset) != B_OK) {
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ERROR("%s: GPIO pin not within AtomBIOS!\n", __func__);
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gConnector[connector]->connector_ddc_info.valid = false;
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return B_ERROR;
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}
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i2c_info = (struct _ATOM_GPIO_I2C_INFO *)(gAtomContext->bios + offset);
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struct _ATOM_GPIO_I2C_INFO *i2c_info
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= (struct _ATOM_GPIO_I2C_INFO *)(gAtomContext->bios + offset);
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uint32 num_indices = (size - sizeof(ATOM_COMMON_TABLE_HEADER))
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uint32 num_indices = (size - sizeof(ATOM_COMMON_TABLE_HEADER))
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/ sizeof(ATOM_GPIO_I2C_ASSIGMENT);
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/ sizeof(ATOM_GPIO_I2C_ASSIGMENT);
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for (uint32 i = 0; i < num_indices; i++) {
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for (uint32 i = 0; i < num_indices; i++) {
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gpio = &i2c_info->asGPIO_Info[i];
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ATOM_GPIO_I2C_ASSIGMENT *gpio = &i2c_info->asGPIO_Info[i];
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// TODO : if DCE 4 and i == 7 ... manual override for evergreen
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// TODO : if DCE 4 and i == 7 ... manual override for evergreen
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// TODO : if DCE 3 and i == 4 ... manual override
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// TODO : if DCE 3 and i == 4 ... manual override
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@@ -363,10 +380,10 @@ radeon_gpu_i2c_setup(uint32 connector, uint8 gpio_id)
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continue;
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continue;
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// successful lookup
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// successful lookup
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TRACE("%s: found i2c gpio\n", __func__);
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TRACE("%s: successful AtomBIOS GPIO lookup\n", __func__);
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// populate gpio information
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// populate gpio information
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gConnector[connector]->connector_ddc_info.valid = true;
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gConnector[connector]->connector_ddc_info.gpio_id = gpio_id;
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gConnector[connector]->connector_ddc_info.gpio_id = gpio_id;
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gConnector[connector]->connector_ddc_info.mask_scl_reg
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gConnector[connector]->connector_ddc_info.mask_scl_reg
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@@ -406,8 +423,5 @@ radeon_gpu_i2c_setup(uint32 connector, uint8 gpio_id)
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= (1 << gpio->ucDataA_Shift);
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= (1 << gpio->ucDataA_Shift);
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}
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}
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}
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return B_OK;
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return B_OK;
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}
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}
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