// Copyright (c) 2011 The Chromium Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include "chrome/common/common_param_traits.h" #include "base/time.h" #include "chrome/common/chrome_constants.h" #include "chrome/common/content_settings.h" #include "chrome/common/geoposition.h" #include "chrome/common/thumbnail_score.h" #include "chrome/common/web_apps.h" #include "content/common/common_param_traits.h" #include "googleurl/src/gurl.h" #include "printing/backend/print_backend.h" #include "printing/native_metafile.h" #include "printing/page_range.h" #ifndef EXCLUDE_SKIA_DEPENDENCIES #include "third_party/skia/include/core/SkBitmap.h" #endif #include "webkit/glue/password_form.h" namespace IPC { #ifndef EXCLUDE_SKIA_DEPENDENCIES namespace { struct SkBitmap_Data { // The configuration for the bitmap (bits per pixel, etc). SkBitmap::Config fConfig; // The width of the bitmap in pixels. uint32 fWidth; // The height of the bitmap in pixels. uint32 fHeight; void InitSkBitmapDataForTransfer(const SkBitmap& bitmap) { fConfig = bitmap.config(); fWidth = bitmap.width(); fHeight = bitmap.height(); } // Returns whether |bitmap| successfully initialized. bool InitSkBitmapFromData(SkBitmap* bitmap, const char* pixels, size_t total_pixels) const { if (total_pixels) { bitmap->setConfig(fConfig, fWidth, fHeight, 0); if (!bitmap->allocPixels()) return false; if (total_pixels != bitmap->getSize()) return false; memcpy(bitmap->getPixels(), pixels, total_pixels); } return true; } }; } // namespace void ParamTraits::Write(Message* m, const SkBitmap& p) { size_t fixed_size = sizeof(SkBitmap_Data); SkBitmap_Data bmp_data; bmp_data.InitSkBitmapDataForTransfer(p); m->WriteData(reinterpret_cast(&bmp_data), static_cast(fixed_size)); size_t pixel_size = p.getSize(); SkAutoLockPixels p_lock(p); m->WriteData(reinterpret_cast(p.getPixels()), static_cast(pixel_size)); } bool ParamTraits::Read(const Message* m, void** iter, SkBitmap* r) { const char* fixed_data; int fixed_data_size = 0; if (!m->ReadData(iter, &fixed_data, &fixed_data_size) || (fixed_data_size <= 0)) { NOTREACHED(); return false; } if (fixed_data_size != sizeof(SkBitmap_Data)) return false; // Message is malformed. const char* variable_data; int variable_data_size = 0; if (!m->ReadData(iter, &variable_data, &variable_data_size) || (variable_data_size < 0)) { NOTREACHED(); return false; } const SkBitmap_Data* bmp_data = reinterpret_cast(fixed_data); return bmp_data->InitSkBitmapFromData(r, variable_data, variable_data_size); } void ParamTraits::Log(const SkBitmap& p, std::string* l) { l->append(""); } #endif // EXCLUDE_SKIA_DEPENDENCIES void ParamTraits::Write(Message* m, const param_type& p) { WriteParam(m, static_cast(p)); } bool ParamTraits::Read(const Message* m, void** iter, param_type* r) { int value; if (!ReadParam(m, iter, &value)) return false; if (value < 0 || value >= static_cast(CONTENT_SETTING_NUM_SETTINGS)) return false; *r = static_cast(value); return true; } void ParamTraits::Log(const param_type& p, std::string* l) { LogParam(static_cast(p), l); } void ParamTraits::Write( Message* m, const ContentSettings& settings) { for (size_t i = 0; i < arraysize(settings.settings); ++i) WriteParam(m, settings.settings[i]); } bool ParamTraits::Read( const Message* m, void** iter, ContentSettings* r) { for (size_t i = 0; i < arraysize(r->settings); ++i) { if (!ReadParam(m, iter, &r->settings[i])) return false; } return true; } void ParamTraits::Log( const ContentSettings& p, std::string* l) { l->append(""); } void ParamTraits::Write(Message* m, const WebApplicationInfo& p) { WriteParam(m, p.title); WriteParam(m, p.description); WriteParam(m, p.app_url); WriteParam(m, p.launch_container); WriteParam(m, p.icons.size()); WriteParam(m, p.permissions.size()); for (size_t i = 0; i < p.icons.size(); ++i) { WriteParam(m, p.icons[i].url); WriteParam(m, p.icons[i].width); WriteParam(m, p.icons[i].height); WriteParam(m, p.icons[i].data); } for (size_t i = 0; i < p.permissions.size(); ++i) WriteParam(m, p.permissions[i]); } bool ParamTraits::Read( const Message* m, void** iter, WebApplicationInfo* r) { size_t icon_count = 0; size_t permissions_count = 0; bool result = ReadParam(m, iter, &r->title) && ReadParam(m, iter, &r->description) && ReadParam(m, iter, &r->app_url) && ReadParam(m, iter, &r->launch_container) && ReadParam(m, iter, &icon_count) && ReadParam(m, iter, &permissions_count); if (!result) return false; for (size_t i = 0; i < icon_count; ++i) { param_type::IconInfo icon_info; result = ReadParam(m, iter, &icon_info.url) && ReadParam(m, iter, &icon_info.width) && ReadParam(m, iter, &icon_info.height) && ReadParam(m, iter, &icon_info.data); if (!result) return false; r->icons.push_back(icon_info); } for (size_t i = 0; i < permissions_count; ++i) { std::string permission; if (!ReadParam(m, iter, &permission)) return false; r->permissions.push_back(permission); } return true; } void ParamTraits::Log(const WebApplicationInfo& p, std::string* l) { l->append(""); } void ParamTraits::Write(Message* m, const param_type& p) { IPC::ParamTraits::Write(m, p.boring_score); IPC::ParamTraits::Write(m, p.good_clipping); IPC::ParamTraits::Write(m, p.at_top); IPC::ParamTraits::Write(m, p.time_at_snapshot); } bool ParamTraits::Read(const Message* m, void** iter, param_type* r) { double boring_score; bool good_clipping, at_top; base::Time time_at_snapshot; if (!IPC::ParamTraits::Read(m, iter, &boring_score) || !IPC::ParamTraits::Read(m, iter, &good_clipping) || !IPC::ParamTraits::Read(m, iter, &at_top) || !IPC::ParamTraits::Read(m, iter, &time_at_snapshot)) return false; r->boring_score = boring_score; r->good_clipping = good_clipping; r->at_top = at_top; r->time_at_snapshot = time_at_snapshot; return true; } void ParamTraits::Log(const param_type& p, std::string* l) { l->append(base::StringPrintf("(%f, %d, %d)", p.boring_score, p.good_clipping, p.at_top)); } template <> struct ParamTraits { typedef Geoposition::ErrorCode param_type; static void Write(Message* m, const param_type& p) { int error_code = p; WriteParam(m, error_code); } static bool Read(const Message* m, void** iter, param_type* p) { int error_code_param = 0; bool ret = ReadParam(m, iter, &error_code_param); *p = static_cast(error_code_param); return ret; } static void Log(const param_type& p, std::string* l) { int error_code = p; l->append(base::StringPrintf("%d", error_code)); } }; void ParamTraits::Write(Message* m, const Geoposition& p) { WriteParam(m, p.latitude); WriteParam(m, p.longitude); WriteParam(m, p.accuracy); WriteParam(m, p.altitude); WriteParam(m, p.altitude_accuracy); WriteParam(m, p.speed); WriteParam(m, p.heading); WriteParam(m, p.timestamp); WriteParam(m, p.error_code); WriteParam(m, p.error_message); } bool ParamTraits::Read( const Message* m, void** iter, Geoposition* p) { bool ret = ReadParam(m, iter, &p->latitude); ret = ret && ReadParam(m, iter, &p->longitude); ret = ret && ReadParam(m, iter, &p->accuracy); ret = ret && ReadParam(m, iter, &p->altitude); ret = ret && ReadParam(m, iter, &p->altitude_accuracy); ret = ret && ReadParam(m, iter, &p->speed); ret = ret && ReadParam(m, iter, &p->heading); ret = ret && ReadParam(m, iter, &p->timestamp); ret = ret && ReadParam(m, iter, &p->error_code); ret = ret && ReadParam(m, iter, &p->error_message); return ret; } void ParamTraits::Log(const Geoposition& p, std::string* l) { l->append( base::StringPrintf( "" "%.6f %.6f %.6f %.6f " "%.6f %.6f %.6f ", p.latitude, p.longitude, p.accuracy, p.altitude, p.altitude_accuracy, p.speed, p.heading)); LogParam(p.timestamp, l); l->append(" "); l->append(p.error_message); LogParam(p.error_code, l); } void ParamTraits::Write(Message* m, const param_type& p) { WriteParam(m, p.signon_realm); WriteParam(m, p.origin); WriteParam(m, p.action); WriteParam(m, p.submit_element); WriteParam(m, p.username_element); WriteParam(m, p.username_value); WriteParam(m, p.password_element); WriteParam(m, p.password_value); WriteParam(m, p.old_password_element); WriteParam(m, p.old_password_value); WriteParam(m, p.ssl_valid); WriteParam(m, p.preferred); WriteParam(m, p.blacklisted_by_user); } bool ParamTraits::Read(const Message* m, void** iter, param_type* p) { return ReadParam(m, iter, &p->signon_realm) && ReadParam(m, iter, &p->origin) && ReadParam(m, iter, &p->action) && ReadParam(m, iter, &p->submit_element) && ReadParam(m, iter, &p->username_element) && ReadParam(m, iter, &p->username_value) && ReadParam(m, iter, &p->password_element) && ReadParam(m, iter, &p->password_value) && ReadParam(m, iter, &p->old_password_element) && ReadParam(m, iter, &p->old_password_value) && ReadParam(m, iter, &p->ssl_valid) && ReadParam(m, iter, &p->preferred) && ReadParam(m, iter, &p->blacklisted_by_user); } void ParamTraits::Log(const param_type& p, std::string* l) { l->append(""); } void ParamTraits::Write(Message* m, const param_type& p) { WriteParam(m, p.from); WriteParam(m, p.to); } bool ParamTraits::Read( const Message* m, void** iter, param_type* p) { return ReadParam(m, iter, &p->from) && ReadParam(m, iter, &p->to); } void ParamTraits::Log( const param_type& p, std::string* l) { l->append("("); LogParam(p.to, l); l->append(", "); LogParam(p.from, l); l->append(")"); } void ParamTraits::Write( Message* m, const param_type& p) { std::vector buffer; uint32 size = p.GetDataSize(); if (size) { buffer.resize(size); p.GetData(&buffer.front(), size); } WriteParam(m, buffer); } bool ParamTraits::Read( const Message* m, void** iter, param_type* p) { std::vector buffer; return ReadParam(m, iter, &buffer) && p->Init(&buffer.front(), static_cast(buffer.size())); } void ParamTraits::Log( const param_type& p, std::string* l) { l->append(""); } void ParamTraits::Write( Message* m, const param_type& p) { WriteParam(m, p.printer_capabilities); WriteParam(m, p.caps_mime_type); WriteParam(m, p.printer_defaults); WriteParam(m, p.defaults_mime_type); } bool ParamTraits::Read( const Message* m, void** iter, param_type* p) { return ReadParam(m, iter, &p->printer_capabilities) && ReadParam(m, iter, &p->caps_mime_type) && ReadParam(m, iter, &p->printer_defaults) && ReadParam(m, iter, &p->defaults_mime_type); } void ParamTraits::Log( const param_type& p, std::string* l) { l->append("("); LogParam(p.printer_capabilities, l); l->append(","); LogParam(p.caps_mime_type, l); l->append(","); LogParam(p.printer_defaults, l); l->append(","); LogParam(p.defaults_mime_type, l); l->append(")"); } } // namespace IPC