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author | marha <marha@users.sourceforge.net> | 2011-11-21 08:08:22 +0100 |
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committer | marha <marha@users.sourceforge.net> | 2011-11-21 08:08:22 +0100 |
commit | a8a12d4c8be177f63cae7dc96c2b52f09e228a76 (patch) | |
tree | 72ea4c93cc3337810a32ccc0fb34b3bd96d933e9 | |
parent | e3710c8691dceaccf51bb80e5a1f7d1830758f7e (diff) | |
parent | 45710577f374972946a8eb37833a9c94e5a299bf (diff) | |
download | vcxsrv-a8a12d4c8be177f63cae7dc96c2b52f09e228a76.tar.gz vcxsrv-a8a12d4c8be177f63cae7dc96c2b52f09e228a76.tar.bz2 vcxsrv-a8a12d4c8be177f63cae7dc96c2b52f09e228a76.zip |
Merge remote-tracking branch 'origin/released'
32 files changed, 2472 insertions, 2157 deletions
diff --git a/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.c b/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.c index ca4f795f0..7e36018a0 100644 --- a/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.c +++ b/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.c @@ -50,21 +50,39 @@ struct u_vbuf_elements { * - src_format != native_format, as discussed above. * - src_offset % 4 != 0 (if the caps don't allow such an offset). */ boolean incompatible_layout; + /* Per-element flags. */ + boolean incompatible_layout_elem[PIPE_MAX_ATTRIBS]; }; struct u_vbuf_priv { struct u_vbuf_mgr b; struct pipe_context *pipe; - struct translate_cache *translate_cache; - unsigned translate_vb_slot; + /* Whether there is any user buffer. */ + boolean any_user_vbs; + + /* Vertex element state bound by the state tracker. */ + void *saved_ve; + /* and its associated helper structure for this module. */ struct u_vbuf_elements *ve; - void *saved_ve, *fallback_ve; + + /* Vertex elements used for the translate fallback. */ + struct pipe_vertex_element fallback_velems[PIPE_MAX_ATTRIBS]; + /* If non-NULL, this is a vertex element state used for the translate + * fallback and therefore used for rendering too. */ + void *fallback_ve; + /* The vertex buffer slot index where translated vertices have been + * stored in. */ + unsigned translate_vb_slot; + /* When binding the fallback vertex element state, we don't want to + * change saved_ve and ve. This is set to TRUE in such cases. */ boolean ve_binding_lock; - boolean any_user_vbs; + /* Whether there is a buffer with a non-native layout. */ boolean incompatible_vb_layout; + /* Per-buffer flags. */ + boolean incompatible_vb[PIPE_MAX_ATTRIBS]; }; static void u_vbuf_init_format_caps(struct u_vbuf_priv *mgr) @@ -107,6 +125,7 @@ u_vbuf_create(struct pipe_context *pipe, mgr->pipe = pipe; mgr->translate_cache = translate_cache_create(); + mgr->translate_vb_slot = ~0; mgr->b.uploader = u_upload_create(pipe, upload_buffer_size, upload_buffer_alignment, @@ -151,27 +170,21 @@ u_vbuf_translate_begin(struct u_vbuf_priv *mgr, struct pipe_transfer *vb_transfer[PIPE_MAX_ATTRIBS] = {0}; struct pipe_resource *out_buffer = NULL; unsigned i, num_verts, out_offset; - struct pipe_vertex_element new_velems[PIPE_MAX_ATTRIBS]; boolean upload_flushed = FALSE; memset(&key, 0, sizeof(key)); memset(tr_elem_index, 0xff, sizeof(tr_elem_index)); /* Initialize the translate key, i.e. the recipe how vertices should be - * translated. */ + * translated. */ memset(&key, 0, sizeof key); for (i = 0; i < mgr->ve->count; i++) { - struct pipe_vertex_buffer *vb = - &mgr->b.vertex_buffer[mgr->ve->ve[i].vertex_buffer_index]; enum pipe_format output_format = mgr->ve->native_format[i]; unsigned output_format_size = mgr->ve->native_format_size[i]; /* Check for support. */ - if (mgr->ve->ve[i].src_format == mgr->ve->native_format[i] && - (mgr->b.caps.fetch_dword_unaligned || - (vb->buffer_offset % 4 == 0 && - vb->stride % 4 == 0 && - mgr->ve->ve[i].src_offset % 4 == 0))) { + if (!mgr->ve->incompatible_layout_elem[i] && + !mgr->incompatible_vb[mgr->ve->ve[i].vertex_buffer_index]) { continue; } @@ -274,19 +287,19 @@ u_vbuf_translate_begin(struct u_vbuf_priv *mgr, for (i = 0; i < mgr->ve->count; i++) { if (tr_elem_index[i] < key.nr_elements) { te = &key.element[tr_elem_index[i]]; - new_velems[i].instance_divisor = mgr->ve->ve[i].instance_divisor; - new_velems[i].src_format = te->output_format; - new_velems[i].src_offset = te->output_offset; - new_velems[i].vertex_buffer_index = mgr->translate_vb_slot; + mgr->fallback_velems[i].instance_divisor = mgr->ve->ve[i].instance_divisor; + mgr->fallback_velems[i].src_format = te->output_format; + mgr->fallback_velems[i].src_offset = te->output_offset; + mgr->fallback_velems[i].vertex_buffer_index = mgr->translate_vb_slot; } else { - memcpy(&new_velems[i], &mgr->ve->ve[i], + memcpy(&mgr->fallback_velems[i], &mgr->ve->ve[i], sizeof(struct pipe_vertex_element)); } } mgr->fallback_ve = mgr->pipe->create_vertex_elements_state(mgr->pipe, mgr->ve->count, - new_velems); + mgr->fallback_velems); /* Preserve saved_ve. */ mgr->ve_binding_lock = TRUE; @@ -312,6 +325,7 @@ static void u_vbuf_translate_end(struct u_vbuf_priv *mgr) /* Delete the now-unused VBO. */ pipe_resource_reference(&mgr->b.real_vertex_buffer[mgr->translate_vb_slot].buffer, NULL); + mgr->translate_vb_slot = ~0; mgr->b.nr_real_vertex_buffers = mgr->b.nr_vertex_buffers; } @@ -406,10 +420,12 @@ u_vbuf_create_vertex_elements(struct u_vbuf_mgr *mgrb, ve->native_format_size[i] = util_format_get_blocksize(ve->native_format[i]); - ve->incompatible_layout = - ve->incompatible_layout || + ve->incompatible_layout_elem[i] = ve->ve[i].src_format != ve->native_format[i] || (!mgr->b.caps.fetch_dword_unaligned && ve->ve[i].src_offset % 4 != 0); + ve->incompatible_layout = + ve->incompatible_layout || + ve->incompatible_layout_elem[i]; } /* Align the formats to the size of DWORD if needed. */ @@ -453,6 +469,7 @@ void u_vbuf_set_vertex_buffers(struct u_vbuf_mgr *mgrb, mgr->any_user_vbs = FALSE; mgr->incompatible_vb_layout = FALSE; + memset(mgr->incompatible_vb, 0, sizeof(mgr->incompatible_vb)); if (!mgr->b.caps.fetch_dword_unaligned) { /* Check if the strides and offsets are aligned to the size of DWORD. */ @@ -461,7 +478,7 @@ void u_vbuf_set_vertex_buffers(struct u_vbuf_mgr *mgrb, if (bufs[i].stride % 4 != 0 || bufs[i].buffer_offset % 4 != 0) { mgr->incompatible_vb_layout = TRUE; - break; + mgr->incompatible_vb[i] = TRUE; } } } @@ -503,6 +520,19 @@ void u_vbuf_set_vertex_buffers(struct u_vbuf_mgr *mgrb, mgr->b.nr_real_vertex_buffers = count; } +void u_vbuf_set_index_buffer(struct u_vbuf_mgr *mgr, + const struct pipe_index_buffer *ib) +{ + if (ib && ib->buffer) { + assert(ib->offset % ib->index_size == 0); + pipe_resource_reference(&mgr->index_buffer.buffer, ib->buffer); + mgr->index_buffer.offset = ib->offset; + mgr->index_buffer.index_size = ib->index_size; + } else { + pipe_resource_reference(&mgr->index_buffer.buffer, NULL); + } +} + static void u_vbuf_upload_buffers(struct u_vbuf_priv *mgr, int min_index, int max_index, @@ -512,16 +542,23 @@ u_vbuf_upload_buffers(struct u_vbuf_priv *mgr, unsigned count = max_index + 1 - min_index; unsigned nr_velems = mgr->ve->count; unsigned nr_vbufs = mgr->b.nr_vertex_buffers; + struct pipe_vertex_element *velems = + mgr->fallback_ve ? mgr->fallback_velems : mgr->ve->ve; unsigned start_offset[PIPE_MAX_ATTRIBS]; unsigned end_offset[PIPE_MAX_ATTRIBS] = {0}; /* Determine how much data needs to be uploaded. */ for (i = 0; i < nr_velems; i++) { - struct pipe_vertex_element *velem = &mgr->ve->ve[i]; + struct pipe_vertex_element *velem = &velems[i]; unsigned index = velem->vertex_buffer_index; struct pipe_vertex_buffer *vb = &mgr->b.vertex_buffer[index]; unsigned instance_div, first, size; + /* Skip the buffer generated by translate. */ + if (index == mgr->translate_vb_slot) { + continue; + } + assert(vb->buffer); if (!u_vbuf_resource(vb->buffer)->user_ptr) { @@ -580,43 +617,182 @@ u_vbuf_upload_buffers(struct u_vbuf_priv *mgr, } } -static void u_vbuf_compute_max_index(struct u_vbuf_priv *mgr) +unsigned u_vbuf_draw_max_vertex_count(struct u_vbuf_mgr *mgrb) { + struct u_vbuf_priv *mgr = (struct u_vbuf_priv*)mgrb; unsigned i, nr = mgr->ve->count; - - mgr->b.max_index = ~0; + struct pipe_vertex_element *velems = + mgr->fallback_ve ? mgr->fallback_velems : mgr->ve->ve; + unsigned result = ~0; for (i = 0; i < nr; i++) { struct pipe_vertex_buffer *vb = - &mgr->b.vertex_buffer[mgr->ve->ve[i].vertex_buffer_index]; - unsigned max_index, src_size, unused; + &mgr->b.real_vertex_buffer[velems[i].vertex_buffer_index]; + unsigned size, max_count, value; + /* We're not interested in constant and per-instance attribs. */ if (!vb->buffer || !vb->stride || - u_vbuf_resource(vb->buffer)->user_ptr || - mgr->ve->ve[i].instance_divisor) { + velems[i].instance_divisor) { continue; } - src_size = mgr->ve->ve[i].src_offset + mgr->ve->src_format_size[i]; + size = vb->buffer->width0; - /* If src_offset is greater than stride (which means it's a buffer - * offset rather than a vertex offset)... */ - if (src_size >= vb->stride) { - unused = 0; - } else { - /* How many bytes is unused after the last vertex. - * width0 may be "count*stride - unused" and we have to compensate - * for that when dividing by stride. */ - unused = vb->stride - src_size; + /* Subtract buffer_offset. */ + value = vb->buffer_offset; + if (value >= size) { + return 0; + } + size -= value; + + /* Subtract src_offset. */ + value = velems[i].src_offset; + if (value >= size) { + return 0; + } + size -= value; + + /* Subtract format_size. */ + value = mgr->ve->native_format_size[i]; + if (value >= size) { + return 0; + } + size -= value; + + /* Compute the max count. */ + max_count = 1 + size / vb->stride; + result = MIN2(result, max_count); + } + return result; +} + +static boolean u_vbuf_need_minmax_index(struct u_vbuf_priv *mgr) +{ + unsigned i, nr = mgr->ve->count; + + for (i = 0; i < nr; i++) { + struct pipe_vertex_buffer *vb; + unsigned index; + + /* Per-instance attribs don't need min/max_index. */ + if (mgr->ve->ve[i].instance_divisor) { + continue; + } + + index = mgr->ve->ve[i].vertex_buffer_index; + vb = &mgr->b.vertex_buffer[index]; + + /* Constant attribs don't need min/max_index. */ + if (!vb->stride) { + continue; } - /* Compute the maximum index for this vertex element. */ - max_index = - (vb->buffer->width0 - vb->buffer_offset + (unsigned)unused) / - vb->stride - 1; + /* Per-vertex attribs need min/max_index. */ + if (u_vbuf_resource(vb->buffer)->user_ptr || + mgr->ve->incompatible_layout_elem[i] || + mgr->incompatible_vb[index]) { + return TRUE; + } + } + + return FALSE; +} + +static void u_vbuf_get_minmax_index(struct pipe_context *pipe, + struct pipe_index_buffer *ib, + const struct pipe_draw_info *info, + int *out_min_index, + int *out_max_index) +{ + struct pipe_transfer *transfer = NULL; + const void *indices; + unsigned i; + unsigned restart_index = info->restart_index; + + if (u_vbuf_resource(ib->buffer)->user_ptr) { + indices = u_vbuf_resource(ib->buffer)->user_ptr + + ib->offset + info->start * ib->index_size; + } else { + indices = pipe_buffer_map_range(pipe, ib->buffer, + ib->offset + info->start * ib->index_size, + info->count * ib->index_size, + PIPE_TRANSFER_READ, &transfer); + } + + switch (ib->index_size) { + case 4: { + const unsigned *ui_indices = (const unsigned*)indices; + unsigned max_ui = 0; + unsigned min_ui = ~0U; + if (info->primitive_restart) { + for (i = 0; i < info->count; i++) { + if (ui_indices[i] != restart_index) { + if (ui_indices[i] > max_ui) max_ui = ui_indices[i]; + if (ui_indices[i] < min_ui) min_ui = ui_indices[i]; + } + } + } + else { + for (i = 0; i < info->count; i++) { + if (ui_indices[i] > max_ui) max_ui = ui_indices[i]; + if (ui_indices[i] < min_ui) min_ui = ui_indices[i]; + } + } + *out_min_index = min_ui; + *out_max_index = max_ui; + break; + } + case 2: { + const unsigned short *us_indices = (const unsigned short*)indices; + unsigned max_us = 0; + unsigned min_us = ~0U; + if (info->primitive_restart) { + for (i = 0; i < info->count; i++) { + if (us_indices[i] != restart_index) { + if (us_indices[i] > max_us) max_us = us_indices[i]; + if (us_indices[i] < min_us) min_us = us_indices[i]; + } + } + } + else { + for (i = 0; i < info->count; i++) { + if (us_indices[i] > max_us) max_us = us_indices[i]; + if (us_indices[i] < min_us) min_us = us_indices[i]; + } + } + *out_min_index = min_us; + *out_max_index = max_us; + break; + } + case 1: { + const unsigned char *ub_indices = (const unsigned char*)indices; + unsigned max_ub = 0; + unsigned min_ub = ~0U; + if (info->primitive_restart) { + for (i = 0; i < info->count; i++) { + if (ub_indices[i] != restart_index) { + if (ub_indices[i] > max_ub) max_ub = ub_indices[i]; + if (ub_indices[i] < min_ub) min_ub = ub_indices[i]; + } + } + } + else { + for (i = 0; i < info->count; i++) { + if (ub_indices[i] > max_ub) max_ub = ub_indices[i]; + if (ub_indices[i] < min_ub) min_ub = ub_indices[i]; + } + } + *out_min_index = min_ub; + *out_max_index = max_ub; + break; + } + default: + assert(0); + } - mgr->b.max_index = MIN2(mgr->b.max_index, max_index); + if (transfer) { + pipe_buffer_unmap(pipe, transfer); } } @@ -627,17 +803,25 @@ u_vbuf_draw_begin(struct u_vbuf_mgr *mgrb, struct u_vbuf_priv *mgr = (struct u_vbuf_priv*)mgrb; int min_index, max_index; - u_vbuf_compute_max_index(mgr); + if (!mgr->incompatible_vb_layout && + !mgr->ve->incompatible_layout && + !mgr->any_user_vbs) { + return 0; + } if (info->indexed) { - min_index = info->min_index; - if (info->max_index == ~0) { - max_index = mgr->b.max_index; + if (info->max_index != ~0) { + min_index = info->min_index + info->index_bias; + max_index = info->max_index + info->index_bias; + } else if (u_vbuf_need_minmax_index(mgr)) { + u_vbuf_get_minmax_index(mgr->pipe, &mgr->b.index_buffer, info, + &min_index, &max_index); + min_index += info->index_bias; + max_index += info->index_bias; } else { - max_index = MIN2(info->max_index, mgr->b.max_index); + min_index = 0; + max_index = 0; } - min_index += info->index_bias; - max_index += info->index_bias; } else { min_index = info->start; max_index = info->start + info->count - 1; @@ -652,7 +836,7 @@ u_vbuf_draw_begin(struct u_vbuf_mgr *mgrb, if (mgr->any_user_vbs) { u_vbuf_upload_buffers(mgr, min_index, max_index, info->instance_count); } - return mgr->any_user_vbs || mgr->fallback_ve ? U_VBUF_BUFFERS_UPDATED : 0; + return U_VBUF_BUFFERS_UPDATED; } void u_vbuf_draw_end(struct u_vbuf_mgr *mgrb) diff --git a/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.h b/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.h index d854e4449..42ca0ac35 100644 --- a/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.h +++ b/mesalib/src/gallium/auxiliary/util/u_vbuf_mgr.h @@ -67,8 +67,8 @@ struct u_vbuf_mgr { struct pipe_vertex_buffer real_vertex_buffer[PIPE_MAX_ATTRIBS]; int nr_real_vertex_buffers; - /* Precomputed max_index for hardware vertex buffers. */ - unsigned max_index; + /* The index buffer. */ + struct pipe_index_buffer index_buffer; /* This uploader can optionally be used by the driver. * @@ -126,9 +126,14 @@ void u_vbuf_set_vertex_buffers(struct u_vbuf_mgr *mgr, unsigned count, const struct pipe_vertex_buffer *bufs); +void u_vbuf_set_index_buffer(struct u_vbuf_mgr *mgr, + const struct pipe_index_buffer *ib); + enum u_vbuf_return_flags u_vbuf_draw_begin(struct u_vbuf_mgr *mgr, const struct pipe_draw_info *info); +unsigned u_vbuf_draw_max_vertex_count(struct u_vbuf_mgr *mgr); + void u_vbuf_draw_end(struct u_vbuf_mgr *mgr); diff --git a/mesalib/src/glsl/ir_clone.cpp b/mesalib/src/glsl/ir_clone.cpp index e8ac9fbe4..c63615c7e 100644 --- a/mesalib/src/glsl/ir_clone.cpp +++ b/mesalib/src/glsl/ir_clone.cpp @@ -51,6 +51,7 @@ ir_variable::clone(void *mem_ctx, struct hash_table *ht) const var->pixel_center_integer = this->pixel_center_integer; var->explicit_location = this->explicit_location; var->has_initializer = this->has_initializer; + var->depth_layout = this->depth_layout; var->num_state_slots = this->num_state_slots; if (this->state_slots) { diff --git a/mesalib/src/glsl/linker.cpp b/mesalib/src/glsl/linker.cpp index 0ec773d6c..35270881a 100644 --- a/mesalib/src/glsl/linker.cpp +++ b/mesalib/src/glsl/linker.cpp @@ -1876,6 +1876,57 @@ store_tfeedback_info(struct gl_context *ctx, struct gl_shader_program *prog, } /** + * Store the gl_FragDepth layout in the gl_shader_program struct. + */ +static void +store_fragdepth_layout(struct gl_shader_program *prog) +{ + if (prog->_LinkedShaders[MESA_SHADER_FRAGMENT] == NULL) { + return; + } + + struct exec_list *ir = prog->_LinkedShaders[MESA_SHADER_FRAGMENT]->ir; + + /* We don't look up the gl_FragDepth symbol directly because if + * gl_FragDepth is not used in the shader, it's removed from the IR. + * However, the symbol won't be removed from the symbol table. + * + * We're only interested in the cases where the variable is NOT removed + * from the IR. + */ + foreach_list(node, ir) { + ir_variable *const var = ((ir_instruction *) node)->as_variable(); + + if (var == NULL || var->mode != ir_var_out) { + continue; + } + + if (strcmp(var->name, "gl_FragDepth") == 0) { + switch (var->depth_layout) { + case ir_depth_layout_none: + prog->FragDepthLayout = FRAG_DEPTH_LAYOUT_NONE; + return; + case ir_depth_layout_any: + prog->FragDepthLayout = FRAG_DEPTH_LAYOUT_ANY; + return; + case ir_depth_layout_greater: + prog->FragDepthLayout = FRAG_DEPTH_LAYOUT_GREATER; + return; + case ir_depth_layout_less: + prog->FragDepthLayout = FRAG_DEPTH_LAYOUT_LESS; + return; + case ir_depth_layout_unchanged: + prog->FragDepthLayout = FRAG_DEPTH_LAYOUT_UNCHANGED; + return; + default: + assert(0); + return; + } + } + } +} + +/** * Validate the resources used by a program versus the implementation limits */ static bool @@ -2177,6 +2228,7 @@ link_shaders(struct gl_context *ctx, struct gl_shader_program *prog) update_array_sizes(prog); link_assign_uniform_locations(prog); + store_fragdepth_layout(prog); if (!check_resources(ctx, prog)) goto done; diff --git a/mesalib/src/mesa/main/fbobject.c b/mesalib/src/mesa/main/fbobject.c index f8b148cee..5b329f5c3 100644 --- a/mesalib/src/mesa/main/fbobject.c +++ b/mesalib/src/mesa/main/fbobject.c @@ -78,14 +78,6 @@ static struct gl_renderbuffer DummyRenderbuffer; static struct gl_framebuffer IncompleteFramebuffer; -static inline GLboolean -is_cube_face(GLenum target) -{ - return (target >= GL_TEXTURE_CUBE_MAP_POSITIVE_X && - target <= GL_TEXTURE_CUBE_MAP_NEGATIVE_Z); -} - - /** * Is the given FBO a user-created FBO? */ @@ -2008,7 +2000,7 @@ framebuffer_texture(struct gl_context *ctx, const char *caller, GLenum target, } else { err = (texObj->Target == GL_TEXTURE_CUBE_MAP) - ? !is_cube_face(textarget) + ? !_mesa_is_cube_face(textarget) : (texObj->Target != textarget); } } diff --git a/mesalib/src/mesa/main/mtypes.h b/mesalib/src/mesa/main/mtypes.h index 285ec0783..b3427dac1 100644 --- a/mesalib/src/mesa/main/mtypes.h +++ b/mesalib/src/mesa/main/mtypes.h @@ -2218,6 +2218,9 @@ struct gl_shader_program /** Post-link transform feedback info. */ struct gl_transform_feedback_info LinkedTransformFeedback; + /** Post-link gl_FragDepth layout for ARB_conservative_depth. */ + enum gl_frag_depth_layout FragDepthLayout; + /** Geometry shader state - copied into gl_geometry_program at link time */ struct { GLint VerticesOut; diff --git a/mesalib/src/mesa/main/readpix.c b/mesalib/src/mesa/main/readpix.c index 86b87534d..8048a7286 100644 --- a/mesalib/src/mesa/main/readpix.c +++ b/mesalib/src/mesa/main/readpix.c @@ -70,6 +70,11 @@ fast_read_depth_pixels( struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, rb, x, y, width, height, GL_MAP_READ_BIT, &map, &stride); + if (!map) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return GL_TRUE; /* don't bother trying the slow path */ + } + dstStride = _mesa_image_row_stride(packing, width, GL_DEPTH_COMPONENT, type); dst = (GLubyte *) _mesa_image_address2d(packing, pixels, width, height, GL_DEPTH_COMPONENT, type, 0, 0); @@ -126,6 +131,10 @@ read_depth_pixels( struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, rb, x, y, width, height, GL_MAP_READ_BIT, &map, &stride); + if (!map) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return; + } /* General case (slower) */ for (j = 0; j < height; j++, y++) { @@ -165,6 +174,10 @@ read_stencil_pixels( struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, rb, x, y, width, height, GL_MAP_READ_BIT, &map, &stride); + if (!map) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return; + } /* process image row by row */ for (j = 0; j < height; j++) { @@ -211,6 +224,10 @@ fast_read_rgba_pixels_memcpy( struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, rb, x, y, width, height, GL_MAP_READ_BIT, &map, &stride); + if (!map) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return GL_TRUE; /* don't bother trying the slow path */ + } texelBytes = _mesa_get_format_bytes(rb->Format); for (j = 0; j < height; j++) { @@ -224,7 +241,7 @@ fast_read_rgba_pixels_memcpy( struct gl_context *ctx, return GL_TRUE; } -static GLboolean +static void slow_read_rgba_pixels( struct gl_context *ctx, GLint x, GLint y, GLsizei width, GLsizei height, @@ -248,6 +265,10 @@ slow_read_rgba_pixels( struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, rb, x, y, width, height, GL_MAP_READ_BIT, &map, &stride); + if (!map) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return; + } for (j = 0; j < height; j++) { if (_mesa_is_integer_format(format)) { @@ -263,8 +284,6 @@ slow_read_rgba_pixels( struct gl_context *ctx, } ctx->Driver.UnmapRenderbuffer(ctx, rb); - - return GL_TRUE; } /* @@ -327,6 +346,10 @@ fast_read_depth_stencil_pixels(struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, rb, x, y, width, height, GL_MAP_READ_BIT, &map, &stride); + if (!map) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return GL_TRUE; /* don't bother trying the slow path */ + } for (i = 0; i < height; i++) { _mesa_unpack_uint_24_8_depth_stencil_row(rb->Format, width, @@ -363,8 +386,18 @@ fast_read_depth_stencil_pixels_separate(struct gl_context *ctx, ctx->Driver.MapRenderbuffer(ctx, depthRb, x, y, width, height, GL_MAP_READ_BIT, &depthMap, &depthStride); + if (!depthMap) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return GL_TRUE; /* don't bother trying the slow path */ + } + ctx->Driver.MapRenderbuffer(ctx, stencilRb, x, y, width, height, GL_MAP_READ_BIT, &stencilMap, &stencilStride); + if (!stencilMap) { + ctx->Driver.UnmapRenderbuffer(ctx, depthRb); + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return GL_TRUE; /* don't bother trying the slow path */ + } for (j = 0; j < height; j++) { GLubyte stencilVals[MAX_WIDTH]; @@ -407,10 +440,20 @@ slow_read_depth_stencil_pixels_separate(struct gl_context *ctx, */ ctx->Driver.MapRenderbuffer(ctx, depthRb, x, y, width, height, GL_MAP_READ_BIT, &depthMap, &depthStride); + if (!depthMap) { + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return; + } + if (stencilRb != depthRb) { ctx->Driver.MapRenderbuffer(ctx, stencilRb, x, y, width, height, GL_MAP_READ_BIT, &stencilMap, &stencilStride); + if (!stencilMap) { + ctx->Driver.UnmapRenderbuffer(ctx, depthRb); + _mesa_error(ctx, GL_OUT_OF_MEMORY, "glReadPixels"); + return; + } } else { stencilMap = depthMap; diff --git a/mesalib/src/mesa/main/texgetimage.c b/mesalib/src/mesa/main/texgetimage.c index 31d49f2d8..06506594d 100644 --- a/mesalib/src/mesa/main/texgetimage.c +++ b/mesalib/src/mesa/main/texgetimage.c @@ -386,11 +386,10 @@ get_tex_memcpy(struct gl_context *ctx, GLenum format, GLenum type, * so we don't have to worry about those. * XXX more format combinations could be supported here. */ - if ((target == GL_TEXTURE_1D || - target == GL_TEXTURE_2D || - target == GL_TEXTURE_RECTANGLE || - (target >= GL_TEXTURE_CUBE_MAP_POSITIVE_X && - target <= GL_TEXTURE_CUBE_MAP_NEGATIVE_Z))) { + if (target == GL_TEXTURE_1D || + target == GL_TEXTURE_2D || + target == GL_TEXTURE_RECTANGLE || + _mesa_is_cube_face(target)) { if ((texImage->TexFormat == MESA_FORMAT_ARGB8888 || texImage->TexFormat == MESA_FORMAT_SARGB8) && format == GL_BGRA && diff --git a/mesalib/src/mesa/main/teximage.c b/mesalib/src/mesa/main/teximage.c index a84d6873d..c8ea4329f 100644 --- a/mesalib/src/mesa/main/teximage.c +++ b/mesalib/src/mesa/main/teximage.c @@ -522,8 +522,7 @@ _mesa_base_tex_format( struct gl_context *ctx, GLint internalFormat ) GLuint _mesa_tex_target_to_face(GLenum target) { - if (target >= GL_TEXTURE_CUBE_MAP_POSITIVE_X_ARB && - target <= GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_ARB) + if (_mesa_is_cube_face(target)) return (GLuint) target - (GLuint) GL_TEXTURE_CUBE_MAP_POSITIVE_X; else return 0; @@ -3094,8 +3093,7 @@ compressed_texture_error_check(struct gl_context *ctx, GLint dimensions, } /* For cube map, width must equal height */ - if (target >= GL_TEXTURE_CUBE_MAP_POSITIVE_X_ARB && - target <= GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_ARB && width != height) { + if (_mesa_is_cube_face(target) && width != height) { *reason = "width != height"; return GL_INVALID_VALUE; } @@ -3183,8 +3181,7 @@ compressed_subtexture_error_check(struct gl_context *ctx, GLint dimensions, return GL_INVALID_ENUM; /*target*/ maxLevels = ctx->Const.MaxCubeTextureLevels; } - else if (target >= GL_TEXTURE_CUBE_MAP_POSITIVE_X_ARB && - target <= GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_ARB) { + else if (_mesa_is_cube_face(target)) { if (!ctx->Extensions.ARB_texture_cube_map) return GL_INVALID_ENUM; /*target*/ maxLevels = ctx->Const.MaxCubeTextureLevels; diff --git a/mesalib/src/mesa/main/teximage.h b/mesalib/src/mesa/main/teximage.h index fd315bea3..9cc7d5a54 100644 --- a/mesalib/src/mesa/main/teximage.h +++ b/mesalib/src/mesa/main/teximage.h @@ -36,6 +36,16 @@ #include "formats.h" +/** Is the given value one of the 6 cube faces? */ +static inline GLboolean +_mesa_is_cube_face(GLenum target) +{ + return (target >= GL_TEXTURE_CUBE_MAP_POSITIVE_X_ARB && + target <= GL_TEXTURE_CUBE_MAP_NEGATIVE_Z_ARB); +} + + + /** \name Internal functions */ /*@{*/ diff --git a/mesalib/src/mesa/program/ir_to_mesa.cpp b/mesalib/src/mesa/program/ir_to_mesa.cpp index 5cee83778..5a68fc51d 100644 --- a/mesalib/src/mesa/program/ir_to_mesa.cpp +++ b/mesalib/src/mesa/program/ir_to_mesa.cpp @@ -685,29 +685,6 @@ ir_to_mesa_visitor::visit(ir_variable *ir) fp->OriginUpperLeft = ir->origin_upper_left; fp->PixelCenterInteger = ir->pixel_center_integer; - - } else if (strcmp(ir->name, "gl_FragDepth") == 0) { - struct gl_fragment_program *fp = (struct gl_fragment_program *)this->prog; - switch (ir->depth_layout) { - case ir_depth_layout_none: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_NONE; - break; - case ir_depth_layout_any: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_ANY; - break; - case ir_depth_layout_greater: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_GREATER; - break; - case ir_depth_layout_less: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_LESS; - break; - case ir_depth_layout_unchanged: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_UNCHANGED; - break; - default: - assert(0); - break; - } } if (ir->mode == ir_var_uniform && strncmp(ir->name, "gl_", 3) == 0) { @@ -3222,6 +3199,12 @@ get_mesa_program(struct gl_context *ctx, do_set_program_inouts(shader->ir, prog, shader->Type == GL_FRAGMENT_SHADER); count_resources(prog); + /* Set the gl_FragDepth layout. */ + if (target == GL_FRAGMENT_PROGRAM_ARB) { + struct gl_fragment_program *fp = (struct gl_fragment_program *)prog; + fp->FragDepthLayout = shader_program->FragDepthLayout; + } + _mesa_reference_program(ctx, &shader->Program, prog); if ((ctx->Shader.Flags & GLSL_NO_OPT) == 0) { diff --git a/mesalib/src/mesa/state_tracker/st_draw.c b/mesalib/src/mesa/state_tracker/st_draw.c index cb518e1af..05a71d35c 100644 --- a/mesalib/src/mesa/state_tracker/st_draw.c +++ b/mesalib/src/mesa/state_tracker/st_draw.c @@ -648,45 +648,108 @@ check_uniforms(struct gl_context *ctx) } } -/** Helper code for primitive restart fallback */ -#define DO_DRAW(pipe, cur_start, cur_count) \ - do { \ - info.start = cur_start; \ - info.count = cur_count; \ - if (u_trim_pipe_prim(info.mode, &info.count)) { \ - if (transfer) \ - pipe_buffer_unmap(pipe, transfer); \ - pipe->draw_vbo(pipe, &info); \ - if (transfer) { \ - ptr = pipe_buffer_map(pipe, ibuffer->buffer, PIPE_TRANSFER_READ, &transfer); \ - assert(ptr != NULL); \ - ptr = ADD_POINTERS(ptr, ibuffer->offset); \ - } \ - } \ - } while(0) - -/** More helper code for primitive restart fallback */ -#define PRIM_RESTART_LOOP(elements) \ - do { \ - for (i = start; i < end; i++) { \ - if (elements[i] == info.restart_index) { \ - if (cur_count > 0) { \ - /* draw elts up to prev pos */ \ - DO_DRAW(pipe, cur_start, cur_count); \ - } \ - /* begin new prim at next elt */ \ - cur_start = i + 1; \ - cur_count = 0; \ - } \ - else { \ - cur_count++; \ + +/* + * Notes on primitive restart: + * The code below is used when the gallium driver does not support primitive + * restart itself. We map the index buffer, find the restart indexes, unmap + * the index buffer then draw the sub-primitives delineated by the restarts. + * A couple possible optimizations: + * 1. Save the list of sub-primitive (start, count) values in a list attached + * to the index buffer for re-use in subsequent draws. The list would be + * invalidated when the contents of the buffer changed. + * 2. If drawing triangle strips or quad strips, create a new index buffer + * that uses duplicated vertices to render the disjoint strips as one + * long strip. We'd have to be careful to avoid using too much memory + * for this. + * Finally, some apps might perform better if they don't use primitive restart + * at all rather than this fallback path. Set MESA_EXTENSION_OVERRIDE to + * "-GL_NV_primitive_restart" to test that. + */ + + +struct sub_primitive +{ + unsigned start, count; +}; + + +/** + * Scan the elements array to find restart indexes. Return a list + * of primitive (start,count) pairs to indicate how to draw the sub- + * primitives delineated by the restart index. + */ +static struct sub_primitive * +find_sub_primitives(const void *elements, unsigned element_size, + unsigned start, unsigned end, unsigned restart_index, + unsigned *num_sub_prims) +{ + const unsigned max_prims = end - start; + struct sub_primitive *sub_prims; + unsigned i, cur_start, cur_count, num; + + sub_prims = (struct sub_primitive *) + malloc(max_prims * sizeof(struct sub_primitive)); + + if (!sub_prims) { + *num_sub_prims = 0; + return NULL; + } + + cur_start = start; + cur_count = 0; + num = 0; + +#define SCAN_ELEMENTS(TYPE) \ + for (i = start; i < end; i++) { \ + if (((const TYPE *) elements)[i] == restart_index) { \ + if (cur_count > 0) { \ + assert(num < max_prims); \ + sub_prims[num].start = cur_start; \ + sub_prims[num].count = cur_count; \ + num++; \ } \ + cur_start = i + 1; \ + cur_count = 0; \ } \ - if (cur_count > 0) { \ - DO_DRAW(pipe, cur_start, cur_count); \ + else { \ + cur_count++; \ } \ - } while (0) + } \ + if (cur_count > 0) { \ + assert(num < max_prims); \ + sub_prims[num].start = cur_start; \ + sub_prims[num].count = cur_count; \ + num++; \ + } + + switch (element_size) { + case 1: + SCAN_ELEMENTS(ubyte); + break; + case 2: + SCAN_ELEMENTS(ushort); + break; + case 4: + SCAN_ELEMENTS(uint); + break; + default: + assert(0 && "bad index_size in find_sub_primitives()"); + } + +#undef SCAN_ELEMENTS + + *num_sub_prims = num; + + return sub_prims; +} + +/** + * For gallium drivers that don't support the primitive restart + * feature, handle it here by breaking up the indexed primitive into + * sub-primitives. + */ static void handle_fallback_primitive_restart(struct pipe_context *pipe, const struct _mesa_index_buffer *ib, @@ -695,78 +758,61 @@ handle_fallback_primitive_restart(struct pipe_context *pipe, { const unsigned start = orig_info->start; const unsigned count = orig_info->count; - const unsigned end = start + count; struct pipe_draw_info info = *orig_info; struct pipe_transfer *transfer = NULL; - unsigned instance, i, cur_start, cur_count; - const void *ptr; + unsigned instance, i; + const void *ptr = NULL; + struct sub_primitive *sub_prims; + unsigned num_sub_prims; - info.primitive_restart = FALSE; - - if (!info.indexed) { - /* Splitting the draw arrays call is handled by the VBO module */ - if (u_trim_pipe_prim(info.mode, &info.count)) - pipe->draw_vbo(pipe, &info); + assert(info.indexed); + assert(ibuffer->buffer); + assert(ib); + if (!ibuffer->buffer || !ib) return; - } - /* info.indexed == TRUE */ - assert(ibuffer); - assert(ibuffer->buffer); + info.primitive_restart = FALSE; + info.instance_count = 1; - if (ib) { - struct gl_buffer_object *bufobj = ib->obj; - if (bufobj && bufobj->Name) { - ptr = NULL; - } - else { - ptr = ib->ptr; - } - } else { - ptr = NULL; + if (ib->obj && _mesa_is_bufferobj(ib->obj)) { + ptr = pipe_buffer_map_range(pipe, ibuffer->buffer, + start * ibuffer->index_size, /* start */ + count * ibuffer->index_size, /* length */ + PIPE_TRANSFER_READ, &transfer); + } + else { + ptr = ib->ptr; } if (!ptr) - ptr = pipe_buffer_map(pipe, ibuffer->buffer, PIPE_TRANSFER_READ, &transfer); + return; - if (!ptr) - return; ptr = ADD_POINTERS(ptr, ibuffer->offset); - /* Need to loop over instances as well to preserve draw order */ + sub_prims = find_sub_primitives(ptr, ibuffer->index_size, + 0, count, orig_info->restart_index, + &num_sub_prims); + + if (transfer) + pipe_buffer_unmap(pipe, transfer); + + /* Now draw the sub primitives. + * Need to loop over instances as well to preserve draw order. + */ for (instance = 0; instance < orig_info->instance_count; instance++) { info.start_instance = instance + orig_info->start_instance; - info.instance_count = 1; - cur_start = start; - cur_count = 0; - - switch (ibuffer->index_size) { - case 1: - { - const ubyte *elt_ub = (const ubyte *)ptr; - PRIM_RESTART_LOOP(elt_ub); - } - break; - case 2: - { - const ushort *elt_us = (const ushort *)ptr; - PRIM_RESTART_LOOP(elt_us); - } - break; - case 4: - { - const uint *elt_ui = (const uint *)ptr; - PRIM_RESTART_LOOP(elt_ui); + for (i = 0; i < num_sub_prims; i++) { + info.start = sub_prims[i].start; + info.count = sub_prims[i].count; + if (u_trim_pipe_prim(info.mode, &info.count)) { + pipe->draw_vbo(pipe, &info); } - break; - default: - assert(0 && "bad index_size in handle_fallback_primitive_restart()"); } } - if (transfer) - pipe_buffer_unmap(pipe, transfer); + if (sub_prims) + free(sub_prims); } @@ -978,10 +1024,13 @@ st_draw_vbo(struct gl_context *ctx, info.min_index = min_index; info.max_index = max_index; } - } - info.primitive_restart = ctx->Array.PrimitiveRestart; - info.restart_index = ctx->Array.RestartIndex; + /* The VBO module handles restart for the non-indexed GLDrawArrays + * so we only set these fields for indexed drawing: + */ + info.primitive_restart = ctx->Array.PrimitiveRestart; + info.restart_index = ctx->Array.RestartIndex; + } /* do actual drawing */ for (i = 0; i < nr_prims; i++) { @@ -996,19 +1045,14 @@ st_draw_vbo(struct gl_context *ctx, } if (info.primitive_restart) { - /* - * Handle primitive restart for drivers that doesn't support it. - * - * The VBO module handles restart inside of draw_arrays for us, - * but we should still remove the primitive_restart flag on the - * info struct, the fallback function does this for us. Just - * remove the flag for all drivers in this case as well. - */ - if (st->sw_primitive_restart || !info.indexed) + if (st->sw_primitive_restart) { + /* Handle primitive restart for drivers that doesn't support it */ handle_fallback_primitive_restart(pipe, ib, &ibuffer, &info); - else + } + else { /* don't trim, restarts might be inside index list */ pipe->draw_vbo(pipe, &info); + } } else if (u_trim_pipe_prim(info.mode, &info.count)) pipe->draw_vbo(pipe, &info); diff --git a/mesalib/src/mesa/state_tracker/st_glsl_to_tgsi.cpp b/mesalib/src/mesa/state_tracker/st_glsl_to_tgsi.cpp index 0bf6766f7..929c7af01 100644 --- a/mesalib/src/mesa/state_tracker/st_glsl_to_tgsi.cpp +++ b/mesalib/src/mesa/state_tracker/st_glsl_to_tgsi.cpp @@ -1017,29 +1017,6 @@ glsl_to_tgsi_visitor::visit(ir_variable *ir) fp->OriginUpperLeft = ir->origin_upper_left; fp->PixelCenterInteger = ir->pixel_center_integer; - - } else if (strcmp(ir->name, "gl_FragDepth") == 0) { - struct gl_fragment_program *fp = (struct gl_fragment_program *)this->prog; - switch (ir->depth_layout) { - case ir_depth_layout_none: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_NONE; - break; - case ir_depth_layout_any: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_ANY; - break; - case ir_depth_layout_greater: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_GREATER; - break; - case ir_depth_layout_less: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_LESS; - break; - case ir_depth_layout_unchanged: - fp->FragDepthLayout = FRAG_DEPTH_LAYOUT_UNCHANGED; - break; - default: - assert(0); - break; - } } if (ir->mode == ir_var_uniform && strncmp(ir->name, "gl_", 3) == 0) { diff --git a/xorg-server/configure.ac b/xorg-server/configure.ac index 63d59f92d..e80403075 100644 --- a/xorg-server/configure.ac +++ b/xorg-server/configure.ac @@ -26,8 +26,8 @@ dnl dnl Process this file with autoconf to create configure. AC_PREREQ(2.57) -AC_INIT([xorg-server], 1.11.0, [https://bugs.freedesktop.org/enter_bug.cgi?product=xorg], xorg-server) -RELEASE_DATE="2011-08-26" +AC_INIT([xorg-server], 1.11.99.1, [https://bugs.freedesktop.org/enter_bug.cgi?product=xorg], xorg-server) +RELEASE_DATE="2011-11-20" AC_CONFIG_SRCDIR([Makefile.am]) AM_INIT_AUTOMAKE([foreign dist-bzip2]) AM_MAINTAINER_MODE diff --git a/xorg-server/hw/xfree86/common/xf86PciInfo.h b/xorg-server/hw/xfree86/common/xf86PciInfo.h index 356c7db4d..e2d78627b 100644 --- a/xorg-server/hw/xfree86/common/xf86PciInfo.h +++ b/xorg-server/hw/xfree86/common/xf86PciInfo.h @@ -47,6 +47,8 @@ #ifndef _XF86_PCIINFO_H #define _XF86_PCIINFO_H +#warning "xf86PciInfo.h is deprecated. For greater compatibility, drivers should include necessary PCI IDs locally rather than relying on this file from xorg-server." + /* PCI Pseudo Vendor */ #define PCI_VENDOR_GENERIC 0x00FF diff --git a/xorg-server/hw/xfree86/common/xf86VidMode.c b/xorg-server/hw/xfree86/common/xf86VidMode.c index eb29fd09e..2ae5484e3 100644 --- a/xorg-server/hw/xfree86/common/xf86VidMode.c +++ b/xorg-server/hw/xfree86/common/xf86VidMode.c @@ -1,669 +1,672 @@ -/*
- * Copyright (c) 1999-2003 by The XFree86 Project, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sublicense,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice shall be included in
- * all copies or substantial portions of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
- * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
- * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
- * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
- * OTHER DEALINGS IN THE SOFTWARE.
- *
- * Except as contained in this notice, the name of the copyright holder(s)
- * and author(s) shall not be used in advertising or otherwise to promote
- * the sale, use or other dealings in this Software without prior written
- * authorization from the copyright holder(s) and author(s).
- */
-
-/*
- * This file contains the VidMode functions required by the extension.
- * These have been added to avoid the need for the higher level extension
- * code to access the private XFree86 data structures directly. Wherever
- * possible this code uses the functions in xf86Mode.c to do the work,
- * so that two version of code that do similar things don't have to be
- * maintained.
- */
-
-#ifdef HAVE_XORG_CONFIG_H
-#include <xorg-config.h>
-#endif
-
-#include <X11/X.h>
-#include "os.h"
-#include "xf86.h"
-#include "xf86Priv.h"
-
-#ifdef XF86VIDMODE
-#include "vidmodeproc.h"
-#include "xf86cmap.h"
-
-static DevPrivateKeyRec VidModeKeyRec;
-static DevPrivateKey VidModeKey;
-static int VidModeCount = 0;
-static Bool VidModeClose(int i, ScreenPtr pScreen);
-
-#define VMPTR(p) ((VidModePtr)dixLookupPrivate(&(p)->devPrivates, VidModeKey))
-
-#endif
-
-Bool
-VidModeExtensionInit(ScreenPtr pScreen)
-{
-#ifdef XF86VIDMODE
- VidModePtr pVidMode;
-
- if (!xf86GetVidModeEnabled()) {
- DebugF("!xf86GetVidModeEnabled()\n");
- return FALSE;
- }
-
- VidModeKey = &VidModeKeyRec;
-
- if (!dixRegisterPrivateKey(&VidModeKeyRec, PRIVATE_SCREEN, 0))
- return FALSE;
-
- pVidMode = calloc(sizeof(VidModeRec), 1);
- if (!pVidMode)
- return FALSE;
-
- dixSetPrivate(&pScreen->devPrivates, VidModeKey, pVidMode);
-
- pVidMode->Flags = 0;
- pVidMode->Next = NULL;
- pVidMode->CloseScreen = pScreen->CloseScreen;
- pScreen->CloseScreen = VidModeClose;
- VidModeCount++;
- return TRUE;
-#else
- DebugF("no vidmode extension\n");
- return FALSE;
-#endif
-}
-
-
-#ifdef XF86VIDMODE
-
-static Bool
-VidModeClose(int i, ScreenPtr pScreen)
-{
- VidModePtr pVidMode = VMPTR(pScreen);
-
- /* This shouldn't happen */
- if (!pVidMode)
- return FALSE;
-
- pScreen->CloseScreen = pVidMode->CloseScreen;
-
- if (--VidModeCount == 0) {
- free(dixLookupPrivate(&pScreen->devPrivates, VidModeKey));
- dixSetPrivate(&pScreen->devPrivates, VidModeKey, NULL);
- VidModeKey = NULL;
- }
- return pScreen->CloseScreen(i, pScreen);
-}
-
-Bool
-VidModeAvailable(int scrnIndex)
-{
- ScrnInfoPtr pScrn;
- VidModePtr pVidMode;
-
- if (VidModeKey == NULL) {
- DebugF("VidModeKey == NULL\n");
- return FALSE;
- }
-
- pScrn = xf86Screens[scrnIndex];
- if (pScrn == NULL) {
- DebugF("pScrn == NULL\n");
- return FALSE;
- }
-
- pVidMode = VMPTR(pScrn->pScreen);
- if (pVidMode)
- return TRUE;
- else {
- DebugF("pVidMode == NULL\n");
- return FALSE;
- }
-}
-
-Bool
-VidModeGetCurrentModeline(int scrnIndex, pointer *mode, int *dotClock)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
-
- if (pScrn->currentMode) {
- *mode = (pointer)(pScrn->currentMode);
- *dotClock = pScrn->currentMode->Clock;
-
- return TRUE;
- }
- return FALSE;
-}
-
-int
-VidModeGetDotClock(int scrnIndex, int Clock)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return 0;
-
- pScrn = xf86Screens[scrnIndex];
- if ((pScrn->progClock) || (Clock >= MAXCLOCKS))
- return Clock;
- else
- return pScrn->clock[Clock];
-}
-
-int
-VidModeGetNumOfClocks(int scrnIndex, Bool *progClock)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return 0;
-
- pScrn = xf86Screens[scrnIndex];
- if (pScrn->progClock){
- *progClock = TRUE;
- return 0;
- } else {
- *progClock = FALSE;
- return pScrn->numClocks;
- }
-}
-
-Bool
-VidModeGetClocks(int scrnIndex, int *Clocks)
-{
- ScrnInfoPtr pScrn;
- int i;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
-
- if (pScrn->progClock)
- return FALSE;
-
- for (i = 0; i < pScrn->numClocks; i++)
- *Clocks++ = pScrn->clock[i];
-
- return TRUE;
-}
-
-
-Bool
-VidModeGetFirstModeline(int scrnIndex, pointer *mode, int *dotClock)
-{
- ScrnInfoPtr pScrn;
- VidModePtr pVidMode;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- pVidMode = VMPTR(pScrn->pScreen);
- pVidMode->First = pScrn->modes;
- pVidMode->Next = pVidMode->First->next;
-
- if (pVidMode->First->status == MODE_OK) {
- *mode = (pointer)(pVidMode->First);
- *dotClock = VidModeGetDotClock(scrnIndex, pVidMode->First->Clock);
- return TRUE;
- }
-
- return VidModeGetNextModeline(scrnIndex, mode, dotClock);
-}
-
-Bool
-VidModeGetNextModeline(int scrnIndex, pointer *mode, int *dotClock)
-{
- ScrnInfoPtr pScrn;
- VidModePtr pVidMode;
- DisplayModePtr p;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- pVidMode = VMPTR(pScrn->pScreen);
-
- for (p = pVidMode->Next; p != NULL && p != pVidMode->First; p = p->next) {
- if (p->status == MODE_OK) {
- pVidMode->Next = p->next;
- *mode = (pointer)p;
- *dotClock = VidModeGetDotClock(scrnIndex, p->Clock);
- return TRUE;
- }
- }
-
- return FALSE;
-}
-
-Bool
-VidModeDeleteModeline(int scrnIndex, pointer mode)
-{
- ScrnInfoPtr pScrn;
-
- if ((mode == NULL) || (!VidModeAvailable(scrnIndex)))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- xf86DeleteMode(&(pScrn->modes), (DisplayModePtr)mode);
- return TRUE;
-}
-
-Bool
-VidModeZoomViewport(int scrnIndex, int zoom)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- xf86ZoomViewport(pScrn->pScreen, zoom);
- return TRUE;
-}
-
-Bool
-VidModeSetViewPort(int scrnIndex, int x, int y)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- pScrn->frameX0 = min( max(x, 0),
- pScrn->virtualX - pScrn->currentMode->HDisplay );
- pScrn->frameX1 = pScrn->frameX0 + pScrn->currentMode->HDisplay - 1;
- pScrn->frameY0 = min( max(y, 0),
- pScrn->virtualY - pScrn->currentMode->VDisplay );
- pScrn->frameY1 = pScrn->frameY0 + pScrn->currentMode->VDisplay - 1;
- if (pScrn->AdjustFrame != NULL)
- (pScrn->AdjustFrame)(scrnIndex, pScrn->frameX0, pScrn->frameY0, 0);
-
- return TRUE;
-}
-
-Bool
-VidModeGetViewPort(int scrnIndex, int *x, int *y)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- *x = pScrn->frameX0;
- *y = pScrn->frameY0;
- return TRUE;
-}
-
-Bool
-VidModeSwitchMode(int scrnIndex, pointer mode)
-{
- ScrnInfoPtr pScrn;
- DisplayModePtr pTmpMode;
- Bool retval;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- /* save in case we fail */
- pTmpMode = pScrn->currentMode;
- /* Force a mode switch */
- pScrn->currentMode = NULL;
- retval = xf86SwitchMode(pScrn->pScreen, mode);
- /* we failed: restore it */
- if (retval == FALSE)
- pScrn->currentMode = pTmpMode;
- return retval;
-}
-
-Bool
-VidModeLockZoom(int scrnIndex, Bool lock)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
-
- if (xf86Info.dontZoom)
- return FALSE;
-
- xf86LockZoom(pScrn->pScreen, lock);
- return TRUE;
-}
-
-Bool
-VidModeGetMonitor(int scrnIndex, pointer *monitor)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- *monitor = (pointer)(pScrn->monitor);
-
- return TRUE;
-}
-
-ModeStatus
-VidModeCheckModeForMonitor(int scrnIndex, pointer mode)
-{
- ScrnInfoPtr pScrn;
-
- if ((mode == NULL) || (!VidModeAvailable(scrnIndex)))
- return MODE_ERROR;
-
- pScrn = xf86Screens[scrnIndex];
-
- return xf86CheckModeForMonitor((DisplayModePtr)mode, pScrn->monitor);
-}
-
-ModeStatus
-VidModeCheckModeForDriver(int scrnIndex, pointer mode)
-{
- ScrnInfoPtr pScrn;
-
- if ((mode == NULL) || (!VidModeAvailable(scrnIndex)))
- return MODE_ERROR;
-
- pScrn = xf86Screens[scrnIndex];
-
- return xf86CheckModeForDriver(pScrn, (DisplayModePtr)mode, 0);
-}
-
-void
-VidModeSetCrtcForMode(int scrnIndex, pointer mode)
-{
- ScrnInfoPtr pScrn;
- DisplayModePtr ScreenModes;
-
- if ((mode == NULL) || (!VidModeAvailable(scrnIndex)))
- return;
-
- /* Ugly hack so that the xf86Mode.c function can be used without change */
- pScrn = xf86Screens[scrnIndex];
- ScreenModes = pScrn->modes;
- pScrn->modes = (DisplayModePtr)mode;
-
- xf86SetCrtcForModes(pScrn, pScrn->adjustFlags);
- pScrn->modes = ScreenModes;
- return;
-}
-
-Bool
-VidModeAddModeline(int scrnIndex, pointer mode)
-{
- ScrnInfoPtr pScrn;
-
- if ((mode == NULL) || (!VidModeAvailable(scrnIndex)))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
-
- ((DisplayModePtr)mode)->name = strdup(""); /* freed by deletemode */
- ((DisplayModePtr)mode)->status = MODE_OK;
- ((DisplayModePtr)mode)->next = pScrn->modes->next;
- ((DisplayModePtr)mode)->prev = pScrn->modes;
- pScrn->modes->next = (DisplayModePtr)mode;
- if( ((DisplayModePtr)mode)->next != NULL )
- ((DisplayModePtr)mode)->next->prev = (DisplayModePtr)mode;
-
- return TRUE;
-}
-
-int
-VidModeGetNumOfModes(int scrnIndex)
-{
- pointer mode = NULL;
- int dotClock= 0, nummodes = 0;
-
- if (!VidModeGetFirstModeline(scrnIndex, &mode, &dotClock))
- return nummodes;
-
- do {
- nummodes++;
- if (!VidModeGetNextModeline(scrnIndex, &mode, &dotClock))
- return nummodes;
- } while (TRUE);
-}
-
-Bool
-VidModeSetGamma(int scrnIndex, float red, float green, float blue)
-{
- ScrnInfoPtr pScrn;
- Gamma gamma;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- gamma.red = red;
- gamma.green = green;
- gamma.blue = blue;
- if (xf86ChangeGamma(pScrn->pScreen, gamma) != Success)
- return FALSE;
- else
- return TRUE;
-}
-
-Bool
-VidModeGetGamma(int scrnIndex, float *red, float *green, float *blue)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- *red = pScrn->gamma.red;
- *green = pScrn->gamma.green;
- *blue = pScrn->gamma.blue;
- return TRUE;
-}
-
-Bool
-VidModeSetGammaRamp(int scrnIndex, int size, CARD16 *r, CARD16 *g, CARD16 *b)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- xf86ChangeGammaRamp(pScrn->pScreen, size, r, g, b);
- return TRUE;
-}
-
-Bool
-VidModeGetGammaRamp(int scrnIndex, int size, CARD16 *r, CARD16 *g, CARD16 *b)
-{
- ScrnInfoPtr pScrn;
-
- if (!VidModeAvailable(scrnIndex))
- return FALSE;
-
- pScrn = xf86Screens[scrnIndex];
- xf86GetGammaRamp(pScrn->pScreen, size, r, g, b);
- return TRUE;
-}
-
-int
-VidModeGetGammaRampSize(int scrnIndex)
-{
- if (!VidModeAvailable(scrnIndex))
- return 0;
-
- return xf86GetGammaRampSize(xf86Screens[scrnIndex]->pScreen);
-}
-
-pointer
-VidModeCreateMode(void)
-{
- DisplayModePtr mode;
-
- mode = malloc(sizeof(DisplayModeRec));
- if (mode != NULL) {
- mode->name = "";
- mode->VScan = 1; /* divides refresh rate. default = 1 */
- mode->Private = NULL;
- mode->next = mode;
- mode->prev = mode;
- }
- return mode;
-}
-
-void
-VidModeCopyMode(pointer modefrom, pointer modeto)
-{
- memcpy(modeto, modefrom, sizeof(DisplayModeRec));
-}
-
-
-int
-VidModeGetModeValue(pointer mode, int valtyp)
-{
- int ret = 0;
-
- switch (valtyp) {
- case VIDMODE_H_DISPLAY:
- ret = ((DisplayModePtr) mode)->HDisplay;
- break;
- case VIDMODE_H_SYNCSTART:
- ret = ((DisplayModePtr)mode)->HSyncStart;
- break;
- case VIDMODE_H_SYNCEND:
- ret = ((DisplayModePtr)mode)->HSyncEnd;
- break;
- case VIDMODE_H_TOTAL:
- ret = ((DisplayModePtr)mode)->HTotal;
- break;
- case VIDMODE_H_SKEW:
- ret = ((DisplayModePtr)mode)->HSkew;
- break;
- case VIDMODE_V_DISPLAY:
- ret = ((DisplayModePtr)mode)->VDisplay;
- break;
- case VIDMODE_V_SYNCSTART:
- ret = ((DisplayModePtr)mode)->VSyncStart;
- break;
- case VIDMODE_V_SYNCEND:
- ret = ((DisplayModePtr)mode)->VSyncEnd;
- break;
- case VIDMODE_V_TOTAL:
- ret = ((DisplayModePtr)mode)->VTotal;
- break;
- case VIDMODE_FLAGS:
- ret = ((DisplayModePtr)mode)->Flags;
- break;
- case VIDMODE_CLOCK:
- ret = ((DisplayModePtr)mode)->Clock;
- break;
- }
- return ret;
-}
-
-void
-VidModeSetModeValue(pointer mode, int valtyp, int val)
-{
- switch (valtyp) {
- case VIDMODE_H_DISPLAY:
- ((DisplayModePtr)mode)->HDisplay = val;
- break;
- case VIDMODE_H_SYNCSTART:
- ((DisplayModePtr)mode)->HSyncStart = val;
- break;
- case VIDMODE_H_SYNCEND:
- ((DisplayModePtr)mode)->HSyncEnd = val;
- break;
- case VIDMODE_H_TOTAL:
- ((DisplayModePtr)mode)->HTotal = val;
- break;
- case VIDMODE_H_SKEW:
- ((DisplayModePtr)mode)->HSkew = val;
- break;
- case VIDMODE_V_DISPLAY:
- ((DisplayModePtr)mode)->VDisplay = val;
- break;
- case VIDMODE_V_SYNCSTART:
- ((DisplayModePtr)mode)->VSyncStart = val;
- break;
- case VIDMODE_V_SYNCEND:
- ((DisplayModePtr)mode)->VSyncEnd = val;
- break;
- case VIDMODE_V_TOTAL:
- ((DisplayModePtr)mode)->VTotal = val;
- break;
- case VIDMODE_FLAGS:
- ((DisplayModePtr)mode)->Flags = val;
- break;
- case VIDMODE_CLOCK:
- ((DisplayModePtr)mode)->Clock = val;
- break;
- }
- return;
-}
-
-vidMonitorValue
-VidModeGetMonitorValue(pointer monitor, int valtyp, int indx)
-{
- vidMonitorValue ret = { NULL, };
-
- switch (valtyp) {
- case VIDMODE_MON_VENDOR:
- ret.ptr = (((MonPtr)monitor)->vendor);
- break;
- case VIDMODE_MON_MODEL:
- ret.ptr = (((MonPtr)monitor)->model);
- break;
- case VIDMODE_MON_NHSYNC:
- ret.i = ((MonPtr)monitor)->nHsync;
- break;
- case VIDMODE_MON_NVREFRESH:
- ret.i = ((MonPtr)monitor)->nVrefresh;
- break;
- case VIDMODE_MON_HSYNC_LO:
- ret.f = (100.0 * ((MonPtr)monitor)->hsync[indx].lo);
- break;
- case VIDMODE_MON_HSYNC_HI:
- ret.f = (100.0 * ((MonPtr)monitor)->hsync[indx].hi);
- break;
- case VIDMODE_MON_VREFRESH_LO:
- ret.f = (100.0 * ((MonPtr)monitor)->vrefresh[indx].lo);
- break;
- case VIDMODE_MON_VREFRESH_HI:
- ret.f = (100.0 * ((MonPtr)monitor)->vrefresh[indx].hi);
- break;
- }
- return ret;
-}
-
-
-#endif /* XF86VIDMODE */
+/* + * Copyright (c) 1999-2003 by The XFree86 Project, Inc. + * + * Permission is hereby granted, free of charge, to any person obtaining a + * copy of this software and associated documentation files (the "Software"), + * to deal in the Software without restriction, including without limitation + * the rights to use, copy, modify, merge, publish, distribute, sublicense, + * and/or sell copies of the Software, and to permit persons to whom the + * Software is furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL + * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR + * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, + * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR + * OTHER DEALINGS IN THE SOFTWARE. + * + * Except as contained in this notice, the name of the copyright holder(s) + * and author(s) shall not be used in advertising or otherwise to promote + * the sale, use or other dealings in this Software without prior written + * authorization from the copyright holder(s) and author(s). + */ + +/* + * This file contains the VidMode functions required by the extension. + * These have been added to avoid the need for the higher level extension + * code to access the private XFree86 data structures directly. Wherever + * possible this code uses the functions in xf86Mode.c to do the work, + * so that two version of code that do similar things don't have to be + * maintained. + */ + +#ifdef HAVE_XORG_CONFIG_H +#include <xorg-config.h> +#endif + +#include <X11/X.h> +#include "os.h" +#include "xf86.h" +#include "xf86Priv.h" + +#ifdef XF86VIDMODE +#include "vidmodeproc.h" +#include "xf86cmap.h" + +static DevPrivateKeyRec VidModeKeyRec; +static DevPrivateKey VidModeKey; +static int VidModeCount = 0; +static Bool VidModeClose(int i, ScreenPtr pScreen); + +#define VMPTR(p) ((VidModePtr)dixLookupPrivate(&(p)->devPrivates, VidModeKey)) + +#endif + +Bool +VidModeExtensionInit(ScreenPtr pScreen) +{ +#ifdef XF86VIDMODE + VidModePtr pVidMode; + + if (!xf86GetVidModeEnabled()) { + DebugF("!xf86GetVidModeEnabled()\n"); + return FALSE; + } + + VidModeKey = &VidModeKeyRec; + + if (!dixRegisterPrivateKey(&VidModeKeyRec, PRIVATE_SCREEN, 0)) + return FALSE; + + pVidMode = calloc(sizeof(VidModeRec), 1); + if (!pVidMode) + return FALSE; + + dixSetPrivate(&pScreen->devPrivates, VidModeKey, pVidMode); + + pVidMode->Flags = 0; + pVidMode->Next = NULL; + pVidMode->CloseScreen = pScreen->CloseScreen; + pScreen->CloseScreen = VidModeClose; + VidModeCount++; + return TRUE; +#else + DebugF("no vidmode extension\n"); + return FALSE; +#endif +} + + +#ifdef XF86VIDMODE + +static Bool +VidModeClose(int i, ScreenPtr pScreen) +{ + VidModePtr pVidMode = VMPTR(pScreen); + + /* This shouldn't happen */ + if (!pVidMode) + return FALSE; + + pScreen->CloseScreen = pVidMode->CloseScreen; + + if (--VidModeCount == 0) { + free(dixLookupPrivate(&pScreen->devPrivates, VidModeKey)); + dixSetPrivate(&pScreen->devPrivates, VidModeKey, NULL); + VidModeKey = NULL; + } + return pScreen->CloseScreen(i, pScreen); +} + +Bool +VidModeAvailable(int scrnIndex) +{ + ScrnInfoPtr pScrn; + VidModePtr pVidMode; + + if (VidModeKey == NULL) { + DebugF("VidModeKey == NULL\n"); + return FALSE; + } + + pScrn = xf86Screens[scrnIndex]; + if (pScrn == NULL) { + DebugF("pScrn == NULL\n"); + return FALSE; + } + + pVidMode = VMPTR(pScrn->pScreen); + if (pVidMode) + return TRUE; + else { + DebugF("pVidMode == NULL\n"); + return FALSE; + } +} + +Bool +VidModeGetCurrentModeline(int scrnIndex, pointer *mode, int *dotClock) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + + if (pScrn->currentMode) { + *mode = (pointer)(pScrn->currentMode); + *dotClock = pScrn->currentMode->Clock; + + return TRUE; + } + return FALSE; +} + +int +VidModeGetDotClock(int scrnIndex, int Clock) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return 0; + + pScrn = xf86Screens[scrnIndex]; + if ((pScrn->progClock) || (Clock >= MAXCLOCKS)) + return Clock; + else + return pScrn->clock[Clock]; +} + +int +VidModeGetNumOfClocks(int scrnIndex, Bool *progClock) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return 0; + + pScrn = xf86Screens[scrnIndex]; + if (pScrn->progClock){ + *progClock = TRUE; + return 0; + } else { + *progClock = FALSE; + return pScrn->numClocks; + } +} + +Bool +VidModeGetClocks(int scrnIndex, int *Clocks) +{ + ScrnInfoPtr pScrn; + int i; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + + if (pScrn->progClock) + return FALSE; + + for (i = 0; i < pScrn->numClocks; i++) + *Clocks++ = pScrn->clock[i]; + + return TRUE; +} + + +Bool +VidModeGetFirstModeline(int scrnIndex, pointer *mode, int *dotClock) +{ + ScrnInfoPtr pScrn; + VidModePtr pVidMode; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + if (pScrn->modes == NULL) + return FALSE; + + pVidMode = VMPTR(pScrn->pScreen); + pVidMode->First = pScrn->modes; + pVidMode->Next = pVidMode->First->next; + + if (pVidMode->First->status == MODE_OK) { + *mode = (pointer)(pVidMode->First); + *dotClock = VidModeGetDotClock(scrnIndex, pVidMode->First->Clock); + return TRUE; + } + + return VidModeGetNextModeline(scrnIndex, mode, dotClock); +} + +Bool +VidModeGetNextModeline(int scrnIndex, pointer *mode, int *dotClock) +{ + ScrnInfoPtr pScrn; + VidModePtr pVidMode; + DisplayModePtr p; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + pVidMode = VMPTR(pScrn->pScreen); + + for (p = pVidMode->Next; p != NULL && p != pVidMode->First; p = p->next) { + if (p->status == MODE_OK) { + pVidMode->Next = p->next; + *mode = (pointer)p; + *dotClock = VidModeGetDotClock(scrnIndex, p->Clock); + return TRUE; + } + } + + return FALSE; +} + +Bool +VidModeDeleteModeline(int scrnIndex, pointer mode) +{ + ScrnInfoPtr pScrn; + + if ((mode == NULL) || (!VidModeAvailable(scrnIndex))) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + xf86DeleteMode(&(pScrn->modes), (DisplayModePtr)mode); + return TRUE; +} + +Bool +VidModeZoomViewport(int scrnIndex, int zoom) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + xf86ZoomViewport(pScrn->pScreen, zoom); + return TRUE; +} + +Bool +VidModeSetViewPort(int scrnIndex, int x, int y) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + pScrn->frameX0 = min( max(x, 0), + pScrn->virtualX - pScrn->currentMode->HDisplay ); + pScrn->frameX1 = pScrn->frameX0 + pScrn->currentMode->HDisplay - 1; + pScrn->frameY0 = min( max(y, 0), + pScrn->virtualY - pScrn->currentMode->VDisplay ); + pScrn->frameY1 = pScrn->frameY0 + pScrn->currentMode->VDisplay - 1; + if (pScrn->AdjustFrame != NULL) + (pScrn->AdjustFrame)(scrnIndex, pScrn->frameX0, pScrn->frameY0, 0); + + return TRUE; +} + +Bool +VidModeGetViewPort(int scrnIndex, int *x, int *y) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + *x = pScrn->frameX0; + *y = pScrn->frameY0; + return TRUE; +} + +Bool +VidModeSwitchMode(int scrnIndex, pointer mode) +{ + ScrnInfoPtr pScrn; + DisplayModePtr pTmpMode; + Bool retval; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + /* save in case we fail */ + pTmpMode = pScrn->currentMode; + /* Force a mode switch */ + pScrn->currentMode = NULL; + retval = xf86SwitchMode(pScrn->pScreen, mode); + /* we failed: restore it */ + if (retval == FALSE) + pScrn->currentMode = pTmpMode; + return retval; +} + +Bool +VidModeLockZoom(int scrnIndex, Bool lock) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + + if (xf86Info.dontZoom) + return FALSE; + + xf86LockZoom(pScrn->pScreen, lock); + return TRUE; +} + +Bool +VidModeGetMonitor(int scrnIndex, pointer *monitor) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + *monitor = (pointer)(pScrn->monitor); + + return TRUE; +} + +ModeStatus +VidModeCheckModeForMonitor(int scrnIndex, pointer mode) +{ + ScrnInfoPtr pScrn; + + if ((mode == NULL) || (!VidModeAvailable(scrnIndex))) + return MODE_ERROR; + + pScrn = xf86Screens[scrnIndex]; + + return xf86CheckModeForMonitor((DisplayModePtr)mode, pScrn->monitor); +} + +ModeStatus +VidModeCheckModeForDriver(int scrnIndex, pointer mode) +{ + ScrnInfoPtr pScrn; + + if ((mode == NULL) || (!VidModeAvailable(scrnIndex))) + return MODE_ERROR; + + pScrn = xf86Screens[scrnIndex]; + + return xf86CheckModeForDriver(pScrn, (DisplayModePtr)mode, 0); +} + +void +VidModeSetCrtcForMode(int scrnIndex, pointer mode) +{ + ScrnInfoPtr pScrn; + DisplayModePtr ScreenModes; + + if ((mode == NULL) || (!VidModeAvailable(scrnIndex))) + return; + + /* Ugly hack so that the xf86Mode.c function can be used without change */ + pScrn = xf86Screens[scrnIndex]; + ScreenModes = pScrn->modes; + pScrn->modes = (DisplayModePtr)mode; + + xf86SetCrtcForModes(pScrn, pScrn->adjustFlags); + pScrn->modes = ScreenModes; + return; +} + +Bool +VidModeAddModeline(int scrnIndex, pointer mode) +{ + ScrnInfoPtr pScrn; + + if ((mode == NULL) || (!VidModeAvailable(scrnIndex))) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + + ((DisplayModePtr)mode)->name = strdup(""); /* freed by deletemode */ + ((DisplayModePtr)mode)->status = MODE_OK; + ((DisplayModePtr)mode)->next = pScrn->modes->next; + ((DisplayModePtr)mode)->prev = pScrn->modes; + pScrn->modes->next = (DisplayModePtr)mode; + if( ((DisplayModePtr)mode)->next != NULL ) + ((DisplayModePtr)mode)->next->prev = (DisplayModePtr)mode; + + return TRUE; +} + +int +VidModeGetNumOfModes(int scrnIndex) +{ + pointer mode = NULL; + int dotClock= 0, nummodes = 0; + + if (!VidModeGetFirstModeline(scrnIndex, &mode, &dotClock)) + return nummodes; + + do { + nummodes++; + if (!VidModeGetNextModeline(scrnIndex, &mode, &dotClock)) + return nummodes; + } while (TRUE); +} + +Bool +VidModeSetGamma(int scrnIndex, float red, float green, float blue) +{ + ScrnInfoPtr pScrn; + Gamma gamma; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + gamma.red = red; + gamma.green = green; + gamma.blue = blue; + if (xf86ChangeGamma(pScrn->pScreen, gamma) != Success) + return FALSE; + else + return TRUE; +} + +Bool +VidModeGetGamma(int scrnIndex, float *red, float *green, float *blue) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + *red = pScrn->gamma.red; + *green = pScrn->gamma.green; + *blue = pScrn->gamma.blue; + return TRUE; +} + +Bool +VidModeSetGammaRamp(int scrnIndex, int size, CARD16 *r, CARD16 *g, CARD16 *b) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + xf86ChangeGammaRamp(pScrn->pScreen, size, r, g, b); + return TRUE; +} + +Bool +VidModeGetGammaRamp(int scrnIndex, int size, CARD16 *r, CARD16 *g, CARD16 *b) +{ + ScrnInfoPtr pScrn; + + if (!VidModeAvailable(scrnIndex)) + return FALSE; + + pScrn = xf86Screens[scrnIndex]; + xf86GetGammaRamp(pScrn->pScreen, size, r, g, b); + return TRUE; +} + +int +VidModeGetGammaRampSize(int scrnIndex) +{ + if (!VidModeAvailable(scrnIndex)) + return 0; + + return xf86GetGammaRampSize(xf86Screens[scrnIndex]->pScreen); +} + +pointer +VidModeCreateMode(void) +{ + DisplayModePtr mode; + + mode = malloc(sizeof(DisplayModeRec)); + if (mode != NULL) { + mode->name = ""; + mode->VScan = 1; /* divides refresh rate. default = 1 */ + mode->Private = NULL; + mode->next = mode; + mode->prev = mode; + } + return mode; +} + +void +VidModeCopyMode(pointer modefrom, pointer modeto) +{ + memcpy(modeto, modefrom, sizeof(DisplayModeRec)); +} + + +int +VidModeGetModeValue(pointer mode, int valtyp) +{ + int ret = 0; + + switch (valtyp) { + case VIDMODE_H_DISPLAY: + ret = ((DisplayModePtr) mode)->HDisplay; + break; + case VIDMODE_H_SYNCSTART: + ret = ((DisplayModePtr)mode)->HSyncStart; + break; + case VIDMODE_H_SYNCEND: + ret = ((DisplayModePtr)mode)->HSyncEnd; + break; + case VIDMODE_H_TOTAL: + ret = ((DisplayModePtr)mode)->HTotal; + break; + case VIDMODE_H_SKEW: + ret = ((DisplayModePtr)mode)->HSkew; + break; + case VIDMODE_V_DISPLAY: + ret = ((DisplayModePtr)mode)->VDisplay; + break; + case VIDMODE_V_SYNCSTART: + ret = ((DisplayModePtr)mode)->VSyncStart; + break; + case VIDMODE_V_SYNCEND: + ret = ((DisplayModePtr)mode)->VSyncEnd; + break; + case VIDMODE_V_TOTAL: + ret = ((DisplayModePtr)mode)->VTotal; + break; + case VIDMODE_FLAGS: + ret = ((DisplayModePtr)mode)->Flags; + break; + case VIDMODE_CLOCK: + ret = ((DisplayModePtr)mode)->Clock; + break; + } + return ret; +} + +void +VidModeSetModeValue(pointer mode, int valtyp, int val) +{ + switch (valtyp) { + case VIDMODE_H_DISPLAY: + ((DisplayModePtr)mode)->HDisplay = val; + break; + case VIDMODE_H_SYNCSTART: + ((DisplayModePtr)mode)->HSyncStart = val; + break; + case VIDMODE_H_SYNCEND: + ((DisplayModePtr)mode)->HSyncEnd = val; + break; + case VIDMODE_H_TOTAL: + ((DisplayModePtr)mode)->HTotal = val; + break; + case VIDMODE_H_SKEW: + ((DisplayModePtr)mode)->HSkew = val; + break; + case VIDMODE_V_DISPLAY: + ((DisplayModePtr)mode)->VDisplay = val; + break; + case VIDMODE_V_SYNCSTART: + ((DisplayModePtr)mode)->VSyncStart = val; + break; + case VIDMODE_V_SYNCEND: + ((DisplayModePtr)mode)->VSyncEnd = val; + break; + case VIDMODE_V_TOTAL: + ((DisplayModePtr)mode)->VTotal = val; + break; + case VIDMODE_FLAGS: + ((DisplayModePtr)mode)->Flags = val; + break; + case VIDMODE_CLOCK: + ((DisplayModePtr)mode)->Clock = val; + break; + } + return; +} + +vidMonitorValue +VidModeGetMonitorValue(pointer monitor, int valtyp, int indx) +{ + vidMonitorValue ret = { NULL, }; + + switch (valtyp) { + case VIDMODE_MON_VENDOR: + ret.ptr = (((MonPtr)monitor)->vendor); + break; + case VIDMODE_MON_MODEL: + ret.ptr = (((MonPtr)monitor)->model); + break; + case VIDMODE_MON_NHSYNC: + ret.i = ((MonPtr)monitor)->nHsync; + break; + case VIDMODE_MON_NVREFRESH: + ret.i = ((MonPtr)monitor)->nVrefresh; + break; + case VIDMODE_MON_HSYNC_LO: + ret.f = (100.0 * ((MonPtr)monitor)->hsync[indx].lo); + break; + case VIDMODE_MON_HSYNC_HI: + ret.f = (100.0 * ((MonPtr)monitor)->hsync[indx].hi); + break; + case VIDMODE_MON_VREFRESH_LO: + ret.f = (100.0 * ((MonPtr)monitor)->vrefresh[indx].lo); + break; + case VIDMODE_MON_VREFRESH_HI: + ret.f = (100.0 * ((MonPtr)monitor)->vrefresh[indx].hi); + break; + } + return ret; +} + + +#endif /* XF86VIDMODE */ diff --git a/xorg-server/hw/xfree86/common/xf86pciBus.c b/xorg-server/hw/xfree86/common/xf86pciBus.c index bc09bd20c..87dc02512 100644 --- a/xorg-server/hw/xfree86/common/xf86pciBus.c +++ b/xorg-server/hw/xfree86/common/xf86pciBus.c @@ -49,6 +49,7 @@ #define XF86_OS_PRIVS #include "xf86_OSproc.h" +#define PCI_VENDOR_GENERIC 0x00FF /* Bus-specific globals */ Bool pciSlotClaimed = FALSE; diff --git a/xorg-server/hw/xfree86/doc/ddxDesign.xml b/xorg-server/hw/xfree86/doc/ddxDesign.xml index 0d5e952a2..c406cd744 100644 --- a/xorg-server/hw/xfree86/doc/ddxDesign.xml +++ b/xorg-server/hw/xfree86/doc/ddxDesign.xml @@ -3553,13 +3553,6 @@ The following include files are typically required by video drivers: </para> <para> - Drivers that need to access PCI vendor/device definitions need this: - <literallayout><filename> - "xf86PciInfo.h" - </filename></literallayout> - </para> - - <para> Drivers that need to access the PCI config space need this: <literallayout><filename> "xf86Pci.h" diff --git a/xorg-server/hw/xfree86/dri2/dri2.c b/xorg-server/hw/xfree86/dri2/dri2.c index a97508d21..0d613be8e 100644 --- a/xorg-server/hw/xfree86/dri2/dri2.c +++ b/xorg-server/hw/xfree86/dri2/dri2.c @@ -816,7 +816,8 @@ DRI2WaitSwap(ClientPtr client, DrawablePtr pDrawable) /* If we're currently waiting for a swap on this drawable, reset * the request and suspend the client. We only support one * blocked client per drawable. */ - if ((pPriv->swapsPending) && + if (pPriv && + pPriv->swapsPending && pPriv->blockedClient == NULL) { ResetCurrentRequest(client); client->sequence--; @@ -1234,14 +1235,24 @@ DRI2CloseScreen(ScreenPtr pScreen) } extern ExtensionModule dri2ExtensionModule; +extern Bool DRI2ModuleSetup(void); + +/* Called by InitExtensions() */ +Bool +DRI2ModuleSetup(void) +{ + dri2DrawableRes = CreateNewResourceType(DRI2DrawableGone, "DRI2Drawable"); + if (!dri2DrawableRes) + return FALSE; + + return TRUE; +} static pointer DRI2Setup(pointer module, pointer opts, int *errmaj, int *errmin) { static Bool setupDone = FALSE; - dri2DrawableRes = CreateNewResourceType(DRI2DrawableGone, "DRI2Drawable"); - if (!setupDone) { setupDone = TRUE; diff --git a/xorg-server/hw/xfree86/dri2/dri2ext.c b/xorg-server/hw/xfree86/dri2/dri2ext.c index 934abf6de..e612cf051 100644 --- a/xorg-server/hw/xfree86/dri2/dri2ext.c +++ b/xorg-server/hw/xfree86/dri2/dri2ext.c @@ -50,6 +50,7 @@ #include "xf86Module.h" static ExtensionEntry *dri2Extension; +extern Bool DRI2ModuleSetup(void); static Bool validDrawable(ClientPtr client, XID drawable, Mask access_mode, @@ -634,6 +635,8 @@ DRI2ExtensionInit(void) StandardMinorOpcode); DRI2EventBase = dri2Extension->eventBase; + + DRI2ModuleSetup(); } extern Bool noDRI2Extension; diff --git a/xorg-server/hw/xfree86/fbdevhw/fbdevhw.c b/xorg-server/hw/xfree86/fbdevhw/fbdevhw.c index dee731be4..30a2a9133 100644 --- a/xorg-server/hw/xfree86/fbdevhw/fbdevhw.c +++ b/xorg-server/hw/xfree86/fbdevhw/fbdevhw.c @@ -9,7 +9,6 @@ #include "xf86_OSproc.h" /* pci stuff */ -#include "xf86PciInfo.h" #include "xf86Pci.h" #include "xf86cmap.h" diff --git a/xorg-server/hw/xfree86/modes/xf86EdidModes.c b/xorg-server/hw/xfree86/modes/xf86EdidModes.c index 9e0dc9d32..86065f869 100644 --- a/xorg-server/hw/xfree86/modes/xf86EdidModes.c +++ b/xorg-server/hw/xfree86/modes/xf86EdidModes.c @@ -1,1216 +1,1221 @@ -/*
- * Copyright 2006 Luc Verhaegen.
- * Copyright 2008 Red Hat, Inc.
- *
- * Permission is hereby granted, free of charge, to any person obtaining a
- * copy of this software and associated documentation files (the "Software"),
- * to deal in the Software without restriction, including without limitation
- * the rights to use, copy, modify, merge, publish, distribute, sub license,
- * and/or sell copies of the Software, and to permit persons to whom the
- * Software is furnished to do so, subject to the following conditions:
- *
- * The above copyright notice and this permission notice (including the
- * next paragraph) shall be included in all copies or substantial portions
- * of the Software.
- *
- * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
- * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
- * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
- * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
- * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
- * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
- * DEALINGS IN THE SOFTWARE.
- */
-
-/**
- * @file This file covers code to convert a xf86MonPtr containing EDID-probed
- * information into a list of modes, including applying monitor-specific
- * quirks to fix broken EDID data.
- */
-#ifdef HAVE_XORG_CONFIG_H
-#include <xorg-config.h>
-#else
-#ifdef HAVE_CONFIG_H
-#include <config.h>
-#endif
-#endif
-
-#define _PARSE_EDID_
-#include "xf86.h"
-#include "xf86DDC.h"
-#include <X11/Xatom.h>
-#include "property.h"
-#include "propertyst.h"
-#include "xf86Crtc.h"
-#include <string.h>
-#include <math.h>
-
-static void handle_detailed_rblank(struct detailed_monitor_section *det_mon,
- void *data)
-{
- if (det_mon->type == DS_RANGES)
- if (det_mon->section.ranges.supported_blanking & CVT_REDUCED)
- *(Bool*)data = TRUE;
-}
-
-static Bool
-xf86MonitorSupportsReducedBlanking(xf86MonPtr DDC)
-{
- /* EDID 1.4 explicitly defines RB support */
- if (DDC->ver.revision >= 4) {
- Bool ret = FALSE;
-
- xf86ForEachDetailedBlock(DDC, handle_detailed_rblank, &ret);
- return ret;
- }
-
- /* For anything older, assume digital means RB support. Boo. */
- if (DDC->features.input_type)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_prefer_large_60 (int scrnIndex, xf86MonPtr DDC)
-{
- /* Belinea 10 15 55 */
- if (memcmp (DDC->vendor.name, "MAX", 4) == 0 &&
- ((DDC->vendor.prod_id == 1516) ||
- (DDC->vendor.prod_id == 0x77e)))
- return TRUE;
-
- /* Acer AL1706 */
- if (memcmp (DDC->vendor.name, "ACR", 4) == 0 &&
- DDC->vendor.prod_id == 44358)
- return TRUE;
-
- /* Bug #10814: Samsung SyncMaster 225BW */
- if (memcmp (DDC->vendor.name, "SAM", 4) == 0 &&
- DDC->vendor.prod_id == 596)
- return TRUE;
-
- /* Bug #10545: Samsung SyncMaster 226BW */
- if (memcmp (DDC->vendor.name, "SAM", 4) == 0 &&
- DDC->vendor.prod_id == 638)
- return TRUE;
-
- /* Acer F51 */
- if (memcmp (DDC->vendor.name, "API", 4) == 0 &&
- DDC->vendor.prod_id == 0x7602)
- return TRUE;
-
-
- return FALSE;
-}
-
-static Bool quirk_prefer_large_75 (int scrnIndex, xf86MonPtr DDC)
-{
- /* Bug #11603: Funai Electronics PM36B */
- if (memcmp (DDC->vendor.name, "FCM", 4) == 0 &&
- DDC->vendor.prod_id == 13600)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_detailed_h_in_cm (int scrnIndex, xf86MonPtr DDC)
-{
- /* Bug #11603: Funai Electronics PM36B */
- if (memcmp (DDC->vendor.name, "FCM", 4) == 0 &&
- DDC->vendor.prod_id == 13600)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_detailed_v_in_cm (int scrnIndex, xf86MonPtr DDC)
-{
- /* Bug #11603: Funai Electronics PM36B */
- if (memcmp (DDC->vendor.name, "FCM", 4) == 0 &&
- DDC->vendor.prod_id == 13600)
- return TRUE;
-
- /* Bug #21000: LGPhilipsLCD LP154W01-TLAJ */
- if (memcmp (DDC->vendor.name, "LPL", 4) == 0 &&
- DDC->vendor.prod_id == 47360)
- return TRUE;
-
- /* Bug #10304: LGPhilipsLCD LP154W01-A5 */
- if (memcmp(DDC->vendor.name, "LPL", 4) == 0 &&
- DDC->vendor.prod_id == 0)
- return TRUE;
-
- /* Bug #24482: LGPhilipsLCD LP154W01-TLA1 */
- if (memcmp(DDC->vendor.name, "LPL", 4) == 0 &&
- DDC->vendor.prod_id == 0x2a00)
- return TRUE;
-
- /* Bug #28414: HP Compaq NC8430 LP154W01-TLA8 */
- if (memcmp (DDC->vendor.name, "LPL", 4) == 0 &&
- DDC->vendor.prod_id == 5750)
- return TRUE;
-
- /* Bug #21750: Samsung Syncmaster 2333HD */
- if (memcmp (DDC->vendor.name, "SAM", 4) == 0 &&
- DDC->vendor.prod_id == 1157)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_detailed_use_maximum_size (int scrnIndex, xf86MonPtr DDC)
-{
- /* Bug #21324: Iiyama Vision Master 450 */
- if (memcmp (DDC->vendor.name, "IVM", 4) == 0 &&
- DDC->vendor.prod_id == 6400)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_135_clock_too_high (int scrnIndex, xf86MonPtr DDC)
-{
- /* Envision Peripherals, Inc. EN-7100e. See bug #9550. */
- if (memcmp (DDC->vendor.name, "EPI", 4) == 0 &&
- DDC->vendor.prod_id == 59264)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_first_detailed_preferred (int scrnIndex, xf86MonPtr DDC)
-{
- /* Philips 107p5 CRT. Reported on xorg@ with pastebin. */
- if (memcmp (DDC->vendor.name, "PHL", 4) == 0 &&
- DDC->vendor.prod_id == 57364)
- return TRUE;
-
- /* Proview AY765C 17" LCD. See bug #15160*/
- if (memcmp (DDC->vendor.name, "PTS", 4) == 0 &&
- DDC->vendor.prod_id == 765)
- return TRUE;
-
- /* ACR of some sort RH #284231 */
- if (memcmp (DDC->vendor.name, "ACR", 4) == 0 &&
- DDC->vendor.prod_id == 2423)
- return TRUE;
-
- /* Peacock Ergovision 19. See rh#492359 */
- if (memcmp (DDC->vendor.name, "PEA", 4) == 0 &&
- DDC->vendor.prod_id == 9003)
- return TRUE;
-
- return FALSE;
-}
-
-static Bool quirk_detailed_sync_pp(int scrnIndex, xf86MonPtr DDC)
-{
- /* Bug #12439: Samsung SyncMaster 205BW */
- if (memcmp (DDC->vendor.name, "SAM", 4) == 0 &&
- DDC->vendor.prod_id == 541)
- return TRUE;
- return FALSE;
-}
-
-/* This should probably be made more generic */
-static Bool quirk_dvi_single_link(int scrnIndex, xf86MonPtr DDC)
-{
- /* Red Hat bug #453106: Apple 23" Cinema Display */
- if (memcmp (DDC->vendor.name, "APL", 4) == 0 &&
- DDC->vendor.prod_id == 0x921c)
- return TRUE;
- return FALSE;
-}
-
-typedef struct {
- Bool (*detect) (int scrnIndex, xf86MonPtr DDC);
- ddc_quirk_t quirk;
- char *description;
-} ddc_quirk_map_t;
-
-static const ddc_quirk_map_t ddc_quirks[] = {
- {
- quirk_prefer_large_60, DDC_QUIRK_PREFER_LARGE_60,
- "Detailed timing is not preferred, use largest mode at 60Hz"
- },
- {
- quirk_135_clock_too_high, DDC_QUIRK_135_CLOCK_TOO_HIGH,
- "Recommended 135MHz pixel clock is too high"
- },
- {
- quirk_prefer_large_75, DDC_QUIRK_PREFER_LARGE_75,
- "Detailed timing is not preferred, use largest mode at 75Hz"
- },
- {
- quirk_detailed_h_in_cm, DDC_QUIRK_DETAILED_H_IN_CM,
- "Detailed timings give horizontal size in cm."
- },
- {
- quirk_detailed_v_in_cm, DDC_QUIRK_DETAILED_V_IN_CM,
- "Detailed timings give vertical size in cm."
- },
- {
- quirk_detailed_use_maximum_size, DDC_QUIRK_DETAILED_USE_MAXIMUM_SIZE,
- "Use maximum size instead of detailed timing sizes."
- },
- {
- quirk_first_detailed_preferred, DDC_QUIRK_FIRST_DETAILED_PREFERRED,
- "First detailed timing was not marked as preferred."
- },
- {
- quirk_detailed_sync_pp, DDC_QUIRK_DETAILED_SYNC_PP,
- "Use +hsync +vsync for detailed timing."
- },
- {
- quirk_dvi_single_link, DDC_QUIRK_DVI_SINGLE_LINK,
- "Forcing maximum pixel clock to single DVI link."
- },
- {
- NULL, DDC_QUIRK_NONE,
- "No known quirks"
- },
-};
-
-/*
- * These more or less come from the DMT spec. The 720x400 modes are
- * inferred from historical 80x25 practice. The 640x480@67 and 832x624@75
- * modes are old-school Mac modes. The EDID spec says the 1152x864@75 mode
- * should be 1152x870, again for the Mac, but instead we use the x864 DMT
- * mode.
- *
- * The DMT modes have been fact-checked; the rest are mild guesses.
- */
-#define MODEPREFIX NULL, NULL, NULL, 0, M_T_DRIVER
-#define MODESUFFIX 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,FALSE,FALSE,0,NULL,0,0.0,0.0
-
-static const DisplayModeRec DDCEstablishedModes[17] = {
- { MODEPREFIX, 40000, 800, 840, 968, 1056, 0, 600, 601, 605, 628, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@60Hz */
- { MODEPREFIX, 36000, 800, 824, 896, 1024, 0, 600, 601, 603, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@56Hz */
- { MODEPREFIX, 31500, 640, 656, 720, 840, 0, 480, 481, 484, 500, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@75Hz */
- { MODEPREFIX, 31500, 640, 664, 704, 832, 0, 480, 489, 492, 520, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@72Hz */
- { MODEPREFIX, 30240, 640, 704, 768, 864, 0, 480, 483, 486, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@67Hz */
- { MODEPREFIX, 25175, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@60Hz */
- { MODEPREFIX, 35500, 720, 738, 846, 900, 0, 400, 421, 423, 449, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 720x400@88Hz */
- { MODEPREFIX, 28320, 720, 738, 846, 900, 0, 400, 412, 414, 449, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 720x400@70Hz */
- { MODEPREFIX, 135000, 1280, 1296, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@75Hz */
- { MODEPREFIX, 78750, 1024, 1040, 1136, 1312, 0, 768, 769, 772, 800, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1024x768@75Hz */
- { MODEPREFIX, 75000, 1024, 1048, 1184, 1328, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@70Hz */
- { MODEPREFIX, 65000, 1024, 1048, 1184, 1344, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@60Hz */
- { MODEPREFIX, 44900, 1024, 1032, 1208, 1264, 0, 768, 768, 772, 817, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* 1024x768@43Hz */
- { MODEPREFIX, 57284, 832, 864, 928, 1152, 0, 624, 625, 628, 667, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 832x624@75Hz */
- { MODEPREFIX, 49500, 800, 816, 896, 1056, 0, 600, 601, 604, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@75Hz */
- { MODEPREFIX, 50000, 800, 856, 976, 1040, 0, 600, 637, 643, 666, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@72Hz */
- { MODEPREFIX, 108000, 1152, 1216, 1344, 1600, 0, 864, 865, 868, 900, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1152x864@75Hz */
-};
-
-static DisplayModePtr
-DDCModesFromEstablished(int scrnIndex, struct established_timings *timing,
- ddc_quirk_t quirks)
-{
- DisplayModePtr Modes = NULL, Mode = NULL;
- CARD32 bits = (timing->t1) | (timing->t2 << 8) |
- ((timing->t_manu & 0x80) << 9);
- int i;
-
- for (i = 0; i < 17; i++) {
- if (bits & (0x01 << i)) {
- Mode = xf86DuplicateMode(&DDCEstablishedModes[i]);
- Modes = xf86ModesAdd(Modes, Mode);
- }
- }
-
- return Modes;
-}
-
-/* Autogenerated from the DMT spec */
-const DisplayModeRec DMTModes[] = {
- { MODEPREFIX, 31500, 640, 672, 736, 832, 0, 350, 382, 385, 445, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x350@85Hz */
- { MODEPREFIX, 31500, 640, 672, 736, 832, 0, 400, 401, 404, 445, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 640x400@85Hz */
- { MODEPREFIX, 35500, 720, 756, 828, 936, 0, 400, 401, 404, 446, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 720x400@85Hz */
- { MODEPREFIX, 25175, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@60Hz */
- { MODEPREFIX, 31500, 640, 664, 704, 832, 0, 480, 489, 492, 520, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@72Hz */
- { MODEPREFIX, 31500, 640, 656, 720, 840, 0, 480, 481, 484, 500, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@75Hz */
- { MODEPREFIX, 36000, 640, 696, 752, 832, 0, 480, 481, 484, 509, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@85Hz */
- { MODEPREFIX, 36000, 800, 824, 896, 1024, 0, 600, 601, 603, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@56Hz */
- { MODEPREFIX, 40000, 800, 840, 968, 1056, 0, 600, 601, 605, 628, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@60Hz */
- { MODEPREFIX, 50000, 800, 856, 976, 1040, 0, 600, 637, 643, 666, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@72Hz */
- { MODEPREFIX, 49500, 800, 816, 896, 1056, 0, 600, 601, 604, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@75Hz */
- { MODEPREFIX, 56250, 800, 832, 896, 1048, 0, 600, 601, 604, 631, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@85Hz */
- { MODEPREFIX, 73250, 800, 848, 880, 960, 0, 600, 603, 607, 636, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 800x600@120Hz RB */
- { MODEPREFIX, 33750, 848, 864, 976, 1088, 0, 480, 486, 494, 517, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 848x480@60Hz */
- { MODEPREFIX, 44900, 1024, 1032, 1208, 1264, 0, 768, 768, 772, 817, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* 1024x768@43Hz (interlaced) */
- { MODEPREFIX, 65000, 1024, 1048, 1184, 1344, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@60Hz */
- { MODEPREFIX, 75000, 1024, 1048, 1184, 1328, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@70Hz */
- { MODEPREFIX, 78750, 1024, 1040, 1136, 1312, 0, 768, 769, 772, 800, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1024x768@75Hz */
- { MODEPREFIX, 94500, 1024, 1072, 1168, 1376, 0, 768, 769, 772, 808, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1024x768@85Hz */
- { MODEPREFIX, 115500, 1024, 1072, 1104, 1184, 0, 768, 771, 775, 813, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@120Hz RB */
- { MODEPREFIX, 108000, 1152, 1216, 1344, 1600, 0, 864, 865, 868, 900, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1152x864@75Hz */
- { MODEPREFIX, 68250, 1280, 1328, 1360, 1440, 0, 768, 771, 778, 790, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x768@60Hz RB */
- { MODEPREFIX, 79500, 1280, 1344, 1472, 1664, 0, 768, 771, 778, 798, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x768@60Hz */
- { MODEPREFIX, 102250, 1280, 1360, 1488, 1696, 0, 768, 771, 778, 805, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x768@75Hz */
- { MODEPREFIX, 117500, 1280, 1360, 1496, 1712, 0, 768, 771, 778, 809, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x768@85Hz */
- { MODEPREFIX, 140250, 1280, 1328, 1360, 1440, 0, 768, 771, 778, 813, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x768@120Hz RB */
- { MODEPREFIX, 71000, 1280, 1328, 1360, 1440, 0, 800, 803, 809, 823, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x800@60Hz RB */
- { MODEPREFIX, 83500, 1280, 1352, 1480, 1680, 0, 800, 803, 809, 831, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x800@60Hz */
- { MODEPREFIX, 106500, 1280, 1360, 1488, 1696, 0, 800, 803, 809, 838, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x800@75Hz */
- { MODEPREFIX, 122500, 1280, 1360, 1496, 1712, 0, 800, 803, 809, 843, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x800@85Hz */
- { MODEPREFIX, 146250, 1280, 1328, 1360, 1440, 0, 800, 803, 809, 847, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x800@120Hz RB */
- { MODEPREFIX, 108000, 1280, 1376, 1488, 1800, 0, 960, 961, 964, 1000, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x960@60Hz */
- { MODEPREFIX, 148500, 1280, 1344, 1504, 1728, 0, 960, 961, 964, 1011, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x960@85Hz */
- { MODEPREFIX, 175500, 1280, 1328, 1360, 1440, 0, 960, 963, 967, 1017, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x960@120Hz RB */
- { MODEPREFIX, 108000, 1280, 1328, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@60Hz */
- { MODEPREFIX, 135000, 1280, 1296, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@75Hz */
- { MODEPREFIX, 157500, 1280, 1344, 1504, 1728, 0, 1024, 1025, 1028, 1072, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@85Hz */
- { MODEPREFIX, 187250, 1280, 1328, 1360, 1440, 0, 1024, 1027, 1034, 1084, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x1024@120Hz RB */
- { MODEPREFIX, 85500, 1360, 1424, 1536, 1792, 0, 768, 771, 777, 795, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1360x768@60Hz */
- { MODEPREFIX, 148250, 1360, 1408, 1440, 1520, 0, 768, 771, 776, 813, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1360x768@120Hz RB */
- { MODEPREFIX, 101000, 1400, 1448, 1480, 1560, 0, 1050, 1053, 1057, 1080, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1400x1050@60Hz RB */
- { MODEPREFIX, 121750, 1400, 1488, 1632, 1864, 0, 1050, 1053, 1057, 1089, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1400x1050@60Hz */
- { MODEPREFIX, 156000, 1400, 1504, 1648, 1896, 0, 1050, 1053, 1057, 1099, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1400x1050@75Hz */
- { MODEPREFIX, 179500, 1400, 1504, 1656, 1912, 0, 1050, 1053, 1057, 1105, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1400x1050@85Hz */
- { MODEPREFIX, 208000, 1400, 1448, 1480, 1560, 0, 1050, 1053, 1057, 1112, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1400x1050@120Hz RB */
- { MODEPREFIX, 88750, 1440, 1488, 1520, 1600, 0, 900, 903, 909, 926, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1440x900@60Hz RB */
- { MODEPREFIX, 106500, 1440, 1520, 1672, 1904, 0, 900, 903, 909, 934, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1440x900@60Hz */
- { MODEPREFIX, 136750, 1440, 1536, 1688, 1936, 0, 900, 903, 909, 942, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1440x900@75Hz */
- { MODEPREFIX, 157000, 1440, 1544, 1696, 1952, 0, 900, 903, 909, 948, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1440x900@85Hz */
- { MODEPREFIX, 182750, 1440, 1488, 1520, 1600, 0, 900, 903, 909, 953, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1440x900@120Hz RB */
- { MODEPREFIX, 162000, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@60Hz */
- { MODEPREFIX, 175500, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@65Hz */
- { MODEPREFIX, 189000, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@70Hz */
- { MODEPREFIX, 202500, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@75Hz */
- { MODEPREFIX, 229500, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@85Hz */
- { MODEPREFIX, 268250, 1600, 1648, 1680, 1760, 0, 1200, 1203, 1207, 1271, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1600x1200@120Hz RB */
- { MODEPREFIX, 119000, 1680, 1728, 1760, 1840, 0, 1050, 1053, 1059, 1080, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1680x1050@60Hz RB */
- { MODEPREFIX, 146250, 1680, 1784, 1960, 2240, 0, 1050, 1053, 1059, 1089, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1680x1050@60Hz */
- { MODEPREFIX, 187000, 1680, 1800, 1976, 2272, 0, 1050, 1053, 1059, 1099, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1680x1050@75Hz */
- { MODEPREFIX, 214750, 1680, 1808, 1984, 2288, 0, 1050, 1053, 1059, 1105, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1680x1050@85Hz */
- { MODEPREFIX, 245500, 1680, 1728, 1760, 1840, 0, 1050, 1053, 1059, 1112, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1680x1050@120Hz RB */
- { MODEPREFIX, 204750, 1792, 1920, 2120, 2448, 0, 1344, 1345, 1348, 1394, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1792x1344@60Hz */
- { MODEPREFIX, 261000, 1792, 1888, 2104, 2456, 0, 1344, 1345, 1348, 1417, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1792x1344@75Hz */
- { MODEPREFIX, 333250, 1792, 1840, 1872, 1952, 0, 1344, 1347, 1351, 1423, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1792x1344@120Hz RB */
- { MODEPREFIX, 218250, 1856, 1952, 2176, 2528, 0, 1392, 1393, 1396, 1439, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1856x1392@60Hz */
- { MODEPREFIX, 288000, 1856, 1984, 2208, 2560, 0, 1392, 1393, 1396, 1500, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1856x1392@75Hz */
- { MODEPREFIX, 356500, 1856, 1904, 1936, 2016, 0, 1392, 1395, 1399, 1474, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1856x1392@120Hz RB */
- { MODEPREFIX, 154000, 1920, 1968, 2000, 2080, 0, 1200, 1203, 1209, 1235, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1920x1200@60Hz RB */
- { MODEPREFIX, 193250, 1920, 2056, 2256, 2592, 0, 1200, 1203, 1209, 1245, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1200@60Hz */
- { MODEPREFIX, 245250, 1920, 2056, 2264, 2608, 0, 1200, 1203, 1209, 1255, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1200@75Hz */
- { MODEPREFIX, 281250, 1920, 2064, 2272, 2624, 0, 1200, 1203, 1209, 1262, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1200@85Hz */
- { MODEPREFIX, 317000, 1920, 1968, 2000, 2080, 0, 1200, 1203, 1209, 1271, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1920x1200@120Hz RB */
- { MODEPREFIX, 234000, 1920, 2048, 2256, 2600, 0, 1440, 1441, 1444, 1500, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1440@60Hz */
- { MODEPREFIX, 297000, 1920, 2064, 2288, 2640, 0, 1440, 1441, 1444, 1500, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1440@75Hz */
- { MODEPREFIX, 380500, 1920, 1968, 2000, 2080, 0, 1440, 1443, 1447, 1525, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1920x1440@120Hz RB */
- { MODEPREFIX, 268500, 2560, 2608, 2640, 2720, 0, 1600, 1603, 1609, 1646, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 2560x1600@60Hz RB */
- { MODEPREFIX, 348500, 2560, 2752, 3032, 3504, 0, 1600, 1603, 1609, 1658, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 2560x1600@60Hz */
- { MODEPREFIX, 443250, 2560, 2768, 3048, 3536, 0, 1600, 1603, 1609, 1672, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 2560x1600@75Hz */
- { MODEPREFIX, 505250, 2560, 2768, 3048, 3536, 0, 1600, 1603, 1609, 1682, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 2560x1600@85Hz */
- { MODEPREFIX, 552750, 2560, 2608, 2640, 2720, 0, 1600, 1603, 1609, 1694, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 2560x1600@120Hz RB */
-};
-
-#define LEVEL_DMT 0
-#define LEVEL_GTF 1
-#define LEVEL_CVT 2
-
-static int
-MonitorStandardTimingLevel(xf86MonPtr DDC)
-{
- if (DDC->ver.revision >= 2) {
- if (DDC->ver.revision >= 4 && CVT_SUPPORTED(DDC->features.msc)) {
- return LEVEL_CVT;
- }
- return LEVEL_GTF;
- }
- return LEVEL_DMT;
-}
-
-static int
-ModeRefresh(const DisplayModeRec *mode)
-{
- return (int)(xf86ModeVRefresh(mode) + 0.5);
-}
-
-/*
- * If rb is not set, then we'll not consider reduced-blanking modes as
- * part of the DMT pool. For the 'standard' EDID mode descriptor there's
- * no way to specify whether the mode should be RB or not.
- */
-DisplayModePtr
-FindDMTMode(int hsize, int vsize, int refresh, Bool rb)
-{
- int i;
- const DisplayModeRec *ret;
-
- for (i = 0; i < sizeof(DMTModes) / sizeof(DisplayModeRec); i++) {
- ret = &DMTModes[i];
-
- if (!rb && xf86ModeIsReduced(ret))
- continue;
-
- if (ret->HDisplay == hsize &&
- ret->VDisplay == vsize &&
- refresh == ModeRefresh(ret))
- return xf86DuplicateMode(ret);
- }
-
- return NULL;
-}
-
-/*
- * Appendix B of the EDID 1.4 spec defines the right thing to do here.
- * If the timing given here matches a mode defined in the VESA DMT standard,
- * we _must_ use that. If the device supports CVT modes, then we should
- * generate a CVT timing. If both of the above fail, use GTF.
- *
- * There are some wrinkles here. EDID 1.1 and 1.0 sinks can't really
- * "support" GTF, since it wasn't a standard yet; so if they ask for a
- * timing in this section that isn't defined in DMT, returning a GTF mode
- * may not actually be valid. EDID 1.3 sinks often report support for
- * some CVT modes, but they are not required to support CVT timings for
- * modes in the standard timing descriptor, so we should _not_ treat them
- * as CVT-compliant (unless specified in an extension block I suppose).
- *
- * EDID 1.4 requires that all sink devices support both GTF and CVT timings
- * for modes in this section, but does say that CVT is preferred.
- */
-static DisplayModePtr
-DDCModesFromStandardTiming(struct std_timings *timing, ddc_quirk_t quirks,
- int timing_level, Bool rb)
-{
- DisplayModePtr Modes = NULL, Mode = NULL;
- int i, hsize, vsize, refresh;
-
- for (i = 0; i < STD_TIMINGS; i++) {
- hsize = timing[i].hsize;
- vsize = timing[i].vsize;
- refresh = timing[i].refresh;
-
- /* HDTV hack, because you can't say 1366 */
- if (refresh == 60 &&
- ((hsize == 1360 && vsize == 765) ||
- (hsize == 1368 && vsize == 769))) {
- Mode = xf86CVTMode(1366, 768, 60, FALSE, FALSE);
- Mode->HDisplay = 1366;
- Mode->HSyncStart--;
- Mode->HSyncEnd--;
- } else if (hsize && vsize && refresh) {
- Mode = FindDMTMode(hsize, vsize, refresh, rb);
-
- if (!Mode) {
- if (timing_level == LEVEL_CVT)
- /* pass rb here too? */
- Mode = xf86CVTMode(hsize, vsize, refresh, FALSE, FALSE);
- else if (timing_level == LEVEL_GTF)
- Mode = xf86GTFMode(hsize, vsize, refresh, FALSE, FALSE);
- }
-
- }
-
- if (Mode) {
- Mode->type = M_T_DRIVER;
- Modes = xf86ModesAdd(Modes, Mode);
- }
- Mode = NULL;
- }
-
- return Modes;
-}
-
-static void
-DDCModeDoInterlaceQuirks(DisplayModePtr mode)
-{
- /*
- * EDID is delightfully ambiguous about how interlaced modes are to be
- * encoded. X's internal representation is of frame height, but some
- * HDTV detailed timings are encoded as field height.
- *
- * The format list here is from CEA, in frame size. Technically we
- * should be checking refresh rate too. Whatever.
- */
- static const struct {
- int w, h;
- } cea_interlaced[] = {
- { 1920, 1080 },
- { 720, 480 },
- { 1440, 480 },
- { 2880, 480 },
- { 720, 576 },
- { 1440, 576 },
- { 2880, 576 },
- };
- static const int n_modes = sizeof(cea_interlaced)/sizeof(cea_interlaced[0]);
- int i;
-
- for (i = 0; i < n_modes; i++) {
- if ((mode->HDisplay == cea_interlaced[i].w) &&
- (mode->VDisplay == cea_interlaced[i].h / 2)) {
- mode->VDisplay *= 2;
- mode->VSyncStart *= 2;
- mode->VSyncEnd *= 2;
- mode->VTotal *= 2;
- mode->VTotal |= 1;
- }
- }
-
- mode->Flags |= V_INTERLACE;
-}
-
-/*
- *
- */
-static DisplayModePtr
-DDCModeFromDetailedTiming(int scrnIndex, struct detailed_timings *timing,
- Bool preferred, ddc_quirk_t quirks)
-{
- DisplayModePtr Mode;
-
- /*
- * Refuse to create modes that are insufficiently large. 64 is a random
- * number, maybe the spec says something about what the minimum is. In
- * particular I see this frequently with _old_ EDID, 1.0 or so, so maybe
- * our parser is just being too aggresive there.
- */
- if (timing->h_active < 64 || timing->v_active < 64) {
- xf86DrvMsg(scrnIndex, X_INFO,
- "%s: Ignoring tiny %dx%d mode\n", __func__,
- timing->h_active, timing->v_active);
- return NULL;
- }
-
- /* We don't do stereo */
- if (timing->stereo) {
- xf86DrvMsg(scrnIndex, X_INFO,
- "%s: Ignoring: We don't handle stereo.\n", __func__);
- return NULL;
- }
-
- /* We only do seperate sync currently */
- if (timing->sync != 0x03) {
- xf86DrvMsg(scrnIndex, X_INFO,
- "%s: %dx%d Warning: We only handle separate"
- " sync.\n", __func__, timing->h_active, timing->v_active);
- }
-
- Mode = xnfcalloc(1, sizeof(DisplayModeRec));
-
- Mode->type = M_T_DRIVER;
- if (preferred)
- Mode->type |= M_T_PREFERRED;
-
- if( ( quirks & DDC_QUIRK_135_CLOCK_TOO_HIGH ) &&
- timing->clock == 135000000 )
- Mode->Clock = 108880;
- else
- Mode->Clock = timing->clock / 1000.0;
-
- Mode->HDisplay = timing->h_active;
- Mode->HSyncStart = timing->h_active + timing->h_sync_off;
- Mode->HSyncEnd = Mode->HSyncStart + timing->h_sync_width;
- Mode->HTotal = timing->h_active + timing->h_blanking;
-
- Mode->VDisplay = timing->v_active;
- Mode->VSyncStart = timing->v_active + timing->v_sync_off;
- Mode->VSyncEnd = Mode->VSyncStart + timing->v_sync_width;
- Mode->VTotal = timing->v_active + timing->v_blanking;
-
- /* perform basic check on the detail timing */
- if (Mode->HSyncEnd > Mode->HTotal || Mode->VSyncEnd > Mode->VTotal) {
- free(Mode);
- return NULL;
- }
-
- /* We ignore h/v_size and h/v_border for now. */
-
- if (timing->interlaced)
- DDCModeDoInterlaceQuirks(Mode);
-
- if (quirks & DDC_QUIRK_DETAILED_SYNC_PP)
- Mode->Flags |= V_PVSYNC | V_PHSYNC;
- else {
- if (timing->misc & 0x02)
- Mode->Flags |= V_PVSYNC;
- else
- Mode->Flags |= V_NVSYNC;
-
- if (timing->misc & 0x01)
- Mode->Flags |= V_PHSYNC;
- else
- Mode->Flags |= V_NHSYNC;
- }
-
- xf86SetModeDefaultName(Mode);
-
- return Mode;
-}
-
-static DisplayModePtr
-DDCModesFromCVT(int scrnIndex, struct cvt_timings *t)
-{
- DisplayModePtr modes = NULL;
- int i;
-
- for (i = 0; i < 4; i++) {
- if (t[i].height) {
- if (t[i].rates & 0x10)
- modes = xf86ModesAdd(modes,
- xf86CVTMode(t[i].width, t[i].height, 50, 0, 0));
- if (t[i].rates & 0x08)
- modes = xf86ModesAdd(modes,
- xf86CVTMode(t[i].width, t[i].height, 60, 0, 0));
- if (t[i].rates & 0x04)
- modes = xf86ModesAdd(modes,
- xf86CVTMode(t[i].width, t[i].height, 75, 0, 0));
- if (t[i].rates & 0x02)
- modes = xf86ModesAdd(modes,
- xf86CVTMode(t[i].width, t[i].height, 85, 0, 0));
- if (t[i].rates & 0x01)
- modes = xf86ModesAdd(modes,
- xf86CVTMode(t[i].width, t[i].height, 60, 1, 0));
- } else break;
- }
-
- return modes;
-}
-
-static const struct {
- short w;
- short h;
- short r;
- short rb;
-} EstIIIModes[] = {
- /* byte 6 */
- { 640, 350, 85, 0 },
- { 640, 400, 85, 0 },
- { 720, 400, 85, 0 },
- { 640, 480, 85, 0 },
- { 848, 480, 60, 0 },
- { 800, 600, 85, 0 },
- { 1024, 768, 85, 0 },
- { 1152, 864, 75, 0 },
- /* byte 7 */
- { 1280, 768, 60, 1 },
- { 1280, 768, 60, 0 },
- { 1280, 768, 75, 0 },
- { 1280, 768, 85, 0 },
- { 1280, 960, 60, 0 },
- { 1280, 960, 85, 0 },
- { 1280, 1024, 60, 0 },
- { 1280, 1024, 85, 0 },
- /* byte 8 */
- { 1360, 768, 60, 0 },
- { 1440, 900, 60, 1 },
- { 1440, 900, 60, 0 },
- { 1440, 900, 75, 0 },
- { 1440, 900, 85, 0 },
- { 1400, 1050, 60, 1 },
- { 1400, 1050, 60, 0 },
- { 1400, 1050, 75, 0 },
- /* byte 9 */
- { 1400, 1050, 85, 0 },
- { 1680, 1050, 60, 1 },
- { 1680, 1050, 60, 0 },
- { 1680, 1050, 75, 0 },
- { 1680, 1050, 85, 0 },
- { 1600, 1200, 60, 0 },
- { 1600, 1200, 65, 0 },
- { 1600, 1200, 70, 0 },
- /* byte 10 */
- { 1600, 1200, 75, 0 },
- { 1600, 1200, 85, 0 },
- { 1792, 1344, 60, 0 },
- { 1792, 1344, 85, 0 },
- { 1856, 1392, 60, 0 },
- { 1856, 1392, 75, 0 },
- { 1920, 1200, 60, 1 },
- { 1920, 1200, 60, 0 },
- /* byte 11 */
- { 1920, 1200, 75, 0 },
- { 1920, 1200, 85, 0 },
- { 1920, 1440, 60, 0 },
- { 1920, 1440, 75, 0 },
-};
-
-static DisplayModePtr
-DDCModesFromEstIII(unsigned char *est)
-{
- DisplayModePtr modes = NULL;
- int i, j, m;
-
- for (i = 0; i < 6; i++) {
- for (j = 7; j > 0; j--) {
- if (est[i] & (1 << j)) {
- m = (i * 8) + (7 - j);
- modes = xf86ModesAdd(modes,
- FindDMTMode(EstIIIModes[m].w,
- EstIIIModes[m].h,
- EstIIIModes[m].r,
- EstIIIModes[m].rb));
- }
- }
- }
-
- return modes;
-}
-
-/*
- * This is only valid when the sink claims to be continuous-frequency
- * but does not supply a detailed range descriptor. Such sinks are
- * arguably broken. Currently the mode validation code isn't aware of
- * this; the non-RANDR code even punts the decision of optional sync
- * range checking to the driver. Loss.
- */
-static void
-DDCGuessRangesFromModes(int scrnIndex, MonPtr Monitor, DisplayModePtr Modes)
-{
- DisplayModePtr Mode = Modes;
-
- if (!Monitor || !Modes)
- return;
-
- /* set up the ranges for scanning through the modes */
- Monitor->nHsync = 1;
- Monitor->hsync[0].lo = 1024.0;
- Monitor->hsync[0].hi = 0.0;
-
- Monitor->nVrefresh = 1;
- Monitor->vrefresh[0].lo = 1024.0;
- Monitor->vrefresh[0].hi = 0.0;
-
- while (Mode) {
- if (!Mode->HSync)
- Mode->HSync = ((float) Mode->Clock ) / ((float) Mode->HTotal);
-
- if (!Mode->VRefresh)
- Mode->VRefresh = (1000.0 * ((float) Mode->Clock)) /
- ((float) (Mode->HTotal * Mode->VTotal));
-
- if (Mode->HSync < Monitor->hsync[0].lo)
- Monitor->hsync[0].lo = Mode->HSync;
-
- if (Mode->HSync > Monitor->hsync[0].hi)
- Monitor->hsync[0].hi = Mode->HSync;
-
- if (Mode->VRefresh < Monitor->vrefresh[0].lo)
- Monitor->vrefresh[0].lo = Mode->VRefresh;
-
- if (Mode->VRefresh > Monitor->vrefresh[0].hi)
- Monitor->vrefresh[0].hi = Mode->VRefresh;
-
- Mode = Mode->next;
- }
-}
-
-ddc_quirk_t
-xf86DDCDetectQuirks(int scrnIndex, xf86MonPtr DDC, Bool verbose)
-{
- ddc_quirk_t quirks;
- int i;
-
- quirks = DDC_QUIRK_NONE;
- for (i = 0; ddc_quirks[i].detect; i++) {
- if (ddc_quirks[i].detect (scrnIndex, DDC)) {
- if (verbose) {
- xf86DrvMsg (scrnIndex, X_INFO, " EDID quirk: %s\n",
- ddc_quirks[i].description);
- }
- quirks |= ddc_quirks[i].quirk;
- }
- }
-
- return quirks;
-}
-
-void xf86DetTimingApplyQuirks(struct detailed_monitor_section *det_mon,
- ddc_quirk_t quirks,
- int hsize, int vsize)
-{
- if (det_mon->type != DT)
- return;
-
- if (quirks & DDC_QUIRK_DETAILED_H_IN_CM)
- det_mon->section.d_timings.h_size *= 10;
-
- if (quirks & DDC_QUIRK_DETAILED_V_IN_CM)
- det_mon->section.d_timings.v_size *= 10;
-
- if (quirks & DDC_QUIRK_DETAILED_USE_MAXIMUM_SIZE) {
- det_mon->section.d_timings.h_size = 10 * hsize;
- det_mon->section.d_timings.v_size = 10 * vsize;
- }
-}
-
-/**
- * Applies monitor-specific quirks to the decoded EDID information.
- *
- * Note that some quirks applying to the mode list are still implemented in
- * xf86DDCGetModes.
- */
-void
-xf86DDCApplyQuirks(int scrnIndex, xf86MonPtr DDC)
-{
- ddc_quirk_t quirks = xf86DDCDetectQuirks (scrnIndex, DDC, FALSE);
- int i;
-
- for (i = 0; i < DET_TIMINGS; i++) {
- xf86DetTimingApplyQuirks(DDC->det_mon + i, quirks,
- DDC->features.hsize,
- DDC->features.vsize);
- }
-}
-
-/**
- * Walks the modes list, finding the mode with the largest area which is
- * closest to the target refresh rate, and marks it as the only preferred mode.
-*/
-static void
-xf86DDCSetPreferredRefresh(int scrnIndex, DisplayModePtr modes,
- float target_refresh)
-{
- DisplayModePtr mode, best = modes;
-
- for (mode = modes; mode; mode = mode->next)
- {
- mode->type &= ~M_T_PREFERRED;
-
- if (mode == best) continue;
-
- if (mode->HDisplay * mode->VDisplay >
- best->HDisplay * best->VDisplay)
- {
- best = mode;
- continue;
- }
- if (mode->HDisplay * mode->VDisplay ==
- best->HDisplay * best->VDisplay)
- {
- double mode_refresh = xf86ModeVRefresh (mode);
- double best_refresh = xf86ModeVRefresh (best);
- double mode_dist = fabs(mode_refresh - target_refresh);
- double best_dist = fabs(best_refresh - target_refresh);
-
- if (mode_dist < best_dist)
- {
- best = mode;
- continue;
- }
- }
- }
- if (best)
- best->type |= M_T_PREFERRED;
-}
-
-#define CEA_VIDEO_MODES_NUM 64
-static const DisplayModeRec CEAVideoModes[CEA_VIDEO_MODES_NUM] = {
- { MODEPREFIX, 25175, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 1:640x480@60Hz */
- { MODEPREFIX, 27000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 2:720x480@60Hz */
- { MODEPREFIX, 27000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 3:720x480@60Hz */
- { MODEPREFIX, 74250, 1280, 1390, 1430, 1650, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 4: 1280x720@60Hz */
- { MODEPREFIX, 74250, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 5:1920x1080i@60Hz */
- { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 6:1440x480i@60Hz */
- { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 7:1440x480i@60Hz */
- { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 8:1440x240@60Hz */
- { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 9:1440x240@60Hz */
- { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 10:2880x480i@60Hz */
- { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 11:2880x480i@60Hz */
- { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 12:2880x240@60Hz */
- { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 13:2880x240@60Hz */
- { MODEPREFIX, 54000, 1440, 1472, 1596, 1716, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 14:1440x480@60Hz */
- { MODEPREFIX, 54000, 1440, 1472, 1596, 1716, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 15:1440x480@60Hz */
- { MODEPREFIX, 148500, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 16:1920x1080@60Hz */
- { MODEPREFIX, 27000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 17:720x576@50Hz */
- { MODEPREFIX, 27000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 18:720x576@50Hz */
- { MODEPREFIX, 74250, 1280, 1720, 1760, 1980, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 19: 1280x720@50Hz */
- { MODEPREFIX, 74250, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 20:1920x1080i@50Hz */
- { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 21:1440x576i@50Hz */
- { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 22:1440x576i@50Hz */
- { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 23:1440x288@50Hz */
- { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 24:1440x288@50Hz */
- { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 25:2880x576i@50Hz */
- { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 26:2880x576i@50Hz */
- { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 27:2880x288@50Hz */
- { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 28:2880x288@50Hz */
- { MODEPREFIX, 54000, 1440, 1464, 1592, 1728, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 29:1440x576@50Hz */
- { MODEPREFIX, 54000, 1440, 1464, 1592, 1728, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 30:1440x576@50Hz */
- { MODEPREFIX, 148500, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 31:1920x1080@50Hz */
- { MODEPREFIX, 74250, 1920, 2558, 2602, 2750, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 32:1920x1080@24Hz */
- { MODEPREFIX, 74250, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 33:1920x1080@25Hz */
- { MODEPREFIX, 74250, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 34:1920x1080@30Hz */
- { MODEPREFIX, 108000, 2880, 2944, 3192, 3432, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 35:2880x480@60Hz */
- { MODEPREFIX, 108000, 2880, 2944, 3192, 3432, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 36:2880x480@60Hz */
- { MODEPREFIX, 108000, 2880, 2928, 3184, 3456, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 37:2880x576@50Hz */
- { MODEPREFIX, 108000, 2880, 2928, 3184, 3456, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 38:2880x576@50Hz */
- { MODEPREFIX, 72000, 1920, 1952, 2120, 2304, 0, 1080, 1126, 1136, 1250, 0, V_PHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 39:1920x1080i@50Hz */
- { MODEPREFIX, 148500, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 40:1920x1080i@100Hz */
- { MODEPREFIX, 148500, 1280, 1720, 1760, 1980, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 41:1280x720@100Hz */
- { MODEPREFIX, 54000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 42:720x576@100Hz */
- { MODEPREFIX, 54000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 43:720x576@100Hz */
- { MODEPREFIX, 54000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 44:1440x576i@100Hz */
- { MODEPREFIX, 54000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 45:1440x576i@100Hz */
- { MODEPREFIX, 148500, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 46:1920x1080i@120Hz */
- { MODEPREFIX, 148500, 1280, 1390, 1430, 1650, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 47:1280x720@120Hz */
- { MODEPREFIX, 54000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 48:720x480@120Hz */
- { MODEPREFIX, 54000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 49:720x480@120Hz */
- { MODEPREFIX, 54000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 50:1440x480i@120Hz */
- { MODEPREFIX, 54000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 51:1440x480i@120Hz */
- { MODEPREFIX, 108000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 52:720x576@200Hz */
- { MODEPREFIX, 108000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 53:720x576@200Hz */
- { MODEPREFIX, 108000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 54:1440x576i@200Hz */
- { MODEPREFIX, 108000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 55:1440x576i@200Hz */
- { MODEPREFIX, 108000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 56:720x480@240Hz */
- { MODEPREFIX, 108000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 57:720x480@240Hz */
- { MODEPREFIX, 108000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 58:1440x480i@240 */
- { MODEPREFIX, 108000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 59:1440x480i@240 */
- { MODEPREFIX, 59400, 1280, 3040, 3080, 3300, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 60: 1280x720@24Hz */
- { MODEPREFIX, 74250, 1280, 3700, 3740, 3960, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 61: 1280x720@25Hz */
- { MODEPREFIX, 74250, 1280, 3040, 3080, 3300, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 62: 1280x720@30Hz */
- { MODEPREFIX, 297000, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 63: 1920x1080@120Hz */
- { MODEPREFIX, 297000, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 64:1920x1080@100Hz */
-};
-
-/* chose mode line by cea short video descriptor*/
-static void handle_cea_svd(struct cea_video_block *video, void *data)
-{
- DisplayModePtr Mode;
- DisplayModePtr *Modes = (DisplayModePtr *) data;
- int vid;
-
- vid = video ->video_code & 0x7f;
- if (vid < CEA_VIDEO_MODES_NUM) {
- Mode = xf86DuplicateMode(CEAVideoModes + vid);
- *Modes = xf86ModesAdd(*Modes, Mode);
- }
-}
-
-static DisplayModePtr
-DDCModesFromCEAExtension(int scrnIndex, xf86MonPtr MonPtr)
-{
- DisplayModePtr Modes = NULL;
-
- xf86ForEachVideoBlock(MonPtr,
- handle_cea_svd,
- &Modes);
-
- return Modes;
-}
-
-struct det_modes_parameter {
- xf86MonPtr DDC;
- ddc_quirk_t quirks;
- DisplayModePtr Modes;
- Bool rb;
- Bool preferred;
- int timing_level;
-};
-
-static void handle_detailed_modes(struct detailed_monitor_section *det_mon,
- void *data)
-{
- DisplayModePtr Mode;
- struct det_modes_parameter *p = (struct det_modes_parameter *)data;
-
- xf86DetTimingApplyQuirks(det_mon,p->quirks,
- p->DDC->features.hsize,
- p->DDC->features.vsize);
-
- switch (det_mon->type) {
- case DT:
- Mode = DDCModeFromDetailedTiming(p->DDC->scrnIndex,
- &det_mon->section.d_timings,
- p->preferred,
- p->quirks);
- p->preferred = FALSE;
- p->Modes = xf86ModesAdd(p->Modes, Mode);
- break;
- case DS_STD_TIMINGS:
- Mode = DDCModesFromStandardTiming(det_mon->section.std_t,
- p->quirks, p->timing_level,p->rb);
- p->Modes = xf86ModesAdd(p->Modes, Mode);
- break;
- case DS_CVT:
- Mode = DDCModesFromCVT(p->DDC->scrnIndex, det_mon->section.cvt);
- p->Modes = xf86ModesAdd(p->Modes, Mode);
- break;
- case DS_EST_III:
- Mode = DDCModesFromEstIII(det_mon->section.est_iii);
- p->Modes = xf86ModesAdd(p->Modes, Mode);
- break;
- default:
- break;
- }
-}
-
-DisplayModePtr
-xf86DDCGetModes(int scrnIndex, xf86MonPtr DDC)
-{
- DisplayModePtr Modes = NULL, Mode;
- ddc_quirk_t quirks;
- Bool preferred, rb;
- int timing_level;
- struct det_modes_parameter p;
-
- xf86DrvMsg (scrnIndex, X_INFO, "EDID vendor \"%s\", prod id %d\n",
- DDC->vendor.name, DDC->vendor.prod_id);
-
- quirks = xf86DDCDetectQuirks(scrnIndex, DDC, TRUE);
-
- preferred = PREFERRED_TIMING_MODE(DDC->features.msc);
- if (DDC->ver.revision >= 4)
- preferred = TRUE;
- if (quirks & DDC_QUIRK_FIRST_DETAILED_PREFERRED)
- preferred = TRUE;
- if (quirks & (DDC_QUIRK_PREFER_LARGE_60 | DDC_QUIRK_PREFER_LARGE_75))
- preferred = FALSE;
-
- rb = xf86MonitorSupportsReducedBlanking(DDC);
-
- timing_level = MonitorStandardTimingLevel(DDC);
-
- p.quirks = quirks;
- p.DDC = DDC;
- p.Modes = Modes;
- p.rb = rb;
- p.preferred = preferred;
- p.timing_level = timing_level;
- xf86ForEachDetailedBlock(DDC, handle_detailed_modes, &p);
- Modes = p.Modes;
-
- /* Add established timings */
- Mode = DDCModesFromEstablished(scrnIndex, &DDC->timings1, quirks);
- Modes = xf86ModesAdd(Modes, Mode);
-
- /* Add standard timings */
- Mode = DDCModesFromStandardTiming(DDC->timings2, quirks, timing_level, rb);
- Modes = xf86ModesAdd(Modes, Mode);
-
- /* Add cea-extension mode timings */
- Mode = DDCModesFromCEAExtension(scrnIndex,DDC);
- Modes = xf86ModesAdd(Modes, Mode);
-
- if (quirks & DDC_QUIRK_PREFER_LARGE_60)
- xf86DDCSetPreferredRefresh(scrnIndex, Modes, 60);
-
- if (quirks & DDC_QUIRK_PREFER_LARGE_75)
- xf86DDCSetPreferredRefresh(scrnIndex, Modes, 75);
-
- Modes = xf86PruneDuplicateModes(Modes);
-
- return Modes;
-}
-
-struct det_mon_parameter {
- MonPtr Monitor;
- ddc_quirk_t quirks;
- Bool have_hsync;
- Bool have_vrefresh;
- Bool have_maxpixclock;
-};
-
-static void handle_detailed_monset(struct detailed_monitor_section *det_mon,
- void *data)
-{
- int clock;
- struct det_mon_parameter *p = (struct det_mon_parameter *)data;
- int scrnIndex = ((xf86MonPtr)(p->Monitor->DDC))->scrnIndex;
-
- switch (det_mon->type) {
- case DS_RANGES:
- if (!p->have_hsync) {
- if (!p->Monitor->nHsync)
- xf86DrvMsg(scrnIndex, X_INFO,
- "Using EDID range info for horizontal sync\n");
- p->Monitor->hsync[p->Monitor->nHsync].lo =
- det_mon->section.ranges.min_h;
- p->Monitor->hsync[p->Monitor->nHsync].hi =
- det_mon->section.ranges.max_h;
- p->Monitor->nHsync++;
- } else {
- xf86DrvMsg(scrnIndex, X_INFO,
- "Using hsync ranges from config file\n");
- }
-
- if (!p->have_vrefresh) {
- if (!p->Monitor->nVrefresh)
- xf86DrvMsg(scrnIndex, X_INFO,
- "Using EDID range info for vertical refresh\n");
- p->Monitor->vrefresh[p->Monitor->nVrefresh].lo =
- det_mon->section.ranges.min_v;
- p->Monitor->vrefresh[p->Monitor->nVrefresh].hi =
- det_mon->section.ranges.max_v;
- p->Monitor->nVrefresh++;
- } else {
- xf86DrvMsg(scrnIndex, X_INFO,
- "Using vrefresh ranges from config file\n");
- }
-
- clock = det_mon->section.ranges.max_clock * 1000;
- if (p->quirks & DDC_QUIRK_DVI_SINGLE_LINK)
- clock = min(clock, 165000);
- if (!p->have_maxpixclock && clock > p->Monitor->maxPixClock)
- p->Monitor->maxPixClock = clock;
-
- break;
- default:
- break;
- }
-}
-
-/*
- * Fill out MonPtr with xf86MonPtr information.
- */
-void
-xf86EdidMonitorSet(int scrnIndex, MonPtr Monitor, xf86MonPtr DDC)
-{
- DisplayModePtr Modes = NULL, Mode;
- struct det_mon_parameter p;
-
- if (!Monitor || !DDC)
- return;
-
- Monitor->DDC = DDC;
-
- if (Monitor->widthmm <= 0 || Monitor->heightmm <= 0) {
- Monitor->widthmm = 10 * DDC->features.hsize;
- Monitor->heightmm = 10 * DDC->features.vsize;
- }
-
- Monitor->reducedblanking = xf86MonitorSupportsReducedBlanking(DDC);
-
- Modes = xf86DDCGetModes(scrnIndex, DDC);
-
- /* Go through the detailed monitor sections */
- p.Monitor = Monitor;
- p.quirks = xf86DDCDetectQuirks(scrnIndex, Monitor->DDC, FALSE);
- p.have_hsync = (Monitor->nHsync != 0);
- p.have_vrefresh = (Monitor->nVrefresh != 0);
- p.have_maxpixclock = (Monitor->maxPixClock != 0);
- xf86ForEachDetailedBlock(DDC, handle_detailed_monset, &p);
-
- if (Modes) {
- /* Print Modes */
- xf86DrvMsg(scrnIndex, X_INFO, "Printing DDC gathered Modelines:\n");
-
- Mode = Modes;
- while (Mode) {
- xf86PrintModeline(scrnIndex, Mode);
- Mode = Mode->next;
- }
-
- /* Do we still need ranges to be filled in? */
- if (!Monitor->nHsync || !Monitor->nVrefresh)
- DDCGuessRangesFromModes(scrnIndex, Monitor, Modes);
-
- /* look for last Mode */
- Mode = Modes;
-
- while (Mode->next)
- Mode = Mode->next;
-
- /* add to MonPtr */
- if (Monitor->Modes) {
- Monitor->Last->next = Modes;
- Modes->prev = Monitor->Last;
- Monitor->Last = Mode;
- } else {
- Monitor->Modes = Modes;
- Monitor->Last = Mode;
- }
- }
-}
+/* + * Copyright 2006 Luc Verhaegen. + * Copyright 2008 Red Hat, Inc. + * + * Permission is hereby granted, free of charge, to any person obtaining a + * copy of this software and associated documentation files (the "Software"), + * to deal in the Software without restriction, including without limitation + * the rights to use, copy, modify, merge, publish, distribute, sub license, + * and/or sell copies of the Software, and to permit persons to whom the + * Software is furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice (including the + * next paragraph) shall be included in all copies or substantial portions + * of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL + * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING + * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER + * DEALINGS IN THE SOFTWARE. + */ + +/** + * @file This file covers code to convert a xf86MonPtr containing EDID-probed + * information into a list of modes, including applying monitor-specific + * quirks to fix broken EDID data. + */ +#ifdef HAVE_XORG_CONFIG_H +#include <xorg-config.h> +#else +#ifdef HAVE_CONFIG_H +#include <config.h> +#endif +#endif + +#define _PARSE_EDID_ +#include "xf86.h" +#include "xf86DDC.h" +#include <X11/Xatom.h> +#include "property.h" +#include "propertyst.h" +#include "xf86Crtc.h" +#include <string.h> +#include <math.h> + +static void handle_detailed_rblank(struct detailed_monitor_section *det_mon, + void *data) +{ + if (det_mon->type == DS_RANGES) + if (det_mon->section.ranges.supported_blanking & CVT_REDUCED) + *(Bool*)data = TRUE; +} + +static Bool +xf86MonitorSupportsReducedBlanking(xf86MonPtr DDC) +{ + /* EDID 1.4 explicitly defines RB support */ + if (DDC->ver.revision >= 4) { + Bool ret = FALSE; + + xf86ForEachDetailedBlock(DDC, handle_detailed_rblank, &ret); + return ret; + } + + /* For anything older, assume digital means RB support. Boo. */ + if (DDC->features.input_type) + return TRUE; + + return FALSE; +} + +static Bool quirk_prefer_large_60 (int scrnIndex, xf86MonPtr DDC) +{ + /* Belinea 10 15 55 */ + if (memcmp (DDC->vendor.name, "MAX", 4) == 0 && + ((DDC->vendor.prod_id == 1516) || + (DDC->vendor.prod_id == 0x77e))) + return TRUE; + + /* Acer AL1706 */ + if (memcmp (DDC->vendor.name, "ACR", 4) == 0 && + DDC->vendor.prod_id == 44358) + return TRUE; + + /* Bug #10814: Samsung SyncMaster 225BW */ + if (memcmp (DDC->vendor.name, "SAM", 4) == 0 && + DDC->vendor.prod_id == 596) + return TRUE; + + /* Bug #10545: Samsung SyncMaster 226BW */ + if (memcmp (DDC->vendor.name, "SAM", 4) == 0 && + DDC->vendor.prod_id == 638) + return TRUE; + + /* Acer F51 */ + if (memcmp (DDC->vendor.name, "API", 4) == 0 && + DDC->vendor.prod_id == 0x7602) + return TRUE; + + + return FALSE; +} + +static Bool quirk_prefer_large_75 (int scrnIndex, xf86MonPtr DDC) +{ + /* Bug #11603: Funai Electronics PM36B */ + if (memcmp (DDC->vendor.name, "FCM", 4) == 0 && + DDC->vendor.prod_id == 13600) + return TRUE; + + return FALSE; +} + +static Bool quirk_detailed_h_in_cm (int scrnIndex, xf86MonPtr DDC) +{ + /* Bug #11603: Funai Electronics PM36B */ + if (memcmp (DDC->vendor.name, "FCM", 4) == 0 && + DDC->vendor.prod_id == 13600) + return TRUE; + + return FALSE; +} + +static Bool quirk_detailed_v_in_cm (int scrnIndex, xf86MonPtr DDC) +{ + /* Bug #11603: Funai Electronics PM36B */ + if (memcmp (DDC->vendor.name, "FCM", 4) == 0 && + DDC->vendor.prod_id == 13600) + return TRUE; + + /* Bug #21000: LGPhilipsLCD LP154W01-TLAJ */ + if (memcmp (DDC->vendor.name, "LPL", 4) == 0 && + DDC->vendor.prod_id == 47360) + return TRUE; + + /* Bug #10304: LGPhilipsLCD LP154W01-A5 */ + if (memcmp(DDC->vendor.name, "LPL", 4) == 0 && + DDC->vendor.prod_id == 0) + return TRUE; + + /* Bug #24482: LGPhilipsLCD LP154W01-TLA1 */ + if (memcmp(DDC->vendor.name, "LPL", 4) == 0 && + DDC->vendor.prod_id == 0x2a00) + return TRUE; + + /* Bug #28414: HP Compaq NC8430 LP154W01-TLA8 */ + if (memcmp (DDC->vendor.name, "LPL", 4) == 0 && + DDC->vendor.prod_id == 5750) + return TRUE; + + /* Bug #21750: Samsung Syncmaster 2333HD */ + if (memcmp (DDC->vendor.name, "SAM", 4) == 0 && + DDC->vendor.prod_id == 1157) + return TRUE; + + return FALSE; +} + +static Bool quirk_detailed_use_maximum_size (int scrnIndex, xf86MonPtr DDC) +{ + /* Bug #21324: Iiyama Vision Master 450 */ + if (memcmp (DDC->vendor.name, "IVM", 4) == 0 && + DDC->vendor.prod_id == 6400) + return TRUE; + + /* Bug #41141: Acer Aspire One */ + if (memcmp (DDC->vendor.name, "LGD", 4) == 0 && + DDC->vendor.prod_id == 0x7f01) + return TRUE; + + return FALSE; +} + +static Bool quirk_135_clock_too_high (int scrnIndex, xf86MonPtr DDC) +{ + /* Envision Peripherals, Inc. EN-7100e. See bug #9550. */ + if (memcmp (DDC->vendor.name, "EPI", 4) == 0 && + DDC->vendor.prod_id == 59264) + return TRUE; + + return FALSE; +} + +static Bool quirk_first_detailed_preferred (int scrnIndex, xf86MonPtr DDC) +{ + /* Philips 107p5 CRT. Reported on xorg@ with pastebin. */ + if (memcmp (DDC->vendor.name, "PHL", 4) == 0 && + DDC->vendor.prod_id == 57364) + return TRUE; + + /* Proview AY765C 17" LCD. See bug #15160*/ + if (memcmp (DDC->vendor.name, "PTS", 4) == 0 && + DDC->vendor.prod_id == 765) + return TRUE; + + /* ACR of some sort RH #284231 */ + if (memcmp (DDC->vendor.name, "ACR", 4) == 0 && + DDC->vendor.prod_id == 2423) + return TRUE; + + /* Peacock Ergovision 19. See rh#492359 */ + if (memcmp (DDC->vendor.name, "PEA", 4) == 0 && + DDC->vendor.prod_id == 9003) + return TRUE; + + return FALSE; +} + +static Bool quirk_detailed_sync_pp(int scrnIndex, xf86MonPtr DDC) +{ + /* Bug #12439: Samsung SyncMaster 205BW */ + if (memcmp (DDC->vendor.name, "SAM", 4) == 0 && + DDC->vendor.prod_id == 541) + return TRUE; + return FALSE; +} + +/* This should probably be made more generic */ +static Bool quirk_dvi_single_link(int scrnIndex, xf86MonPtr DDC) +{ + /* Red Hat bug #453106: Apple 23" Cinema Display */ + if (memcmp (DDC->vendor.name, "APL", 4) == 0 && + DDC->vendor.prod_id == 0x921c) + return TRUE; + return FALSE; +} + +typedef struct { + Bool (*detect) (int scrnIndex, xf86MonPtr DDC); + ddc_quirk_t quirk; + char *description; +} ddc_quirk_map_t; + +static const ddc_quirk_map_t ddc_quirks[] = { + { + quirk_prefer_large_60, DDC_QUIRK_PREFER_LARGE_60, + "Detailed timing is not preferred, use largest mode at 60Hz" + }, + { + quirk_135_clock_too_high, DDC_QUIRK_135_CLOCK_TOO_HIGH, + "Recommended 135MHz pixel clock is too high" + }, + { + quirk_prefer_large_75, DDC_QUIRK_PREFER_LARGE_75, + "Detailed timing is not preferred, use largest mode at 75Hz" + }, + { + quirk_detailed_h_in_cm, DDC_QUIRK_DETAILED_H_IN_CM, + "Detailed timings give horizontal size in cm." + }, + { + quirk_detailed_v_in_cm, DDC_QUIRK_DETAILED_V_IN_CM, + "Detailed timings give vertical size in cm." + }, + { + quirk_detailed_use_maximum_size, DDC_QUIRK_DETAILED_USE_MAXIMUM_SIZE, + "Use maximum size instead of detailed timing sizes." + }, + { + quirk_first_detailed_preferred, DDC_QUIRK_FIRST_DETAILED_PREFERRED, + "First detailed timing was not marked as preferred." + }, + { + quirk_detailed_sync_pp, DDC_QUIRK_DETAILED_SYNC_PP, + "Use +hsync +vsync for detailed timing." + }, + { + quirk_dvi_single_link, DDC_QUIRK_DVI_SINGLE_LINK, + "Forcing maximum pixel clock to single DVI link." + }, + { + NULL, DDC_QUIRK_NONE, + "No known quirks" + }, +}; + +/* + * These more or less come from the DMT spec. The 720x400 modes are + * inferred from historical 80x25 practice. The 640x480@67 and 832x624@75 + * modes are old-school Mac modes. The EDID spec says the 1152x864@75 mode + * should be 1152x870, again for the Mac, but instead we use the x864 DMT + * mode. + * + * The DMT modes have been fact-checked; the rest are mild guesses. + */ +#define MODEPREFIX NULL, NULL, NULL, 0, M_T_DRIVER +#define MODESUFFIX 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,FALSE,FALSE,0,NULL,0,0.0,0.0 + +static const DisplayModeRec DDCEstablishedModes[17] = { + { MODEPREFIX, 40000, 800, 840, 968, 1056, 0, 600, 601, 605, 628, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@60Hz */ + { MODEPREFIX, 36000, 800, 824, 896, 1024, 0, 600, 601, 603, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@56Hz */ + { MODEPREFIX, 31500, 640, 656, 720, 840, 0, 480, 481, 484, 500, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@75Hz */ + { MODEPREFIX, 31500, 640, 664, 704, 832, 0, 480, 489, 492, 520, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@72Hz */ + { MODEPREFIX, 30240, 640, 704, 768, 864, 0, 480, 483, 486, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@67Hz */ + { MODEPREFIX, 25175, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@60Hz */ + { MODEPREFIX, 35500, 720, 738, 846, 900, 0, 400, 421, 423, 449, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 720x400@88Hz */ + { MODEPREFIX, 28320, 720, 738, 846, 900, 0, 400, 412, 414, 449, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 720x400@70Hz */ + { MODEPREFIX, 135000, 1280, 1296, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@75Hz */ + { MODEPREFIX, 78750, 1024, 1040, 1136, 1312, 0, 768, 769, 772, 800, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1024x768@75Hz */ + { MODEPREFIX, 75000, 1024, 1048, 1184, 1328, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@70Hz */ + { MODEPREFIX, 65000, 1024, 1048, 1184, 1344, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@60Hz */ + { MODEPREFIX, 44900, 1024, 1032, 1208, 1264, 0, 768, 768, 772, 817, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* 1024x768@43Hz */ + { MODEPREFIX, 57284, 832, 864, 928, 1152, 0, 624, 625, 628, 667, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 832x624@75Hz */ + { MODEPREFIX, 49500, 800, 816, 896, 1056, 0, 600, 601, 604, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@75Hz */ + { MODEPREFIX, 50000, 800, 856, 976, 1040, 0, 600, 637, 643, 666, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@72Hz */ + { MODEPREFIX, 108000, 1152, 1216, 1344, 1600, 0, 864, 865, 868, 900, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1152x864@75Hz */ +}; + +static DisplayModePtr +DDCModesFromEstablished(int scrnIndex, struct established_timings *timing, + ddc_quirk_t quirks) +{ + DisplayModePtr Modes = NULL, Mode = NULL; + CARD32 bits = (timing->t1) | (timing->t2 << 8) | + ((timing->t_manu & 0x80) << 9); + int i; + + for (i = 0; i < 17; i++) { + if (bits & (0x01 << i)) { + Mode = xf86DuplicateMode(&DDCEstablishedModes[i]); + Modes = xf86ModesAdd(Modes, Mode); + } + } + + return Modes; +} + +/* Autogenerated from the DMT spec */ +const DisplayModeRec DMTModes[] = { + { MODEPREFIX, 31500, 640, 672, 736, 832, 0, 350, 382, 385, 445, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x350@85Hz */ + { MODEPREFIX, 31500, 640, 672, 736, 832, 0, 400, 401, 404, 445, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 640x400@85Hz */ + { MODEPREFIX, 35500, 720, 756, 828, 936, 0, 400, 401, 404, 446, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 720x400@85Hz */ + { MODEPREFIX, 25175, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@60Hz */ + { MODEPREFIX, 31500, 640, 664, 704, 832, 0, 480, 489, 492, 520, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@72Hz */ + { MODEPREFIX, 31500, 640, 656, 720, 840, 0, 480, 481, 484, 500, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@75Hz */ + { MODEPREFIX, 36000, 640, 696, 752, 832, 0, 480, 481, 484, 509, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 640x480@85Hz */ + { MODEPREFIX, 36000, 800, 824, 896, 1024, 0, 600, 601, 603, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@56Hz */ + { MODEPREFIX, 40000, 800, 840, 968, 1056, 0, 600, 601, 605, 628, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@60Hz */ + { MODEPREFIX, 50000, 800, 856, 976, 1040, 0, 600, 637, 643, 666, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@72Hz */ + { MODEPREFIX, 49500, 800, 816, 896, 1056, 0, 600, 601, 604, 625, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@75Hz */ + { MODEPREFIX, 56250, 800, 832, 896, 1048, 0, 600, 601, 604, 631, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 800x600@85Hz */ + { MODEPREFIX, 73250, 800, 848, 880, 960, 0, 600, 603, 607, 636, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 800x600@120Hz RB */ + { MODEPREFIX, 33750, 848, 864, 976, 1088, 0, 480, 486, 494, 517, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 848x480@60Hz */ + { MODEPREFIX, 44900, 1024, 1032, 1208, 1264, 0, 768, 768, 772, 817, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* 1024x768@43Hz (interlaced) */ + { MODEPREFIX, 65000, 1024, 1048, 1184, 1344, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@60Hz */ + { MODEPREFIX, 75000, 1024, 1048, 1184, 1328, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@70Hz */ + { MODEPREFIX, 78750, 1024, 1040, 1136, 1312, 0, 768, 769, 772, 800, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1024x768@75Hz */ + { MODEPREFIX, 94500, 1024, 1072, 1168, 1376, 0, 768, 769, 772, 808, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1024x768@85Hz */ + { MODEPREFIX, 115500, 1024, 1072, 1104, 1184, 0, 768, 771, 775, 813, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1024x768@120Hz RB */ + { MODEPREFIX, 108000, 1152, 1216, 1344, 1600, 0, 864, 865, 868, 900, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1152x864@75Hz */ + { MODEPREFIX, 68250, 1280, 1328, 1360, 1440, 0, 768, 771, 778, 790, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x768@60Hz RB */ + { MODEPREFIX, 79500, 1280, 1344, 1472, 1664, 0, 768, 771, 778, 798, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x768@60Hz */ + { MODEPREFIX, 102250, 1280, 1360, 1488, 1696, 0, 768, 771, 778, 805, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x768@75Hz */ + { MODEPREFIX, 117500, 1280, 1360, 1496, 1712, 0, 768, 771, 778, 809, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x768@85Hz */ + { MODEPREFIX, 140250, 1280, 1328, 1360, 1440, 0, 768, 771, 778, 813, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x768@120Hz RB */ + { MODEPREFIX, 71000, 1280, 1328, 1360, 1440, 0, 800, 803, 809, 823, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x800@60Hz RB */ + { MODEPREFIX, 83500, 1280, 1352, 1480, 1680, 0, 800, 803, 809, 831, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x800@60Hz */ + { MODEPREFIX, 106500, 1280, 1360, 1488, 1696, 0, 800, 803, 809, 838, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x800@75Hz */ + { MODEPREFIX, 122500, 1280, 1360, 1496, 1712, 0, 800, 803, 809, 843, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x800@85Hz */ + { MODEPREFIX, 146250, 1280, 1328, 1360, 1440, 0, 800, 803, 809, 847, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x800@120Hz RB */ + { MODEPREFIX, 108000, 1280, 1376, 1488, 1800, 0, 960, 961, 964, 1000, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x960@60Hz */ + { MODEPREFIX, 148500, 1280, 1344, 1504, 1728, 0, 960, 961, 964, 1011, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x960@85Hz */ + { MODEPREFIX, 175500, 1280, 1328, 1360, 1440, 0, 960, 963, 967, 1017, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x960@120Hz RB */ + { MODEPREFIX, 108000, 1280, 1328, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@60Hz */ + { MODEPREFIX, 135000, 1280, 1296, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@75Hz */ + { MODEPREFIX, 157500, 1280, 1344, 1504, 1728, 0, 1024, 1025, 1028, 1072, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1280x1024@85Hz */ + { MODEPREFIX, 187250, 1280, 1328, 1360, 1440, 0, 1024, 1027, 1034, 1084, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1280x1024@120Hz RB */ + { MODEPREFIX, 85500, 1360, 1424, 1536, 1792, 0, 768, 771, 777, 795, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1360x768@60Hz */ + { MODEPREFIX, 148250, 1360, 1408, 1440, 1520, 0, 768, 771, 776, 813, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1360x768@120Hz RB */ + { MODEPREFIX, 101000, 1400, 1448, 1480, 1560, 0, 1050, 1053, 1057, 1080, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1400x1050@60Hz RB */ + { MODEPREFIX, 121750, 1400, 1488, 1632, 1864, 0, 1050, 1053, 1057, 1089, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1400x1050@60Hz */ + { MODEPREFIX, 156000, 1400, 1504, 1648, 1896, 0, 1050, 1053, 1057, 1099, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1400x1050@75Hz */ + { MODEPREFIX, 179500, 1400, 1504, 1656, 1912, 0, 1050, 1053, 1057, 1105, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1400x1050@85Hz */ + { MODEPREFIX, 208000, 1400, 1448, 1480, 1560, 0, 1050, 1053, 1057, 1112, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1400x1050@120Hz RB */ + { MODEPREFIX, 88750, 1440, 1488, 1520, 1600, 0, 900, 903, 909, 926, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1440x900@60Hz RB */ + { MODEPREFIX, 106500, 1440, 1520, 1672, 1904, 0, 900, 903, 909, 934, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1440x900@60Hz */ + { MODEPREFIX, 136750, 1440, 1536, 1688, 1936, 0, 900, 903, 909, 942, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1440x900@75Hz */ + { MODEPREFIX, 157000, 1440, 1544, 1696, 1952, 0, 900, 903, 909, 948, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1440x900@85Hz */ + { MODEPREFIX, 182750, 1440, 1488, 1520, 1600, 0, 900, 903, 909, 953, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1440x900@120Hz RB */ + { MODEPREFIX, 162000, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@60Hz */ + { MODEPREFIX, 175500, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@65Hz */ + { MODEPREFIX, 189000, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@70Hz */ + { MODEPREFIX, 202500, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@75Hz */ + { MODEPREFIX, 229500, 1600, 1664, 1856, 2160, 0, 1200, 1201, 1204, 1250, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* 1600x1200@85Hz */ + { MODEPREFIX, 268250, 1600, 1648, 1680, 1760, 0, 1200, 1203, 1207, 1271, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1600x1200@120Hz RB */ + { MODEPREFIX, 119000, 1680, 1728, 1760, 1840, 0, 1050, 1053, 1059, 1080, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1680x1050@60Hz RB */ + { MODEPREFIX, 146250, 1680, 1784, 1960, 2240, 0, 1050, 1053, 1059, 1089, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1680x1050@60Hz */ + { MODEPREFIX, 187000, 1680, 1800, 1976, 2272, 0, 1050, 1053, 1059, 1099, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1680x1050@75Hz */ + { MODEPREFIX, 214750, 1680, 1808, 1984, 2288, 0, 1050, 1053, 1059, 1105, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1680x1050@85Hz */ + { MODEPREFIX, 245500, 1680, 1728, 1760, 1840, 0, 1050, 1053, 1059, 1112, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1680x1050@120Hz RB */ + { MODEPREFIX, 204750, 1792, 1920, 2120, 2448, 0, 1344, 1345, 1348, 1394, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1792x1344@60Hz */ + { MODEPREFIX, 261000, 1792, 1888, 2104, 2456, 0, 1344, 1345, 1348, 1417, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1792x1344@75Hz */ + { MODEPREFIX, 333250, 1792, 1840, 1872, 1952, 0, 1344, 1347, 1351, 1423, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1792x1344@120Hz RB */ + { MODEPREFIX, 218250, 1856, 1952, 2176, 2528, 0, 1392, 1393, 1396, 1439, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1856x1392@60Hz */ + { MODEPREFIX, 288000, 1856, 1984, 2208, 2560, 0, 1392, 1393, 1396, 1500, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1856x1392@75Hz */ + { MODEPREFIX, 356500, 1856, 1904, 1936, 2016, 0, 1392, 1395, 1399, 1474, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1856x1392@120Hz RB */ + { MODEPREFIX, 154000, 1920, 1968, 2000, 2080, 0, 1200, 1203, 1209, 1235, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1920x1200@60Hz RB */ + { MODEPREFIX, 193250, 1920, 2056, 2256, 2592, 0, 1200, 1203, 1209, 1245, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1200@60Hz */ + { MODEPREFIX, 245250, 1920, 2056, 2264, 2608, 0, 1200, 1203, 1209, 1255, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1200@75Hz */ + { MODEPREFIX, 281250, 1920, 2064, 2272, 2624, 0, 1200, 1203, 1209, 1262, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1200@85Hz */ + { MODEPREFIX, 317000, 1920, 1968, 2000, 2080, 0, 1200, 1203, 1209, 1271, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1920x1200@120Hz RB */ + { MODEPREFIX, 234000, 1920, 2048, 2256, 2600, 0, 1440, 1441, 1444, 1500, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1440@60Hz */ + { MODEPREFIX, 297000, 1920, 2064, 2288, 2640, 0, 1440, 1441, 1444, 1500, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 1920x1440@75Hz */ + { MODEPREFIX, 380500, 1920, 1968, 2000, 2080, 0, 1440, 1443, 1447, 1525, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 1920x1440@120Hz RB */ + { MODEPREFIX, 268500, 2560, 2608, 2640, 2720, 0, 1600, 1603, 1609, 1646, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 2560x1600@60Hz RB */ + { MODEPREFIX, 348500, 2560, 2752, 3032, 3504, 0, 1600, 1603, 1609, 1658, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 2560x1600@60Hz */ + { MODEPREFIX, 443250, 2560, 2768, 3048, 3536, 0, 1600, 1603, 1609, 1672, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 2560x1600@75Hz */ + { MODEPREFIX, 505250, 2560, 2768, 3048, 3536, 0, 1600, 1603, 1609, 1682, 0, V_NHSYNC | V_PVSYNC, MODESUFFIX }, /* 2560x1600@85Hz */ + { MODEPREFIX, 552750, 2560, 2608, 2640, 2720, 0, 1600, 1603, 1609, 1694, 0, V_PHSYNC | V_NVSYNC, MODESUFFIX }, /* 2560x1600@120Hz RB */ +}; + +#define LEVEL_DMT 0 +#define LEVEL_GTF 1 +#define LEVEL_CVT 2 + +static int +MonitorStandardTimingLevel(xf86MonPtr DDC) +{ + if (DDC->ver.revision >= 2) { + if (DDC->ver.revision >= 4 && CVT_SUPPORTED(DDC->features.msc)) { + return LEVEL_CVT; + } + return LEVEL_GTF; + } + return LEVEL_DMT; +} + +static int +ModeRefresh(const DisplayModeRec *mode) +{ + return (int)(xf86ModeVRefresh(mode) + 0.5); +} + +/* + * If rb is not set, then we'll not consider reduced-blanking modes as + * part of the DMT pool. For the 'standard' EDID mode descriptor there's + * no way to specify whether the mode should be RB or not. + */ +DisplayModePtr +FindDMTMode(int hsize, int vsize, int refresh, Bool rb) +{ + int i; + const DisplayModeRec *ret; + + for (i = 0; i < sizeof(DMTModes) / sizeof(DisplayModeRec); i++) { + ret = &DMTModes[i]; + + if (!rb && xf86ModeIsReduced(ret)) + continue; + + if (ret->HDisplay == hsize && + ret->VDisplay == vsize && + refresh == ModeRefresh(ret)) + return xf86DuplicateMode(ret); + } + + return NULL; +} + +/* + * Appendix B of the EDID 1.4 spec defines the right thing to do here. + * If the timing given here matches a mode defined in the VESA DMT standard, + * we _must_ use that. If the device supports CVT modes, then we should + * generate a CVT timing. If both of the above fail, use GTF. + * + * There are some wrinkles here. EDID 1.1 and 1.0 sinks can't really + * "support" GTF, since it wasn't a standard yet; so if they ask for a + * timing in this section that isn't defined in DMT, returning a GTF mode + * may not actually be valid. EDID 1.3 sinks often report support for + * some CVT modes, but they are not required to support CVT timings for + * modes in the standard timing descriptor, so we should _not_ treat them + * as CVT-compliant (unless specified in an extension block I suppose). + * + * EDID 1.4 requires that all sink devices support both GTF and CVT timings + * for modes in this section, but does say that CVT is preferred. + */ +static DisplayModePtr +DDCModesFromStandardTiming(struct std_timings *timing, ddc_quirk_t quirks, + int timing_level, Bool rb) +{ + DisplayModePtr Modes = NULL, Mode = NULL; + int i, hsize, vsize, refresh; + + for (i = 0; i < STD_TIMINGS; i++) { + hsize = timing[i].hsize; + vsize = timing[i].vsize; + refresh = timing[i].refresh; + + /* HDTV hack, because you can't say 1366 */ + if (refresh == 60 && + ((hsize == 1360 && vsize == 765) || + (hsize == 1368 && vsize == 769))) { + Mode = xf86CVTMode(1366, 768, 60, FALSE, FALSE); + Mode->HDisplay = 1366; + Mode->HSyncStart--; + Mode->HSyncEnd--; + } else if (hsize && vsize && refresh) { + Mode = FindDMTMode(hsize, vsize, refresh, rb); + + if (!Mode) { + if (timing_level == LEVEL_CVT) + /* pass rb here too? */ + Mode = xf86CVTMode(hsize, vsize, refresh, FALSE, FALSE); + else if (timing_level == LEVEL_GTF) + Mode = xf86GTFMode(hsize, vsize, refresh, FALSE, FALSE); + } + + } + + if (Mode) { + Mode->type = M_T_DRIVER; + Modes = xf86ModesAdd(Modes, Mode); + } + Mode = NULL; + } + + return Modes; +} + +static void +DDCModeDoInterlaceQuirks(DisplayModePtr mode) +{ + /* + * EDID is delightfully ambiguous about how interlaced modes are to be + * encoded. X's internal representation is of frame height, but some + * HDTV detailed timings are encoded as field height. + * + * The format list here is from CEA, in frame size. Technically we + * should be checking refresh rate too. Whatever. + */ + static const struct { + int w, h; + } cea_interlaced[] = { + { 1920, 1080 }, + { 720, 480 }, + { 1440, 480 }, + { 2880, 480 }, + { 720, 576 }, + { 1440, 576 }, + { 2880, 576 }, + }; + static const int n_modes = sizeof(cea_interlaced)/sizeof(cea_interlaced[0]); + int i; + + for (i = 0; i < n_modes; i++) { + if ((mode->HDisplay == cea_interlaced[i].w) && + (mode->VDisplay == cea_interlaced[i].h / 2)) { + mode->VDisplay *= 2; + mode->VSyncStart *= 2; + mode->VSyncEnd *= 2; + mode->VTotal *= 2; + mode->VTotal |= 1; + } + } + + mode->Flags |= V_INTERLACE; +} + +/* + * + */ +static DisplayModePtr +DDCModeFromDetailedTiming(int scrnIndex, struct detailed_timings *timing, + Bool preferred, ddc_quirk_t quirks) +{ + DisplayModePtr Mode; + + /* + * Refuse to create modes that are insufficiently large. 64 is a random + * number, maybe the spec says something about what the minimum is. In + * particular I see this frequently with _old_ EDID, 1.0 or so, so maybe + * our parser is just being too aggresive there. + */ + if (timing->h_active < 64 || timing->v_active < 64) { + xf86DrvMsg(scrnIndex, X_INFO, + "%s: Ignoring tiny %dx%d mode\n", __func__, + timing->h_active, timing->v_active); + return NULL; + } + + /* We don't do stereo */ + if (timing->stereo) { + xf86DrvMsg(scrnIndex, X_INFO, + "%s: Ignoring: We don't handle stereo.\n", __func__); + return NULL; + } + + /* We only do seperate sync currently */ + if (timing->sync != 0x03) { + xf86DrvMsg(scrnIndex, X_INFO, + "%s: %dx%d Warning: We only handle separate" + " sync.\n", __func__, timing->h_active, timing->v_active); + } + + Mode = xnfcalloc(1, sizeof(DisplayModeRec)); + + Mode->type = M_T_DRIVER; + if (preferred) + Mode->type |= M_T_PREFERRED; + + if( ( quirks & DDC_QUIRK_135_CLOCK_TOO_HIGH ) && + timing->clock == 135000000 ) + Mode->Clock = 108880; + else + Mode->Clock = timing->clock / 1000.0; + + Mode->HDisplay = timing->h_active; + Mode->HSyncStart = timing->h_active + timing->h_sync_off; + Mode->HSyncEnd = Mode->HSyncStart + timing->h_sync_width; + Mode->HTotal = timing->h_active + timing->h_blanking; + + Mode->VDisplay = timing->v_active; + Mode->VSyncStart = timing->v_active + timing->v_sync_off; + Mode->VSyncEnd = Mode->VSyncStart + timing->v_sync_width; + Mode->VTotal = timing->v_active + timing->v_blanking; + + /* perform basic check on the detail timing */ + if (Mode->HSyncEnd > Mode->HTotal || Mode->VSyncEnd > Mode->VTotal) { + free(Mode); + return NULL; + } + + /* We ignore h/v_size and h/v_border for now. */ + + if (timing->interlaced) + DDCModeDoInterlaceQuirks(Mode); + + if (quirks & DDC_QUIRK_DETAILED_SYNC_PP) + Mode->Flags |= V_PVSYNC | V_PHSYNC; + else { + if (timing->misc & 0x02) + Mode->Flags |= V_PVSYNC; + else + Mode->Flags |= V_NVSYNC; + + if (timing->misc & 0x01) + Mode->Flags |= V_PHSYNC; + else + Mode->Flags |= V_NHSYNC; + } + + xf86SetModeDefaultName(Mode); + + return Mode; +} + +static DisplayModePtr +DDCModesFromCVT(int scrnIndex, struct cvt_timings *t) +{ + DisplayModePtr modes = NULL; + int i; + + for (i = 0; i < 4; i++) { + if (t[i].height) { + if (t[i].rates & 0x10) + modes = xf86ModesAdd(modes, + xf86CVTMode(t[i].width, t[i].height, 50, 0, 0)); + if (t[i].rates & 0x08) + modes = xf86ModesAdd(modes, + xf86CVTMode(t[i].width, t[i].height, 60, 0, 0)); + if (t[i].rates & 0x04) + modes = xf86ModesAdd(modes, + xf86CVTMode(t[i].width, t[i].height, 75, 0, 0)); + if (t[i].rates & 0x02) + modes = xf86ModesAdd(modes, + xf86CVTMode(t[i].width, t[i].height, 85, 0, 0)); + if (t[i].rates & 0x01) + modes = xf86ModesAdd(modes, + xf86CVTMode(t[i].width, t[i].height, 60, 1, 0)); + } else break; + } + + return modes; +} + +static const struct { + short w; + short h; + short r; + short rb; +} EstIIIModes[] = { + /* byte 6 */ + { 640, 350, 85, 0 }, + { 640, 400, 85, 0 }, + { 720, 400, 85, 0 }, + { 640, 480, 85, 0 }, + { 848, 480, 60, 0 }, + { 800, 600, 85, 0 }, + { 1024, 768, 85, 0 }, + { 1152, 864, 75, 0 }, + /* byte 7 */ + { 1280, 768, 60, 1 }, + { 1280, 768, 60, 0 }, + { 1280, 768, 75, 0 }, + { 1280, 768, 85, 0 }, + { 1280, 960, 60, 0 }, + { 1280, 960, 85, 0 }, + { 1280, 1024, 60, 0 }, + { 1280, 1024, 85, 0 }, + /* byte 8 */ + { 1360, 768, 60, 0 }, + { 1440, 900, 60, 1 }, + { 1440, 900, 60, 0 }, + { 1440, 900, 75, 0 }, + { 1440, 900, 85, 0 }, + { 1400, 1050, 60, 1 }, + { 1400, 1050, 60, 0 }, + { 1400, 1050, 75, 0 }, + /* byte 9 */ + { 1400, 1050, 85, 0 }, + { 1680, 1050, 60, 1 }, + { 1680, 1050, 60, 0 }, + { 1680, 1050, 75, 0 }, + { 1680, 1050, 85, 0 }, + { 1600, 1200, 60, 0 }, + { 1600, 1200, 65, 0 }, + { 1600, 1200, 70, 0 }, + /* byte 10 */ + { 1600, 1200, 75, 0 }, + { 1600, 1200, 85, 0 }, + { 1792, 1344, 60, 0 }, + { 1792, 1344, 85, 0 }, + { 1856, 1392, 60, 0 }, + { 1856, 1392, 75, 0 }, + { 1920, 1200, 60, 1 }, + { 1920, 1200, 60, 0 }, + /* byte 11 */ + { 1920, 1200, 75, 0 }, + { 1920, 1200, 85, 0 }, + { 1920, 1440, 60, 0 }, + { 1920, 1440, 75, 0 }, +}; + +static DisplayModePtr +DDCModesFromEstIII(unsigned char *est) +{ + DisplayModePtr modes = NULL; + int i, j, m; + + for (i = 0; i < 6; i++) { + for (j = 7; j > 0; j--) { + if (est[i] & (1 << j)) { + m = (i * 8) + (7 - j); + modes = xf86ModesAdd(modes, + FindDMTMode(EstIIIModes[m].w, + EstIIIModes[m].h, + EstIIIModes[m].r, + EstIIIModes[m].rb)); + } + } + } + + return modes; +} + +/* + * This is only valid when the sink claims to be continuous-frequency + * but does not supply a detailed range descriptor. Such sinks are + * arguably broken. Currently the mode validation code isn't aware of + * this; the non-RANDR code even punts the decision of optional sync + * range checking to the driver. Loss. + */ +static void +DDCGuessRangesFromModes(int scrnIndex, MonPtr Monitor, DisplayModePtr Modes) +{ + DisplayModePtr Mode = Modes; + + if (!Monitor || !Modes) + return; + + /* set up the ranges for scanning through the modes */ + Monitor->nHsync = 1; + Monitor->hsync[0].lo = 1024.0; + Monitor->hsync[0].hi = 0.0; + + Monitor->nVrefresh = 1; + Monitor->vrefresh[0].lo = 1024.0; + Monitor->vrefresh[0].hi = 0.0; + + while (Mode) { + if (!Mode->HSync) + Mode->HSync = ((float) Mode->Clock ) / ((float) Mode->HTotal); + + if (!Mode->VRefresh) + Mode->VRefresh = (1000.0 * ((float) Mode->Clock)) / + ((float) (Mode->HTotal * Mode->VTotal)); + + if (Mode->HSync < Monitor->hsync[0].lo) + Monitor->hsync[0].lo = Mode->HSync; + + if (Mode->HSync > Monitor->hsync[0].hi) + Monitor->hsync[0].hi = Mode->HSync; + + if (Mode->VRefresh < Monitor->vrefresh[0].lo) + Monitor->vrefresh[0].lo = Mode->VRefresh; + + if (Mode->VRefresh > Monitor->vrefresh[0].hi) + Monitor->vrefresh[0].hi = Mode->VRefresh; + + Mode = Mode->next; + } +} + +ddc_quirk_t +xf86DDCDetectQuirks(int scrnIndex, xf86MonPtr DDC, Bool verbose) +{ + ddc_quirk_t quirks; + int i; + + quirks = DDC_QUIRK_NONE; + for (i = 0; ddc_quirks[i].detect; i++) { + if (ddc_quirks[i].detect (scrnIndex, DDC)) { + if (verbose) { + xf86DrvMsg (scrnIndex, X_INFO, " EDID quirk: %s\n", + ddc_quirks[i].description); + } + quirks |= ddc_quirks[i].quirk; + } + } + + return quirks; +} + +void xf86DetTimingApplyQuirks(struct detailed_monitor_section *det_mon, + ddc_quirk_t quirks, + int hsize, int vsize) +{ + if (det_mon->type != DT) + return; + + if (quirks & DDC_QUIRK_DETAILED_H_IN_CM) + det_mon->section.d_timings.h_size *= 10; + + if (quirks & DDC_QUIRK_DETAILED_V_IN_CM) + det_mon->section.d_timings.v_size *= 10; + + if (quirks & DDC_QUIRK_DETAILED_USE_MAXIMUM_SIZE) { + det_mon->section.d_timings.h_size = 10 * hsize; + det_mon->section.d_timings.v_size = 10 * vsize; + } +} + +/** + * Applies monitor-specific quirks to the decoded EDID information. + * + * Note that some quirks applying to the mode list are still implemented in + * xf86DDCGetModes. + */ +void +xf86DDCApplyQuirks(int scrnIndex, xf86MonPtr DDC) +{ + ddc_quirk_t quirks = xf86DDCDetectQuirks (scrnIndex, DDC, FALSE); + int i; + + for (i = 0; i < DET_TIMINGS; i++) { + xf86DetTimingApplyQuirks(DDC->det_mon + i, quirks, + DDC->features.hsize, + DDC->features.vsize); + } +} + +/** + * Walks the modes list, finding the mode with the largest area which is + * closest to the target refresh rate, and marks it as the only preferred mode. +*/ +static void +xf86DDCSetPreferredRefresh(int scrnIndex, DisplayModePtr modes, + float target_refresh) +{ + DisplayModePtr mode, best = modes; + + for (mode = modes; mode; mode = mode->next) + { + mode->type &= ~M_T_PREFERRED; + + if (mode == best) continue; + + if (mode->HDisplay * mode->VDisplay > + best->HDisplay * best->VDisplay) + { + best = mode; + continue; + } + if (mode->HDisplay * mode->VDisplay == + best->HDisplay * best->VDisplay) + { + double mode_refresh = xf86ModeVRefresh (mode); + double best_refresh = xf86ModeVRefresh (best); + double mode_dist = fabs(mode_refresh - target_refresh); + double best_dist = fabs(best_refresh - target_refresh); + + if (mode_dist < best_dist) + { + best = mode; + continue; + } + } + } + if (best) + best->type |= M_T_PREFERRED; +} + +#define CEA_VIDEO_MODES_NUM 64 +static const DisplayModeRec CEAVideoModes[CEA_VIDEO_MODES_NUM] = { + { MODEPREFIX, 25175, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 1:640x480@60Hz */ + { MODEPREFIX, 27000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 2:720x480@60Hz */ + { MODEPREFIX, 27000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 3:720x480@60Hz */ + { MODEPREFIX, 74250, 1280, 1390, 1430, 1650, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 4: 1280x720@60Hz */ + { MODEPREFIX, 74250, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 5:1920x1080i@60Hz */ + { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 6:1440x480i@60Hz */ + { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 7:1440x480i@60Hz */ + { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 8:1440x240@60Hz */ + { MODEPREFIX, 27000, 1440, 1478, 1602, 1716, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 9:1440x240@60Hz */ + { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 10:2880x480i@60Hz */ + { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 11:2880x480i@60Hz */ + { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 12:2880x240@60Hz */ + { MODEPREFIX, 54000, 2880, 2956, 3204, 3432, 0, 240, 244, 247, 262, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 13:2880x240@60Hz */ + { MODEPREFIX, 54000, 1440, 1472, 1596, 1716, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 14:1440x480@60Hz */ + { MODEPREFIX, 54000, 1440, 1472, 1596, 1716, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 15:1440x480@60Hz */ + { MODEPREFIX, 148500, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 16:1920x1080@60Hz */ + { MODEPREFIX, 27000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 17:720x576@50Hz */ + { MODEPREFIX, 27000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 18:720x576@50Hz */ + { MODEPREFIX, 74250, 1280, 1720, 1760, 1980, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 19: 1280x720@50Hz */ + { MODEPREFIX, 74250, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 20:1920x1080i@50Hz */ + { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 21:1440x576i@50Hz */ + { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 22:1440x576i@50Hz */ + { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 23:1440x288@50Hz */ + { MODEPREFIX, 27000, 1440, 1464, 1590, 1728, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 24:1440x288@50Hz */ + { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 25:2880x576i@50Hz */ + { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 26:2880x576i@50Hz */ + { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 27:2880x288@50Hz */ + { MODEPREFIX, 54000, 2880, 2928, 3180, 3456, 0, 288, 290, 293, 312, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 28:2880x288@50Hz */ + { MODEPREFIX, 54000, 1440, 1464, 1592, 1728, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 29:1440x576@50Hz */ + { MODEPREFIX, 54000, 1440, 1464, 1592, 1728, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 30:1440x576@50Hz */ + { MODEPREFIX, 148500, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 31:1920x1080@50Hz */ + { MODEPREFIX, 74250, 1920, 2558, 2602, 2750, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 32:1920x1080@24Hz */ + { MODEPREFIX, 74250, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 33:1920x1080@25Hz */ + { MODEPREFIX, 74250, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 34:1920x1080@30Hz */ + { MODEPREFIX, 108000, 2880, 2944, 3192, 3432, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 35:2880x480@60Hz */ + { MODEPREFIX, 108000, 2880, 2944, 3192, 3432, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 36:2880x480@60Hz */ + { MODEPREFIX, 108000, 2880, 2928, 3184, 3456, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 37:2880x576@50Hz */ + { MODEPREFIX, 108000, 2880, 2928, 3184, 3456, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 38:2880x576@50Hz */ + { MODEPREFIX, 72000, 1920, 1952, 2120, 2304, 0, 1080, 1126, 1136, 1250, 0, V_PHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 39:1920x1080i@50Hz */ + { MODEPREFIX, 148500, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 40:1920x1080i@100Hz */ + { MODEPREFIX, 148500, 1280, 1720, 1760, 1980, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 41:1280x720@100Hz */ + { MODEPREFIX, 54000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 42:720x576@100Hz */ + { MODEPREFIX, 54000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 43:720x576@100Hz */ + { MODEPREFIX, 54000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 44:1440x576i@100Hz */ + { MODEPREFIX, 54000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 45:1440x576i@100Hz */ + { MODEPREFIX, 148500, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE, MODESUFFIX }, /* VIC 46:1920x1080i@120Hz */ + { MODEPREFIX, 148500, 1280, 1390, 1430, 1650, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 47:1280x720@120Hz */ + { MODEPREFIX, 54000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 48:720x480@120Hz */ + { MODEPREFIX, 54000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 49:720x480@120Hz */ + { MODEPREFIX, 54000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 50:1440x480i@120Hz */ + { MODEPREFIX, 54000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 51:1440x480i@120Hz */ + { MODEPREFIX, 108000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 52:720x576@200Hz */ + { MODEPREFIX, 108000, 720, 732, 796, 864, 0, 576, 581, 586, 625, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 53:720x576@200Hz */ + { MODEPREFIX, 108000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 54:1440x576i@200Hz */ + { MODEPREFIX, 108000, 1440, 1464, 1590, 1728, 0, 576, 580, 586, 625, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 55:1440x576i@200Hz */ + { MODEPREFIX, 108000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 56:720x480@240Hz */ + { MODEPREFIX, 108000, 720, 736, 798, 858, 0, 480, 489, 495, 525, 0, V_NHSYNC | V_NVSYNC, MODESUFFIX }, /* VIC 57:720x480@240Hz */ + { MODEPREFIX, 108000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 58:1440x480i@240 */ + { MODEPREFIX, 108000, 1440, 1478, 1602, 1716, 0, 480, 488, 494, 525, 0, V_NHSYNC | V_NVSYNC | V_INTERLACE, MODESUFFIX },/* VIC 59:1440x480i@240 */ + { MODEPREFIX, 59400, 1280, 3040, 3080, 3300, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 60: 1280x720@24Hz */ + { MODEPREFIX, 74250, 1280, 3700, 3740, 3960, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 61: 1280x720@25Hz */ + { MODEPREFIX, 74250, 1280, 3040, 3080, 3300, 0, 720, 725, 730, 750, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 62: 1280x720@30Hz */ + { MODEPREFIX, 297000, 1920, 2008, 2052, 2200, 0, 1080, 1084, 1089, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 63: 1920x1080@120Hz */ + { MODEPREFIX, 297000, 1920, 2448, 2492, 2640, 0, 1080, 1084, 1094, 1125, 0, V_PHSYNC | V_PVSYNC, MODESUFFIX }, /* VIC 64:1920x1080@100Hz */ +}; + +/* chose mode line by cea short video descriptor*/ +static void handle_cea_svd(struct cea_video_block *video, void *data) +{ + DisplayModePtr Mode; + DisplayModePtr *Modes = (DisplayModePtr *) data; + int vid; + + vid = video ->video_code & 0x7f; + if (vid < CEA_VIDEO_MODES_NUM) { + Mode = xf86DuplicateMode(CEAVideoModes + vid); + *Modes = xf86ModesAdd(*Modes, Mode); + } +} + +static DisplayModePtr +DDCModesFromCEAExtension(int scrnIndex, xf86MonPtr MonPtr) +{ + DisplayModePtr Modes = NULL; + + xf86ForEachVideoBlock(MonPtr, + handle_cea_svd, + &Modes); + + return Modes; +} + +struct det_modes_parameter { + xf86MonPtr DDC; + ddc_quirk_t quirks; + DisplayModePtr Modes; + Bool rb; + Bool preferred; + int timing_level; +}; + +static void handle_detailed_modes(struct detailed_monitor_section *det_mon, + void *data) +{ + DisplayModePtr Mode; + struct det_modes_parameter *p = (struct det_modes_parameter *)data; + + xf86DetTimingApplyQuirks(det_mon,p->quirks, + p->DDC->features.hsize, + p->DDC->features.vsize); + + switch (det_mon->type) { + case DT: + Mode = DDCModeFromDetailedTiming(p->DDC->scrnIndex, + &det_mon->section.d_timings, + p->preferred, + p->quirks); + p->preferred = FALSE; + p->Modes = xf86ModesAdd(p->Modes, Mode); + break; + case DS_STD_TIMINGS: + Mode = DDCModesFromStandardTiming(det_mon->section.std_t, + p->quirks, p->timing_level,p->rb); + p->Modes = xf86ModesAdd(p->Modes, Mode); + break; + case DS_CVT: + Mode = DDCModesFromCVT(p->DDC->scrnIndex, det_mon->section.cvt); + p->Modes = xf86ModesAdd(p->Modes, Mode); + break; + case DS_EST_III: + Mode = DDCModesFromEstIII(det_mon->section.est_iii); + p->Modes = xf86ModesAdd(p->Modes, Mode); + break; + default: + break; + } +} + +DisplayModePtr +xf86DDCGetModes(int scrnIndex, xf86MonPtr DDC) +{ + DisplayModePtr Modes = NULL, Mode; + ddc_quirk_t quirks; + Bool preferred, rb; + int timing_level; + struct det_modes_parameter p; + + xf86DrvMsg (scrnIndex, X_INFO, "EDID vendor \"%s\", prod id %d\n", + DDC->vendor.name, DDC->vendor.prod_id); + + quirks = xf86DDCDetectQuirks(scrnIndex, DDC, TRUE); + + preferred = PREFERRED_TIMING_MODE(DDC->features.msc); + if (DDC->ver.revision >= 4) + preferred = TRUE; + if (quirks & DDC_QUIRK_FIRST_DETAILED_PREFERRED) + preferred = TRUE; + if (quirks & (DDC_QUIRK_PREFER_LARGE_60 | DDC_QUIRK_PREFER_LARGE_75)) + preferred = FALSE; + + rb = xf86MonitorSupportsReducedBlanking(DDC); + + timing_level = MonitorStandardTimingLevel(DDC); + + p.quirks = quirks; + p.DDC = DDC; + p.Modes = Modes; + p.rb = rb; + p.preferred = preferred; + p.timing_level = timing_level; + xf86ForEachDetailedBlock(DDC, handle_detailed_modes, &p); + Modes = p.Modes; + + /* Add established timings */ + Mode = DDCModesFromEstablished(scrnIndex, &DDC->timings1, quirks); + Modes = xf86ModesAdd(Modes, Mode); + + /* Add standard timings */ + Mode = DDCModesFromStandardTiming(DDC->timings2, quirks, timing_level, rb); + Modes = xf86ModesAdd(Modes, Mode); + + /* Add cea-extension mode timings */ + Mode = DDCModesFromCEAExtension(scrnIndex,DDC); + Modes = xf86ModesAdd(Modes, Mode); + + if (quirks & DDC_QUIRK_PREFER_LARGE_60) + xf86DDCSetPreferredRefresh(scrnIndex, Modes, 60); + + if (quirks & DDC_QUIRK_PREFER_LARGE_75) + xf86DDCSetPreferredRefresh(scrnIndex, Modes, 75); + + Modes = xf86PruneDuplicateModes(Modes); + + return Modes; +} + +struct det_mon_parameter { + MonPtr Monitor; + ddc_quirk_t quirks; + Bool have_hsync; + Bool have_vrefresh; + Bool have_maxpixclock; +}; + +static void handle_detailed_monset(struct detailed_monitor_section *det_mon, + void *data) +{ + int clock; + struct det_mon_parameter *p = (struct det_mon_parameter *)data; + int scrnIndex = ((xf86MonPtr)(p->Monitor->DDC))->scrnIndex; + + switch (det_mon->type) { + case DS_RANGES: + if (!p->have_hsync) { + if (!p->Monitor->nHsync) + xf86DrvMsg(scrnIndex, X_INFO, + "Using EDID range info for horizontal sync\n"); + p->Monitor->hsync[p->Monitor->nHsync].lo = + det_mon->section.ranges.min_h; + p->Monitor->hsync[p->Monitor->nHsync].hi = + det_mon->section.ranges.max_h; + p->Monitor->nHsync++; + } else { + xf86DrvMsg(scrnIndex, X_INFO, + "Using hsync ranges from config file\n"); + } + + if (!p->have_vrefresh) { + if (!p->Monitor->nVrefresh) + xf86DrvMsg(scrnIndex, X_INFO, + "Using EDID range info for vertical refresh\n"); + p->Monitor->vrefresh[p->Monitor->nVrefresh].lo = + det_mon->section.ranges.min_v; + p->Monitor->vrefresh[p->Monitor->nVrefresh].hi = + det_mon->section.ranges.max_v; + p->Monitor->nVrefresh++; + } else { + xf86DrvMsg(scrnIndex, X_INFO, + "Using vrefresh ranges from config file\n"); + } + + clock = det_mon->section.ranges.max_clock * 1000; + if (p->quirks & DDC_QUIRK_DVI_SINGLE_LINK) + clock = min(clock, 165000); + if (!p->have_maxpixclock && clock > p->Monitor->maxPixClock) + p->Monitor->maxPixClock = clock; + + break; + default: + break; + } +} + +/* + * Fill out MonPtr with xf86MonPtr information. + */ +void +xf86EdidMonitorSet(int scrnIndex, MonPtr Monitor, xf86MonPtr DDC) +{ + DisplayModePtr Modes = NULL, Mode; + struct det_mon_parameter p; + + if (!Monitor || !DDC) + return; + + Monitor->DDC = DDC; + + if (Monitor->widthmm <= 0 || Monitor->heightmm <= 0) { + Monitor->widthmm = 10 * DDC->features.hsize; + Monitor->heightmm = 10 * DDC->features.vsize; + } + + Monitor->reducedblanking = xf86MonitorSupportsReducedBlanking(DDC); + + Modes = xf86DDCGetModes(scrnIndex, DDC); + + /* Go through the detailed monitor sections */ + p.Monitor = Monitor; + p.quirks = xf86DDCDetectQuirks(scrnIndex, Monitor->DDC, FALSE); + p.have_hsync = (Monitor->nHsync != 0); + p.have_vrefresh = (Monitor->nVrefresh != 0); + p.have_maxpixclock = (Monitor->maxPixClock != 0); + xf86ForEachDetailedBlock(DDC, handle_detailed_monset, &p); + + if (Modes) { + /* Print Modes */ + xf86DrvMsg(scrnIndex, X_INFO, "Printing DDC gathered Modelines:\n"); + + Mode = Modes; + while (Mode) { + xf86PrintModeline(scrnIndex, Mode); + Mode = Mode->next; + } + + /* Do we still need ranges to be filled in? */ + if (!Monitor->nHsync || !Monitor->nVrefresh) + DDCGuessRangesFromModes(scrnIndex, Monitor, Modes); + + /* look for last Mode */ + Mode = Modes; + + while (Mode->next) + Mode = Mode->next; + + /* add to MonPtr */ + if (Monitor->Modes) { + Monitor->Last->next = Modes; + Modes->prev = Monitor->Last; + Monitor->Last = Mode; + } else { + Monitor->Modes = Modes; + Monitor->Last = Mode; + } + } +} diff --git a/xorg-server/hw/xfree86/os-support/bus/Pci.h b/xorg-server/hw/xfree86/os-support/bus/Pci.h index 88560ecdc..5709bd841 100644 --- a/xorg-server/hw/xfree86/os-support/bus/Pci.h +++ b/xorg-server/hw/xfree86/os-support/bus/Pci.h @@ -108,7 +108,6 @@ #define _PCI_H 1 #include "xf86Pci.h" -#include "xf86PciInfo.h" /* * Global Definitions diff --git a/xorg-server/hw/xfree86/os-support/linux/lnx_video.c b/xorg-server/hw/xfree86/os-support/linux/lnx_video.c index e711784e7..0d91f7a52 100644 --- a/xorg-server/hw/xfree86/os-support/linux/lnx_video.c +++ b/xorg-server/hw/xfree86/os-support/linux/lnx_video.c @@ -465,11 +465,11 @@ mapVidMem(int ScreenNum, unsigned long Base, unsigned long Size, int flags) static void unmapVidMem(int ScreenNum, pointer Base, unsigned long Size) { - memType alignOff = (memType)Base - - ((memType)Base & ~(getpagesize() - 1)); + uintptr_t alignOff = (uintptr_t)Base + - ((uintptr_t)Base & ~(getpagesize() - 1)); - DebugF("alignment offset: %lx\n",alignOff); - munmap((caddr_t)((memType)Base - alignOff), (Size + alignOff)); + DebugF("alignment offset: %lx\n", (unsigned long)alignOff); + munmap((void *)((uintptr_t)Base - alignOff), (Size + alignOff)); } diff --git a/xorg-server/hw/xfree86/sdksyms.sh b/xorg-server/hw/xfree86/sdksyms.sh index b8e7023f3..4a4e1f64d 100644 --- a/xorg-server/hw/xfree86/sdksyms.sh +++ b/xorg-server/hw/xfree86/sdksyms.sh @@ -121,7 +121,6 @@ cat > sdksyms.c << EOF #include "xf86Module.h" #include "xf86Opt.h" #ifdef XSERVER_LIBPCIACCESS - #include "xf86PciInfo.h" #include "xf86VGAarbiter.h" #endif #include "xf86Priv.h" diff --git a/xorg-server/include/Makefile.am b/xorg-server/include/Makefile.am index 6f63c764f..972f403ce 100644 --- a/xorg-server/include/Makefile.am +++ b/xorg-server/include/Makefile.am @@ -32,6 +32,7 @@ sdk_HEADERS = \ misc.h \ miscstruct.h \ opaque.h \ + optionstr.h \ os.h \ pixmap.h \ pixmapstr.h \ diff --git a/xorg-server/include/os.h b/xorg-server/include/os.h index 642caeb99..cddf30ca8 100644 --- a/xorg-server/include/os.h +++ b/xorg-server/include/os.h @@ -453,9 +453,10 @@ extern _X_EXPORT CallbackListPtr ReplyCallback; typedef struct { ClientPtr client; const void *replyData; - unsigned long dataLenBytes; + unsigned long dataLenBytes; /* actual bytes from replyData + pad bytes */ unsigned long bytesRemaining; Bool startOfReply; + unsigned long padBytes; /* pad bytes from zeroed array */ } ReplyInfoRec; /* stuff for FlushCallback */ diff --git a/xorg-server/miext/rootless/rootlessScreen.c b/xorg-server/miext/rootless/rootlessScreen.c index 0801e7206..c8557066e 100644 --- a/xorg-server/miext/rootless/rootlessScreen.c +++ b/xorg-server/miext/rootless/rootlessScreen.c @@ -247,8 +247,8 @@ RootlessComposite(CARD8 op, PicturePtr pSrc, PicturePtr pMask, PicturePtr pDst, WindowPtr srcWin, dstWin, maskWin = NULL; if (pMask) { // pMask can be NULL - maskWin = (pMask->pDrawable->type == DRAWABLE_WINDOW) ? - (WindowPtr)pMask->pDrawable : NULL; + maskWin = (pMask->pDrawable && pMask->pDrawable->type == DRAWABLE_WINDOW) ? + (WindowPtr)pMask->pDrawable : NULL; } srcWin = (pSrc->pDrawable && pSrc->pDrawable->type == DRAWABLE_WINDOW) ? (WindowPtr)pSrc->pDrawable : NULL; diff --git a/xorg-server/os/io.c b/xorg-server/os/io.c index b30f20767..f8354a6af 100644 --- a/xorg-server/os/io.c +++ b/xorg-server/os/io.c @@ -809,6 +809,7 @@ WriteToClient (ClientPtr who, int count, const void *__buf) replyinfo.client = who; replyinfo.replyData = buf; replyinfo.dataLenBytes = count + padBytes; + replyinfo.padBytes = padBytes; if (who->replyBytesRemaining) { /* still sending data of an earlier reply */ who->replyBytesRemaining -= count + padBytes; diff --git a/xorg-server/record/record.c b/xorg-server/record/record.c index 68311ac8f..db77b64f5 100644 --- a/xorg-server/record/record.c +++ b/xorg-server/record/record.c @@ -269,8 +269,9 @@ RecordFlushReplyBuffer( * device events and EndOfData, pClient is NULL. * category is the category of the protocol element, as defined * by the RECORD spec. - * data is a pointer to the protocol data, and datalen is its length - * in bytes. + * data is a pointer to the protocol data, and datalen - padlen + * is its length in bytes. + * padlen is the number of pad bytes from a zeroed array. * futurelen is the number of bytes that will be sent in subsequent * calls to this function to complete this protocol element. * In those subsequent calls, futurelen will be -1 to indicate @@ -290,7 +291,7 @@ RecordFlushReplyBuffer( */ static void RecordAProtocolElement(RecordContextPtr pContext, ClientPtr pClient, - int category, pointer data, int datalen, int futurelen) + int category, pointer data, int datalen, int padlen, int futurelen) { CARD32 elemHeaderData[2]; int numElemHeaders = 0; @@ -398,15 +399,20 @@ RecordAProtocolElement(RecordContextPtr pContext, ClientPtr pClient, } if (datalen) { + static char padBuffer[3]; /* as in FlushClient */ memcpy(pContext->replyBuffer + pContext->numBufBytes, - data, datalen); - pContext->numBufBytes += datalen; + data, datalen - padlen); + pContext->numBufBytes += datalen - padlen; + memcpy(pContext->replyBuffer + pContext->numBufBytes, + padBuffer, padlen); + pContext->numBufBytes += padlen; } } else + { RecordFlushReplyBuffer(pContext, (pointer)elemHeaderData, - numElemHeaders, (pointer)data, datalen); - + numElemHeaders, (pointer)data, datalen - padlen); + } } /* RecordAProtocolElement */ @@ -483,19 +489,19 @@ RecordABigRequest(RecordContextPtr pContext, ClientPtr client, xReq *stuff) /* record the request header */ bytesLeft = client->req_len << 2; RecordAProtocolElement(pContext, client, XRecordFromClient, - (pointer)stuff, SIZEOF(xReq), bytesLeft); + (pointer)stuff, SIZEOF(xReq), 0, bytesLeft); /* reinsert the extended length field that was squished out */ bigLength = client->req_len + bytes_to_int32(sizeof(bigLength)); if (client->swapped) swapl(&bigLength); RecordAProtocolElement(pContext, client, XRecordFromClient, - (pointer)&bigLength, sizeof(bigLength), /* continuation */ -1); + (pointer)&bigLength, sizeof(bigLength), 0, /* continuation */ -1); bytesLeft -= sizeof(bigLength); /* record the rest of the request after the length */ RecordAProtocolElement(pContext, client, XRecordFromClient, - (pointer)(stuff + 1), bytesLeft, /* continuation */ -1); + (pointer)(stuff + 1), bytesLeft, 0, /* continuation */ -1); } /* RecordABigRequest */ @@ -542,7 +548,7 @@ RecordARequest(ClientPtr client) RecordABigRequest(pContext, client, stuff); else RecordAProtocolElement(pContext, client, XRecordFromClient, - (pointer)stuff, client->req_len << 2, 0); + (pointer)stuff, client->req_len << 2, 0, 0); } else /* extension, check minor opcode */ { @@ -566,7 +572,7 @@ RecordARequest(ClientPtr client) else RecordAProtocolElement(pContext, client, XRecordFromClient, (pointer)stuff, - client->req_len << 2, 0); + client->req_len << 2, 0, 0); break; } } /* end for each minor op info */ @@ -619,7 +625,8 @@ RecordAReply(CallbackListPtr *pcbl, pointer nulldata, pointer calldata) if (pContext->continuedReply) { RecordAProtocolElement(pContext, client, XRecordFromServer, - (pointer)pri->replyData, pri->dataLenBytes, /* continuation */ -1); + (pointer)pri->replyData, pri->dataLenBytes, + pri->padBytes, /* continuation */ -1); if (!pri->bytesRemaining) pContext->continuedReply = 0; } @@ -629,7 +636,7 @@ RecordAReply(CallbackListPtr *pcbl, pointer nulldata, pointer calldata) if (majorop <= 127) { /* core reply */ RecordAProtocolElement(pContext, client, XRecordFromServer, - (pointer)pri->replyData, pri->dataLenBytes, pri->bytesRemaining); + (pointer)pri->replyData, pri->dataLenBytes, 0, pri->bytesRemaining); if (pri->bytesRemaining) pContext->continuedReply = 1; } @@ -651,7 +658,7 @@ RecordAReply(CallbackListPtr *pcbl, pointer nulldata, pointer calldata) { RecordAProtocolElement(pContext, client, XRecordFromServer, (pointer)pri->replyData, - pri->dataLenBytes, pri->bytesRemaining); + pri->dataLenBytes, 0, pri->bytesRemaining); if (pri->bytesRemaining) pContext->continuedReply = 1; break; @@ -723,7 +730,7 @@ RecordADeliveredEventOrError(CallbackListPtr *pcbl, pointer nulldata, pointer ca } RecordAProtocolElement(pContext, pClient, - XRecordFromServer, pEvToRecord, SIZEOF(xEvent), 0); + XRecordFromServer, pEvToRecord, SIZEOF(xEvent), 0, 0); } } /* end for each event */ } /* end this client is on this context */ @@ -774,7 +781,7 @@ RecordSendProtocolEvents(RecordClientsAndProtocolPtr pRCAP, } RecordAProtocolElement(pContext, NULL, - XRecordFromServer, pEvToRecord, SIZEOF(xEvent), 0); + XRecordFromServer, pEvToRecord, SIZEOF(xEvent), 0, 0); /* make sure device events get flushed in the absence * of other client activity */ @@ -2415,7 +2422,7 @@ ProcRecordEnableContext(ClientPtr client) assert(numEnabledContexts > 0); /* send StartOfData */ - RecordAProtocolElement(pContext, NULL, XRecordStartOfData, NULL, 0, 0); + RecordAProtocolElement(pContext, NULL, XRecordStartOfData, NULL, 0, 0, 0); RecordFlushReplyBuffer(pContext, NULL, 0, NULL, 0); return Success; } /* ProcRecordEnableContext */ @@ -2446,7 +2453,7 @@ RecordDisableContext(RecordContextPtr pContext) if (!pContext->pRecordingClient) return; if (!pContext->pRecordingClient->clientGone) { - RecordAProtocolElement(pContext, NULL, XRecordEndOfData, NULL, 0, 0); + RecordAProtocolElement(pContext, NULL, XRecordEndOfData, NULL, 0, 0, 0); RecordFlushReplyBuffer(pContext, NULL, 0, NULL, 0); /* Re-enable request processing on this connection. */ AttendClient(pContext->pRecordingClient); @@ -2761,7 +2768,7 @@ RecordConnectionSetupInfo(RecordContextPtr pContext, NewClientInfoRec *pci) SwapConnSetupPrefix(pci->prefix, (xConnSetupPrefix*)pConnSetup); SwapConnSetupInfo((char*)pci->setup, (char*)(pConnSetup + prefixsize)); RecordAProtocolElement(pContext, pci->client, XRecordClientStarted, - (pointer)pConnSetup, prefixsize + restsize, 0); + (pointer)pConnSetup, prefixsize + restsize, 0, 0); free(pConnSetup); } else @@ -2770,9 +2777,9 @@ RecordConnectionSetupInfo(RecordContextPtr pContext, NewClientInfoRec *pci) * data in two pieces */ RecordAProtocolElement(pContext, pci->client, XRecordClientStarted, - (pointer)pci->prefix, prefixsize, restsize); + (pointer)pci->prefix, prefixsize, 0, restsize); RecordAProtocolElement(pContext, pci->client, XRecordClientStarted, - (pointer)pci->setup, restsize, /* continuation */ -1); + (pointer)pci->setup, restsize, 0, /* continuation */ -1); } } /* RecordConnectionSetupInfo */ @@ -2849,7 +2856,7 @@ RecordAClientStateChange(CallbackListPtr *pcbl, pointer nulldata, pointer callda { if (pContext->pRecordingClient && pRCAP->clientDied) RecordAProtocolElement(pContext, pClient, - XRecordClientDied, NULL, 0, 0); + XRecordClientDied, NULL, 0, 0, 0); RecordDeleteClientFromRCAP(pRCAP, pos); } } diff --git a/xorg-server/xkeyboard-config/symbols/pc b/xorg-server/xkeyboard-config/symbols/pc index e1965ce63..7e13ecb25 100644 --- a/xorg-server/xkeyboard-config/symbols/pc +++ b/xorg-server/xkeyboard-config/symbols/pc @@ -14,7 +14,7 @@ xkb_symbols "pc105" { include "pc(editing)" include "keypad(x11)" - key <BKSP> { [ BackSpace ] }; + key <BKSP> { [ BackSpace, BackSpace ] }; key <TAB> { [ Tab, ISO_Left_Tab ] }; key <RTRN> { [ Return ] }; diff --git a/xorg-server/xkeyboard-config/symbols/us b/xorg-server/xkeyboard-config/symbols/us index 1d8bdd0dd..7c3ee2499 100644 --- a/xorg-server/xkeyboard-config/symbols/us +++ b/xorg-server/xkeyboard-config/symbols/us @@ -573,7 +573,7 @@ xkb_symbols "dvp" { key <AE10> { [ bracketright, 6 ], type[Group1] = "FOUR_LEVEL_ALPHABETIC" }; key <AE11> { [ exclam, 8, exclamdown ], type[Group1] = "FOUR_LEVEL_ALPHABETIC" }; key <AE12> { [ numbersign, grave, dead_grave ] }; - key <BKSP> { [ BackSpace ] }; + key <BKSP> { [ BackSpace, BackSpace ] }; // upper row, left side key <AD01> { [ semicolon, colon, dead_diaeresis ] }; |